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Применить Всего найдено 9635. Отображено 100.
16-08-1997 дата публикации

РЕМЕННАЯ ПЕРЕДАЧА

Номер: RU0000004797U1

1. Ременная передача, содержащая взаимодействующие с плоско-зубчатым ремнем ведомый и ведуший шкивы, отличающаяся тем, что плоскозубчатый ремень выполнен составным и в каждую ветвь введена жесткая тяга. 2. Передача по п.1, отличающаяся тем, что жесткая тяга выполнена регулируемой при помощи талрепа. 3. Передача по п.1, отличающаяся тем, что жесткая тяга соединена с частями плоскозубчатого ремня при помощи накладок, одна из которых повторяет плоскозубчатый профиль ремня. 4. Передача по п. 1, отличающаяся тем, что на жесткой тяге размещены кронштейны для крепления перемещаемого груза. (19) RU (11) (13) 4 797 U1 (51) МПК F16H 19/02 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 95102428/20, 21.02.1995 (46) Опубликовано: 16.08.1997 (71) Заявитель(и): Научно-исследовательский машиностроительный институт 4 7 9 7 R U (57) Формула полезной модели 1. Ременная передача, содержащая взаимодействующие с плоско-зубчатым ремнем ведомый и ведуший шкивы, отличающаяся тем, что плоскозубчатый ремень выполнен составным и в каждую ветвь введена жесткая тяга. 2. Передача по п.1, отличающаяся тем, что жесткая тяга выполнена регулируемой при помощи талрепа. 3. Передача по п.1, отличающаяся тем, что жесткая тяга соединена с частями плоскозубчатого ремня при помощи накладок, одна из которых повторяет плоскозубчатый профиль ремня. 4. Передача по п. 1, отличающаяся тем, что на жесткой тяге размещены кронштейны для крепления перемещаемого груза. Ñòðàíèöà: 1 U 1 U 1 (54) РЕМЕННАЯ ПЕРЕДАЧА 4 7 9 7 (73) Патентообладатель(и): Научно-исследовательский машиностроительный институт R U (72) Автор(ы): Евтухов А.Н., Михайлов В.В., Панин Г.В., Софронов Г.В., Щербаков Ю.В. RU 4 797 U1 RU 4 797 U1 RU 4 797 U1 RU 4 797 U1

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10-08-2000 дата публикации

МОТОРЕДУКТОР УПРАВЛЕНИЯ ЗАСЛОНКОЙ ОТОПИТЕЛЯ

Номер: RU0000014623U1

Моторедуктор управления заслонкой отопителя автомобиля, состоящий из электродвигателя с совмещенным планетарным редуктором, датчика положения вала моторедуктора, расположенного поверх планетарного редуктора и содержащего лапки крепления моторедуктора на отопитель, системы рычагов для передачи момента от электродвигателя на вал заслонки отопителя, отличающийся тем, что электродвигатель размещен в корпусе моторедуктора, датчик положения вала моторедуктора размещен в корпусе моторедуктора, лапки крепления моторедуктора с датчика положения вала перенесены на корпус, планетарный редуктор заменен многоступенчатым червячно-цилиндрическим редуктором, размещенным внутри корпуса моторедуктора, система рычагов для передачи момента исключена, момент снимается непосредственно с выходного вала моторедуктора и моторедуктор устанавливается непосредственно на вал заслонки отопителя. (19) RU (11) 14 623 (13) U1 (51) МПК F16H 19/02 (2000.01) B60H 1/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2000102024/20 , 25.01.2000 (24) Дата начала отсчета срока действия патента: 25.01.2000 (46) Опубликовано: 10.08.2000 (72) Автор(ы): Скворцов В.Н., Яковенцев М.В., Болоян Н.А., Гончаров Н.Н. (73) Патентообладатель(и): Скворцов Владимир Николаевич U 1 1 4 6 2 3 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Моторедуктор управления заслонкой отопителя автомобиля, состоящий из электродвигателя с совмещенным планетарным редуктором, датчика положения вала моторедуктора, расположенного поверх планетарного редуктора и содержащего лапки крепления моторедуктора на отопитель, системы рычагов для передачи момента от электродвигателя на вал заслонки отопителя, отличающийся тем, что электродвигатель размещен в корпусе моторедуктора, датчик положения вала моторедуктора размещен в корпусе моторедуктора, лапки крепления моторедуктора с датчика положения вала перенесены на корпус, планетарный редуктор заменен многоступенчатым ...

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10-11-2000 дата публикации

МОТОРЕДУКТОР ФАРООЧИСТИТЕЛЯ

Номер: RU0000015702U1

1. Моторедуктор фароочистителя, содержащий двигатель, двухступенчатый редуктор, отличающийся тем, что вместо кулисно-реечного механизма используется реечная передача. 2. Моторедуктор по п.1, отличающийся тем, что корпус выполнен водонепроницаемым. (19) RU (11) 15 702 (13) U1 (51) МПК B60S 1/06 (2000.01) F16H 19/08 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2000110208/20 , 27.04.2000 (24) Дата начала отсчета срока действия патента: 27.04.2000 (46) Опубликовано: 10.11.2000 (72) Автор(ы): Васьков А.П., Папечин А.В. R U 1 5 7 0 2 (57) Формула полезной модели 1. Моторедуктор фароочистителя, содержащий двигатель, двухступенчатый редуктор, отличающийся тем, что вместо кулисно-реечного механизма используется реечная передача. 2. Моторедуктор по п.1, отличающийся тем, что корпус выполнен водонепроницаемым. Ñòðàíèöà: 1 U 1 U 1 (54) МОТОРЕДУКТОР ФАРООЧИСТИТЕЛЯ 1 5 7 0 2 (73) Патентообладатель(и): Открытое акционерное общество Ставровский завод автотракторного оборудования R U Адрес для переписки: 601220, Владимирская обл., п. Ставрово, ул. Октябрьская 118, ОАО" СтАТО" (71) Заявитель(и): Открытое акционерное общество Ставровский завод автотракторного оборудования U 1 U 1 1 5 7 0 2 1 5 7 0 2 R U R U Ñòðàíèöà: 2 RU 15 702 U1 RU 15 702 U1 RU 15 702 U1 RU 15 702 U1 RU 15 702 U1

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20-08-2002 дата публикации

МЕХАНИЗМ ПРЕОБРАЗОВАНИЯ ДВИЖЕНИЯ ПОРШНЕВОГО ДВИГАТЕЛЯ ВНУТРЕННЕГО СГОРАНИЯ

Номер: RU0000024706U1

1. Механизм преобразования движения поршневого двигателя внутреннего сгорания, содержащий поршни, соединенные с двумя зубчатыми рейками, и вал, отличающийся тем, что каждый поршень соединен стержнем, выполненным заодно с фланцем, с двумя зубчатыми рейками, при этом зубчатые рейки снабжены устройствами компенсации инерционных сил и возврата зубчатых реек, размещенными на противоположных торцах, и на валу установлено колесо, часть длины окружности которого имеет зубья, с возможностью взаимодействия его с одной из зубчатых реек, причем длина зубчатой части окружности колеса равна длине зубчатой рейки, которая соответствует рабочему ходу поршня. 2. Механизм по п.1, отличающийся тем, что устройство компенсации инерционных сил и возврата зубчатых реек выполнено в виде пакета тарельчатых пружин, размещенных в корпусе. (19) RU (11) 24 706 (13) U1 (51) МПК F02B 75/32 (2000.01) F16H 19/04 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002101860/20 , 17.01.2002 (24) Дата начала отсчета срока действия патента: 17.01.2002 (46) Опубликовано: 20.08.2002 (72) Автор(ы): Шуршилин С.В., Шуршилин А.С. (73) Патентообладатель(и): Шуршилин Сергей Васильевич U 1 2 4 7 0 6 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели 1. Механизм преобразования движения поршневого двигателя внутреннего сгорания, содержащий поршни, соединенные с двумя зубчатыми рейками, и вал, отличающийся тем, что каждый поршень соединен стержнем, выполненным заодно с фланцем, с двумя зубчатыми рейками, при этом зубчатые рейки снабжены устройствами компенсации инерционных сил и возврата зубчатых реек, размещенными на противоположных торцах, и на валу установлено колесо, часть длины окружности которого имеет зубья, с возможностью взаимодействия его с одной из зубчатых реек, причем длина зубчатой части окружности колеса равна длине зубчатой рейки, которая соответствует рабочему ходу поршня. 2. Механизм по п.1, отличающийся тем, что устройство ...

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10-05-2005 дата публикации

МОТОРЕДУКТОР ДЛЯ ЭЛЕКТРООБОРУДОВАНИЯ АВТОМОБИЛЯ

Номер: RU0000045573U1

Моторедуктор для электрооборудования автомобиля, содержащий корпус, электродвигатель постоянного тока и объединенную с ним в один узел червячную передачу с зубчатым редуктором, заканчивающимся выходным валом, с одной стороны последнего подсоединяется регулируемый агрегат, а с другой стороны - токосъемная щетка потенциометра, выполненного с внутренней стороны корпуса с возможностью фиксации его положения, отличающийся тем, что зубчатый редуктор выполнен в виде червячной пары с образованием двухступенчатой червячной передачи. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 45 573 (13) U1 (51) МПК H02K 7/08 (2000.01) F16H 19/02 (2000.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2004109696/22 , 06.04.2004 (24) Дата начала отсчета срока действия патента: 06.04.2004 (45) Опубликовано: 10.05.2005 (73) Патентообладатель(и): Закрытое акционерное общество "Автоэлектроника - научно-технический центр" (RU) U 1 4 5 5 7 3 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Моторедуктор для электрооборудования автомобиля, содержащий корпус, электродвигатель постоянного тока и объединенную с ним в один узел червячную передачу с зубчатым редуктором, заканчивающимся выходным валом, с одной стороны последнего подсоединяется регулируемый агрегат, а с другой стороны токосъемная щетка потенциометра, выполненного с внутренней стороны корпуса с возможностью фиксации его положения, отличающийся тем, что зубчатый редуктор выполнен в виде червячной пары с образованием двухступенчатой червячной передачи. 4 5 5 7 3 (54) МОТОРЕДУКТОР ДЛЯ ЭЛЕКТРООБОРУДОВАНИЯ АВТОМОБИЛЯ R U Адрес для переписки: 248631, г.Калуга, ул. Азаровская, 18, ЗАО "Автоэлектроника-НТЦ" (72) Автор(ы): Густов К.И. (RU) , Максимов Е.Л. (RU) U 1 U 1 4 5 5 7 3 4 5 5 7 3 R U R U Ñòðàíèöà: 2 RU 5 10 15 20 25 30 35 40 45 50 45 573 U1 Полезная модель относится к области автомобилестроения и может найти применение в системах автоматического управления ...

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27-12-2005 дата публикации

ПРИВОД ПЕДАЛЬНЫЙ БЕЗМОТОРНОГО ТРАНСПОРТНОГО СРЕДСТВА

Номер: RU0000050270U1

Привод педальный безмоторного транспортного средства, содержащий раму, цепную передачу с ведомой и ведущей звездочками, каретку и педали, отличающийся тем, что он снабжен аналогичной оппозитно расположенной параллельной цепной передачей, а на раме выполнены направляющие, на которых соответственно цепным передачам смонтированы две каретки, снабженные храповыми собачками с возможностью взаимодействия с втулками цепных передач, при этом каждая каретка снабжена педалью для мускульного воздействия. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 50 270 (13) U1 (51) МПК F16H 19/06 (2000.01) B62M 1/04 (2000.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2005126905/22 , 26.08.2005 (24) Дата начала отсчета срока действия патента: 26.08.2005 (45) Опубликовано: 27.12.2005 (72) Автор(ы): Мач Валентин Яковлевич (BY) (73) Патентообладатель(и): Мач Валентин Яковлевич (BY) U 1 5 0 2 7 0 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Привод педальный безмоторного транспортного средства, содержащий раму, цепную передачу с ведомой и ведущей звездочками, каретку и педали, отличающийся тем, что он снабжен аналогичной оппозитно расположенной параллельной цепной передачей, а на раме выполнены направляющие, на которых соответственно цепным передачам смонтированы две каретки, снабженные храповыми собачками с возможностью взаимодействия с втулками цепных передач, при этом каждая каретка снабжена педалью для мускульного воздействия. 5 0 2 7 0 (54) ПРИВОД ПЕДАЛЬНЫЙ БЕЗМОТОРНОГО ТРАНСПОРТНОГО СРЕДСТВА R U Адрес для переписки: 213807, Республика Беларусь, Могилевская обл., г. Бобруйск, ул. Сикорского, 12, кв. 137, В.Я. Мач RU 5 10 15 20 25 30 35 40 45 50 50 270 U1 Полезная модель относится к области транспортных средств, предназначенных для самостоятельного перемещения от мускульного привода, как по дорогам или по пересеченной местности, так и по водной акватории, и может быть использовано при конструировании ...

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10-11-2006 дата публикации

КЛИНОЭКСЦЕНТРИКОВЫЙ РЕДУКТОР С ВОЛНОВЫМ ЭФФЕКТОМ

Номер: RU0000058193U1

Клиноэксцентриковый редуктор с волновым эффектом, содержащий внешнее неподвижное колесо, внутреннее подвижное колесо и волногенератор, отличающийся тем, что внешнее неподвижное колесо выполнено с цевками, внутреннее подвижное колесо - жестким с подвижными клиньями в пазах, осуществляющими его поворот, а волногенератор выполнен в виде эксцентрика, при этом возврат клиньев в исходное положение обеспечивает кольцевой паз на эксцентрике и крючковый торец клиньев, образующие геометрическое замыкание. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 58 193 (13) U1 (51) МПК F16H 19/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2006121248/22 , 15.06.2006 (24) Дата начала отсчета срока действия патента: 15.06.2006 (45) Опубликовано: 10.11.2006 (73) Патентообладатель(и): Федеральное государственное образовательное учреждение высшего профессионального образования "Астраханский государственный технический университет" (RU) U 1 5 8 1 9 3 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Клиноэксцентриковый редуктор с волновым эффектом, содержащий внешнее неподвижное колесо, внутреннее подвижное колесо и волногенератор, отличающийся тем, что внешнее неподвижное колесо выполнено с цевками, внутреннее подвижное колесо - жестким с подвижными клиньями в пазах, осуществляющими его поворот, а волногенератор выполнен в виде эксцентрика, при этом возврат клиньев в исходное положение обеспечивает кольцевой паз на эксцентрике и крючковый торец клиньев, образующие геометрическое замыкание. 5 8 1 9 3 (54) КЛИНОЭКСЦЕНТРИКОВЫЙ РЕДУКТОР С ВОЛНОВЫМ ЭФФЕКТОМ R U Адрес для переписки: 414025, г.Астрахань, ул. Татищева, 16, АГТУ, патентный отдел (72) Автор(ы): Нагорный Николай Тимофеевич (RU), Зайкин Олег Аркадьевич (RU) U 1 U 1 5 8 1 9 3 5 8 1 9 3 R U R U Ñòðàíèöà: 2 RU 5 10 15 20 25 30 35 40 45 58 193 U1 Полезная модель относится к области машиностроения, в частности к механизмам редуцирующим вращательное ...

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Номер: RU0000097178U1

Механизм передачи движения гибкой связью в виде бесконечной цепи, содержащий установленные на неподвижной раме ведущую и ведомую звездочки, охватываемые гибкой связью, которая соединена с тягой исполнительного органа, отличающийся тем, что гибкая связь подвижно соединена при помощи ползуна с тягой исполнительного органа, которая выполнена в виде вертикальной направляющей. Ц 97178 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ” 97 178? 44 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ ММ9К Досрочное прекращение действия патента из-за неуплаты в установленный срок пошлины за поддержание патента в силе Дата прекращения действия патента: 18.05.2019 Дата внесения записи в Государственный реестр: 10.03.2020 Дата публикации и номер бюллетеня: 10.03.2020 Бюл. №7 Стр.: 1 84116 па П

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УСТРОЙСТВО ПРЕОБРАЗОВАНИЯ ВРАЩАТЕЛЬНОГО ДВИЖЕНИЯ В ВОЗВРАТНО-ПОСТУПАТЕЛЬНОЕ, И НАОБОРОТ

Номер: RU0000107311U1

1. Устройство преобразования вращательного движения в возвратно-поступательное, и наоборот, содержащее входной вал с шестерней и зубчатые рейки, имеющие кинематическую связь с шестерней входного вала, отличающееся тем, что оно снабжено приводной шестерней, шестернями отбора мощности и двумя блоками шестерен, каждый из которых содержит два комплекта промежуточных шестерен, которые попарно установлены на одном валу с шестернями отбора мощности и имеют кинематическую связь между собой и шестерней входного вала, при этом приводная шестерня выполнена в виде кольца с зубьями на наружной и внутренней поверхностях кольца, размещена между зубчатыми рейками с образованием зубчатого зацепления, комплекты промежуточных шестерен размещены внутри приводной шестерни и выполнены каждый из двух частей, одна из которых представляет собой зубчатое колесо с зубчатым венцом по всей длине делительной окружности, а другая - зубчатый сектор, причем зубчатые колеса находятся в постоянном зацеплении друг с другом, а зубчатые сектора установлены с возможностью поочередного взаимодействия с зубьями внутренней поверхности приводной шестерни, при этом в каждом блоке шестерен один комплект промежуточных шестерен закреплен на валу неподвижно, а второй установлен с возможностью углового перемещения относительно вала. 2. Устройство по п.1, отличающееся тем, что на наружной поверхности приводной шестерни выполнена кольцевая проточка для взаимодействия с направляющими роликами. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 107 311 (13) U1 (51) МПК F16H 19/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2011112464/11, 04.04.2011 (24) Дата начала отсчета срока действия патента: 04.04.2011 (73) Патентообладатель(и): Кириллов Алексей Анатольевич (RU) (45) Опубликовано: 10.08.2011 1 0 7 3 1 1 R U Формула полезной модели 1. Устройство преобразования вращательного движения в возвратнопоступательное, и наоборот, ...

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Номер: RU0000110441U1

1. Механический зубчатый привод исполнительного механизма, содержащий зубчатую передачу, включающую ведущее и ведомое колеса и образующую с ней (передачей) кинематическую цепь зубчатую рейку с устройством ее перемещения, а также ведомое зубчатое колесо, размещенное на валу, отличающийся тем, что зубчатая рейка установлена с возможностью перемещения вдоль вертикальной направляющей, которая размещена в корпусе, установленном с возможностью поворота вокруг своей вертикальной оси и снабженном механизмом поворота, и жестко закреплена в нем (корпусе), при этом на передаточном валу ведомого зубчатого колеса реечной передачи, установленном в плоскости, перпендикулярной указанной вертикальной оси корпуса, размещено соосно, по крайней мере, одно ведущее зубчатое колесо зубчатой передачи, кинематически связанное с ведомым колесом указанной передачи, которое жестко закреплено на валу. 2. Привод по п.1, отличающийся тем, что ведущее зубчатое колесо зубчатой передачи, размещенное на валу ведомого зубчатого колеса реечной передачи, соединено с ведомым зубчатым колесом указанной передачи через, по крайней мере, одно паразитное зубчатое колесо. 3. Привод по п.1 или 2, отличающийся тем, что механизм поворота корпуса выполнен в виде зубчатой передачи, ведомое зубчатое колесо которой размещено снаружи корпуса в нижней его части, а ведущее зубчатое колесо кинематически связано с приводом. 4. Привод по п.3, отличающийся тем, что устройство перемещения рейки выполнено в виде линейного привода. 5. Привод по п.4, отличающийся тем, что в качестве линейного привода использован гидропривод, шток которого в верхней части снабжен шаровым шарниром, а в нижней части корпуса зубчатой рейки выполнен паз, конгруэнтный шаровому шарниру. 6. Привод по п.5, отличающийся тем, что все зубчатые колеса привода и устройства поворота корпуса выполнены цилиндрическими и прямозубыми, или косозубыми, или шевронными. 7. Привод по п.6, отличающийся тем, что все зубчатые колеса привода выполнены цилиндрическими, а ...

