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Применить Всего найдено 16359. Отображено 100.
10-12-2009 дата публикации

Плитообразный строительный элемент типа стенной, потолочной панели или половой плиты (варианты)

Номер: RU0000089559U1
Принадлежит: ЛИНДНЕР АГ

1. Плитообразный строительный элемент типа стенной, потолочной панели или половой плиты, отличающийся тем, что плитообразный строительный элемент имеет с одной или обеих сторон покрытие, на несущий слой которого нанесен слой (2) алюминия, причем со стороны, противолежащей слою алюминия, предусмотрена пленка из синтетического материала. ! 2. Плитообразный строительный элемент по п.1, отличающийся тем, что пленка (1) из синтетического материала выполнена из полиэтилентерефталата. ! 3. Плитообразный строительный элемент по п.1, отличающийся тем, что пленка (1) из синтетического материала имеет толщину 4-40 мкм, предпочтительно 4-20 мкм, наиболее предпочтительно 12 мкм. ! 4. Плитообразный строительный элемент по п.1, отличающийся тем, что нанесенный слой (2) алюминия имеет толщину 3-30 мкм, предпочтительно 3-20 мкм, наиболее предпочтительно 7 мкм. ! 5. Плитообразный строительный элемент по п.1, отличающийся тем, что слой (2) алюминия нанесен на пленку (1) из синтетического материала путем напыления. ! 6. Плитообразный строительный элемент по п.1, отличающийся тем, что нанесенный слой (2) алюминия снабжен тиснением или структурирован. ! 7. Плитообразный строительный элемент по п.1, отличающийся тем, что нанесенный слой (2) алюминия снабжен защитным слоем. ! 8. Плитообразный строительный элемент по п.1, отличающийся тем, что плитообразный строительный элемент выполнен из сульфата кальция, древесины, гипсокартона или органоминерального материала. ! 9. Плитообразный строительный элемент по п.1, отличающийся тем, что слой (2) алюминия нанесен на обе стороны несущего слоя или пленки (1) из синтетического материала. ! 10. Плитообразный строительный элемент тип РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) 89 559 (13) U1 (51) МПК E04C 2/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ, ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ(титульный лист) (21), (22) Заявка: 2008143544/22, 05.11.2008 (24) Дата начала отсчета срока действия патента: 05.11.2008 ( ...

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10-05-2016 дата публикации

Плита облицовочная

Номер: RU0000161839U1

Плита облицовочная, выполненная из теплоизолирующего материала, содержащая дополнительный декоративно-защитный слой, армированный стеклофиброй, отличающаяся тем, что декоративно-защитный слой выполнен из полимерцементного состава с алюмосиликатными микросферами. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (51) МПК E04C 2/288 (13) 161 839 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2016102898/03, 28.01.2016 (24) Дата начала отсчета срока действия патента: 28.01.2016 (72) Автор(ы): Глёкин Сергей Павлович (RU) (73) Патентообладатель(и): Глёкин Сергей Павлович (RU) R U Приоритет(ы): (22) Дата подачи заявки: 28.01.2016 (45) Опубликовано: 10.05.2016 Бюл. № 13 (54) ПЛИТА ОБЛИЦОВОЧНАЯ U 1 1 6 1 8 3 9 R U Стр.: 1 U 1 (57) Формула полезной модели Плита облицовочная, выполненная из теплоизолирующего материала, содержащая дополнительный декоративно-защитный слой, армированный стеклофиброй, отличающаяся тем, что декоративно-защитный слой выполнен из полимерцементного состава с алюмосиликатными микросферами. 1 6 1 8 3 9 Адрес для переписки: 454092, г. Челябинск-92, а/я 9344, Угаевой Ольге Викторовне U 1 U 1 1 6 1 8 3 9 1 6 1 8 3 9 R U R U Стр.: 2

