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Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Применить Всего найдено 8094. Отображено 100.
20-02-2002 дата публикации

ТЕХНОЛОГИЧЕСКАЯ ЛИНИЯ ПРОИЗВОДСТВА ПАНЕЛЕЙ

Номер: RU0000021758U1

1. Технологическая линия производства панелей, включающая взаимосвязанные между собой и смонтированные на основании функциональные узлы : подготовки элементов обшивок и сотового заполнителя с агрегатом нанесения клеевого состава, узлов сборки пакетов, прессования панелей и привод, отличающаяся тем, что узел подготовки сотового заполнителя выполнен в виде приспособлений формирования сот из бумаги, нанесения клеевого состава на соты, и элементов выдержки последних, а агрегат нанесения клеевого состава на слои обшивок и приспособление нанесения клеевого состава на соты выполнены с общей расходной емкостью. 2. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполнены из полимеров. 3. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из конструкционных полимеров. 4. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из стеклопластика. 5. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из углепластика. 6. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из смеси стекло- и углепластика. 7. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из металла. 8. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из профильного металла. 9. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из стали. 10. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из нержавеющей стали. 11. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из легированной стали. 12. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из сплавов. 13. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из цветных металлов. 14. Линия по п.1, отличающаяся тем, что элементы обшивок узла подготовки выполняют из цветных сплавов. 15. Линия по п.1, отличающаяся тем, что элементы обшивок узла ...

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20-02-2003 дата публикации

ТРУБОПРОВОД

Номер: RU0000027803U1

1. Трубопровод, содержащий металлическую трубу с нанесенными на ее поверхность теплоизоляционным и гидроизоляционным покрытиями, отличающийся тем, что теплоизоляционное покрытие выполнено на основе матов из рубленых неорганических волокон, а гидроизоляционное - из оцинкованной стали или стеклопластика. 2. Трубопровод по п.1, отличающийся тем, что в качестве неорганических волокон могут быть стеклянное, кварцевое, кремнеземное, каолиновое или базальтовое волокна. 3. Трубопровод по п. 1, отличающийся тем, что металлическая труба выполнена секционной, причем секции могут быть прямолинейными, в виде тройников, отводов и т.п., и стыки их герметизированы термостойкой кремнийорганической пастой. 4. Трубопровод по п. 1, отличающийся тем, что с помощью теплостойкой кремнийорганической пасты теплоизоляционное покрытие прикреплено к поверхности металлической трубы, а гидроизоляционное, в свою очередь, к теплоизоляционному. (19) RU (11) 27 803 (13) U1 (51) МПК B32B 17/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2000124897/20 , 03.10.2000 (24) Дата начала отсчета срока действия патента: 03.10.2000 (46) Опубликовано: 20.02.2003 2 7 8 0 3 R U U 1 U 1 (73) Патентообладатель(и): Открытое акционерное общество "Научно-производственное объединение Стеклопластик" 2 7 8 0 3 (72) Автор(ы): Трофимов Н.Н., Митичкин А.А., Шарипов А.Я., Натрусов В.И., Косолапов А.Ф., Власов П.В., Вилков В.М., Фетисов С.А. R U Адрес для переписки: 141551, Московская обл., Солнечногорский р-н, п. Андреевка, ОАО "НПО Стеклопластик", патентный отдел (71) Заявитель(и): Открытое акционерное общество "Научно-производственное объединение Стеклопластик" (54) ТРУБОПРОВОД (57) Формула полезной модели 1. Трубопровод, содержащий металлическую трубу с нанесенными на ее поверхность теплоизоляционным и гидроизоляционным покрытиями, отличающийся тем, что теплоизоляционное покрытие выполнено на основе матов из рубленых неорганических волокон, ...

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27-08-2007 дата публикации

ЗАЩИТНЫЙ СТЕКЛОПАКЕТ

Номер: RU0000065934U1

Защитный стеклопакет, включающий собранный в оконном и/или балконном блоке набор стекол, отличающийся тем, что внутренняя поверхность стекла покрыта прозрачной защитной пленкой, которая совместно со стеклом обеспечивает изменение поляризации инфракрасного излучения от линейной до круговой, отличающийся тем, что защитная пленка нанесена на внутреннюю поверхность внешнего стекла стеклопакета и обеспечивает изменение поляризации инфракрасного излучения от линейной до круговой. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 65 934 (13) U1 (51) МПК E06B 5/10 (2006.01) B32B 17/08 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2005133063/22 , 27.10.2005 (24) Дата начала отсчета срока действия патента: 27.10.2005 (45) Опубликовано: 27.08.2007 (73) Патентообладатель(и): Федеральное государственное унитарное предприятие "Российский научно-исследовательский институт космического приборостроения" (RU) U 1 6 5 9 3 4 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Защитный стеклопакет, включающий собранный в оконном и/или балконном блоке набор стекол, отличающийся тем, что внутренняя поверхность стекла покрыта прозрачной защитной пленкой, которая совместно со стеклом обеспечивает изменение поляризации инфракрасного излучения от линейной до круговой, отличающийся тем, что защитная пленка нанесена на внутреннюю поверхность внешнего стекла стеклопакета и обеспечивает изменение поляризации инфракрасного излучения от линейной до круговой. 6 5 9 3 4 (54) ЗАЩИТНЫЙ СТЕКЛОПАКЕТ R U Адрес для переписки: 111250, Москва, ул. Авиамоторная, 53, ФГУП "РНИИ КП", патентно-лицензионный отдел (72) Автор(ы): Марков Сергей Васильевич (RU), Тупиков Юрий Владимирович (RU), Суязов Борис Александрович (RU), Пчельникова Екатерина Николаевна (RU) RU 5 10 15 20 25 30 35 40 45 50 65 934 U1 Полезная модель относится к отраслям строительства и может быть использована при строительстве и реконструкции различных сооружений, ...

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27-03-2008 дата публикации

МОБИЛЬНО ТРАНСПОРТИРУЕМАЯ УСТАНОВКА ДЛЯ ИЗГОТОВЛЕНИЯ КЛЕЕВЫХ ПАНЕЛЕЙ (ВАРИАНТЫ)

Номер: RU0000071930U1

1. Установка для изготовления клеевых панелей, содержащая последовательно размещенные в линию стол сборки панелей и нанесения клеевого состава на части панели с устройством для нанесения клея, стол для склеивания панелей прессованием и стол приема склеенных панелей, отличающаяся тем, что каждый стол оснащен рольгангами для размещения на них и перемещения по ним панелей в направлении к столу приема склеенных панелей, указанные столы выполнены с возможностью последовательного соединения между собой и разъединения для транспортировки мобильным средством, стол для склеивания панелей прессованием выполнен с гидравлическим или пневматическим прессом, рабочая плита которого расположена над рольгангами с возможностью опускания на панель и сжатия частей последней под давлением, а устройство для нанесения клея типа кларнет выполнено с возможностью подъема от уровня рольгангов стола сборки панелей и нанесения клеевого состава на части панели на высоту до 1 м и смонтировано с возможностью перемещения вдоль этого стола на рельсах, проложенных на основании параллельно этому столу для сборки, или смонтировано на этом столе с возможностью перемещения вдоль него. 2. Установка по п.1, отличающаяся тем, что указанные столы в последовательно соединенном положении расположены внутри длинномерного контейнера для перевозки грузов, противоположно расположенные торцевые стенки которого выполнены с дверями для загрузки исходных элементов панелей и выгрузки готовых панелей соответственно. 3. Установка по п.2, отличающаяся тем, что в качестве контейнера для перевозки грузов использован стандартный 40-футовый контейнер с габаритами основания 12×2,5 м. 4. Установка по п.1, отличающаяся тем, что она снабжена средством перемещения панелей по рольгангам с одного стола на другой с остановкой на каждом столе, соответствующей времени склеивания под давлением. 5. Установка для изготовления клеевых панелей, содержащая последовательно размещенные в линию стол сборки панелей и нанесения клеевого состава ...

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20-06-2008 дата публикации

Изоляционное и безопасное стекло

Номер: RU0000074152U1

Полезная модель относится к области изготовления изоляционного и безопасного стекла, которое может найти широкое применение в различных отраслях народного хозяйства. Согласно полезной модели изоляционное и безопасное стекло состоит из, по меньшей мере, одного листового стекла (1), к которому по плоскости присоединен лист поликарбоната (3) и/или лист полиметакрилата (4) крепится при помощи крепежного элемента (2), а между листом стекла (1) и листом поликарбоната (3) и/или листом полиметакрилата (4) образуется воздушный промежуток (5). Преимуществом полезной модели является достижение термической проницаемости стекла, образованного листовым стеклом и плитой поликарбоната или плитой полиметакрилата в размере макс. U=1,1 Вт/м2. При этом стекло, образованное двумя листовыми стеклами, между которыми вставляется плита поликарбоната и/или полиметакрилата, обладает термической проницаемостью, равной U=0,5-0,8 Вт/м2. Основным достоинством полезной модели является то, что изготавливаемые стекла пуленепробиваемые при использовании оружия калибром 9 мм и больше. 1 н.п. ф-лы, 4 илл. ÐÎÑÑÈÉÑÊÀß ÔÅÄÅÐÀÖÈß RU (19) (11) 74 152 (13) U1 (51) ÌÏÊ E06B 3/00 (2006.01) ÔÅÄÅÐÀËÜÍÀß ÑËÓÆÁÀ ÏÎ ÈÍÒÅËËÅÊÒÓÀËÜÍÎÉ ÑÎÁÑÒÂÅÍÍÎÑÒÈ, ÏÀÒÅÍÒÀÌ È ÒÎÂÀÐÍÛÌ ÇÍÀÊÀÌ (12) ÎÏÈÑÀÍÈÅ ÏÎËÅÇÍÎÉ ÌÎÄÅËÈ Ê ÏÀÒÅÍÒÓ (òèòóëüíûé ëèñò) (21), (22) Çà âêà: 2007121853/22, 13.06.2007 (72) Àâòîð(û): Âîë÷èê Ìàðòèí (CZ) (24) Äàòà íà÷àëà îòñ÷åòà ñðîêà äåéñòâè ïàòåíòà: 13.06.2007 (73) Ïàòåíòîîáëàäàòåëü(è): ÑÊËÅÍÀÐÑÒÂÈ ÍÎÍÑÒÎÏ, ñ.ð.î (CZ) R U (30) Êîíâåíöèîííûé ïðèîðèòåò: 14.03.2007 CZ PUV2007-18623 (45) Îïóáëèêîâàíî: 20.06.2008 Áþë. ¹ 17 7 4 1 5 2 R U (57) Ôîðìóëà ïîëåçíîé ìîäåëè 1. Èçîë öèîííîå è áåçîïàñíîå ñòåêëî, ñîñòî ùåå èç, ïî ìåíüøåé ìåðå, îäíîãî ëèñòîâîãî ñòåêëà, ê êîòîðîìó ïî ïëîñêîñòè ïðèñîåäèíåí ëèñò ïîëèêàðáîíàòà (3) è/èëè ëèñò ïîëèìåòàêðèëàòà (4), îòëè÷àþùååñ òåì, ÷òî ëèñò ïîëèêàðáîíàòà (3) è/èëè ëèñò ïîëèìåòàêðèëàòà (4) êðåïèòñ ïðè ïîìîùè êðåïåæíîãî ýëåìåíòà (2), à ìåæäó ëèñòîì ñòåêëà (1) è ëèñòîì ïîëèêàðáîíàòà (3) ...

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27-06-2008 дата публикации

ДЕКОРАТИВНЫЙ ТРИПЛЕКС ПОВЫШЕННОЙ ДОЛГОВЕЧНОСТИ

Номер: RU0000074339U1

Триплекс, состоящий из двух слоев стекла, декоративного элемента, акриловой, или полистирольной, или полиуретановой смолы в качестве склеивающего вещества, отличающийся тем, что акриловая, или полистирольная, или полиуретановая смола залита между стеклами таким образом, что покрывает декоративный элемент целиком по контуру, причем дополнительно между слоями стекла, отдельно от декоративного элемента, расположены участки акриловой, или полистирольной, или полиуретановой смолы, функцией которых является стабилизация стекол триплекса, а остальное пространство между стеклами содержит пустоты. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 74 339 (13) U1 (51) МПК B32B 17/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2008104616/22 , 12.02.2008 (24) Дата начала отсчета срока действия патента: 12.02.2008 (45) Опубликовано: 27.06.2008 (72) Автор(ы): Екимов Юрий Владимирович (RU) (73) Патентообладатель(и): Горбунов Денис Борисович (RU) U 1 7 4 3 3 9 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Триплекс, состоящий из двух слоев стекла, декоративного элемента, акриловой, или полистирольной, или полиуретановой смолы в качестве склеивающего вещества, отличающийся тем, что акриловая, или полистирольная, или полиуретановая смола залита между стеклами таким образом, что покрывает декоративный элемент целиком по контуру, причем дополнительно между слоями стекла, отдельно от декоративного элемента, расположены участки акриловой, или полистирольной, или полиуретановой смолы, функцией которых является стабилизация стекол триплекса, а остальное пространство между стеклами содержит пустоты. 7 4 3 3 9 (54) ДЕКОРАТИВНЫЙ ТРИПЛЕКС ПОВЫШЕННОЙ ДОЛГОВЕЧНОСТИ R U Адрес для переписки: 127410, Москва, ул. Стандартная, 25, кв.52, Е.В. Мохову U 1 U 1 7 4 3 3 9 7 4 3 3 9 R U R U Ñòðàíèöà: 2 RU 5 10 15 20 25 30 35 40 45 50 74 339 U1 Область применения Полезная модель относится к слоистым изделиям, содержащим в ...

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27-08-2008 дата публикации

СТЕКЛОПЛАСТИКОВЫЙ ЩИТ

Номер: RU0000075863U1

Щит, отличающийся тем, что выполнен из листа многослойного стеклопластика, прикрепленного к металлическому каркасу, также отличающийся тем, что лист загнут на 90° вверху и имеет утолщение за счет дополнительных листов стеклопластика внизу. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 75 863 (13) U1 (51) МПК E04H 17/00 B32B 17/00 (2006.01) (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2008109482/22 , 12.03.2008 (24) Дата начала отсчета срока действия патента: 12.03.2008 (45) Опубликовано: 27.08.2008 (73) Патентообладатель(и): Общество с ограниченной ответственностью "Технопласт" (RU) R U Адрес для переписки: 420012, г.Казань, а/я 24 (72) Автор(ы): Варламов Игорь Николаевич (RU), Баязитов Эдуард Ильясович (RU) (54) СТЕКЛОПЛАСТИКОВЫЙ ЩИТ 7 5 8 6 3 Формула полезной модели Щит, отличающийся тем, что выполнен из листа многослойного стеклопластика, прикрепленного к металлическому каркасу, также отличающийся тем, что лист загнут на 90° вверху и имеет утолщение за счет дополнительных листов стеклопластика внизу. R U 7 5 8 6 3 U 1 U 1 Ñòðàíèöà: 1 RU 5 10 15 20 25 30 35 40 45 50 75 863 U1 Щит относится к области организации ограждений для игровых площадок, как внутри помещений, так и на открытом воздухе. Известна игра, в которой состязание игроков происходит на площадке, обнесенной ограждением, которое должно являться упругим (№2150311). Известен материал для защиты от ударных воздействий (патент №2295692 RU, 22.08.2005), который имеет многослойную структуру. Отличается тем, что выполнен из N>1 отдельных однотипных пленок, объединенных в стопу. Пленки могут быть полимерными и металлическими. Стопа выполняется напылением пленок. Наиболее близким аналогом является стойкое к удару и баллистическому воздействию изделие из легкого композиционного материала на основе волокнистых наполнителей и полимерных связующих (патент №2304270 RU, 10.11.2005). Материал изготавливается из препрега, ...

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27-01-2009 дата публикации

МНОГОСЛОЙНОЕ ЭЛЕКТРООБОГРЕВАЕМОЕ ВЕТРОВОЕ СТЕКЛО

Номер: RU0000080143U1

1. Многослойное электрообогреваемое ветровое стекло транспортного средства, содержащее параллельно расположенные листовые стекла, имеющие токопроводящее покрытие, и промежуточные склеивающие слои, изолирующий слой по периметру ветрового стекла, расположенные между листами электропроводники, отличающееся тем, что внутренние и тыльное стекла стеклопакета имеют оптическое низкоэмиссионное твердое покрытие, обращенное внутрь межстекольного пространства, на наружную поверхность тыльного стекла нанесена защитная ударостойкая взрывобезопасная пленка из прозрачного полимера, склеивающие слои выполнены прозрачными из фотоотверждаемой полимерной композиции, между наружным и внутренним стеклами в склеивающем слое установлен датчик температуры с электропроводниками, токопроводящие покрытия имеют пленочные контактные площадки электропитания, выполненные из проводниковой пасты либо припоя, с электропроводниками в склеивающем слое, по периметру токопроводящих покрытий между склеенными стеклами размещен замкнутый электроизолирующий контур, а концевые зазоры между стеклами по периметру стеклопакета закольцованы гидроизолирующей прокладкой. 2. Многослойное электрообогреваемое ветровое стекло по п.1, отличающееся тем, что листовые стекла с низкоэмиссионным твердым покрытием (К-стекло) имеют нанесение из оксидов титана, олова, индия. 3. Многослойное электрообогреваемое ветровое стекло по п.1, отличающееся тем, что защитная пленка на поверхности тыльного стекла выполнена из полиэстера марки ARM. 4. Многослойное электрообогреваемое ветровое стекло по п.1, отличающееся тем, что применяемая для склеивания листовых стекол фотоотверждаемая полимерная композиция представляет собой раствор полиэфира в метилметакрилате и содержит фотоинициатор в качестве УФ-отверждающего компонента. 5. Многослойное электрообогреваемое ветровое стекло по п.1, отличающееся тем, что контактные площадки электропитания выполнены из припойной пасты для поверхностного монтажа марки Du Pont либо припоя специального ...

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27-01-2009 дата публикации

ФОТОХРОМНЫЙ ТРИПЛЕКС

Номер: RU0000080163U1

Фотохромный триплекс, состоящий из двух слоев прозрачного стекла, содержащих внутреннюю и наружную поверхности, которые соединены между собой промежуточным слоем, представляющим собой поливинилбутиральную пленку, включающую частицы фотохромного стекла, отличающийся тем, что поливинилбутиральная пленка содержит от 1 до 80 вес.% частиц фотохромного стекла размером от 0,05-0,3 мм, при этом на одной из наружных поверхностей стекла нанесено покрытие, отражающее инфракрасное тепловое излучение. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 80 163 U1 (51) МПК C03C 27/12 B32B 17/10 B32B 17/06 (2006.01) (2006.01) (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ Адрес для переписки: 109125, Москва, ул. Окская, 4, к.3, оф.34, ООО "Минаев и партнеры" (73) Патентообладатель(и): Общество с ограниченной ответственностью "Фототех" (RU) (24) Дата начала отсчета срока действия патента: 16.10.2008 U 1 8 0 1 6 3 R U Ñòðàíèöà: 1 ru CL U 1 Формула полезной модели Фотохромный триплекс, состоящий из двух слоев прозрачного стекла, содержащих внутреннюю и наружную поверхности, которые соединены между собой промежуточным слоем, представляющим собой поливинилбутиральную пленку, включающую частицы фотохромного стекла, отличающийся тем, что поливинилбутиральная пленка содержит от 1 до 80 вес.% частиц фотохромного стекла размером от 0,05-0,3 мм, при этом на одной из наружных поверхностей стекла нанесено покрытие, отражающее инфракрасное тепловое излучение. 8 0 1 6 3 (54) ФОТОХРОМНЫЙ ТРИПЛЕКС R U (45) Опубликовано: 27.01.2009 (72) Автор(ы): Айт Антон Оскарович (RU), Барачевский Валерий Александрович (RU), Галашин Анатолий Евгеньевич (RU), Гвоздовский Валерий Тимофеевич (RU) (21), (22) Заявка: 2008141066/22, 16.10.2008 RU 5 10 15 20 25 30 35 40 45 50 80 163 U1 Изобретение относится к производству многослойных стекол, используемых в транспорте (автомобильном, авиационном, железнодорожном), строительстве (витражи, ...

