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Применить Всего найдено 7154. Отображено 100.
16-02-1998 дата публикации

СЕЛЬСКОХОЗЯЙСТВЕННЫЙ СОСУД ДЬЮАРА

Номер: RU0000006036U1

Сельскохозяйственный сосуд Дьюара, состоящий из наружного кожуха с крышкой, внутри которого на стеклопластиковой горловине подвешен внутренний сосуд с закрепленными на нем адсорбционным карманом и многослойной изоляцией, отличающийся тем, что во внутреннем сосуде обечайка выполнена гладкой цилиндрической, адсорбционный карман размещен на верхнем днище сосуда, а на горловине выполнены бурты под бортшайбы для крепления мягких экранов изоляции, при этом наружный кожух выполнен с вогнутым днищем, крышка выполнена откидывающейся и закреплена на петлях, а 0,6 < D/Н < 0,7; 52 < D - D/2 < 70, где D - диаметр внутреннего сосуда, мм; D - диаметр наружного кожуха, мм; Н - высота кожуха, мм. (19) RU (11) (13) 6 036 U1 (51) МПК F17C 3/00 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 96120315/20, 16.10.1996 (71) Заявитель(и): Акционерное общество "Гелиймаш" (46) Опубликовано: 16.02.1998 6 0 3 6 R U (57) Формула полезной модели Сельскохозяйственный сосуд Дьюара, состоящий из наружного кожуха с крышкой, внутри которого на стеклопластиковой горловине подвешен внутренний сосуд с закрепленными на нем адсорбционным карманом и многослойной изоляцией, отличающийся тем, что во внутреннем сосуде обечайка выполнена гладкой цилиндрической, адсорбционный карман размещен на верхнем днище сосуда, а на горловине выполнены бурты под бортшайбы для крепления мягких экранов изоляции, при этом наружный кожух выполнен с вогнутым днищем, крышка выполнена откидывающейся и закреплена на петлях, а 0,6 < Dк/Нк < 0,7; 52 < Dк - Dв/2 < 70, где Dв - диаметр внутреннего сосуда, мм; Dк - диаметр наружного кожуха, мм; Нк - высота кожуха, мм. Ñòðàíèöà: 1 U 1 U 1 (54) СЕЛЬСКОХОЗЯЙСТВЕННЫЙ СОСУД ДЬЮАРА 6 0 3 6 (73) Патентообладатель(и): Акционерное общество "Гелиймаш" R U (72) Автор(ы): Попов О.М., Котов Л.Э., Мильман С.Б., Игнатьев В.А., Завьялов Ю.М., Левина Ж.Л., Сапрыгин В.Д. U 1 U 1 6 0 3 6 6 0 3 6 R U R U Ñòðàíèöà: 2 RU 6 036 U1 ...

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16-05-1999 дата публикации

РЕЗЕРВУАР ДЛЯ ТРАНСПОРТИРОВАНИЯ И ХРАНЕНИЯ СЖИЖЕННЫХ ГАЗОВ ПОД ДАВЛЕНИЕМ

Номер: RU0000009928U1

1. Резервуар для транспортирования и хранения сжиженных газов под давлением, содержащий наружный корпус и внутренний сосуд, установленный в наружном корпусе при помощи опор, закрепленных на стенках резервуара, и силовых узлов на его торцах, а также соединительные элементы, отличающийся тем, что опоры на стенках резервуара размещены в его середине, соединительные элементы представляют собой балки, расположенные параллельно продольной оси резервуара и жестко связанные в своей средней части с опорами внутреннего сосуда, а по концам - с опорами наружного корпуса, силовые узлы на торцах представляют собой закрепленные на днищах внутреннего сосуда планки, каждая из которых соединена при помои стержней с наружным корпусом с возможностью перемещения относительно него на величину температурного изменения размеров внутреннего сосуда. 2. Резервуар по п. 1, отличающийся тем, что планки связаны с наружным корпусом при помощи двух стержней, один из которых соединен с планкой посредством отверстия, а другой - паза, ориентированного параллельно оси планки. 3. Резервуар по п.1, отличающийся тем, что соединительные элементы жестко связаны в своей средней части с опорами наружного корпуса, а по концам - с опорами внутреннего сосуда. 4. Резервуар по п.1, отличающийся тем, что в планках выполнено центральное отверстие, внутри которого размещен люк для доступа внутрь сосуда. 5. Резервуар по п.1, отличающийся тем, что планки совмещены с окантовкой люков для доступа внутрь сосуда. 6. Резервуар по п.1, отличающийся тем, что соединительные элементы выполнены в виде резьбовых стержней и соединены с каждой из опор внутреннего сосуда и наружного корпуса при помощи двух резьбовых втулок. (19) RU (11) 9 928 (13) U1 (51) МПК F17C 13/08 (1995.01) F17C 3/00 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ Адрес для переписки: 443087, Самара, пр.Кирова, 258-45 Гаврилину Е.В. (72) Автор(ы): Улитин В.Б., Гаврилин Е.В. (73) Патентообладатель(и): ...

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16-08-1999 дата публикации

СОСУД ДЬЮАРА СЕЛЬСКОХОЗЯЙСТВЕННЫЙ

Номер: RU0000010832U1

Сосуд Дьюара сельскохозяйственный, состоящий из наружного кожуха с вогнутым днищем и откидывающейся крышкой, закрепленной на петлях, внутри которого на стеклопластиковой горловине подвешен внутренний сосуд с многослойной изоляцией и адсорбционным карманом, размещенным на его верхнем днище, отличающийся тем, что размеры сосуда выбраны при соблюдении следующих соотношений: где D - диаметр внутреннего сосуда, мм; D - диаметр наружного кожуха, мм; H - высота кожуха, мм. (19) RU (11) 10 832 (13) U1 (51) МПК F17C 3/00 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 98122475/20, 08.12.1998 (24) Дата начала отсчета срока действия патента: 08.12.1998 (46) Опубликовано: 16.08.1999 (72) Автор(ы): Попов О.М., Мильман С.Б., Игнатьев В.А., Завьялов Ю.М., Сапрыгин В.Д. где Dв - диаметр внутреннего сосуда, мм; Dк - диаметр наружного кожуха, мм; Hк - высота кожуха, мм. R U 1 0 8 3 2 (57) Формула полезной модели Сосуд Дьюара сельскохозяйственный, состоящий из наружного кожуха с вогнутым днищем и откидывающейся крышкой, закрепленной на петлях, внутри которого на стеклопластиковой горловине подвешен внутренний сосуд с многослойной изоляцией и адсорбционным карманом, размещенным на его верхнем днище, отличающийся тем, что размеры сосуда выбраны при соблюдении следующих соотношений: Ñòðàíèöà: 1 ru CL U 1 U 1 (54) СОСУД ДЬЮАРА СЕЛЬСКОХОЗЯЙСТВЕННЫЙ 1 0 8 3 2 (73) Патентообладатель(и): Открытое акционерное общество "НПО Гелиймаш" R U Адрес для переписки: 119855, Москва, ГСП-3, Лужнецкая наб.10а, ОАО "НПО Гелиймаш", Патентный отдел (71) Заявитель(и): Открытое акционерное общество "НПО Гелиймаш" U 1 U 1 1 0 8 3 2 1 0 8 3 2 R U R U Ñòðàíèöà: 2 RU FD 10 832 U1 RU 10 832 U1 RU 10 832 U1 RU 10 832 U1 RU 10 832 U1 RU FA 10 832 U1 RU DR 10 832 U1

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10-11-2001 дата публикации

СОСУД ДЛЯ ХРАНЕНИЯ И ТРАНСПОРТИРОВКИ ЖИДКОСТЕЙ И ГАЗОВ

Номер: RU0000020461U1

1. Сосуд для хранения и транспортировки жидкостей и газов, содержащий выполненный из стали корпус с антикоррозионным покрытием внутренней поверхности, отличающийся тем, что антикоррозионное покрытие выполнено из фенольно-каучукового клея марок ВК-3, или ВК-3А, или ВК-13М, или ВК-32-200, или ВК-32-200В, или ВК-25, или ВК-25А, или ВК-25С, или ВК-25АС. 2. Сосуд по п. 1, отличающийся тем, что корпус снабжен горловиной с резьбой для подсоединения, например, запорно-пускового устройства огнетушителя, причем упомянутая резьба выполнена наружной. 3. Сосуд по п.1 или 2, отличающийся тем, что корпус снабжен амортизаторами, выполненными, например, в виде резиновых обручей, надетых на корпус. 4. Сосуд по п. 1, или 2, или 3, отличающийся тем, что корпус снабжен подставкой и ограждением горловины, выполненными, например, в виде стоек с кольцевыми основанием и ручкой соответственно. (19) RU (11) 20 461 (13) U1 (51) МПК A62C 13/76 (2000.01) F17C 1/00 (2000.01) F17C 3/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2001122479/20 , 15.08.2001 (24) Дата начала отсчета срока действия патента: 15.08.2001 (46) Опубликовано: 10.11.2001 (72) Автор(ы): Пустынников С.С., Чуйков Е.В., Климовский Г.С., Голято В.К. 2 0 4 6 1 R U (57) Формула полезной модели 1. Сосуд для хранения и транспортировки жидкостей и газов, содержащий выполненный из стали корпус с антикоррозионным покрытием внутренней поверхности, отличающийся тем, что антикоррозионное покрытие выполнено из фенольно-каучукового клея марок ВК-3, или ВК-3А, или ВК-13М, или ВК-32-200, или ВК-32-200В, или ВК-25, или ВК-25А, или ВК-25С, или ВК-25АС. 2. Сосуд по п. 1, отличающийся тем, что корпус снабжен горловиной с резьбой для подсоединения, например, запорно-пускового устройства огнетушителя, причем упомянутая резьба выполнена наружной. 3. Сосуд по п.1 или 2, отличающийся тем, что корпус снабжен амортизаторами, выполненными, например, в виде резиновых обручей, ...

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20-09-2003 дата публикации

Емкость для хранения продуктов

Номер: RU0000032582U1

Емкость для хранения продуктов, содержащая наружную оболочку, теплоизолированный внутренний сосуд, поглотитель и нагреватель, отличающаяся тем, что нагреватель выполнен в виде токопроводящей пленки, проложенной в слоях поглотителя, используемого в качестве электроизолятора. (19) RU (11) 32 582 (13) U1 (51) МПК F25D 3/10 (2000.01) F17C 3/02 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2001125210/20 , 13.09.2001 (24) Дата начала отсчета срока действия патента: 13.09.2001 (46) Опубликовано: 20.09.2003 (72) Автор(ы): Гореликов В.И. (73) Патентообладатель(и): Открытое акционерное общество "Ракетно-космическая корпорация "Энергия" им. С.П.Королева" U 1 3 2 5 8 2 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Емкость для хранения продуктов, содержащая наружную оболочку, теплоизолированный внутренний сосуд, поглотитель и нагреватель, отличающаяся тем, что нагреватель выполнен в виде токопроводящей пленки, проложенной в слоях поглотителя, используемого в качестве электроизолятора. 3 2 5 8 2 (54) Емкость для хранения продуктов R U Адрес для переписки: 141070, Московская обл., г. Королев, ул. Ленина 4а, ОАО РКК "Энергия" им. С.П.Королева, Отдел промышленной собственности и инноватики (71) Заявитель(и): Открытое акционерное общество "Ракетно-космическая корпорация "Энергия" им. С.П.Королева" U 1 U 1 3 2 5 8 2 3 2 5 8 2 R U R U Ñòðàíèöà: 2 RU 32 582 U1 RU 32 582 U1 RU 32 582 U1 RU 32 582 U1 RU 32 582 U1 RU 32 582 U1

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10-12-2003 дата публикации

Тепловой изоляционный элемент

Номер: RU0000034692U1

Тепловой изоляционный элемент, включающий четырехстороннюю пенополимерную плиту с выступами замкового соединения, снабженную закрепленной на внешней поверхности покровной пластиной, выполненной выходящей за граничные кромки пенополимерной плиты с двух сторон, с возможностью образования нахлестного соединения со смежным тепловым изоляционным элементом, отличающийся тем, что с двух других сторон покровная пластина выполнена с отгибами внутрь пенополимерной плиты, образующими ребра жесткости. (19) RU (11) 34 692 (13) U1 (51) МПК F17C 3/02 (2000.01) F16L 59/06 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2003123909/20 , 31.07.2003 (24) Дата начала отсчета срока действия патента: 31.07.2003 (46) Опубликовано: 10.12.2003 (73) Патентообладатель(и): ООО "Сибирский ориентир" R U Адрес для переписки: 660048, г.Красноярск, ул. 2-я Брянская, 47а, ООО "Сибирский ориентир" (72) Автор(ы): Бирюков В.В., Михорев А.В., Бельмач Д.М. 3 4 6 9 2 R U Ñòðàíèöà: 1 U 1 Формула полезной модели Тепловой изоляционный элемент, включающий четырехстороннюю пенополимерную плиту с выступами замкового соединения, снабженную закрепленной на внешней поверхности покровной пластиной, выполненной выходящей за граничные кромки пенополимерной плиты с двух сторон, с возможностью образования нахлестного соединения со смежным тепловым изоляционным элементом, отличающийся тем, что с двух других сторон покровная пластина выполнена с отгибами внутрь пенополимерной плиты, образующими ребра жесткости. 3 4 6 9 2 U 1 (54) Тепловой изоляционный элемент RU 34 692 U1 RU 34 692 U1 RU 34 692 U1 RU 34 692 U1 RU 34 692 U1

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10-06-2004 дата публикации

РЕЗЕРВУАР

Номер: RU0000038326U1

Резервуар для жидкости, содержащий внутренний сосуд, помещенный в кожух и установленный на опорном элементе, при этом кожух выполнен в виде пирамиды или конуса, а внутренний сосуд установлен между точками на вертикальной оси кожуха, отстоящими от вершины и основания кожуха на 1/3. (19) RU (11) 38 326 (13) U1 (51) МПК B65D 6/00 (2000.01) F17C 3/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2004105473/20 , 01.03.2004 (24) Дата начала отсчета срока действия патента: 01.03.2004 (46) Опубликовано: 10.06.2004 (72) Автор(ы): Бронецкий Г.А. (RU) (73) Патентообладатель(и): ООО "Разноэкспорт Интернешнл" (RU) R U Адрес для переписки: 101990, Москва, Петроверигский пер., 4, Агентство "Ермакова, Столярова и партнеры", пат.пов. Е.А. Ермаковой, рег.№ 163 U 1 3 8 3 2 6 R U Ñòðàíèöà: 1 U 1 (57) Формула полезной модели Резервуар для жидкости, содержащий внутренний сосуд, помещенный в кожух и установленный на опорном элементе, при этом кожух выполнен в виде пирамиды или конуса, а внутренний сосуд установлен между точками на вертикальной оси кожуха, отстоящими от вершины и основания кожуха на 1/3. 3 8 3 2 6 (54) РЕЗЕРВУАР RU 38 326 U1 RU 38 326 U1 RU 38 326 U1 RU 38 326 U1

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10-06-2004 дата публикации

ВАКУУМНОЕ УПЛОТНЕНИЕ

Номер: RU0000038379U1

1. Вакуумное уплотнение эластичной диафрагмы устройства, содержащего приводной и ведомый валы, кинематически связанные между собой качающимся стержнем, проходящим через центральное отверстие в диафрагме, вакуумноплотно закрепленной на стенке вакуумной камеры и на качающемся стержне в районе точки его качения, отличающееся тем, что центральное отверстие в диафрагме выполнено, по крайней мере, на 30% меньше диаметра качающегося стержня. 2. Вакуумное уплотнение по п.1, отличающееся тем, что диафрагма выполнена многослойной. 3. Вакуумное уплотнение по пп.1 и 2, отличающееся тем, что диафрагма содержит не менее трех слоев. 4. Вакуумное уплотнение по любому из пп.1-3, отличающееся тем, что слои диафрагмы выполнены из листа вакуумной резины. 5. Вакуумное уплотнение по любому из пп.1 и 2, отличающееся тем, что в вакуумной камере под диафрагмой установлен опорный диск с центральным отверстием, которое больше диаметра максимального отклонения стержня при качении на уровне нижнего торца диска. (19) RU (11) 38 379 (13) U1 (51) МПК F17C 3/08 (2000.01) F16J 15/32 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2003135973/20 , 15.12.2003 (24) Дата начала отсчета срока действия патента: 15.12.2003 (46) Опубликовано: 10.06.2004 (73) Патентообладатель(и): Федеральное государственное унитарное предприятие "Научно-исследовательский и конструкторский институт энерготехники им. Н.А.Доллежаля" (RU) Ñòðàíèöà: 1 U 1 3 8 3 7 9 R U U 1 (57) Формула полезной модели 1. Вакуумное уплотнение эластичной диафрагмы устройства, содержащего приводной и ведомый валы, кинематически связанные между собой качающимся стержнем, проходящим через центральное отверстие в диафрагме, вакуумноплотно закрепленной на стенке вакуумной камеры и на качающемся стержне в районе точки его качения, отличающееся тем, что центральное отверстие в диафрагме выполнено, по крайней мере, на 30% меньше диаметра качающегося стержня. 2. Вакуумное уплотнение по ...

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27-07-2004 дата публикации

ВАКУУМНОЕ УПЛОТНЕНИЕ

Номер: RU0000039378U1

1. Вакуумное уплотнение эластичной диафрагмы в устройстве, содержащем приводной и ведомый валы, которые установлены соосно снаружи и внутри вакуумной камеры, при этом валы кинематически связаны между собой качающимся стержнем, установленным в отверстии эластичной диафрагмы, вакуумно-плотно закрепленной на стенке вакуумной камеры и на качающемся стержне в районе точки качения, отличающееся тем, что на стержне выполнен кольцевой выступ, на который оперта диафрагма, при этом она выполнена многослойной из листов вакуумной резины с диаметром отверстия в каждом слое меньше диаметра стержня, по крайней мере, на 30%. 2. Вакуумное уплотнение по п.1, отличающееся тем, что выступ на качающемся стержне выполнен радиусом, не превышающим 0,5 диаметра стержня. 3. Вакуумное уплотнение по любому из пп.1 и 2, отличающееся тем, что диафрагма выполнена не менее чем из трех слоев. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 39 378 (13) U1 (51) МПК F17C 3/08 (2000.01) F16J 15/52 (2000.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2004102804/22 , 02.02.2004 (24) Дата начала отсчета срока действия патента: 02.02.2004 (46) Опубликовано: 27.07.2004 3 9 3 7 8 R U Формула полезной модели 1. Вакуумное уплотнение эластичной диафрагмы в устройстве, содержащем приводной и ведомый валы, которые установлены соосно снаружи и внутри вакуумной камеры, при этом валы кинематически связаны между собой качающимся стержнем, установленным в отверстии эластичной диафрагмы, вакуумно-плотно закрепленной на стенке вакуумной камеры и на качающемся стержне в районе точки качения, отличающееся тем, что на стержне выполнен кольцевой выступ, на который оперта диафрагма, при этом она выполнена многослойной из листов вакуумной резины с диаметром отверстия в каждом слое меньше диаметра стержня, по крайней мере, на 30%. 2. Вакуумное уплотнение по п.1, отличающееся тем, что выступ на качающемся стержне выполнен радиусом, не превышающим ...

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27-03-2008 дата публикации

УСПОКОИТЕЛЬ ЖИДКОСТИ ДЛЯ МОБИЛЬНОЙ ЕМКОСТИ И МОБИЛЬНАЯ ЕМКОСТЬ ДЛЯ ЖИДКОСТИ

Номер: RU0000072039U1

1. Успокоитель жидкости для мобильной емкости, в частности емкости для перевозки жидкостей, в которой успокоитель жидкости смещен приблизительно под углом приблизительно 90° относительно основного направления движения транспортного средства, отличающийся тем, что успокоитель жидкости шарнирно крепится с возможностью поворота к двум крепежным элементам, причем воображаемая линия между обеими точками шарнирных соединений этих крепежных элементов образует поворотную ось успокоителя жидкости, и успокоитель жидкости имеет ограничитель, расположенный в области его поворотов. 2. Успокоитель жидкости по п.1, отличающийся тем, что обе точки крепления, соответственно обе точки шарнирного соединения располагаются у верхнего края успокоителя жидкости. 3. Успокоитель жидкости по п.1, отличающийся тем, что обе точки крепления или обе точки шарнирного соединения располагаются не у верхнего края успокоителя жидкости. 4. Успокоитель жидкости по п.3, отличающийся тем, что пластинчатый успокоитель жидкости шарнирно закреплен с возможностью поворота на крепежных элементах, причем поворотная ось располагается параллельно обеим наибольшим поверхностям пластин и на различном расстоянии от них. 5. Успокоитель жидкости по п.1, отличающийся тем, что успокоитель жидкости изготовлен из материала или композиционного материала, имеющего меньшую плотность, чем находящаяся в емкости жидкость. 6. Успокоитель жидкости по п.1, отличающийся тем, что он изготовлен из эластичного материала или композиционного материала. 7. Успокоитель жидкости по п.1, отличающийся тем, что он по меньшей мере частично проницаем для жидкости. 8. Успокоитель жидкости по п.1, отличающийся тем, что он обеспечивает возможность частичного прохождения жидкости через структуру, в частности через тканевую или решетчатую структуру, и/или по меньшей мере через одно отверстие в успокоителе жидкости. 9. Успокоитель жидкости по п.1, отличающийся тем, что продольная ось ограничителя и поворотная ось расположены относительно ...