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20-06-2016 дата публикации

Звукопоглощающая панель

Номер: RU0000162637U1

Звукопоглощающая панель, содержащая соединенные между собой перфорированную металлическую обшивку и звукопоглощающий наполнитель, отличающаяся тем, что тонколистовая металлическая обшивка содержит цилиндрические отверстия, длина которых превышает толщину обшивки, при этом каждое из цилиндрических отверстий является горлышком акустического резонатора. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (51) МПК E04B 1/82 (13) 162 637 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2015153670/03, 14.12.2015 (24) Дата начала отсчета срока действия патента: 14.12.2015 (45) Опубликовано: 20.06.2016 Бюл. № 17 (54) ЗВУКОПОГЛОЩАЮЩАЯ ПАНЕЛЬ U 1 1 6 2 6 3 7 R U Стр.: 1 U 1 (57) Формула полезной модели Звукопоглощающая панель, содержащая соединенные между собой перфорированную металлическую обшивку и звукопоглощающий наполнитель, отличающаяся тем, что тонколистовая металлическая обшивка содержит цилиндрические отверстия, длина которых превышает толщину обшивки, при этом каждое из цилиндрических отверстий является горлышком акустического резонатора. 1 6 2 6 3 7 Адрес для переписки: 420033, Татарстан, г. Казань, ул. Светлая, 18, кв. 26, Пилягину М.В. (73) Патентообладатель(и): ОБЩЕСТВО С ОГРАНИЧЕННОЙ ОТВЕТСТВЕННОСТЬЮ "МЕЖРЕГИОНАЛЬНАЯ АНАЛИТИЧЕСКАЯ ЛАБОРАТОРИЯ АКУСТИЧЕСКИХ ИССЛЕДОВАНИЙ И ВИБРАЦИОННОГО КОНТРОЛЯ" (RU) R U Приоритет(ы): (22) Дата подачи заявки: 14.12.2015 (72) Автор(ы): Меняшкин Дмитрий Георгиевич (RU)

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10-12-2016 дата публикации

Декоративно-отделочный шпон

Номер: RU0000166691U1

1. Декоративно-отделочный шпон, представляющий собой тонкий лист древесины толщиной от 0,1 до 10 мм, имеющий лицевую сторону с плотностью древесины, большей плотности древесины на обратной стороне этого листа, отличающийся тем, что он снабжен листовым основанием из предназначенного для работы в воздушной среде картона с плотностью от 120 до 2200 г/мпри увеличении толщины от 0,2 до 2,0 мм, к которому тонкий лист древесины приклеен обратной стороной.2. Декоративно-отделочный шпон по п. 1, отличающийся тем, что он снабжен приклеенным к листовому основанию дополнительным покрытием, представляющим собой тонкий лист древесины, обращенный стороной с меньшей плотностью древесины к листовому основанию.3. Декоративно-отделочный шпон по п. 1, отличающийся тем, что листовое основание приклеено к тонкому листу древесины через сетку.4. Декоративно-отделочный шпон по п. 1, отличающийся тем, что листовое основание приклеено к тонкому листу древесины через техническую ткань.5. Декоративно-отделочный шпон по п. 1, отличающийся тем, что он снабжен приклеенным к листовому основанию со стороны, противоположной склейке тонкого листа древесины с листовым основанием, дополнительным покрытием в виде ламинированной пленки. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 166 691 U1 (51) МПК E04C 2/26 (2006.01) B27L 5/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2016136418/03, 12.09.2016 (24) Дата начала отсчета срока действия патента: 12.09.2016 (72) Автор(ы): Малицкий Александр Витольдович (RU) (73) Патентообладатель(и): Малицкий Александр Витольдович (RU) R U Приоритет(ы): (22) Дата подачи заявки: 12.09.2016 (45) Опубликовано: 10.12.2016 Бюл. № 34 (54) ДЕКОРАТИВНО-ОТДЕЛОЧНЫЙ ШПОН U 1 1 6 6 6 9 1 R U картона с плотностью от 120 до 2200 г/м2 при увеличении толщины от 0,2 до 2,0 мм, к которому тонкий лист древесины приклеен обратной стороной. 2. Декоративно-отделочный шпон по п. 1, отличающийся тем, что он ...