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10-08-2009 дата публикации

ДЕКОРАТИВНАЯ ПАНЕЛЬ С ГОЛОГРАФИЧЕСКИМ ЭФФЕКТОМ

Номер: RU0000085398U1

1. Декоративная панель с голографическим эффектом, включающая стекло с нанесенным на его лицевую и тыльную сторону покрытием, отличающаяся тем, что лицевая сторона стекла покрыта в один или несколько слоев декоративно-защитной светопрозрачной пленкой, а тыльная сторона покрыта светоотражающей пленкой или отражающим и защитным слоем. 2. Декоративная панель по п.1, вариант 1, отличающаяся тем, что поверхность пленки, покрывающей тыльную сторону стекла, отпескоструена. 3. Декоративная панель по п.2, отличающаяся тем, что толщина стекла составляет 6-8 мм и более. 4. Декоративная панель по п.1, варианты 1 и 2, отличающаяся тем, что, по крайней мере, один слой декоративно-защитной светопрозрачной пленки лицевой стороны выполнен матовым. 5. Декоративная панель по п.4, отличающаяся тем, что на внешнюю и/или внутреннюю сторону декоративно-защитной светопрозрачной пленки, одного или нескольких слоев нанесен рисунок. 6. Декоративная панель по п.5, отличающаяся тем, что рисунок на пленку нанесен широкоформатной печатью с разрешающей способностью 1440 dpi. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 85 398 U1 (51) МПК B32B 17/06 (2006.01) B44F 1/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2008111953/22, 28.03.2008 (24) Дата начала отсчета срока действия патента: 28.03.2008 (72) Автор(ы): Мамаева Альбина Робертовна (RU), Иванов Станислав Валерианович (RU) Адрес для переписки: 424000, РМЭ, г.Йошкар-Ола, ул. Пугачева, 1, А.Р. Мамаевой U 1 8 5 3 9 8 R U Ñòðàíèöà: 1 ru CL U 1 Формула полезной модели 1. Декоративная панель с голографическим эффектом, включающая стекло с нанесенным на его лицевую и тыльную сторону покрытием, отличающаяся тем, что лицевая сторона стекла покрыта в один или несколько слоев декоративно-защитной светопрозрачной пленкой, а тыльная сторона покрыта светоотражающей пленкой или отражающим и защитным слоем. 2. Декоративная панель по п.1, вариант 1, отличающаяся ...

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20-10-2012 дата публикации

ТРИПЛЕКС С ЭФФЕКТОМ СВЕЧЕНИЯ

Номер: RU0000121195U1

Триплекс с эффектом свечения, содержащий стеклянные полотна, отличающийся тем, что между стеклянными полотнами залита полимерная композиция, имеющая в составе фотолюминофор. Ц 121195 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 124 195” 4 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: 14.06.2019 Дата внесения записи в Государственный реестр: 19.03.2020 Дата публикации и номер бюллетеня: 19.03.2020 Бюл. №8 Стр.: 1 па чб с | ЕП

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20-09-2013 дата публикации

ТРИПЛЕКС

Номер: RU0000132382U1

1. Триплекс для отделки мебели, характеризующийся тем, что в нем первый слой выполнен из стекла толщиной 4,0 мм, второй - из склеивающей пленки, а третий - из полимерной пленки ПВХ для ламинирования мебельных фасадов и все три слоя жестко соединены между собой термической вакуумной подпрессовкой. 2. Триплекс по п.1, в котором второй слой выполнен из склеивающей пленки марки EVA. И 1 132382 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ‘’” 132 382°° 1 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ МЕЭК Восстановление действия патента Дата, с которой действие патента восстановлено: 10.02.2020 Дата внесения записи в Государственный реестр: 10.02.2020 Дата публикации и номер бюллетеня: 10.02.2020 Бюл. №4 Стр.: 1 па СЗ ЕП

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20-09-2013 дата публикации

МНОГОЦВЕТНАЯ ДЕКОРАТИВНАЯ ПАНЕЛЬ ИЗ ПОЛИМЕРНЫХ МАТЕРИАЛОВ С МОДИФИЦИРОВАННОЙ НАНОСТРУКТУРОЙ

Номер: RU0000132383U1

1. Многоцветная декоративная панель из полимерных материалов с модифицированной наноструктурой, состоящая, по меньшей мере, из трех слоев с различными оптическими свойствами, по меньшей мере, два из которых являются прозрачными, отличающееся тем, что внешние слои выполнены из материалов, поляризующих свет, а внутренние представляют собой прозрачные анизотропные полимерные пленки, объемная наноструктура которых изменяется при растяжении. 2. Многоцветная декоративная панель по п.1, отличающаяся тем, что один из внешних слоев имеет зеркальную поверхность, обращенную к источнику света. 3. Многоцветная декоративная панель по п.1, отличающаяся тем, что в качестве внутренних слоев содержит несколько прозрачных анизотропных пленок из полимеров с различным направлением преимущественной ориентации макромолекул. 4. Многоцветная декоративная панель по п.1, отличающаяся тем, что, по меньшей мере, один внутренний слой прозрачной анизотропной пленки из полимеров является эластичным и подвергается циклической деформации растяжения. 5. Многоцветная декоративная панель по п.1, отличающаяся тем, что, по меньшей мере, один внутренний слой прозрачной анизотропной пленки, подвергающейся циклической деформации растяжения, выполнен из жесткоэластического полипропилена. 6. Многоцветная декоративная панель по п.1, отличающаяся тем, что, по меньшей мере, один внешний слой выполнен из алюминиевой фольги или полимерной пленки с зеркальным слоем алюминия, обращенным внутрь панели. И 1 132383 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 132 383” 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: 23.03.2020 Дата внесения записи в Государственный реестр: 13.05.2021 Дата публикации и номер бюллетеня: 13.05.2021 Бюл. №14 Стр.: 1 па СЗ ЕП

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20-04-2014 дата публикации

ДЕКОРАТИВНАЯ ПАНЕЛЬ

Номер: RU0000139639U1

1. Декоративная панель, содержащая полимерную основу с лицевой и оборотной поверхностями, декоративный слой, который сплавлен с поверхностью основы, при этом сплавленные слои придают декоративный эффект термопластичной структуре панели, причем основа имеет толщину, большую, чем один декоративный слой, а основа и декоративный слой изготовлены на основе поливинилхлорида, отличающаяся тем, что полимерная основа выполнена в виде листовой панели размером, по меньшей мере, шириной 400 и длиной 900 мм и толщиной не более 1 мм, в качестве декоративного слоя используют термопереводную пленку из слабопластифицированного термопластичного материала на основе суспензионного поливинилхлорида, декоративный слой сплавлен с поверхностью основы путем термоперевода на полимерную листовую панель с одновременным образованием на полимерной основе термопереводного печатного рисунка посредством термопереводной печати, и декоративный слой является одновременно защитным слоем, он размещен на гладких поверхностях лицевой стороны листовой панели, а листовая панель снабжена выпуклыми гранями, ограничивающими термопереводную пленку декоративного слоя и образующими при их формовании на лицевой стороне декоративный эффект. 2. Панель по п.1, отличающаяся тем, что полимерная основа выполнена из поливинилхлорида. 3. Панель по п.1, отличающаяся тем, что полимерная основа выполнена путем формования методом горячего прессования. 4. Панель по п.1, отличающаяся тем, что рельеф из граней полимерной основы выполнен в виде квадратов со стороной не более 20 мм, отграничивающих декоративную пленку. 5. Панель по п.4, отличающаяся тем, что грани рельефа лицевой стороны полимерной основы выполнены высотой не менее 1 мм. 6. Панель по п.1, отличающаяся тем, что грани рельефа выполнены от 4 до 8 мм, образуя на лицевой стороне основы фактурный рисунок сложной конфигурации. 7. Панель по п.4, отличающаяся тем, что фактурный рисунок размещен с шагом 4 мм, образуя выступающие швы, которые ограничивают рельеф гладкой ...

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10-09-2014 дата публикации

Электрический соединитель для многослойного стекла и электронагреваемое оконное стекло

Номер: RU0000144837U1

1. Электрический соединитель для многослойного стекла, состоящего из двух панелей остекления с расположенным между ними по меньшей мере одним промежуточным ламинирующим слоем, также содержащего электрическое устройство, расположенное между двумя панелями остекления, причем электрический соединитель представляет собой электропроводящую полосу для соединения одного входа электрического устройства с источником электрической энергии, которая присоединена со всех сторон к по меньшей мере одному промежуточному слою с образованием водонепроницаемого уплотнения.2. Электрический соединитель по п. 1, который использован в многослойном стекле с одним ламинирующим слоем и электрическим устройством, расположенным между одной из двух панелей остекления и промежуточным ламинирующим слоем, причем электропроводящая полоса имеет первую часть для соединения с входом электрического устройства, расположенную между указанной панелью остекления и промежуточным ламинирующим слоем, вторую часть для соединения с источником электрической энергии, расположенную между другой панелью остекления и промежуточным ламинирующим слоем, а также третью часть, соединяющую первую и вторую части между собой и проходящую через промежуточный ламинирующий слой, которая прикреплена к промежуточному ламинирующему слою с образованием водонепроницаемого уплотнения.3. Соединитель по п. 2, в котором третья часть электропроводящей полосы проходит через промежуточный ламинирующий слой, по существу, перпендикулярно к двум панелям остекления.4. Соединитель по п. 2, в котором третья часть электропроводящей полосы наклонена относительно перв РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 144 837 U1 (51) МПК H05B 3/86 (2006.01) B60J 1/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014108933/07, 07.03.2014 (24) Дата начала отсчета срока действия патента: 07.03.2014 Приоритет(ы): (30) Конвенционный приоритет: (72) Автор(ы): ФОСЕТТ Найджел ...

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10-11-2014 дата публикации

СВЕТЯЩАЯСЯ СТРОИТЕЛЬНАЯ ДЕТАЛЬ

Номер: RU0000147409U1

1. Светящаяся строительная деталь, выполненная из прозрачного полимера на основе эпоксидной или полиэфирной смолы, имеющая верхний наружный слой из полимера, промежуточный слой из полимера, наполненного стеклянной крошкой, нижний защитный слой из полимера и источник света, отличающаяся тем, что в качестве источника света она содержит фотолюминофор, выбранный из группы, включающей фотолюминофоры на основе алюминатов редкоземельных металлов, размещенный в промежуточном слое, содержащем стеклянную крошку. 2. Строительная деталь по п.1, отличающаяся тем, что она включает дополнительный источник света в форме светодиодной ленты, размещенной по периметру детали на уровне слоя, содержащего наполнитель, и закрепленной на металлической рамке. 3. Строительная деталь по п.2, отличающаяся тем, что металлическая рамка, на которой крепится светодиодная лента, выполнена из металла, выбранного из группы, включающей алюминий и жесть. 4. Строительная деталь по п.1, отличающаяся тем, что в нижнем защитном слое размещена пластина-отражатель, выполненная из материала, выбранного из группы, включающей оцинкованный металл, зеркало и фольгу. 5. Строительная деталь по п.1, отличающаяся тем, что нижний защитный слой содержит дисперсный наполнитель, выбранный из группы, включающей оксиды цинка и титана. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 147 409 U1 (51) МПК B32B 17/04 (2006.01) B32B 17/10 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014113106/05, 03.04.2014 (24) Дата начала отсчета срока действия патента: 03.04.2014 (72) Автор(ы): Кобзарев Денис Владимирович (RU), Кобзарев Сергей Владимирович (RU) (73) Патентообладатель(и): Кобзарев Денис Владимирович (RU) R U Приоритет(ы): (22) Дата подачи заявки: 03.04.2014 (45) Опубликовано: 10.11.2014 Бюл. № 31 Адрес для переписки: 195197, Санкт-Петербург, а/я 7, А.Д. Чегодаевой Стр.: 1 U 1 1 4 7 4 0 9 R U U 1 Формула полезной модели 1. Светящаяся строительная деталь, ...

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20-10-2015 дата публикации

ФУТЕРОВКА

Номер: RU0000155699U1

1. Футеровка, содержащая слой из эластомерного материала с наружной рабочей поверхностью и с армирующей тканевой прослойкой на внутренней стороне, отличающаяся тем, что к армирующей тканевой прослойке присоединён слой, образованный из препрега, с которым связан слой, выполненный из композитного материала. 2. Футеровка по п. 1, отличающаяся тем, что к слою из композитного материала присоединён ещё один слой из препрега, с которым связан дополнительный слой из эластомерного материала через армирующую его тканевую прослойку. 3. Футеровка по п. 1, отличающаяся тем, что армирующая тканевая прослойка эластомерного материала выполнена, по крайней мере, из одного слоя базальтовой или стеклоткани. 4. Футеровка по п. 1, отличающаяся тем, что препрег выполнен из базальтового или стеклянного волокнистого наполнителя в виде нитей, ровинга или ткани, пропитанного полимерным связующим. 5. Футеровка по п. 1, отличающаяся тем, что слой из композитного материала выполнен на основе полимерного связующего, например, полиэфирного или эпоксидного, армированного базальтовыми или стеклянными волокнистыми наполнителями, например, в виде, по крайней мере, одного слоя ткани. 6. Футеровка по п. 1, отличающаяся тем, что в качестве эластомерного материала используется износостойкая резина с армирующей тканевой прослойкой, образованной в процессе её вулканизации. И 1 155699 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 155 699” 44 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ МЕЭК Восстановление действия патента Дата, с которой действие патента восстановлено: 24.09.2021 Дата внесения записи в Государственный реестр: 24.09.2021 Дата публикации и номер бюллетеня: 24.09.2021 Бюл. №27 Стр.: 1 па 66999 ЕП

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02-02-2018 дата публикации

Теплоизоляционный самоклеящийся базальтовый материал

Номер: RU0000176936U1

Полезная модель относится к области теплоизоляционных средств и может быть использована для защиты различных инженерных систем, таких как воздуховоды и оборудования систем вентиляции, кондиционирования и дымоудаления; трубопроводы систем отопления в жилищном и гражданском строительстве, а также на промышленных предприятиях; газопроводы и нефтепроводы; оборудования холодильных и криогенных установок. Теплоизоляционный самоклеящийся базальтовый материал представляет собой рулонный материал с многослойной структурой. Основной слой из базальтового волокна представляет собой мат или многослойный холст из базальтового волокна, кашированной с одной стороны металлической фольгой путем клеевого соединения. На другой стороне слоя из базальтового волокна размещен клеевой слой. Клеевой слой может быть выполнен в виде клеевого состава, нанесенного непосредственно на слой из базальтового волокна. В другом варианте выполнения клеевой слой может представлять собой ткань или бумагу с нанесенным на нее клеевым составом. Клеевой слой закрыт снаружи антиадгезионной бумагой или пленкой. Технический результат, достигаемый с помощью полезной модели, заключается в снижении вероятности разрыва покрывной фольги за счет исключения ее прошивания при закреплении на слое из базальтового волокна. И 1 176936 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ"” 176 936 91 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: 13.05.2021 Дата внесения записи в Государственный реестр: 22.06.2022 Дата публикации и номер бюллетеня: 22.06.2022 Бюл. №18 Стр.: 1 па 9569141 ЕП

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27-02-2018 дата публикации

Конструкция стеклянного сборного дома

Номер: RU0000177481U1

Полезная модель относится к области строительства, а именно к конструкциям элементов зданий, и может быть использована в строительстве объектов малоэтажного коттеджного строительства. Заявленная конструкция стеклянного сборного дома, представляющая собой: каркас из клееного бруса, ограждающие конструкции стен и крышу, при этом каркас выполнен из клееного бруса и включает узел стыковки сэндвич-панелей в кровельном слое дома, узел сопряжения кровельных панелей и защитного стекла в «коньке», узел формирования светопрозрачного заполнения в кровле, узел сопряжения кровельной части конструкции со стеновой, узел устройства стены, а именно место сопряжения деревянной стойки с сэндвич-панелями и стык защитных стекол через алюминиевый профиль, узел устройства стены, а именно место сопряжения деревянной стойки с сэндвич-панелями и стык защитных стекол через деревянный брусок, при этом соединение балок каркаса осуществляется через закладные детали при помощи механических соединений, причем в качестве стенового заполнения применяются сэндвич панели, представляющие собой конструкцию из фанеры, утеплителя и пароизоляционного слоя, при этом наружный фанерный слой сэндвич-панели, изготавливается с «зубом», заходящим на каркасную стойку, на который устанавливается наружное защитное стекло и прижимается декоративно-прижимной крышкой. Технический результат заключается в обеспечении упрощения монтажа за счет сокращения времени сборки дома, обеспечения простоты крепления, отсутствия подготовительных работ по подготовке материалов каркаса и унификации при сборке. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 177 481 U1 (51) МПК E04H 1/00 (2006.01) B32B 7/04 (2006.01) B32B 17/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК E04H 1/00 (2018.01); B32B 7/04 (2018.01); B32B 17/06 (2018.01) (21)(22) Заявка: 2017137026, 20.10.2017 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Цуцкий Сергей Иванович (RU) Дата ...

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04-06-2018 дата публикации

ТРИПЛЕКС

Номер: RU0000180119U1

Полезная модель относится к области создания стекла на многослойной основе для изготовления художественно-декоративных триплексов, используемых для отделки мебели, дверей и других строительных элементов. Технической задачей полезной модели является повышение надежности в эксплуатации. Триплекс состоит из двух слоев стекла, декоративного элемента, стабилизирующего и склеивающего элемента, покрывающего, декоративный элемент выполнен из органического наполнителя, в качестве стабилизирующего и склеивающего элемента выбрана низкотемпературная пленка в четыре слоя по размеру стекол, по два слоя между каждым стеклом и каждой стороной декоративного элемента. 3 ил. 180119 И 1 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 180 149” 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: 21.06.2018 Дата внесения записи в Государственный реестр: 04.07.2019 Дата публикации и номер бюллетеня: 04.07.2019 Бюл. №19 Стр.: 1 бо 3 па ЕП

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07-02-2019 дата публикации

ДЕКОРАТИВНО-ЗАЩИТНАЯ СТЕНОВАЯ ПАНЕЛЬ

Номер: RU0000186882U1

Полезная модель относится к области строительства, а именно к теплоизоляционным материалам с декоративной внешней поверхностью, и может найти применение при облицовке стен зданий. Декоративно-защитная стеновая панель включает основной слой и нанесенный на него методом набрызга защитный слой из стеклофибробетона. Основной слой выполнен из минеральной ваты с объемной плотностью 110-150 кг/м. Защитный слой нанесен методом набрызга. Защитный слой выполнен из смеси кварцевого песка фракций 0,63-2,5 мм, цемента марки М500-М600 и стеклянных волокон длиной 10-30 мм. Технический результат - повышение паропроницаемости стеновой панели при увеличении ее пластичности. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 186 882 U1 (51) МПК E04B 1/80 (2006.01) E04C 2/288 (2006.01) B32B 17/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК E04B 1/80 (2018.08); E04C 2/288 (2018.08); B32B 17/06 (2018.08) (21)(22) Заявка: 2018133824, 25.09.2018 (24) Дата начала отсчета срока действия патента: Дата регистрации: 07.02.2019 (56) Список документов, цитированных в отчете о поиске: RU 174708 U1, 30.10.2017. UA 41691 (45) Опубликовано: 07.02.2019 Бюл. № 4 (54) ДЕКОРАТИВНО-ЗАЩИТНАЯ СТЕНОВАЯ ПАНЕЛЬ (57) Реферат: Полезная модель относится к области плотностью 110-150 кг/м3. Защитный слой строительства, а именно к теплоизоляционным нанесен методом набрызга. Защитный слой материалам с декоративной внешней выполнен из смеси кварцевого песка фракций поверхностью, и может найти применение при 0,63-2,5 мм, цемента марки М500-М600 и облицовке стен зданий. Декоративно-защитная стеклянных волокон длиной 10-30 мм. стеновая панель включает основной слой и Технический результат повышение нанесенный на него методом набрызга защитный паропроницаемости стеновой панели при слой из стеклофибробетона. Основной слой увеличении ее пластичности. 2 ил. выполнен из минеральной ваты с объемной R U 1 8 6 8 8 2 U, 25.05.2009. RU 174279 U1, 09.10.2017. WO ...