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27-03-2008 дата публикации

КРЕПЛЕНИЕ ДЛЯ УСПОКОИТЕЛЯ ЖИДКОСТИ, УСПОКОИТЕЛЬ ЖИДКОСТИ И МОБИЛЬНАЯ ЕМКОСТЬ ДЛЯ ЖИДКОСТИ

Номер: RU0000072040U1

1. Крепление для успокоителя жидкости мобильной емкости, в частности емкости для жидкостей, используемых в сельском и лесном хозяйстве и для транспортировки жидких материалов, отличающееся тем, что оно содержит по меньшей мере одно крепление в двух точках, причем по меньшей мере одна часть этого крепления связана с донной или потолочной областью внутреннего пространства емкости. 2. Крепление по п.1, отличающееся тем, что обе точки крепления располагаются в потолочной или донной области внутреннего пространства емкости. 3. Крепление по п.1, отличающееся тем, что одна из двух точек крепления расположена в потолочной и одна - в донной области внутреннего пространства емкости. 4. Крепление по п.1, отличающееся тем, что одна из двух точек крепления располагается в потолочной или в донной области внутреннего пространства емкости, а вторая из двух точек крепления - на одной из обеих боковых стенок внутреннего пространства емкости. 5. Успокоитель жидкости мобильной емкости, отличающийся тем, что он имеет по меньшей мере одно крепление успокоителя жидкости по одному из пп.1-4. 6. Успокоитель жидкости по п.5, отличающийся тем, что он имеет средства крепления или соединения по меньшей мере с еще одним успокоителем жидкости и/или задней или боковой стенкой, и соединение является разъемным. 7. Успокоитель жидкости по п.6, отличающийся тем, что эти средства крепления образуют разъемное соединение. 8. Мобильная емкость для жидкостей, предназначенная для использования в сельском и лесном хозяйстве, отличающаяся тем, что она содержит по меньшей мере одно крепление для успокоителя жидкости по одному из пп.1-4. 9. Мобильная емкость по п.8, отличающаяся тем, что она содержит по меньшей мере один успокоитель жидкости, имеющий по меньшей мере одно крепление в двух точках. 10. Мобильная емкость по п.8, отличающаяся тем, что она содержит по меньшей мере два успокоителя жидкости, которые соединены между собой и/или по меньшей мере с одной задней или боковой стенкой, и/или с областью потолка ...

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10-01-2009 дата публикации

КРИОГЕННАЯ ЕМКОСТЬ ДЛЯ СЖИЖЕННОГО ГАЗА

Номер: RU0000079639U1

Криогенная емкость для сжиженного газа, включающая наружную металлическую оболочку, размещенный в ней с образованием межстенной полости внутренний металлический сосуд, теплоизолирующий слой между ними и трубопроводы с запорной и предохранительной арматурой, отличающаяся тем, что теплоизолирующий слой выполнен в виде вакуумно-порошковой изоляции, внутренний сосуд закреплен в верхней части наружной оболочки на опорах с теплоизоляционными перемычками и на растяжках в нижней его части, трубопровод для вывода газовой фазы сообщен с верхней частью внутреннего сосуда, а трубопровод для жидкой фазы сообщен с донной его частью. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 79 639 U1 (51) МПК F17C 3/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2008135398/22, 01.09.2008 (24) Дата начала отсчета срока действия патента: 01.09.2008 (45) Опубликовано: 10.01.2009 (72) Автор(ы): Труфанов Анатолий Николаевич (RU) (73) Патентообладатель(и): Труфанов Анатолий Николаевич (RU) U 1 7 9 6 3 9 R U Ñòðàíèöà: 1 ru CL U 1 Формула полезной модели Криогенная емкость для сжиженного газа, включающая наружную металлическую оболочку, размещенный в ней с образованием межстенной полости внутренний металлический сосуд, теплоизолирующий слой между ними и трубопроводы с запорной и предохранительной арматурой, отличающаяся тем, что теплоизолирующий слой выполнен в виде вакуумно-порошковой изоляции, внутренний сосуд закреплен в верхней части наружной оболочки на опорах с теплоизоляционными перемычками и на растяжках в нижней его части, трубопровод для вывода газовой фазы сообщен с верхней частью внутреннего сосуда, а трубопровод для жидкой фазы сообщен с донной его частью. 7 9 6 3 9 (54) КРИОГЕННАЯ ЕМКОСТЬ ДЛЯ СЖИЖЕННОГО ГАЗА R U Адрес для переписки: 443071, г.Самара, Волжский пр-кт, 33, кв.105, Е.Я. Эберлин U 1 U 1 7 9 6 3 9 7 9 6 3 9 R U R U Ñòðàíèöà: 2 RU 5 10 15 20 25 30 35 40 45 50 79 639 U1 Полезная ...

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20-06-2011 дата публикации

КРИОГЕННЫЙ БАК (ВАРИАНТЫ)

Номер: RU0000105711U1

1. Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного корпуса и внутреннего корпуса с компенсационным бачком и наполнительным трубопроводом, отличающийся тем, что в верхней части внутреннего корпуса установлена перегородка, образующая совместно с верхней стенкой внутреннего корпуса компенсационный бачок, причем перегородка выполнена вогнутой в сторону горизонтальной оси криогенного бака, а в нижней ее части, на линии перегиба, выполнено, по крайней мере, одно сквозное отверстие. 2. Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного корпуса и внутреннего корпуса, при этом в упомянутом внутреннем корпусе расположены компенсационный бачок и наполнительный трубопровод, отличающийся тем, что компенсационный бачок расположен в верхней части внутреннего корпуса и выполнен в виде горизонтально расположенной трубы с заглушенными торцами, в нижней части которой выполнено, по крайней мере, одно сквозное отверстие. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 105 711 (13) U1 (51) МПК F17C 3/08 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2011104250/06, 07.02.2011 (24) Дата начала отсчета срока действия патента: 07.02.2011 (45) Опубликовано: 20.06.2011 1 0 5 7 1 1 R U Формула полезной модели 1. Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного корпуса и внутреннего корпуса с компенсационным бачком и наполнительным трубопроводом, отличающийся тем, что в верхней части внутреннего корпуса установлена перегородка, образующая совместно с верхней стенкой внутреннего корпуса компенсационный бачок, причем перегородка выполнена вогнутой в сторону горизонтальной оси криогенного бака, а в нижней ее части, на линии перегиба, выполнено, по крайней мере, одно сквозное отверстие. 2. Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного корпуса и ...

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10-12-2011 дата публикации

КРИОГЕННЫЙ БАК

Номер: RU0000111244U1

Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного и внутреннего корпусов, причем во внутреннем корпусе расположены наполнительный трубопровод и компенсационный бачок, отличающийся тем, что наполнительный трубопровод содержит запорный клапан, а компенсационный бачок выполнен по типу поплавка и расположен в верхней части внутреннего корпуса криогенного бака таким образом, что один конец компенсационного бачка шарнирно соединен со стенкой внутреннего корпуса криогенного бака, а второй конец - с запорным клапаном нагнетательного трубопровода, при этом в нижней части компенсационного бачка выполнены отверстия, сообщающие его внутреннюю полость с полостью внутреннего корпуса криогенного бака. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (51) МПК F17C 3/00 (11) (13) 111 244 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2011127539/06, 05.07.2011 (24) Дата начала отсчета срока действия патента: 05.07.2011 (45) Опубликовано: 10.12.2011 Бюл. № 34 1 1 1 2 4 4 R U Формула полезной модели Криогенный бак, состоящий из соединенных друг с другом посредством торцевых опор наружного и внутреннего корпусов, причем во внутреннем корпусе расположены наполнительный трубопровод и компенсационный бачок, отличающийся тем, что наполнительный трубопровод содержит запорный клапан, а компенсационный бачок выполнен по типу поплавка и расположен в верхней части внутреннего корпуса криогенного бака таким образом, что один конец компенсационного бачка шарнирно соединен со стенкой внутреннего корпуса криогенного бака, а второй конец - с запорным клапаном нагнетательного трубопровода, при этом в нижней части компенсационного бачка выполнены отверстия, сообщающие его внутреннюю полость с полостью внутреннего корпуса криогенного бака. Стр.: 1 U 1 U 1 (54) КРИОГЕННЫЙ БАК 1 1 1 2 4 4 Адрес для переписки: 115583, Москва, а/я 130, отдел интеллектуальной собственности (73) Патентообладатель(и): Общество с ...

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27-08-2012 дата публикации

ЕМКОСТЬ ДЛЯ СБОРА КОНДЕНСАТА И ШЛАМА

Номер: RU0000119845U1

1. Емкость для сбора конденсата и шлама, содержащая сосуд цилиндрической формы с подводящим и отводящим патрубками, отличающаяся тем, что сосуд цилиндрической формы содержит крышку, установленную на опорное кольцо, прикрепленное по верху сосуда, снабженную отводящим патрубком с сегментом отверстий в нижней его части и отбойной плитой с отсеком для «чистого» газа, при этом на боковой стенке сосуда размещены элементы для переноса и подводящий патрубок, расположенный от днища на высоте и под углом к поперечной оси вертикального сосуда, обеспечивающими эффект сепарации твердой и жидкой фазы, а крышка герметично-разъемно соединена с сосудом. 2. Емкость по п.1, отличающаяся тем, что диаметр отбойной плиты меньше диаметра сварного сосуда для выполнения условия образования отсека «чистого» газа. 3. Емкость по п.1, отличающаяся тем, что емкость выполнена из материала, стойкого к агрессивным средам. 4. Емкость по п.1, отличающаяся тем, что соединение сосуда и крышки выполнено болтовым с применением прокладок. 5. Емкость по п.1, отличающаяся тем, что крепление элементов для переноса со стенками сосуда выполнено сварным. 6. Емкость по п.1, отличающаяся тем, что в нижней части сосуда расположен элемент крепления заземляющего провода. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (51) МПК F17C 3/00 (11) (13) 119 845 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2012101542/06, 17.01.2012 (24) Дата начала отсчета срока действия патента: 17.01.2012 (73) Патентообладатель(и): Общество с ограниченной ответственностью "Газпром трансгаз Томск" (ООО "Газпром трансгаз Томск") (RU) (45) Опубликовано: 27.08.2012 Бюл. № 24 1 1 9 8 4 5 R U Формула полезной модели 1. Емкость для сбора конденсата и шлама, содержащая сосуд цилиндрической формы с подводящим и отводящим патрубками, отличающаяся тем, что сосуд цилиндрической формы содержит крышку, установленную на опорное кольцо, прикрепленное по верху сосуда, снабженную отводящим ...

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10-03-2015 дата публикации

Система хранения газа для газового топлива

Номер: RU0000150877U1

1. Система хранения газа для газового топлива (A), содержащая контейнер (2) для хранения, который имеет изменяемый объем (3) хранения для приема и отвода топлива (A), при этом предусмотрено компрессионное устройство (6), которое содержит разделительную перегородку (7), которая может подвергаться на одной стороне давлению (P) хранения введенного топлива (A), и выполнено с возможностью повышения давления (P) хранения внутри объема (3) хранения, которое уменьшается при отводе топлива (A), введенного в объем (3) хранения,отличающаяся тем, чтокомпрессионное устройство (6) может быть предварительно нагружено посредством ввода топлива (A) в объем (3) хранения, а разделительная перегородка (7) выполнена с возможностью создания усилия (R) реакции на давление (P) хранения, при этом объем (3) хранения может меняться посредством предварительного нагружения и/или разгрузки компрессионного устройства (6).2. Система хранения газа по п. 1, в которой разделительная перегородка (7) выполнена в некоторой области или областях в виде упругой диафрагмы, при этом компрессионное устройство (6) может быть предварительно нагружено посредством упругого изменения формы диафрагмы при вводе топлива (A).3. Система хранения газа по п. 1 или 2, в которой разделительная перегородка (7) присоединена к пружинному элементу (8), при этом пружинный элемент может быть предварительно нагружен посредством изменения положения разделительной перегородки (7) при вводе топлива (A). РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (51) МПК F17C 5/06 (11) (13) 150 877 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014124941/06, 18.06.2014 (24) Дата начала отсчета срока действия патента: 18.06.2014 (72) Автор(ы): КРАМЕР Ульрих (DE), ЛИНЗЕЛЬ Ян (DE) 19.06.2013 DE 102013211483.4 (45) Опубликовано: 10.03.2015 Бюл. № 7 1 5 0 8 7 7 R U (57) Формула полезной модели 1. Система хранения газа для газового топлива (A), содержащая контейнер (2) для ...

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10-04-2015 дата публикации

ТЕПЛОИЗОЛЯЦИЯ ДЛЯ КРИОГЕННОГО ОБОРУДОВАНИЯ

Номер: RU0000151690U1

1. Теплоизоляция для криогенного оборудования, состоящая из контактирующего с поверхностью криогенного оборудования основного слоя из жесткой теплоизоляции и расположенной над ним оболочки, отличающаяся тем, что основной слой покрыт стяжной лентой и выполнен наборным из контактирующих с поверхностью криогенного оборудования теплоизоляционных элементов, между которыми расположены трапециевидные вставки, контактирующие своими большими основаниями со стяжной лентой, выполненной с обеспечением прижима малых оснований трапециевидных вставок к поверхности оборудования, а оболочка теплоизоляции выполнена в виде пароизоляционного слоя и последующих слоев из эластичных теплоизоляционных материалов с увеличивающимся значением температуры стеклования, причем температура поверхности наборного слоя не ниже температуры стеклования нижнего эластичного теплоизоляционного слоя. 2. Теплоизоляция для криогенного оборудования по п. 1, отличающаяся тем, что для обеспечения прижима трапециевидных вставок к поверхности оборудования стяжная лента упруго связана с малыми основаниями трапециевидных вставок, например, посредством пружин. 3. Теплоизоляция для криогенного оборудования по п. 1, отличающаяся тем, что для обеспечения прижима трапециевидных вставок к поверхности оборудования стяжная лента снабжена крепежными элементами. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 151 690 U1 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ PC9K Государственная регистрация отчуждения исключительного права по договору Лицо(а), передающее(ие) исключительное право: Российская Федерация, от имени которой выступает Министерство промышленности и торговли Российской Федерации (RU) Адрес для переписки: 191015, Санкт-Петербург, ул. Шпалерная, 49, НИЦ "Курчатовский институт- ЦНИИ КМ "Прометей" Дата и номер государственной регистрации отчуждения исключительного права: 09.03.2021 РД0357084 1 5 1 6 9 0 (73) Патентообладатель(и): Федеральное государственное унитарное ...

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10-07-2015 дата публикации

УСТРОЙСТВО ДЛЯ ХРАНЕНИЯ СЖИЖЕННЫХ ГАЗОВ

Номер: RU0000153344U1

Устройство для хранения сжиженных газов, содержащее внутренний резервуар, который встроен внутрь внешнего резервуара, выполненного с возможностью удержания содержимого внутреннего резервуара в случае аварийной утечки, подвесную крышу и купольную крышу с теплоизоляцией, отличающееся тем, что подвесная и купольная крыши закреплены на стенке внешнего резервуара в ее верхней части, внутренний и внешний резервуары выполнены с общим днищем, размещенным на теплоизолирующем основании из пеностеклоблоков, в котором по окружности нижних оснований стенок внутреннего и внешнего резервуаров установлены пенобетонные кольца с закрепленными поверх них деревянными брусьями, при этом теплоизолирующее основание установлено на железобетонном ростверке, наружная стенка внешнего резервуара закреплена анкерами и укреплена замкнутым кольцом жесткости в месте прикрепления анкеров к стенке, наружная поверхность стенки внешнего резервуара покрыта теплоизолирующим материалом, а нижняя часть стенки внутреннего резервуара жестко соединена с днищем посредством уголков. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (51) МПК F17C 3/02 (11) (13) 153 344 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014153848/03, 30.12.2014 (24) Дата начала отсчета срока действия патента: 30.12.2014 (45) Опубликовано: 10.07.2015 Бюл. № 19 1 5 3 3 4 4 R U Формула полезной модели Устройство для хранения сжиженных газов, содержащее внутренний резервуар, который встроен внутрь внешнего резервуара, выполненного с возможностью удержания содержимого внутреннего резервуара в случае аварийной утечки, подвесную крышу и купольную крышу с теплоизоляцией, отличающееся тем, что подвесная и купольная крыши закреплены на стенке внешнего резервуара в ее верхней части, внутренний и внешний резервуары выполнены с общим днищем, размещенным на теплоизолирующем основании из пеностеклоблоков, в котором по окружности нижних оснований стенок внутреннего и внешнего резервуаров ...

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20-12-2015 дата публикации

КОЖУХ КРИОГЕННОЙ УСТАНОВКИ

Номер: RU0000157991U1

1. Кожух криогенной установки, выполненный из металлических панелей, отличающийся тем, что кожух имеет замкнутые горизонтальные площадки обслуживания, одновременно являющиеся поясами жесткости, трубопроводы и цилиндры с закрытым верхним донышком, предназначенные для подачи газа наддува в кожух установки, и трубопроводы сброса газа наддува, которые выполнены в несколько ярусов вблизи внутренней стороны металлических панелей, при этом металлические панели представляют собой листы с прикрепленными силовыми элементами. 2. Кожух криогенной установки по п. 1, отличающийся тем, что трубопроводы сброса газа наддува расположены посредине между площадками обслуживания или на расстоянии от площадок обслуживания. 3. Кожух криогенной установки по п. 1, отличающийся тем, что трубопроводы сброса газа наддува могут быть расположены в горизонтальной плоскости. 4. Кожух криогенной установки по п. 1, отличающийся тем, что, по меньшей мере, один из цилиндров подачи газа наддува расположен непосредственно под крышей криогенной установки. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 157 991 U1 (51) МПК F17C 3/00 (2006.01) F16L 59/147 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2015118242/05, 15.05.2015 (24) Дата начала отсчета срока действия патента: 15.05.2015 (72) Автор(ы): Сайдаль Георгий Иванович (RU), Красновский Константин Олегович (RU) (45) Опубликовано: 20.12.2015 Бюл. № 35 1 5 7 9 9 1 R U Формула полезной модели 1. Кожух криогенной установки, выполненный из металлических панелей, отличающийся тем, что кожух имеет замкнутые горизонтальные площадки обслуживания, одновременно являющиеся поясами жесткости, трубопроводы и цилиндры с закрытым верхним донышком, предназначенные для подачи газа наддува в кожух установки, и трубопроводы сброса газа наддува, которые выполнены в несколько ярусов вблизи внутренней стороны металлических панелей, при этом металлические панели представляют собой листы с прикрепленными ...

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04-04-2017 дата публикации

Кожух криогенной установки

Номер: RU0000169852U1

Полезная модель относится к криогенной технике. Кожух выполнен из металлических панелей, имеет металлическую стяжку, соединяющую расположенные на разных сторонах кожуха металлические панели. Достигается снижение металлоемкости кожуха. 1 н. и 6 з.п. ф-лы, 5 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 169 852 U1 (51) МПК F17C 3/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2016120101, 24.05.2016 (24) Дата начала отсчета срока действия патента: 24.05.2016 Дата регистрации: Приоритет(ы): (22) Дата подачи заявки: 24.05.2016 Адрес для переписки: 143907, Московская обл., г. Балашиха, ул. Проспект Ленина, 67, руководителю направления патентоведения и лицензирования ПАО "Криогенмаш" К.О. Красновскому 1 6 9 8 5 2 R U Стр.: 1 сторонах кожуха металлические панели. Достигается снижение металлоемкости кожуха. 1 н. и 6 з.п. ф-лы, 5 ил. U 1 (54) Кожух криогенной установки (57) Реферат: Полезная модель относится к криогенной технике. Кожух выполнен из металлических панелей, имеет металлическую стяжку, соединяющую расположенные на разных 2047813 C1, 10.11.1995. RU 2305217 C1, 27.08.2007. WO 2006/045675 A1, 04.05.2006. 1 6 9 8 5 2 (56) Список документов, цитированных в отчете о поиске: RU 157991 U1, 20.12.2015. RU (45) Опубликовано: 04.04.2017 Бюл. № 10 R U (73) Патентообладатель(и): Публичное акционерное общество криогенного машиностроения (ПАО "Криогенмаш") (RU) 04.04.2017 U 1 (72) Автор(ы): Сайдаль Георгий Иванович (RU), Красновский Константин Олегович (RU), Чернов Михаил Александрович (RU) U 1 U 1 1 6 9 8 5 2 1 6 9 8 5 2 R U R U Стр.: 2 RU 5 10 15 20 25 30 35 40 45 169 852 U1 Полезная модель относится к криогенной технике и может быть использована при проектировании и изготовлении криогенных воздухоразделительных установок (ВРУ) и других криогенных установок, использующих в качестве изоляции сыпучие или волокнистые материалы. Известна конструкция кожуха теплоизоляционной системы воздухоразделительных ...