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02-03-2017 дата публикации

Плита изоляционная облицовочная

Номер: RU0000169086U1

Полезная модель относится к строительным элементам относительно малой толщины для сооружения отдельных частей зданий, например к плитам, панелям, состоящим из изоляционного материала и бетона, в частности к тепло- и звукоизоляционным плитам для облицовки стен.Плита изоляционная облицовочная включает соединенные между собой изоляционный слой, выполненный из теплоизолирующего материала, и декоративно-защитный слой, выполненный из цементно-песчаного фибробетона с полимерными добавками. Декоративно-защитный слой, выполненный из цементно-песчаного фибробетона с полимерными добавками, дополнительно содержит лаурилсульфат (додецилсульфат) щелочного металла. В качестве лаурилсульфата щелочного металла может быть использован лаурилсульфат (додецилсульфат) натрия. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 169 086 U1 (51) МПК E04C 2/288 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ФОРМУЛА ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ РОССИЙСКОЙ ФЕДЕРАЦИИ (21)(22) Заявка: 2016140070, 11.10.2016 (24) Дата начала отсчета срока действия патента: 11.10.2016 (72) Автор(ы): Коннов Владимир Алексеевич (RU), Кордиков Юрий Петрович (RU) 02.03.2017 Приоритет(ы): (22) Дата подачи заявки: 11.10.2016 (56) Список документов, цитированных в отчете о поиске: RU 109771 U1, 27.10.2011. RU Адрес для переписки: 299040, г. Севастополь, ул. Генерала Коломийца, 9, кв. 90, Коннов Владимир Алексеевич 159997 U1, 27.02.2016. UA 83851 U, 25.09.2013. SU 945321 A1, 23.07.1982. GB 2118588 A, 02.11.1983. R U (57) Формула полезной модели 1. Плита изоляционная облицовочная, включающая соединенные между собой изоляционный слой, выполненный из теплоизолирующего материала и декоративнозащитный слой, выполненный из цементно-песчаного фибробетона с полимерными добавками, отличающаяся тем, что декоративно-защитный слой, выполненный из цементно-песчаного фибробетона с полимерными добавками, дополнительно содержит лаурилсульфат щелочного металла. 2. Плита по п. 1, отличающаяся тем, что декоративно-защитный слой, ...

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18-09-2017 дата публикации

Строительная ламельная плита

Номер: RU0000173884U1

Полезная модель направлена на создание полноразмерной, удобной в монтаже строительной ламельной плиты низкой плотности с высокими показателями прочности на сжатие и предела прочности при растяжении перпендикулярно лицевым поверхностям. Плита нарезана поперек волокон двух и более склеенных между собой минераловатных плит плотностью 75-100 кг/м, при этом плоскость реза является плоскостью ламельной плиты. Ц 1 173884 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ п РЦ ‘’ (51) МПК ВОВ 1/78 (2006.01) Е04С' 2/24 (2006.01) ВЗ2В 5/08 (2006.01) (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2016143693, 07.11.2016 (24) Дата начала отсчета срока действия патента: 07.11.2016 Дата регистрации: 18.09.2017 Приоритет(ы): (22) Дата подачи заявки: 07.11.2016 (45) Опубликовано: 18.09.2017 Бюл. № 26 Адрес для переписки: 620137, г. Екатеринбург, ул. Студенческая, 16, ВНИИМТ, патентный отдел, Щербининой В.А. (72) Автор(ы): Фесенко Антон Сергеевич (КО) (73) Патентообладатель(и): Общество с ограниченной ответственностью "КАТВУЛ" (КО) (56) Список документов, цитированных в отчете о поиске: ТУ 5762-043-17925162-2006. Теплоизоляционные минераловатные плиты ТЕХНО. Табл.3. ЗО 1671469 А1, 23.08.1991. ЗО 876625 А1, 30.10.1981. ВО 2066635 СТ, 20.09.1996. ЕА 200801747 АЛ, 30.12.2008. 0$ 3345241 А, 03.10.1967. (54) Строительная ламельная плита, (57) Реферат: Полезная модель направлена на создание полноразмерной, удобной В монтаже строительной ламельной плиты низкой плотности с высокими показателями прочности на сжатие и предела прочности при растяжении перпендикулярно лицевым поверхностям. Плита нарезана поперек волокон двух и более склеенных между собой минераловатных плит плотностью 3 75-100 кг/м`, при этом плоскость реза является плоскостью ламельной плиты. З |. Стр.: 1 па УЗД ЕП 10 15 20 25 30 35 40 45 КО 173884 91 Полезная модель относится к строительству, представляет собой ламельную плиту из минеральной базальтовой ваты, которая может применяться, ...