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12-09-2019 дата публикации

Крыша транспортного средства

Номер: RU0000192308U1
Принадлежит: АГК ГЛАСС ЮРОП

Полезная модель относится к ламинированной стеклянной крыше автомобиля, обладающей различной светопроницаемостью и обеспечивающей улучшенный комфорт с точки зрения температуры, содержащей два стеклянных листа, т.е. наружный и внутренний стеклянные листы, которые соединены вместе посредством промежуточных слоев из термопластика, сборку пленок устройства на основе взвешенных частиц (SPD) для управления светопроницаемостью, которая встроена в ламинат между двумя стеклянными листами, и систему низкоэмиссионных слоев, расположенных на позиции 4. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 192 308 U1 (51) МПК B32B 17/10 (2006.01) B62D 25/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B32B 17/10036 (2019.05); B32B 17/10229 (2019.05); B62D 25/06 (2019.05) (21)(22) Заявка: 2019117067, 12.06.2013 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): АГК ГЛАСС ЮРОП (BE) Дата регистрации: 12.09.2019 19.06.2012 BE BE2012/0412 (45) Опубликовано: 12.09.2019 Бюл. № 26 1 9 2 3 0 8 R U (54) КРЫША ТРАНСПОРТНОГО СРЕДСТВА (57) Реферат: Полезная модель относится к ламинированной стеклянной крыше автомобиля, обладающей различной светопроницаемостью и обеспечивающей улучшенный комфорт с точки зрения температуры, содержащей два стеклянных листа, т.е. наружный и внутренний стеклянные листы, которые соединены вместе посредством Стр.: 1 промежуточных слоев из термопластика, сборку пленок устройства на основе взвешенных частиц (SPD) для управления светопроницаемостью, которая встроена в ламинат между двумя стеклянными листами, и систему низкоэмиссионных слоев, расположенных на позиции 4. U 1 U 1 Адрес для переписки: 105064, Москва, а/я 88, "Патентные поверенные Квашнин, Сапельников и партнеры" 1 9 2 3 0 8 (56) Список документов, цитированных в отчете о поиске: US 2010/0165436 A1, 01.07.2010. EP 1200256 A1, 02.05.2002. US 2004124665 A1, 01.07.2004. WO 2011033313 A1, 24.03.2011. Приоритет(ы): (30) Конвенционный ...

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16-02-2021 дата публикации

МНОГОСЛОЙНОЕ ИЗДЕЛИЕ НА ОСНОВЕ СТЕКЛА

Номер: RU0000202404U1

Заявленное техническое решение относится к области создания многослойных изделий на основе стекла, которые могут быть использованы как интерьерный облицовочный материал для отделки мебели, межкомнатных дверей, изготовления накладок на межкомнатные двери, столешниц, интерьерных настенных панелей, напольных покрытий, скинали (кухонных фартуков), декоративных потолочных панелей, лестничных ступеней и т.п. Техническим результатом заявленной полезной модели является создание качественного, экологически чистого, абсолютно безопасного многослойного изделия на основе стекла, не выделяющего резкий (токсичный) запах при его изготовлении, а также не выделяющего резкий (токсичный) запах в процессе дальнейшей эксплуатации потребителем изделий в интерьерах жилых и/или офисных помещений. Технический результат достигается тем, что многослойное изделие на основе стекла, содержащее первый слой - стеклянное полотно и третий слой, выполненный из полимерной пленки на основе поливинилхлорида (ПВХ-пленки), первый слой выполнен толщиной 2-16 мм, второй слой, нанесенный на первый слой, выполнен из светоотверждаемого адгезива с динамической вязкостью 100-400 cps и толщиной нанесения 0,1-1 мм, все три слоя выполнены соединенными между собой посредством одного прохода по поверхности полимерной пленки на основе поливинилхлорида прижимного вала ламинатора с давлением 4-6 Мпа и затем облученными в течение 1-10 мин со стороны стеклянного полотна, по меньшей мере, двадцатью лампами с ультрафиолетовым излучением длиной волны 365-395 нм, расположенными на расстоянии 10-70 мм друг от друга и на расстоянии 50-300 мм до поверхности стеклянного полотна. 2 з.п. ф-лы, 3 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 202 404 U1 (51) МПК B32B 17/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B32B 17/00 (2020.08) (21)(22) Заявка: 2020133841, 15.10.2020 (24) Дата начала отсчета срока действия патента: Дата регистрации: (73) Патентообладатель(и): ...

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03-09-2021 дата публикации

Устройство окна с информационным табло для транспортных средств

Номер: RU0000206301U1

Полезная модель относится к области техники отображения информации на транспорте (поезд, автобус, трамвай, троллейбус, вагоны метро), а именно к интеграции передовых экранных цифровых технологий, таких как LED, LCD, OLED, плазменные экраны в стеклянные окна для транспортных средств. Технический результат заключается в упрощении размещения информационного табло в стеклопакете, что облегчает обращение со стеклопакетом, не требует проведения работ по разборке стеклопакета транспортного средства в случае ремонта информационного табло. Технический результат, указанный выше, достигается тем, что устройство окна с информационным табло для транспортных средств содержит стеклопакет, состоящий из прозрачных стекол, неподвижно соединённых между собой, и содержит информационное табло, помещённое в пространство между стеклами, при этом информационное табло помещено в дополнительную ограниченную нишу между стеклами, ограничение ниши расположено по краю, как минимум, одной стороны информационного табло, при этом один торец окна содержит открытое отверстие для помещения информационного табло. Ограничение ниши выполнено с помощью герметика, преимущественно на основе бутила. Информационное табло прилегает к ограничению ниши. На стекло окна нанесен рисунок, преимущественно трафаретной печатью красками методом шелкографии. 3 з.п. ф-лы, 5 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 206 301 U1 (51) МПК G09G 5/14 (2006.01) B60R 11/02 (2006.01) B32B 17/06 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК G09G 5/14 (2021.08); B60R 11/02 (2021.08); B32B 17/06 (2021.08) (21)(22) Заявка: 2021119537, 04.07.2021 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Общество с ограниченной ответственностью "РЭМ" (RU) Дата регистрации: 03.09.2021 (56) Список документов, цитированных в отчете о поиске: EP 2977291 A1, 27.01.2016. CN 211138979 U, 31.07.2020. US 2012/0299328 A1, 29.11.2012. RU 192518 U1, 19.09.2019. (45 ...

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16-03-2022 дата публикации

КОМПОЗИТНЫЙ МАТЕРИАЛ

Номер: RU0000209510U1
Принадлежит: РусКомПолимер

Полезная модель относится к композитным материалам, используемым для изготовления промышленных конструкций, в частности к композитному материалу с улучшенными свойствами. Предложен композитный материал, содержащий несущий слой; слой из пропитанного связующим стекловолокна, нанесенный на несущий слой: армирующую сетку, по меньшей мере, частично вделанную в указанный слой стекловолокна; еще один слой из пропитанного связующим стекловолокна, нанесенный на указанную армирующую сетку таким образом, что армирующая сетка, по меньшей мере, частично вделана в указанный еще один слой стекловолокна, при этом несущий слой выполнен из полимерного материала. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 209 510 U1 (51) МПК B32B 15/02 (2006.01) C08J 5/04 (2006.01) B32B 17/02 (2006.01) B32B 27/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B32B 15/02 (2021.08); C08J 5/04 (2021.08); B32B 17/02 (2021.08); B32B 27/04 (2021.08) (21)(22) Заявка: 2020117921, 22.08.2019 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): РусКомПолимер (RU) Дата регистрации: 16.03.2022 (45) Опубликовано: 16.03.2022 Бюл. № 8 2 0 9 5 1 0 R U (54) КОМПОЗИТНЫЙ МАТЕРИАЛ (57) Реферат: Полезная модель относится к композитным материалам, используемым для изготовления промышленных конструкций, в частности к композитному материалу с улучшенными свойствами. Предложен композитный материал, содержащий несущий слой; слой из пропитанного связующим стекловолокна, нанесенный на несущий слой: армирующую сетку, по меньшей Стр.: 1 мере, частично вделанную в указанный слой стекловолокна; еще один слой из пропитанного связующим стекловолокна, нанесенный на указанную армирующую сетку таким образом, что армирующая сетка, по меньшей мере, частично вделана в указанный еще один слой стекловолокна, при этом несущий слой выполнен из полимерного материала. 2 ил. U 1 U 1 Адрес для переписки: 190000, Санкт-Петербург, площадь Труда, 2, юридическая ...

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08-03-2012 дата публикации

Frameless Multi-Layer Window Panel with Adhesive Bonded Edges

Номер: US20120055094A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

A multi-layer, laminated panel for a frameless window assembly has an adhesive bead extending along a frameless edge of the panel to contacting and structurally bond the two outer layers of the pane, thereby increasing the stiffness of the panel. The panel is used in a movable window assembly for an automotive vehicle in which a regulator is mounted to the vehicle adjacent a window opening, a seal is installed in the window opening, and the panel is moved by the regulator to a closed position wherein the frameless edge of the panel engages the seal.

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17-05-2012 дата публикации

Laminated structure

Номер: US20120121912A1
Принадлежит: Pilkington Group Ltd

A laminated structure comprising at least one glazing pane, at least one interlayer, and a seal covering at least one edge of the interlayer, wherein the seal comprises a nano-particulate silicon oxide.

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31-05-2012 дата публикации

Semiconductor Structures and Method for Fabricating the Same

Номер: US20120135201A1
Принадлежит: Himax Technologies Ltd

A semiconductor structure is provided. The semiconductor structure includes a first substrate, a second substrate opposite to the first substrate, a plurality of spacers disposed between the first substrate and the second substrate, and an adhesive material bonded with the first substrate and the second substrate within the two adjacent spacers. The invention also provides a method for fabricating the semiconductor structure.

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12-07-2012 дата публикации

Laminated glazing

Номер: US20120176656A1
Принадлежит: Pilkington Group Ltd

A laminated glazing comprising an SPD ply comprising a suspended particle device having a low light transmission off-state and a high light transmission on-state, at least one interlayer ply comprising an interlayer material, and at least one glazing ply is disclosed. The interlayer material has been dried to a predetermined moisture content to increase the time over which the suspended particle device is switchable between the low light transmission off-state and the high light transmission on-state. Use of a dried interlayer to increase the time over which an SPD film is switchable between a low light transmission off-state and a high light transmission on-state is also disclosed. Additionally a process for producing the aforementioned laminated glazing is disclosed. It has been found that the moisture content of the interlayer material is a factor in determining the switching characteristics over time of an SPD film incorporated into a laminated glazing.

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04-10-2012 дата публикации

Transparent fire-resistant glazing with flame retardant layer between glass or glass ceramic panes

Номер: US20120251804A1

The transparent fire-resistant glazing has at least two glass or glass ceramic panes with a gap between them, which is filled with a UV-cured material. It is made by curing a UV-curable material filling the gap with UV radiation. The UV-curable material includes polymerizable components, namely a monomer with acrylate functionality and an oligomer, and at least one bromine-containing flame retardant. The fire retardant can be a polybrominated diphenyl ether, a brominated alcohol, or a polybrominated cycloalkane, and/or a mixtures thereof. The glazing is made by a process in which the panes are cleaned and masked to form the gap between them, the UV-curable material is filled into the gap and then cured with the UV radiation.

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22-11-2012 дата публикации

Ligand exchange thermochromic systems and high e ligands for same

Номер: US20120292581A1
Принадлежит: Pleotint LLC

Ligand exchange of thermochromic, LETC, systems exhibiting a reversible change in absorbance of electromagnetic radiation as the temperature of the system is reversibly changed are described. The described LETC systems include one or more than one transition metal ion, which experiences thermally induced changes in the nature of the complexation or coordination around the transition metal ion(s) and, thereby, the system changes its ability to absorb electromagnetic radiation as the temperature changes. In accordance with certain aspects of the present invention, thermochromic systems are disclosed comprising a transition metal ion with particularly useful ligands, such as phosphine compounds, tridentate ligands that coordinate through three nitrogen atoms, bidentate ligands, or ortho hindered pyridine monodentate ligands.

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29-11-2012 дата публикации

Composite glass pane as head-up display

Номер: US20120299328A1
Принадлежит: Saint Gobain Glass France SAS

A composite glass pane comprising at least an upper pane, a lower pane, and an intermediate layer between the upper pane and the lower pane is described.

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24-01-2013 дата публикации

Moisture sensor and/or defogger with bayesian improvements, and related methods

Номер: US20130024169A1
Автор: Vijayen S. Veerasamy
Принадлежит: Guardian Industries Corp

In certain example embodiments, moisture sensors, defoggers, etc., and/or related methods, are provided. More particularly, certain example embodiments relate to moisture sensors and/or defoggers that may be used in various applications such as, for example, refrigerator/freezer merchandisers, vehicle windows, building windows, etc. When condensation or moisture is detected, an appropriate action may be taken (e.g., actuating windshield wipers, turning on a defroster, triggering the heating of a merchandiser door or window, etc.). Bayesian approaches optionally may be implemented in certain example embodiments in an attempt to improve moisture detection accuracy. For instance, models of various types of disturbances may be developed and, based on live data and a priori information known about the model, a probability of the model being accurate is calculated. If a threshold value is met, the model may be considered a match and, optionally, a corresponding appropriate action may be taken.

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07-02-2013 дата публикации

Bag member for compression prebonding, holding tool for producing laminated glass, and device of producing laminated glass and method of producing the same

Номер: US20130032291A1
Принадлежит: Asahi Glass Co Ltd

A holding tool 2 for use in producing of laminated glass includes a frame 3, a bag member 4 and a supporting member 6 b for suspending the bag member 4 from the frame 3. The bag member 4 is made of a film with flexibility and airtightness, is provided with a sealable opening and has evacuating ports 7 a and 7 b in the vicinity of an periphery of a flat shape thereof having the periphery sealed. The frame 3 has a first frame member 3 w and a second frame member 3 y opposing each other and disposed outside the periphery of the bag member 4, and the bag member 4 is suspended by the supporting member 6 b movably against the frame 3 on a holding face formed at least by the first frame member 3 w and the second frame member 3 y inside an area formed by connecting ends of these frame members.

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14-03-2013 дата публикации

Single pane glazing laminates

Номер: US20130062010A1
Принадлежит: 3M Innovative Properties Co

A single pane glazing unit includes a first glass substrate having a first inner surface and a first outer surface, a second glass substrate having a second inner surface and a second outer surface, and a pyrolytic Low-e coating disposed on the second outer surface, and a multilayer polymeric infrared light reflecting film laminated between the first inner surface and the second inner surface, forming a single pane glazing unit. Methods of forming the same are also disclosed.

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14-03-2013 дата публикации

Laminated glass pane with electrical function and connection element

Номер: US20130062119A1
Принадлежит: Saint Gobain Glass France SAS

A laminated glass pane with electrical function and connection element is described. The laminated glass pane has at least two individual glass panes, which are areally connected to at least one thermoplastic intermediate layer. The laminated glass pane further has at least one electrically functional layer, which is situated between the at least two individual glass panes at least one foil conductor, which is electrically conductively connected to the at least one electrically functional layer, and at least one housing with at least one electrical feed line and at least one electrical line connection. The at least two individual glass panes has at least one undercut glass pane, wherein the at least one foil conductor runs without an overhang around a lateral edge of the at least one undercut glass pane.

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28-03-2013 дата публикации

POLYVINYL ACETAL FILM AND USES THEREOF

Номер: US20130074910A1
Принадлежит: KURARAY CO., LTD.

A polyvinyl acetal film as an intermediate film for a laminated glass, can provide a laminated glass that exhibits a low degree of yellowness and excellent surface appearance, and is useful as a sealing material or intermediate film that can prolong the life of a laminated glass provided with a solar cell or functional unit. The content of corrosion-causing substance in the polyvinyl acetal film is low, so that the polyvinyl acetal film permits high-temperature lamination and ensures excellent productivity. A solar cell module and a laminated glass are prepared using the polyvinyl acetal film. A plasticized polyvinyl acetal film which comprises 15 to 60 parts by mass of a plasticizer having a total number of 28 or more of carbon atoms and oxygen atoms constituting a molecule based on 100 parts by mass of a polyvinyl acetal resin, and which has an acid value of 5.0 meq/kg or less. 1. A plasticized polyvinyl acetal film which comprises 15 to 60 parts by mass of a plasticizer having a total number of 28 or more of carbon atoms and oxygen atoms constituting a molecule based on 100 parts by mass of a polyvinyl acetal resin , and which has an acid value of 5.0 meq/kg or less.2. A plasticized polyvinyl acetal film which comprises 15 to 60 parts by mass of a plasticizer based on 100 parts by mass of a polyvinyl acetal resin , and which has an acid value after heating at 140° C. for 4 hours of 10.0 meq/kg or less.3. The plasticized polyvinyl acetal film according to claim 2 , wherein the plasticizer has a total number of 28 or more of carbon atoms and oxygen atoms constituting a molecule claim 2 , and the film has an acid value of 5.0 meq/kg or less.4. The plasticized polyvinyl acetal film according to claim 1 , wherein the plasticizer has a total number of more than 29 of carbon atoms and oxygen atoms constituting a molecule.5. The plasticized polyvinyl acetal film according to claim 1 , wherein the plasticizer is represented by the following chemical formula (1):{'br': ...

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02-05-2013 дата публикации

Integrated back-sheet for back contact photovoltaic module

Номер: US20130109125A1
Принадлежит: EI Du Pont de Nemours and Co

A process for making a back-contact solar cell module is provided. Electrically conductive wires of an integrated back-sheet are physically and electrically attached to the back contacts of the solar cells of a solar cell array through openings in a polymeric interlayer dielectric layer using an electrically conductive binder before thermal lamination of the module.

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16-05-2013 дата публикации

ANISOTROPIC HYDROGELS

Номер: US20130123371A1
Принадлежит: THE UNIVERSITY OF WESTERN ONTARIO

Anisotropic hydrogels including poly(vinyl alcohol) and which have physical cross-links so as to form materials which exhibit anisotropic mechanical properties characteristic of soft biological tissues wherein the anisotropic hydrogel may be used for tissue reconstruction and/or replacement including vessels, arteries, valve components, cartilage, ligaments, skin, and other medical uses such as stents, medical phantoms, contact lenses, bandages, and the like. 1. An anisotropic hydrogel comprising physical cross-links and exhibiting at least one anisotropic mechanical property.2. The anisotropic hydrogel according to claim 1 , wherein said anisotropic hydrogel comprises poly(vinyl alcohol).3. The anisotropic hydrogel according to wherein a ratio of the modulus of elasticity in a first direction to the modulus of elasticity in a second orthogonal direction is between approximately 1.4 and 1.9.4. The anisotropic hydrogel according to wherein a ratio of the tangent modulus of elasticity in a first direction to the tangent modulus of elasticity in a second orthogonal direction is between approximately 1.4 and 2.4.5. The anisotropic hydrogel according to wherein said anisotropic mechanical property is characteristic of a soft biological tissue.6. The anisotropic hydrogel according to provided in the form of an anisotropic tubular conduit.7. The anisotropic hydrogel according to wherein said soft biological tissue is selected from the group consisting of vascular vessels claim 5 , heart valve leaflets claim 5 , cartilage claim 5 , ligaments and skin.8. The anisotropic hydrogel according to claim 7 , wherein said vascular vessel is an aorta or coronary artery.9. The anisotropic hydrogel according to wherein said poly(vinyl alcohol) is present in an amount ranging from approximately 5% to about 25%.10. The anisotropic hydrogel according to wherein said poly(vinyl alcohol) is present in an amount ranging from approximately 7% to about 15%.11. The anisotropic hydrogel ...