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19-03-2018 дата публикации

РЕЗЕРВУАР ДЛЯ ДОЛГОВРЕМЕННОГО ХРАНЕНИЯ СЖИЖЕННОГО ПРИРОДНОГО ГАЗА

Номер: RU0000177999U1

Полезная модель относится к области криогенной техники и может быть использована в качестве стационарного хранилища для сжиженного природного газа. Технический результат заключается в повышении времен бездренажного хранения сжиженного газа, снижении расхода бетона, снижении затрат на хранение сжиженного газа. Резервуар состоит из железобетонного контейнера в форме полого цилиндра, установленного вертикально на одно из оснований, с колодцем расположенным на противоположном основании цилиндра. Внешняя поверхность железобетонного контейнера снабжена слоем теплоизолирующего материала, над поверхностью которого находится светоотражающий экран, установленный с воздушным зазором. Контейнер содержит внутренний сосуд, выполненный в виде цилиндрической емкости установленной вертикально, у которой по меньшей мере нижнее основание, на которое опирается емкость, плоское, при этом теплоизоляция, заполняющая пространство между стенками контейнера и внутренним сосудом, выполнена из формованных изоляционных панелей, состоящих из открыто ячеистых пенопластов, вакуумированных и герметично заваренных в газонепроницаемую пленку, с поддержанием вакуума в пространстве между контейнером и внутренним резервуаром. И 1 177999 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ"? 177 999? Ц1 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: 20.09.2020 Дата внесения записи в Государственный реестр: 06.07.2021 Дата публикации и номер бюллетеня: 06.07.2021 Бюл. №19 Стр.: 1 па 666441 ЕП

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06-06-2018 дата публикации

РЕЗЕРВУАР ДЛЯ ДОЛГОВРЕМЕННОГО ХРАНЕНИЯ СЖИЖЕННОГО ПРИРОДНОГО ГАЗА

Номер: RU0000180222U1

Полезная модель относится к области криогенной техники и может быть использована в качестве стационарного хранилища для сжиженного природного газа. Технической задачей полезной модели является повышение времени бездренажного хранения сжиженного газа. Поставленная техническая задача решена тем, что в резервуаре для долговременного хранения сжиженного природного газа, состоящем из железобетонного контейнера, внутреннего сосуда заводской готовности, изготовленного из коррозионно-стойких сплавов, покрытого по внешней поверхности слоем из композитного материала, установленного во внутренней полости железобетонного контейнера на теплоизолирующие опоры и теплоизоляции, находящейся в пространстве между внутренним сосудом и стенками железобетонного контейнера, оснащенного в верхней части колодцем с расположенными в нем трубопроводами с запорно-регулирующей арматурой, обеспечивающими заправку и опорожнение емкости сжиженным природным газом и поддержание вакуума в слое теплоизоляции, внешняя поверхность железобетонного контейнера снабжена слоем теплоизолирующего материала, на поверхности которого имеется светоотражающий экран, с поддержанием вакуума в пространстве между контейнером и внутренним резервуаром. И 1 180222 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ 7 ВУ‘’” 180 222? 1 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ ММ9К Досрочное прекращение действия патента из-за неуплаты в установленный срок пошлины за поддержание патента в силе Дата прекращения действия патента: 10.06.2020 Дата внесения записи в Государственный реестр: 09.03.2021 Дата публикации и номер бюллетеня: 09.03.2021 Бюл. №7 Стр.: 1 па сссо8ь ЕП

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25-06-2018 дата публикации

РЕЗЕРВУАР С КОМПЕНСАЦИЕЙ УСАДКИ ВАКУУМНО-ПЕРЛИТНОЙ ТЕПЛОИЗОЛЯЦИИ

Номер: RU0000180823U1

Резервуар для хранения сжиженных криогенных газов с компенсацией усадки в вакуумно-перлитной теплоизоляции, заключающейся в создании дополнительного объема с порошком над теплоизолирующим слоем, находящимся в вакуумной полости между наружным корпусом и внутренним сосудом с верхним днищем эллиптической формы. Дополнительный объем свободно сообщен с теплоизолирующим слоем. При усадке перлита, приводящей к образованию пустот в верхней части теплоизолирующего слоя, под действием сил гравитации порошок из дополнительного объема заполняет освобождающее пространство, сохраняя однородность теплоизоляции. При засыпке резервуара «чистым» перлитом не требуется его уплотнение методом вибрации при создании теплоизоляции или применение смесей перлита с порошковыми или волокнистыми добавками, предотвращающими усадку. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 180 823 U1 (51) МПК F17C 3/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F17C 3/00 (2006.01) (21)(22) Заявка: 2017137329, 24.10.2017 (24) Дата начала отсчета срока действия патента: Дата регистрации: Приоритет(ы): (22) Дата подачи заявки: 24.10.2017 (56) Список документов, цитированных в отчете о поиске: US 3207354 A1, 21.09.1965. US (45) Опубликовано: 25.06.2018 Бюл. № 18 (54) РЕЗЕРВУАР С КОМПЕНСАЦИЕЙ УСАДКИ ВАКУУМНО-ПЕРЛИТНОЙ ТЕПЛОИЗОЛЯЦИИ (57) Реферат: Резервуар для хранения сжиженных приводящей к образованию пустот в верхней криогенных газов с компенсацией усадки в части теплоизолирующего слоя, под действием вакуумно-перлитной теплоизоляции, сил гравитации порошок из дополнительного заключающейся в создании дополнительного объема заполняет освобождающее пространство, объема с порошком над теплоизолирующим сохраняя однородность теплоизоляции. При слоем, находящимся в вакуумной полости между засыпке резервуара «чистым» перлитом не наружным корпусом и внутренним сосудом с требуется его уплотнение методом вибрации при верхним днищем эллиптической формы. создании ...

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26-03-2019 дата публикации

Кожух криогенной воздухоразделительной установки

Номер: RU0000188011U1

Полезная модель относится к криогенной технике и может быть использована при проектировании и изготовлении криогенных воздухоразделительных установок (ВРУ), в первую очередь средних и малых, а также других криогенных установок, использующих в качестве изоляции сыпучие или волокнистые материалы. Предложен кожух криогенной установки, выполненный из металлических листов, отличающийся тем, что кожух включает теплоизоляционные секции, разделенные между собой и с внутренней полостью установки участками мелкоячеистой сетки. Каждая секция заполнена теплоизоляционным материалом: боковая и донная - вспученным перлитовым песком, а секция крыши - матами из супертонкого волокна. Секции имеют единое наддуваемое пространство, а внутренняя полость, где расположено криогенное оборудование, имеет аварийный клапан. Часть оборудования имеет индивидуальную дополнительную изоляцию. Секции для упрочнения оснащены пружинными стяжками. Выполнение заявляемой полезной модели позволяет значительно снизить трудоемкость при ремонте криогенных установок, а также повысить их надежность. 6 з.п. ф-лы, 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 188 011 U1 (51) МПК F17C 3/00 (2006.01) F25J 3/00 (2006.01) F16L 59/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F17C 3/00 (2018.08); F25J 3/00 (2018.08); F16L 59/00 (2018.08) (21)(22) Заявка: 2018131114, 29.08.2018 (24) Дата начала отсчета срока действия патента: 26.03.2019 Приоритет(ы): (22) Дата подачи заявки: 29.08.2018 (56) Список документов, цитированных в отчете о поиске: RU 157991 U1, 20.12.2015. RU 1 8 8 0 1 1 Дата регистрации: (73) Патентообладатель(и): Публичное акционерное общество криогенного машиностроения (ПАО "Криогенмаш") (RU) R U 29.08.2018 (72) Автор(ы): Сайдаль Георгий Иванович (RU) 2564484 C2, 10.10.2015. US 3158459 A1, 24.11.1964. US 7913511 B2, 29.03.2011. (45) Опубликовано: 26.03.2019 Бюл. № 9 1 8 8 0 1 1 R U (54) Кожух криогенной воздухоразделительной установки (57 ...

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29-10-2020 дата публикации

УСТРОЙСТВО ДЛЯ ХРАНЕНИЯ, ПОДАЧИ И ТРАНСПОРТИРОВАНИЯ КРИОГЕННЫХ ПРОДУКТОВ

Номер: RU0000200573U1

Заявляемая полезная модель относится к области криогенной техники и касается конструкции и эксплуатации устройства для хранения, подачи и транспортирования криогенных продуктов потребителям, которое включает наружную оболочку, внутренний сосуд, адсорбер, трубопроводы заправки и дренажа и вакуумно-многослойную теплоизоляцию, расположенную в полости между внутренней поверхностью оболочки и наружной поверхностью внутреннего сосуда с образованием зазора с каждой из упомянутых поверхностей. Вакуумно-многослойная теплоизоляция делится на изоляцию внутреннего сосуда и изоляцию адсорбера, причем последняя уложена внахлест на изоляцию внутреннего сосуда с образованием канала для прохода адсорбируемых газов. Полезная модель обеспечивает снижение испаряемости криогенного продукта и уменьшает время стабилизации остаточного давления в вакуумной изоляционной полости. 1 з.п. ф-лы, 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 200 573 U1 (51) МПК F17C 3/08 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F17C 3/08 (2020.08) (21)(22) Заявка: 2020124220, 14.07.2020 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Акционерное общество "Уралкриомаш" (RU) Дата регистрации: 29.10.2020 (45) Опубликовано: 29.10.2020 Бюл. № 31 2 0 0 5 7 3 R U (54) УСТРОЙСТВО ДЛЯ ХРАНЕНИЯ, ПОДАЧИ И ТРАНСПОРТИРОВАНИЯ КРИОГЕННЫХ ПРОДУКТОВ (57) Реферат: Заявляемая полезная модель относится к зазора с каждой из упомянутых поверхностей. области криогенной техники и касается Вакуумно-многослойная теплоизоляция делится конструкции и эксплуатации устройства для на изоляцию внутреннего сосуда и изоляцию хранения, подачи и транспортирования адсорбера, причем последняя уложена внахлест криогенных продуктов потребителям, которое на изоляцию внутреннего сосуда с образованием включает наружную оболочку, внутренний сосуд, канала для прохода адсорбируемых газов. адсорбер, трубопроводы заправки и дренажа и Полезная модель обеспечивает ...

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19-03-2021 дата публикации

РЕЗЕРВУАР ДЛЯ ХРАНЕНИЯ И ТРАНСПОРТИРОВАНИЯ КРИОГЕННЫХ ЖИДКОСТЕЙ

Номер: RU0000203053U1

Заявляемая полезная модель относится к области криогенной техники и касается устройства и эксплуатации резервуара для хранения и транспортирования криогенных жидкостей. Резервуар включает внутренний сосуд и наружную оболочку, выполненные из материалов, устойчивых к воздействию криогенных жидкостей, вакуумно-изолированную полость между внутренним сосудом и оболочкой, трубу слива-налива жидкости из внутреннего сосуда, проходящую через вакуумно-изолированную полость и стенку оболочки, мембранное предохранительное устройство, расположенное на наружной стенке оболочки и соединенное выходом с трубопроводом газосброса. Мембранное предохранительное устройство и объем межстенного пространства выбраны с параметрами, при которых, в случае разрушения внутреннего сосуда, давление в межстенном пространстве не превысит 0,05 МПа, независимо от величины давления во внутреннем сосуде. Труба газосброса включает испаритель для подогрева холодных паров криогенной жидкости. Применение настоящей полезной модели позволяет обезопасить персонал, обслуживающий криогенные резервуары от поражения парами криогенных жидкостей и снизить риск пожароопасной ситуации, в случае пролива криогенной жидкости в атмосферу. 1 з.п. ф-лы, 1 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 203 053 U1 (51) МПК F17C 3/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F17C 3/08 (2021.01) (21)(22) Заявка: 2020137510, 16.11.2020 (24) Дата начала отсчета срока действия патента: Дата регистрации: (73) Патентообладатель(и): Акционерное общество "Уралкриомаш" (RU) 19.03.2021 (56) Список документов, цитированных в отчете о поиске: RU 2653611 C2, 11.05.2018. RU 200573 U1, 29.10.2020. SU 1652740 A1, 30.05.1991. JP 2010276173 A, 09.12.2010. (45) Опубликовано: 19.03.2021 Бюл. № 8 2 0 3 0 5 3 R U (54) РЕЗЕРВУАР ДЛЯ ХРАНЕНИЯ И ТРАНСПОРТИРОВАНИЯ КРИОГЕННЫХ ЖИДКОСТЕЙ (57) Реферат: Заявляемая полезная модель относится к газосброса. Мембранное предохранительное области ...

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11-05-2021 дата публикации

Резервуар воздушный

Номер: RU0000204152U1

Полезная модель относится к тормозным механизмам железнодорожного транспорта, в частности к резервуарам воздушным железнодорожных вагонов. Предложен резервуар воздушный, содержащий обечайку (5), глухое днище (8), днище (2) с отверстием и штуцер (1), причем штуцер (1) имеет фланец (10) и расположен в отверстии днища (2) с отверстием так, чтобы прилегать к внутренней поверхности участка днища (2) с отверстием. Внутренняя поверхность участка днища (2) с отверстием и фланец (10) штуцера (1) в месте прилегания к внутренней поверхности участка днища (2) с отверстием соответствуют друг другу по форме с обеспечением сопряжения. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 204 152 U1 (51) МПК F17C 1/00 (2006.01) F17C 13/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК F17C 1/00 (2021.02); F17C 13/00 (2021.02) (21)(22) Заявка: 2020141992, 18.12.2020 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Общество с ограниченной ответственностью «Всесоюзный научно-исследовательский центр транспортных технологий» (RU) Дата регистрации: 11.05.2021 (45) Опубликовано: 11.05.2021 Бюл. № 14 2 0 4 1 5 2 R U (54) РЕЗЕРВУАР ВОЗДУШНЫЙ (57) Реферат: Полезная модель относится к тормозным механизмам железнодорожного транспорта, в частности к резервуарам воздушным железнодорожных вагонов. Предложен резервуар воздушный, содержащий обечайку (5), глухое днище (8), днище (2) с отверстием и штуцер (1), причем штуцер (1) имеет фланец (10) и расположен в отверстии днища (2) с отверстием Стр.: 1 так, чтобы прилегать к внутренней поверхности участка днища (2) с отверстием. Внутренняя поверхность участка днища (2) с отверстием и фланец (10) штуцера (1) в месте прилегания к внутренней поверхности участка днища (2) с отверстием соответствуют друг другу по форме с обеспечением сопряжения. U 1 U 1 Адрес для переписки: 190900, BOX 1125, Санкт Петербург, Нилова Мария Иннокентьевна (56) Список документов, цитированных в отчете о ...

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22-10-2021 дата публикации

Контейнер-цистерна

Номер: RU0000207326U1

Полезная модель относится к устройствам для безопасного транспортирования и хранения жидких криопродуктов, в том числе сжиженного природного газа на автомобильном, железнодорожном и водном транспорте, а именно к конструкции опорных и фиксирующих элементов, служащих для крепления и фиксации внутреннего сосуда с теплоизоляцией. Контейнер-цистерна, состоящий из кожуха с днищами, жестко скрепленными с двумя торцевыми рамами, внутреннего сосуда, расположенного в кожухе и закрепленного с ним узлом жесткой фиксации, отличающийся тем, что узел жесткой фиксации, включающий ось с упорным буртиком, который установлен между фланцами, которые в свою очередь жестко соединены между собой, при этом один из фланцев жестко соединен с сосудом, а между упорным буртиком и фланцами установлены прокладки из низкотеплопроводного материала, а резьбовая втулка, которая накручивается на ось, жестко соединена с торцевой направляющей днища кожуха. Техническим результатом заявляемой полезной модели является снижение тепловых потерь в месте соединения внутреннего сосуда с кожухом контейнера-цистерны, что впоследствии приводит к увеличению срока хранения жидких криопродуктов. 3 з.п. ф-лы, 3 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 207 326 U1 (51) МПК B65D 88/12 (2006.01) F17C 13/08 (2006.01) F17C 3/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B65D 88/12 (2021.08); F17C 13/08 (2021.08); F17C 3/00 (2021.08) (21)(22) Заявка: 2021120965, 15.07.2021 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Акционерное общество "Рузаевский завод химического машиностроения" (АО "Рузхиммаш") (RU) Дата регистрации: 22.10.2021 (56) Список документов, цитированных в отчете о поиске: RU 2259312 C1, 27.08.2005. RU 166539 U1, 27.11.2016. SU 1791669 A1, 30.01.1993. RU 171547 U1, 06.06.2017. DE 69511146 D1, 09.09.1999. DE 102017204710 A1, 27.09.2018. US 3487971 A1, 06.01.1970. US 4860545 A1, 29.08.1989. US 2015/360791 A1, 28 ...

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26-01-2012 дата публикации

Unloading of lng from lng tank

Номер: US20120017608A1

Disclosed is a liquefied natural gas storage apparatus. The apparatus includes a heat insulated tank and liquefied natural gas contained in the tank. The tank has heat insulation sufficient to maintain liquefied natural gas therein such that most of the liquefied natural gas stays in liquid. The contained liquefied natural gas has a vapor pressure from about 0.3 bar to about 2 bar. The apparatus further includes a safety valve configured to release a part of liquefied natural gas contained in the tank when a vapor pressure of liquefied natural gas within the tank becomes higher than a cut-off pressure. The cut-off pressure is from about 0.3 bar to about 2 bar.

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08-03-2012 дата публикации

Independent tank system for storing liquid gas

Номер: US20120055920A1
Принадлежит: INOCEAN AS

An independent vessel tank system for storing liquid gas on a vessel has a first tank member, a second, cylindrical tank member connected to the first tank member, a third tank member connected to the second tank member, wherein the first, second and third tank members provide a tank device for the liquid gas, a first supporting device provided between the third tank member and a hull of the vessel, for supporting the weight of the tank device, and a second supporting device at least partially provided along a periphery of the tank device, for supporting the tank device to the hull of the vessel. The second supporting device is flexible in a first direction parallel to the centre axis of the tank device, and flexible in a second direction perpendicular to the periphery of the tank device.

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10-01-2013 дата публикации

Cryostat configuration

Номер: US20130008187A1
Принадлежит: Individual

A cryostat configuration with a vacuum vessel ( 1 ) and a cryogen vessel ( 2 ) built into it, and a sleeve ( 8 ), into which a cryocooler ( 7 ) is built, wherein the upper, warm end of the sleeve is connected to the outer jacket and the lower, cold end facing the cryogen vessel is hermetically sealed by a sleeve base ( 9 ) is characterized in that the cryogen vessel is hermetically sealed except for a gas capillary ( 13 ) and filled with gaseous fluid ( 12 ) at a pressure below the vapor pressure of the liquid phase of the fluid at the corresponding operating temperature and the coldest stage of the cryocooler is connected to the heat exchanger ( 11 ) disposed inside the cryogen vessel in a manner that ensures good thermal conduction.

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17-01-2013 дата публикации

Splashguard For High Flow Vacuum Bubbler Vessel

Номер: US20130015594A1
Принадлежит: Air Products and Chemicals Inc

The present invention is a container having a diptube inlet, at least one baffle disc positioned between the outlet of the diptube and the outlet of the container to provide a narrow annular space between the baffle disc and the sidewall of the container to prevent liquid droplets from entering the outlet to the container and the inner surface of the container sidewall and an annular, radially inward projecting deflector ledge on the sidewall, proximate the baffle disc. The present invention is also a process of delivering a chemical precursor from a container having the above structure. Liquid and vapor delivery are both contemplated.

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31-01-2013 дата публикации

Gas supply system

Номер: US20130025715A1
Принадлежит: Horiba Stec Co Ltd

A gas supply system is provided. The system includes a plurality of component gas supply pipes, a plurality of flow rate control mechanisms for controlling flow rates of the component gases flowing in the component gas supply pipes, and a material gas supply pipe connected with downstream ends of the component gas supply pipes, and connected with one of the gas supply ports at a downstream. The flow rate control mechanism includes flow rate control valves, individual pressure sensors, and fluid resistance elements provided to the component gas supply pipes in this order from upstream, respectively, a common pressure sensor, and controllers for calculating the flow rates of the gases flowing in the component gas supply and controlling the flow rate control valves of the corresponding component gas supply pipes so that the calculated component gas flow rate approaches a predetermined gas flow rate, respectively.