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01-12-2017 дата публикации

Каркасная панель

Номер: RU0000175363U1

Полезная модель относится к области строительства, в частности, к стеновым панелям и панелям покрытий. Она может быть использована при строительстве жилых и промышленных зданий.Техническим результатом предлагаемой полезной модели является снижение материалоемкости панели, трудозатрат при ее изготовлении и монтаже готовых панелей, повышение долговечности, пространственной жесткости и несущей способности каркасной панели.Технический результат достигается тем, что каркасная панель, содержащая жестко соединенные между собой каркас и обшивку с полостью между ними, заполненной теплоизоляционным материалом, и имеющая профиль стыка, выполнена в виде коробчатой конструкции из листового материала, при этом каркас изготовлен с С-образным профилем в поперечном сечении, а профиль стыка образован за счет сдвига обшивки относительно центральной продольной оси каркаса в пределах 50...60 мм. Ц 1 175363 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) (11) савае за го а (13) (51) МПК ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ В04С 2/296 (2006.01) (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2017122518, 26.06.2017 (24) Дата начала отсчета срока действия патента: 26.06.2017 Дата регистрации: 01.12.2017 Приоритет(ы): (22) Дата подачи заявки: 26.06.2017 (45) Опубликовано: 01.12.2017 Бюл. № 34 Адрес для переписки: 443001, г. Самара, ул. Молодогвардейская, 194, СамГТУ, патентный отдел (72) Автор(ы): Третьяков Николай Владимирович (КП), Лукин Алексей Олегович (КО), Ильдияров Евгений Викторович (КП), Моисеева Александра Вячеславовна (КО) (73) Патентообладатель(и): Федеральное государственное бюджетное образовательное учреждение высшего образования "Самарский государственный технический университет" (ВП) (56) Список документов, цитированных в отчете о поиске: КО 92064 01, 10.03.2010. ВО 117472 01, 27.06.2012. ВЦ 2168592 С2, 10.06.2001. 7? 2002188242 А, 05.07.2002. (54) КАРКАСНАЯ ПАНЕЛЬ (57) Реферат: Полезная модель относится к области строительства, в частности, к стеновым панелям и панелям ...

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06-12-2017 дата публикации

Светопропускающее изделие

Номер: RU0000175466U1

Полезная модель относится к строительству, в частности к производству светопропускающих изделий.Техническим результатом предлагаемого изобретения является упрощение с одновременным снижением себестоимости.Светопропускающее изделие содержит соответствующим образом уложенные в стопу слои 1 светопропускающего материала, разделенные между собой слоями 2 несветопропускющего материала. В качестве несветопропускающего материала использован жесткий материал, например дерево, пластмасса и т.д.Несветопропускающий материал выполнен по форме в виде параллелепипеда. В качестве светопропускающего материала может быть использован, например, полимерный светопропускающий материал. Склеивание производят под давлением, определяемым опытным путем. В состав клея для получения однородной внешней поверхности материала может быть введен мелкодисперсный несветопропускающий материал. После склейки производят последующую обработку поверхностей, например шлифовку, до получения изделия, изображенного на чертеже (до получения ровной гладкой поверхности, образованной светопропускающими и несветопропускающими слоями). Ц 1 175466 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) (11) зе д о (13) (51) МПК В04С 1/42 (2006.01) ВЗ2В 7/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2017124117, 06.07.2017 (24) Дата начала отсчета срока действия патента: 06.07.2017 Дата регистрации: 06.12.2017 Приоритет(ы): (22) Дата подачи заявки: 06.07.2017 (45) Опубликовано: 06.12.2017 Бюл. № 34 Адрес для переписки: 610014, г. Киров, ул. Сурикова, 42, корп. 1, кв. 97, Вохмянину Владиславу Григорьевичу (72) Автор(ы): Тимшин Иван Владимирович (КО) (73) Патентообладатель(и): Тимшин Иван Владимирович (КО) (56) Список документов, цитированных в отчете о поиске: КО 2604040 СТ, 10.12.2016. КО 2196747 С2, 20.01.2003. О 647141 А, 19.02.1979. ОЕ 10055830 А1, 29.05.2002. ЕР 0982121 А1, 01.03.2000. ЕР 0975473 ВЛ, 01.08.2001. (54) СВЕТОПРОПУСКАЮЩЕЕ ИЗДЕЛИЕ (57) Реферат: ...