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23-05-2013 дата публикации

BIODEGRADABLE COMPOSITION HAVING HIGH MECHANICAL CHARACTERISTICS

Номер: US20130131224A1
Принадлежит: Novamont S.p.A.

A starch based biodegradable composition comprising starch, a polyvinyl alcohol covinyl acetate copolymer and pentaerythritol, which can be produced industrially according to the techniques commonly used for traditional plastics is provided. 2. The extrusion process for preparing a biodegradable product according to claim 1 , wherein the non converted starch is present in a quantity of 20 to 60 wt % claim 1 , the polyvinyl alcohol co-vinyl acetate copolymer is present in a quantity of 10-48 wt % and the plasticizers are present in a quantity of 10-40 wt % with respect to the total weight of the dry product.3. The extrusion process for preparing a biodegradable product according to claim 2 , wherein the non converted starch is present in a quantity of 25-45 wt % claim 2 , the polyvinyl alcohol co-vinyl acetate copolymer is present in a quantity of 20-45 wt % and the plasticizers are present in a quantity of 15-35 wt % with respect to the total weight of the dry product.4. The extrusion process for preparing a biodegradable product according to claim 1 , wherein the plasticizers contain pentaerythritol in a quantity of 50-80% with respect to the total weight of the plasticizers claim 1 , said product having an elastic modulus comprised between 450 and 2000 MPa claim 1 , an energy at break >1200 kJ/mand a load at break >25 MPa measured at 23° C. and 55% of relative humidity on a 30-50 micrometers film.5. The extrusion process for preparing a biodegradable product according to wherein the product has an energy at break >1500 kJ/mand a load at break >30 MPa.6. The extrusion process for preparing a biodegradable product according to claim 1 , wherein the non converted starch is maize starch.7. The extrusion process for preparing a biodegradable product according to claim 1 , wherein the polyvinyl alcohol-co-vinyl acetate copolymer has a degree of hydrolysis >75%.8. The extrusion process for preparing a biodegradable product according to claim 7 , wherein the polyvinyl ...

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23-05-2013 дата публикации

RESIN COMPOSITION AND MOLDED ARTICLE THEREOF

Номер: US20130131270A1

There is provided a resin composition affording a melt-molded article having excellent gas barrier properties and flex crack resistance. The present invention relates to a resin composition comprising a polyvinyl alcohol resin (A) having a 1,2-diol structural unit represented by the following general formula (1), a styrene-based thermoplastic elastomer (B), and a polyamide graft block copolymer (C) containing a polymer block of an aromatic vinyl compound and a polymer block of an olefinic compound in a main chain and having a graft chain composed of a polyamide: 2. The resin composition according to claim 1 , wherein a content ratio (A)/{(B)+(C)} of the polyvinyl alcohol copolymer (A) to the total of the styrene-based thermoplastic elastomer (B) and the polyamide graft block copolymer (C) is 95/5 to 50/50 as a weight ratio.3. The resin composition according to claim 1 , wherein a content ratio (B)/(C) of the styrene-based thermoplastic elastomer (B) to the polyamide graft block copolymer (C) is 80/20 to 2/98 as a weight ratio.4. The resin composition according to claim 1 , wherein a content of the polyamide component in the polyamide graft block copolymer (C) is 20 to 80 weight %.5. The resin composition according to claim 1 , wherein a ratio η/ηof melt viscosity ηof the polyvinyl resin copolymer (A) to melt viscosity ηof a mixture of the styrene-based thermoplastic elastomer (B) and the polyamide graft block copolymer (C) is 0.5 to 3.6. A molded article obtained by melt-molding the resin composition according to . The present invention relates to a resin composition comprising a polyvinyl alcohol resin as a main component and having a styrene-based thermoplastic elastomer blended thereto. More particularly, the present invention relates to a resin composition which affords a molded article excellent in flex crack resistance and gas barrier properties and is excellent in melt-viscosity stability during molding and the like through formation of a sea-island structure ...

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30-05-2013 дата публикации

Sealed Structure, Light-Emitting Device, Electronic Device, and Lighting Device

Номер: US20130134397A1
Принадлежит: Semiconductor Energy Laboratory Co Ltd

A sealed structure with high sealing capability, in which a pair of substrates is attached to each other with a glass layer is provided. The sealed structure has a first and second substrates, a first surface of the first substrate facing a first surface of the second substrate, and the glass layer which is in contact with the first and second substrates, defines a space between the first and second substrates, and is provided along the periphery of the first surface of the first substrate. The first substrate has a corner portion. The area of the first surface of the first substrate is smaller than or equal to that of the first surface of the second substrate. In at least one of respective welded regions between the glass layer and the first or second substrate, the width of the corner portion is larger than that of the side portion.

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06-06-2013 дата публикации

COMPOSITE CORE MATERIAL FOR VACUUM INSULATION PANEL, PREPARATION METHOD THEREOF, AND VACUUM INSULATION PANEL USING THE SAME

Номер: US20130142983A1
Принадлежит: LG HAUSYS, LTD.

The present invention relates to a composite core material for a vacuum insulation panel which exhibits excellent initial insulation and long-term durability, a method of manufacturing the same, and a vacuum insulation panel using the same. The vacuum insulation panel includes a composite core material formed of glass fiber wool and a glass fiber board, and an outer skin material having a layered structure comprising a surface protective layer, a metal barrier layer, and a bonding layer from the outside to vacuum-package the core material. 1. A core material for a vacuum insulation panel formed of a composite material comprising glass fiber wool and a glass fiber board.2. The core material according to claim 1 , wherein the glass fiber board is formed on one or both sides of the glass fiber wool.3. The core material according to claim 1 , wherein the core material is formed by stacking at least one layer of the glass fiber wool and at least one layer of the glass fiber board.4. The core material according to claim 1 , wherein glass fibers in the glass fiber wool have an average diameter of 4 μm to 6 μm.5. The core material according to claim 1 , wherein glass fibers in the glass fiber board have an average diameter of 1 μm to 4 μm.6. The core material according to claim 1 , wherein the glass fiber board comprises at least one of fumed silica powder claim 1 , silica powder claim 1 , perlite powder claim 1 , and aerogel powder.7. A method of manufacturing a core material for a vacuum insulation panel claim 1 , wherein the core material is formed of a composite material comprising glass fiber wool and a glass fiber board.8. The method according to claim 1 , wherein the composite material of the glass fiber wool and the glass fiber board is formed through at least one of stacking claim 1 , thermal compression claim 1 , inorganic binder bonding claim 1 , and needling.9. The method according to claim 8 , wherein the thermal compression is performed at a temperature of 400 ...

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06-06-2013 дата публикации

Interlayer film for laminated glass, and laminated glass

Номер: US20130143049A1
Принадлежит: Sekisui Chemical Co Ltd

The present invention provides an interlayer film for laminated glass which enables to produce laminated glass having a low yellow index and excellent heat shielding properties; and laminated glass including the interlayer film for laminated glass. An interlayer film for laminated glass according to the present invention comprises a thermoplastic resin; heat shielding particles; and a first component, the first component is at least one of a phthalocyanine compound, a naphthalocyanine compound, and an anthracyanine compound, and contains vanadium atom(s); and Laminated glass of the present invention comprises: a first member for laminated glass; a second member for laminated glass; and a single-layer interlayer film or a multi-layer interlayer film between the first member for laminated glass and second member for laminated glass, wherein the single-layer interlayer film or the multi-layer interlayer film includes the interlayer film for laminated glass according to the present invention.

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27-06-2013 дата публикации

Transparent panel having heatable coating and production method therefor

Номер: US20130161309A1
Принадлежит: Saint Gobain Glass France SAS

The invention relates to a transparent pane with a transparent heatable coating, which extends at least over a part of the pane surface, in particular over its visual field. The heatable coating is divided by at least one heatable coating-free zone into at least one first heatable coating zone and a second heatable coating zone, wherein the two heatable coating zones are in each case electrically connected to at least two collecting conductors such that after application of a supply voltage that is provided by a voltage source, in each case a current flows over at least one first heating field formed by the first heatable coating zone and at least one second heating field formed by the second heatable coating zone. At least one heating element is disposed in the heatable coating-free zone, which heating element has an ohmic resistance such that by means of application of the supply voltage to the heating element, the pane is heatable in a surface area containing the heatable coating-free zone. The at least one heating element is configured such that by means of application of the supply voltage to the heating element, the pane is also heatable in at least one surface area adjacent the coating-free zone which surface area contains at least one of the collecting conductors.

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04-07-2013 дата публикации

VIBRATION-DAMPING SHEET AND METHOD FOR DAMPING VIBRATION

Номер: US20130171898A1
Автор: Kawaguchi Yasuhiko
Принадлежит: NITTO DENKO CORPORATION

A vibration-damping sheet to be bonded to a metal adherend includes a resin layer and a constraining layer laminated on the resin layer. The resin layer contains a pressure-sensitive adhesive resin, a metal which has a higher ionization tendency than that of the metal adherend, and an electrically-conductive carbon. 1. A vibration-damping sheet to be bonded to a metal adherend comprising:a resin layer anda constraining layer laminated on the resin layer, whereinthe resin layer contains a pressure-sensitive adhesive resin, a metal which has a higher ionization tendency than that of the metal adherend, and an electrically-conductive carbon.2. The vibration-damping sheet according to claim 1 , wherein{'sup': '8', 'the volume resistivity of the resin layer is 1×10Ω cm or less.'}3. The vibration-damping sheet according to claim 1 , whereinthe metal is zinc.4. The vibration-damping sheet according to claim 1 , whereinthe glass transition temperature (Tg) of the resin layer is −40° C. or more and 20° C. or less.5. The vibration-damping sheet according to claim 1 , whereinthe constraining layer is made of a glass cloth.6. A method for damping vibration comprising:bonding a vibration-damping sheet to a metal adherend, whereinthe vibration-damping sheet comprises:a resin layer anda constraining layer laminated on the resin layer, andthe resin layer contains a pressure-sensitive adhesive resin, a metal which has a higher ionization tendency than that of the metal adherend, and an electrically-conductive carbon.7. A method for damping vibration comprising:bonding a vibration-damping sheet to a steel plate or a zinc-plated steel plate, whereinthe vibration-damping sheet comprises:a resin layer anda constraining layer laminated on the resin layer, andthe resin layer contains a pressure-sensitive adhesive resin, zinc, and an electrically-conductive carbon. The present invention relates to a vibration-damping sheet and a method for damping vibration, to be specific, to a vibration- ...

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18-07-2013 дата публикации

LAMINATE BODY, LAMINATE PLATE, MULTILAYER LAMINATE PLATE, PRINTED WIRING BOARD, AND METHOD FOR MANUFACTURE OF LAMINATE PLATE

Номер: US20130180765A1
Принадлежит: HITACHI CHEMICAL COMPANY, LTD.

A laminate body containing one or more resin composition layers and two or more glass substrate layers, wherein at least one layer of those resin composition layers is between glass substrate layers, and is a fiber-containing resin composition layer of a composition that contains a thermosetting resin and a fibrous base material. A laminate plate containing one or more cured resin layers and two or more glass substrate layers, wherein at least one layer of those cured resin layers is between glass substrate layers, and is a fiber-containing cured resin layer of the fiber-containing resin composition. A printed wiring board having the above-mentioned laminate plate and a wiring provided on the surface thereof. A method for producing the laminate plate. 1. A laminate body containing one or more resin composition layers and two or more glass substrate layers , wherein:at least one layer of those one or more resin composition layers is a fiber-containing resin composition layer of a fiber-containing resin composition that contains a thermosetting resin and a fibrous base material, andat least one layer of those resin composition layers exists between any two layers of the glass substrate layers.2. The laminate body according to claim 1 , wherein the thickness of the glass substrate layer is from 30 to 200 μm.3. The laminate body according to claim 1 , wherein claim 1 , of those two or more glass substrate layers claim 1 , the glass substrate layer on the outermost surface side and the glass substrate layer on the outermost back side exist on the more surface side and on the more back side claim 1 , respectively claim 1 , than all the resin composition layers.4. The laminate body according to claim 1 , wherein:those one or more resin composition layers include a first resin composition layer facing the surface of the glass substrate layer on the outermost surface side, and a second resin composition layer facing the back of the glass substrate layer on the outermost back ...

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01-08-2013 дата публикации

Fire-resistant glazing

Номер: US20130196091A1
Принадлежит: Vetrotech Saint Gobain International AG

A fire-resistant glass unit is provided having at least two transparent carrier elements, in particular glass panes, and an intermediate layer between the carrier elements, this layer expanding for example in the event of a fire, or a gas-releasing intermediate layer, which builds up a pressure between the carrier elements. At least one glass pane of the fire-resistant glass unit, preferably the two outermost glass panes, or even all the glass panes adjacent to an intermediate layer, are provided with specific local weakening as a defined breaking point. A predetermined breaking point may be, for example, a groove or milled recess, in particular a notch.

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15-08-2013 дата публикации

HIGHLY FLAME-RETARDANT POLYMER MEMBER, FLAME-RETARDANT ARTICLE, AND FLAME-RETARDING METHOD

Номер: US20130210303A1
Принадлежит: NITTO DENKO CORPORATION

Provided is a flame-retardant member having transparency, flexibility, and a high level of flame retardancy. A highly flame-retardant polymer member of the present invention is a highly flame-retardant polymer member including a polymer layer (B), an inorganic base material (L), and a flame-retardant layer (A) in the stated order, in which the flame-retardant layer (A) is a layer containing a layered inorganic compound (f) in a polymer. 1. A highly flame-retardant polymer member , comprising a polymer layer (B) , an inorganic base material (L) , and a flame-retardant layer (A) in the stated order , wherein the flame-retardant layer (A) comprises a layer containing a layered inorganic compound (f) in a polymer (X).2. A highly flame-retardant polymer member according to claim 1 , wherein the inorganic base material (L) comprises a fibrous inorganic base material.3. A highly flame-retardant polymer member according to claim 2 , wherein the fibrous inorganic base material comprises a glass cloth.4. A highly flame-retardant polymer member according to claim 1 , wherein in a horizontal firing test involving horizontally placing the highly flame-retardant polymer member with its side of the flame-retardant layer (A) as a lower surface so that the lower surface is in contact with air claim 1 , placing a Bunsen burner so that a flame port of the Bunsen burner is positioned at a lower portion distant from the lower surface on the side of the flame-retardant layer (A) by 45 mm claim 1 , and bringing a flame of the Bunsen burner having a height of 55 mm from the flame port into contact with the lower surface of the flame-retardant layer (A) for 30 seconds while preventing the flame from being in contact with an end portion of the highly flame-retardant polymer member claim 1 , the highly flame-retardant polymer member has flame retardancy capable of blocking the flame.5. A highly flame-retardant polymer member according to claim 1 , wherein a content of ash in the flame- ...

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22-08-2013 дата публикации

SHAPING SLURRY AND SHAPING METHOD

Номер: US20130217823A1
Принадлежит: SEIKO EPSON CORPORATION

A shaping slurry that forms a shaped product with a granule includes: a water-based solvent; a hydrophobic granule that forms the shaped product; and an amphiphatic solid polymer that forms the shaped product, and is dissolved in the water-based solvent. 1. A shaping slurry that forms a shaped product with a granule ,the shaping slurry comprising:a water-based solvent;a hydrophobic granule that forms the shaped product; andan amphiphatic solid polymer that forms the shaped product, and is dissolved in the water-based solvent.2. The shaping slurry according to claim 1 ,wherein the granule is a resin granule,wherein the water-based solvent contains a nonorganic main solvent component, andwherein the amphiphatic solid polymer has a hydrocarbon chain backbone, and a side-chain hydrophilic functional group.3. The shaping slurry according to claim 1 , wherein the amphiphatic solid polymer is polyvinyl alcohol.4. The shaping slurry according to claim 3 ,wherein the water-based solvent is water, andwherein the polyvinyl alcohol has a polymerization degree of from 300 to 1,000, inclusive.5. The shaping slurry according to claim 3 ,wherein the water-based solvent is water, andwherein the polyvinyl alcohol has a saponification degree of from 85 to 90, inclusive.6. The shaping slurry according to claim 1 , further comprising a fiber material. This application is a divisional application of U.S. application Ser. No. 13/105,080 filed May 11, 2011 which claims priority to Japanese Patent Application No. 2010-120204, filed May 26, 2010 all of which are expressly incorporated by reference herein in their entireties.1. Technical FieldThis invention relates to shaping slurries used for shaping, and shaping methods using such shaping slurries.2. Related ArtThe lamination shaping method has been commonly used as a method of rapidly producing a prototype shaped product (rapid prototyping). In the lamination shaping method, a shaped product model created by three-dimensional CAD or the ...

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29-08-2013 дата публикации

Ionomer-poly(vinyl alcohol) blends

Номер: US20130225749A1
Принадлежит: EI Du Pont de Nemours and Co

Disclosed is a composition comprising (a) a poly(vinyl alcohol) characterized by (i) a hydrolysis level of from about 85 to about 93 mole % and a 4 weight % aqueous viscosity at 20° C. of 15 centipoise or less; or (ii) a hydrolysis level of about 95 mole % or greater; and (b) an ionomer comprising a parent acid copolymer comprising copolymerized units of ethylene and acrylic acid or methacrylic acid with melt flow rate from about 200 to about 1000 g/10 min., wherein about 50% to about 70% of the carboxylic acid groups of the copolymer are neutralized to carboxylic acid salts.

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05-09-2013 дата публикации

Decorative melamine board

Номер: US20130230712A1
Автор: Toshinori Kifuku
Принадлежит: Sumitomo Bakelite Co Ltd

The present invention provides a decorative melamine board that maintains the surface hardness associated with melamine resin while having superior non-combustibility, being able to accommodate reductions in thickness and having superior bending workability at normal temperatures. The decorative melamine board has a structure obtained by laminating a surface layer and a core layer. The surface layer includes a surface layer material composed of a surface layer base material that carries a resin containing a melamine resin on a first surface side serving as a design surface, and carries a solid content of a thermoplastic resin emulsion on a second surface side that contacts the core layer. The core layer includes a core layer material composed of glass cloth or a prepreg having glass cloth as a base material thereof.

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26-09-2013 дата публикации

COATED ARTICLE WITH IR REFLECTING LAYER AND METHOD OF MAKING SAME

Номер: US20130251923A1
Принадлежит: Guardian Industries Corp.