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РУЛЕВОЙ ПРИВОД

Номер: RU0000121794U1

Рулевой привод, содержащий двигатель, редуктор, включающий размещенную в его корпусе шариковинтовую передачу в виде ходового винта с ходовой гайкой, реечную зубчатую передачу в виде зубчатой рейки, закрепленной на корпусе ходовой гайки, и зубчатого сектора вала руля, отличающийся тем, что корпус ходовой гайки снабжен двумя парами подшипников качения, опирающимися на корпус редуктора, в котором в районе качения двух пар подшипников выполнены лежащие в одной плоскости две продольные плоские направляющие, причем указанные подшипники качения расположены симметрично относительно плоскости симметрии зубчатой рейки. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 121 794 U1 (51) МПК B64C 13/34 (2006.01) F16H 25/22 (2006.01) F16H 19/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2012125226/11, 19.06.2012 (24) Дата начала отсчета срока действия патента: 19.06.2012 (45) Опубликовано: 10.11.2012 Бюл. № 31 R U 1 2 1 7 9 4 Формула полезной модели Рулевой привод, содержащий двигатель, редуктор, включающий размещенную в его корпусе шариковинтовую передачу в виде ходового винта с ходовой гайкой, реечную зубчатую передачу в виде зубчатой рейки, закрепленной на корпусе ходовой гайки, и зубчатого сектора вала руля, отличающийся тем, что корпус ходовой гайки снабжен двумя парами подшипников качения, опирающимися на корпус редуктора, в котором в районе качения двух пар подшипников выполнены лежащие в одной плоскости две продольные плоские направляющие, причем указанные подшипники качения расположены симметрично относительно плоскости симметрии зубчатой рейки. Стр.: 1 U 1 U 1 (54) РУЛЕВОЙ ПРИВОД 1 2 1 7 9 4 Адрес для переписки: 125424, Москва, Вокололамское ш., 90, ОАО "ГосМКБ "Вымпел" им. И.И. Торопова", отдел патентов и интеллектуальной собственности (73) Патентообладатель(и): Открытое акционерное общество "Государственное машиностроительное конструкторское бюро "Вымпел" имени И.И. Торопова" (RU) R U Приоритет(ы): (22) ...

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Номер: RU0000124755U1

1. Зубчатая реечная передача, содержащая корпус, в котором в подшипниках установлены две шестерни, находящиеся в зацеплении с зубьями двусторонней зубчатой рейки и оппозитно установленные относительно ее, отличающаяся тем, что шестерни жестко связаны со шкивами, которые охватывает бесконечный двусторонний зубчатый ремень, взаимодействующий с указанными шкивами противоположными сторонами, при этом зубчатый ремень охватывает также паразитный шкив и ведущий шкив, связанный с приводным двигателем. 2. Зубчатая реечная передача по п.1, отличающаяся тем, что рейка выполнена упругой и жестко закреплена по концам. 3. Зубчатая реечная передача по п.1, отличающаяся тем, что рейка шарнирно соединена с тягами, связанными с демпфирующими элементами. Ц 124755 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ’? 124 755° 1 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ ММ9К Досрочное прекращение действия патента из-за неуплаты в установленный срок пошлины за поддержание патента в силе Дата прекращения действия патента: 10.06.2020 Дата внесения записи в Государственный реестр: 09.03.2021 Дата публикации и номер бюллетеня: 09.03.2021 Бюл. №7 Стр.: 1 па ЧАЧДУСЬ ЕП

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Номер: RU0000127150U1

1. Реечная зубчатая передача, отличающаяся тем, что она выполнена с двухпарным зацеплением зубьев и имеет коэффициент торцового перекрытия 2<ε<3. 2. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=20°; коэффициент высоты головки профиля ; коэффициент радиального зазора с*=0,1÷0,12. 3. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=14,5°÷20°; коэффициент высоты головки профиля ; коэффициент радиального зазора с*=0,25. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 127 150 U1 (51) МПК F16H 19/04 (2006.01) F16H 55/08 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2012151900/11, 04.12.2012 (24) Дата начала отсчета срока действия патента: 04.12.2012 (45) Опубликовано: 20.04.2013 Бюл. № 11 (54) РЕЕЧНАЯ ЗУБЧАТАЯ ПЕРЕДАЧА С ДВУХПАРНЫМ ЗАЦЕПЛЕНИЕМ U 1 3. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=14,5°÷20°; коэффициент высоты головки профиля ; коэффициент радиального зазора с*=0,25. R U 1 2 7 1 5 0 ; коэффициент радиального зазора с*=0,1÷0,12. Стр.: 1 U 1 Формула полезной модели 1. Реечная зубчатая передача, отличающаяся тем, что она выполнена с двухпарным зацеплением зубьев и имеет коэффициент торцового перекрытия 2<εα<3. 2. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=20°; коэффициент высоты головки профиля 1 2 7 1 5 0 Адрес для переписки: 115280, Москва, ул. Автозаводская, 16, ФГБОУ ВПО "МГИУ" (73) Патентообладатель(и): Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Московский государственный индустриальный университет" (ФГБОУ ВПО "МГИУ") (RU) R U Приоритет(ы): (22) Дата подачи заявки: 04.12.2012 (72) Автор(ы): Таратынов Олег Васильевич (RU), Мельников Владимир Зиновьевич (RU), Клепиков Виктор Валентинович (RU) RU 5 ...

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РЕЕЧНАЯ ЗУБЧАТАЯ ПЕРЕДАЧА С ТРЕХПАРНЫМ ЗАЦЕПЛЕНИЕМ

Номер: RU0000134266U1

1. Реечная зубчатая передача, отличающаяся тем, что она выполнена с трехпарным зацеплением зубьев и имеет коэффициент торцового перекрытия 3<ε<4. 2. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=14,5÷20°; коэффициент высоты головки профиля коэффициент радиального зазора с*=0,25. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 134 266 U1 (51) МПК F16H 19/04 (2006.01) F16H 55/08 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2013130214/11, 03.07.2013 (24) Дата начала отсчета срока действия патента: 03.07.2013 (45) Опубликовано: 10.11.2013 Бюл. № 31 (54) РЕЕЧНАЯ ЗУБЧАТАЯ ПЕРЕДАЧА С ТРЕХПАРНЫМ ЗАЦЕПЛЕНИЕМ R U 1 3 4 2 6 6 U 1 коэффициент радиального зазора с*=0,25. Стр.: 1 U 1 Формула полезной модели 1. Реечная зубчатая передача, отличающаяся тем, что она выполнена с трехпарным зацеплением зубьев и имеет коэффициент торцового перекрытия 3<εα<4. 2. Реечная зубчатая передача по п.1, отличающаяся тем, что имеет параметры исходного контура: угол профиля α=14,5÷20°; коэффициент высоты головки профиля 1 3 4 2 6 6 Адрес для переписки: 115280, Москва, ул. Автозаводская, 16, ФГБОУ ВПО "МГИУ" (73) Патентообладатель(и): федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Московский государственный индустриальный университет" (ФГБОУ ВПО "МГИУ") (RU) R U Приоритет(ы): (22) Дата подачи заявки: 03.07.2013 (72) Автор(ы): Мельников Владимир Зиновьевич (RU) RU 5 134 266 U1 Заявляемая полезная модель относится к области станкостроения, транспортного и дорожно-строительного машиностроения. Наиболее близкой к заявляемой модели является реечная зубчатая передача с двухпарным зацеплением, в которой коэффициент торцового перекрытия εα численнобольше 2, но меньше 3 (см. Реечная зубчатая передача с двухпарным зацеплением. Патент РФ на полезную модель №127150 от 20.04.2013, Бюл. №11). Такие передачи проектируются на основе ...

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10-06-2014 дата публикации

ПРЕОБРАЗОВАТЕЛЬ ВРАЩАТЕЛЬНОГО ДВИЖЕНИЯ В ПОСТУПАТЕЛЬНОЕ

Номер: RU0000141702U1

1. Преобразователь вращательного движения в поступательное, содержащий расположенную в направляющих рейку, входящую в зацепление с зубчатым колесом, соединенным с приводом, характеризующийся тем, что рейка имеет отверстия, расположенные на одной прямой на равном расстоянии друг от друга, зубчатое колесо выполнено в виде звездочки, зубцы которой входят в отверстия рейки, а привод выполнен в виде замкнутой роликовой цепи, входящей в зацепление с зубцами звездочки и закрепленной на валу. 2. Преобразователь по п.1, характеризующийся тем, что рейка выполнена в виде полого профиля. 3. Преобразователь по п.2, характеризующийся тем, что рейка выполнена в виде полого профиля, имеющего прямоугольное сечение. 4. Преобразователь по п.2, характеризующийся тем, что рейка выполнена в виде полого профиля, имеющего круглое сечение. 5. Преобразователь по п.1, характеризующийся тем, что вал привода выполнен в виде многогранника, а число звеньев роликовой цепи совпадает с количеством граней многогранника. 6. Преобразователь по п.5, характеризующийся тем, что вал привода выполнен в виде шестигранника, а число звеньев роликовой цепи составляет шесть. 7. Преобразователь по п.1, характеризующийся тем, что вал привода имеет рукоять. 8. Преобразователь по п.1, характеризующийся тем, что вал привода связан с электродвигателем. 9. Преобразователь по п.1, характеризующийся тем, что зубчатое колесо соединено с храповиком. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (51) МПК F16H 19/04 (13) 141 702 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014106137/11, 19.02.2014 (24) Дата начала отсчета срока действия патента: 19.02.2014 (72) Автор(ы): Шапарь Алексей Евгеньевич (UA) Приоритет(ы): (22) Дата подачи заявки: 19.02.2014 (45) Опубликовано: 10.06.2014 Бюл. № 16 R U (73) Патентообладатель(и): Ильичев Олег Владимирович (RU), Мороз Владимир Евгеньевич (RU), Чернов Дмитрий Николаевич (RU) Адрес для переписки: 105077, Москва, а/я 154, ...

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10-08-2014 дата публикации

РЕЕЧНАЯ ЗУБЧАТАЯ ПЕРЕДАЧА С ЧЕТЫРЕХПАРНЫМ ЗАЦЕПЛЕНИЕМ

Номер: RU0000143871U1

Реечная зубчатая передача, отличающаяся тем, что она выполнена с четырехпарным зацеплением зубьев, с коэффициентом торцового перекрытия 4<ε<5 и имеет параметры исходного контура: угол профиля α=13,5°÷14°; коэффициент высоты головки профиля ; коэффициент радиального зазора c*=0,25. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (51) МПК F16H 19/04 (13) 143 871 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2013157343/11, 25.12.2013 (24) Дата начала отсчета срока действия патента: 25.12.2013 (45) Опубликовано: 10.08.2014 Бюл. № 22 (54) РЕЕЧНАЯ ЗУБЧАТАЯ ПЕРЕДАЧА С ЧЕТЫРЕХПАРНЫМ ЗАЦЕПЛЕНИЕМ Формула полезной модели Реечная зубчатая передача, отличающаяся тем, что она выполнена с четырехпарным зацеплением зубьев, с коэффициентом торцового перекрытия 4<εα<5 и имеет параметры исходного контура: угол профиля α=13,5°÷14°; коэффициент высоты головки профиля U 1 1 4 3 8 7 1 R U Стр.: 1 U 1 ; коэффициент радиального зазора c*=0,25. 1 4 3 8 7 1 Адрес для переписки: 115280, Москва, ул. Автозаводская, 16, ФГБОУ ВПО "МГИУ" (73) Патентообладатель(и): федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Московский государственный индустриальный университет" (ФГБОУ ВПО "МГИУ") (RU) R U Приоритет(ы): (22) Дата подачи заявки: 25.12.2013 (72) Автор(ы): Мельников Владимир Зиновьевич (RU) RU 5 143 871 U1 Заявляемая полезная модель относится к области станкостроения, транспортного и дорожно-строительного машиностроения. Наиболее близкой к заявляемой модели является реечная зубчатая передача с трехпарным зацеплением, в которой коэффициент торцового перекрытия εα численно больше 3, но меньше 4 (см. Реечная зубчатая передача с трехпарным зацеплением. Патент РФ на полезную модель №134266 от 10.11.2013, Бюл. №31). Данные передачи проектируются на основе исходного контура со следующими параметрами: - угол профиля α=14,5°÷20°, коэффициент высоты головки профиля 10 15 20 коэффициент ...

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22-10-2019 дата публикации

Реечная передача датчика линейного положения

Номер: RU0000193298U1

Реечная передача датчика линейного положения (далее, также полезная модель, техническое решение, устройство) относится к области машиностроения, а именно к механическим датчикам, конструктивно основанным на механизме зубчато-реечной передачи, с возможностью последующей передачи углового положения зубчатого колеса на считывающее устройство. Спектр применения достаточно широк, к примеру, это могут быть промышленные роботы или же механические тренажеры-имитаторы движения, обучающие навыкам вождения транспортного средства, а равно иные изделия, в конструкции которых необходимо преобразование поступательного движения во вращательное, с возможностью фиксации углового перемещения вращающегося звена. Техническим результатом предлагаемой полезной модели является создание устройства, упрощенного по конструкции и эксплуатации (последнее - за счет исключения необходимости периодической ручной подстройки механизма регулировки бокового зазора). Поставленная задача достигается тем, что заявляемое техническое решение, состоящее из корпуса, внутри которого установлено вращающееся зубчатое колесо, взаимодействующее с подвижной зубчатой рейкой, которая прижата к зубчатому колесу прижимным роликом, последний конструктивно установлен на качающемся одноплечевом рычаге, который поджат к зубчатой рейке упругим элементом, при этом ось зубчатого колеса и ось прижимного ролика находятся на одной линии. Реечная передача датчика линейного положения включает в себя следующие элементы: корпус, зубчатое колесо, зубчатую рейку, прижимной механизм, считывающий датчик. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 193 298 U1 (51) МПК F16H 19/04 (2006.01) G01B 3/00 (2006.01) G01B 5/00 (2006.01) G01P 13/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16H 19/04 (2019.02); G01B 3/00 (2019.02); G01B 5/00 (2019.02); G01P 13/04 (2019.02) (21)(22) Заявка: 2018136728, 17.10.2018 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель ...

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14-07-2020 дата публикации

Устройство для преобразования вращательного движения в возвратно-поступательное

Номер: RU0000198515U1

Полезная модель относится к области машиностроения и может быть использована в составе механизмов, преобразующих вращательное движение в возвратно-поступательное. Устройство содержит корпус, в котором с возможностью возвратно-поступательного перемещения установлен ведомый элемент, кинематически связанный с ведущим элементом, имеющим возможность вращения, а также два зубчатых сектора, один из которых установлен на ведущем валу, а другой - на ведомом, и зубчатая рейка, установленная на ведомом элементе. Устройство оснащено второй рейкой, закрепленной на ведомом элементе, один из зубчатых секторов имеет возможность зацепления своими зубьями с зубьями одной из зубчатых реек ведомого элемента при прямом ходе ведомого элемента, а другой зубчатый сектор имеет возможность зацепления своими зубьями с зубьями другой зубчатой рейки при обратном ходе ведомого элемента, при этом зубчатые рейки установлены на ведомом элементе с возможностью настроечного перемещения и фиксации в заданном положении. Техническим результатом настоящей полезной модели является повышение надежности устройства. 7 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 198 515 U1 (51) МПК F16H 19/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16H 19/04 (2020.02) (21)(22) Заявка: 2019144059, 26.12.2019 (24) Дата начала отсчета срока действия патента: Дата регистрации: 14.07.2020 (45) Опубликовано: 14.07.2020 Бюл. № 20 1 9 8 5 1 5 R U (56) Список документов, цитированных в отчете о поиске: RU 2705441 C2, 07.11.2019. RU 107311 U1, 10.08.2011. RU 2189472 C2, 20.09.2002. RU 2180062 C2, 27.02.2002. FR 2850438 B3, 14.01.2005. (54) Устройство для преобразования вращательного движения в возвратно-поступательное (57) Реферат: Полезная модель относится к области элементе, один из зубчатых секторов имеет машиностроения и может быть использована в возможность зацепления своими зубьями с составе механизмов, преобразующих зубьями одной из зубчатых реек ведомого ...

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19-08-2020 дата публикации

Устройство преобразования движения

Номер: RU0000199172U1

Полезная модель относится к области машиностроения, а именно к передачам для преобразования вращательного движения в возвратно-поступательное движение. Технический результат полезной модели заключается в повышении мощности устройства, который достигается за счет того, что устройство преобразования движения, содержащее замкнутую цепную передачу, звено цепи с опорой-держателем и привод возвратно-поступательного движения, отличающееся тем, что опора-держатель выполнена в виде прямого пальца, на конце которого одним из своих колец смонтирован подшипник качения, с противоположной стороны к другому из колец подшипника смонтирована пластина, соединенная с замкнутым вокруг блоков тросом, при этом расстояние между блоками выполнено, как минимум, равным половине длине цепи, рядом с пластиной и с диаметрально противоположной стороны к тросу смонтированы опоры с рычагами. 6 з.п. ф-лы, 4 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 199 172 U1 (51) МПК F16H 19/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16H 19/06 (2020.02) (21)(22) Заявка: 2020105308, 05.02.2020 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Чижов Владимир Михайлович (RU) Дата регистрации: 19.08.2020 Приоритет(ы): (22) Дата подачи заявки: 05.02.2020 (45) Опубликовано: 19.08.2020 Бюл. № 23 1 9 9 1 7 2 R U (54) УСТРОЙСТВО ПРЕОБРАЗОВАНИЯ ДВИЖЕНИЯ (57) Реферат: Полезная модель относится к области держатель выполнена в виде прямого пальца, на машиностроения, а именно к передачам для конце которого одним из своих колец преобразования вращательного движения в смонтирован подшипник качения, с возвратно-поступательное движение. Технический противоположной стороны к другому из колец результат полезной модели заключается в подшипника смонтирована пластина, соединенная повышении мощности устройства, который с замкнутым вокруг блоков тросом, при этом достигается за счет того, что устройство расстояние между блоками выполнено, ...

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20-08-2021 дата публикации

Устройство преобразования возвратно-поступательного движения во вращательное с функцией выработки электроэнергии

Номер: RU0000206085U1

Полезная модель Устройство преобразования возвратно-поступательного движения во вращательное с функцией выработки электроэнергии относится к электромеханическим преобразователям энергии, служащим для преобразования механической энергии возвратно-поступательного движения, источником которой является мускульная сила, во вращательное движение, и далее в электрическую энергию, а также быть адаптировано к спортивному тренажеру. Устройство преобразования механической энергии возвратно-поступательного движения во вращательное с возможностью поддержания постоянного момента усилия и выработки электроэнергии, включающее в себя закрепленный одним концом на неподвижной опоре неподвижный вал, на котором соосно с возможностью вращения установлены друг за другом храповик с тросом и второй храповик, а с другой стороны вала установлен шкив большего диаметра, выполненный с возможностью вращения, при этом параллельно неподвижному валу установлен внутренний вал, снаружи которого расположен внешний полый вал, на внутреннем валу установлена стальная спиральная пружина, на одном конце внутреннего вала установлен подвижный шкив малого диаметра, который через ремень соединен со шкивом большего диаметра, а на другом конце внутреннего вала установлена шестерня с возможностью вращения, которая соединена с шестерней малого диаметра, установленной на параллельно расположенном валу генератора, который посредством электрического проводника соединен с блоком выпрямления и аккумулирования. Техническая задача заявляемого решения заключается в создании преобразователя энергии возвратно-поступательного движения переменной тяги в стабилизированное вращательное движение привода вала электрического генератора с выработкой электродвижущей силы и зарядного тока для питания маломощных электрических приборов (гаджетов) и/или накопления и использования. 3 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 206 085 U1 (51) МПК H02K 7/07 (2006.01) F16H 19/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ ...

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13-09-2021 дата публикации

Электропривод с электромеханическим позиционированием выходного вала

Номер: RU0000206430U1

Полезная модель относится к авиационным электроприводам и, в частности, к вращательным электромеханизмам, а также может быть использована в других областях техники. Предложен электромеханизм, содержащий планетарный редуктор, путевые сигнализаторы и сочлененный с планетарным редуктором ротор электродвигателя с электромагнитной фрикционной муфтой. Ротор электродвигателя снабжен постоянными магнитами, а статор с m-фазной обмоткой ротора подключен к инвертору напряжения, соединенному с процессором, входы которого подключены к формирователю режима удержания ротора, к датчику положения ротора, путевым сигнализаторам и к системе автоматического управления. При этом путевые сигнализаторы выполнены на магниточувствительных элементах. Технический результат, на достижение которого направлена полезная модель, состоит в увеличении ресурса, повышении эксплуатационной надежности, быстродействия и получения возможности фиксировать (затормаживать) выходной вал в промежуточных положениях между крайними положениями выходного вала. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 206 430 U1 (51) МПК F16H 19/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F16H 19/00 (2021.02) (21)(22) Заявка: 2021101276, 21.01.2021 (24) Дата начала отсчета срока действия патента: Дата регистрации: (73) Патентообладатель(и): Акционерное общество "Электропривод" (RU) 13.09.2021 (45) Опубликовано: 13.09.2021 Бюл. № 26 2 0 6 4 3 0 R U (54) Электропривод с электромеханическим позиционированием выходного вала (57) Реферат: Полезная модель относится к авиационным удержания ротора, к датчику положения ротора, электроприводам и, в частности, к вращательным путевым сигнализаторам и к системе электромеханизмам, а также может быть автоматического управления. При этом путевые использована в других областях техники. сигнализаторы выполнены на Предложен электромеханизм, содержащий магниточувствительных элементах. Технический планетарный редуктор, путевые ...