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27-12-2018 дата публикации

Трехслойная стеновая панель

Номер: RU0000186051U1

Полезная модель относится к строительству, а именно к многослойным стеновым панелям, используемым в крупнопанельном домостроении.Техническая задача полезной модели заключается в повышении теплозащитных свойств панели.Поставленная задача решена тем, что в трехслойной стеновой панели, включающей армированные бетонные слои, такие как наружный слой, внутренний слой и расположенный между ними промежуточный слой из теплоизолирующего материала, соединенные гибкими металлическими связями, с каналами, выполненными в промежуточном слое из теплоизолирующего материала с расположенными в них полыми трубами, закрытыми по торцам, внутренняя полость труб заполнена углекислым газом, давление которого не выше нормального атмосферного давления.Наличие труб, закрытых по торцам, заполненных углекислым газом, расположенных в каналах, имеющихся в каналах в промежуточном слое из теплоизолирующего материала, позволяет улучшить теплоизолирующие свойства промежуточного слоя, за счет существенно более низкого коэффициента теплопроводности углекислого газа в сравнении с коэффициентом теплопроводности воздуха. Применение труб, заполненных углекислым газом, давление которого ниже нормального атмосферного давления, приводит к дополнительному снижению коэффициента теплопроводности и к улучшению теплозащитных свойств панели. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 186 051 U1 (51) МПК E04C 2/26 (2006.01) E04B 1/86 (2006.01) B32B 13/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК E04C 2/26 (2018.08); E04B 1/86 (2018.08); B32B 13/04 (2018.08) (21)(22) Заявка: 2018132289, 10.09.2018 (24) Дата начала отсчета срока действия патента: 27.12.2018 Приоритет(ы): (22) Дата подачи заявки: 10.09.2018 (45) Опубликовано: 27.12.2018 Бюл. № 36 1 8 6 0 5 1 R U (54) ТРЕХСЛОЙНАЯ СТЕНОВАЯ ПАНЕЛЬ (57) Реферат: Полезная модель относится к строительству, а именно к многослойным стеновым панелям, используемым в крупнопанельном домостроении. Техническая задача ...

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15-12-2020 дата публикации

Стержневой заполнитель многослойной панели

Номер: RU0000201426U1

Полезная модель относится к области многослойных панелей, используемых в транспортных средствах, космических аппаратах и строительстве. Стержневой заполнитель многослойной панели состоит из стержней и полос. Стержни образуют периодическую структурную ячейку пирамиды с прямоугольным основанием. Основания пирамид вдоль каждого ряда заполнителя объединены в полосы, при этом стержни и полосы являются единым целым и выполнены из композиционного материала, непрерывно армированного однонаправленными волокнами. Высокая прочность многослойной панели достигается за счет повышения прочности стержневого заполнителя из композиционного материала путем формирования интегрированных со стержнями заполнителя полос, обеспечивающих большую площадь соединения с обшивкой. 2 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 201 426 U1 (51) МПК B32B 1/06 (2006.01) E04C 2/24 (2006.01) E04C 2/36 (2006.01) B64C 1/12 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B32B 1/06 (2020.08); E04C 2/24 (2020.08); E04C 2/36 (2020.08); B64C 1/12 (2020.08) (21)(22) Заявка: 2020120610, 16.06.2020 (24) Дата начала отсчета срока действия патента: Дата регистрации: Приоритет(ы): (22) Дата подачи заявки: 16.06.2020 2 0 1 4 2 6 R U Адрес для переписки: 420111, г. Казань, ул. К. Маркса, 10, федеральное государственное бюджетное образовательное учреждение высшего образования "Казанский национальный исследовательский технический университет им. А.Н. Туполева - КАИ", отдел интеллектуальной собственности, Лустиной А.А. (54) Стержневой заполнитель многослойной панели (57) Реферат: Полезная модель относится к области многослойных панелей, используемых в транспортных средствах, космических аппаратах и строительстве. Стержневой заполнитель многослойной панели состоит из стержней и полос. Стержни образуют периодическую структурную ячейку пирамиды с прямоугольным основанием. Основания пирамид вдоль каждого ряда заполнителя объединены в полосы, при этом стержни и ...