An IG window unit includes a coating supported by a glass substrate. The coating includes at least the following on the glass substrate moving from the glass substrate outwardly: at least one dielectric layer; a layer comprising zinc oxide; an infrared (IR) reflecting layer comprising silver; a layer comprising an oxide of Ni and/or Cr; an overcoat comprising a layer comprising tin oxide located over the oxide of Ni and/or Cr and a layer comprising silicon nitride. 111-. (canceled)12. An IG window unit including a coating supported by a glass substrate , the coating from the glass substrate outwardly comprising:at least one dielectric layer;a layer comprising zinc oxide over the at least one dielectric layer;an infrared (IR) reflecting layer comprising silver on the glass substrate, located over and directly contacting the layer comprising zinc oxide, wherein the coating includes only one IR reflecting layer;a layer comprising an oxide of Ni and/or Cr located over and directly contacting the IR reflecting layer comprising silver;an overcoat comprising a layer comprising tin oxide located over the oxide of Ni and/or Cr and a layer comprising silicon nitride located over and contacting the layer comprising tin oxide; andwherein the IG unit has an SHGC value of at least 0.65, a visible transmission of at least 70%, and an Energy Rating of at least 25.13. The IG unit of claim 12 , wherein the IG unit has an SHGC value of at least 0.68 claim 12 , a visible transmission of at least 74.5% claim 12 , and an Energy Rating of at least 29.14. The IG unit of claim 12 , wherein the IG unit has a U-value of no greater than 0.30 Btu/h ft F.15. The IG unit of claim 12 , wherein said glass substrate is an interior glass substrate claim 12 , the IG unit further comprising an exterior glass substrate located adjacent an exterior of a building in which the IG unit is provided claim 12 , wherein the coating is provided on a surface of the interior glass substrate facing a gap between ...

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10-10-2013 дата публикации

MOLDABLE SAND COMPOSITIONS AND METHODS FOR MAKING THE SAME

Номер: US20130267146A1
Принадлежит: Crayola LLC

The present invention relates to moldable sand compositions, methods for making the moldable sand compositions, and methods for using the moldable sand compositions. In a particular embodiment, the moldable sand composition comprises between about 70% to about 95% sand, between about 5% to about 30% water, a polar polymeric resin, a crosslinking agent, and a humectant. In an exemplary embodiment, the composition contains no oils, waxes, glycols, or rubbers. The composition is capable of becoming hardened over time in order to maintain the achieved shape, and can be re-wetted and molded again after becoming hardened. 1. A moldable sand composition comprising between about 70% to about 95% sand , between about 5% to about 30% water , a polar polymeric resin , a crosslinking agent , and a humectant.2. The composition of claim 1 , wherein the sand comprises silica sand.3. The composition of claim 1 , wherein the crosslinking agent comprises a boric compound.4. The composition of claim 1 , wherein the humectant comprises glycerin.5. The composition of claim 1 , wherein the polar polymeric resin comprises PVA.6. The composition of comprising between about 80% to about 90% sand.7. The composition of comprising between about 7% to about 20% water.8. The composition of claim 1 , wherein the ratio of sand to water is between about 3 to about 15.9. The composition of comprising between about 0.5% to about 3% polar polymeric resin.10. The composition of comprising between about 1% to about 3% humectant.11. The composition of further comprising one or more additives claim 1 , wherein the additives are selected from the group consisting of pH adjusters claim 1 , buffers claim 1 , defoamers claim 1 , dispersing agents claim 1 , scents claim 1 , preservatives claim 1 , colorants claim 1 , and combinations thereof.12. The composition of claim 11 , wherein the composition comprises less than about 1% of the one or more additives.13. The moldable sand composition of comprising between ...

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07-11-2013 дата публикации

LIGHT-WEIGHT HYBRID GLASS LAMINATES

Номер: US20130295357A1
Принадлежит:

A glass laminate comprises an external glass sheet, an internal glass sheet, and a polymer interlayer formed between the external glass sheet and the internal glass sheet. The external glass sheet can be a thin chemically-strengthened glass sheet or can be a non-chemically strengthened glass sheet, the polymer interlayer can have a thickness of less than 1.6 mm, and the internal glass sheet can be a non-chemically-strengthened glass sheet or a thin chemically strengthened glass sheet. 1. A glass laminate structure comprising:a non-chemically strengthened external glass sheet;a chemically strengthened internal glass sheet; andat least one polymer interlayer intermediate the external and internal glass sheets,wherein the internal glass sheet has a thickness ranging from about 0.5 mm to about 1.5 mm, andwherein the external glass sheet has a thickness ranging from about 1.5 mm to about 3.0 mm.2. The glass laminate structure of claim 1 , wherein the internal glass sheet includes one or more alkaline earth oxides claim 1 , such that a content of alkaline earth oxides is at least about 5 wt. %.3. The glass laminate structure of claim 1 , wherein the internal glass sheet includes at least about 6 wt. % aluminum oxide.4. The glass laminate structure of claim 1 , wherein the internal glass sheet has a thickness of between about 0.5 mm to about 0.7 mm.5. The glass laminate structure of claim 1 , wherein the polymer interlayer comprises a single polymer sheet claim 1 , a multilayer polymer sheet claim 1 , or a composite polymer sheet.6. The glass laminate structure of claim 1 , wherein the polymer interlayer comprises a material selected from the group consisting of poly vinyl butyral (PVB) claim 1 , polycarbonate claim 1 , acoustic PVB claim 1 , ethylene vinyl acetate (EVA) claim 1 , thermoplastic polyurethane (TPU) claim 1 , ionomer claim 1 , a thermoplastic material claim 1 , and combinations thereof.7. The glass laminate structure of claim 1 , wherein the polymer ...

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21-11-2013 дата публикации

Adhesive for 3D Printing

Номер: US20130310507A1
Принадлежит: 3D Systems, Inc.

In one aspect, adhesives for use with a 3D printer are described herein. In some embodiments, an adhesive for use with a 3D printer comprises a first polymeric component comprising a poly(vinyl alcohol) and a second polymeric component. The poly(vinyl alcohol), in some embodiments, comprises amorphous poly(vinyl alcohol). In some embodiments, the second polymeric component comprises a water-soluble polymer. Further, in some embodiments, an adhesive described herein further comprises a solvent, a surfactant, and/or a preservative. 1. An adhesive for use with a 3D printer comprising:a first polymeric component comprising a poly(vinyl alcohol); anda second polymeric component.2. The adhesive of claim 1 , wherein the poly(vinyl alcohol) comprises amorphous poly(vinyl alcohol).3. The adhesive of claim 1 , wherein the second polymeric component comprises a poly(2-ethyl-2-oxazoline).4. The adhesive of claim 1 , wherein the second polymeric component comprises a water-soluble polymer.5. The adhesive of claim 4 , wherein the water-soluble polymer is extrudable.6. The adhesive of further comprising a solvent.7. The adhesive of claim 6 , wherein the solvent comprises deionized water.8. The adhesive of further comprising a surfactant.9. The adhesive of further comprising a preservative.10. The adhesive of claim 1 , wherein the poly(vinyl alcohol) is present in the adhesive in an amount between about 5 and about 50 weight percent.11. The adhesive of claim 1 , wherein the second polymeric component is present in the adhesive in an amount between about 5 and about 50 weight percent.12. The adhesive of claim 6 , wherein the solvent is present in the adhesive in an amount between about 50 and about 95 weight percent.13. The adhesive of claim 8 , wherein the surfactant is present in the adhesive in an amount between about 0.01 and about 0.5 weight percent.14. The adhesive of claim 9 , wherein the preservative is present in an amount between about 0.01 and about 0.5 weight percent.15. ...

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28-11-2013 дата публикации

Electrochemical glazing having electrically controllable optical and energy-related properties

Номер: US20130312341A1
Принадлежит: Sage Electrochromics Inc

The invention relates to glazing ( 1 ) comprising a first glazing sheet ( 10; 10 A, 10 B) forming a substrate on which at least one film of an electrochemical system ( 12 ) is formed, said system having optical and/or energy-related properties that are electrically controllable, a second glazing sheet ( 14 ) forming a counter-substrate, and a third glazing sheet ( 18 ). The substrate has characteristics that allow it to be obtained by being cut from a motherboard on which motherboard at least one film of the electrochemical system ( 12 ) is formed. The substrate is located between the counter-substrate ( 14 ) and the third glazing sheet ( 18 ) and is set back relative to the counter-substrate ( 14 ) and relative to the third glazing sheet ( 18 ) over the entire circumference of the substrate ( 10; 10 A, 10 B).

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05-12-2013 дата публикации

THERMOSETTING RESIN COMPOSITION AND PREPREG AND METAL CLAD LAMINATE USING THE SAME

Номер: US20130319609A1
Принадлежит: LG CHEM, LTD.

The present invention relates to a thermosetting resin composition used in a printed circuit board for a semiconductor package, and a prepreg and a metal clad laminate using the same. More particularly, the present invention provides a thermosetting resin composition that includes a mixture of a BT or cyanate resin and an epoxy resin and a specific content of a novolac resin as a curing agent so as to inhibit separation of the resin and an inorganic filler during a process of laminating a prepreg on a metal foil, thereby providing a printed circuit board having a uniform insulation layer, and a prepreg and a metal clad laminate for a double-sided or multilayer printed circuit board that are manufactured by using the same. 1. A thermosetting resin composition comprising: (d) 120 to 300 parts by weight of an inorganic filler , based on 100 parts by weight of a resin mixture including (a) 10 to 55% by weight of a bismaleimide-triazine or cyanate-based resin; (b) 35 to 80% by weight of an epoxy resin; and (c) 5 to 15% by weight of a multi-functional phenolic resin having a hydroxyl equivalent weight of 100 to 300 as a curing agent.2. The thermosetting resin composition according to claim 1 , wherein the bismaleimide-triazine resin has a weight average molecular weight of 2 claim 1 ,000 to 5 claim 1 ,000.3. The thermosetting resin composition according to claim 1 , wherein the cyanate resin is one or more selected from the group consisting of a bisphenol A type cyanate resin claim 1 , a bisphenol E type cyanate resin claim 1 , a novolac type cyanate resin claim 1 , a dicyclopentadiene bisphenol type cyanate resin claim 1 , and a tetramethyl bisphenol F type cyanate resin.4. The thermosetting resin composition according to claim 1 , wherein the epoxy resin is one or more selected from the group consisting of a bisphenol A type epoxy resin claim 1 , a phenol novolac epoxy resin claim 1 , a tetraphenyl ethane epoxy resin claim 1 , a naphthalene-based epoxy resin claim 1 , a ...

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05-12-2013 дата публикации

Interlayer for laminated glass and laminated glass

Номер: US20130323515A1
Принадлежит: Sekisui Chemical Co Ltd

The present invention provides an interlayer film for laminated glass which enables production of laminated glass with high heat-shielding properties and a low |YI| value; and laminated glass including the interlayer film for laminated glass. An interlayer film for laminated glass according to the present invention includes a thermoplastic resin; tungsten oxide particles; and at least one component selected from a phthalocyanine compound, a naphthalocyanine compound, and an anthracocyanine compound; and a laminated glass of the present invention comprises: a first member for laminated glass; a second member for laminated glass; and a single-layer interlayer film or a multi-layer interlayer film between the first member for laminated glass and the second member for laminated glass, wherein the single-layer interlayer film or the multi-layer interlayer film includes the interlayer film for laminated glass according to the present invention.

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19-12-2013 дата публикации

POLYOXYALKYLENE-MODIFIED VINYL ACETAL POLYMER, AND COMPOSITION COMPRISING SAME

Номер: US20130338306A1
Принадлежит: KURARAY CO., LTD.

There is provided a polyoxyalkylene-modified vinyl acetal polymer which has polyoxyalkylene groups represented by general formula (I) in side chain, in which a viscosity-average polymerization degree P is 150 to 5000, an acetalization degree is 10 to 85 mol % and a polyoxyalkylene modification rate S is 0.1 to 10 mol %. Such a polymer has a feature that a film or sheet produced therefrom has improved film strength and flexibility, as well as a feature that a resin composition therefrom is free from phase separation. 2. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , produced by acetalizing a polyoxyalkylene-modified vinyl alcohol polymer which comprises the polyoxyalkylene group represented by formula (I) in a side chain claim 1 , and which has a viscosity-average polymerization degree P of 150 to 5000 claim 1 , a saponification degree of 20 to 99.99 mol % and a polyoxyalkylene modification rate S of 0.1 to 10 mol %.3. A composition comprising the polyoxyalkylene-modified vinyl acetal polymer of .4. A slurry composition comprising the polyoxyalkylene-modified vinyl acetal polymer of claim 1 , a ceramic powder and an organic solvent.5. A ceramic green sheet produced from the slurry composition of .6. A laminated ceramic capacitor produced from the ceramic green sheet of .9. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents a hydrogen atom.10. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents a methyl group.11. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents a hydrogen atom.12. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents an alkyl group having 1 to 8 carbon atoms.13. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents a hydrogen atom and Rrepresents a hydrogen atom.14. The polyoxyalkylene-modified vinyl acetal polymer of claim 1 , wherein Rrepresents a hydrogen atom and Rrepresents an ...

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26-12-2013 дата публикации

SAFETY GLASS PANEL

Номер: US20130344317A1
Принадлежит: SAINT-GOBAIN GLASS FRANCE

The invention relates to a glazing comprising a glass substrate and a complex sheet made of a plastic comprising a plasticized polyvinyl butyral layer and a polyester film provided with a scratch-resistant and abrasion-resistant coating, an adhesive layer of thermoplastic polyurethane being inserted between the glass substrate and the polyvinyl butyral layer of the complex sheet of plastic, characterized in that the adhesion of the polyester film to the polyvinyl butyral layer, measured by exerting on a 1 cm wide strip of the polyester film a tensile force perpendicular to the surface of the glazing with a pull rate of 5 cm/min, is at least equal to 3 daN/cm. 1. A glazing comprising:a glass substrate and a complex sheet comprising a plastic comprising a plasticized polyvinyl butyral layer and a polyester film with comprising a scratch-resistant and abrasion-resistant coating, an adhesive layer of thermoplastic polyurethane being inserted between the glass substrate and the polyvinyl butyral layer of the complex sheet of plastic, wherein the adhesion of the polyester film to the polyvinyl butyral layer, measured by exerting on a 1 cm wide strip of the polyester film a tensile force perpendicular to the surface of the glazing with a pull rate of 5 cm/min, is at least equal to 3 daN/cm.2. The glazing of claim 1 , wherein the adhesion of the polyester film to the polyvinyl butyral layer is at least equal to 4 daN/cm.3. The glazing of claim 1 , wherein the adhesion of the polyester film to the polyvinyl butyral layer is at least equal to 5 daN/cm.4. The glazing of claim 1 , wherein the adhesion of the polyester film to the polyvinyl butyral layer is at most equal to 8 daN/cm.5. The glazing of claim 1 , wherein the adhesion of the polyester film to the polyvinyl butyral layer is at most equal to 7 daN/cm.6. The glazing of claim 1 , wherein the glass substrate is a sheet of annealed or tempered glass.7. The glazing of claim 6 , wherein the glass is chemically tempered.8. ...

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02-01-2014 дата публикации

MODIFIED VINYL ALCOHOL POLYMER SOLUTION AND METHOD FOR PRODUCING SAME

Номер: US20140005326A1
Принадлежит: KURARAY CO., LTD.

An object of the present invention is to provide a modified PVA solution that enables physical properties such as viscosity to be adjusted even when a concentration of the modified PVA having high hydrophobicity is increased, and to provide a method for producing the modified PVA solution. The modified vinyl alcohol polymer solution of the present invention comprises: a modified vinyl alcohol polymer; an organic solvent; and water, the modified vinyl alcohol polymer: comprising a monomer unit having an alkyl group having a carbon number of 2 or greater and 29 or less;, and having a percentage content of the monomer unit being no less than 0.05 mol % and no greater than 5 mol %, and a degree of saponification of the modified vinyl alcohol polymer being no less than 20 mol % and no greater than 99.99 mol %, and in terms of Hansen solubility parameters of the organic solvent, δd being no less than 13 MPa and no greater than MPa, δp being no less than 4 MPaand no greater than 9 MPa, and δh being no less than 9 MPaand no greater than 13 MPa. 1. A modified vinyl alcohol polymer solution , comprising:a modified vinyl alcohol polymer;an organic solvent; andwater,wherein:the modified vinyl alcohol polymer comprises a monomer unit comprising an alkyl group having a carbon number of 2 or greater and 29 or less, such that a percentage content of the monomer unit is no less than 0.05 mol % and no greater than 5 mol %, and a degree of saponification of the modified vinyl alcohol polymer is no less than 20 mol % and no greater than 99.99 mol %; and{'sup': 0.5', '0.5', '0.5', '5', '0.5', '0.5, 'in terms of Hansen solubility parameters of the organic solvent, δd is no less than 13 MPaand no greater than 18 MPa, δp is no less than 4 MPaand no greater than 9 MPa, and δh is no less than 9 MPaand no greater than 13 MPa.'}2. The modified vinyl alcohol polymer solution according to claim 1 , wherein:the monomer unit has a carbon number of 11 or greater; anda ratio of the carbon number to ...

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30-01-2014 дата публикации

GAS BARRIER SUBSTRATE

Номер: US20140030494A1
Принадлежит: E Ink Holdings Inc.

A gas barrier substrate including a flexible base material, at least one first inorganic gas barrier layer and at least one second inorganic gas barrier layer is provided. The flexible base material has an upper surface. The first inorganic gas barrier layer is disposed on the flexible base material and covers the upper surface. The second inorganic gas barrier layer is disposed on the first inorganic gas barrier layer and covers the first inorganic gas barrier layer. A water vapor and oxygen transmission rate of the second inorganic gas barrier layer is lower than that of the first inorganic gas barrier layer. 1. A gas barrier substrate comprising:a flexible base material having an upper surface;at least one first inorganic gas barrier layer disposed on the flexible base material and covering the upper surface; andat least one second inorganic gas barrier layer disposed on the first inorganic gas barrier layer and covering the first inorganic gas barrier layer, wherein a water vapor and oxygen transmission rate of the second inorganic gas barrier layer is lower than a water vapor and oxygen transmission rate of the first inorganic gas barrier layer.2. The gas barrier substrate as recited in claim 1 , wherein the flexible base material comprises a plastic base material or a thinning glass base material.3. The gas barrier substrate as recited in claim 1 , wherein a material of the first inorganic gas barrier layer comprises silicon nitride or silicon oxide.4. The gas barrier substrate as recited in claim 3 , wherein the material of the first inorganic gas barrier layer is the same as the material of the second inorganic gas barrier layer.5. The gas barrier substrate as recited in claim 1 , wherein a thickness of the first inorganic gas barrier layer is greater than a thickness of the second inorganic gas barrier layer.6. The gas barrier substrate as recited in claim 1 , wherein a densification of the second inorganic gas barrier layer is higher than a densification ...

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06-03-2014 дата публикации

Flat-conductor connection element for an antenna structure

Номер: US20140060921A1
Принадлежит: Saint Gobain Glass France SAS

A flat-conductor connection element for an antenna structure is described. The flat-conductor connection element, is arranged in or on a pane and has: a flat conductor with a base layer, a conductor track, a first dielectric layer, a shield, and a second dielectric layer and a metal frame.