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31-01-2013 дата публикации

End flange for a magnetic resonance imaging system and method of manufacturing

Номер: US20130027039A1
Автор: Longzhi Jiang
Принадлежит: General Electric Co

An end flange for a magnetic resonance imaging (MRI) system and method for manufacturing an end flange are provided. One end flange is for a vacuum vessel of the MRI system. The vacuum vessel includes a housing configured to receive therein a magnet assembly and an end flange forming an end of the housing. The flange includes an outer surface, an inner surface, and a core coupled between the outer and inner surfaces, wherein the core has a greater stiffness than the outer surface and the inner surface.

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14-03-2013 дата публикации

Suction nozzle, suction device, gas filling device, gas consuming device and gas filling system

Номер: US20130061983A1
Принадлежит: Toyota Motor Corp

A suction nozzle, which is configured to be interlocked with a gas filler nozzle used to supply a gas to a gas consuming device, comprises a suction port configured to suck moisture inside the gas filler nozzle when the suction nozzle is interlocked with the gas filler nozzle.

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25-04-2013 дата публикации

Small-scale metal tanks for high pressure storage of fluids

Номер: US20130098918A1
Автор: London Adam
Принадлежит: Ventions, LLC

Small scale metal tanks for high-pressure storage of fluids having tank factors of more than 5000 meters and volumes of ten cubic inches or less featuring arrays of interconnected internal chambers having at least inner walls thinner than gage limitations allow. The chambers may be arranged as multiple internal independent vessels. Walls of chambers that are also portions of external tank walls may be arcuate on the internal and/or external surfaces, including domed. The tanks may be shaped adaptively and/or conformally to an application, including, for example, having one or more flat outer walls and/or having an annular shape. The tanks may have dual-purpose inlet/outlet conduits of may have separate inlet and outlet conduits. The tanks are made by fusion bonding etched metal foil layers patterned from slices of a CAD model of the tank. The fusion bonded foil stack may be further machined. 1. A small scale metal tank for high pressure storage of fluids comprising:a. a tank factor of at least three thousand meters; andb. a tank volume of at most ten cubic inches.2. The tank of claim 1 , comprising:a. an enclosure comprising a plurality of outer tank walls;b. at least one array of internal chambers within said enclosure;c. a plurality of fluidic interconnections between each said internal chamber of said array of internal chambers and each other internal chamber of said array of internal chambers; andd. at least one fluidic conduit between at least one said internal chamber of said at least one array of internal chambers and a point external to said enclosure.3. The tank of claim 2 , wherein at least one said outer tank wall of said plurality of outer tank walls comprises a flat outer tank wall.4. The tank of claim 2 , wherein said enclosure comprises a shape that is at least one of adapted to and conformal to a particular application.5. The tank of claim 2 , wherein said array of internal chambers is formed of diffusion-bonded metal layers having diffusion-bonded ...

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25-04-2013 дата публикации

PRESSURE TANK

Номер: US20130098919A1
Автор: Jarzynski Grzegorz
Принадлежит: Elpigaz Sp. z o.o.

Subject of the invention is pressure tank, especially three-bottoms tank, creating beneficially toroidal tank, comprising connected bottoms, equipped with connector pipes for installation, brackets for fastening the tank and cover, type plate, equipment equipment cover, inner bottom, inner shell, divider and is characterized by that the outer, upper bottom () together with outer, lower bottom () create outer tank shell, whereas inner bottom () is connected with the inner shell (), creating the central, inner part (S) of the tank, and connector pipes (and ) and flow connectors () have on their length two zones: zone A with walls of increased thickness and zone B—with walls of reduced thickness, beneficially on the whole circumference of connector, whereas the wall thickness in zone B is between 0.5 up to 1.7 of the thickness of tank elements when the wall thickness is between 0.01 up to 2.9 mm and 0.3 up to 1.4 for walls thick above 2.90 mm. 11243999141515a,ba. Pressure tank , especially three-bottoms tank , creating beneficially toroidal tank , comprising connected bottoms , equipped with connector pipes , brackets for fastening the tank and cover , type plate , equipment cover , inner bottom , inner shell , characterized in that , the outer , upper bottom () with outer , lower () create outer tank shell , whereas inner bottom () is connected with outer shell () , creating central , outer part (S) of the tank , and connector pipes for equipment ( , and ) and flow connector pipes ( , ) have on their length two zones: zone (A)—with walls of increased thickness and zone (B)—with walls of reduced thickness , beneficially on the whole circumference of the connector pipe , and wall thickness in zone (B) is between 0.5 up to 1.7 of the thickness of tank elements , where the pipe is placed , for walls thick 0.01 up to 2.9 mm and 0.3 up to 1.4 for walls above 2.9 mm.243128. Pressure tank claim 1 , according to . characterized in that there is central tank part consisting of ...

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11-07-2013 дата публикации

METHOD AND DEVICE FOR STORING A CRYOGENIC FLUID AND WHICH ARE SUITABLE FOR SOILS INCLUDING PERMAFROST

Номер: US20130174585A1
Автор: Collet Pascal
Принадлежит: TOTAL SA

The invention relates to a method for storing a cryogenic fluid, implementing a tank including at least one vessel capable of containing the cryogenic fluid. The method including the following steps: a) placing the tank on, in, or partially in soil including permafrost; b) feeding the cryogenic fluid into the vessel; and c) exchanging heat between the cryogenic fluid and the soil, in order to freeze and/or keep a portion of the soil frozen, such that said portion of the soil can be used as the foundation for the tank. 115-. (canceled)17. The storage method as claimed in claim 16 , wherein said cryogenic fluid is liquefied natural gas.18. The method as claimed in claim 16 , wherein claim 16 , in step c) claim 16 , with said portion of ground having a given extent and with said exchange of heat having a given power claim 16 , this power is adjusted so as to control the extent of said portion of ground kept frozen.19. The method as claimed in claim 16 , wherein claim 16 , the vessel is surrounded by a shell claim 16 , a first part of said shell is insulating and the exchange of heat of step c) comprises thermal conduction across a second part of said shell claim 16 , said second part being in contact with said portion of ground.20. The method as claimed in claim 19 , wherein claim 19 , in step c) claim 19 , with said second part of the shell having given thermal conduction properties and with said thermal conduction across the second part of said shell occurring at a given conduction power claim 19 , said second part of the shell is modified so as to improve or degrade the conduction properties in order to control said conduction power claim 19 , once the tank has been installed.21. The method as claimed in claim 20 , wherein the second part of the shell comprises a double wall claim 20 ,and in that the conduction properties are improved or degraded by modifying the degree to which the double wall is filled with a liquid.22. The method as claimed in claim 20 , wherein ...

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18-07-2013 дата публикации

Hydrogen fluoride supply unit

Номер: US20130180609A1
Принадлежит: SOLVAY SA

A hydrogen fluoride supply unit which comprises a plurality of transportable hydrogen fluoride storage containers connected to a hydrogen fluoride supply line and a chemical plant comprising the hydrogen fluoride supply unit. Such chemical plant may be for the manufacture of fluorine, wherein the hydrogen fluoride supply line is connected to an electrolysis cell for producing fluorine by HF electrolysis of a molten salt electrolyte. A process for the manufacture of a chemical comprising using such chemical plant. Also a method for supply of hydrogen fluoride to a chemical plant, which comprises: (a) filling at least one transportable hydrogen fluoride storage container with hydrogen fluoride, (b) transporting the hydrogen fluoride storage container to the hydrogen fluoride supply unit, (c) connecting the hydrogen fluoride storage container to the hydrogen fluoride supply line, and (d) supplying hydrogen fluoride from the hydrogen fluoride storage container to the hydrogen fluoride supply line. 112. A hydrogen fluoride supply unit , comprising a plurality of transportable hydrogen fluoride storage containers () connected to a hydrogen fluoride supply line () , wherein at least one of the hydrogen fluoride storage containers has a capacity of equal to or greater than 500 1.2. The hydrogen fluoride supply unit according to claim 1 , which comprises from 2 to 20 storage containers.33. The hydrogen fluoride supply unit according to claim 1 , wherein each storage container is connected to the hydrogen fluoride supply line through a manifold ().4. The hydrogen fluoride supply unit according to claim 1 , wherein each storage container is individually isolated from the hydrogen fluoride supply line.5124. The hydrogen fluoride supply unit according to claim 4 , wherein the storage containers () are isolated from the hydrogen fluoride supply line () by a remotely controlled device ().6156. The hydrogen fluoride supply unit according to claim 1 , wherein the hydrogen fluoride ...

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25-07-2013 дата публикации

DEVICE FOR STORAGE OF COMPRESSED GAS, METHOD OF MAKING THE SAME, AND METHOD OF USING THE SAME

Номер: US20130186904A1

A container for storing compressed gas includes a plurality of aligned glass capillaries extending into a tubesheet. Each of the capillaries has an open end flush with a front face of the tubesheet. An end cap having a gas outlet connectable to a compressed gas valve or conduit is fitted to the tubesheet in gas-tight fashion to form a high pressure space defined by inner surfaces of the capillaries, the front face of the tubesheet, and inner surfaces of the end cap. 1. A compressed gas storage container comprising:a first solid, polymeric tubesheet having a front face;a plurality of aligned glass capillaries extending into the first tubesheet, each of the glass capillaries having an open end that is flush with the front face of the first tubesheet; anda first end cap sealed to the first tubesheet in gas-tight fashion, the first end cap including a gas outlet.2. The container of claim 1 , wherein each of the glass capillaries also has a closed claim 1 , gas-tight end distal to the first tubesheet3. The container of claim 1 , further comprising a second solid claim 1 , polymeric tubesheet having a front face that is spaced from the first tubesheet claim 1 , wherein each of the glass capillaries also has a closed end that is flush with the front face of the second tubesheet.4. The container of claim 3 , further comprising a protective housing secured to the first and second tubesheets that surrounds at least portions of the capillaries that are adjacent the closed capillary ends claim 3 , wherein:a high pressure volume is defined by inner surfaces of the glass capillaries, the front faces of the tubesheets, and an inner surface of the end caps; andthe protective housing does not form part of the high pressure volume.5. The container of claim 1 , further comprising a protective housing secured to the first tubesheet that surrounds at least portions of the capillaries that are adjacent the closed capillary ends claim 1 , wherein:a high pressure volume is defined by inner ...

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08-08-2013 дата публикации

EXTRUDED ELEMENTS

Номер: US20130202846A1
Принадлежит: Aker Engineering &Technology AS

The present invention provides an extruded beam element suitable for the construction of sandwich structures, wherein the transverse cross section of the beam comprises two parallel plates (), each having a first part () and a second part (), wherein the first parts of said plates () are connected by multiple webs, wherein at least two of said webs () are inclined with respect to the longitudinal plane (Y) perpendicular to the plates (), and wherein the first parts () and the webs () form a relatively rigid portion of the beam element and the second parts () form a relatively flexible portion of the beam element, as well as sandwich panels and tanks comprising said beam elements. 1. An extruded beam element suitable for the construction of sandwich structures , wherein a transverse cross section of the beam comprises two parallel plates of equal width , wherein each plate comprises a first part having a first end and a second part having a second end , the first parts of said plates being interconnected by multiple webs , wherein at least two of said webs are inclined with respect to a longitudinal plane that is perpendicular to the plates , and wherein at least two of the webs form a triangular configuration together with the first part of one of said parallel plates whereby the second parts , are connected to a web or webs only at the transition between the first and second parts , and in that the second part of the parallel plates have a width within the range of ½ to 1/10 of the total width of said parallel plates.2. An extruded beam element according to claim 1 , wherein at least one of the webs is parallel to a longitudinal plane that is perpendicular to the plates.3. An extruded beam element according to claim 1 , wherein the first part of one of the parallel plates comprises an external rib claim 1 , optionally said rib includes a flange on the free end of the rib.4. An extruded beam element according to claim 1 , wherein the second part of the parallel ...

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05-09-2013 дата публикации

METHOD AND APPARATUS TO HELP PROMOTE CONTACT OF GAS WITH VAPORIZED MATERIAL

Номер: US20130228476A1
Принадлежит: ADVANCED TECHNOLOGY MATERIALS, INC.

Vaporizable material is supported within a vessel to promote contact of an introduced gas with the vaporizable material, and produce a product gas including vaporized material. A heating element supplies heat to a wall of the vessel to heat vaporizable material disposed therein. The vessel may comprise an ampoule having a removable top. Multiple containers defining multiple material support surfaces may be stacked disposed within a vessel in thermal communication with the vessel. A tube may be disposed within the vessel and coupled to a gas inlet. Filters, flow meters, and level sensors may be further provided. Product gas resulting from contact of introduced gas with vaporized material may be delivered to atomic layer deposition (ALD) or similar process equipment. At least a portion of source material including a solid may be dissolved in a solvent, followed by removal of solvent to yield source material (e.g., a metal complex) disposed within the vaporizer. 1. An apparatus for delivering vaporized source material , the apparatus comprising:a container having an interior region bounded by one or more container sidewalls;a plurality of passages, wherein the plurality of passages include an inlet configured for the introduction of a carrier gas into the container and an outlet configured for the delivery of gas from the container;a tube extending from one of the plurality of passages to an end;one or more holders coupled to the tube and positioned between the inlet and the outlet of the plurality of passages, wherein the one or more holders have a surface configured to support a source material and having a perimeter and a plurality of passageways extending through the surface, wherein the one or more holders are in thermal contact with the one or more container sidewalls of the interior region.2. The apparatus of claim 1 , wherein the one or more holders have one or more sidewalls extending around at least a portion of the perimeter of the surface such that the one ...

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03-10-2013 дата публикации

BLANKET INSTALLATION METHOD

Номер: US20130255059A1
Принадлежит: IHI CORPORATION

Provided is a blanket installation method, which includes a transporting step of transporting a blanket unit (), in which the blanket () and a transport jig () are coupled in one body, between an inner tank () and an outer tank in a double shell tank, in a suspended condition, and a mounting step of mounting the blanket unit on a shell plate of the inner tank. According to the method, in the event of installing work of the blanket, the improvement in work efficiency and safety can be achieved. 1. A blanket installation method comprising:a transporting step of transporting a blanket unit, in which the blanket and a transport jig are coupled in one body, between an inner tank and an outer tank in a double shell tank, in a suspended condition; anda mounting step of mounting the blanket unit on a shell plate of the inner tank.2. The method according to claim 1 , wherein the blanket is pinned to the transport jig.3. The method according to claim 2 , wherein the transport jig includes a strap extending in a vertical direction when the blanket unit is installed between the inner tank and the outer tank claim 2 , and a blanket fixing pin installed on the strap claim 2 , and the blanket is pinned to the transport jig by pressing the blanket fixing pin into the blanket with the blanket facing the strap.4. The method according to claim 1 , wherein the blanket unit is transported in the suspended condition by hooking a hook on a transporting bolt installed on the blanket unit.5. The method according to claim 2 , wherein the blanket unit is transported in the suspended condition by hooking a hook on a transporting bolt installed on the blanket unit.6. The method according to claim 1 , wherein the blanket unit is mounted on the shell plate of the inner tank by inserting an anchor rod previously fixed to the shell plate of the inner tank through the blanket unit and by fastening the anchor rod with a nut.7. The method according to claim 2 , wherein the blanket unit is mounted on ...

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31-10-2013 дата публикации

Compact Configuration for Cryogenic Pumps and Turbines

Номер: US20130283824A1
Автор: Madison Joel V.
Принадлежит: Ebara International Corporation

A single cryogenic liquid vessel in which two cryogenic machines are disposed, supported and operable in tandem. In one embodiment the two cryogenic machines are operable in series or individually, and in another embodiment the two cryogenic machines are operable in parallel or individually. Preferably the machines are supported intermediately relative to the vessel, or at a top of the vessel. In various embodiments the machines are pumps or turbines or expanders. 1. A compact configuration for two cryogenic liquid expanders mounted within a single cryogenic liquid pressure vessel within which the expanders are disposed vertically and supported and operable in tandem , in series or individually , the two expanders supported intermediately relative to the vessel , the two cryogenic liquid expanders comprising a lower expander and an independently operated upper expander , the lower expander and the upper expander each having its own center rotational shaft and both connected to an intermediary support plate , the lower expander having a fixed rotational speed , the lower expander further comprising a high pressure inlet and an outlet , the upper expander having a variable rotational speed , the upper expander further comprising an inlet and a low pressure discharge , the inlet of the upper expander in communication with the outlet of the lower expander , whereby the wall thickness and overall diameter of the pressure vessel are minimized.2. The compact configuration for two cryogenic liquid expanders of in which the pressure vessel further comprises an intermediate pressure discharge.3. The compact configuration for two cryogenic liquid expanders of claim 2 , in which the intermediate pressure discharge is single-phase.4. The compact configuration for two cryogenic liquid expanders of claim 2 , in which the intermediate pressure discharge is two-phase.5. The compact configuration for two cryogenic liquid expanders of claim 1 , wherein the low-pressure discharge is ...

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07-11-2013 дата публикации

SEMI-SUBMERSIBLE OFFSHORE STRUCTURE HAVING STORAGE TANKS FOR LIQUEFIED GAS

Номер: US20130291778A1
Принадлежит:

Disclosed herein is a semi-submersible offshore structure having storage tanks for liquefied gas, which is constructed so as to improve workability in marine offloading of the liquefied gas stored in the storage tanks while reducing an influence of sloshing. The offshore structure is anchored at sea and has liquefied gas. The offshore structure includes a storage tank storing liquefied gas, a plurality of columns partially submerged under the sea level and each having the storage tank therein, and an upper deck located on the plurality of columns to connect the columns to each other. 1. A semi-submersible offshore structure anchored at sea and storing liquefied gas , comprising:a plurality of columns partially submerged below sea level and standing perpendicular to sea level, wherein each of said plurality of columns supports a liquefied gas storage tank;pontoons each connecting lower sides of the columns to each other;an upper deck located on the plurality of columns to connect the columns to each other; anda column bridge provided to the columns to bridge a liquefied natural gas (LNG) carrier to the semi-submersible offshore structure, wherein said column bridge is provided in parallel to the pontoons to connect upper portions of the columns to each other under the upper deck, wherein said column bridge connects columns which are connected by each of the pontoons, and wherein each pontoon is configured to reduce fluctuation of the semi-submersible offshore structure and to adjust ballast.2. The semi-submersible offshore structure according to claim 1 , wherein each of the pontoons connects two or more columns to each other.3. The semi-submersible offshore structure according to claim 1 , wherein the column bridge connects adjacent columns to each other claim 1 , and comprises a mooring rope securing the LNG carrier and an offloading arm transferring liquefied gas between the LNG carrier and the semi-submersible offshore structure.4. The semi-submersible offshore ...

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21-11-2013 дата публикации

Hydrogen Energy Systems

Номер: US20130306495A1
Автор: JR. Paul H., Smith
Принадлежит:

Hydrogen energy systems for obtaining hydrogen gas from a solid storage medium using controlled lasers. Also disclosed are systems for charging/recharging magnesium with hydrogen to obtain magnesium hydride. Other relatively safe systems assisting storage, transport and use (as in vehicles) of such solid storage mediums are disclosed. 1. A hydrogen energy method comprising the steps of:a) using at least one material deposition apparatus structured and arranged to manufacture at least one hydrogen storer; andb) manufacturing such at least one hydrogen storer structured and arranged to store at least one substantial amount of hydrogen;c) wherein such at least one hydrogen storer comprises at least one hydrogen-release permitter structured and arranged to permit photonic-excitation-assisted release of stored hydrogen from such at least one hydrogen storer; andd) providing such at least one hydrogen storer to assist at least one commercial use of hydrogen gas.2. The hydrogen energy method according to wherein the step of using at least one material deposition apparatus comprises the step of using at least one filtered cathodic arc deposition apparatus.3. The hydrogen energy method according to wherein the step of manufacturing such at least one hydrogen storer comprises the step of forming at least one layer of hydrogen storer material.4. The hydrogen energy method according to wherein such hydrogen storer material comprises magnesium.5. The hydrogen energy method according to wherein such hydrogen storer material comprises magnesium hydride.6. The hydrogen energy method according to wherein the step of manufacturing such at least one hydrogen storer further comprises the step of forming alternating layers comprising such at least one layer of hydrogen storer material and at least one layer of Nitinol.7. The hydrogen energy method according to wherein such hydrogen storer material comprises magnesium.8. The hydrogen energy method according to wherein such hydrogen ...