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19-03-2021 дата публикации

Многослойная несущая панель для образования горизонтальных несущих элементов при сборке быстровозводимых зданий

Номер: RU0000203060U1

Настоящая полезная модель относится к строительству, более конкретно к многослойной несущей панели для образования горизонтальных несущих элементов при сборке быстровозводимых зданий. Технический результат полезной модели заключается в повышении прочности и жесткости многослойной несущей панели для образования горизонтальных несущих элементов при сборке быстровозводимых зданий. Технический результат достигается за счет многослойной несущей панели для образования горизонтальных несущих элементов при сборке быстровозводимых зданий, которая содержит слой каркаса из металлического профиля, закрытый с каждой из его открытых сторон слоем плиты, при этом металлический профиль каркаса обрамляет стальную решетку с образованием ячеистой структуры, и пространство внутри каркаса заполнено пенобетоном. 3 з.п. ф-лы, 4 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 203 060 U1 (51) МПК E04C 2/26 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК E04C 2/26 (2021.02) (21)(22) Заявка: 2021101024, 19.01.2021 (24) Дата начала отсчета срока действия патента: Дата регистрации: 19.03.2021 (73) Патентообладатель(и): Общество с ограниченной ответственностью "РУСАПС" (RU) (45) Опубликовано: 19.03.2021 Бюл. № 8 (54) Многослойная несущая панель для образования горизонтальных несущих элементов при сборке быстровозводимых зданий (57) Реферат: Настоящая полезная модель относится к несущей панели для образования горизонтальных строительству, более конкретно к многослойной несущих элементов при сборке несущей панели для образования горизонтальных быстровозводимых зданий, которая содержит несущих элементов при сборке слой каркаса из металлического профиля, быстровозводимых зданий. Технический закрытый с каждой из его открытых сторон слоем результат полезной модели заключается в плиты, при этом металлический профиль каркаса повышении прочности и жесткости многослойной обрамляет стальную решетку с образованием несущей панели для образования ...

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12-04-2012 дата публикации

Footer structures and methods, and panel and wall structures using such footer structures

Номер: US20120085049A1
Автор: Glenn P. Schiffmann
Принадлежит: Individual

Light weight fiber-reinforced polymeric (FRP) structural building panels and panel assemblies, sized and configured for construction of wall structures permanently tied to the ground, optionally tying overlying structure to an underlying footer through such panels and panel assemblies. Footers are fabricated by flowing fluid concrete under segments of the wall while anchors extend down from the wall into the space into which concrete is being flowed.

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14-06-2012 дата публикации

Shear Panel Building Material

Номер: US20120148812A1
Принадлежит: Individual

A shear panel building material that includes a first facing membrane, a core matrix disposed on a face of the first facing membrane, and a semi-rigid or rigid material attached to the core matrix. The core matrix can include microspheres having a size of about 200 microns to about 800 microns, sodium silicate, and ethylene vinyl acetate. In one aspect, the shear panel is substantially free from glue and cement.

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21-06-2012 дата публикации

Sag resistant, formaldehyde-free coated fibrous substrate

Номер: US20120156471A1
Принадлежит: Individual

The present invention relates to an improved formaldehyde-free coated fibrous substrate. The coating includes a crosslinked binder system which forms three dimensional networks when heat cured. After the coating is applied to the back of fibrous substrate and cured, the coating is capable of hygroscopic expansion which imparts excellent anti-sag properties. The coating is compatible with other coating systems with neutral or mild alkaline pH. The improvement being the binding system is neutralized with a volatile base so that it evaporates quickly so as not to hinder the cross-linking reaction.

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05-07-2012 дата публикации

Method for building modular walls and partitions resistant to fire and noise

Номер: US20120167371A1
Принадлежит: Individual

The invention relates to a method for the construction of fire and sound resistant modular walls and partitions with panels ( 1 ) forming partitions (T) or doors (P), formed by a central core ( 2 ) on which there are bonded two insulating layers ( 3 ) made of plaster, cork or another fire and sound insulating material, two overlays ( 4 ) made of fiberboard, encased in protective film ( 5 ) made of aluminum, and respective outer finishing layers ( 8 ) which are smooth or decorated with inlaid wood ( 9 ) or moldings. The doors (P) are incorporated in a metallic casing ( 12 ) fixed to the floor and ceiling, made of metallic tubes ( 13 ) forming a grid with the same fire and sound resistance. To reinforce the panel ( 1 ) against stresses, a reinforcement layer ( 6 ) made of Tablex or the like is intercalated in the core. For a bearing partition, steel plates ( 7 ) are incorporated.