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06-03-2014 дата публикации

LAMINATED GLASS AND ITS PRODUCTION PROCESS

Номер: US20140065374A1
Принадлежит: Asahi Glass Company, Limited

To provide laminated glass excellent in the quality and the cost, in which two glass plates differing in the plate thickness can easily be bent with good accuracy. 1. A laminated glass comprising a plurality of glass plates bent into a predetermined shape , and an interlayer interposed between the plurality of glass plates , at least two glass plates among the plurality of glass plates being a thick glass plate and a thin glass plate differing in the plate thickness;wherein at an any temperature between the annealing point and the softening point of the thick glass plate, the thick glass plate between the two glass plates differing in the plate thickness, has a lower viscosity than the thin glass plate.2. The laminated glass according to claim 1 , wherein the two glass plates differing in the plate thickness have different glass compositions.3. The laminated glass according to claim 1 , wherein the two glass plates differing in the plate thickness satisfy the formula 1 Подробнее

13-03-2014 дата публикации

COATED ARTICLE WITH LOW-E COATING HAVING ABSORBING LAYERS FOR LOW FILM SIDE REFLECTANCE AND LOW VISIBLE TRANSMISSION

Номер: US20140072784A1
Принадлежит:

Absorbing layers of a low-emissivity (low-E) coating are designed to cause the coating to have a reduced film side reflectance which is advantageous for aesthetic purposes. In certain embodiments, the absorbing layers are metallic or substantially metallic (e.g., NiCr or NiCrN) and are each provided between first and second nitride layers (e.g., silicon nitride based layers) in order to reduce or prevent oxidation of the absorbing layers during optional heat treatment (e.g., thermal tempering, heat bending, and/or heat strengthening). Coated articles according to certain example embodiments of this invention may be used in the context of insulating glass (IG) window units, other types of windows, etc. 1. A coated article including a coating supported by a glass substrate , the coating comprising:first and second infrared (IR) reflecting layers comprising silver, wherein said IR reflecting layers are spaced apart from one another by at least one dielectric layer that is located therebetween, and wherein the first IR reflecting layer is located closer to the glass substrate than is the second IR reflecting layer;a first substantially metallic or metallic absorption layer comprising Ni and/or Cr located such that the first absorption layer is located between the glass substrate and the first IR reflecting layer,a second substantially metallic or metallic absorption layer comprising Ni and/or Cr located such that both the first and second IR reflecting layers are located between the glass substrate and the second absorption layer, andwherein the first absorption layer and the second absorption layer are each sandwiched between and contacting dielectric layers comprising silicon nitride.2. The coated article of claim 1 , wherein said first and second absorption layers each comprise NiCr.3. The coated article of claim 1 , wherein said first and second absorption layers each comprise NiCrN.4. The coated article of claim 1 , wherein said first and second absorption layers ...

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27-03-2014 дата публикации

METHODS FOR PRODUCING ION EXCHANGED GLASS AND RESULTING APPARATUS

Номер: US20140087159A1
Принадлежит:

A laminate structure having a first glass layer, a second glass layer, and at least one polymer interlayer intermediate the first and second glass layers. The first glass layer is comprised of a thin, chemically strengthened glass having a surface compressive stress of between about 250 MPa and about 350 MPa and a depth of layer (DOL) of compressive stress greater than about 60 μm. The second glass layer can also be comprised of a thin, chemically strengthened glass having a surface compressive stress of between about 250 MPa and about 350 MPa and a depth of layer (DOL) of compressive stress greater than about 60 μm. 1. A laminate structure comprising:a first glass layer;a second glass layer; andat least one polymer interlayer intermediate the first and second glass layers,wherein the first glass layer is comprised of a thin, chemically strengthened glass having a surface compressive stress of between about 250 MPa and about 350 MPa and a depth of layer (DOL) of compressive stress greater than about 60 μm.2. The laminate structure of wherein the second glass layer is comprised of a thin claim 1 , chemically strengthened glass having a surface compressive stress of between about 250 MPa and about 350 MPa and a DOL of compressive stress greater than about 60 μm.3. The laminate structure of wherein the surface compressive stress of the first glass layer is approximately 300 MPa.4. The laminate structure of wherein the thicknesses of the first and second glass layers are selected from the group consisting of a thickness not exceeding 1.5 mm claim 1 , a thickness not exceeding 1.0 mm claim 1 , a thickness not exceeding 0.7 mm claim 1 , a thickness not exceeding 0.5 mm claim 1 , a thickness within a range from about 0.5 mm to about 1.0 mm claim 1 , a thickness from about 0.5 mm to about 0.7 mm.5. The laminate structure of wherein the thicknesses of the first and second glass layers are different.6. The laminate structure of wherein the composition of the first and second ...

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06-01-2022 дата публикации

Power transmission member, pretensioner, retractor, and method for manufacturing power transmission member

Номер: US20220001834A1
Принадлежит: Joyson Safety Systems Japan GK

A power transmission member including a base resin that has a water absorption characteristic that a water absorption rate is 1% or less when Method 1 of ISO 62 (a method for measuring a weight increasing rate after being immersed in water at 23° C. for 24 hours) is used and an elastomer that imparts mechanical characteristics to the power transmission member 32a, in which as the mechanical characteristics, tensile yield stress (ISO 527) is 40 to 54 MPa, tensile fracture strain (ISO 527) is 50% or more, tensile elastic modulus (ISO 527) is 1200 to 1900 MPa, bending elastic modulus (ISO 178) is 1100 to 1700 MPa, and unnotched Charpy impact strength (ISO 179) is no fracture at −30° C. or higher.

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05-01-2017 дата публикации

INTERMEDIATE FILM FOR LAMINATED GLASS, METHOD FOR MANUFACTURING INTERMEDIATE FILM FOR LAMINATED GLASS, AND LAMINATED GLASS

Номер: US20170001416A1
Принадлежит: Sekisui Chemical Co., Ltd.

There is provided an interlayer film for laminated glass with which the adhesive force between the interlayer film and a laminated glass member of the laminated glass can be effectively improved. The interlayer film for laminated glass according to the present invention has one-layer structure or a two or more-layer structure, is provided with a first layer containing a thermoplastic resin, a plasticizer and a metal element as a surface layer of the interlayer film, and the first layer is a first layer having a contact angle of greater than 40.1° when measured by a sessile drop method using diiodomethane or a first layer having a contact angle of greater than 54.2° when measured by a sessile drop method using ethylene glycol. 1. An interlayer film for laminated glass , having a one-layer structure or a two or more-layer structure ,being provided with a first layer containing a thermoplastic resin, a plasticizer and a metal element as a surface layer thereof, the first layer being a first layer having a contact angle of greater than 40.1° when measured by a sessile drop method using diiodomethane or a first layer having a contact angle of greater than 54.2° when measured by a sessile drop method using ethylene glycol.2. The interlayer film for laminated glass according to claim 1 , wherein the content of the metal element in the first layer is greater than or equal to 20 ppm and less than or equal to 200 ppm.3. The interlayer film for laminated glass according to claim 1 , wherein the first layer contains the metal element as a metal element derived from an alkali metal salt or an alkaline earth metal salt added thereto.4. The interlayer film for laminated glass according to claim 1 , wherein the metal element is a polyvalent metal element.5. The interlayer film for laminated glass according to claim 1 , wherein the first layer contains the metal element as a metal element derived from magnesium acetate or magnesium 2-ethylbutyrate added thereto.6. The interlayer ...

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05-01-2017 дата публикации

INTERLAYER FOR LAMINATED GLASS, INTERLAYER FOR LUMINESCENT LAMINATED GLASS, AND LAMINATED GLASS

Номер: US20170001417A1
Автор: Izu Yasuyuki, Oota Yuusuke
Принадлежит: Sekisui Chemical Co., Ltd.

The first aspect of the present invention aims to provide an interlayer film for laminated glass, an interlayer film for luminescent laminated glass, and a laminated glass including the interlayer film for laminated glass which are significantly suppressed while containing an aromatic compound such as a salicylic acid compound or a benzophenone compound. The second aspect of the present invention aims to provide an interlayer film for laminated glass which enables display of high luminance images under irradiation with light and inhibits reduction in the luminance of images even after use for a long period of time, and a laminated glass including the interlayer film for laminated glass. The first aspect of the present invention relates to an interlayer film for laminated glass containing: a thermoplastic resin; an aromatic compound that has a structure capable of coordinating with a metal; and an antioxidant, the antioxidant being at least one antioxidant selected from the group consisting of a phenolic compound, a phosphoric acid compound, and a sulfur compound. The second aspect of the present invention relates to an interlayer film for laminated glass including a luminescent layer that contains a thermoplastic resin, a luminescent material having a terephthalic acid ester structure, and a benzotriazole ultraviolet absorber, the luminescent layer containing the benzotriazole ultraviolet absorber in an amount of 0.05 to 10 parts by weight based on 1 part by weight of the luminescent material having a terephthalic acid ester structure. 1. An interlayer film for laminated glass comprising:a thermoplastic resin;an aromatic compound that has a structure capable of coordinating with a metal; andan antioxidant,the antioxidant being at least one antioxidant selected from the group consisting of a phenolic compound, a phosphoric acid compound, and a sulfur compound.2. The interlayer film for laminated glass according to claim 1 ,which contains the aromatic compound that ...

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07-01-2016 дата публикации

MULTIPLE PANE AND PRODUCTION METHOD OF MULTIPLE PANE

Номер: US20160001524A1
Принадлежит:

The multiple pane includes: a first glass panel; a second glass panel disposed facing the first glass panel with a predetermined interval in-between; and a hermetically-bonding member hermetically bonding peripheries of the first glass panel and the second glass panel to form a hermetically-enclosed space between the first glass panel and the second glass panel. The multiple pane further includes an adsorbing member which is fixed on a surface of the first glass panel so as to be inside the hermetically-enclosed space, has a height equal to or less than a length of the predetermined interval, and is for adsorbing a gas inside the hermetically-enclosed space. The hermetically-enclosed space is made to be in a reduced-pressure state. 1. A multiple pane , comprising:a first glass panel;a second glass panel disposed facing the first glass panel with a predetermined interval in-between;a hermetically-bonding member hermetically bonding peripheries of the first glass panel and the second glass panel to form a hermetically-enclosed space between the first glass panel and the second glass panel; andan adsorbing member which is fixed on a surface of the first glass panel so as to be inside the hermetically-enclosed space, has a height equal to or less than a length of the predetermined interval, and is for adsorbing a gas inside the hermetically-enclosed space,the hermetically-enclosed space being made to be in a reduced-pressure state.2. The multiple pane according to claim 1 , whereinthe height of the adsorbing member is less than the length of the predetermined interval between the first glass panel and the second glass panel.3. The multiple pane according to claim 1 , whereinthe adsorbing member is fixed at a position within a predefined distance of an edge of the first glass panel.4. A production method of a multiple pane which includes a first glass panel and a second glass panel claim 1 , the production method comprising:an application step of applying a solution for ...

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07-01-2016 дата публикации

COATED ARTICLE WITH IR REFLECTING LAYER AND METHOD OF MAKING SAME

Номер: US20160001525A1
Принадлежит:

Example embodiments of this invention relate to a coated article including an infrared (IR) reflecting layer of a material such as silver or the like, for use in an insulating glass (IG) window unit for example. In certain example embodiments, the coating is a single-silver type coating, and includes an overcoat including an uppermost layer of or including silicon nitride and a layer of or including tin oxide immediately under and contacting the silicon nitride based overcoat. In certain example embodiments, the thicknesses of the silicon nitride based overcoat and the tin oxide based layer are balanced (e.g., substantially equal, or equal plus/minus about 10%). It has surprisingly been found that such balancing results in an improvement in thermal cycling performance and improved mechanical durability. In certain example embodiments, the coating may realize surprisingly good substantially neutral film side reflective coloration, and may achieve an improved visible transmission, SHGC ratio and low U-values. Moreover, in certain example embodiments, stress in the overcoat of the coating may be reduced by reducing nitrogen gas flow (Nml/kW) and cathode power during a sputter-deposition process, thereby further improving thermal cycling performance. 120-. (canceled)21. An IG window unit including a coating supported by a glass substrate , the coating from the glass substrate outwardly comprising at least the following:a dielectric layer comprising silicon nitride;a dielectric layer comprising an oxide of titanium;another dielectric layer;a layer comprising zinc oxide;an infrared (IR) reflecting layer comprising silver on the glass substrate, located over and directly contacting the layer comprising zinc oxide, wherein the coating includes only one IR reflecting layer;an overcoat comprising (i) a layer comprising tin oxide and (ii) a layer comprising silicon nitride located over and contacting the layer comprising tin oxide;wherein the IG unit has an SHGC value of at ...

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04-01-2018 дата публикации

INTERMEDIATE FILM FOR LAMINATED GLASS, AND LAMINATED GLASS

Номер: US20180001598A1
Принадлежит:

There is provided an interlayer film for laminated glass with which the flexural rigidity of laminated glass can be enhanced over a wide temperature range and the sound insulating properties of laminated glass can be enhanced over a wide temperature range. The interlayer film for laminated glass according to the present invention has a shear storage equivalent elastic modulus of 10 MPa or more and 500 MPa or less in a temperature region of 80% or more of the temperature region of 0° C. or more and 60° C. or less, a value obtained by dividing a shear storage equivalent elastic modulus at 10° C. by a shear storage equivalent elastic modulus at 50° C. of 1 or more and 10 or less, a glass transition temperature falling within the range of −25° C. or more and 0° C. or less, and a largest value of tan δ in a temperature region of −50° C. or more and 0° C. or less of 0.1 or more and 1 or less. 1. An interlayer film for laminated glass having: a shear storage equivalent elastic modulus of 10 MPa or more and 500 MPa or less in a temperature region of 80% or more of the temperature region of 0° C. or more and 60° C. or less;a value obtained by dividing a shear storage equivalent elastic modulus at 10° C. by a shear storage equivalent elastic modulus at 50° C. of 1 or more and 10 or less;a glass transition temperature falling within the range of −25° C. or more and 0° C. or less; anda largest value of tan δ in a temperature region of −50° C. or more and 0° C. or less of 0.1 or more and 1 or less.2. The interlayer film for laminated glass according to claim 1 , having a glass transition temperature falling within the range of −20° C. or more.3. The interlayer film for laminated glass according to claim 1 , comprising a resin with a weight average molecular weight of 100000 or more and 1300000 or less.4. The interlayer film for laminated glass according to claim 1 , having a value of tan δ of 0.1 or more in a temperature region of 10% or more of the temperature region of −50° C. ...

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04-01-2018 дата публикации

INTERMEDIATE FILM FOR LAMINATED GLASS, AND LAMINATED GLASS

Номер: US20180001599A1
Принадлежит:

There is provided an interlayer film for laminated glass with which the flexural rigidity, sound insulating properties and long-term adhesive stability of laminated glass can be enhanced. The interlayer film for laminated glass according to the present invention has a shear storage equivalent elastic modulus of 10 MPa or more and 500 MPa or less in a temperature region of 80% or more of the temperature region of 0° C. or more and 30° C. or less, a value obtained by dividing a shear storage equivalent elastic modulus at 10° C. by a shear storage equivalent elastic modulus at 30° C. of 1 or more and 10 or less, a glass transition temperature falling within the range of −25° C. or more and 0° C. or less, and a largest value of tan δ in a temperature region of −50° C. or more and 0° C. or less of 0.1 or more and 1 or less. 1. An interlayer film for laminated glass having: a shear storage equivalent elastic modulus of 10 MPa or more and 500 MPa or less in a temperature region of 80% or more of the temperature region of 0° C. or more and 30° C. or less;a value obtained by dividing a shear storage equivalent elastic modulus at 10° C. by a shear storage equivalent elastic modulus at 30° C. of 1 or more and 10 or less;a glass transition temperature falling within the range of −25° C. or more and 0° C. or less; anda largest value of tan δ in a temperature region of −50° C. or more and 0° C. or less of 0.1 or more and 1 or less.2. The interlayer film for laminated glass according to claim 1 , having a glass transition temperature falling within the range of −20° C. or more.3. The interlayer film for laminated glass according to claim 1 , comprising a resin with a weight average molecular weight of 100000 or more and 1300000 or less.4. The interlayer film for laminated glass according to claim 1 , having a value of tan δ of 0.1 or more in a temperature region of 10% or more of the temperature region of −50° C. or more and 0° C. or less.5. The interlayer film for laminated glass ...

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02-01-2020 дата публикации

ASYMMETRIC GLASS LAMINATES

Номер: US20200001576A1
Принадлежит:

Principles and embodiments of the present disclosure relate to unique asymmetric laminates and methods that produce the laminates where the laminate includes an first glass substrate having a first thickness (t), an second glass substrate having a second thickness (t), an interlayer disposed between the second glass substrate and the first glass substrate, wherein the first thickness and the second thickness has a combined third thickness (t), and wherein t/tor t/tis in a range from about 0.7 to about 0.99. 1. A laminate comprising:{'sub': 'o', 'a first glass substrate comprising a first thickness (t) and a first outer surface and a second inner surface;'}{'sub': 'i', 'a second glass substrate comprising a second thickness (t) that is less than to, a third outer surface, and a fourth inner surface;'}an interlayer disposed between the second inner surface and the third outer surface;{'sub': t', 'i, 'wherein a third thickness (t) is equal to the sum of to and t;'}{'sub': o', 't, 'wherein t/tis in a range of from 0.7 to 0.999; and'}{'sub': rr', 'rr', 't', 't', 't, 'sup': '2', 'wherein, when the first outer surface is impacted at normal incidence with a 1 gram ball bearing traveling at a speed of 45 mph, the fourth inner surface experiences a flexural stress (σ) of no more than σ=10.344t−109.33t+347.75 as measured by strain gauge for tin a range of from 2 mm to 7 mm.'}2. The laminate of claim 1 , wherein the second glass substrate comprises a soda-lime silicate glass composition claim 1 , an aluminosilicate glass composition claim 1 , or an alkali aluminosilicate glass composition.3. The laminate of claim 1 , wherein the second glass substrate comprises a second glass comprising a surface compressive stress (CS) of no more than 300 MPa4. The laminate of claim 1 , wherein the second glass substrate comprises a strengthened glass substrate.5. The laminate of claim 4 , wherein the second glass substrate comprises at least one of a surface CS in a range from about 50 MPa to ...

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02-01-2020 дата публикации

AUTOMOTIVE PERFORATED INSULATED GLASS STRUCTURE

Номер: US20200001932A1
Принадлежит: Tesla, Inc.

A glass structure for a vehicle includes an outer layer of glass and an inner layer of glass. The inner layer of glass is perforated by a plurality of holes and the outer layer of glass and the inner layer of glass are separated by a gap disposed between opposing surfaces of the outer layer of glass and the inner layer of glass. The glass structure provided herein may provide noise absorption and temperature insulation characteristics. 1. A glass structure for a vehicle , the structure comprising:an outer layer of glass; andan inner layer of glass, wherein the inner layer of glass is perforated by a plurality of holes, and wherein the outer layer of glass and the inner layer of glass are separated by a gap disposed between opposing surfaces of the outer layer of glass and the inner layer of glass.2. The structure of claim 1 , wherein the gap is between 0.5 mm and 6 mm.3. The structure of claim 1 , wherein each hole of the plurality of holes is a circle.4. The structure of claim 1 , wherein the plurality of holes are uniformly distributed across the inner layer of glass.5. The structure of claim 1 , wherein the plurality of holes are distributed more densely around the edges of the inner layer of glass than a center of the inner layer of glass.6. The structure of claim 1 , wherein the inner layer of glass is thinner than the outer layer of glass.7. The structure of claim 1 , wherein the inner layer of glass has a higher strength than the outer layer of glass.8. The structure of claim 1 , wherein the chemical composition of the outer layer of glass and the inner layer of glass are the same.9. The structure of claim 1 , wherein the inner layer of glass is a first inner layer of glass claim 1 , further comprising:a second inner layer of glass, wherein the first inner layer of glass and the second inner layer of glass are separated by a gap disposed between opposing surfaces of the first inner layer of glass and the second inner layer of glass.10. The structure of claim ...