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28-02-2013 дата публикации

Geared motor and manufacturing method therefor

Номер: US20130047765A1
Автор: Mamoru Yamaoka
Принадлежит: Nidec Sankyo Corp

A geared motor may include a motor and a gear mechanism for transmitting rotation of the motor. The gear mechanism includes an output gear which outputs rotation of the motor and a gear in a preceding stage which is connected with the output gear through another gear and the output gear is formed with a first positioning part showing an angular position of the output gear and the gear in the preceding stage is formed with a second positioning part showing an angular position of the gear in the preceding stage. After an assembling angular position of the output gear and an assembling angular position of the gear in the preceding stage have been determined, another gear is assembled.

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21-03-2013 дата публикации

DEVICE FOR PRESSING ON A RACK

Номер: US20130068048A1
Автор: BAREIS Helmut
Принадлежит:

A device for pressing a rack onto a pinion engaging the rack, more particularly for a steering system of a motor vehicle, comprises a pressure piece which is slidably guided in a housing and which is loaded in the direction of the rack, and an adjusting device. Devices made of metal are known from the prior art, which, however, generate excessive noise emissions during operation. Therefore, the pressure piece is made of plastic and the adjusting device is made of metal and/or plastic. 1. A device for pressing a rack onto a pinion engaging the rack , more particularly for a steering system of a motor vehicle , comprising a pressure piece , which is slidably guided in a housing and which is loaded in the direction of the rack an adjusting device comprising two disks which are made of metal or plastic and which bear against one another at contact surfaces , the contact surfaces having at least two slanting surface segments , the disks being rotatable relative to one another by way of a torsion spring , the pressure piece being made of plastic , a sliding element which is manufactured together with the pressure piece as multiple-component injection molded part and which is disposed between the pressure piece and the rack , wherein the shape of the sliding element is matched to the contour of the rack.2. The device according to claim 1 , wherein the pressure piece is equipped in the interior thereof with ribs oriented in the direction of the center of the pressure piece.3. The device according to claim 2 , wherein the pressure piece comprises claim 2 , in the interior thereof claim 2 , a bearing face matched to the contour of a spring washer.4. The device according to claim 1 , wherein at least one damping element which is manufactured together with the pressure piece as a multiple-component injection molded part claim 1 , is disposed between the pressure piece and the first transfer element housing.57.-. (canceled)8. The device according to claim 1 , comprising an ...

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02-05-2013 дата публикации

Slide-Out Room System Having Wall-Mounted Drive Mechanisms With Brake

Номер: US20130106130A1
Принадлежит:

An apparatus for moving a slide-out room disposed in an aperture of a side wall of a vehicle from a retracted position to an extended position in a drive direction. The apparatus includes a drive assembly supported by the side wall of the vehicle within the aperture, and the drive assembly includes a prime mover having a brake engagable to inhibit unintentional movement of the slide-out room. A driven assembly is driven by the drive assembly. The driven assembly is connected to a wall of the slide-out room such that the slide-out room moves with the driven assembly from the retracted position to the extended position in the drive direction. 1. An apparatus for moving a slide-out room disposed in an aperture of a side wall of a vehicle from a retracted position to an extended position in a drive direction , the apparatus comprising:a drive assembly supported by the side wall of the vehicle at one side of the aperture, the drive assembly including a prime mover having a brake engagable to inhibit unintentional movement of the slide-out room; anda driven assembly driven by the drive assembly, the driven assembly being connected to a wall of the slide-out room at a side of the slide-out room adjacent said one side of the aperture such that the slide-out room moves with the driven assembly from the retracted position to the extended position in the drive direction.2. The apparatus of claim 1 , wherein the brake is a dynamic brake that is automatically engaged when the prime mover is de-energized.3. The apparatus of claim 2 , wherein the prime mover further includes a rotary encoder.4. The apparatus of claim 1 , wherein the drive assembly includes a rotatable pinion driven by the prime mover and the driven assembly includes a rack driven by the pinion.5. The apparatus of claim 4 , wherein the drive assembly includes a drive support rotatably supporting the pinion claim 4 , and the drive support engages the rack to inhibit the rack from disengaging the pinion.6. The ...

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09-05-2013 дата публикации

Numerically Controlled Tower Type Combination Drive Pumping Unit

Номер: US20130112021A1
Автор: Mao Hongwei
Принадлежит:

A numerical controlled combination drive tower pumping unit includes a main tower frame, a power system, a drive system, a control system, a balance weight box, a balance weight pull rope, a wire rope wheel, a drive rope, and a wire rope hanger. The control system is connected to the power system to control the speed and the reversing position of the power system. The power system is mechanically connected to the wire rope wheel. The wire rope wheel is mounted on a wire rope wheel shaft. Two ends of the wire rope wheel shaft are placed on the wire rope wheel support and are respectively installed in two roller wheels. The wire rope wheel shaft or two roller wheels are placed on a rolling plane. There are limiting blocks at both ends of the rolling plane, and there are also locating blocks to fix the roller wheels. 17-. (canceled)8. A Numerically Controlled Tower Type Combination Drive Pumping Unit which includes a main tower frame , a power system , a drive system , a control system , a balance weight box , a balance weight pull rope , a wire rope wheel , a drive wire rope , and a wire rope hanger; wherein the power system , the drive system , the control system , and the wire rope wheel are installed on an operation platform at the top of the main tower frame; the control system is connected to the power system to control a speed and a reversing position of the power system; the power system is connected dynamically with the wire rope wheel through the drive system; the wire rope wheel is fastened to the wire rope wheel shaft; two ends of the wire rope wheel shaft or roller wheels are fastened to the split body bearing seat placed on the wire rope wheel supports; the special feature of this invention lies on that the lengthened support installation allows the wire rope wheel shaft or the roller wheels to move back and forth on the flat rolling plane; Limiting plates are installed at both ends of the rolling plane , and position locating blocks are also installed on ...

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23-05-2013 дата публикации

Mandrel, set of mandrels, and hollow rack bar

Номер: US20130125689A1
Автор: Takashi Yamawaki
Принадлежит: Neturen Co Ltd

The present invention includes a bar having a maximum cross section region smaller than a minimum cross section region of a hollow portion of a pipe P, and projected portions mounted along an axial direction of the bar and including a projected portion with maximum extent Hb, extent Ha of the projected portion positioned at a leading end side of the bar is set to be smaller than extent Hb of the projected portion positioned at a center side in the axial direction, and extent Hc of the projected portion positioned at a base end side of the bar is set to be less than or equal to extent Hb of the projected portion.

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30-05-2013 дата публикации

OPERATOR MECHANISM

Номер: US20130133447A1
Принадлежит: SMART OPENERS PTY LTD.

An operator ratchet mechanism for effecting reciproctable lateral movement if an element of a geared drive train in a door, gate or barrier operator. The operator ratchet mechanism can be utilised to cause disconnection between the geared drive train and an electric motor of the door gate or barrier operator to enable the door gate or barrier to me manually moved, and subsequent reconnection between the geared drive connection and electric motor. An embodiment of a tilt door operator which enables disconnection and reconnection between a geared drive train and an electric motor of the operator by effecting lateral displacement of an element of the geared drive train is also disclosed. 1. An operator ratchet mechanism for effecting reciprocatable lateral movement of an element of a geared drive train in a door , gate or barrier operator so that in one lateral position drive in the geared drive train will be effected to permit the operator to open and close a door , gate or barrier , and so that in another lateral position drive in the geared drive train will be disconnected so the door , gate or barrier can be manually operated ,said element being coaxial with at least one drive axle of one gear within the geared drive train, and wherein said element is biased in a direction towards said one lateral position,said ratchet mechanism comprising a user operable member mounted for user initiated arcuate rotation about an axis between a first position and a second position, and being biasable to return to said first position in the absence of user initiation arcuate rotation,said user operable member being able to ratchet index rotate a first cam plate about said axis by an amount corresponding to the angular displacement between said first position and said second position, and to bias return to said first position after being rotated to said second position whilst leaving said first cam plate indexed at said second position,said first cam plate having a cam face on an ...

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06-06-2013 дата публикации

PINION SENSOR ASSEMBLY, PINION SENSOR COVER ASSEMBLY, AND ELECTRONIC POWER STEERING APPARATUS HAVING THE SAME PIPE

Номер: US20130140105A1
Автор: JI Sung Ho
Принадлежит: MANDO CORPORATION

Disclosed are a pinion sensor assembly and an electric power steering apparatus having the same. According to the present invention, it is possible to substantially reduce the number of constitutional elements to be assembled when assembling a torque sensor and neighboring elements, to reduce an error in change of torque caused by accumulation of assembling errors of the constitutional elements, thereby preventing a malfunction, and to enhance assemblability. 1. A pinion sensor assembly comprising:an input shaft connected with a steering shaft;a pinion shaft, the top side of which is coupled with the input shaft, and the bottom side of which is inserted into a rack housing to be engaged with a rack bar; anda torque sensor provided with a wire harness connector, the input shaft and the pinion shaft being axially inserted through and coupled to the torque sensor.2. The pinion sensor assembly as claimed in claim 1 , wherein the torque sensor is provided with a first cylinder part on the top side thereof claim 1 , and a second cylinder part on the bottom side claim 1 , and the outer peripheries of the input shaft and the pinion shaft are inserted into the first and second cylinder parts claim 1 , respectively.3. The pinion sensor assembly as claimed in claim 2 , wherein the input shaft is provided with a first diametrically protruding seating part on the bottom side outer peripheral part claim 2 , and an end of the first cylinder part is supported by and coupled to the first seating part claim 2 , and wherein the pinion shaft is formed with a second diametrically protruding seating part on the top side outer peripheral part claim 2 , and a terminal end of the second cylinder part is supported by and coupled to the second seating part.4. The pinion assembly as claimed in claim 1 , wherein the torque sensor is provided with a diametrically extending support part claim 1 , and the wire harness connector is formed on the top side of the support part to axially protrude.5. A ...

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20-06-2013 дата публикации

Force Transfer Mechanism

Номер: US20130152713A1
Автор: Kim Young Hee
Принадлежит:

A force transfer mechanism includes cylindrical guide housing; a movable body which is slidably arranged in the guide housing so as to move in a linear direction by means of an externally applied force, and which includes a cutout groove having one or more inclined surfaces, and through-holes formed in a direction perpendicular to the linear motion direction in portions corresponding to the inclined surfaces; and a slave unit, one end of which is coupled to the movable body such that said end passes through the through-holes of the movable body and moves along the inclined surfaces of the cutout groove vertically relative to the movement direction of the movable body, and the other end of which is elastically supported. 1. A force transfer mechanism comprising:a guide housing having a container shape;a movable body arranged slidably in the guide housing, moving in a linear direction by means of an externally applied force, including a cutout groove having one or more inclined surfaces, and including a through-hole formed in a direction perpendicular to the linear moving direction at a part corresponding to the inclined surfaces; anda slave unit including a first end coupled to the movable body such that the first end passes through the through-hole of the movable body and moves along the inclined surfaces in the direction perpendicular to the linear moving direction of the movable body, further including a second end elastically supported to the guide housing, and moving in the direction perpendicular to the linear moving direction of the movable body by interlocking with a linear motion of the movable body.2. The force transfer mechanism of claim 1 , wherein the movable body and the slave unit are returned to original positions when the force externally applied to the movable body is removed.3. The force transfer mechanism of claim 1 , wherein the slave unit includes:a shaft passing through both the movable body and the guide housing and installed movably;a slider ...

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20-06-2013 дата публикации

SEAL STRUCTURE

Номер: US20130152714A1
Автор: IMAOKA Takayuki
Принадлежит: HI-LEX CORPORATION

An object of the present invention is to provide a seal structure being capable of preventing rain water and the like from entering the inside of a vehicle through a clearance between an engagement portion and an engagement hole portion. The seal structure S is for fixing a window regulator WR to an inner panel . The inner panel is provided with an engagement hole portion H, and the window regulator WR comprises an engagement portion being slidable with respect to the inner panel and engaging with the engagement hole portion H, a sealing member provided around the engagement portion , and a seal supporting portion holding the sealing member between the seal supporting member and the portion of the inner panel surrounding the engagement hole portion H. 1. A seal structure for fixing a window regulator to an inner panel of a vehicle , comprising the inner panel provided with an engagement hole portion and the window regulator;the window regulator comprisinga carrier plate to be connected to a window glass of a vehicle,a guide rail for guiding the carrier plate to upward and downward in moving of the carrier plate,an orientation changing member provided at one end of the guide rail, a drive member,a wire wound around the carrier plate and the drive member,an engagement portion being slidable with respect to the inner panel and engaging with the engagement hole portion,a sealing member provided around the engagement portion, anda seal supporting portion holding the sealing member between the seal supporting portion and a portion of the inner panel surrounding the engagement hole portion, when the engagement portion is engaged with the engagement hole portion.2. The seal structure of claim 1 , whereinthe orientation changing member is provided with a rotating shaft portion engaged rotatably with respect to the inner panel,the drive member is provided at another end of the guide rail, andthe engagement portion is provided on the drive member.3. The seal structure of claim ...

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27-06-2013 дата публикации

Steering system for boats

Номер: US20130160689A1
Принадлежит: Ultraflex S.p.A.

A steering system for boats includes a control member of the steering wheel type, lever type or the like connected to a driving shaft of a transmission composed of at least two transmission elements dynamically engaged one with the other, of which one is an input and the other one an output elements. The output element drives a member transferring the motion of the control member to an operating unit, such that a movement/rotation of the control member is transmitted to the transfer member through such transmission. Moreover, at least the input element is produced from a material obtained by a sintering process. 1. A steering system for boats comprising:a control member connected to a driving shaft of a transmission,said transmission comprising at least two transmission elements dynamically engaged one with the other, one of said transmission elements being an input transmission element and one of said transmission elements being an output transmission element, said output element driving a motion transfer member transferring a motion of said control member to an operating unit, such that a movement/rotation of said control member is transmitted to said motion transfer member through said transmission,wherein at least said input element comprises a material obtained by a sintering process.2. The steering system according to claim 1 , wherein said transmission comprises at least a first gear wheel engaging with at least a second gear wheel claim 1 , which second gear wheel drives said member transferring the motion of said control member to an operating unit.3. The steering system according to claim 1 , wherein said transmission is composed of a central pinion causes to rotate by said control member claim 1 , said central pinion engaging at least two peripheral pinions claim 1 , said peripheral pinions engaging an internal toothing of a gear wheel claim 1 , said gear wheel driving said motion transfer member claim 1 ,said central pinion and said peripheral pinions ...

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04-07-2013 дата публикации

TRANSMISSION MECHANISM ADAPTED TO AN ELECTRO-MECHANICAL LOCK AND ELECTRO-MECHANICAL LOCK THEREWITH

Номер: US20130167598A1
Принадлежит: TAIWAN FU HSING INDUSTRIAL CO., LTD.

A transmission mechanism adapted to an electro-mechanical lock and for driving a latch assembly to be unlocked is disclosed. The transmission mechanism includes a bottom plate, a pushing member, a clutch member and an electro-actuating member. The bottom plate includes at least one first pushed structure. The pushing member includes at least one second pushed structure. The clutch member abuts against the pushing member. The electro-actuating member is for driving the pushing member to rotate toward a first direction. The at least one second pushed structure cooperates with the at least one first pushed structure to move the pushing member relative to the bottom board, so that the clutch member is pushed with movement of the pushing member to an unlocked position. 1. A transmission mechanism adapted to an electro-mechanical lock and for driving a latch assembly to be unlocked , the transmission mechanism comprising:a bottom plate comprising at least one first pushed structure;a pushing member comprising at least one second pushed structure;a clutch member abutting against the pushing member; andan electro-actuating member for driving the pushing member to rotate toward a first direction, the at least one second pushed structure cooperating with the at least one first pushed structure to move the pushing member relative to the bottom board, so that the clutch member is pushed with movement of the pushing member to an unlocked position.2. The transmission mechanism of claim 1 , further comprising:a driving cam connected to the latch assembly, the driving cam engaging with the clutch member when the clutch member is pushed with the movement of the pushing member to the unlocked position, so that the clutch member drives the driving and the latch assembly to be in an unlocked status.3. The transmission mechanism of claim 2 , further comprising:an elastic member disposed between the clutch member and the driving cam, the elastic member driving the clutch member to move ...

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04-07-2013 дата публикации

TRANSMISSION MECHANISM AND ELECTRO-MECHANICAL LOCK THEREWITH

Номер: US20130167671A1
Принадлежит: TAIWAN FU HSING INDUSTRIAL CO., LTD.

A transmission mechanism includes a first rotating wheel, a second rotating wheel and an interference mechanism. The interference mechanism includes an engaging slot, a containing slot and an engaging member. The engaging slot is formed on the first rotating wheel, and the engaging slot includes an arc-shaped concave surface. The containing slot is formed on the second rotating wheel. The engaging member is located in the at least one containing slot, and the engaging member includes an arc-shaped convex surface. The first rotating and the second rotating wheel simultaneously rotate when the arc-shaped convex surface of the at least one engaging member engagingly contacts with the arc-shaped concave surface of the at least one containing slot. The first rotating wheel and the second rotating wheel do not simultaneously rotate when the at least one engaging member disengages from the at least one containing slot. 1. A transmission mechanism , comprising:a first rotating wheel;a second rotating wheel; and at least one engaging slot formed on the first rotating wheel, the at least one engaging slot comprising an arc-shaped concave surface;', 'at least one containing slot formed on the second rotating wheel; and', 'at least one engaging member located in the at least one containing slot, the at least one engaging member comprising an arc-shaped convex surface;', 'wherein the first rotating wheel interferes with the second rotating wheel and is capable of simultaneously rotating with the second rotating wheel when the arc-shaped convex surface of the at least one engaging member engagingly contacts with the arc-shaped concave surface of the at least one containing slot, and the first rotating wheel does not interfere with the second rotating wheel and be incapable of simultaneously rotating with the second rotating wheel when the at least one engaging member disengages from the at least one containing slot., 'an interference mechanism disposed between the first rotating ...

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04-07-2013 дата публикации

LOCKING BRAKE FOR A SEAT ACTUATOR

Номер: US20130167674A1
Автор: Ciulla Peter, Doell Chris
Принадлежит: ITT Corporation

Seat actuators and methods for operating seat actuators are disclosed. A seat actuator comprises an actuator interface, a motor, and a brake. The actuator interface is adapted to be coupled to a corresponding seat interface. The motor is operable to provide a force to the actuator interface. The brake comprises a plurality of interlocking components. The brake is operable to prevent movement of the actuator interface by a mechanical interlocking of the plurality of interlocking components. A method for operating the seat actuator comprises operating a motor of the seat actuator to provide a force to an actuator interface, and operating a brake to prevent movement of the actuator interface by mechanically interlocking a plurality of interlocking components of the brake. 1. A seat actuator comprising:an actuator interface adapted to be coupled to a corresponding seat interface;a motor operable to provide a force to the actuator interface; anda brake comprising a plurality of interlocking components, the brake operable to prevent movement of the actuator interface by a mechanical interlocking of the plurality of interlocking components.2. The seat actuator of claim 1 , wherein the plurality of interlocking components comprise a set of mechanical teeth.3. The seat actuator of claim 1 , wherein in an unpowered state claim 1 , the brake is automatically placed in a locked position.4. The seat actuator of claim 3 , wherein the brake comprises a spring element for maintaining the plurality of interlocking components in the locked position.5. The seat actuator of claim 4 , wherein the brake comprises a magnetic release mechanism for releasing the plurality of interlocking components from the locked position.6. The seat actuator of claim 1 , further comprising a gear train coupled to the motor claim 1 , the motor adapted to provide the force to the actuator interface using the gear train.7. The seat actuator of claim 6 , wherein the gear train provides a rotary force to the ...

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04-07-2013 дата публикации

SECTOR GEAR AND GAS-INSULATED SWITCHGEAR HAVING THE SAME

Номер: US20130167675A1
Автор: KIM Hyung Choon
Принадлежит: HUNDAI HEAVY INDUSTRIES CO., LTD.