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19-12-2013 дата публикации

CYLINDER PREPARATION FOR MAINTAINING STABILITY OF STORED MATERIALS

Номер: US20130334231A1
Принадлежит:

Novel cylinder passivation procedures to increase the room temperature stability of gaseous tin deuteride (SnD) are described. Incorporation of specific organic-containing materials, which when applied onto surfaces of a vessel and/or conduit extending therefrom, can increase the shelf life stability of thermodynamically unstable gases stored within such pretreated vessels. 1. A method of pretreating a vessel to maintain storage of a precursor material in a stabilized form within the vessel , said method comprising:providing a pressure vessel and/or conduit extending therefrom having an interior volume defined by one or more surfaces;pretreating the one or more surfaces by applying an organic-containing material onto the one or more surfaces of the vessel and/or conduit;forming a protected surface;introducing the gaseous precursor material at a predetermined concentration into the interior volume of the vessel at a pressure of up to 150 psia,wherein said material is remains chemically stable with said protected surface so as to not undergo substantial decomposition during storage within the vessel.2. The method of claim 1 , wherein the gaseous precursor material has a concentration of 2% or less.3. The method of wherein the organic-containing material is selected from the group consisting of octadecyltrichlorosilane (OTS) claim 1 , quercetin claim 1 , dioctylphthlate (DOP) and dioctylterephthlate (DOT) and combinations thereof.4. The method of claim 3 , wherein the protected surface comprises a film of self-assembled monolayers of OTS.5. The method of claim 1 , wherein the gaseous precursor material is SnD4.6. The method of claim 5 , wherein the SnD4 is introduced into the pressure vessel at a concentration of 2% or less.7. The method of claim 6 , wherein the SnD4 is introduced into the pressure vessel at a concentration of 1% or less.8. The method of claim 1 , wherein the gaseous precursor material is selected from the group consisting of SnD4 claim 1 , SnH4 claim ...

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26-12-2013 дата публикации

COMBUSTIBLE GAS

Номер: US20130340893A1
Принадлежит: IWATANI CORPORATION

Combustible gas, which is easy to be stored, transported and the like and can contribute to improving the quality of a finished state of an operation such as gas cutting, gas welding or brazing, contains ethylene at 38 v/v % or more and 45 v/v % or less and the remainder being hydrogen and unavoidable impurity. 1. A combustible gas used as a combustion gas in gas cutting of a steel , comprising:ethylene at 38 v/v % or more and 45 v/v % or less, andthe remainder being hydrogen and unavoidable impurity.2. The combustible gas according to claim 1 , wherein said unavoidable impurity is 0.5 v/v % or less.3. The combustible gas according to claim 1 , wherein the combustible gas is sealed in a container claim 1 , and a pressure in said container is 1 MPa or more and 14.7 MPa or less at 35° C.4. The combustible gas according to claim 1 , wherein said steel is a rolled steel for general structure.5. A gas cutting method of steel by using a combustible gas as a combustion gas to cut a steel claim 1 ,said combustible gas comprising:ethylene at 38 v/v % or more and 45 v/v % or less, andthe remainder being hydrogen and unavoidable impurity.6. The gas cutting method of steel according to claim 5 , wherein said steel is a rolled steel for general structure. The present invention relates to a combustible gas, and particularly to a combustible gas suitable for gas cutting, gas welding, brazing or the like.Acetylene (CH) is widely used as a combustion gas in gas cutting, gas welding, brazing or the like. Acetylene is superior in combustion speed and combustion intensity, and thereby preferable as the combustion gas.However, when acetylene undergoes storage, transportation or the like in a state of compressed gas, an explosive decomposition is likely to occur. Therefore, acetylene is stored or transported in a state of being dissolved in a solvent such as acetone or dimethylformamide, which in turn makes acetylene unsuitable for mass transportation in collective containers or large ...

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09-01-2014 дата публикации

MULTILAYER LINER FOR A HIGH-PRESSURE GAS CYLINDER

Номер: US20140008373A1
Автор: Runka Joel, Sharp Jeffrey
Принадлежит: Luxfer Canada Limited

A multilayer liner for a high-pressure gas cylinder is provided. The liner has an impact-modified polyamide (PA) layer in contact with the high-pressure gas. The impact-modified PA layer reduces travel of the high-pressure gas from the inside of the liner to the outside of the liner. Use of a gas barrier layer such as an EVOH layer in combination with the impact-modified PA layer results in improved permeation resistance not heretofore demonstrated in a Type 4 cylinder. Combination of the EVOH layer and the impact-modified PA layer results in an interior surface which is compatible with gas environment in the cylinder, ductility at high pressures, a range of temperatures, and can survive cryogenic conditions. 1. A light weight storage cylinder for a compressed high-pressure gas , the cylinder having a liner wrapped with a constraint layer , the liner comprising:a first, inner layer of impact-modified polyamide (PA) in contact with the gas,an outer thermoplastic layer in contact with the constraint layer; andan adhesive tie layer between the first, inner impact-modified PA layer and the outer thermoplastic layer.2. The storage cylinder of wherein the first impact-modified PA layer has an elongation at break in the range of about 150% to about 200%.3. The storage cylinder of wherein the first impact-modified PA layer has a thickness in the range of about 0.05 mm to about 0.3 mm.4. The storage cylinder of further comprising a gas barrier layer between the first impact-modified layer and the adhesive tie layer.5. The storage cylinder of wherein the gas barrier layer is an ethylene vinyl alcohol (EVOH) layer.6. The storage cylinder of further comprising a second claim 5 , inner impact-modified PA layer claim 5 , whereinthe adhesive tie layer is sandwiched between the second, inner impact-modified PA layer and the outer thermoplastic layer; andthe EVOH layer is sandwiched between the first, inner impact-modified PA layer and the second, inner impact-modified PA layer.11. ...

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16-01-2014 дата публикации

THERMAL INSULATION TECHNIQUE FOR ULTRA LOW TEMPERATURE CRYOGENIC PROCESSOR

Номер: US20140013778A1
Принадлежит: Reflect Scientific, Inc.

Systems and methods are disclosed to provide a cryogenic processor apparatus with an outer housing; an inner housing coupled to the external housing to define a vacuum region there between; and material disposed in the vacuum region to provide redundant insulation and structural support at a cryogenic temperature. 1) A cryogenic processor apparatus , comprising:a) an outer housing;b) an inner housing coupled to the external housing to define a vacuum region there between;c) material disposed in the vacuum region to provide redundant insulation and structural support at a cryogenic temperature.2) The apparatus of claim 1 , wherein the material comprises an insulation material with one of: a silica micro balloon claim 1 , polyisocyanurate.3) The apparatus of claim 1 , wherein the vacuum region is processed using a novel method of removing residual water vapor and other partial pressure of contaminants.4) The apparatus of claim 1 , wherein the vacuum region is evacuated to a partial pressure of approximately 0.2 milliTorr.5) The apparatus of claim 1 , comprising a cryogenic heat exchanger with one or more tubings.6) The apparatus of claim 5 , where in the cryogenic heat exchanger comprises one or more tubings including redundant tubings.7) The apparatus of claim 5 , wherein the cryogenic heat exchanger comprises U-shaped tubings covering at least three walls of the payload bay.8) The apparatus of claim 5 , wherein the cryogenic heat exchanger comprises tubings covering at least four sides of the payload bay.9) The apparatus of claim 5 , wherein the cryogenic heat exchanger comprises a port coupled to one or more tubings to provide input and output connections thereto.10) The apparatus of claim 5 , comprising a door coupled to the payload bay claim 5 , wherein the door comprises three or more materials having different thermal characteristics.11) A method to provide ultra low temperature processing and/or storage claim 5 , comprising:a) providing insulation and ...

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16-01-2014 дата публикации

LNG RECEIVING STRUCTURE

Номер: US20140014665A1
Принадлежит:

An LNG receiving structure of the present invention is provided with a leader pipe () that is placed underneath a receiving pipe () that penetrates a roof of an LNG tank, and that extends to a bottom end of the LNG tank. This LNG receiving structure employs a structure in which the cross-sectional area of the leader pipe is set greater than the cross-sectional area of the receiving pipe. According to this LNG receiving structure, it is possible to minimize the risk that rollover will occur when a plurality of types of LNG that each have mutually different densities are accumulated in the same LNG tank. It is also possible to suppress remixing of the gas when the LNG is received into the LNG tank. 1. An LNG receiving structure that comprises a leader pipe that is placed underneath a receiving pipe that penetrates a roof of an LNG tank , and that extends to a bottom end of the LNG tank , whereinthe cross-sectional area of the leader pipe is set greater than the cross-sectional area of the receiving pipe.2. The LNG receiving structure according to claim 1 , wherein the leader pipe is installed within a pump barrel erection structure.3. The LNG receiving structure according to claim 2 , wherein the cross-sectional configuration of the leader pipe is set so as to match the cross-sectional configuration of an internal space inside the pump barrel erection structure.4. The LNG receiving structure according to claim 1 , wherein inside the leader pipe there are provided: a guide component that performs the roles of reducing the initial velocity of the LNG expelled from the receiving pipe and guiding the LNG to an inside wall of the leader pipe; and gas discharge ports that discharge gas that has risen up from the bottom of the leader pipe to the outside.5. The LNG receiving structure according to claim 2 , wherein inside the leader pipe there are provided: a guide component that performs the roles of reducing the initial velocity of the LNG expelled from the receiving pipe ...

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16-01-2014 дата публикации

DEVICE FOR THE TRANSPORT OF SMALL QUANTITIES OR INDIVIDUAL QUANTITIES OF MEDICAL GAS

Номер: US20140018726A1
Автор: Warren Timothy J.

The present invention relates to a gas composition device that can be used for the sterile transport and storage of a gas composition that will be used with regard to a human or an animal. The device of the present invention consist essentially of a gas container () positioned within an cavity of an outer package, the gas container containing a gas composition within an internal reservoir of the gas container and being surrounded in the cavity of the outer package by the same gas composition. 1. A gas composition device for the transport and storage of a gas composition to be used with regard to a human or an animal , the device consisting essentially of:a) a gas composition that is substantially free from contaminants;b) a gas container having an internal reservoir disposed therein that holds the gas composition and a means for allowing the withdrawal of the gas composition, andc) an outer package capable of being sealed to create a defined enclosed cavity of sufficient size and shape to fully contain the gas container within the confines of the cavity, the cavity, once created, having disposed therein the gas container which holds the gas composition along with an additional amount of the gas composition contained in the gas container to displace any contaminants that may be present in the cavity once the outer package is sealed, the outer package being fabricated from a material that will prevents the gas container within the cavity from coming into contact with any contaminants that are external to the outer package.2. The device of claim 1 , wherein the outer package is fabricated of a material characterized as having a gas transmission rate sufficient to essentially prevent the gas composition from diffusing out of the cavity of the outer package and to essentially prevent atmospheric contaminants from diffusing into the cavity of the outer package.3. The device of claim 1 , wherein the gas composition is a pure gas.4. The device of claim 1 , wherein the gas ...

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30-01-2014 дата публикации

Fuel storage system

Номер: US20140026597A1
Принадлежит: General Electric Co

A cryogenic fuel storage system for an aircraft is disclosed including a cryogenic fuel tank having a first wall forming a storage volume capable of storing a cryogenic liquid fuel; an inflow system capable of flowing the cryogenic liquid fuel into the storage volume; an outflow system adapted to deliver the cryogenic liquid fuel from the cryogenic fuel storage system; and a vent system capable of removing at least a portion of a gaseous fuel formed from the cryogenic liquid fuel in the storage volume.

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30-01-2014 дата публикации

DUAL CONTAINMENT PRESSURE VESSEL FOR STORAGE AND TRANSPORT OF URANIUM HEXAFLUORIDE

Номер: US20140027315A1
Автор: DOUGHERTY Thomas F.
Принадлежит: COLUMBIANA HI TECH LLC

A cylinder for storage and transport of uranium hexafluoride includes a generally tubular main body with a distally arranged end member defining an interior region. An interior tubular member is received in the interior region. A tube end member is attached to an end of the tubular member opposite the end member. First and second chime ends are on respective ends of the main body. First and second chime end members are disposed in the first and second chime ends respectively. The end member, the interior tubular member and the tube end member form a first containment structure. The tubular main body, the first and second chime ends and the first and second chine end members form a second containment structure. 1a generally tubular main body with a distally arranged end member defining an interior region;. A cylinder for storage and transport of uranium hexafluoride comprising: This application claims priority to U.S. Provisional Patent Application No. 61/675,749, filed on Jul. 25, 2012, the disclosures of which are incorporated herein by reference.Uranium Hexafluoride (UFor “Hex”) is a compound used in the uranium enrichment process. It is used in the nuclear industry to produce nuclear fuel. UFis, however, considered to be hazardous and toxic and is very reactive and corrosive. As such, certain measures are taken to ensure containment of UFduring storage, and especially during transport. Typically, UFis stored and transported in cylinders, for example ANSI N14.1 30B, 30C or 30D cylinders. Generally, regulations require that these cylinders be placed in protective shipping packages (PSPs), e.g. overpacks, during transportation to protect the cylinders during potential accident conditions. Hypothetical accident conditions include situations where the PSP could be dropped or impacted, subjected to a fire event, immersed in water, or otherwise damaged.Typically, natural or unenriched UFcontains the isotope Uin a weight percent of about 7/10 of one percent. Enriched ...

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06-02-2014 дата публикации

METHOD AND DEVICE FOR CONTROLLING THE PRESSURE IN A HYDROGEN TANK

Номер: US20140034142A1
Автор: BARTHELEMY Hervé

Method for controlling the pressure in a transportable cryogenic tank (), especially a tank () mounted on a transportable platform () capable of being moved by a truck, the tank () being made of steel and containing pressurized liquid hydrogen, the method comprising at least one of the following: continuously or periodically measuring the temperature in the tank () and continuously or periodically measuring the level of the liquid in the tank and, when the measured temperature exceeds a set upper temperature threshold (Ts) lying between minus 140° C. and minus 160° C., and, respectively, when the liquid level in the tank drops below a set liquid level threshold, the pressure in the tank () is limited to a value less than or equal to a set pressure threshold (Pmax) lying between 1.5 and 3 bar. 112-. (canceled)13. A method for controlling the pressure in a transportable cryogenic tank , wherein the tank is mounted on a transportable platform capable of being moved by a truck , the tank material is steel and the tank containing pressurized liquid hydrogen , the method comprising: continuously or periodically measuring the temperature in the tank and , when the measured temperature exceeds a set upper temperature threshold , the set upper temperature threshold being between minus 140° C. and minus 160° C. , the pressure in the tank is limited to a value less than or equal to a set pressure threshold , the set pressure threshold being between 1.5 and 3 bar.14. The method of claim 13 , further comprising continuously or periodically measuring the level of the liquid in the tank and claim 13 , when the liquid level in the tank drops below a set liquid level threshold claim 13 , the pressure in the tank is limited to a value less than or equal to a set pressure threshold between 1.5 and 3 bar.15. The method of claim 14 , wherein the set liquid level threshold lies between 3% and 15% of the maximum liquid level in the tank.16. The method of claim 14 , further comprising both ...

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06-02-2014 дата публикации

Prismatic pressure tank having lattice structure

Номер: US20140034653A1

Provided is a pressure tank having a lattice structure, including: a tank body that has a high-pressure fluid accommodated therein and is manufactured to have a prismatic shape; and cell structures that are disposed in the prismatic tank body, are manufactured in a lattice form, arrive from one side wall of the tank body to the other side wall thereof facing it, and are orthogonally arranged regularly.

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03-04-2014 дата публикации

Process for Ammonia Saturation of Solid Materials, and Corresponding Assembly

Номер: US20140093444A1
Принадлежит: Faurecia Systemes D'Echappement

A process for ammonia saturation of a solid material capable of absorbing and desorbing ammonia, the solid material being composed of solid particles and includes placing the solid material in contact with a cooled surface, with the solid material being disposed against the cooled surface in a thin layer having a thickness of less than 100 mm. The process further includes injecting a stream of gaseous ammonia to be in contact with the solid material, while the solid material is in contact with the cooled surface. 1. A process for ammonia saturation of a solid material capable of absorbing and desorbing ammonia , the solid material being composed of solid particles , the process comprising of the following steps:placing of the solid material in contact with a cooled surface, the solid material being disposed against the cooled surface in a thin layer having a thickness of less than 100 mm;injecting a stream of gaseous ammonia to be in contact with the solid material, while the solid material is in contact with the cooled surface.2. A process according to claim 1 , wherein the solid material moves along the cooled surface.3. The process according to claim 1 , wherein the solid material moves with the cooled surface.4. The process according to claim 1 , wherein the solid material moves inside a chamber in which gaseous ammonia is injected claim 1 , with the solid material moving in a continuous fashion relative to the chamber.5. The process according to claim 1 , wherein the gaseous ammonia is injected at a pressure of between 1 and 3 bar absolute.6. The process according to claim 1 , including drying of the solid material by heating and a step of cooling of the solid material claim 1 , preceding in this order the injection of a stream of gaseous ammonia to be in contact with the solid material.7. The process according to claim 6 , wherein the solid material is moved in a continuous fashion from the step of heating to the step of cooling claim 6 , and then to the step ...

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10-04-2014 дата публикации

Method of constructing a storage tank for cryogenic liquids

Номер: US20140097189A1
Принадлежит: Chicago Bridge and Iron Co

A new procedure for constructing cryogenic storage tanks involves erecting a freestanding metal liner. The liner is sized and configured to withstand the hydraulic forces the concrete wall of the tank being poured without the need for temporary stiffeners on the inside surface of lower portions of the liner. Lateral tension ties can be connected to anchor ties on an outward surface of the liner and used to tie the liner to outer formwork. These ties may be spaced up to about 2 m apart. Studs can also be provided on the outer surface of the liner, and a cylindrical ring of cryogenic steel can be integrated into the liner.

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05-01-2017 дата публикации

CRYOSTAT WITH ACTIVE NECK TUBE COOLING BY A SECOND CRYOGEN

Номер: US20170002979A1
Принадлежит:

A cryostat arrangement has an outer jacket, a first tank with a first cryogen, and a second tank with a second liquid cryogen which boils at a higher temperature than the first cryogen. The first tank comprises a neck tube, whose hot upper end is connected to the outer jacket at ambient temperature and whose cold lower end is connected to the first tank at a cryogenic temperature. The arrangement uses a riser pipe protruding into the second tank through which the second liquid cryogen can flow out of the second tank and into a first heat exchanger in thermal contact with the neck tube. An outflow line is provided through which second cryogen evaporating from the first heat exchanger can flow out and into an optional second heat exchanger. It is thus possible to greatly reduce heat input from the neck tube into the first tank. 1. A cryostat arrangement for storage of a first cryogen having an outer jacket and a first tank installed therein with the first cryogen as well as a second tank having a second liquid cryogen , wherein the first cryogen boils at a lower temperature than the second cryogen and wherein the first tank comprises a neck tube whose hot upper end is connected to the outer jacket at ambient temperature and whose cold lower end is connected to the first tank at cryogenic temperature , the arrangement comprising:a riser pipe protruding into the second tank through which the second liquid cryogen can flow out of the second tank, a lower end of the riser pipe being located in the second liquid cryogen in the second tank, anda first heat exchanger into which the riser pipe opens directly or indirectly with its upper end, the first heat exchanger having an outflow line through which evaporating second cryogen from the first heat exchanger can flow out, and being in thermal contact with the neck tube so as to provide local cooling via the second cryogen from the riser pipe.2. The cryostat arrangement according to claim 1 , wherein the level of the second ...

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05-01-2017 дата публикации

PURIFYING CRYOGENIC FLUIDS

Номер: US20170003071A1
Принадлежит:

A cryogenic fluid purification device comprising: a first container defining an interior region; a second container defining an interior region in fluid communication with the interior region of the first container; and a cryogenic fluid in contact with an exterior of the second container. 1. A cryogenic fluid purification device comprising:a first container defining an interior region;a second container defining an interior region in fluid communication with the interior region of the first container; anda cryogenic fluid in contact with an exterior of the second container.2. The device of claim 1 , wherein the second container is sized and configured to be received at least partially in the interior region of the first container.3. The device of claim 2 , comprising a manifold extending from an outlet of the first container to an inlet of the second container.4. The device of claim 3 , the manifold comprising an oxygen rejecting filter.5. The device of claim 3 , the manifold comprising pressure relief6. The device of claim 2 , comprising a pump operable to reduce pressure in the interior region of the first container.7. The device of claim 1 , comprising a filter disposed in a path providing fluid communication between the interior region of the second container and the interior region of the first container.8. The device of claim 1 , wherein the first container comprises a spout configured to engage a port of the second container.9. The device of claim 8 , comprising a third container defining an interior region claim 8 , wherein the second container is sized and configured to be received at least partially in the interior region of the third container. This application claims priority to U.S. Provisional Patent Application No. 62/187,936, filed on Jul. 2, 2015, the entire contents of which is incorporated herein by reference.This disclosure relates to devices and methods for purifying cryogenic fluids.Nitrogen, as an element of great technical importance, can be ...