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23-08-2012 дата публикации

Ribbed backed panels

Номер: US20120213974A1
Автор: Patrick Olvey
Принадлежит: Exterior Portfolio LLC

A backed paneling unit comprised of a backing portion that includes at least an elevated portion. A depth portion may also be included. An elevated portion and/or a depth portion may be formed using any suitable method including, but not limited to, molding, machining and heat stamping. Optionally, a backing portion may comprise a hydrophobic material. Such features may enable fluid flow (e.g., ventilation or liquid drainage) behind the backing portion. Additionally, the elevated portion of the backing portion may eliminate the need for the use of furring strips when installing, for example, siding.

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30-08-2012 дата публикации

Plastic panels and structures

Номер: US20120219739A1
Принадлежит: Lifetime Products Inc

A partition system may include one or more panels. A panel may be constructed using blow-molded plastic. A panel may include one or more depressions, which may be aligned with one or more depressions on an opposing side of the panel. The depressions may provide additional structural integrity for a panel. The depressions on opposing sides of the panel may extend toward and engage each other. The panels may include patterns with which one or more depressions may intersect. The panels may include symmetric patterns on opposing sides. The partition system may include one or more connectors adapted to receive a portion of one or more panels. The partition system may include one or more feet that may be attached to one or more panels. The panels may include one or more reinforcing members of various shapes disposed proximate one or more edges of a panel.

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08-11-2012 дата публикации

Resilient groove

Номер: US20120279154A1
Принадлежит: VALINGE INNOVATION AB

A set of essentially identical floorboards each including a front face and a rear face extending in the horizontal plane, a core, and a surface layer, a mechanical locking system is arranged at least at two opposite edges for connecting a floorboard with an adjacent floorboard in a horizontal and a vertical direction, said mechanical locking system being configured for connecting the floorboard with the adjacent floorboard by vertical folding, wherein one of said opposite edges is provided with a horizontally extending protrusion at an upper edge, and wherein said protrusion is configured to overlap a surface groove at an upper edge of the other of said opposite edges, such that two connected and adjacent floorboards have upper overlapping edges.

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03-01-2013 дата публикации

Floor material using pla resin

Номер: US20130004751A1
Принадлежит: LG HAUSYS LTD

Disclosed is a flooring material using an environment-friendly PLA resin. According to the present invention, the flooring material using the PLA resin comprises: a base layer; a print layer which is formed on top of the base layer, and has a print pattern on an upper side thereof; and a transparent layer which is formed on top of the print layer, wherein one or more of the base layer, the print layer, and the transparent layer include polylactic acid (PLA) resin.

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10-01-2013 дата публикации

Membrane roofing

Номер: US20130008113A1
Принадлежит: Velcro Industries BV

A foam roofing underlayment is provided with a reinforcement membrane having an array of fastener elements for engaging fastener elements on a flexible roof membrane. The underlayment is formed by molding foam between the reinforcement membrane and a carrier membrane. The underlayment in secured to the roof using washers having fastener elements for engaging the fastener elements of the flexible roof membrane. An anti-peel flap with fastener elements is provided around the periphery of the washers. A slip sheet is used between the underlayment and the flexible roof membrane to permit accurate positioning of the flexible roof membrane prior to engagement of the fastener elements. The interstices between the fastener elements provide lateral moisture paths to vents in the flexible roof membrane.

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07-03-2013 дата публикации

Modular building system utilizing composite, foam core panels

Номер: US20130055669A1
Принадлежит: Innovative Composites International Inc

A system for constructing a structure comprises a plurality of composite panels having a laminate structure comprising a foam core to which are attached cover layers of the same or different material. One or both of the cover layers may be comprised of composite sub-layers. The system includes a number elongate and preferably extruded components for connecting the panels to form walls, roofs or floors for the structure. The system is modular, thereby allowing for a time and cost efficient means of erecting a structure.