Provided is a sector gear including: a drive gear having a drive part that forms a part of a circle and has a plurality of teeth and a non-drive part that forms a remaining part of the circle and provides a non-contact angle of at least approximately 90 degrees; first and second movers forming a disconnector and a grounded breaking switch, respectively; and first and second driven gears engaged with the drive gear and respectively engaged with the first and second movers and configured to make the first mover or the second mover operate in conjunction with the drive part of the drive gear according to a direction of rotation of the drive gear, wherein an intermediate angle between the first and second movers is between approximately 90-135 degrees. The present invention can reduce the size of the gas-insulated switchgear having the sector gear. 1. A sector gear comprising:a drive gear including a drive part that forms a part of a circle and includes a plurality of teeth and a non-drive part that forms a remaining part of the circle and provides a non-contact angle of at least 90 degrees;a first mover forming a disconnector;a second mover forming a grounded breaking switch; andfirst and second driven gears engaged with the drive gear and respectively engaged with the first and second movers and configured to make the first mover or the second mover operate in conjunction with the drive part of the drive gear according to a direction of rotation of the drive gear, whereinan intermediate angle between the first and second movers is between approximately 90-135 degrees.2. The sector gear as set forth in claim 1 , wherein the first and second movers include first and second rack gears claim 1 , respectively claim 1 , and wherein the first and second rack gears are engaged with the first and second driven gears claim 1 , respectively.3. A gas-insulated switchgear having a sector gear claim 1 , the sector gear comprising:a drive gear including a drive part that forms a ...

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11-07-2013 дата публикации

ACTUATOR WITH JOINTS

Номер: US20130174680A1
Автор: Mihara Masaaki
Принадлежит: EMPIRE TECHNOLOGY DEVELOPMENT LLC

Implementations and techniques are generally disclosed for an actuator comprising: a first element, a second element, a third element, a first joint provided between the first element and the second element, a second joint provided between the second element and the third element, and a motor operably coupled to the first joint and configured such that the second element rotates with respect to the first element about a first rotational axis when the motor rotates, wherein the first joint is operably coupled to the second joint and configured such that the third element can rotate with respect to the second element about a second rotational axis when the motor rotates. 1. An actuator comprising:a motor;a first element;a second element;a third element; two first crown gears configured to oppose each other and to rotate about the first', 'rotational axis, wherein one of the two first crown gears is operably coupled to the motor;', 'a first spur gear configured to engage with the two first crown gears and to rotate about the', 'first rotational axis such that the two first crown gears rotate in opposite directions when the first spur gear rotates; and', 'two first thrust bearings provided between the first element and the corresponding first crown gears;, 'a first joint provided between the first element and the second element and adapted such that the second element is rotatable with respect to the first element about a first rotational axis, the first joint including two second crown gears configured to oppose each other and to rotate about the second rotational axis,', 'a second spur gear configured to engage with the two second crown gears and to rotate in', 'opposite directions when the second spur gear rotates, and', 'two second thrust bearings provided between the second element and the corresponding second crown gears;, 'a second joint provided between the second element and the third element and adapted such that the third element is rotatable with respect to ...

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18-07-2013 дата публикации

Thermoforming Trim Press, Drive Gear Assembly and Method

Номер: US20130180347A1
Принадлежит:

A thermoforming trim press and a drive assembly for a thermoforming trim press are provided. The drive assembly includes a frame, a drive motor, a drive linkage, a first bevel gear, and a second bevel gear. The drive motor is supported by the frame. The first bevel gearbox is supported by the frame and has an input shaft coupled with a drive gear, an output shaft coupled with a ring gear, and a housing supporting the input shaft, the output shaft, the drive gear and the output shaft in meshed gear rotation. The second bevel gearbox is supported by the frame in opposed relation with the first bevel gearbox and has an input shaft coupled with a drive gear, an output shaft coupled with a ring gear, and a housing supporting the input shaft, the output shaft, the drive gear and the output shaft in meshed gear rotation, the second bevel gearbox driven via the drive linkage with the output shaft driving in counter-rotation relative to the output shaft of the first bevel gearbox. A method for driving a moving platen on a trim press is also provided using opposed, identical beveled gearboxes. 1. A drive assembly for a thermoforming trim press , comprising:a frame;a drive motor supported by the frame;a drive linkage;a first bevel gearbox supported by the frame and having an input shaft coupled with a drive gear, an output shaft coupled with a ring gear, and a housing supporting the input shaft, the output shaft, the drive gear and the output shaft in meshed gear rotation; anda second bevel gearbox supported by the frame in opposed relation with the first bevel gearbox, coupled for co-rotation with the first bevel gearbox through the drive linkage, and having an input shaft coupled with a drive gear, an output shaft coupled with a ring gear, and a housing supporting the input shaft, the output shaft, the drive gear and the output shaft in meshed gear rotation, the second bevel gearbox driven via the drive linkage with the output shaft driving in counter-rotation relative to ...

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18-07-2013 дата публикации

ADJUSTMENT DRIVE FOR AN ADJUSTMENT DEVICE OF A MOTOR VEHICLE SEAT

Номер: US20130180348A1
Принадлежит:

An adjustment drive for an adjusting device of a motor vehicle seat includes a drive motor , a two-stage reduction gear and a housing for mounting a drive motor and for accommodating the two-stage reduction gear . The gear elements of the first reduction gear stage are arranged in a housing shell of the housing , which can be closed by a housing cover . In a front-end assembly connectable with the housing shell at least a part of the gear elements of the second reduction gear stage is arranged between the housing cover and a cover plate or cover and guide plate connected with the housing cover and is supported in axial direction. 131-. (canceled)32. An adjustment drive for an adjusting device of a motor vehicle seat with a drive motor , a reduction gear and a housing for mounting the drive motor and for accommodating a two-stage reduction gear , wherein gear elements of the first reduction gear stage are arranged in a housing shell of the housing , which can be closed by a housing cover , further comprising a front-end assembly connectable with the housing shell , in which at least a part of the gear elements of the second reduction gear stage is arranged between the housing cover and a cover plate connected with the housing cover and is supported in axial direction.34. The adjustment drive according to claim 32 , wherein the second recess is formed pot-shaped and the front-end assembly has a substantially cylindrical outer contour whose outside diameter is adapted to the inside diameter of the second recess and that the front-end assembly can be inserted flush into the second recess.35. The adjustment drive according to claim 32 , wherein the front-end assembly inserted into the second recess can be fixed at the housing shell in axial direction or wherein for anti-rotation protection the front-end assembly is insertable into the second recess or connectable with the housing shell with radial form fit and/or frictional contact.36. The adjustment drive according to ...

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18-07-2013 дата публикации

SELF-LEVELING APPARATUS

Номер: US20130181490A1
Автор: Lin Hsi Han
Принадлежит: SINGAPORE TECHNOLOGIES AEROSPACE LTD

A self-leveling apparatus, a tray table for use with a seat comprising such an apparatus, and a method of maintaining a horizontal level of a mounting member are provided. The self-leveling apparatus comprises: a gear train rotatable about a fixed reference point, the gear train comprising a first gear fixedly mounted to the reference point; a rotatable last gear, and an odd number of rotatable intermediate gears meshing between the first gear and the last gear; and a mounting member adapted to be coupled the last gear, the mounting member having a surface capable of being positioned horizontally; wherein the last gear is further adapted to rotate locally about its axis an equal and opposite amount to a system rotation by the gear train about the reference point, thereby maintaining the surface horizontal. 1. A self-leveling apparatus comprising: a first gear fixedly mounted to the reference point;', 'a rotatable last gear; and', 'an odd number of rotatable intermediate gears meshing between the first gear and the last gear; and, 'a gear train rotatable about a fixed reference point, the gear train comprisinga mounting member adapted to be coupled the last gear, the mounting member having a surface capable of being positioned horizontally;wherein the last gear is further adapted to rotate locally about its axis an equal and opposite amount to a system rotation by the gear train about the reference point, thereby maintaining the surface substantially horizontal.2. The apparatus as claimed in wherein the last gear and the first gear are the same first size.3. The apparatus as claimed in claim 2 , wherein the intermediate gears are the same second size.4. The apparatus as claimed in claim 3 , wherein the first and the second sizes are equal.5. The apparatus as claimed in claim 1 , wherein the axes of the first claim 1 , intermediate and last gears are in a straight line through the reference point.6. The apparatus as claimed claim 1 , wherein the mounting member is ...

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25-07-2013 дата публикации

POWER TRANSMISSION DEVICE

Номер: US20130186213A1
Автор: Lim Sun Ho
Принадлежит: SEJIN-IGB CO., LTD.

Disclosed is a power transmission device. A power transmission device according to one embodiment of the present invention includes: an input gear connected to a motor so that the input gear may rotate by the motor in a forward and backward direction; a planetary gear train circumscribing the input gear with respect to the input gear and rotating in association with the rotation of the input gear; a ring gear inscribing the planetary gear train and rotating relative to the planetary gear train; a main frame having a plurality of rollers coupled along the circumferential direction and interacting with a rack, and coupled with the ring gear on the outside of the ring gear; an irrotational rear side fixture disposed on an area where the input gear is positioned; and an irrotational front side fixture disposed at the opposite side of the irrotational rear side fixture via the ring gear and the main frame therebetween and coupled with the irrotational rear side fixture. 1. A power transmission device comprising:an input gear connected to a motor and rotated by the motor in forward and backward directions;a planetary gear train circumscribing the input gear around the input gear and rotating in association with a rotation of the input gear;a ring gear inscribed by the planetary gear train and relatively rotated by the planetary gear train;a main frame to which a plurality rollers that interact with a rack and relatively rotate are coupled in a circumferential direction, the main frame being coupled to the ring gear around the ring gear;an irrotational rear side fixture arranged in an area where the input gear is located; andan irrotational front side fixture arranged between the ring gear and the main frame at a side opposite to the irrotational rear side fixture and coupled to the irrotational rear side fixture.2. The power transmission device of claim 1 , wherein the main frame comprises:a front frame portion having a plurality of first roller insertion holes into which ...

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25-07-2013 дата публикации

GEAR DRIVE MECHANISM AND LIBRARY DEVICE

Номер: US20130186215A1
Автор: Tsuchiya Manabu
Принадлежит: NEC EMBEDDED PRODUCTS, LTD.

It is possible to reduce influence of backlash effectively and to carry out precise position control even if a drive mechanism uses rotary drive of gears. For this, in moving a subject to be moved by rotation of the gears, an original point for position control is positioned by use of a sensor flag, and afterward the position control is carried out. When positioning, a bias means generates a bias in a moving direction for movement to be moved that backlash of gear drive may be removed. This sets the backlash to substantial “zero” in positioning the original point, and stabilizes an original point reset position. 1. A gear drive mechanism which makes a subject to be moved move by rotation of a gear , wherein:an original point of the subject to be moved, which is used for position control, is positioned by use of a prescribed indicator of the original point, and when positioning the original point, a bias mechanism generates a bias in a direction of movement of the subject to be moved so that backlash of gear drive may be removed.2. A gear drive mechanism which makes a subject to be moved move by rotation of a gear , wherein:an original point indicator to define an original point of the subject to be moved which is used for controlling a position of the subject to be moved; andbias mechanism to generate a restoration force according to elastic deformation in a vicinity of the original point in a direction leaving from the original point and in a direction of movement of the subject to be moved when the subject to be moved stays in the vicinity of the original point.3. The gear drive mechanism according to claim 2 , further comprising a detection mechanism claim 2 , which is arranged on the subject to be moved claim 2 , to detect the original point indicator claim 2 , whereinthe original point indicator is made of a tabular member, anda position, where the detection mechanism detects a prescribed position, which is at an end of the tabular member, by movement of the ...

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01-08-2013 дата публикации

ELECTROACTIVE POLYMER (EAP) -BASED ROTARY MOTION DEVICES

Номер: US20130192910A1
Принадлежит: BATTELLE MEMORIAL INSTITUTE

Rotary motion devices () are provided. In one embodiment, the rotary motion devices () may comprise: a mass (); a circumferential component (); a plurality of spokes () connecting the mass () to the circumferential component (), at least one of the spokes () comprising an electroactive polymer, wherein: the at least one spoke () has at least one input electrode and is configured to deflect upon application of an electrical potential across the at least one input electrode, and the rotary motion device () is configured such that deflection of the at least one spoke () causes the mass () to move, thereby causing the rotary motion device () to become off balance with respect to gravity, and rotate. 1. A rotary motion device , comprising:a mass;a circumferential component; and 'the at least one spoke has at least one input electrode and is configured to deflect upon application of an electrical potential across the at least one input electrode, and the rotary motion device is configured such that deflection of the at least one spoke causes the mass to move, thereby causing the rotary motion device to become off balance with respect to gravity, and rotate.', 'a plurality of spokes connecting the mass and the circumferential component, at least one of the spokes comprising an electroactive polymer, wherein2. The rotary motion device of claim 1 , wherein the electroactive polymer comprises an ionic electroactive polymer.3. The rotary motion device of claim 1 , wherein the electroactive polymer comprises an ionic polymer metal composite.4. The rotary motion device of claim 1 , wherein the mass is configured to support a payload.5. The rotary motion device of claim 1 , wherein the plurality of spokes extend in a two dimensional plane and the circumferential component forms a wheel.6. The rotary motion device of claim 1 , wherein the plurality of spokes extend in three dimensions and the circumferential component forms a sphere.7. The rotary motion device of claim 1 , further ...

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08-08-2013 дата публикации

DIRECT DRIVE FOR EXERCISE MACHINES

Номер: US20130199317A1
Принадлежит: ICON HEALTH & FITNESS, INC.

An exercise machine includes a support structure, a crank shaft rotatably mounted on the support structure, a first planetary gear set operatively coupled to the crank shaft so that the crank shaft provides an input for the first planetary gear set, a second planetary gear set operatively coupled to the first planetary gear set so that an output of the first planetary gear set provides an input for the second planetary gear set, and a flywheel rotatably operatively coupled to the second planetary gear set so that an output of the second planetary gear set rotates the flywheel. 1. An exercise machine , comprising:a support structure;a crank shaft rotatably mounted on the support structure; a first sun gear rotatably mounted on the crank shaft,', 'a first planet carrier mounted on the crank shaft and secured thereto for rotation with the crank shaft,', 'a first planet gear rotatably mounted on the first planet carrier and meshing with the first sun gear, and', 'a first ring gear encircling and meshing with the first planet gear;', 'a second planetary gear set, comprising:', 'a second sun gear rotatably mounted on the crank shaft,', 'a second planet carrier rotatably mounted on the crank shaft,', 'a second planet gear rotatably mounted on the second planet carrier and meshing with the second sun gear, and', 'a second ring gear encircling and meshing with the second planet gear, wherein the first planetary gear set is operatively connected to the second planetary gear set such that an output rotation of the first planetary gear set causes an input rotation of the second planetary gear set; and, 'a first planetary gear set, comprisinga flywheel rotatably mounted on the crank shaft and being operatively connected to the second planetary gear set such that output rotation of the second planetary gear set causes rotation of the flywheel.2. The exercise machine of claim 1 , wherein the first sun gear is secured to the second planet carrier for rotation therewith so that an ...

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08-08-2013 дата публикации

ADJUSTMENT DRIVE WITH AN INTEGRATED OVERLOAD PROTECTOR

Номер: US20130199321A1
Принадлежит: ROBERT BOSCH GMBH

An adjustment drive for a component which can be operated both by means of the adjustment drive and also manually, in particular of a motor vehicle, wherein the adjustment drive comprises a drive unit and an output unit, wherein the output unit is provided in order to reduce the output speed of the drive unit, wherein the drive unit comprises a transmission component into which an overload protector is integrated. 1656612122122360. An adjustment drive () for a component () which can be operated both by means of the adjustment drive () and also manually , wherein the adjustment drive () comprises a drive () and a drive input unit () , wherein the drive () is provided for driving the drive input unit () and the drive input unit () is provided for effecting a reduction of a rotational speed of the drive () , characterized in that the drive input unit () comprises a gearing component (.′) into which an overload protector (′) is integrated.26223246024. The adjustment drive () as claimed in claim 1 , characterized in that the drive input unit () comprises at least one first gearing stage (.′) with a first drive output shaft () claim 1 , wherein the overload protector (′) is arranged on the first drive output shaft ().36231601246022311603601602602601. The adjustment drive () as claimed in claim 2 , characterized in that the gearing component (.′) has a first part (′) claim 2 , which is arranged rotationally conjointly on the first drive output shaft () claim 2 , and a second part (′) with a toothing (.′) claim 2 , and in that said gearing component furthermore comprises a coupling means (′) claim 2 , which is arranged between the first part (′) and the second part (′) and which is provided for coupling the second part (′) to the first part (′).460. The adjustment drive as claimed in claim 1 , characterized in that the overload protector (′) is provided for absorbing radial forces.5623231. The adjustment drive () as claimed in claim 2 , characterized in that the first ...

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08-08-2013 дата публикации

POWER GENERATION FOR VALVE ACTUATORS

Номер: US20130199322A1
Принадлежит: FLOWSERVE MANAGEMENT COMPANY

The present invention utilizes operation of a valve actuator to generate electrical power. A portion of the mechanical energy generated by operation of a valve actuator is converted to electrical energy. The mechanical energy may be converted to electrical energy at the same time as the valve actuator is operating or the mechanical energy may be stored for later conversion. A valve actuator may be operated manually, electrically, pneumatically, or hydraulically. Generated electrical energy may also be stored. 1. A valve actuator comprising:a drive train; andan electrical generator connected mechanically with the drive train.2. The valve actuator of claim 1 , wherein the drive train comprises a handwheel.3. The valve actuator of claim 2 , wherein the drive train further comprises a clutch operable to isolate the handwheel from the remainder of the drive train.4. The valve actuator of claim 1 , wherein the drive train comprises a worm shaft and a worm gear.5. The valve actuator of claim 1 , wherein the drive train comprises an actuator stem.6. The valve actuator of claim 1 , wherein the electrical generator is at least partially integrated into components of the drive train.7. The valve actuator of claim 1 , wherein the electrical generator is at least partially integrated into components of a valve actuated by the valve actuator.8. The valve actuator of claim 1 , further comprising a windable spring mechanically connected between the drive train and the electrical generator.9. The valve actuator of claim 1 , further comprising a clutch mechanism mechanically connected between the drive train and the electrical generator.10. The valve actuator of claim 1 , further comprising a speed increasing mechanism mechanically connected between the drive train and the electrical generator.11. The valve actuator of claim 1 , further comprising a speed decreasing mechanism mechanically connected between the drive train and the electrical generator.12. The valve actuator of claim 1 ...

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08-08-2013 дата публикации

MULTI-TEETH ENGAGEMENT IN AN ACTUATOR PISTON

Номер: US20130200285A1
Принадлежит:

An actuator for a valve assembly is provided. The actuator has an actuator body and at least one piston configured to travel within the actuator body. The actuator has an output shaft located at least partially within the actuator body and configured to couple to a valve stem of a valve wherein the output shaft has a plurality of teeth protruding from a pinion. The actuator has at least one rack configured to move with each of the at least one piston, the rack having a piston end and a terminal end and wherein the rack has a plurality of rack teeth configured to engage the plurality of teeth on the output shaft. The terminal end of the rack is configured to be maintained a minimum distance beyond an engagement point, wherein the engagement point is located between the rack teeth and the teeth in all operating positions. 1. An actuator for a valve assembly , comprising:an actuator body;at least one piston configured to travel within the actuator body;an output shaft located at least partially within the actuator body and configured to couple to a valve stem of a valve wherein the output shaft has a plurality of teeth protruding from a pinion;at least one rack coupled to and configured to move with each of the at least one piston the rack having a piston end and a terminal end and wherein the rack has a plurality of rack teeth configured to engage the plurality of teeth on the output shaft; andwherein the terminal end of the rack is configured to be maintained a minimum distance beyond an engagement point, wherein the engagement point is located between the rack teeth and the teeth in all operating positions.2. The actuator of claim 1 , wherein the at least one rack has at least one of the rack teeth between the terminal end and the engagement point at all times.3. The actuator of claim 1 , wherein the at least one rack has at least two of the rack teeth between the terminal end and the engagement point at all times.4. The actuator of claim 1 , wherein the at least ...

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15-08-2013 дата публикации

PUSH CHAIN, LINEAR MOTION DRIVING DEVICE AND PATIENT TABLE

Номер: US20130205926A1
Принадлежит: SIEMENS AKTIENGESELLSCHAFT

A push-chain includes a plurality of push-chain links, each push-chain link of the plurality of push-chain links including two strip-shaped mounting pieces disposed opposite one another and one connecting piece that connects at most half of an end face of the two mounting pieces at one side. Each of the two mounting pieces is provided with two mounting holes in the length direction. A distance between the two mounting holes is equal to half the length of the mounting piece. The mounting holes on the two mounting pieces are arranged opposite one another, and two corners on another side of each of the two mounting pieces are rounded corners allowing the push-chain to bend. Two adjacent push-chain links of the plurality of push-chain links are hinge-connected in a horizontally staggered arrangement by way of a chain pivot and the mounting holes.