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03-01-2019 дата публикации

LAMINATED VEHICLE WINDSHIELD WITH INTERNAL LUMINOUS SIGN(S)

Номер: US20190001870A1
Автор: LALUET Jean-Yves
Принадлежит:

A laminated vehicle windshield containing internal luminous information includes a first glazing, a lamination interlayer, and a second glazing with a face bearing a first curved organic-light-emitting-diode device forming a first luminous sign. 1. A laminated vehicle windshield including one or more internal luminous signs , comprising:a first curved glazing with a first main face, which first main face is intended to be on an exterior side of the vehicle, and an opposite second main face;a second curved glazing with a third main face and an opposite fourth main face, which fourth main face is intended to be on an interior side of the vehicle, at least one of the first and second curved glazings being made of mineral glass,said first and second curved glazings being connected together via the second and third main faces by a lamination interlayer made of a thermoformable polymeric material, said lamination interlayer including a first bonding main face toward a side of the second main face and a second bonding main face toward a side of the third main face;anda first light source for a first sign;wherein the first light source includes a first curved organic-light-emitting-diode (OLED) device, said first curved OLED device associated with the fourth main face and on a periphery of the fourth main face side, and wherein the first curved OLED device is configured to emit a first emission in the visible spectrum and forms the first sign, and wherein the first curved OLED device is behind a protective top element, further from the second curved glazing than the first curved OLED device.2. The laminated vehicle windshield as claimed in claim 1 , further comprising a first peripheral layer forming an interior masking layer made of opaque material claim 1 , which is between the second bonding face and the third main face or which is on the fourth main face claim 1 , and/or a second peripheral layer forming an exterior masking layer made of opaque material claim 1 , ...

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05-01-2017 дата публикации

Thermoplastic film for a laminated-glass pane having a non-linear continuous wedge insert in the vertical direction in some sections

Номер: US20170003503A1
Принадлежит: Saint Gobain Glass France SAS

A thermoplastic film for a laminated-glass pane having a non-linear continuous wedge insert in the vertical direction in some sections. The thermoplastic film has a continuous non-linear wedge angle profile having a first section, which has a wedge angle that is constant or that is variable at least in some sections in order to avoid double images in transmission. The nonlinear wedge angle profile also has a second section, which adjoins the first section. The second section has a variable wedge angle in order to avoid ghost images in reflection. The wedge angle profile has a third section, which adjoins the second section. The third section has a wedge angle that is constant or that is variable at least in some sections in order to avoid double images in transmission.

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13-01-2022 дата публикации

INTERLAYER FOR LAMINATED GLASS AND LAMINATED GLASS

Номер: US20220009205A1
Принадлежит: Sekisui Chemical Co., Ltd.

The interlayer film for laminated glass of the present invention is an interlayer film for laminated glass that is disposed between an inorganic glass and an organic glass to bond the inorganic glass and the organic glass together, wherein the interlayer film for laminated glass comprises at least a first resin portion and a second resin portion, the interlayer film for laminated glass has a total thickness of 50 μm or more and 2.0 mm or less, a product (kG1′) of a storage modulus (G1′) of the first resin portion measured at 80° C. at a frequency of 1 Hz in a shear mode and a coefficient (k) calculated by the following formula is less than 1.1×10Pa, and a storage modulus (G2′) of the second resin portion measured at 80° C. at a frequency of 1 Hz in a shear mode is larger than 2.5×10Pa, 1. An interlayer film for laminated glass that is disposed between an inorganic glass and an organic glass to bond the inorganic glass and the organic glass together ,the interlayer film for laminated glass comprising at least a first resin portion and a second resin portion,the interlayer film for laminated glass having a total thickness of 50 μm or more and 2.0 mm or less,{'sup': '7', 'a product (kG1′) of a storage modulus (G1′) of the first resin portion measured at 80° C. at a frequency of 1 Hz in a shear mode and a coefficient (k) calculated by the following formula (1) being less than 1.1×10Pa, and'}{'sup': '4', 'claim-text': {'br': None, 'i': k', 'Cb×Tb', 'Ca×Ta, '=()/()\u2003\u2003(1)'}, 'a storage modulus (G2′) of the second resin portion measured at 80° C. at a frequency of 1 Hz in a shear mode being larger than 2.5×10Pa,'}wherein Ca is a linear expansion coefficient of the inorganic glass, Cb is a linear expansion coefficient of the organic glass, Ta is a thickness of the inorganic glass, and Tb is a thickness of the organic glass.2. The interlayer film for laminated glass according to claim 1 , wherein the storage modulus (G1′) of the first resin portion is 8.0×10Pa or ...

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20-01-2022 дата публикации

LAMINATED PANES AND WINDOWS FORMED THEREWITH

Номер: US20220016871A1
Принадлежит:

A laminated pane for a window includes (1) a first sheet having a first thickness and a first coefficient of thermal expansion (CTE), (2) a second sheet of an inorganic glass having a second thickness and a second CTE, and (3) a polymer interlayer adhered between the first sheet and the second sheet including a layer of a first polymer material having a first elastic modulus and a layer of a second polymer material having a second elastic modulus, wherein the first CTE is greater than the second CTE, the second thickness is in the range of from 1 down to 0.3 mm, and the first elastic modulus is more than 20 times the second elastic modulus. 2. The laminated pane according to claim 1 , wherein the first transparent or translucent material is an organic polymer material.3. The laminated pane according to claim 1 , wherein the first transparent or translucent material is a soda lime silicate glass.4. The laminated pane according to claim 1 , wherein the second CTE is less than about 50×10/° C. and greater than zero.5. The laminated pane according to claim 1 , wherein the second CTE is less than about 35×10/° C. and greater than zero.6. The laminated pane according to claim 1 , wherein the second transparent or translucent material is a boro-aluminosilicate glass.7. The laminated pane according to claim 1 , wherein the second transparent or translucent material is an alkaline earth boro-aluminosilicate glass or an alkali-free boro-aluminosilicate glass.8. The laminated pane according to claim 1 , wherein the second thickness is in the range from about 0.85 to about 0.4 mm.9. The laminated pane according to claim 1 , wherein the second thickness is in the range from about 0.8 to about 0.45 mm.10. The laminated pane according to claim 1 , wherein the first elastic modulus is in the range of from about 300 to about 1000 MPa when measured at an elongation rate of 10 mm per minute and at 30° C.11. The laminated pane according to claim 1 , wherein the first elastic modulus is ...

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03-01-2019 дата публикации

PHOTOVOLTAIC MODULE ENCAPSULATION

Номер: US20190006547A1
Принадлежит:

There is provided a method of encapsulating a photovoltaic module comprising a plurality of photovoltaic devices. The method comprises forming a wall of compact glass that extends from a periphery of a surface of a first glass sheet to a periphery of an opposing surface of a second glass sheet, the plurality of photovoltaic devices being located within a volume enclosed by the first glass, the second glass sheet and the wall of compact glass, wherein the wall of compact glass is formed from a plurality of courses of glass fit, and sealing the enclosed volume using laser-assisted glass fit bonding. 1. A method of encapsulating a photovoltaic module comprising a plurality of photovoltaic devices , the method comprising:forming a wall of compact glass that extends from a periphery of a surface of a first glass sheet to a periphery of an opposing surface of a second glass sheet, the plurality of photovoltaic devices being located within a volume enclosed by the first glass sheet, the second glass sheet and the wall of compact glass, wherein the wall of compact glass is formed from a plurality of courses of glass frit; andsealing the enclosed volume using laser-assisted glass frit bonding.2. The method according to claim 1 , wherein the wall of compact glass is formed from a plurality of courses of glass frit that are individually transformed into compact glass by heating in an oven or furnace.3. The method according to claim 1 , wherein the distance extended by the wall is 50 μm or greater claim 1 , is preferably between 150 μm and 1000 μm claim 1 , and is more preferably between 200 μm and 800 μm.4. The method according to claim 1 , wherein the method comprises any of:forming a wall of compact glass on the first glass sheet and subsequently using laser-assisted glass frit bonding to fuse the wall of compact glass to the second glass sheet; andforming a first partial height wall of compact glass on the first glass sheet, forming a second partial height wall of compact ...

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12-01-2017 дата публикации

LAMINATED-GLASS INTERMEDIATE FILM, ROLLED BODY, LAMINATED GLASS, AND METHOD FOR PRODUCING LAMINATED GLASS

Номер: US20170008257A1
Принадлежит: Sekisui Chemical Co., Ltd.

The present invention aims to provide an interlayer film for laminated glass which, while having recesses in the shape of engraved lines, enables the production of a laminated glass with high production efficiency by a nip roll method; a roll of the interlayer film for laminated glass; a laminated glass including the interlayer film for laminated glass; and a method of producing laminated glass. The present invention relates to an interlayer film for laminated glass. The interlayer film includes, on at least one surface thereof, a large number of recesses and a large number of projections. The recesses have a groove shape with a continuous bottom. The recesses are adjacently arranged regularly side by side in parallel with one another. The recesses in a groove shape with a continuous bottom are inclined 55° or less relative to the machine direction of the film in production of the interlayer film for laminated glass. 1. An interlayer film for laminated glass , the interlayer film comprising , on at least one surface thereof:a large number of recesses; anda large number of projections,the recesses having a groove shape with a continuous bottom,the recesses being adjacently arranged regularly side by side in parallel with one another,the recesses in a groove shape with a continuous bottom being inclined at 55° or less relative to a machine direction of the film in production of the interlayer film for laminated glass.2. The interlayer film for laminated glass according to claim 1 ,wherein tip portions of the projections have a roughness of 30 μm or less.3. The interlayer film for laminated glass according to claim 1 ,wherein the projections each have a tip with a radius of rotation of 20 μm or more.4. A roll obtained by winding the interlayer film for laminated glass according to in the machine direction of the film in production of the interlayer film for laminated glass.5. A laminated glass claim 1 , comprising:a pair of glass plates; and{'claim-ref': {'@idref': ' ...

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03-01-2019 дата публикации

Flexible substrate

Номер: US20190008043A1
Принадлежит: Nitto Denko Corp

There is provided a flexible substrate having excellent flexibility and gas barrier properties. A flexible substrate 100 according to the present invention includes: a base material 20 including an inorganic glass 10 and resin layers 11 and 11′ placed on both sides of the inorganic glass 10; and an inorganic thin film 12 placed on a side of one of the resin layers where the inorganic glass is not placed, wherein the inorganic thin film 12 is formed on at least a peripheral edge of one surface of the base material.

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14-01-2016 дата публикации

METHODS AND STRUCTURES FOR REDUCING BIAXIAL BENDING AND/OR TWISTING OF FLEXIBLE GLASS SUBSTRATES

Номер: US20160009593A1
Принадлежит:

A flexible glass structure includes a flexible glass substrate having a thickness of no more than about 0.3 mm. A stiffening layer is coupled to a surface of the flexible glass substrate. The stiffening layer includes at least one stiffening element extending along the surface of the flexible glass substrate in a running direction having a Young's modulus selected to provide a preferred bending axis of the flexible glass substrate in a direction substantially parallel to the running direction of the stiffening element. 1. A flexible glass structure , comprising:a flexible glass substrate having a thickness of ≦0.3 mm; anda stiffening layer coupled to a surface of the flexible glass substrate, the stiffening layer comprising at least one stiffening element extending along the surface of the flexible glass substrate in a running direction having a Young's modulus selected to provide a preferred bending axis of the flexible glass substrate in a direction substantially parallel to the running direction of the stiffening element.2. The flexible glass structure of claim 1 , wherein the stiffening layer further comprises a coating material.3. The flexible glass structure of claim 2 , wherein the stiffening element is encapsulated in the coating material.4. The flexible glass structure of claim 2 , wherein the stiffening element has a Young's modulus greater than a Young's modulus of the coating material.5. The flexible glass structure of claim 4 , wherein the stiffening element has a Young's modulus of ≧10 GPa and the coating material has a Young's modulus of ≦1 GPa.6. The flexible glass structure of claim 4 , wherein the stiffening element has a Young's modulus of ≧40 GPa and the coating material has a Young's modulus of ≦20 GPa.7. The flexible glass structure of claim 1 , wherein the stiffening element comprises a shear thickening material.8. The flexible glass substrate of claim 1 , wherein the stiffening element comprises a glass fiber or a metal wire.9. The flexible ...

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27-01-2022 дата публикации

COMPONENT WITH ELECTRICAL FUNCTIONAL ELEMENTS FOR THE PRODUCTION OF A LAMINATED SHEET

Номер: US20220024185A1
Принадлежит:

A component for the production of a laminated sheet, includes at least two electrical functional elements and cabling, which includes electrical conductors having insulating sheathing and connected in each case to an electrical functional element, wherein the cabling has a bundling section, in which all the electrical conductors are surrounded by a common insulating sheathing. 1. A component for the production of a laminated sheet , comprising at least two electrical functional elements and cabling , which comprises electrical conductors having insulating sheathing and connected in each case to an electrical functional element , wherein the cabling has a bundling section , in which all the electrical conductors are surrounded by common insulating sheathing.2. The component according to claim 1 , comprising at least one internal electrical functional element for incorporation into the laminated sheet.3. The component according to claim 2 , further comprising at least one external electrical functional element for external attachment to the laminated sheet.4. The component according to claim 1 , wherein the cabling includes claim 1 , for each electrical functional element claim 1 , an associated individual section claim 1 , which is connected to the respective electrical functional element and in which the electrical conductor(s) of said functional element are surrounded by their own insulating sheathing claim 1 , which surrounds no electrical conductor(s) of the other functional element(s).5. The component according to claim 4 , comprising at least three electrical functional elements claim 4 , wherein the individual section of a functional element is connected to the bundling section and a partial bundling section claim 4 , in which the electrical conductors of the other functional elements are surrounded by common insulating sheathing.6. The component according to claim 4 , wherein the external electrical functional element and/or the individual section of the ...

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11-01-2018 дата публикации

COMPOSITE PANE WITH A CAPACITIVE SWITCHING ZONE

Номер: US20180009198A1
Принадлежит:

A composite pane with a capacitive switching zone includes a substrate, a first intermediate layer areally bonded to the substrate, a second intermediate layer areally bonded to the first intermediate layer, and a cover pane areally bonded to the second intermediate layer. A carrier film with an electrically conductive layer is arranged between the first and second intermediate layers. A capacitive switching zone is electrically isolated from the electrically conductive layer by a coating-free separating line, the capacitive switching zone has a contact zone, a supply line zone, and a connection zone; the supply line zone electrically connects the contact zone to the connection zone, and the connection zone is electrically connectable to sensor electronics. The surface capacitance between the contact zone and the outside surface of the substrate is greater than the surface capacitance between the contact zone and the outside surface of the cover pane. 2. The composite pane according to claim 1 , wherein a ratio of the surface capacitance cto the surface capacitance cis greater than or equal to 1.1:1.3. The composite pane according to claim 1 , wherein the supply line zone has a length lof 1 cm to 70 cm and has a width bof 0.5 mm to 10 mm.4. The composite pane according to claim 1 , wherein a ratio of length lto width bof the supply line zone is less than or equal to 1:700.5. The composite pane according to claim 1 , wherein an area of the contact zone is from 1 cmto 200 cmand/or has the shape of a rectangle claim 1 , square claim 1 , trapezoid claim 1 , triangle claim 1 , circle claim 1 , ellipse claim 1 , or drop or has rounded corners.6. The composite pane according to claim 1 , wherein a region of the electrically conductive layer outside the capacitive switching zone forms a surrounding zone claim 1 , which is connectable to the sensor electronics via another connection zone.7. The composite pane according to claim 1 , wherein a width tof the separating line is ...

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27-01-2022 дата публикации

AUTOMOBILE LAMINATED GLASS

Номер: US20220024282A1
Принадлежит: NIPPON SHEET GLASS COMPANY, LIMITED

A automobile laminated glass according to the present invention includes: a first glass plate that is formed into a rectangular shape; a second glass plate that is disposed so as to face the first glass plate, and is formed into a rectangular shape; an intermediate film that is disposed between the first glass plate and the second glass plate; a functional layer that is disposed between the first glass plate and the second glass plate; and an obstructing layer that is laminated on a peripheral edge portion of at least one of the first glass plate and the second glass plate, wherein the functional layer is formed so that an outer edge of at least a portion of the functional layer is located outward of an inner edge of the obstructing layer. 1. An automobile laminated glass comprising:a first glass plate that is formed into a rectangular shape;a second glass plate that is disposed so as to face the first glass plate, and is formed into a rectangular shape;an intermediate film that is disposed between the first glass plate and the second glass plate, and includes a functional layer; andan obstructing layer that is laminated on a peripheral edge portion of at least one of the first glass plate and the second glass plate,wherein the functional layer is formed so that an outer edge of at least a portion of the functional layer is located outward of an inner edge of the obstructing layer.23.-. (canceled)4. The automobile laminated glass according to claim 1 ,wherein the functional layer includes a projection film for a head-up display device, and at least one base film that supports the projection film, anda portion of the outer edge of the functional layer is formed so as to reach an end edge of the automobile laminated glass.5. The automobile laminated glass according to claim 1 ,wherein the functional layer includes a projection film for a head-up display device, and at least one base film that supports the projection film, anda portion of the outer edge of the ...

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14-01-2021 дата публикации

MULTIPLE LAYER ARTICLE WITH INTERACTIVE REINFORCEMENTS LINEAR RIBBON FIBER REINFORCEMENT FOR COMPOSITE FORMS

Номер: US20210008816A1
Автор: Guha Probir Kumar
Принадлежит: COATS & CLARK, INC.

A form for a thin reinforced composite material includes a plurality of separate linear fiber strips, each having a rectangular cross section composed of reinforcement fibers. The linear fiber strips laid out in a two-dimensional base layer defining a shape of the form. A first successive layer formed with the plurality of separate linear fiber strips contacting the base layer, the linear fiber strips laid out in the first successive layer interspersed from the separate linear fiber strips in the two-dimensional base layer. A method of forming the form includes arranging the plurality of separate linear fiber strips on a substrate and tacking the plurality of separate linear fiber strips to the substrate with a plurality of stitches. A method of forming a unitary reinforced composite component from the form is further provided. The resulting component having high strength and light weight and being efficient to manufacture. 1. A form for a component comprising:a plurality of separate linear fiber strips, each of said plurality of linear fiber strips having a rectangular cross section with a width and a thickness being composed of reinforcement fibers, said reinforcement fibers being glass fibers, aramid fibers, carbon fibers, or a combination thereof, said plurality of linear fiber strips laid out in a two-dimensional base layer that defines a shape of the form; anda first successive layer formed with said plurality of separate linear fiber strips in contact with said two-dimensional base layer, said plurality of separate linear fiber strips laid out in said first successive layer so as to be interspersed from said plurality of separate linear fiber strips in said two-dimensional base layer.2. The form of further comprising one to eighteen additional successive layers placed on said first successive layer claim 1 , where the plurality of said separate linear fiber strips are interspersed in said one to eighteen additional layers.3. The form of wherein said two- ...

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14-01-2021 дата публикации

LAMINATED GLASS STRUCTURES FOR ELECTRONIC DEVICES AND ELECTRONIC DEVICE COVERS

Номер: US20210008832A1
Принадлежит:

A laminated glass structure is provided that includes: a core glass layer having a first coefficient of thermal expansion (CTE); and a plurality of clad glass layers, each having a CTE that is lower than or equal to the first CTE of the core glass layer. A first of the clad layers is laminated to a first surface of the core glass layer and a second of the clad layers is laminated to a second surface of the core glass layer. Further, the total thickness of the core glass layer and the clad glass layers ranges from about 0.1 mm to about 3 mm. In addition, the laminated glass structure is characterized by a transmission power of at least 75% and at least 55% for signals at 28 GHz and 60 GHz, respectively, as calculated in a Three-Layer Model. 1. A laminated glass structure for an electronic device , comprising:a core glass layer having a first coefficient of thermal expansion (CTE), anda plurality of clad glass layers, each having a CTE that is lower than or equal to the first CTE of the core glass layer,wherein a first of the clad layers is laminated to a first surface of the core glass layer and a second of the clad layers is laminated to a second surface of the core glass layer,wherein the total thickness of the core glass layer and the clad glass layers ranges from about 0.1 mm to about 3 mm, andfurther wherein the laminated glass structure is characterized by a transmission power of at least 75% and at least 55% for signals at 28 GHz and 60 GHz, respectively, as calculated in a Three-Layer Model.2. The laminated glass structure according to claim 1 , wherein the total thickness of the core glass layer and the clad glass layers ranges from about 0.1 mm to about 1 mm.3. The laminated glass structure according to claim 1 , wherein each of the plurality of clad glass layers comprise an ion-exchangeable glass composition.4. The laminated glass structure according to claim 3 , wherein each of the plurality of clad glass layers further comprises a compressive stress ...