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02-01-2020 дата публикации

SEGMENTED VAPOR PLUG

Номер: US20200003367A1
Автор: Bollinger Bret
Принадлежит:

Methods, apparatus, and device, such as a vapor plug, which partially seals an opening of a dewar. The vapor plug includes a vapor plug cover. The vapor plug cover is configured to cover an opening of a dewar. The vapor plug includes a neck that is formed from multiple disks and multiple sheets. The vapor plug includes a fastener that connects the multiple disks, the multiple sheets and the vapor plug cover. 1. A vapor plug , comprising:a vapor plug cover that is configured to cover an opening of a container;a neck formed from a plurality of disks and a plurality of sheets; anda fastener that connects the plurality of disks, the plurality of sheets and the vapor plug cover.2. The vapor plug of claim 1 , wherein the plurality of sheets form a plurality of protrusions that extend outward from the neck claim 1 , wherein the plurality of protrusions are configured to obstruct gas or liquid that escapes the dewar and reduces evaporation of the gas or liquid within the dewar.3. The vapor plug of claim 2 , wherein each protrusion of the plurality of protrusions is a fin.4. The vapor plug of claim 1 , wherein each disk of the plurality of disks has a top surface and a bottom surface claim 1 , wherein the top surface has a dimple and the bottom surface has a cavity claim 1 , wherein a shape of the dimple corresponds with a shape of the cavity.5. The vapor plug of claim 4 , wherein the plurality of disks include a first disk and a second disk claim 4 , wherein the dimple of the first disk interlocks with the cavity of the second disk.6. The vapor plug of claim 1 , wherein vapor plug cover has a recess that is configured to receive the fastener claim 1 , wherein the fastener has a pin that is configured to be inserted into the recess of the vapor plug cover and through an opening in each disk of the plurality of disks and in each sheet of the plurality of sheets to connect the plurality of disks and the plurality of sheets with the vapor plug cover.7. The vapor plug of claim 6 ...

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07-01-2021 дата публикации

PRESSURE VESSEL HAVING SUBSTANTIALLY FLAT PANEL

Номер: US20210003252A1
Автор: GRIP ROBERT ERIK
Принадлежит:

A pressure vessel includes at least one pair of side bulkheads spaced apart from each other. In addition, the pressure vessel includes at least one substantially flat panel having at least one panel span extending between the pair of side bulkheads and being in non-contacting proximity to the side bulkheads. The panel and the side bulkheads collectively form at least a portion of a structural assembly enclosing the pressure vessel. The pressure vessel also includes a plurality of panel braces coupling the side bulkheads to the panel at a plurality of panel attachment nodes distributed along the panel span. At least two of the panel braces have a different axial stiffness configured to result in the outward deflection of the panel attachment nodes by substantially equal deflection amounts when the panel is subjected to an out-of-plane pressure load during internal pressurization of the pressure vessel. 1. A pressure vessel , comprising:at least one pair of side bulkheads spaced apart from each other and each having a bulkhead top portion;at least one substantially flat panel having at least one panel span extending between the pair of side bulkheads and being in non-contacting proximity to the bulkhead top portions, the panel and the side bulkheads collectively forming at least a portion of a structural assembly enclosing the pressure vessel; anda first plurality of panel braces coupling each of the side bulkheads to the panel at a corresponding first plurality of panel attachment nodes distributed along the panel span, at least two of the panel braces of the first plurality of panel braces having a different axial stiffness configured to result in an outward deflection of the first plurality of panel attachment nodes by substantially equal deflection amounts when the panel is subjected to an out-of-plane pressure load during internal pressurization of the pressure vessel.2. The pressure vessel of claim 1 , further including:at least one vessel rib located between ...

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03-01-2019 дата публикации

CRYOGENIC PRESSURIZED STORAGE WITH HUMP-REINFORCED VACUUM JACKET

Номер: US20190003643A1
Принадлежит:

A cryogenic hydrogen storage vessel includes an outer vacuum vessel, a reinforcement ring on the outer vacuum vessel, an inner pressure vessel inside of the outer vacuum vessel, and a vacuum space between the outer vacuum vessel and the inner pressure vessel. One embodiment of the cryogenic hydrogen storage vessel includes an outer vacuum vessel; a hump-shaped reinforcement ring on the outer vacuum vessel, the hump-shaped reinforcement ring including an external hump portion that protrudes from the hump-shaped reinforcement ring and an internal recess in the hump-shaped reinforcement ring; an inner pressure vessel inside of the outer vacuum vessel, a vacuum space between the outer vacuum vessel and the inner pressure vessel, and a composite support ring in the vacuum space extending from the hump-shaped reinforcement ring on the outer vacuum vessel to the inner pressure vessel, the composite support ring nested in the recess in the hump-shaped reinforcement ring. 1. A method of making a cryogenic hydrogen storage vessel , comprising the steps of:providing an outer vacuum vessel,providing a reinforcement ring on said outer vacuum vessel,positioning an inner pressure vessel inside of said outer vacuum vessel, andproviding a vacuum space between said outer vacuum vessel and said inner pressure vessel.2. The method of making a cryogenic hydrogen storage vessel of wherein said step of providing a reinforcement ring includes providing a hump portion on said reinforcement ring that protrudes outward from said outer vacuum vessel.3. The method of making a cryogenic hydrogen storage vessel of wherein said step of providing a reinforcement ring includes providing a recess in said reinforcement ring that extends inward from said outer vacuum vessel.4. The method of making a cryogenic hydrogen storage vessel of wherein said step of providing a reinforcement ring comprises rolling said reinforcement ring around said outer vacuum vessel.5. The method of making a cryogenic ...

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03-01-2019 дата публикации

SYSTEMS AND METHOD FOR A DYNAMIC SEAL ASSEMBLY FOR A FLUID DELIVERY SYSTEM

Номер: US20190003652A1
Принадлежит:

Methods and systems are provided for a sealing system for a dynamic nuclear polarization (DNP) system. In one embodiment, a system comprises: a reservoir including an inlet opening; an outer tube; and a tapered seal shaped to seal against the inlet opening and the outer tube, the tapered seal including: a first section removably coupleable to a second section; and a through-hole formed by a first plurality of inner surfaces of both the first section and the second section, the through-hole shaped to encircle the outer tube. In this way, the tapered seal may be coupled around the fluid passage without inserting a tip of the fluid passage through the through-hole of the tapered seal, and a sterility of the system may be maintained. 1. A system , comprising:a reservoir including an inlet opening;an outer tube; and a first section removably coupleable to a second section; and', 'a through-hole formed by a first plurality of inner surfaces of both the first section and the second section, the through-hole shaped to encircle the outer tube., 'a tapered seal shaped to seal against the inlet opening and the outer tube, the tapered seal including2. The system of claim 1 , wherein the reservoir is a liquid helium storage reservoir.3. The system of claim 1 , wherein the first section and second section each include a second plurality of inner surfaces positioned adjacent to the first plurality of inner surfaces claim 1 , wherein the first section includes a first opening extending through the first section from an outer surface of the first section to the second plurality of inner surfaces of the first section claim 1 , the first opening positioned to align with a second opening formed by the second plurality of inner surfaces of the second section claim 1 , and wherein the first opening and the second opening together form a passage shaped to receive a fastener.4. The system of claim 1 , wherein the first section includes a first plurality of radial biasing members and the ...

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03-01-2019 дата публикации

SYSTEMS AND METHOD FOR A DYNAMIC SEAL ASSEMBLY FOR A FLUID DELIVERY SYSTEM

Номер: US20190003653A1
Принадлежит:

Methods and systems are provided for a sealing system for a dynamic nuclear polarization (DNP) system. In one embodiment, a system comprises: a reservoir including an inlet opening; an outer tube; and a tapered seal shaped to seal against the inlet opening and the outer tube, the tapered seal including: a first section removably coupleable to a second section; a through-hole formed by a first plurality of inner surfaces of both the first section and the second section, the through-hole shaped to encircle the outer tube; and a vacuum channel extending through, from an outer surface to an inner surface of the first plurality of inner surfaces, one of the first section and second section. In this way, the tapered seal may be coupled around the fluid passage without inserting a tip of the fluid passage through the through-hole of the tapered seal, thereby maintaining a sterility of the system. 1. A system , comprising:a reservoir including an inlet opening;an outer tube; and a first section removably coupleable to a second section;', 'a through-hole formed by a first plurality of inner surfaces of both the first section and the second section, the through-hole shaped to encircle the outer tube; and', 'a vacuum channel extending through, from an outer surface to an inner surface of the first plurality of inner surfaces, one of the first section and second section., 'a tapered seal shaped to seal against the inlet opening and the outer tube, the tapered seal including2. The system of claim 1 , further comprising a vacuum source adapted to be coupled to the vacuum channel at the outer surface of the one of the first section and second section.3. The system of claim 1 , wherein each surface of the first plurality of inner surfaces of both of the first section and second section is positioned at an angle relative to each adjacent surface of the first plurality of inner surfaces along a length of the through-hole.4. The system of claim 3 , wherein each surface of the first ...

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13-01-2022 дата публикации

Systems and Methods for Converting Cryogenic Liquid Natural Gas to High Pressure Natural Gas and to Low Pressure Natural Gas using a Sphere Vessel and Retain all Product and to Further Dispense Only by Voluntary Actions of the User

Номер: US20220010930A1
Автор: Kenneth W. Anderson
Принадлежит: Individual

A System to convert and dispense pressurized gas(es) of cryogenic liquids of gas(es), and systems and methods using a sphere pressure vessel to efficiently convert liquid natural gas (LNG) to compressed natural gas (CNG) and low pressure natural gas (NG) and other cryogenic liquids of gas. The system requires one dedicated sphere pressure vessel at the dispensing location and the location of elements according to horizontal and vertical orientation to convert, retain, store, and dispense multiple pressures of gas from a cryogenic liquid supply such as a non-dedicated high pressure cryogenic personal supply tank. The system efficiently modifies and controls parameters of volume, pressure, and temperature in conversion scale to retain all converted product under human control to dispense, without process required waste, for use in commercial, utility and industrial uses, and scaleable for single family residential applications where service can be accomplished by pickup truck and trailer, where semi trucks access is not available.

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08-01-2015 дата публикации

Tank container for transport and storage of cryogenic liquefied gases

Номер: US20150008228A1
Автор: Mihael GRUDEN, Milan ZRIM
Принадлежит: Aerogel Card d o o, Aspen Aerogels Inc

The invention relates to a tank container ( 100; 100′ ) for the transport and storage of cryogenic liquefied gas, comprising a framework ( 120 ) and a cylindrical vessel ( 110 ) connected to the framework ( 120 ), wherein the vessel ( 110 ) is covered by a superinsulation arrangement ( 130 ) based on an aerogel composition, and the vessel ( 110 ) is connected to the framework ( 120 ) by a clamping device ( 30 ) which is adapted to allow for a relative movement between the framework ( 120 ) and the vessel ( 110 ) due to thermal expansion or contraction of the vessel ( 110 ).

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27-01-2022 дата публикации

LINER SYSTEMS AND METHODS FOR HIGH-PRESSURE FLUID VESSELS

Номер: US20220023913A1
Принадлежит: GOODRICH CORPORATION

A method of coating a high-pressure fluid vessel comprises filling a high-pressure fluid vessel with a coating solution, draining the coating solution, and drying a remainder of the coating solution in the high-pressure fluid vessel. The coating solution may include a thermoplastic elastomer that is hard with a low glass transition temperature and a high melting temperature. Drying the remainder of the coating solution may form a food grade coating within the high-pressure fluid vessel. 1. A method of coating a plurality of high-pressure fluid vessels , the method comprising:filling a first high-pressure fluid vessel with a coating solution;draining the coating solution from the first high-pressure fluid vessel;drying the first high-pressure fluid vessel;filling a second high-pressure fluid vessel with the coating solution;draining the coating solution from the second high-pressure fluid vessel; anddrying the second high-pressure fluid vessel.2. The method of claim 1 , wherein the coating solution includes a thermoplastic elastomer comprising a hardness between 75 shore A and 95 claim 1 , a melting temperature between 1120° C. (248° F.) and 220° C. (428° F.) claim 1 , and a glass transition temperature between 120° C. (248° F.) and 220° C. (428° F.).3. The method of claim 1 , wherein a film of the coating solution remains on an interior surface of the first high-pressure fluid vessel in response to draining the coating solution.4. The method of claim 1 , wherein drying the first high-pressure fluid vessel includes flowing air through an inlet port of the first high-pressure fluid vessel and out an outlet port of the first high-pressure fluid vessel.5. The method of claim 1 , further comprising dissolving a thermoplastic elastomer into at least one solvent to form the coating solution.6. The method of claim 5 , further comprising adding an additive including a pigment additive to the coating solution claim 5 , wherein the pigment additive is configured to contrast a ...

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12-01-2017 дата публикации

INSULATED CHAMBER AND METHOD FOR FLUSHING SUCH A CHAMBER

Номер: US20170009940A1

The invention relates to an insulated chamber comprising at least one element that may operate at sub-ambient temperature, the space around the element(s) being filled with solid insulation and means for injecting a gas containing at least 95 mol-% nitrogen into the insulation, at least some of the gas-injection means opening at a position vertically above at least one element to insulate. 115-. (canceled)16. An insulated chamber comprising:at least one element to be insulated which is configured to operate at a cryogenic temperature, wherein the at least one element being selected from the group consisting of a storage facility, a distillation column, a scrubbing column containing means allowing an exchange of heat and of matter, a heat exchanger, a vaporizer-condenser, a metal pipe, a filter and combinations thereof, wherein the space around the element or the elements is filled with solid insulation, andmeans for injecting a gas containing at least 95 mol % nitrogen into the insulation, in which at least some of the means for injecting the gas into the insulation open into the insulation and are arranged at a position vertically above at least one element that is to be insulated, so that the gas can seep out to a location vertically above the at least one element that is to be insulated.17. The chamber as claimed in claim 16 , wherein the means for injecting the gas run along the inside of at least one vertical wall of the chamber.18. The chamber as claimed in claim 16 , wherein the means for injecting a gas consists of at least one rigid perforated pipe.19. The chamber as claimed in claim 16 , wherein at least some of the means for injecting the gas consist of at least one porous pipe positioned vertically inside the chamber claim 16 , the porous pipe having a length equal to at least half the height of the chamber claim 16 , wherein the porous pipe is perforated.20. The chamber as claimed in claim 19 , wherein any porous pipe is disposed only in part of the ...

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11-01-2018 дата публикации

SOLVENT DEPRESSURIZATION DEVICES, SYSTEM, AND METHODS

Номер: US20180010737A1
Автор: Kogon Boris David
Принадлежит:

A solvent storage and depressurization system is described. The system allows a volume of solvent to be stored and used at low pressure, thereby providing safety benefits and regulatory simplicity. The system includes an external expansion tank that is located outside of an extraction facility and that contains a solvent. The system also includes an internal storage tank that is located inside of the extraction facility and that provides a solvent supply to a solvent user, such as a phytochemical extraction system. The external and internal tanks are separated and connected via a duplex manifold. The manifold allows gas below a first pressure level to pass from the external expansion tank to the internal storage tank, and allows gas above a second pressure level to pass from the internal storage tank back to the external expansion tank, wherein the second pressure level is greater than the first pressure level. 1. A solvent depressurization system comprising:an external expansion tank that is located outside of an extraction facility and that contains a solvent;an internal storage tank that is located inside of the extraction facility and that provides a solvent supply to a solvent user; anda manifold that is coupled via a first conduit to the expansion tank and coupled via a second conduit to the storage tank, wherein the manifold is configured to allow gas below a first pressure level to pass from the external expansion tank to the internal storage tank, and to allow gas above a second pressure level to pass from the internal storage tank back to the external expansion tank, wherein the second pressure level is greater than the first pressure level.2. The solvent depressurization system of claim 1 , wherein the solvent is propane or butane.3. The solvent depressurization system of claim 1 , wherein the solvent user is a phytochemical extraction system.4. The solvent depressurization system of claim 1 , wherein the first pressure level is 0.3 psi and wherein the ...

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10-01-2019 дата публикации

SEALED AND THERMALLY INSULATING TANK COMPRISING AN ANGLE BRACKET

Номер: US20190011083A1
Принадлежит: GAZTRANSPORT ET TECHNIGAZ

Sealed and thermally insulating tank incorporated into a polyhedral bearing structure, a first bearing wall and a second bearing wall forming an edge corner, the tank having a first tank wall, a thermally insulating barrier and a sealed membrane, the tank further has an angle bracket with a first flange and a second flange in such a way that the angle bracket connects in a sealed manner. The sealed membrane of the first tank wall and the sealed membrane of the second tank wall in line with the edge corner, in which the angle bracket has a pair of first tabs and a pair of second tabs, the tank has a pair of first anchor rods coupled to a respective first tab and a pair of second anchor rods coupled to a respective second tab in such a way as to transmit a tensile load between the angle bracket. 1231. Sealed and thermally insulating tank incorporated into a polyhedral bearing structure , a first bearing wall () of the bearing structure and a second bearing wall () of the bearing structure forming an edge corner () of the bearing structure , the tank comprising a first tank wall anchored on the first bearing wall and a second tank wall anchored on the second bearing wall , the tank walls comprising a thermally insulating barrier anchored on the corresponding bearing wall and a sealed membrane borne by said thermally insulating barrier ,{'b': 9', '9', '10', '11', '1', '10', '9', '1', '11', '9', '9', '1, 'the tank further comprising an angle bracket (), the angle bracket () comprising a first flange () borne by the thermally insulating barrier of the first tank wall and a second flange () borne by the thermally insulating barrier of the second tank wall, an end portion of the sealed membrane of the first tank wall turned towards the edge corner () being fixed in a sealed manner to the first flange () of the angle bracket () and an end portion of the sealed membrane of the second tank wall turned towards the edge corner () being fixed in a sealed manner to the second ...

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10-01-2019 дата публикации

SEALED AND THERMALLY INSULATING TANK

Номер: US20190011084A1
Принадлежит: GAZTRANSPORT ET TECHNIGAZ

Sealed and thermally insulating tank incorporated into a polyhedral bearing structure, the tank having a plurality of tank walls, a thermally insulating barrier and a sealed membrane, a first bearing wall and second bearing wall forming an edge corner, the thermally insulating barrier of a first tank wall having a row of edging blocks, a row of anchor strips anchored to the second bearing wall by a row of anchor rods, a first and second of edging blocks each having a groove formed in thickness of said edging block, a first and a second of said anchor rods being housed respectively in the groove of the first and second edging blocks, one anchor strip in the row of anchor strips is supported overlapping the first edging block and the second edging block, the anchor strip being coupled to the first anchor rod and to the second anchor rod. 1231. Sealed and thermally insulating tank incorporated into a polyhedral bearing structure , the tank comprising a plurality of tank walls , the tank walls comprising a thermally insulating barrier anchored on the corresponding bearing wall and a sealed membrane borne by said thermally insulating barrier , a first bearing wall () of the bearing structure and a second bearing wall () of the bearing structure forming an edge corner () of the bearing structure ,{'b': 5', '2', '1', '2, 'the thermally insulating barrier of a first tank wall comprising a row of edging blocks () anchored on the first bearing wall () and juxtaposed along the edge corner () in such a way as to form a support surface parallel to the first bearing wall (),'}{'b': 45', '1', '45', '3', '12', '12', '3', '45', '45', '3', '1, 'the tank comprising a row of anchor strips () extending parallel to the edge corner (), said anchor strips () being borne by the first support surface and anchored to the second bearing wall () by a row of anchor rods (), one said anchor rod () comprising a first end anchored to the second bearing wall () and a second end coupled to the row of ...

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15-01-2015 дата публикации

HYDROGEN STORAGE CONTAINER

Номер: US20150014186A1
Принадлежит:

An apparatus and system is described for storing high-pressure fluids such as hydrogen. An inner tank and pre-stressed concrete pressure vessel share the structural and/or pressure load on the inner tank. The system and apparatus provide a high performance and low cost container while mitigating hydrogen embrittlement of the metal tank. System is useful for distributing hydrogen to a power grid or to a vehicle refueling station. 1. An apparatus for bulk storage of a high-pressure fluid comprising:a tank adapted to hold the high-pressure fluid;a pre-stressed concrete pressure vessel (PCPV) disposed at least partially around said tank, said pre-stressed concrete pressure vessel adapted to provide at least a portion of structural support for said tank.2. The apparatus as recited in further comprising one or more steel tendons within said pre-stressed concrete pressure vessel.3. The apparatus as recited in further comprising a plurality of tanks fluidly coupled to one another with a manifold which is also fluidly coupled to a charging/discharging tank.4. The apparatus as recited in wherein the tank is made of a steel material.5. The apparatus of wherein the steel material comprises a plurality of layers.6. The apparatus of wherein an innermost layer is resistant to hydrogen embrittlement and the hydrogen gas permeated through said innermost layer is vented from said tank.7. The apparatus of wherein said pre-stressed concrete vessel and said tank share support of a pressure load on said tank.8. The apparatus of further comprising an interface material disposed between said tank and said pre-stressed concrete vessel.9. The apparatus of wherein said interface material is concrete with high strength and high ductile properties.10. The apparatus of wherein the high-pressure fluid is hydrogen.11. A composite storage container for a high pressure fluid claim 1 , comprising:a storage tank for holding the high-pressure fluid;a pre-stressed concrete pressure vessel (PCPV) ...