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15-08-2013 дата публикации

ENGAGEMENT CHAIN TYPE DEVICE FOR FORWARD AND BACKWARD MOVEMENT OPERATION

Номер: US20130205927A1
Принадлежит: TSUBAKIMOTO CHAIN CO.

In order to stably drive a body to be driven such as a lifting table, an engagement chain type device () for forward and backward movement is configured in such a manner that a pair of engagement chains () has rigid chain portions (D). The rigid chain portions (D) are configured in such a manner that, within a predetermined range from the front ends of the chains in the direction in which the pair of engagement chains () is rigid, inner tooth plates () are constantly engaged with each other and outer tooth plates () are constantly engaged with each other. Square column-shaped reinforcement core members () fitted in the square column-shaped hollow sections (S) of the rigid chain portions (D) are connected to mounting members (C). 1. An engagement chain type advance/retract actuator comprising:a pair of engagement chains in each of which an inner link unit composed of hook-shaped inner tooth plates arranged spaced apart in a left and right pair is plurally coupled in a chain longitudinal direction by means of pairs of front and rear coupling pins press-fitted to pairs of front and rear pin holes of hook-shaped outer tooth plates adjacently arranged outside the inner link unit, the pair of engagement chains being integrated by meshing the inner tooth plates together facing each other while tilting against each other and the outer tooth plates together facing each other while tilting against each other, respectively, the pair of engagement chains being furcated by disengaging the mutually meshed inner tooth plates and the mutually meshed outer tooth plates, respectively;a drive sprocket advancing and retracting the pair of engagement chains; anda driven body mounted on chain distal ends of the pair of engagement chains via a mounting member and driven according to advancing and retracting movement of the pair of engagement chains, the actuator characterized in that:the pair of engagement chains have a chain stiff part in which the inner tooth plates and the outer tooth ...

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15-08-2013 дата публикации

DRIVE ASSEMBLY, DRIVE COMPONENT AND DRUG DELIVERY DEVICE

Номер: US20130211331A1
Принадлежит: SANOFI-AVENTIS DEUTSCHLAND GMBH

A drive assembly for a drug delivery device comprises a rotation member being configured to be rotated in a first direction during setting of a dose of a drug and to be rotated in a second direction during delivery of the dose, a drive component being configured to follow rotational movement of the rotation member in the second direction during delivery of the dose and a stop member being configured to prevent rotational movement of the drive component in the first direction. The drive component comprises a first drive part and a second drive part, coupled to each other such that relative rotational movement of the first and second drive parts is prevented and relative axial movement is permitted. 118-. (canceled)19. A drive assembly for a drug delivery device , the drive assembly comprising:a housing having a proximal end and a distal end,a rotation member being configured to be rotated in a first direction with respect to the housing during setting of a dose of a drug and to be rotated in a second direction with respect to the housing during delivery of the dose, the second direction being opposite to the first direction,a drive component being configured to follow rotational movement of the rotation member in the second direction during delivery of the dose,a stop member being configured to prevent rotational movement of the drive component in the first direction with respect to the housing and to permit rotational movement of the drive component in the second direction with respect to the housing,wherein the drive component comprises a first drive part and a second drive part, coupled to each other such that relative rotational movement of the first and second drive parts is prevented and relative axial movement is permitted, wherein the first drive part is configured for engagement with the rotation member and the second drive part is configured for engagement with the stop member.20. The drive assembly of claim 19 , comprising a piston rod being configured to ...

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22-08-2013 дата публикации

SWING DRIVE MECHANISM

Номер: US20130213159A1
Автор: Wu Shupeng

A swing drive mechanism, including: a vibrating mechanism, a motor driving the vibrating mechanism, and a transmission mechanism. The transmission mechanism is connected between the vibrating mechanism and the motor. The vibrating mechanism is provided with a grating and a photocoupler that detects the position of the vibrating mechanism. The photocoupler is electrically or electronically connected to a micro-control processor. The micro-control processor controls the photocoupler to detect the grating and adjusts the rotation speed of the motor. The micro-control processor is electrically or electronically connected to an accelerometer. 2. The swing drive mechanism of claim 1 , wherein{'b': 1', '18', '181', '18', '51, 'the vibrating mechanism () comprises a shell body () comprising a cavity (), and the shell body () is connected with the pendulum ();'}{'b': 181', '12', '11', '12, 'the cavity () comprises a central axis () which is sleeved with a hollow rotating shaft () rotating around the central axis ();'}{'b': 11', '13', '11, 'two ends of the hollow rotating shaft () are connected with turnplates () rotating with the hollow rotating shaft (), respectively;'}{'b': 13', '16', '15, 'each turnplate () is provided with an eccentric cavity () comprising an eccentric heavy block (); and'}{'b': 11', '32', '3', '11, 'the hollow rotating shaft () is provided with a driving medium () connected with the transmission mechanism () and driving the hollow rotating shaft ().'}3. The swing drive mechanism of claim 2 , wherein{'b': 3', '30', '2, 'the transmission mechanism () comprises a driving shaft () connected with a motor shaft of the motor ();'}{'b': '32', 'the driving medium () is a worm gear;'}{'b': '11', 'the worm gear and the hollow rotating shaft () are integrated as a whole; and'}{'b': 30', '31, 'the driving shaft () is provided with a worm () matching with the worm gear.'}4. The swing drive mechanism of claim 2 , wherein{'b': 18', '182', '183, 'the shell body () ...

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22-08-2013 дата публикации

ELECTRO MECHANICAL ACTUATOR

Номер: US20130213160A1
Принадлежит: EADS Construcciones Aeronáuticas S.A.

A two-stage linear actuator particularly applicable to aircraft control surfaces. The first stage comprises a rotary input shaft driven by an electric motor having a helical threaded zone in its external surface at its inner end and a plurality of first helical roller gears configured to engage with the rotary input shaft in its helical threaded zone for rotating together. The second stage comprises a plurality of second helical roller gears configured to engage with the first helical roller gears for rotating together and with an output shaft having a helical threaded zone in its external surface at its inner end for converting the rotation of the second helical roller gears in a linear movement of the output shaft. 1. A linear actuator comprising:a rotatory input shaft driven by an electric motor;an output shaft having a helical threaded zone in its external surface at its inner end;a first roller gear configured to rotate with respect to it axis when the input shaft rotates; the input shaft having a helical threaded zone in its external surface at its inner end;', 'a plurality of first roller gears being helical gears configured to engage with the rotatory input shaft in its helical threaded zone; and', 'the second roller gears being helical gears configured to engage with the first helical roller gears., 'a plurality of second roller gears configured to engage with the first roller gear and with the output shaft in its helical threaded zone so that the rotation of the first roller gear is firstly transmitted to the second roller gears, which rotate with respect to their axis, and secondly converted in a linear movement of the output shaft,'}2. A linear actuator according to claim 1 , wherein the input shaft is a hollow shaft and the output shaft is placed in an inner conduit comprising the inside of the input shaft.3. A linear actuator according to claim 1 , wherein the first helical roller gears are arranged tangentially with respect to the input shaft and the ...

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22-08-2013 дата публикации

ROLLER-MOUNTED RACK AND PINION DRIVE

Номер: US20130213161A1
Принадлежит: ThyssenKrupp Presta AG

Rack and pinion drive for a motor vehicle, with a steering housing (), in which a steering pinion () is rotatably mounted and is in engagement with a tooth segment () of a toothed rack () displaceably mounted in the steering housing () in the direction of a longitudinal axis (), wherein the tooth segment () forms an even surface with the upper face thereof facing the steering pinion (), wherein the toothed rack () has two guide surfaces (), which are even and are oriented at an acute angle to a surface normal of the tooth segment (), and wherein at least one guide roller () is provided on either side of the toothed rack (), said rollers being in contact with the guide surfaces (), wherein the two guide rollers () are provided respectively on a left and a right side of the pinion when viewed from a toothing engagement point with the toothed rack. 1. A rack and pinion drive for a motor vehicle , including:a steering housing, having a steering pinion is rotatably mounted and in engagement with a tooth segment of a toothed rack displaceably mounted in the steering housing in the direction of a longitudinal axis of the steering housing ,wherein the tooth segment forms an even surface, with an upper face thereof facing the steering pinion,wherein the toothed rack has two guide surfaces, which are even and are oriented at an acute angle to a surface normal of the tooth segment,wherein at least one guide roller is provided on each either side of the toothed rack said guide rollers being in contact with the guide surfaces, andwherein the two guide rollers are provided respectively on a left and a right side of the steering pinion when viewed from a toothing engagement point with the toothed rack.2. The rack and pinion drive according to claim 1 , further including further guide roller is provided on a left and/or a right side opposite a respective guide roller .3. The rack and pinion drive according to claim 1 , wherein the toothed rack is guided into the guide rollers in ...

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29-08-2013 дата публикации

Continuously variable transmission

Номер: US20130220039A1
Принадлежит: Individual

A continuously variable transmission includes: an input movement, a control system, a continuously variable reciprocating movement, a first holder, a second holder, an output gear. The holders having the reciprocating movement. Each of the holders having a linearly movable teeth. The movable teeth are perpendicularly oscillated to the reciprocating movement. Each of the movable teeth having an internal end and an exposed end. The exposed end having a first slope and a second slope. The first slope having a greater slope than the second slope.

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05-09-2013 дата публикации

HEAD SUPPORT THAT CAN BE MOVED IN THE X DIRECTION

Номер: US20130229043A1
Принадлежит: Johnson Controls GmbH

The invention relates to a head support comprising a head support case that can be moved in relation to at least one stay bar in the X direction. The invention also relates to a locking system. 1. A head support with a head support box that is displaceable in an X direction relative to at least one holding bar , wherein the head support box has one interlocking and/or frictional means on both of two opposite outer walls and has in each case two interlocking and/or frictional means on at least one inner wall , and wherein a first and a second pinion are arranged between in each case two interlocking and/or frictional means , the pinions respectively engaging with an interlocking and/or frictional means and meshing with each other.2. The head support as claimed in claim 1 , wherein at least one stabilizing element is provided in the head support box claim 1 , the stabilizing element being rotationally mounted on a holding bar and having a slot-shaped recess which receives another holding bar.3. The head support as claimed in claim 2 , comprising two stabilizing elements vertically spaced apart from each other.4. The head support as claimed in claim 3 , wherein the stabilizing elements are arranged in an opposed manner.5. The head support as claimed in claim 1 , comprising a locking means.6. A system with a locking means provided in a positionally fixed manner and having two wings rotatable about an axis of rotation claim 1 , and having a spring means which pushes the wings apart claim 1 , the wings interacting in an interlocking and/or frictional manner with interlocking and/or frictional means of a component provided in a longitudinally displaceable manner relative to the locking means.7. The system as claimed in claim 6 , wherein the component has a folding means which compresses the wings.8. The system as claimed in claim 7 , wherein the component has a guide means which keeps the wings together. The present invention relates to a head support with a head support ...

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19-09-2013 дата публикации

MOTOR-DRIVEN POWER STEERING APPARATUS

Номер: US20130239712A1
Принадлежит: Showa Corporation

In a motor-driven power steering apparatus, in an intermediate assembled state in which an input shaft, an output shaft, a torsion bar, a worm gear, a worm wheel, a torque detecting apparatus and a spiral cable are assembled in a gear housing, and an electric motor is not assembled yet, a rotation preventing arm which prevents the worm gear from rotating is loaded with respect to the gear housing. 1. A motor-driven power steering apparatus comprising:an input shaft and an output shaft being coaxially connected via a torsion bar;a drive gear connected to an electric motor, the drive gear being pivoted to a gear housing;a driven gear engaging with the drive gear, the driven gear being fixed to an intermediate portion of the output shaft;a torque detecting structure detecting a steering torque applied to the input shaft, the torque detecting structure being provided between the input shaft and the output shaft;a spiral cable spirally wound around the same axis of the input shaft and the output shaft in an inner portion of the gear housing; andone end portion of the spiral cable being connected to the torque detecting structure, another end portion of the spiral cable being connected to a detection result pickup portion, driving of the electric motor being controlled on the basis of a steering torque which the torque detecting structure detects,wherein in an intermediate assembled state in which the input shaft, the output shaft, the torsion bar, the drive gear, the driven gear, the torque detecting structure and the spiral cable are assembled in the gear housing, and the electric motor is not assembled yet, a rotation preventing structure which prevents the drive gear from rotating is loaded with respect to the gear housing.2. The motor-driven power steering apparatus as claimed in claim 1 , wherein the rotation preventing structure is constructed by a rotation preventing arm claim 1 , andwherein the rotation preventing arm has a boss portion which is coupled to a ...

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26-09-2013 дата публикации

Friction Driving Mechanism

Номер: US20130252782A1
Автор: Olrik Henrik-Gerner
Принадлежит: Liniax ApS

Friction driving mechanism for converting a rotating movement of a member into an axial movement of the same and consisting of driving means and to its rotating member connected friction means. The friction means comprises a holder in which there is a number of mutually movable and with the holder in relation to the shaft rotating balls as the axes of rotation of the balls are oblique in relation to the longitudinal axis if the shaft Each of the rotatable balls are according to the invention embedded in rotatable bearing bushes If the shaft meets a stop so that the balls no longer are able to transmit an axial movement to the shaft the axes of rotation of the balls will try to adjust so as to be approximately parallel to the shaft As a result the balls at regular intervals will change position so that the wear is equally distributed over the whole surface of each ball. The advantage is that the friction driving mechanism has a longer lifetime than previously known. 1. A friction driving mechanism for converting a rotating movement of a member into an axial movement of the member , the friction driving mechanism including driving means and friction means connected to the member , said friction means comprising a holder , a plurality of rotatable balls that are mutually movable relative to the member and the holder , axes of rotation of said balls being oblique in relation to a longitudinal axis of the rotating member , each of the plurality of rotating balls is in contact with a rotatable bearing bush , each rotatable bearing bush in some areas is closely connected to each ball and is in frictional engagement therewith.2. The friction driving mechanism according to claim 1 , wherein the holder comprises two portions connected to each other through elastic clamping means clamping against the rotatable bearing bushes for the balls.3. The friction driving mechanism according to claim 2 , wherein the clamping means may be adjusted by adjusting the distance between the ...

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03-10-2013 дата публикации

ROBOT ARM DRIVING APPARATUS AND ROBOT ARM HAVING THE SAME

Номер: US20130255410A1
Принадлежит: Samsung Electronics Co., Ltd

A robot arm capable of being driven with a small force while having an enhanced rigidity includes a joint unit formed by stacking a plurality of link modules up against each other, and at least one driving device allowing the joint unit to pivot along at least one axis, wherein the driving device includes a cable disposed to pass through the plurality of link modules a plurality of times, a plurality of multi-turn pulleys configured to change a path of the cable when the cable passes therethrough, such that the cable passes through the plurality of link modules, and a driving unit configured to pull or push the cable such that the joint unit pivots. 1. A robot arm comprising:a joint unit formed by stacking a plurality of link modules; andat least one driving device allowing the joint unit to pivot along at least one axis,wherein the driving device comprises:a cable;a plurality of pulleys configured to change a path of the cable, such that the cable passes through the plurality of link modules a plurality of times; anda driving unit configured to provide a tension force on the cable such that the joint unit pivots.2. The robot arm of claim 1 , wherein the cable comprises:a first line disposed to pass through first parts of the plurality of link modules in a parallel manner a plurality of times; anda second line disposed to pass through second parts of the plurality of link modules in a parallel manner a plurality of times, the second part disposed at an opposite side to the first part.3. The robot arm of claim 2 , wherein the cable forms a closed loop by connecting the first line to the second line.4. The robot arm of claim 2 , wherein the first line and the second line are connected to each other at the driving unit to form a closed loop.5. The robot arm of claim 2 , wherein the joint unit comprises a cap module disposed at an end part of the joint unit and configured to allow the first line to be connected to the second line.6. The robot arm of claim 1 , wherein ...

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24-10-2013 дата публикации

MOTORIZED BEVERAGE MACHINE WITH MECHANICAL TRANSMISSION

Номер: US20130276638A1
Автор: Kristlbauer Jurgen
Принадлежит:

A machine () for preparing a beverage comprises: a first part () and a second part () movable relative to the first part; a motor () having a drive member () such as a rotating drive axis; one or more mechanical transmission members (--) for transmitting a movement of the drive member to the movable part () for moving the movable part; and a transmission frame () for supporting the motor and the movable transmission member(s). The transmission frame is an integral component () on which the motor and the transmission members are directly mounted. 230200. The machine of claim 1 , wherein the movable part () is mounted claim 1 , in particular slidably and/or rotatably mounted claim 1 , on the transmission frame ().3200. The machine of or claim 1 , wherein the transmission frame () has:{'b': 201', '510', '511', '30', '510', '511, 'a bearing part () for supporting said drive member (,) and permitting movements thereof relative to the transmission frame for moving the movable part () by the drive member (,) via the moving mechanical transmission member(s); and/or'}{'b': 512', '201, 'a fixing part for fixing a motor frame, such as a motor housing (), the fixing part having in particular an integral seat () for receiving the motor frame.'}420020220652152352452630510511. The machine of any preceding claim claim 1 , wherein the transmission frame () has one or more bearing parts ( claim 1 ,) claim 1 , in particular parts delimiting bearing surfaces claim 1 , for supporting said one or more mechanical transmission members (-;-) and permitting movements thereof relative to the transmission frame for moving the movable part () by the drive member ( claim 1 ,) via the moving mechanical transmission member(s).5521523524526200202206. The machine of claim 4 , wherein each of said one or more mechanical transmission members (-;-) is directly connected to the transmission frame () by a bearing part ( claim 4 ,) selected from plain bearings claim 4 , rolling-element bearings claim 4 , ...

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07-11-2013 дата публикации

Actuator That Can Be Decoupled, in Particular Having an Electromechanical Drive

Номер: US20130291664A1
Принадлежит: Asturia Automotive Systems AG

An actuator having an electromechanical drive and a housing is provided. The driving torque provided by an electric motor is transmitted by gear train to two actuator outputs connected to two parts of a stabilizer. The gear train is an eccentric gear train, the drive shaft of which is driven by the electric motor. An overall eccentric driven by the drive shaft has on its circumference a drive gear having a first outer profile and a second outer profile different therefrom. In the operating state the drive gear first outer profile is connected to a first inner profile of a first one of the outputs and the drive gear second outer profile is connected to a second inner profile of the second one of the outputs, and the connection can be eliminated by changing the eccentricity of the eccentric such that both outputs can rotate freely relative to each other. 110-. (canceled)11. An actuator of stabilizer , the actuator having two outputs , comprising:an electromechanical drive;a housing;a gear train having a drive shaft; andan electric motor, the actuator has two outputs, each output being configured to be connected to one of two halves of the stabilizer,', 'a driving torque provided by the electric motor is transmitted by the gear train to the two actuator outputs,', 'the gear train is an eccentric gear train,', 'the drive shaft is arranged to be driven by the electric motor,', 'the eccentric gear train includes a drive gear having a first outer profile and a second outer profile which is different from the first outer profile', 'the drive gear is configured to be driven by the drive shaft,', 'in an operating state of the actuator the first drive gear outer profile is operatively connected to a first inner profile of a first one of the two outputs and the drive gear second outer profile is operatively connected to a second inner profile of a second one of the two outputs, and', 'the operative connection can be eliminated by changing an eccentricity of the eccentric such ...

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07-11-2013 дата публикации

XYtheta PRECISION ALIGNMENT PLATFORM

Номер: US20130291667A1
Автор: WU MAU-HSIANG
Принадлежит:

A xyθ precision alignment platform including three power units and three moving platforms is provided. Two of the power units can drive a third moving platform moving in X or Y direction. The other power unit has a worm which can drive an arcuate teeth arrange disposed between the second and third moving platforms to drive the third moving platform rotating. Whereby, since the worm is arranged to drive the arcuate teeth arrange laterally, the alignment platform is thin and the rotative movement of the third moving platform can be precisely controlled. Additionally, each power unit may be electrically connected to a controller for respectively driving and controlling each power unit. When only the rotation of the third moving platform is required, only one of the power units needs to be driven, thus simplifying the operation of the alignment platform and improving the work efficiency. 1. A xyθ precision alignment platform , including:a base;at least one Y-axis guideway unit, mounted to the base;a first moving platform, movably coupled with each Y-axis guideway unit, the first moving platform and the base being parallel;a first power unit, including a first motor and a first rod member driven by the first motor, the first motor mounted to the base, wherein the first motor drives the first rod member moving to move the first moving platform along each Y-axis guideway unit;at least one X-axis guideway unit, co-movable with the first moving platform, the X-axis guideway unit and the Y-axis guideway unit being nonparallel;a second moving platform, movably coupled with each X-axis guideway unit, the second moving platform and the base being parallel;a second power unit, including a second motor and a second rod member driven by the second motor, the second motor mounted to one of the first moving platform, the first rod member and each X-axis guideway unit, wherein the second motor drives the second rod member to move the second moving platform along each X-axis guideway ...