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14-01-2021 дата публикации

COMPOSITE PANE WITH A FUNCTIONAL ELEMENT HAVING ELECTRICALLY CONTROLLABLE OPTICAL PROPERTIES WITH IMPROVED EDGE SEALING

Номер: US20210008842A1
Принадлежит:

A composite pane containing a functional element having electrically controllable optical properties includes, in this order, a first pane, a first thermoplastic composite film having at least one plasticizer, a functional element having a peripheral edge, a barrier film having a cutout, into which the functional element is inserted, a second thermoplastic composite film having at least one plasticizer, a second pane, wherein the barrier film surrounds the functional element in a frame-like manner and is in direct contact with the peripheral edge of the functional element, and the barrier film contains at most 0.5 wt.-% plasticizer and prevents the diffusion of plasticizer through the barrier film. 2. The composite pane according to claim 1 , wherein the functional element is a polymer dispersed liquid crystal (PDLC) film.3. The composite pane according to claim 1 , wherein a thickness of the barrier film and a thickness of the functional element differ from one another by at most 30% claim 1 , and the thickness of the barrier film and the thickness of the functional element are substantially the same.4. The composite pane according to claim 1 , wherein the barrier film has a thickness of 0.1 mm to 1.0 mm.5. The composite pane according to claim 1 , wherein the first and/or the second thermoplastic composite film contains at least 3 wt. % of a plasticizer claim 1 , and the plasticizer contains or is made of aliphatic diesters of tri- or tetraethylene glycol.6. The composite pane according to claim 1 , wherein the thermoplastic composite films contain at least 60 wt. % of polyvinyl butyral (PVB).7. The composite pane according to claim 1 , wherein the barrier film contains or is made of polyethylene terephthalate PET) or polyvinyl fluoride (PVF) and is plasticizer free.8. The composite pane according to claim 1 , wherein the material composition of the barrier film differs in terms of its main constituent by weight from the main constituent by weight of the ...

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14-01-2021 дата публикации

METHOD FOR PRODUCING A COMPOSITE PANE WITH A FUNCTIONAL ELEMENT HAVING ELECTRICALLY CONTROLLABLE OPTICAL PROPERTIES

Номер: US20210008843A1
Принадлежит:

A method for producing a composite pane with a functional element having electrically controllable optical properties, includes providing a first pre-composite including a first thermoplastic laminating film and a first barrier film as well as a second pre-composite including a second thermoplastic laminating film and a second barrier layer trimming and the pre-composites substantially to the dimensions of the composite pane, forming a circumferential back cut in the barrier films, arranging the first pane, the first pre-composite, a functional element, the second pre-composite, and a second pane one over another in this order, the barrier films being arranged sheet-wise directly adjacent the functional element, surrounding the circumferential edge of the functional element, and touching one another sheet-wise at least in sections in an overhang u protruding beyond the functional element, and bonding the layer stack. 1. A method for producing a composite pane with a functional element having electrically controllable optical properties , the method comprising:a) providing a first pre-composite comprising a first thermoplastic laminating film and a first barrier film as well as a second pre-composite comprising a second thermoplastic laminating film and a second barrier layer and trimming the first and second pre-composites substantially to dimensions of the composite pane to be produced,b) forming a circumferential back cut in the first and second barrier films,c) arranging a first pane, the first pre-composite, a functional element, the second pre-composite, and a second pane one over another in this order, wherein the first and second barrier films are arranged sheet-wise directly adjacent the functional element with, at least in sections, a common overhang that is beyond the circumferential edge of the functional element and surrounds the circumferential edge of the functional element, andd) bonding the layer stack comprising, in this order, the first pane, the ...

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14-01-2021 дата публикации

HEATED LAMINATE WITH IMPROVED AESTHETIC

Номер: US20210008844A1
Принадлежит:

Heated windshields, which utilize a transparent conductive coating, are increasing in popularity due to the rapid deice defog action and higher efficiency of such products. With the limited waste heat available in electric and hybrid electric vehicles, cabin heating and defrosting must be done with electric power. One of the problems in designing a heated windshield is hiding the busbars from view for the exterior of the vehicle. This is especially a problem when the coating is on the inner surface of the exterior glass layer which is the preferred embodiment for both solar control and defrosting. The normal black obscuration cannot be applied over the coating and it is very expensive to first paint and then coat the glass. The invention makes use of a thin conductive layer placed between the bus bars and the coating which serves to hide the bus bars from view providing a glazing with an improved aesthetic. 1. A laminated glass comprising:at least two glass layers, an outer glass layer and an inner glass layer;at least one plastic bonding layer;at least two bus bars;at least two thin sheets of a conductive material; anda transparent conductive layer;wherein said at least two thin sheets of a conductive material are positioned between the conductive layer and said at least two bus bars; andwherein said at least two glass layers, said at least two bus bars, said at least two thin sheets of a conductive material and the transparent conductive layer are bonded together to form a laminate by means of said at least one plastic bonding layer.2. The laminate of wherein the conductive material is a form of carbon.3. The laminate of wherein the conductive material is graphite.4. The laminate of wherein at least one of the at least two busbars is modified with discontinuities that break the flow of current from the bus bar to the conductive layer claim 1 , such that power is not feed along the entire length of said bus bar.5. The laminate of wherein the conductive layer is a ...

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10-01-2019 дата публикации

TECHNIQUES FOR LASER ABLATION/SCRIBING OF COATINGS IN PRE- AND POST-LAMINATED ASSEMBLIES, AND/OR ASSOCIATED METHODS

Номер: US20190009501A1
Автор: Veerasamy Vijayen S.
Принадлежит:

Certain example embodiments of this invention relate to techniques for laser ablating/scribing peripheral edges of a coating (e.g., a low-emissivity, mirror, or other coating) on a glass or other substrate in a pre- or post-laminated assembly, pre- or post-assembled insulated glass unit, and/or other product, in order to slow or prevent corrosion of the coating. For example, a 1064 nm or other wavelength laser may be used to scribe lines into the metal and/or metallic layer(s) in a low-emissivity or other coating provided in an already-laminated or already-assembled insulated glass unit or other product, e.g., around its periphery. The scribe lines decrease electron mobility from the center of the coating to the environment and, thus, slow and sometimes even prevent the onset of electrochemical corrosion. Associated products, methods, and kits relating to same also are contemplated herein. 1. A method of making a laminated product , the method comprising:having an intermediate product, the intermediate product including first and second substantially parallel glass substrates that are laminated together with a laminating material, the first glass substrate having had a multilayer thin film coating formed thereon, the coating including at least one metal-inclusive layer and being susceptible to corrosion; andlaser-scribing a line in the coating by exposing the intermediate product to a laser source in making the laminated product, the line creating a barrier to electron transport between opposing sides thereof.2. The method of claim 1 , wherein the laminating material is PVB claim 1 , the glass substrates are clear glass substrates claim 1 , and the laser source is 1064 nm laser source.3. The method of claim 1 , wherein the laser source is 1064 nm laser source.4. The method of claim 1 , further comprising operating the laser source at a wavelength at which the second substrate and the laminating material each are at least 90% transmissive.5. The method of claim 1 , ...

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10-01-2019 дата публикации

LAMINATED VEHICLE GLAZING WITH AMOLED SCREEN

Номер: US20190009503A1
Принадлежит:

A laminated vehicle glazing includes within the laminate an organic light-emitting diode-based viewing screen. The organic light-emitting diode-based viewing screen is flexible and the laminated glazing includes a first electromagnetic shielding element between the second main face of the first glazing and the rear face and/or between the second main face and the rear surface. 1. A laminated vehicle glazing , comprising:{'b': '1', 'a first glazing, with a first main face, to be oriented on the outside of the vehicle, and a second opposite main face, of thickness E;'}{'b': '2', 'a lamination interlayer of polymeric substance, on the second main face side, of thickness E;'}a second glazing, with a third main face on the lamination interlayer side and a fourth opposite main face, to be oriented on the inside of the vehicle, of thickness E′l, at least one of the first and second glazings being made of mineral glass,{'b': 3', '2, 'between the second main face and the third main face, an organic light-emitting diode-based viewing screen, comprising a set of pixels, the organic light-emitting diode-based viewing screen comprising a zone of dynamic information display, of thickness E less than E, the organic light-emitting diode-based viewing screen having a front main face oriented toward the third main face and a rear face oriented toward the second main face, the organic light-emitting diode-based viewing screen being covered by a non-zero thickness of lamination interlayer,'}wherein the organic light-emitting diode-based viewing screen is flexible and the laminated glazing comprises a first electromagnetic shielding element between the second main face and the rear face.2. The laminated vehicle glazing as claimed in claim 1 , wherein the organic light-emitting diode-based viewing screen is opaque or transparent with a luminous transmission LT of less than 10% claim 1 , the first electromagnetic shielding element is masked by the organic light-emitting diode-based ...

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14-01-2021 дата публикации

GLASS CERAMIC SINTERED BODY AND WIRING SUBSTRATE

Номер: US20210009463A1
Принадлежит: TDK Corporation

A glass ceramic sintered body having a small dielectric loss in a high frequency band of 10 GHz or higher and a wiring substrate using the same are provided. The glass ceramic sintered body contains crystallized glass, an alumina filler, and silica. The content of the crystallized glass is 45 mass % to 85 mass %, the content of the alumina filler is 14.8 mass % to 50.1 mass % in terms of AlO, and the content of silica is 0.2 mass % to 4.9 mass % in terms of SiO. 1. A glass ceramic sintered body comprising crystallized glass , an alumina filler , and silica ,wherein the content of the crystallized glass is 45 mass % to 85 mass %,{'sub': 2', '3, 'the content of the alumina filler is 14.8 mass % to 50.1 mass % in terms of AlO, and'}{'sub': '2', 'the content of the silica is 0.2 mass % to 4.9 mass % in terms of SiO.'}2. The glass ceramic sintered body according to claim 1 , wherein the crystallized glass has a deposit of a diopside type oxide crystal phase containing at least Mg claim 1 , Ca and Si.3. The glass ceramic sintered body according to claim 1 , further comprising at least one selected from the group consisting of titanium oxide claim 1 , calcium titanate and strontium titanate.4. The glass ceramic sintered body according to claim 2 , further comprising at least one selected from the group consisting of titanium oxide claim 2 , calcium titanate and strontium titanate.5. The glass ceramic sintered body according to claim 1 , further comprising at least one of titanium oxide and calcium titanate.6. The glass ceramic sintered body according to claim 2 , further comprising at least one of titanium oxide and calcium titanate.7. A wiring substrate having an insulating base and a wiring conductor claim 2 ,{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, 'wherein the insulating base consists of the glass ceramic sintered body according to .'}8. A wiring substrate having an insulating base and a wiring conductor claim 2 ,{'claim-ref': {'@idref': 'CLM-00002', 'claim 2 ...

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27-01-2022 дата публикации

ENVIRONMENTALLY-REGULATED PORTABLE MUSICAL INSTRUMENT CASE

Номер: US20220028361A1
Автор: Shanklin Jared
Принадлежит:

An environmentally-regulated portable musical instrument case is provided which can insulate the musical instrument from external temperature and humidity changes. The case has an internal cavity designed to hold the musical instrument. The walls of the cavity are designed to reduce thermal transfer between the internal cavity and the surrounding environment. A temperature regulating apparatus actively or passively further controls the temperature of the internal cavity while a humidity control device controls the humidity. 1. A musical instrument case , comprising:a body having an internal cavity deigned to hold a musical instrument; anda temperature regulating apparatus for altering the temperature within the internal cavity.2. The musical instrument case of claim 1 , wherein the temperature regulating apparatus comprises a thermoelectric effect device.3. The musical instrument case of claim 1 , further comprising:a display for conveying the environmental conditions within the internal cavity to a viewer.4. The musical instrument case of claim 1 , further comprising:a power source connected to the temperature regulating apparatus.5. The musical instrument case of claim 1 , further comprising:a flashlight.6. The musical instrument case of claim 1 , further comprising:a lid attached to the body by a hinge; anda seal between the body and the lid.7. The musical instrument case of claim 1 , wherein the body is thermally-insulated.8. The musical instrument case of claim 7 , wherein the body is comprised of two layers of metal with an insulating layer between the two layers.9. The musical instrument case of claim 8 , wherein the insulating layer comprises one or more of: foam claim 8 , fiberglass claim 8 , a vacuum.10. The musical instrument case of claim 1 , further comprising:a humidity control device.11. The musical instrument case of claim 1 , further comprising:a GPS device.12. The musical instrument case of claim 1 , further comprising:a wireless communication ...

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09-01-2020 дата публикации

ELECTRIC POTENTIALLY-DRIVEN SHADE WITH IMPROVED ELECTRICAL CONNECTION BETWEEN INTERNAL SHADE AND EXTERNAL POWER SOURCE, AND/OR METHOD OF MAKING THE SAME

Номер: US20200011124A1
Принадлежит:

Certain example embodiments relate to electric, potentially-driven shades usable with insulating glass (IG) units, IG units including such shades, and/or associated methods. In such a unit, a dynamic shade is located between the substrates defining the IG unit, and is movable between retracted and extended positions. The dynamic shade includes on-glass layers including a transparent conductor and an insulator or dielectric film, as well as a shutter. The shutter includes a resilient polymer, a conductor, and optional ink. Holes, invisible to the naked eye, may be formed in the polymer. Those holes may be sized, shaped, and arranged to promote summertime solar energy reflection and wintertime solar energy transmission. The conductor may be transparent or opaque. When the conductor is reflective, overcoat layers may be provided to help reduce internal reflection. The polymer may be capable of surviving high-temperature environments and may be colored in some instances. 1. An insulating glass (IG) unit , comprising:first and second substrates, each having interior and exterior major surfaces, the interior major surface of the first substrate facing the interior major surface of the second substrate;a spacer system helping to maintain the first and second substrates in substantially parallel spaced apart relation to one another and to define a gap therebetween; a first conductive coating provided, directly or indirectly, on the interior major surface of the first substrate;', 'a dielectric or insulator film provided, directly or indirectly, on the first conductive coating; and', 'a shutter including a polymer substrate supporting a second conductive coating, wherein the polymer substrate is extendible to serve as a shutter closed position and retractable to serve a shutter open position;, 'a dynamically controllable shade interposed between the first and second substrates, the shade includingfirst and second electrically conductive bus bars located at first and second ...

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11-01-2018 дата публикации

Display Surface Structure for Enhanced Optical, Thermal, and Touch Performance

Номер: US20180011564A1
Принадлежит:

A surface structure for a touch panel display includes a glass layer having a first surface and a second surface. The first surface is on an interior side of the glass layer and the second surface is on an exterior side of the glass layer. The surface structure further includes a first protective layer formed to the first surface, and a second protective layer formed to the second surface. The second protective layer includes an array of bumps on an exterior side of the glass layer. The array of bumps provides a gradation of a refractive index of a material of the second protective layer. 1. A surface structure for a touch panel display , the surface structure comprising:a glass layer having a first surface and a second surface, the first surface being on an interior side of the glass layer and the second surface being on an exterior side of the glass layer;a first protective layer formed to the first surface; anda second protective layer formed to the second surface, the second protective layer including an array of bumps on an exterior side of the glass layer, the array of bumps providing a gradation of a refractive index of a material of the second protective layer.2. The surface structure of claim 1 , wherein the array of bumps is configured to provide the gradation of the refractive index of the material of the second protective layer for light having a wavelength between 400 nanometers and 1000 nanometers.3. The surface structure of claim 1 , wherein the array of bumps is configured to provide the gradation of the refractive index of the material of the second protective layer for light having a wavelength between 1000 nanometers and 2000 nanometers.4. The surface structure of claim 1 , wherein the array of bumps is configured with a bump height of less than 10 micrometers.5. The surface structure of claim 1 , wherein the material of the second protective layer comprises a sapphire material.6. The surface structure of claim 1 , wherein the material of the ...

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14-01-2021 дата публикации

DOOR GLASS FOR VEHICLES

Номер: US20210011209A1
Принадлежит: AGC Inc.

A door glass for a vehicle includes a laminated glass having a first glass plate, a first adhesive layer, an infrared-reflective film, a second adhesive layer, and a second glass plate laminated in this order. The infrared-reflective film includes a laminate in which 100 or more layers of resin layers having different refractive indices are laminated, and has a thermal shrinkage rate of greater than 0.6% and less than 1.2% in a direction in which the thermal shrinkage rate becomes maximum, and in a direction perpendicular to the maximum direction. In an area where the laminated glass is visible when mounted on the vehicle, the outer periphery of the infrared-reflective film is positioned within a range of up to 10 mm inward from the outer periphery of the laminated glass in front view. 1. A door glass for a vehicle comprising:a laminated glass having a first glass plate, a first adhesive layer, an infrared-reflective film, a second adhesive layer, and a second glass plate laminated in this order,wherein the infrared-reflective film includes a laminate in which 100 or more layers of resin layers having different refractive indices are laminated,wherein the infrared-reflective film has a thermal shrinkage rate of greater than 0.6% and less than 1.2% in a direction in which the thermal shrinkage rate becomes maximum, and a thermal shrinkage rate of greater than 0.6% and less than 1.2% in a direction perpendicular to the direction in which the thermal shrinkage rate becomes maximum,wherein the thermal shrinkage rate of the infrared-reflective film in a predetermined direction is a shrinkage rate of a length in the predetermined direction before and after holding the infrared-reflective film at 150° C. for 30 minutes, andwherein in an area where the laminated glass is visible when the laminated glass is mounted on the vehicle, an outer periphery of the infrared-reflective film is positioned within a range of up to 10 mm inward from an outer periphery of the laminated ...

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03-02-2022 дата публикации

GLASS PROCESSING APPARATUS AND METHODS

Номер: US20220032601A1
Автор: Ohtsubo Akihiro
Принадлежит:

A glass processing apparatus can comprise a first suction device positioned to receive one or more of a first protective layer or a second protective layer. The glass processing apparatus can further comprise a diverting apparatus positioned to receive the first and second protective layer. The diverting apparatus may be movable to direct the first protective layer along a first travel path and the second protective layer along a second travel path. The glass processing apparatus can further comprise a first processing apparatus positioned to receive the first protective layer and produce a first processed product from the first protective layer. The glass processing apparatus can also comprise a second processing apparatus positioned to receive the second protective layer and produce a second processed product different than the first processed product, from the second protective layer. In some embodiments, methods for processing glass with a glass processing apparatus. 1. A glass processing apparatus comprising:a first suction device positioned to receive one or more of a first protective layer from a first glass ribbon or a second protective layer from one or more of the first glass ribbon or a second glass ribbon, the second protective layer different than the first protective layer;a diverting apparatus positioned to receive the first protective layer and the second protective layer, the diverting apparatus movable to direct the first protective layer along a first travel path and the second protective layer along a second travel path;a first processing apparatus positioned to receive the first protective layer from the diverting apparatus and produce a first processed product from the first protective layer; anda second processing apparatus positioned to receive the second protective layer from the diverting apparatus and produce a second processed product different than the first processed product, from the second protective layer.2. The glass processing ...

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