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03-02-2022 дата публикации

METHOD FOR CHECKING THE LEAKPROOFNESS OF A LEAKPROOF AND THERMALLY INSULATING TANK FOR STORING A FLUID

Номер: US20220034453A1
Принадлежит:

A method for checking the sealing of a sealed tank for storing a liquefied gas at low temperature, the tank having an inner hull and a secondary sealing membrane, a secondary space that is arranged between the inner hull and the secondary sealing membrane, a primary sealing membrane and a primary space that is arranged between the primary sealing membrane and the secondary sealing membrane is disclosed. The method has the following main steps: generating a pressure lower than the pressure of the primary space in the secondary space using a suction device, measuring the temperature of an outer surface of the inner hull, and detecting the location of a sealing defect of the secondary sealing membrane in the form of a cold spot on the outer surface of the inner hull. 11301301234239301792897672868182662519. A method for checking the sealing of a sealed and thermally insulating tank () for storing a liquefied gas at low temperature () , the tank () being at low temperature () , the tank () comprising a carrier structure which has an inner hull () and an outer hull () , a confined space () between the inner hull () and the outer hull () , a primary sealing membrane () which is intended to be in contact with the liquefied gas at low temperature () contained in the tank () , and a secondary sealing membrane () which is arranged between the primary sealing membrane () and the inner hull () , a primary space () between the primary sealing membrane () and the secondary sealing membrane () and a secondary space () between the secondary sealing membrane () and the inner hull () , the primary space () and the secondary space () comprising insulating materials , the primary space () comprising a primary gas inlet () and a primary gas outlet () , the secondary space () comprising a secondary gas inlet () and a secondary gas outlet () , the primary sealing membrane resting directly on the insulating materials contained in the primary space and the secondary sealing membrane resting ...

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16-01-2020 дата публикации

STORAGE VESSEL LEAK DETECTION, REMEDIATION, AND METHOD OF TRAINING

Номер: US20200018444A9
Автор: Sharp Gary
Принадлежит:

This application describes methods for responding to a storage vessel leakage event and the implementation of one or more assemblages of components to provide remediation of the leakage event. This application also describes methods of teaching storage vessel leakage remediation for responders and how to use the method of responding to storage vessel leakage event in combination with the one or more assemblages of components. 1. A method comprisingproviding information for determining, as part of a response to a storage vessel leakage event, at least one type of storage vessel associated with the storage vessel leakage event, or a valve or a fitting associated with the storage vessel relating to the storage vessel from a representation, the representation being provided in fixed medium or an electronic display, the representation separating a first group of storage vessels and a second group of storage vessels from the at least one type of storage vessel, the first storage vessel group selected from DOT compressed gas and liquid storage cylinders, and the second storage vessel group selected from ASME compressed gas and liquid storage tanks;providing a first assemblage of components, each of which are configured to couple or attach to the first storage vessel group, the valve or the fitting thereof, for use by a responder in responding to the storage vessel leakage event; andobtaining information from the representation relating to implementation of the first assemblage of components and the first storage vessel group, the valve or the fitting thereof, for remediation of the storage vessel leakage event;orproviding a second assemblage of components, each of which are configured to couple or attach to the second storage vessel group, the valve or the fitting thereof, for use by a responder to the storage vessel leakage event; andobtaining information from the representation relating to implementation of the first assemblage of components and the first storage vessel ...

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25-01-2018 дата публикации

AEROGEL LAMINATE AND THERMAL INSULATION MATERIAL

Номер: US20180022061A1
Принадлежит:

The present invention relates to an aerogel laminate having a structure in which an aerogel layer and a support having a heat ray reflective function or a heat ray absorbing function are laminated. 1. An aerogel laminate having a structure in which an aerogel layer and a support having a heat ray reflective function or a heat ray absorbing function are laminated.2. The aerogel laminate according to claim 1 , wherein the aerogel layer is a layer containing an aerogel having a structure derived from polysiloxane.3. The aerogel laminate according to claim 1 , wherein the aerogel layer is a layer prepared by drying a wet gel formed from a sol containing at least one selected from the group consisting of polysiloxane compounds having a reactive group in the molecule and hydrolysis products of the polysiloxane compounds.4. The aerogel laminate according to claim 1 , wherein the aerogel layer is a layer prepared by drying a wet gel formed from a sol containing silica particles.5. The aerogel laminate according to claim 4 , wherein an average primary particle diameter of the silica particles is 1 nm or more and 500 nm or less.6. The aerogel laminate according to claim 1 , wherein the support has a layer composed of a material comprising at least one selected from the group consisting of carbon graphite claim 1 , aluminum claim 1 , magnesium claim 1 , silver claim 1 , titanium claim 1 , carbon black claim 1 , metal sulfates claim 1 , and antimony compounds.7. The aerogel laminate according to claim 1 , wherein the support is an aluminum foil claim 1 , an aluminum deposited film claim 1 , a silver deposited film claim 1 , or an antimony oxide containing film.8. A thermal insulation material including the aerogel laminate according to . The present invention relates to an aerogel laminate and a thermal insulation material.Recently, requirements for comfortability of living spaces and energy saving have been increasing; for this reason, the shapes of target objects required for ...

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28-01-2016 дата публикации

COMPOSITE PRESSURE TANK BOSS MOUNTING WITH PRESSURE RELIEF

Номер: US20160025266A1

Disclosed is a device and method of a system and an improved boss, the boss having a longitudinally extending body with a top surface having flange forming a planar bottom surface with a fluid connection through the boss further including a liner mounting connection (LMC) on the flange bottom surface; the LMC having a groove adapted to be threadably engaged with a liner neck; and, a migration passage fluidly connecting LMC to the fluid connection of the boss. 1. A pressurized-gas storage boss assembly , comprising:{'b': 200', '11', '202', '18', '205', '215', '215', '212', '210, 'a liner () defining a gas storage chamber () and having a polar end () portion with a substantially planar surface, having an access opening () on the planar surface which is in fluid communication with the gas storage chamber, the liner further including a raised circular neck ring () extending from the planar surface and surrounding the access opening, the raised circular ring having outer annular wall (), a top wall () and an inner annular wall (), with a set of helical neck threads () provided on the inner annular wall;'}{'b': 100', '101', '107', '110', '102', '120', '109', '110', '121', '122', '123', '150', '210, 'a boss () having a longitudinally extending body () that has a top surface (), a planar bottom surface () with a fluid connection () to serve as a fluid passageway through the boss to the gas storage chamber, the boss further including a liner mounting connection () on the flange () bottom surface (), the liner mounting connection (LMC) has a groove adapted to be threadably engaged with the neck; including a top () an outer annular wall () which is substantially smooth and an internal annular wall () which is helically threaded () to engage the neck threads (); and,'}{'b': '210', 'wherein the boss is configured to be screwed onto the liner, via the neck such that the helical neck threads () are engaged with the corresponding helical threads of the internal annular wall.'} ...

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26-01-2017 дата публикации

A pressure limiting valve for a cryostat containing a cryogen and a superconducting magnet

Номер: US20170023142A1
Принадлежит: Siemens Healthcare Ltd

An abstract for a quench valve of a cryostat, in particular for use in a magnetic resonance imaging system, is attachable to the quench valve so as to raise the cracking pressure of the quench valve without changing the operability of the quench valve. Such an accessory device is usable to enable the cryostat, containing a cryogen, to be safely transported by air transportation.

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26-01-2017 дата публикации

Apparatus and method to package hydrogen enriched liquids

Номер: US20170023178A1
Автор: Ruppman, SR. Kurt Howard
Принадлежит:

A hydrogen container for dispensing a hydrogen enriched liquid may include a base section having a cavity for the hydrogen enriched liquid; a truncated cone section connected to the base section; and a neck section connected to the truncated cone section. The neck section include a connecting device for sealing the hydrogen container including a seal having an interior layer formed of metal and an exterior layer. 1) A hydrogen container for dispensing hydrogen enriched liquid , comprising:a base section having a cavity for the hydrogen enriched liquid;a truncated cone section connected to the base section;a neck section connected to the truncated cone section;the neck section including a connecting device for sealing the hydrogen container including a seal having an interior layer formed of metal and an exterior layer.2) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the base section is formed from aluminum.3) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the truncated cone section is formed from aluminum.4) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the neck section is formed from aluminum.5) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the base section is formed from a material which prevents liquid hydrogen from escaping.6) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the truncated cone section is formed from a material which prevents liquid hydrogen from escaping.7) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the neck section is formed from material which prevents liquid hydrogen from escaping.8) A hydrogen container for dispensing hydrogen enriched liquid as in claim 1 , wherein the neck section is connected to a connecting device having female threads.9) A hydrogen container for dispensing hydrogen enriched liquid as in ...

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10-02-2022 дата публикации

SUPPORT DEVICE AND STORAGE CONTAINER FOR LIQUEFIED GAS

Номер: US20220042651A1
Автор: FOURNEL Jean-Luc
Принадлежит:

A storage container for liquefied gas, having a first, inner tank extending in a horizontal longitudinal direction and configured to store the liquefied gas, a second, outer tank disposed around the first tank, the container having a device for supporting the first tank in the second tank, the support device having a fixed and rigid connection extending in a longitudinal direction (A) between one end of the second tank and an adjacent end of the first tank, the fixed and rigid connection including a set of walls forming back-and-forths in the longitudinal direction (A) to constitute a thermal insulation path between the second tank and the first tank, wherein the set of walls forming back-and-forths in the longitudinal direction (A) of the fixed and rigid connection has at least one wall made of titanium. 111.-. (canceled)12. A storage container for liquefied gas , comprising a first , inner tank extending in a horizontal longitudinal direction (A) and configured to store the liquefied gas , a second , outer tank disposed around the first tank with a vacuum insulated spacing between the first and the second tank , the container comprising a device for supporting the first tank in the second tank , the first tank configured to be maintained at a cryogenic temperature while the second equipment is configured to be maintained at a temperature higher than the temperature of the first equipment , the support device comprising a fixed and rigid connection extending in a longitudinal direction (A) between , on the one hand , one end of the second tank and , on the other hand , an adjacent end of the first tank , the fixed and rigid connection including a set of walls forming back-and-forths in the longitudinal direction (A) to constitute a thermal insulation path between , on the one hand , the second tank and , on the other hand , the first tank , wherein the set of walls forming back-and-forths in the longitudinal direction (A) of the fixed and rigid connection comprises ...

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24-01-2019 дата публикации

Integrated Composite Mounting Structure For Use In Pressure Vessels And Pressure Vessel Systems

Номер: US20190024848A1
Автор: Villareal R. Matt
Принадлежит:

A pressure vessel mounting structure () includes a plurality of bands () made of a composite material cured about the exterior surface () of the pressure vessel () to form an integral part of the vessel. The bands () may be spaced apart from one another to form a crisscrossing helical grid pattern with opposing ends () of the bands extending past a respective end () of the pressure vessel () and toward a longitudinal centreline () of the pressure vessel () to form a skirt (). The skirt () provides mounting mounts () as well as a vertical standing mount for the vessel. 1. A composite pressure vessel comprising:a vessel mounting structure including a plurality of bands made of a composite material to form a helical grid pattern about, and bonded to, an exterior surface of the composite pressure vessel,the helical grid pattern extending past each closed end of the composite pressure vessel to form a skirt, the skirt not coming into contact with the exterior surface of the composite pressure vessel.2. A composite pressure vessel according to further comprising the composite material including continuous tow resin-impregnated fibers.3. A composite pressure vessel according to claim 1 , the plurality of bands being integral to the exterior surface of the composite pressure vessel.4. (canceled)5. A composite pressure vessel according to further comprising the helical grid pattern forming mounting points in the skirt claim 1 , arranged to receive mounting hardware.6. A composite pressure vessel according to further comprising at least one of the mounting points being located at an intersection of two bands of the plurality of bands.721. A composite pressure vessel according to further comprising the skirt forming an open end having diameter less than that of an opposing closed end of the composite pressure vessel.8. A composite pressure vessel comprising:a vessel mounting structure including a plurality of bands made of a composite material to form a helical grid pattern ...

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24-01-2019 дата публикации

Cryostat Sample Support Assemblies and Methods for Supporting a Sample During Cryo Analysis

Номер: US20190025166A1
Принадлежит: Montana Instruments Corporation

Cryostat sample support assemblies are provided that can include: a planar sample support defining opposing surfaces bounded by an edge; insulative members extending to the edge; and a thermal link extending to one of the opposing surfaces. Methods for supporting a sample during cryo analysis are also provided. The methods can include: supporting a sample on a planar platform; and supporting the planar platform with both insulative members lateral of the platform and a thermal link below the platform. 1. A cryostat sample support comprising:a planar sample support defining opposing surfaces bounded by an edge;insulative members extending to the support; anda thermal link extending to one of the opposing surfaces.2. The cryostat sample support of wherein the insulative members are each elongated extending from one end to another claim 1 , one of the ends coupled to the edge.3. The cryostat sample support of wherein each of the insulative members provides at least some structural support of the sample support.4. The cryostat sample support of wherein the thermal link provides at least some structural support for the sample support.5. The cryostat sample support of wherein the thermal link extends to a cryo source.6. The cryostat sample support of wherein the cryo source is a coldhead.7. The cryostat sample support of further comprising support members bracketing the insulative members.8. The cryostat sample support of wherein the insulative members are each elongated extending from one end to another claim 7 , one of the ends of each member coupled to the support and the other coupled to the support members.9. A method for supporting a sample during cryo analysis claim 7 , the method comprising:supporting a sample on a planar platform; andsupporting the planar platform with at least one insulative member and a thermal link below the platform.10. The method of further comprising aligning the insulative members opposing one another about the lateral edges of the ...

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24-01-2019 дата публикации

HIGH MAGNETIC FIELD SCANNING PROBE MICROSCOPE EMPLOYING LIQUID HELIUM-FREE ROOM-TEMPERATURE BORE SUPERCONDUCTING MAGNET

Номер: US20190025339A1
Принадлежит: FUDAN UNIVERSITY

A scanning probe microscope of the present disclosure includes: a room-temperature bore superconducting magnet including a liquid helium-consumption free closed-cycle cooling system, a superconducting magnet, and a chamber having a room-temperature bore; and a scanning probe microscope including a scanning head, a vacuum chamber, and a vibration isolation platform; and a computer control system. The room-temperature bore superconducting magnet is cooled by the cryogen-free closed-cycle cooling system which eliminates the dependence on liquid helium for high magnetic field operation. There is no physical contact between the scanning probe microscope and the superconducting magnet connected to the closed-cycle cooling system. The scanning probe microscope can achieve atomic-scale spatial resolution. The temperature of the scanning probe microscope is not restricted by the low temperature conditions for operation of the superconducting magnet. The scanning probe microscope and the vacuum chamber can achieve high-temperature baking independent of the superconducting magnet for ultra-high vacuum conditions. 15-. (canceled)6. A microscope system , comprising:a scanning probe microscope including a scanning head and a vacuum chamber; anda superconducting magnet defining a room-temperature bore, the room-temperature bore accommodating the scanning head and at least a portion of the vacuum chamber;wherein there is no direct physical contact between the scanning probe microscope and the superconducting magnet.7. The microscopic system of claim 6 , further comprising:a first cryogen-free closed-cycle cooling system configured to provide a cryogenic temperature for operation of the superconducting magnet.8. The microscopic system of claim 7 , wherein during operation the first cryogen-free closed-cycle cooling system generates mechanical vibrations that are not directly transmitted to the scanning probe microscope.9. The microscope system of claim 7 , further comprising:a ...

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29-01-2015 дата публикации

Vehicle Tank System for Storing a Fuel in an Extremely Cold State

Номер: US20150028039A1
Принадлежит: Bayerische Motoren Werke AG

A vehicle tank system for storing a fuel in an extremely cold state is provided. The vehicle tank system includes an inner tank that accommodates the fuel and an outer skin that surrounds the inner tank to form an insulation layer approximately constituting a vacuum. The vehicle tank system also includes a vacuum pump that is permanently provided in the vehicle and is connected to the insulation layer. The vacuum pump is configured to increase the quality of the vacuum if the quality of the vacuum does not meet predetermined requirements.

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02-02-2017 дата публикации

SYSTEMS AND METHODS FOR FLUID CONTAINMENT

Номер: US20170030520A1
Принадлежит: ELWHA LLC

A storage container includes a wall structure defining an interior, where the interior is configured to contain a fluid. A portion of the wall structure is formed by a composite material. The composite material includes frozen water and a fibrous additive. 1. A method of making a wall structure for a container configured to contain a liquid , the method comprising:pouring a composite fluid into a cavity of a wall structure; andfreezing the composite fluid within the cavity to form a composite layer within the wall structure.2. The method of claim 1 , wherein the composite fluid includes water and an additive.3. The method of claim 1 , wherein the composite fluid has a freezing point below 0 degrees Celsius.4. The method of claim 1 , wherein providing the wall structure comprises providing an inner wall and an outer wall claim 1 , wherein the cavity is provided between the inner and outer walls.5. The method of claim 1 , wherein the composite layer is a first composite layer claim 1 , further comprising:forming a second composite layer adjacent the first composite layer within the cavity.6. The method of claim 5 , further comprising melting and refreezing adjacent portions of the first and second composite layers to join the first and second composite layers.7. The method of claim 1 , further comprising:receiving an indication of a temperature of the composite layer; andselectively heating or cooling the composite layer based on the temperature of the composite layer.8. The method of claim 1 , further comprising:receiving an indication of an amount of erosion of the composite layer; andselectively heating or cooling the composite layer based on the amount of erosion of the composite layer.9. The method of claim 1 , further comprising:receiving an indication of an amount of erosion of the composite layer; andproviding additional composite fluid to the composite layer based on the amount of erosion of the composite layer.10. The method of claim 1 , wherein providing ...

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02-02-2017 дата публикации

NITROGEN BLANKETING SYSTEM

Номер: US20170030521A1
Принадлежит:

A nitrogen blanket system for small fuel tanks is disclosed that includes tank empty-space pressure control for sealed tanks that can hold pressure. The system includes a fuel tank storing some volume of fuel, such as diesel fuel. The remaining empty volume is filled with nitrogen by the disclosed system. The nitrogen blankets the liquid fuel and fills the remaining space in the fuel tank to prevent the accumulation of moisture and thereby prevent corrosion within the fuel tank. 1. A nitrogen blanketing system for a fuel tank , the system comprising:a nitrogen generator;a pressure-sensing switch in fluid communication with the nitrogen generator;a conduit for providing a fluid path between the pressure-sensing switch and the fuel tank; anda differential switch in fluid communication with the fuel tank via the conduit,wherein the pressure-sensing switch is configured to close to prevent nitrogen from flowing from the nitrogen generator to the fuel tank if atmospheric pressure in the fuel tank is above a first predetermined level, and configured to open to allow nitrogen to flow from the nitrogen generator to the fuel tank if atmospheric pressure in the fuel tank is below the first predetermined level, andwherein the differential switch is configured to open to allow nitrogen to escape from the fuel tank via the conduit if atmospheric pressure in the fuel tank is above a second predetermined level, and configured to close to prevent nitrogen from escaping from the fuel tank via the conduit if atmospheric pressure in the fuel tank is below the second predetermined level.2. The system of claim 1 , further comprising a dispenser in fluid communication with the tank via the conduit.3. The system of claim 2 , wherein the dispenser is configured to dispense a volatile corrosion inhibitor into the tank while nitrogen is flowing in the conduit towards the tank.4. The system of claim 1 , further comprising a pressure vacuum valve in fluid communication with the tank via the ...

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04-02-2016 дата публикации

Liquid Level Gauge for a Cryogenic Fluid Cylinder

Номер: US20160033082A1
Принадлежит:

A vertically-oriented cryogenic fluid cylinder includes an inner vessel for holding cryogenic fluid, an outer vessel surrounding the inner vessel, and a liquid level gauge for indicating a liquid level within the inner vessel. The liquid level gage includes a level indicator located outside of the outer vessel, a support arm extending down into the inner vessel, a swing arm pivotably secured to the support arm and connected to the level indicator so that angular position of the swing arm provides an indication of liquid level within the inner vessel on the level indicator, and a float on the swing arm that pivots the swing arm as the liquid level rises and lowers. The support arm forms an acute angle with the central longitudinal axis of the inner vessel so that the swing arm can be longer to move over a larger portion of the length of the inner vessel. 1. A cryogenic fluid storage vessel comprising , in combination:an inner vessel for holding cryogenic fluid;wherein the inner vessel is cylindrical shaped having a diameter and a central longitudinal axis perpendicular to the diameter;an outer vessel surrounding the inner vessel and forming an insulating space therebetween;a liquid level gauge including a gauge head secured to the outer vessel, a level indicator viewable from outside of the outer vessel, a support arm extending from the gauge head and extending into the inner vessel, a swing arm pivotably secured to a lower end of the support arm and operatively connected to the level indicator so that angular position of the swing arm provides an indication of liquid level within the inner vessel on the level indicator, and a float secured to the swing arm and configured to pivot the swing arm as level of the liquid within the inner vessel changes; andwherein a central longitudinal axis of the support arm forms an acute angle with the central longitudinal axis of the inner vessel.2. The cryogenic fluid cylinder according to claim 1 , wherein the float is secured to ...