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14-11-2013 дата публикации

Advancing/retracting actuation device with meshing chain

Номер: US20130298705A1
Принадлежит: Tsubakimoto Chain Co

An interlocking chain type forward and backward actuating device is provided that does not increase workload involved in assembling the device, adjusting the rotation phase, and servicing and maintaining the device. The device is capable of smoothly actuating a driven body by advancing and retracting the body, and of preventing any pulsation or the like of the meshing chain. The interlocking chain type forward and backward actuating device includes chain-guide grooves formed so as to equalize an interlocked-state pin-to-pin distance (D 1 ) between a pair of connecting pins that face each other in a chain interlocking imaginary plane (S) and a rigid-state pin-to-pin distance (D 2 ) between a pair of connecting pins

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14-11-2013 дата публикации

MECHANICAL MANIPULATOR FOR SURGICAL INSTRUMENTS

Номер: US20130304084A1

A novel mechanical system, based on a new cable driven mechanical transmission, able to provide sufficient dexterity, stiffness, speed, precision and payload capacity to actuate multi-DOF micro-manipulators. Besides the possibility of being used in several articulated surgical instruments and robotic systems for surgery or other applications involving remote manipulation, it enables the design of a novel fully mechanical surgical instrument, which offer the advantages of conventional laparoscopy (low cost, tactile feedback, high payload capacity) combined with the advantages of single port surgery (single incision, scarless surgery, navigation through several quadrants of the abdominal cavity) and robotic surgery (greater degrees of freedom, short learning curve, high stiffness, high precision, increased intuition). The unique design of the proposed system provides an intuitive user interface to achieve such enhanced manoeuvrability, allowing each joint of a teleoperated slave system to be driven by controlling the position of a mechanically connected master unit. 1. A mechanism for remote manipulation comprising:a plurality of movable links; anda plurality of actuated joints placed between the said links, in a serial, parallel or hybrid configuration; anda plurality of joint driven pulleys, placed on each said actuated joint, with the axis co-linear with the axis of the respective joint, actuating different degrees of freedom of the mechanism; anda plurality of actuation pulleys, remotely placed relatively to the movable links of the said mechanism wherein the actuation commands are transmitted to said driven pulleys by means of a cable driven mechanical transmission; andsaid cable driven mechanical transmission comprising a plurality of driving cables, each coupling an actuation pulley at a proximal location of the mechanism and another one of said joint driven pulley, and wherein at least one of said joints is a co-axial joint where the axis of adjoining links ...

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21-11-2013 дата публикации

THREE-SHAFT ADJUSTMENT MECHANISM WITH ALTERED MASS DISTRIBUTION AND METHOD FOR PRODUCING A SHAFT GENERATOR

Номер: US20130305853A1
Принадлежит: SCHAEFFLER TECHNOLOGIES AG & CO. KG

A three shaft adjustment mechanism including a drive part which can be connected to a drive shaft in a rotationally fixed manner, a driven part which can be connected to a driven shaft, and an actuator which can be connected to an adjustment shaft as a mechanism part. A mechanical stop for defining an adjustment angle between the drive shaft and driven shaft is provided between two of the three shafts. According to the invention, the mechanism part not involved in the stop has a mass distribution or form which is such that a quotient from its mass moment of inertia J and its partial radius r is smaller than 0.4 kg×mm. The invention also relates to a method for producing a shaft generator having this type of mechanism. 1. Triple-shaft adjustment mechanism , comprising a drive part that is connected to a drive shaft in a rotationally fixed manner , a driven part that is connected to a driven shaft , and an actuator that is connected to an adjustment shaft , a first mechanical stop is arranged between two of the three shafts for defining an adjustment angle between the drive shaft and the driven shaft , the mechanism part that is not part of the stop has a mass distribution or shape resulting in a quotient of less than 0.4 kg×mm calculated from a mass moment of inertia J and a reference circle radius r thereof.2. Triple-shaft adjustment mechanism according to claim 1 , wherein the stop is provided between the drive part and the driven part and the mechanism part that is not part of the stop is the actuator that is formed by a shaft generator of the shaft mechanism.3. Triple-shaft adjustment mechanism according to claim 1 , wherein the actuator is formed at least partially from plastic or lightweight metal.4. Triple-shaft adjustment mechanism according to claim 3 , wherein a base body of the shaft generator is made from plastic or lightweight metal.5. Triple-shaft adjustment mechanism according to claim 2 , wherein an adjustment shaft and an elliptical inner ring of the ...

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21-11-2013 дата публикации

GEAR CHANGE ACTUATOR

Номер: US20130305855A1
Автор: Skogward Kenneth
Принадлежит:

A gear change actuator () including first and second rotary members () each rotatable in opposite first and second directions, the rotary members () engaged with a select unit (), which is engaged with an output member () having an output axis. The select unit () has opposite first and second input motions, and opposite third and fourth input motions, induced by simultaneous rotation of the first and second rotary members ( The select unit () has opposite first and second output movements that are transmutations of the select unit () first and second input motions, respectively. The select unit () also has opposite third and fourth output movements that are transmutations of the select unit third and fourth input motions, respectively. The output member () has movements, respectively imparted by the select unit () output movements, that are one of rotationally about the output axis and axially along the output axis. 1. A gear change actuator for use with a change-gear transmission , comprising:an output member having an output axis, said output member adapted for changing between different gear shifter positions in a transmission through movement of said output member relative to said output axis;a select unit operably engaged with said output member, said select unit having opposite first and second output movements and opposite third and fourth output movements, a respective one of a plurality of different movements of said output member relative to said output axis being imparted to said output member during a respective one of said select unit first, second, third and fourth output movements;a first motor having a drive axis and comprising a first rotary member, said first rotary member capable of rotation in opposite first and second directions about said first motor drive axis;a second motor having a drive axis and comprising a second rotary member, said second rotary member capable of rotation in opposite first and second directions about said second motor ...

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28-11-2013 дата публикации

ENGAGEMENT CHAIN TYPE DEVICE FOR FORWARD AND BACKWARD MOVEMENT OPERATION

Номер: US20130312554A1
Принадлежит: TSUBAKIMOTO CHAIN CO.

Provided is an interlocking chain forward and backward actuating device type device, the device being configured so that the space within the device is effectively utilized and that a device configuration most suitable for driving interlocking chains is selected to enable the interlocking chains to be smoothly driven. An interlocking chain type forward and backward actuating device () is configured in such a manner that a pair of flat face-shaped chain support faces (AS, AS) which sandwich and support a rigid chain portion (G) from both sides thereof each form a portion of each of the guide groove faces () of chain guide grooves () while being continuously connected to each of a pair of curved guide faces (BS, BS) which respectively guide disengaged portions (H, H) of a pair of interlocking chains (), the disengaged portions (H, H) having been disengaged from each other. 1. An interlocking chain type forward and backward actuating device comprising a pair of interlocking chains , a drive sprocket , and a chain guide , whereinthe interlocking chains are each composed by coupling, in the chain longitudinal direction, a great number of pairs of hook-shaped inner tooth plates facing each other in the chain width direction and a great number of pairs of hook-shaped outer tooth plates arranged on the outer sides of the hook-shaped inner tooth plates in the chain width direction by pairs of front and rear connecting pins,the interlocking chains are integrally made rigid to form a rigid chain part in a state where the interlocking chains are interlocked with each other and arranged to face each other,the interlocking chains are disengaged from each other to bifurcate,the drive sprocket engages with a first one of the pair of interlocking chains from the side face of the rigid chain part to freely advance and retreat the pair of interlocking chains, andthe chain guide has chain guide grooves that interlock a second one of the interlocking chains with the first interlocking ...

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05-12-2013 дата публикации

RACK SHAFT SUPPORT DEVICE AND STEERING SYSTEM INCLUDING RACK SHAFT SUPPORT DEVICE

Номер: US20130319141A1
Принадлежит: JTEKT CORPORATION

A rack shaft support device includes: a support yoke, a plug, an intermediate cam component and a rotation force generating spring. The plug includes a plug body, a plug cap component and a locknut. The plug body has a plug fixing portion, a plug back wall portion, a plug cam portion, a plug internal space and a first restricting portion. The first restricting portion has a first body portion and a first facing portion. The intermediate cam component includes an intermediate cam body, an intermediate cam portion and a second restricting portion. The second restricting portion has a second body portion and a second facing portion. The second facing portion faces the first facing portion. 1. A rack shaft support device characterized by comprising:a support yoke that is arranged in an accommodating portion of a rack housing for accommodating a rack shaft and that moves the rack shaft in a pressing direction toward the pinion shaft in the accommodating portion; the plug fixing portion being arranged across the support yoke from the rack shaft in the accommodating portion and being fixed to the rack housing,', 'the plug cam portion being arranged closer to the support yoke than the plug fixing portion and having a first cam face,', 'the plug back wall portion being formed across the plug fixing portion from the support yoke,', 'the first restricting portion protruding from the plug back wall portion toward the support yoke;, 'a plug that has a plug fixing portion, a plug cam portion, a plug back wall portion and a first restricting portion,'} the intermediate cam body being arranged closer to the support yoke than the plug in the accommodating portion and having an axis extending in the pressing direction,', 'the intermediate cam portion being formed around the intermediate cam body and having a second cam face that contacts the first cam face,', 'the second restricting portion protruding from the intermediate cam body toward the plug and facing the first restricting ...

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05-12-2013 дата публикации

Actuation system

Номер: US20130319143A1
Принадлежит: National Taiwan University NTU

Disclosed is an actuation system for adjusting the rigidity of elastic elements by using two sets of transmission modules together with a link gear and two sets of nonlinear elastic elements. The actuation system actuates an external arm by controlling the two sets of transmission modules to rotate in different directions and adjusts the rigidity of the elastic elements by controlling the two sets of transmission modules to rotate in the same direction, so as to achieve the effects of reducing the number of actuation modules used, minimizing the volume of the actuation system, and reducing production cost.

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05-12-2013 дата публикации

GEAR SYSTEM AND DRIVER

Номер: US20130319145A1
Автор: SHIMADA Toshiaki
Принадлежит:

A gear system includes: an internal gear ; an external gear ; an input shaft rotatably inserted into a center hole formed in the external gear ; and an anti-rotation section configured to block rotation of the external gear . The input shaft has an eccentric part . The anti-rotation section is formed such that the input shaft is inserted into the anti-rotation section , and is rotatable about a center line of the input shaft . The gear system includes: a brake configured to disable movement of the anti-rotation section about the input shaft ; and a clutch system configured to select one of a coupling state in which the anti-rotation section and the input shaft are coupled together to rotate together, and a non-coupling state in which the anti-rotation section and the input shaft are rotatable relative to each other. 1. An eccentrically oscillating gear system comprising:an internal gear;an external gear disposed inward of the internal gear to mesh with the internal gear, and including teeth that are different in number from teeth of the internal gear;an input shaft rotatably inserted into a center hole formed in the external gear; andan anti-rotation section engaging with the external gear to block rotation of the external gear, whereinthe input shaft has an eccentric part that is eccentric relative to a center line of the input shaft,in a situation where the anti-rotation section blocks the rotation of the external gear, the external gear is eccentrically oscillated while meshing with the internal gear by rotating the input shaft with the eccentric part being inserted into the center hole of the external gear,the anti-rotation section is formed such that the input shaft is inserted into the anti-rotation section, and is rotatable about the center line of the input shaft, a brake configured to disable movement of the anti-rotation section about the input shaft; and', 'a clutch system configured to select one of a coupling state in which the anti-rotation section and ...

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12-12-2013 дата публикации

MULTI-SHAFT DRIVE DEVICE

Номер: US20130327166A1
Принадлежит: NHK SPRING CO., LTD.

A power transmission member that transmits rotation of an output shaft to a movable mechanism achieves a simpler structure and increased productivity compared to when a conventional flexible cable is employed. Out of plural output portions of a clutch unit power transmission members that transmit rotation of an output shaft to a movable mechanism are configured by a conventional torque cable in a second output portion B and a third output portion C. However in a first output portion A, the power transmission member is configured by a gearbox including a worm that is coaxially and integrally formed with an output shaft A. 1. A multi-shaft drive device comprising:an input portion to which power of a motor is transmitted;a plurality of output portions, each of which is provided with an output shaft, the output shafts being individually connected to a plurality of movable mechanisms;a clutch part capable of selectively disconnecting power transmission from the input portion to the plurality of output portions; anda gearbox that includes a power transmission member provided coaxially to the output shaft of at least one output portion out of the plurality of output portions, and that connects together the output shaft and the movable mechanism.2. The multi-shaft drive device of claim 1 , wherein the power transmission member is integrally formed with the output shaft.3. The multi-shaft drive device of claim 1 , wherein the power transmission member includes a worm claim 1 , and the gearbox includes a worm wheel that engages with the worm.4. The multi-shaft drive device of claim 1 , further comprising a device case integrally provided with:a clutch unit case portion housing the plurality of output portions, the input portion, and a clutch unit, the clutch unit including a plurality of clutch parts; anda gearbox case portion housing the gearbox.5. The multi-shaft drive device of claim 1 , wherein the clutch part comprises:a plurality of clutch mechanisms that are ...

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12-12-2013 дата публикации

MOVING MECHANISM, ROBOT HAND, ELECTRONIC COMPONENT TRANSPORT DEVICE, ELECTRONIC COMPONENT INSPECTION DEVICE, LIQUID FEED PUMP, PRINTING DEVICE, PROJECTION DEVICE, AND TRANSPORT DEVICE

Номер: US20130328967A1
Автор: MIYAZAWA Osamu
Принадлежит:

A moving mechanism includes a support, a moving body arranged movably in a predetermined direction relative to the support, a first groove provided in the support parallel to the moving direction, a second groove provided in the moving body parallel to the moving direction, and facing the first groove, and a vibrating body arranged in the support or moving body and biased to press the other of the moving body or the support. A direction which the first groove and the second groove face each other intersects a direction which the support and the moving body face each other, and a biasing direction which the vibrating body is biased intersects the direction which the first groove and the second groove face each other and the direction which the support and the moving body face each other. Accordingly, backlash of the moving body with respect to the support is suppressed. 1. A moving mechanism comprising:a support;a moving body which moves in a predetermined moving direction with respect to the support;a pair of first grooves which are provided on the support and formed parallel to the moving direction;a pair of second grooves which are provided on the moving body and face the first grooves;a plurality of rolling bodies which are provided between the first grooves and the second grooves, and roll in accordance with movement of the moving body;two rows of moving shafts which include the rolling bodies rolling between the first grooves and the second grooves, and are parallel to the moving direction, the two rows of the moving shafts are separated from each other in a direction intersecting a direction in which the support and the moving body face each other; anda vibrating body which includes a piezoelectric material generating vibration and is supported by one of the support and the moving body while being biased toward the other one of the support and the moving body,wherein a direction in which the first grooves and the second grooves face each other intersects the ...

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19-12-2013 дата публикации

SCANNER AND IMAGE FORMING APPARATUS HAVING THE SAME THAT REDUCES THE TILTING OF A MOVING UNIT

Номер: US20130333494A1
Автор: LEE Seung-jae
Принадлежит: SAMSUNG ELECTRONICS CO., LTD.

Disclosed are a scanner and an image forming apparatus including the same. The scanner may include a scanner unit; a support unit configured to support the scanning unit; a first pinion rotatably disposed on the support unit and configured to move along a first rack of a first surface of a guide member; and a second pinion rotatably disposed on the support unit and configured to move along a second rack of a second surface of the guide member such that the direction of rotation of the second pinion is opposite to the direction of rotation of the first pinion, the second surface of the guide member being different from the first surface of the guide member. 1. An operating method of a scanner comprising a scanning unit , a movable unit on which the scanning unit is mounted and on which first and second pinions are disposed , and a stationary guide member , the method comprising:moving the first pinion along a first rack of a first surface of the stationary guide member; andlimiting an amount of tilting of a moving object in the scanning unit,wherein the limiting comprises transferring a rotation force generated when the first pinion moves, to the second pinion, and moving the second pinion along a second rack of a second surface of the stationary guide member different from the first surface thereof, such that a direction of rotation of the second pinion is opposite to a direction of rotation of the first pinion.2. The method according to claim 1 , wherein moving the second pinion comprises rotating such that a second rotational moment caused by the rotation of second pinion has the same magnitude and is opposite in direction to a first rotational moment caused by the rotation of the first pinion.3. The method according to claim 1 , wherein the first pinion and the second pinion have substantially the same pitch.4. The method according to claim 1 , wherein the first surface and the second surface of the guide member are opposite from each other.5. The method ...

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19-12-2013 дата публикации

LENS DRIVE UNIT AND IMAGING APPARATUS

Номер: US20130333495A1
Принадлежит: SONY CORPORATION

A lens drive unit includes: a driven member that moves a lens in an optical axis direction; a first gear rotated by a drive force of a drive motor; a second gear rotated by a drive force of a manual operation section; a third gear that engages with the first gear and the second gear and is rotated when the first gear is rotated but the second gear is not rotated whereas rotated when the second gear is rotated but the first gear is not rotated; and a fourth gear rotated when the third gear is rotated to transmit the drive force of the drive motor or the drive force of the manual operation section to the driven member, wherein the reduction ratio of the fourth gear to the first gear is set to be greater than the reduction ratio of the fourth gear to the second gear. 1. A lens drive unit comprising:a driven member that moves a lens in an optical axis direction;a first gear rotated by a drive force of a drive motor;a second gear rotated by a drive force of a manual operation section;a third gear that engages with the first gear and the second gear and is rotated when the first gear is rotated but the second gear is not rotated whereas rotated when the second gear is rotated but the first gear is not rotated; anda fourth gear rotated when the third gear is rotated to transmit the drive force of the drive motor or the drive force of the manual operation section to the driven member,wherein the reduction ratio of the fourth gear to the first gear is set to be greater than the reduction ratio of the fourth gear to the second gear.2. The lens drive unit according to claim 1 ,wherein a sun gear is used as the first gear,an internal gear coaxial with the first gear is used as the second gear,a planetary gear that rotates on an axis thereof and revolves around the first gear is used as the third gear, and a planetary carrier is used as the fourth gear.3. The lens drive unit according to claim 1 ,wherein the reduction ratio of the fourth gear to the first gear is set to be ...

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19-12-2013 дата публикации

Adjustment Mechanism for Vehicle Seat, Vehicle Seat Comprising Such a Mechanism

Номер: US20130333496A1
Принадлежит: Faurecia Sièges d'Automobile

An adjustment mechanism for vehicle seat, comprising a gearbox, an eccentric element driven by a driving unit, an eccentric gear wheel rotatably mounted on the eccentric element, a drive output unit equipped with an inner gear ring which cooperates with the eccentric gear wheel by partial engagement of the teeth, a sliding block equipped with a first and a second longitudinal guide, the sliding block cooperating with the eccentric gear wheel by the first longitudinal guide, the sliding block cooperating with the gearbox by the second longitudinal guide, the material of the second longitudinal guide having a lower hardness than the hardness of the material of the eccentric gear wheel. 1. An adjustment mechanism for a vehicle seat , comprising:a gearbox,{'b': '5', 'an eccentric element driven by a driving unit,'}an eccentric gear wheel rotatably mounted on the eccentric element,a drive output unit equipped with an inner gear ring which cooperates with the eccentric gear wheel by partial engagement of the teeth,a sliding block equipped with a first and a second longitudinal guide, the sliding block cooperating functionally with the eccentric gear wheel by means of the first longitudinal guide, the sliding block cooperating functionally with the gearbox by means of the second longitudinal guide,wherein the material of the second longitudinal guide has a lower hardness than the hardness of the material of the eccentric gear wheel.2. The mechanism according to claim 1 , wherein the material of the first longitudinal guide has a greater hardness than the hardness of the material of the second longitudinal guide.3. The mechanism according to claim 1 , wherein the first longitudinal guide of the sliding block cooperates functionally with a first counter-element of the eccentric element claim 1 , said first longitudinal guide and said first counter-element being made of a heat-treated metal.4. The mechanism according to claim 1 , wherein the second longitudinal guide of the ...

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19-12-2013 дата публикации

TRANSMISSION DEVICE

Номер: US20130333497A1
Автор: SU LIANG-CHING
Принадлежит: HON HAI PRECISION INDUSTRY CO., LTD.