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05-02-2015 дата публикации

INSTALLATION AND METHOD FOR PREPARING LIQUID AND/OR GASEOUS CARBON DIOXIDE

Номер: US20150033768A1
Принадлежит:

An installation for preparing liquid and/or gaseous carbon dioxide is described, having a first container which is configured to store liquid carbon dioxide, wherein the first container is in fluid communication with a second container by at least a first pump, wherein said pump is configured for pumping carbon dioxide out of the first container via a first valve into the second container. A measuring apparatus is provided for measuring the mass of the second container, wherein the installation is configured such that the first valve is closed off so that no more carbon dioxide can be supplied to the second container when the mass of the second container measured by the measuring apparatus reaches or exceeds a predefined value. Methods for preparing liquid carbon dioxide are also provided for. 1. An installation for preparing liquid and/or gaseous carbon dioxide , comprising:a first container which is configured to store liquid carbon dioxide, wherein the first container is in fluid communication with a second container by means of at least a first pump, wherein said first pump is configured for pumping carbon dioxide out of the first container via a first valve into the second container,characterized in thata measuring apparatus is provided for measuring the mass of the second container, wherein the installation is configured such that the first valve is closed off so that no more carbon dioxide can be supplied to the second container when the mass of the second container measured by the measuring apparatus reaches or exceeds a predefined value.2. The installation as claimed in claim 1 , characterized in that the installation does not include a return to the first container of a liquid and/or gaseous phase of the carbon dioxide removed from the first container.3. The installation as claimed in claim 1 , characterized in that the second container is configured as a mobile container.4. The installation as claimed in claim 3 , characterized in that the mobile ...

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01-05-2014 дата публикации

Cryogenic Fluid Tank and Its Use

Номер: US20140117021A1

Cryogenic fluid tank for a launch rocket, comprising at least one wall delimiting a storage space for cryogenic fluid, said wall being provided, on at least part of the internal surface thereof, with thermal insulation comprising a so-called top layer intended to be in contact with the fluid stored in the storage space, characterized in that the top layer comprises an insulating material covered, on the face thereof intended to be in contact with the cryogenic fluid stored in the tank, with an impervious enclosure forming an impervious barrier between the cryogenic fluid stored and the insulating material, and in that the insulating material of the top layer is completely encapsulated in an impervious enclosure, that is to say the insulating material is covered by the impervious enclosure over its entire surface. 115-. (canceled)162. A cryogenic fluid tank for a launch rocket , comprising at least one wall delimiting a storage space for cryogenic fluid , said wall being provided , on at least part of the internal surface thereof , with thermal insulation comprising a so-called top layer intended to be in contact with the fluid stored in the storage space , characterized in that the top layer comprises an insulating material covered , on the face thereof intended to be in contact with the cryogenic fluid stored in the tank , with an impervious enclosure forming an impervious barrier between the cryogenic fluid stored and the insulating material , and in that the insulating material of the top layer () is completely encapsulated in an impervious enclosure.17. The tank of claim 16 , wherein the insulating material of the top layer is covered with the impervious enclosure only on the face thereof turned towards the inside of the storage space and in that claim 16 , at the periphery of the impervious material of the top layer claim 16 , the impervious enclosure is fixed to the wall of the tank in order to provide an impervious barrier between the cryogenic fluid stored ...

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31-01-2019 дата публикации

LIQUIEFYING A GASEOUS MEDIUM

Номер: US20190032854A1
Принадлежит: LINDE AKTIENGESELLSCHAFT

An arrangement comprising at least one liquefaction plant for liquefying a gaseous medium to produce a liquefied medium; and at least one storage tank for storing the liquefied medium. A first transfer line is provided which is connected between the liquefaction plant and the storage tank, for transferring liquefied medium from the liquefaction plant into the storage tank. A second transfer line is connected between the liquefaction plant and the storage tank, for transferring gaseous medium from the storage tank into the liquefaction plant. The second transfer line, which used for transferring medium from the storage tank into the liquefaction plant, is arranged so that it is routed at least partially through the area of the storage tank in which the liquefied medium is stored in use. 1. An arrangement comprisingat least one liquefaction plant (V) for liquefying a gaseous medium to produce a liquefied medium,at least one storage tank (S) for storing the liquefied medium,{'b': '3', 'a first transfer line () connected between the liquefaction plant (V) and the storage tank (S) for transferring liquefied medium from the liquefaction plant (V) into the storage tank (S), and'}{'b': 4', '4, 'a second transfer line (′, ″) connected between the liquefaction plant (V) and the storage tank (S) for transferring gaseous medium from the storage tank (S) into the liquefaction plant (V),'}{'b': 4', '4, 'wherein the second transfer line (′, ″), used for transferring medium from the storage tank (S) into the liquefaction plant (V), is arranged so that the second transfer line is routed at least partially through the area of the storage tank (S) in which the liquefied medium is stored in use.'}2344. An arrangement according to claim 1 , wherein an outlet of the first transfer line () into the storage tank (S) is provided adjacent to a first side wall of the tank (S) and an inlet of the second transfer line (′ claim 1 , ″) is provide adjacent to a second side wall claim 1 , said ...

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31-01-2019 дата публикации

CRYOSTAT ARRANGEMENTS AND MOUNTING ARRANGEMENTS FOR CRYOSTATS

Номер: US20190032855A1
Принадлежит:

A cryocooler mounting arrangement and magnets and cryostats including such an arrangement. The arrangement is for mounting the coldhead of a cryocooler in a cryostat for allowing the extraction of heat from the interior of the cryostat by the cryocooler. The mounting arrangement comprises a coldhead interface portion for mounting on the coldhead and a sock portion for mounting in the cryostat and arranged for receiving the coldhead . The sock portion comprises a receiving interface portion for receiving the coldhead interface portion so as to provide thermal contact therebetween and hence to provide thermal contact between the coldhead and the interior of the cryostat. The coldhead interface portion comprises plurality of flexible finger portions and the receiving interface portion comprises a bearing surface against which the finger portions are arranged to rest. The mounting arrangement further comprises a clamping ring for releasably clamping the finger portions against the bearing surface to ensure thermal contact between the coldhead interface and the receiving interface. The clamping ring is held in a recess on the fingers. An outer interface portion is provided at the outer vacuum wall of the cryostat 1. A cryocooler mounting arrangement for mounting the coldhead of a cryocooler in a cryostat for allowing the extraction of heat from the interior of the cryostat by the cryocooler , the mounting arrangement comprising a coldhead interface portion for mounting on the coldhead and a sock portion for mounting in the cryostat and arranged for receiving the coldhead , the sock portion comprising a receiving interface portion for receiving the coldhead interface portion so as to provide thermal contact therebetween and hence to provide thermal contact between the coldhead and the interior of the cryostat , wherein one of the coldhead interface portion and the receiving interface portion comprises plurality of flexible finger portions and the other of the coldhead ...

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09-02-2017 дата публикации

METHOD FOR COATING OR FILLING A POROUS MATERIAL

Номер: US20170037509A1
Автор: Faguet Jacques, LIU Junjun
Принадлежит:

A method is provided for coating or filling a porous material. According to one embodiment, the method includes providing the porous material, delivering precursor molecules by gas phase exposure into pores of the porous material, and reacting the precursor molecules to form a polymer inside the pores. 1. A method of coating or filling a porous material , the method comprising:providing the porous material;delivering precursor molecules by gas phase exposure into pores of the porous material; andreacting the precursor molecules to form a polymer inside the pores.2. The method of claim 1 , wherein the polymer does not fill the pores.3. The method of claim 1 , further comprisingrepeating the delivering and reacting at least once to increase the amount of the polymer inside the pores.4. The method of claim 1 , wherein the porous material is mesoporous with pores having a diameter between 2 nm and 50 nm.5. The method of claim 1 , wherein the porous material is microporous with the pores having a diameter of less than 2 nm.6. The method of claim 1 , wherein the porous material has a metal organic framework (MOF).7. The method of claim 1 , wherein the porous material has a covalent organic framework (COF).8. The method of claim 1 , wherein the porous material is a metal foam.9. The method of claim 1 , wherein the porous material contains a membrane.10. The method of claim 1 , wherein the precursor molecules include monomers claim 1 , dimers or oligomers of low molecular weight organic compounds that are capable of polymerization.11. The method of claim 1 , wherein the precursor molecules include a vinyl functional group (—C═C—).12. The method of claim 1 , wherein the precursor molecules include carbon-carbon triple bonds (—C≡C—).13. The method of claim 1 , wherein the precursor molecules include two or more different reactive molecules that are able to react and form molecules with much higher molecular weight.14. The method of claim 13 , wherein one precursor molecule ...

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12-02-2015 дата публикации

DEVICE CAPABLE OF PRESSURIZATION AND ASSOCIATED SYSTEMS AND METHODS

Номер: US20150040992A1
Принадлежит:

Exemplary embodiments are directed to devices, methods and systems capable of pressurization, generally involving a flow system that includes a pressurized reservoir, at least one pump including a pump control valve, an outlet port, a shut-off valve and a vent valve. The flow system is configured to be pressurized. The shut-off valve is disposed between the pressurized reservoir and the at least one pump. The vent valve is disposed between the at least one pump and the outlet port. The shut-off valve, the vent valve and the pump control valve of the at least one pump are configured to actuate in a coordinated manner to control a pressurization of the flow system. Exemplary embodiments are further directed to devices, methods and systems for column switching, generally including at least a first column, a second column and a column switching valve. 1. A device capable of pressurization , comprising:a flow system that includes a pressurized reservoir, at least one pump including a pump control valve, an outlet port, a shut-off valve and a vent valve;wherein the flow system is configured to be pressurized;wherein the shut-off valve is disposed between the pressurized reservoir and the at least one pump;wherein the vent valve is disposed between the at least one pump and the outlet port; andwherein the shut-off valve, the vent valve and the pump control valve of the at least one pump are configured to actuate in a coordinated manner to control a pressurization of the flow system.2. The device of claim 1 , wherein the flow system is a CO-based chromatography system and the pressurized reservoir is a COtank.3. (canceled)4. The device of claim 1 , wherein the outlet port is at least one of an exhaust and a waste port.5. The device of claim 1 , wherein the pressurization is a positive pressurization or a depressurization of the flow system.6. (canceled)7. (canceled)8. (canceled)9. The device of claim 5 , wherein the depressurization reduces the pressurization of the flow ...

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09-02-2017 дата публикации

METHOD AND APPARATUS FOR THERMALLY DISCONNECTING A CRYOGENIC VESSEL FROM A REFRIGERATOR

Номер: US20170038100A1
Автор: Quigley Mary Ellen
Принадлежит: SIEMENS HEAL THCARE LIMITED

The present invention relates to a method of thermally disconnecting a cryogenic vessel () of a cryostat () from a refrigerator (), e.g. during transportation of the cryostat (). In order to provide a simple and reliable technique for thermally disconnecting the refrigerator () from the cryogenic vessel (), the cryogenic vessel () is connected with the refrigerator () by means of an input channel () and an output channel (), wherein the input channel () and the output channel () are adapted to provide a loop system for a convection circulation of cryogen through the refrigerator (). 18-. (canceled)9. A method for thermally disconnecting a cryogenic vessel from a refrigerator , said cryogenic vessel containing a cryogen and said refrigerator being configured to cool said cryogen by cooling a recondenser within a recondensing chamber , said cryogenic vessel being connected with said recondensing chamber via an input channel and an output channel that are generally vertically oriented , said input channel and said output channel being configured to form a loop system for convection circulation of the cryogen through a circulation path that passes through the recondensing chamber , said method comprising:preventing convection circulation of cryogen through the recondensing chamber by stopping said circulation of cryogen and thereby thermally disconnecting the refrigerator from the cryogenic vessel; andstopping said circulation of cryogen by creating a column of stratified cryogen gas automatically within each of the input channel and the output channel when said refrigerator is not operating; andproviding said input channel with at least one structural attribute selected from the group consisting of the input channel being longer than the output channel, and thermally insulating said input channel.10. A method as claimed in comprising also preventing said circulation of cryogen by closing a valve that interrupts said circulation path.11. A method as claimed in ...

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24-02-2022 дата публикации

CRYOGENICALLY COOLED VACUUM CHAMBER RADIATION SHIELDS FOR ULTRA-LOW TEMPERATURE EXPERIMENTS AND EXTREME HIGH VACUUM (XHV) CONDITIONS

Номер: US20220057046A1
Принадлежит:

Methods, systems, and devices for ultra or extreme-high vacuum are described. Such systems may comprise a vacuum chamber, a target within the vacuum chamber, two or more overlapping radiation shields arranged within an inner vacuum space of a vacuum chamber, and surrounding at least a portion of the target, a first and a second cooling element unit thermally coupled to a first and second radiation shield of the two or more overlapping radiation shields, wherein the first unit is configured to reduce the first radiation shield's temperature to at least <100K, and the second unit is configured to reduce the second radiation shield's temperature to at least <25K, and a third cooling element unit coupled to the target and isolated from the first and second radiation shield, wherein the third cooling element unit is configured to reduce the target's temperature to at least <4K. 1. An ultra-high vacuum (UHV) or extreme-high vacuum (XHV) system comprising:a vacuum chamber;a target within the vacuum chamber;two or more overlapping radiation shields arranged within an inner vacuum space of a vacuum chamber, wherein the two or more overlapping radiation shields surround at least a portion of the target;a first cooling element unit thermally coupled to a first radiation shield of the two or more overlapping radiation shields, wherein the first cooling element unit is configured to reduce the first radiation shield's temperature to at least <100K;a second cooling element unit thermally coupled to a second radiation shield of the two or more overlapping radiation shields, wherein the second cooling element unit is configured to reduce the second radiation shield's temperature to at least <25K; anda third cooling element unit thermally coupled to the target, the third cooling element unit thermally isolated from both the first radiation shield and the second radiation shield, wherein the third cooling element unit is configured to reduce the target's temperature to at least <4K.2 ...

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06-02-2020 дата публикации

HEAT INSULATING VESSEL FOR LOW TEMPERATURE LIQUEFIED GAS PUMP

Номер: US20200040881A1
Принадлежит: KAWASAKI JUKOGYO KABUSHIKI KAISHA

A heat insulating vessel for a low temperature liquefied gas pump, which includes an inner tank configured to accommodate low temperature liquefied gas, an outer tank provided externally around the inner tank, and a low temperature liquefied gas pump disposed inside the inner tank. The outer tank has an outer tank upper part that is an upper end portion thereof, and an outer tank body other than the outer tank upper part. A lid structure having a heat-insulated structure detachably fitted into an upper part of the inner tank. The pump is fixed to the lid structure, and a suction pipe and a discharge pipe are insertedly fixed to the lid structure. A vacuum insulating layer is provided between the inner tank and the outer tank. With this heat insulating vessel for the low temperature liquefied gas pump, adiabaticity of the lid structure and maintainability of the pump are increased. 1. A heat insulating vessel for a low temperature liquefied gas pump , comprising an inner tank configured to accommodate low temperature liquefied gas , an outer tank provided externally around the inner tank , and a low temperature liquefied gas pump disposed inside the inner tank ,wherein the outer tank has an outer tank upper part that is an upper end side portion thereof, and an outer tank main body other than the outer tank upper part,wherein a lid structure having a heat-insulated structure detachably fitted into an upper part of the inner tank is provided,wherein the pump is fixed to the lid structure, and a suction pipe and a discharge pipe are insertedly fixed to the lid structure, andwherein a vacuum insulating layer is formed between the inner tank and the outer tank.2. The heat insulating vessel of claim 1 , wherein a vacuum-pump port is formed in the outer tank upper part.3. The heat insulating vessel of claim 1 , wherein a plurality of pressure detecting pipes and a drain pipe penetratedly fixed to the outer tank upper part are provided.4. The heat insulating vessel of claim ...

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18-02-2016 дата публикации

Method Of Construction Of Prestressed Concrete Panel Wall Liquid Storage Tank And Tank So Constructed

Номер: US20160046437A1
Принадлежит: Chevron U.S.A. INC.

Disclosed is a method for the construction of a prestressed concrete tank for the storage of liquids. The method includes erecting precast concrete panels on a foundation in a generally cylindrical shape while allowing an opening to allow the passage of people and equipment there through during the construction of the tank. Anchors are provided along both vertical edges of the opening. Strands are inserted into the anchors along both vertical edges of the opening and wire wrapped under tension over the outer surface of the inner tank wall. In one embodiment, a structural frame is secured within the opening and the strands are anchored to the vertical members of the structural frame. Once the opening in the tank wall is no longer needed, the opening is sealed with concrete panels. The sealed opening is then wire wrapped under tension using strands anchored to the anchors provided along both vertical edges of the opening. 1. A method for constructing a storage tank having a generally cylindrical shape , comprising:a. constructing an inner tank wall comprising concrete panels on a foundation wherein the inner tank wall has an outer surface and an opening in the inner tank wall defined by an opening height and two vertical edges spaced a width apart, the opening provided to allow the passage of people and equipment there through prior to step (e) of the method;b. anchoring at least a first elongated tensile member to the outer surface of the inner tank wall at a first plurality of locations along one of the two vertical edges adjacent the opening;c. wrapping the outer surface of the inner tank wall with the at least a first elongated tensile member;d. anchoring the at least a first elongated tensile member to the outer surface of the inner tank wall at a second plurality of locations along the other of the two vertical edges adjacent the opening such that each of the first plurality of locations is horizontally aligned with each of the second plurality of locations;e. ...

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06-02-2020 дата публикации

Cryostat assembly with superconducting magnet coil system with thermal anchoring of the mounting structure

Номер: US20200041176A1
Принадлежит: Bruker Switzerland AG

A cryostat assembly with an outer container for a storage tank (3) with a first cryogenic fluid and a coil tank (4) for a superconducting magnet coil system (5). The magnet coil system is cooled by a second cryogenic fluid colder than the first cryogenic fluid, the coil tank being mechanically connected to the outer container and/or to radiation shields (6) surrounding the coil tank via a mounting structure. Liquid helium at an operating temperature of approximately 4.2 K is the first cryogenic fluid and helium at an operating temperature of <3.5 K is the second cryogenic fluid in the coil tank. The mounting structure has mounting elements (7) with thermally conductive contact points (7a) thermally coupled to heat sinks having a temperature at or below that of the storage tank, via thermal conductor elements (8). This ensures long times to quench if malfunctions occur.

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19-02-2015 дата публикации

BLANKET INSTALLATION METHOD AND BLANKET UNIT

Номер: US20150048094A1
Принадлежит:

A blanket installation method includes: a transporting step of transporting a blanket unit (), in which a blanket () and a transport jig () are integrally coupled, between an inner tank () and an outer tank () of a double shell structure tank in a suspended condition; and a mounting step of mounting the blanket unit () on a shell plate of the inner tank (). The transport jig () is formed by attaching a blanket fixing pin () to a jig main body (A) through pin coupling. The blanket () is held at the blanket fixing pin (). 1. A blanket installation method comprising:a transporting step of transporting a blanket unit, in which a blanket and a transport jig are integrally coupled, between an inner tank and an outer tank of a double shell structure tank in a suspended condition; anda mounting step of mounting the blanket unit on a shell plate of the inner tank,wherein the transport jig is formed by attaching a blanket fixing pin to a jig main body through pin coupling, andthe blanket is held at the blanket fixing pin.2. The blanket installation method according to claim 1 ,wherein the blanket fixing pin is inserted through a hole section formed in the jig main body and held by a pair of self-lock washers at both sides with the hole section sandwiched therebetween, andas the jig main body is sandwiched between the pair of self-lock washers in a state in which the pair of self-lock washers hold the blanket fixing pin, the blanket fixing pin is attached to the jig main body through pin coupling.3. A blanket unit having a blanket installed between an inner tank and an outer tank of a double shell structure tank claim 1 , the blanket unit comprising:a transport jig configured to hold and transport the blanket; andthe blanket integrally coupled to the transport jig,wherein the transport jig is formed by attaching a blanket fixing pin to a jig main body through pin coupling, andthe blanket is held at the blanket fixing pin.4. The blanket unit according to claim 3 ,wherein the ...

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08-05-2014 дата публикации

Sealed and thermally insulative tank integrated into a supporting structure

Номер: US20140124086A1
Принадлежит: Gaztransport et Technigaz SA

A sealed and thermally insulative tank includes thermal installation including a plurality of juxtaposed insulation blocks on the supporting structure and a seal including a plurality of sealing metal plates disposed on the insulation blocks and welded to each other. Mechanical coupling members extend through the thermal insulation at the level of the edges of the insulation blocks and hold the insulation blocks in bearing engagement on the supporting structure. The metal plates are disposed so that the edges of the metal plates are offset relative to the edges of the underlying insulation blocks. The metal plates are held in bearing engagement on the insulation blocks only by the coupling members. The mechanical coupling members are attached to the metal plates at the level of attachment points away from the edges of the metal plates.

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