A transmission device includes a bracket, a belt, a driven module, and a limiting member. The bracket includes a mounting plate and a limiting piece extending from the mounting plate. The idle module is slidably mounted to the mounting plate. The belt is engaged with the idle module and preventing the idle module from sliding along a first direction relative to the mounting plate. The limiting member is located in a side of the idle module and rotatably mounted to the limiting piece. The limiting member abuts the idle module along the first direction, to prevent the idle module from sliding along a second direction, which is opposite to the first direction. 1. A transmission device comprising:a bracket comprising a mounting plate and a limiting piece extending from the mounting plate;an idle module slidably mounted to the mounting plate;a belt engaged with the idle module and preventing the idle module from sliding along a first direction relative to the mounting plate; anda limiting member located in a side of the idle module and rotatably mounted to the limiting piece;wherein the limiting member abuts the idle module along the first direction, to prevent the idle module from sliding along a second direction, which is opposite to the first direction.2. The transmission device of claim 1 , wherein the idle module comprises a base claim 1 , an idle wheel secured to a first side of the base claim 1 , and an extension arm extending from a second side of the base claim 1 , and the limiting member abuts the extension arm.3. The transmission device of claim 2 , wherein the extension arm comprises a side surface claim 2 , the side surface is substantially perpendicular to the mounting plate claim 2 , and the limiting member abuts the side surface.4. The transmission device of claim 3 , wherein the limiting piece defines a locking hole with inner threads claim 3 , and the limiting member comprises threaded portions having outer threads corresponding to the inner threads.5. ...

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26-12-2013 дата публикации

TRANSMISSION MECHANISM AND PRINTER WITH TRANSMISSION MECHANISM

Номер: US20130340546A1
Автор: TSAI CHI-JUNG
Принадлежит: HON HAI PRECISION INDUSTRY CO., LTD.

A transmission mechanism includes a guide rod, a gear assembly meshed with the guide rod, a blocking member attached to the guide rod, and a resilient member. The resilient member surrounds the guide rod. A first end of the resilient member abuts the blocking member, and a second end opposite to the first end is configured to abut a printer. The resilient member drives the guide rod to rotate the gear assembly. 1. A transmission mechanism comprising:a guide rod;a gear assembly meshed with the guide rod;a blocking member attached to the guide rod; anda resilient member surrounding the guide rod, a first end of the resilient member abutting the blocking member, and a second end opposite to the first end configured to abut a printer,wherein the guide rod is movable to rotate the gear assembly by the resilient member.2. The transmission mechanism of claim 1 , wherein the guide rod comprises a guide rod body claim 1 , the blocking member comprises a ring claim 1 , and the ring surrounds the guide rod body.3. The transmission mechanism of claim 2 , wherein the first end of the resilient member abuts the ring.4. The transmission mechanism of claim 2 , wherein the guide rod body defines a circular groove in the middle of the guide rod claim 2 , the blocking member comprises a plurality of latch tabs located on the ring claim 2 , and the plurality of latch tabs are engaged in the circular groove.5. The transmission mechanism of claim 2 , wherein the guide rod further comprises a protruding portion located on the guide rod body claim 2 , and the gear assembly is meshed with the protruding portion.6. The transmission mechanism of claim 5 , wherein a plurality of racks are located on the protruding portion claim 5 , the gear assembly comprises a gear claim 5 , and the plurality of racks are meshed with the gear.7. A printer comprising:a lid defining an opening and comprising a receiving portion located on one side of the opening, the receiving portion defining a receiving slot; ...

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02-01-2014 дата публикации

Chain Positioning System

Номер: US20140000393A1
Автор: Oscar Moya Rojo
Принадлежит: Hewlett Packard Development Co LP

A chain positioning system is disclosed that has a chain that contains a plurality of links joined together, end-to-end, with a plurality of pins. The chain can be moved between a retracted position and an extended position. The links of the chain limit rotation about the pins in one direction.

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09-01-2014 дата публикации

RACK SHAFT SUPPORTING DEVICE AND STEERING SYSTEM USING THE SAME

Номер: US20140007716A1
Автор: KOMETANI Hideo
Принадлежит: JTEKT CORPORATION

A rack shaft supporting device includes a support yoke, a plug that closes the other opening of an accommodation chamber, a ball screw mechanism between the support yoke and the plug, and a torsion urging member between the ball screw mechanism and the plug. The ball screw mechanism includes: a first threaded portion in which a first thread groove is formed; a second threaded portion in which a second thread groove is formed; and balls arranged in a rolling path formed of the first thread groove and the second thread groove. The torsion urging member rotates the second threaded portion relative to the plug and moves the second threaded portion toward the support yoke. 1. A rack shaft supporting device arranged in an accommodation chamber formed on a back side of a rack shaft , the back side being an opposite side of the rack shaft from a side on which the rack shaft meshes with a pinion , the accommodation chamber having one opening opposed to the rack shaft , an inner peripheral wall recessed from the one opening in a direction away from the rack shaft , and the other opening opened at a bottom side of the inner peripheral wall , the rack shaft supporting device being configured to push the rack shaft toward the pinion ,the rack shaft supporting device comprising,a support yoke that faces the rack shaft from the one opening, and that supports the rack shaft such that the rack shaft is slidable in an axial direction of the rack shaft;a plug that closes the other opening;a ball screw mechanism provided between the support yoke and the plug in the accommodation chamber, the ball screw mechanism including a first threaded portion fixed to an inner peripheral wall portion and having an inner peripheral face in which a first thread groove is formed, a second threaded portion arranged radially inward of the inner peripheral face of the first threaded portion and having an outer peripheral face in which a second thread groove is formed, and a plurality of balls arranged in ...

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16-01-2014 дата публикации

GEAR DRIVE SYSTEM WITH ADJUSTING STRUCTURE

Номер: US20140013883A1
Автор: CHEN PING-YI, WU YAO-SHENG
Принадлежит:

A gear drive system includes a securing panel, a first slave gear, a drive gear, and an adjusting structure. The securing panel includes a panel body, a rack, and a rotating shaft. An upper part of the first slave gear is adjacent to the rack and aligned with the rack. The drive gear engages the first slave gear. The adjusting structure includes an elastic element, a slave element pivotally mounted to the panel body, and a third slave gear. The third slave gear defines a rotating hole. The rotating shaft is received in the rotating hole. The second slave gear is movable related to the panel body to enable the rotating shaft to be located in different positions of the rotating hole. The third slave gear is driven to move and rotate. The slave element is driven to rotate to press the elastic element. 1. A gear drive system , comprising:a securing panel, the securing panel comprises a panel body, a rack extending from the panel body, and a rotating shaft extending from the panel body;a first slave gear, an upper part of the first slave gear is adjacent to the rack and aligned with the rack;a drive gear, the drive gear engages the first slave gear; andan adjusting structure, the adjusting structure comprises an elastic element mounted to the securing panel, a slave element pivotally mounted to the panel body, and a second slave gear; the second slave gear defines a rotating hole; the rotating shaft is received in the rotating hole; the second slave gear is movable related to the panel body to enable the rotating shaft to be located in different positions of the rotating hole; the second slave gear is configured to is driven by the first slave gear to move relative to the panel body and rotate when the drive gear rotates from the first slave gear to the rack; and the slave element is configured to be driven by the second slave gear to rotate to press the elastic element when the second slave gear rotates.2. The gear drive system of claim 1 , wherein the slave element ...

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23-01-2014 дата публикации

Rack shaft supporting device and vehicle steering system

Номер: US20140020492A1
Принадлежит: JTEKT Corp

A support member that supports a support yoke is received by an intermediate member. Along with progress of abrasion of the support yoke, a rotational force applying spring rotates the intermediate member. A cam mechanism formed in facing portions of the intermediate member and the support member drives the support member toward the support yoke. A set length regulation mechanism that regulates a set length of a coned disc spring includes a recessed portion in a rear face of the support yoke, and a projection shaft fixed to a front face of the support member. A nut that receives the washer abuts on a positioning stepped portion of a distal end portion of the projection shaft.

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23-01-2014 дата публикации

RACK SHAFT SUPPORTING DEVICE AND STEERING SYSTEM INCLUDING THE SAME

Номер: US20140020493A1
Автор: NAKAMURA Kensaku
Принадлежит:

A rack shaft supporting device includes a support yoke, a plug, an intermediate component, a torque generation spring, and rolling elements. The plug has a plug end portion and plug cam faces formed in the plug end portion. The intermediate component is arranged between the plug and the support yoke in a state where the intermediate component is rotatable relative to the rack housing and movable relative to the rack housing in a pushing direction. The intermediate component has an intermediate opposed portion opposed to the plug end portion and intermediate cam faces opposed to the plug cam faces. The rolling elements are arranged between the plug cam faces and the intermediate cam faces, and make contact with each of the plug cam faces and the intermediate cam faces. 1. A rack shaft supporting device , comprising:a support yoke accommodated in a rack housing, and movable in a pushing direction in which a rack shaft is pushed toward a pinion shaft;a plug having a plug end portion formed on a support yoke side and a plug cam face formed in the plug end portion, the plug being arranged on a side opposite to the support yoke in a direction opposite to the pushing direction, and the plug being fixed to the rack housing;an intermediate component arranged between the plug and the support yoke in a state where the intermediate component is rotatable relative to the rack housing and movable relative to the rack housing in the pushing direction, the intermediate component having an intermediate opposed portion opposed to the plug end portion and an intermediate cam face formed in the intermediate opposed portion and opposed to the plug cam face;a torque generation spring that applies, to the intermediate component, a spring force for rotating the intermediate component relative to the plug; anda rolling element arranged between the plug cam face and the intermediate cam face and making contact with each of the plug cam face and the intermediate cam face.2. The rack shaft ...

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30-01-2014 дата публикации

Power transmission device

Номер: US20140026692A1
Автор: Sun Ho Lim
Принадлежит: Sejin IGB Co Ltd

Disclosed is a power transmission device. A power transmission device according to one embodiment of the present invention includes: a rack having a plurality of rack tooth profiles; a plurality of pin gears, which have a plurality of power transmission pins that rotate relative to the rack tooth profiles for power transmission, and are provided at a distance from each other along the lengthwise direction of the rack; and input gears which are disposed between the pin gears and rotatively connect the plurality of pin gears such that the pin gears rotate at the same speed as each other.

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30-01-2014 дата публикации

ROTATIONAL DRIVE SYSTEM FOR A BIOPSY MEMBER

Номер: US20140026693A1
Автор: Eller Derek R.
Принадлежит:

A drive system is provided for rotating a biopsy member. The drive system includes a pinion connected to the biopsy member and a rack that drives the pinion during a drive stroke. During the return stroke, the rack rotates away from the pinion so that the rack is not engaged with the pinion during the return stroke. Thus, the pinion is only driven during the drive stroke but not during the return stroke. As a result, the biopsy member rotates in a single direction as a trigger is repeatedly pressed and released. 1. A drive system for rotationally driving a biopsy member , comprising:a housing comprising a first trackway and a second trackway and a divider between said first and second trackways;a pinion comprising a series of first teeth disposed circumferentially thereon, said pinion being connected to said housing and being rotatable relative to said housing and being configured to be rotationally fixed to said biopsy member;a trigger connected to said housing and being moveable relative to said housing during a drive stroke and a return stroke;a rack comprising a series of second teeth disposed longitudinally thereon, said rack being connected to said housing and being pivotal relative to said housing and moving in a first direction during said drive stoke and moving in a second direction during said return stroke, said rack comprising a guide member following said first and second trackways;wherein said guide member follows said first trackway during said drive stroke, said guide member and said first trackway engaging said first and second teeth of said pinion and said rack as said rack moves in said first direction, said rack thereby rotating said pinion during said drive stroke, and said guide member follows said second trackway during said return stroke, said guide member and said second trackway separating said first and second teeth of said pinion and said rack as said rack moves in said second direction, said rack thereby not rotating said pinion during ...

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13-02-2014 дата публикации

ENGAGEMENT CHAIN UNIT

Номер: US20140041467A1
Принадлежит: TSUBAKIMOTO CHAIN CO.

Provided is an interlocking chain unit configured such that chains reliably and firmly engage with each other and that the buckling and twisting of a rigidified chain portion are avoided. An interlocking chain unit is configured such that the outer edges of a plate overlap region (P) are defined by contact portion faces and flat buckling restricting end faces, and that the plate overlap region (P) is constructed from the outlines of two plate overlap portions (Pa, Pa) which are point-point-symmetric about the point (C) of intersection between hook-shaped interlocking end faces and the buckling restricting end faces . 1. An interlocking chain unit comprising a pair of interlocking chains , whereineach interlocking chain is formed by connecting, with pairs of front and rear coupling pins, a large number of inner tooth plates and a large number of outer tooth plates in a chain longitudinal direction,the outer tooth plates are arranged to be adjacent to outer sides of the inner tooth plates and have partial overlap regions with the inner tooth plates, andthe interlocking chains are configured to become interlocked with each other to integrally become rigid in a rigid chain forward and backward movement direction and to become disengaged from each other to bifurcate,wherein when the pair of interlocking chains are interlocked with each other, hook-shaped interlocking end faces of the two inner tooth plates interlocked with each other form plate overlap regions when the pair of interlocking chains are seen in a plate normal direction, which is orthogonal to plate main faces of the inner tooth plates and the outer tooth plates,respective buckling restricting end faces of the two outer tooth plates come in contact with each other in a diagonal direction with respect to the rigid chain forward and backward movement direction,the plate overlap regions are formed by outlines of the two plate overlap portions having outer edges defined by contact portion faces, where the hook- ...

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27-02-2014 дата публикации

Rodless Dispenser

Номер: US20140054327A1
Принадлежит: PRINCE CASTLE LLC

A dispenser for viscous, extrudable materials uses a sprocket-driven push chain that is drawn from a chain magazine responsive to actuation of a user trigger. The sprocket for the chain is driven by a toothed wheel, which is driven by a first, ratcheting drive pawl, which is actuated by the trigger. A second ratcheting locking pawl prevents the toothed wheel and hence the chain sprocket from rotating backward when the trigger is released. A single “button” or actuator can be actuated by one hand of a user while the user's other hand grasps a chain retractor to pull an extended chain back to a starting position whereat the dispenser can be reloaded. 1. A dispenser comprising:a first pawl coupled to a first axle and configured to engage and disengage notches on a toothed wheel coupled to a second axle responsive to angular translation of the first pawl about the first axle, the first pawl being configured to drive the toothed wheel in a first direction responsive to engagement of the first pawl with a notch in the toothed wheel and angular translation of the first axle around the second axle in said first direction;a second pawl coupled to a third axle, the second pawl having first and second portions, both of which extend away from the third axle, the first portion extending from the third axle toward the toothed wheel and configured to engage and disengage notches in the toothed wheel responsive to rotation of the second pawl around the third axle, the first portion being biased to engage notches on the toothed wheel, the first portion capable of being disengaged from the notches responsive to a force applied to the second portion of the second pawl;the first pawl, toothed wheel and second pawl being configured such that engagement of the first end of the second pawl with notches in the toothed wheel allows the toothed wheel to be driven in the first direction by the first pawl but prevents the toothed wheel from rotating in an opposite second direction, ...

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06-03-2014 дата публикации

POSITIONING DEVICE AND POSITIONING MECHANISM FOR SAME

Номер: US20140060220A1
Автор: Li Bing, WANG HONG-QI, Yang Bo
Принадлежит:

A positioning device includes a base and two positioning mechanisms oppositely positioned on the base to position a workpiece. Each positioning mechanism includes a driver positioned on the base, a mounting member mounted on the base, a gear rack, a gear, and a positioning member. The mounting member defines a sliding groove. The gear rack slidably is received in the sliding groove and connected with the driver. The gear is rotatably connected with the mounting member and is meshed with the gear rack. The positioning member is fixedly-connected with the gear. The driver drives the gear rack to slide along the sliding groove to make the positioning member rotate and outstretch into an interior of the workpiece. The drivers drive two positioning members apply two opposite forces on the workpiece to positioning the workpiece. 1. A positioning device for positioning a workpiece , comprising:a base; andtwo positioning mechanisms oppositely positioned on the base, each of the two positioning mechanisms comprising:a driver positioned on the base;a mounting member movably mounted on the base adjacent to the driver, the mounting member defining a sliding groove with an end wall thereof being adjacent to the driver;a gear rack slidably received in the sliding groove, and connected to the driver;a gear rotatably connected to the mounting member, and meshed with the gear rack; anda positioning member non-rotatably connected to the gear, wherein the driver drives the gear rack to slide along the sliding groove to make the positioning member rotate and outstretch into an interior of the workpiece, when the gear rack resists against the end wall of the sliding groove, the driver drives the mounting member to move together with the positioning member, such that two positioning members of the two positioning mechanisms apply opposite forces on the workpiece to positioning the workpiece.2. The positioning device of claim 1 , wherein the gear rack comprises a teeth portion and a ...

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06-03-2014 дата публикации

ANGULAR POSITIONING DEVICE COMPRISING TWO MECHANICAL MOVEMENT TRANSMISSION ASSEMBLIES WHICH ARE EACH IMBRICATED AT TWO DEAD CENTRES

Номер: US20140060222A1
Принадлежит:

In the transmission of mechanical movements, a mechanical angular positioning device is provided, and applies to optical instruments to position an element like a mirror according to three predefined positions. The angular positioning device comprises a frame and two imbricated mechanical movement transmission assemblies. The first assembly comprises a first support in pivot connection with the frame according to a first axis, which is rotatable by a first motor via two connecting rods which generate two dead centres for the first support. The second mechanical assembly comprises a second support in pivot connection with the first support, according to a second axis, not parallel with first axis. This second support is rotatable by a second motor via two connecting rods which generate two dead centres for the second support. One of the dead centres of the first support can coincide with one of the dead centres of the second support. 2. The device according to claim 1 , wherein the seventh claim 1 , eighth and ninth axes are at right angles to the first claim 1 , second claim 1 , third and fourth axes.3. The device according to claim 1 , wherein the first actuating device comprises a rotary motor comprising a stator which is integral with the frame of the angular positioning device claim 1 , and a rotor which is integral with the second connecting rod.4. The device according to claim 1 , wherein the second actuating device comprises a rotary motor comprising a stator which is integral with the frame of the angular positioning device claim 1 , and a rotor which is integral with the fourth connecting rod.5. The device according to claim 1 , wherein the first support comprises a drive arm claim 1 , the pivot connection of the first support with the frame being provided at a first end of the drive arm claim 1 , and the pivot connection of the first support with the first connecting rod being provided at a second end of the drive arm.6. The device according to claim 1 , ...

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06-03-2014 дата публикации

HEAD STRUCTURE OF ROBOT, AND DRIVING METHOD FOR THE HEAD

Номер: US20140060224A1
Принадлежит: Hitachi, Ltd.

A head structure of a robot according to the invention includes a first motor and a second motor so supported side by side within a head of the robot that output shafts are positioned coaxially with each other; a left elastic frame that is so driven by the first motor and one end of which is so fitted as to be rotatable around the output shaft and the other end of which extending in a perpendicular direction from the output shaft is supported by a trunk of the robot; and a right elastic frame that is so driven by the second motor and one end of which is so fitted as to be rotatable around the output shaft and the other end of which extending side by side with the left elastic frame from the output shaft is supported by the trunk. 1. A head structure of a robot comprising:a first motor and a second motor so supported side by side within the head of the robot as to position their output shafts coaxially;a first elastic beam member that is driven by the first motor and of which one end is so fitted as to be rotatable around the output shafts and the other end extending in a perpendicular direction from the output shafts is supported by a trunk of the robot; anda second elastic beam member that is driven by the second motor and of which one end is so fitted as to be rotatable around the output shafts and the other end extending from the output shafts side by side with the first elastic beam member is supported by the trunk.2. The head structure of the robot according to claim 1 , wherein:each of the other end of the first elastic beam member and the other end of the second elastic beam member is axially supported around a prescribed axis defined to be along the left-and-right direction of the trunk, and a differential mechanism that makes the revolving directions of the first elastic beam member and the second elastic beam member around this prescribed axis reverse to each other is further provided.3. The head structure of the robot according to claim 2 , wherein:the ...

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06-03-2014 дата публикации

Push-Pull Chain Actuator with Reduced Chain Vibrations

Номер: US20140060226A1
Принадлежит: VKR Holding A/S

A push-pull chain actuator () includes a housing with a chain exit/entry opening () and a sprocket () arranged to engage a push-pull chain (). The sprocket () causes the polygon effect. The actuator includes a first chain guide part () for guiding said push-pull chain () around the sprocket () and a second chain guide part (lob) for guiding said push-pull chain () at the correct angle between the chain exit/entry opening () and the sprocket (). The second chain guide part () is shaped and dimensioned to counteract the polygon effect. Alternatively, the second chain guide part () can be shaped and dimensioned to reduce chain oscillations caused by the rollers () engaging or disengaging the chain exit/entry opening () at the end of the second chain guide part (). 1. A push-pull chain actuator comprising:a housing with a chain exit/entry opening,a push-pull roller chain with an open back, said chain comprising a plurality of pairs of inner links and pairs of outer links that are connected by drive pins with rollers that are disposed between opposing inner links of said pairs of inner links,a sprocket arranged to engage said rollers of the push-pull roller chain, whilst a portion of the push-pull roller chain is guided around the sprocket, said sprocket causing a polygon effect during operation, a first arc shaped chain guide part for guiding said portion of said push-pull roller chain around said sprocket by the rollers of the push-pull roller chain being guided by the first arc shaped chain guide part,', 'a second chain guide part for guiding said push-pull roller chain in a predetermined exit/entry direction between the sprocket and an chain exit opening by the rollers of the push-pull roller chain being guided by the second chain guide part,', 'wherein said second chain guide part is shaped and dimensioned to neutralize or at least reduce variations in chain speed caused by the polygon effect of the sprocket on the push-pull roller chain by including a deviation ...

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20-03-2014 дата публикации

SCREWING SYSTEM HAVING A TOOL HOLDER WHICH CAN BE ACTUATED IN MORE THAN ONE DIRECTION

Номер: US20140076078A1
Автор: Vollmuth Michael
Принадлежит: ROBERT BOSCH GMBH

A screwing system, in particular for assembly plants, includes a drive shaft, which is rotatable with respect to its longitudinal axis, and an output shaft, which is rotatable with respect to its longitudinal axis. The rotary motion of the output shaft is coupled via a coupling device with the rotary motion of the drive shaft. The output shaft has a tool holder configured to receive a tool. The output shaft is movable in relation to the drive shaft along its longitudinal direction in two opposite directions, and a drive device, which moves the output shaft at least in one of these directions, is provided. 1. A screwing system , comprising:a drive shaft rotatable with respect to a drive shaft longitudinal axis;an output shaft rotatable with respect to an output shaft longitudinal axis; and rotary motion of the output shaft is coupled via a coupling device with rotary motion of the drive shaft,', 'the output shaft has a tool holder configured to receive a tool,', 'the output shaft is movable in relation to the drive shaft along the output shaft longitudinal direction in two opposite directions, and', 'the drive device is configured to move the output shaft in at least one of the two opposite directions., 'a drive device, wherein2. The screwing system according to claim 1 , wherein:the coupling device has a first toothing disposed on the drive shaft and a second toothing disposed on the output shaft, andthe first toothing and the second toothing are configured to intermesh.3. The screwing system according to claim 2 , wherein at least one of the first toothing and the second toothing is configured to extend in a longitudinal direction.4. The screwing system according to claim 2 , wherein the first toothing is an external toothing and the second toothing is an internal toothing.5. The screwing system according to claim 1 , wherein the drive device is a pneumatic drive device.6. The screwing system according to claim 1 , further comprising:a piston element movable in ...

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20-03-2014 дата публикации

ENGAGEMENT CHAIN UNIT

Номер: US20140076082A1
Принадлежит: TSUBAKIMOTO CHAIN CO.

Provided is an interlocking chain unit that has reliable and strong interlocking and avoids buckling, breaking, and bending of a rigidified chain portion. In the interlocking chain unit (), the interlocking operation of an outer tooth link plate (BZ) and an outer tooth link plate (AY) that are just about to complete the interlocking operation is completed in a manner that causes a first inter-pin distance (d) and a second inter-pin distance (d) become substantially equal to each other, and causes a third inter-pin distance (d) to approach the second inter-pin distance (d). 1. An interlocking chain unit comprising a pair of interlocking chains , wherein:the pair of interlocking chains includes a first interlocking chain and a second interlocking chain, each of which includes outer tooth link plates each having a hook-shaped interlocking end face and a buckling restricting end face, pairs of front and rear coupling pins fitted to the outer tooth link plates, and inner tooth link plates alternately placed with the outer tooth link plates in a state of being loosely fitted to the coupling pins,the first interlocking chain and the second interlocking chain are interlocked with each other to form a rigidified chain portion, and are disengaged from each other to bifurcate;a link plate that is one of the inner tooth link plates and the outer link plates of the first interlocking chain and is in a state immediately before completion of an interlocking operation is defined as a first link plate;a link plate of the second interlocking chain that is located subsequent to the first link plate is defined as a second link plate, the second link plate having a disengagement-side coupling pin;a link plate that is located subsequent to the second link plate is defined as a third link plate, the third link plate having a disengagement-side coupling pin and a coupling in that faces the disengagement-side coupling pin of the second link plate; andthe interlocking operation between the ...

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27-03-2014 дата публикации

RACK BAR AND RACK BAR TEETH FORMING DIE

Номер: US20140083223A1
Принадлежит: NETUREN CO., LTD.

A rack bar includes a shaft portion and a rack toothed portion provided on the shaft portion. The rack toothed portion includes a plurality of rack teeth provided side by side in an axial direction of the shaft portion to mesh with a pinion gear. Each of the rack teeth includes a tooth tip portion, a contact face arranged obliquely relative to the axial direction and configured to contact the pinion gear, and a rounded corner portion between the tooth tip portion and the contact face. A first radius defining a central area of the rounded corner portion with respect to a tooth width direction is larger than a second radius defining another area of the rounded corner portion other than the central area. 1. A rack bar configured to mesh with a pinion gear , the rack bar comprising a shaft portion and a rack toothed portion provided on the shaft portion ,wherein the rack toothed portion comprises a plurality of rack teeth provided side by side in an axial direction of the shaft portion to mesh with the pinion gear,wherein each of the rack teeth comprises a tooth tip portion, a contact face arranged obliquely relative to the axial direction and configured to contact the pinion gear, and a rounded corner portion between the tooth tip portion and the contact face, andwherein a first radius defining a central area of the rounded corner portion with respect to a tooth width direction is larger than a second radius defining another area of the rounded corner portion other than the central area.2. The rack bar according to claim 1 , wherein at least one of the first radius and the second radius is different for each of the rack teeth.3. A teeth forming die configured to form rack teeth of a rack bar to be meshed with a pinion gear claim 1 , the teeth forming die comprising a securing portion configured to be secured to an outside clamp case claim 1 , and a rack teeth transfer portion provided on the securing portion claim 1 ,wherein the rack teeth transfer portion comprises a ...

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27-03-2014 дата публикации

MOTORIZED ROTATIONAL DRIVE SYSTEM FOR A SOLAR COLLECTOR TRACKER SUPPORT SYSTEM

Номер: US20140083249A1
Принадлежит: PRESTIGE SOLAIRE

Motorized rotational drive system () for rotating a framework about an axis of rotation, preferably a horizontal axis of rotation, for a solar collector tracker support system, said motorized system comprising: two ring gear sectors () extending in two planes orthogonal to the axis of rotation and provided with means of attachment to said framework; a transmission shaft () supporting two pinions () in mesh with the corresponding ring gear sectors () for synchronized rotation of said ring gear sectors (); and a motorized drive means for driving the rotation of said transmission shaft (). 1. A motorized rotational drive system for rotating a framework around an axis of rotation , for a solar collector tracker support system , said motorized system including:two ring gear sectors extending in two planes orthogonal to the axis of rotation, and provided with means of attachment to said framework;a transmission shaft supporting, in particular on both of its ends, two drive pinions in mesh with the corresponding ring gear sectors for synchronized rotation of said ring gear sectors; anda motorized drive means for driving the rotation of said transmission shaft.2. The motorized system according to claim 1 , wherein the ring gear sectors extend over an angular sector comprised between 90 and 180°.3. A solar collector tracker support system that can be oriented along a horizontal axis of rotation and a vertical axis of rotation claim 1 , and comprising a stationary structure for anchoring to the ground and a moving structure including:a first framework rotatably mounted on the stationary structure along the vertical axis of rotation; anda second framework defining a support platform for the solar collectors and rotatably mounted on the first framework along the horizontal axis of rotation, with a motorized drive system for rotating said second framework along this horizontal axis of rotation;{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, 'said tracker support system ...

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03-01-2019 дата публикации

Agricultural trench depth systems, methods, and apparatus

Номер: US20190000004A1
Принадлежит:

Systems, methods and apparatus for adjusting the depth of a trench opened by a row unit of an agricultural planter. The row unit includes a trench depth adjustment assembly configured to modify the furrow depth. In one embodiment, the depth adjustment assembly may include a gear box having one or more gears which engage with a gear rack. The gear box may be pivotally connected to a depth adjustment body supporting a rocker that adjusts upward travel of gauge wheel arms. In another embodiment, the depth adjustment assembly may include a depth adjustment arm having a screw receiver that cooperates with a driven screw that adjusts the position of the depth adjustment arm acting on the gauge wheels to adjust trench depth. 1. An agricultural row unit , comprising:a row unit frame;a furrow opening disc rotatably supported by said row unit frame for opening a furrow in a soil surface as the row unit frame advances in a forward direction of travel;a gauge wheel disposed adjacent to said furrow opening disc and pivotably supported from said row unit frame by a gauge wheel arm such that said gauge wheel is displaceable with respect to said furrow opening disc; a depth adjustment body pivotaly connected via a pivot to said row unit frame;', 'a gear rack disposed on said row unit frame;', 'a gear box connected to said depth adjustment body, said gear box driving a gear in engagement with said gear rack to adjustably position said depth adjustment body to control a depth of the furrow opened by the furrow opening disc by limiting an amount of upward displacement of said gauge wheel with respect to said furrow opening disc., 'a depth adjustment assembly, comprising2. The agricultural row unit of claim 1 , wherein the gear is a pinion.3. The agricultural row unit of claim 1 , wherein the gear is a worm gear.4. The agricultural row unit of claim 1 , wherein said gear is driven by an electric motor.5. The agricultural row unit of claim 1 , wherein said gear rack has a surface with a ...

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03-01-2019 дата публикации

A SEEDLING SEPARATING DEVICE BASED ON A GEAR-RACK DRIVE

Номер: US20190000010A1
Принадлежит:

This invention belongs to a seedling separating device based on a rack and pinion drive in the field of transplanting machine in the agricultural automation facility, including a rack, a power unit, a linear drive, a number of seedling cups and a cylinder pushing device. The linear actuator is driven by the power unit to move on the frame; these seedling cups are mounted on the linear drive; the cylinder pushing device is mounted on the frame and is located behind the seedling cups and it drives the lower part of the seedling cup to open and retracts to close. The seedling device has simple structure, controllable program and high reliability. The motor drives the seedlings cups to move left and right; the cylinder pushes the cups to be opened and closed; the trust cup is straight down, the seedling attitude is better and the location of seedling can also be adjusted. The device can not only achieve the exact location in the designated seedling, but also to achieve the seedling movement of separating seedlings to two points from the mouth of the seedling cups. 1. A seedling separating device based on the rack and gear drive , which comprisesa frame;a power device;a linear transmission device;a plurality of cups;a cylinder pushing device; anda control system; anda sensor and a sensor holder mounted on the frame; one end of the sensor holder is mounted on the frame through a sensor mounting hole; wherein the sensor is mounted on the other end of the sensor holder; wherein the power device includes a motor connection plate, a gear, a sleeve and a motor;wherein the motor is fixed on the upper end of the motor connection plate; the shaft sleeve is arranged on the rotation shaft of the motor and is fixedly connected with the motor; the lower end of the gear is braced and fixedly connected with the rotating shaft of the motor;wherein the linear transmission device includes a cup holder, cup mounting holes, a slider connecting plate, a slider, a cup connecting plate and a ...

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01-01-2015 дата публикации

RACK STEERING CONTROL PISTON

Номер: US20150000433A1
Автор: Farcy Marc
Принадлежит: MESSIER-BUGATTI-DOWTY

The invention relates to a steering actuator piston with a rack () for an aircraft landing gear () characterized in that the piston comprises a body () made of a lightweight alloy having an externally threaded main span () terminated on one side by a shoulder () and extended on the other side by a skirt (), the body having screwed to it a tapped bronze bushing having on its outer wall at least one groove for receiving a seal, the skirt having a drilling to receive a pin for securing the piston to the rack, the bushing extending in service between the shoulder and the pin so that it is retained axially between the shoulder and the pin. 16110111213. A steering actuator piston with a rack () for an aircraft landing gear () , characterized in that the piston comprises a body () made of lightweight alloy having an externally threaded main span () terminated on one side by a shoulder () and extended on the other side by a skirt () , the body having screwed to it a tapped bronze bushing having on its outer wall at least one groove for receiving a seal , the skirt having a drilling to receive a pin for securing the piston to the rack , the bushing extending in service between the shoulder and the pin so that it is retained axially between the shoulder and the pin.222. The piston as claimed in claim 1 , in which a groove is formed in an upright face of the shoulder facing the bushing in order to receive a seal () which bears against the bushing when the latter is screwed onto the body.32118115. The piston as claimed in claim 1 , comprising a shoe () bearing on a bottom () of the body () in order to cooperate with a hemispherical end of the rack such that a pressure applied to the piston generates a force which is transmitted to the rack by thrust on its spherical end claim 1 , without stressing the pin ().43357810111213. An aircraft landing gear comprising a steerable part () and also a rack steering actuator for steering the steerable part () claim 1 , the actuator ...

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01-01-2015 дата публикации

SUPPORTING APPARATUS FOR DISPLAY

Номер: US20150000435A1
Принадлежит:

A power-assisted supporting apparatus includes a base, a supporting member, and a drive mechanism connected between the base and the supporting member. The drive mechanism includes a motor, a gear assembly, and a controller controlling the motor. The motor includes a drive gear driving the gear assembly. The gear assembly includes a connecting shaft connected to the supporting member. The user presses buttons to instruct the controller to activate the motor, and the drive gear drives the gear assembly to rotate an electronic device which is held by the supporting member. 1. A supporting apparatus , comprising:a base;a supporting member; anda drive mechanism connected between the base and the supporting member, and comprising a motor comprising a drive shaft and a drive gear mounted to the drive shaft, a gear assembly connected to the drive shaft and comprising a connecting shaft connected to the supporting member, and a controller controlling the motor to operate, thereby allowing the drive gear to drive the gear assembly to rotate the supporting member.2. The supporting apparatus of claim 1 , wherein the gear assembly comprises a first gear set claim 1 , a second gear set claim 1 , and a third gear set claim 1 , the first gear set comprises a first bull gear mounted to the connecting shaft claim 1 , the second gear set comprises a rotation shaft claim 1 , a second bull gear mounted to a first end of the rotation shaft claim 1 , and a first pinion mounted to a second end of the rotation shaft claim 1 , the third gear set comprises a pivot claim 1 , a second pinion mounted to a first end of the pivot claim 1 , and a third bull gear mounted to a second end of the pivot claim 1 , the first pinion engages with the first bull gear claim 1 , the second pinion engages with the second bull gear claim 1 , and the drive gear engages with the third bull gear.3. The supporting apparatus of claim 2 , wherein the drive mechanism further comprises a first bracket and a second ...

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01-01-2015 дата публикации

ELECTRONIC DEVICE WITH DISPLAY SUPPORT APPARATUS

Номер: US20150000436A1
Принадлежит:

An electronic device includes a base, a display unit, a supporting member, a first drive mechanism, a second drive mechanism, and a controller. The first drive mechanism includes a first motor and a first gear assembly. The first motor includes a first drive gear driving the first gear assembly and the second drive mechanism includes a second motor and a second gear assembly. The second motor includes a second drive gear driving the second gear assembly. By operating buttons, the user can change the orientation of the display unit or other supported device, the first and second motors providing power assistance to the user in two planes of movement. 1. A supporting apparatus , comprising:a base;a supporting member;a first drive mechanism connected between the base and the supporting member, and comprising a first motor with a first drive shaft and a first drive gear mounted to the first drive shaft, a first gear assembly connected to the first drive gear and comprising a first connecting shaft connected to the supporting member;a second drive mechanism connected to the supporting member, and comprising a second motor comprising a second drive shaft and a second drive gear mounted to the second drive shaft, a second gear assembly connected to the second drive gear and comprising a connecting member for being connected to the display unit; anda controller controlling the first and second motors to operate, thereby allowing the first and second drive gears to drive the first and second gear assemblies to rotate the supporting member and the display unit.2. The supporting apparatus of claim 1 , wherein the first gear assembly comprises a first gear set claim 1 , a second gear set claim 1 , and a third gear set claim 1 , the first gear set comprises a first bull gear mounted to the connecting shaft claim 1 , the second gear set comprises a rotation shaft claim 1 , a second bull gear mounted to a first end of the rotation shaft claim 1 , and a first pinion mounted to a ...

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01-01-2015 дата публикации

LASER SENSOR WITH INTEGRATED ROTATING MECHANISM

Номер: US20150000464A1
Принадлежит: UNIMETRIK, S.A.

Laser sensor with integrated rotating mechanism has a camera, a laser, and a chassis configured to rotate on its own axis, which has an indexed rotating mechanism which includes, in turn: a motorized set made up of a rotating motor positioned on an axis parallel to the rotating axis, and connected to this rotating axis by gears, and a motorized set made up of a locking motor housed inside the axis on a support; and in which the bottom of the support includes locking rollers and a ring coupled to this support in such a way that locking occurs as a result of contact between balls housed in the chassis and the rollers adjacent to the bottom of the support. 11234145441168499101393109. Laser sensor with integrated rotating mechanism which comprises: a camera (); a laser (); and a chassis () configured to rotate on its own axis (); characterised in that it comprises an indexed rotating mechanism which comprises , in turn: a first motorised set () , which consists of a first rotating motor () positioned on an axis parallel to the rotating axis () , and connected to said rotating axis () by a set of gears (); and a second motorised set () which consists of a second locking motor () housed inside the axis () in a first support (); and where the first support () comprises at the bottom locking rollers () and a ring () coupled to the aforementioned first support () in such a way that locking occurs as a result of contact between balls housed in the chassis () and the rollers () adjacent to the lower part of the support ().21012. The sensor in claim 1 , in which the locking rollers () are inserted in a second support ().3139. The sensor in claim 1 , in which the ring () is coupled to the first support () using a retaining stud.44. The sensor in claim 1 , in which a connector is coupled to the upper part of the rotating axis () claim 1 , configured for connection with the head of the machine or arm.5. The sensor according to claim 1 , which incorporates a system for monitoring ...

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01-01-2015 дата публикации

OFF-SET DRIVE ASSEMBLY FOR SOLAR TRACKER

Номер: US20150000721A1
Автор: AU Alexander W.
Принадлежит:

In an example, the present invention provides a solar tracker apparatus configured with an off-set drive assembly. In an example, the apparatus has an inner race structure, which has a cylindrical region coupled to a main body region, the main body comprising an off-set open region. The cylindrical region is an annular sleeve structure coupled to the main body region, which occupies the spatial region within the cylindrical region. In an example, the apparatus has an outer race structure coupled to enclose the inner race structure, configured to couple the inner race structure to allow the inner race structure to move in a rotational manner about a spatial arc region; and configured to allow the inner race structure to pivot about a region normal to a direction of the spatial arc region. In an example, the solar tracker has a clamp assembly that is configured to pivot a torque tube. 1. A solar tracker apparatus , the apparatus comprising:a inner race structure, the inner race structure comprising a cylindrical region coupled to a main body region, the main body comprising an off-set open region;an outer race structure coupled to enclose the inner race structure, and configured to couple the inner race structure to allow the inner race structure to move in a rotational manner about a spatial arc region; and configured to allow the inner race structure to pivot about a region normal to a direction of the spatial arc region;a torque tube sleeve configured in an off-set manner on a region between a center region and an outer region of the inter race structure, and configured to be inserted within the off-set open region; anda drive coupled to the inner race structure to cause the torque tube to move about an arc region.2. The apparatus of wherein drive comprises a slew gear device claim 1 , the slew gear device comprising a worm gear operably coupled to a portion of the inner race structure comprising a plurality of gears claim 1 , while other portions of the inner race ...

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01-01-2015 дата публикации

Off-set swivel drive assembly for solar tracker

Номер: US20150000722A1
Автор: Alexander W. Au
Принадлежит: Nextracker LLC

In an example, the present invention provides a solar tracker apparatus configured with an off-set drive assembly. In an example, the apparatus has an inner race structure, which has a cylindrical region coupled to a main body region, the main body comprising an off-set open region. The cylindrical region is an annular sleeve structure coupled to the main body region, which occupies the spatial region within the cylindrical region. In an example, the apparatus has an outer race structure coupled to enclose the inner race structure, configured to couple the inner race structure to allow the inner race structure to move in a rotational manner about a spatial arc region; and configured to allow the inner race structure to pivot about a region normal to a direction of the spatial arc region. In an example, the solar tracker has a clamp assembly that is configured to pivot a torque tube.

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