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11-04-2013 дата публикации

FLOOR TILE HAVING A LATCH AND LOOP STRUCTURE

Номер: US20130086861A1
Принадлежит: MACNEIL IP LLC

Lateral edges of the modular plastic floor tiles are provided with latches which fit into loops with an interference fit. The latch and loop structure may include an undercut behind the lateral edge of the tile. The loops flex in order to impose a compressive force on mating tile edges. 1. A modular floor tile for use in creating a flooring surface comprising a plurality of such tiles including first and second tiles , the floor tile comprising:a body molded from a polymer and having a substantially planar, horizontal web, the web having an upper surface and a lower surface including a general lower surface, a plurality of edge surfaces of the web extending from the upper surface of the web to the general lower surface thereof, the edge surfaces including first edge surfaces and second edge surfaces which are complementary to the first edge surfaces such that when a first modular floor tile is joined to a second modular floor tile, a first edge surface of the first tile will mate with a second edge surface of the second tile;at least one latch disposed adjacent to each first edge surface and to downwardly depend from the general lower surface of the web, the latch including a laterally inward facing surface that is laterally inwardly displaced from the first edge surface, a point on the inward facing surface being disposed at an innermost limit;at least one loop disposed adjacent each second edge surface, the loop extending laterally outwardly beyond the second edge surface, an inner loop surface of the loop including a point disposed at an outermost limit of the inner loop surface; andthe latch of a first tile adapted to be received into a loop of a second tile to be joined to the first tile, an interference between the innermost limit of the inward facing surface of the latch and outermost limit of the inner loop surface causing the loop to elastically flex, thereby biasing together the first edge surface of the first tile and the second edge surface of the second ...

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25-04-2013 дата публикации

METHODS AND SYSTEMS FOR ENGAGEMENT OF DECORATIVE COVERING

Номер: US20130097833A1
Принадлежит: TAC-FAST GEORGIA L.L.C.

Kits and methods for installing, repairing and/or replacing a decorative covering on a non-decorative substrate. The kit may include an engagement layer, a decorative covering and/or a substrate. 1. A kit for installing a decorative covering to a non-decorative substrate , the kit comprising:an engagement layer including a covering-receiving side and an opposing substrate-receiving side, wherein at least a portion of the substrate-receiving side has a first component of a first engagement system that is complementary to a second component of the first engagement system provided on the non-decorative substrate; andthe decorative covering, wherein the decorative covering has an engagement side for engagement to the covering-receiving side of the engagement layer;wherein at least a portion of at least one of the engagement side of the decorative covering and the covering-receiving side of the engagement layer has a second engagement system for engaging the decorative covering to the engagement layer.2. The kit of claim 1 , comprising the substrate claim 1 , the substrate being free of attachments to a base surface.3. The kit of claim 1 , wherein the first engagement system comprises at least one of: a hook-and-loop system claim 1 , a hook-and-hook system claim 1 , a tongue-and-groove system claim 1 , an interlocking system claim 1 , a plurality of protrusions claim 1 , a detachable adhesive and a permanent adhesive.4. The kit of claim 1 , wherein the first and second components of the first engagement system are substantially similar.5. The kit of claim 1 , wherein the engagement layer comprises at least one of: a woven material claim 1 , a non-woven material claim 1 , a fabric claim 1 , a polymer and a metal.6. The kit of wherein the second engagement system comprises at least one of: a permanent adhesive and a detachable adhesive.7. The kit of claim 1 , wherein the engagement layer is sized to allow for engagement of a plurality of decorative coverings.8. The kit of ...

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25-04-2013 дата публикации

METHODS AND SYSTEMS FOR ENGAGEMENT OF DECORATIVE COVERING

Номер: US20130097834A1
Принадлежит: TAC-FAST GEORGIA L.L.C.

Kits and methods for installing, repairing and/or replacing a decorative covering on a non-decorative substrate. The kit may include an engagement layer, a decorative covering and/or a substrate. 1. A kit for installing a decorative covering to a non-decorative substrate , the kit comprising:an engagement layer including a covering-receiving side and an opposing substrate-receiving side, wherein at least a portion of the substrate-receiving side has a first component of a first engagement system that is complementary to a second component of the first engagement system provided on the non-decorative substrate; andthe decorative covering, wherein the decorative covering has an engagement side for engagement to the covering-receiving side of the engagement layer;wherein at least a portion of at least one of the engagement side of the decorative covering and the covering-receiving side of the engagement layer has a second engagement system for engaging the decorative covering to the engagement layer.2. The kit of claim 1 , comprising a predetermined number of decorative coverings and engagement layers sufficient to cover a base surface.3. The kit of claim 1 , comprising at least one of: a closable container and a shrink wrap for holding the engagement layer and the decorative covering.4. The kit of claim 1 , wherein the engagement layer is sized to match the decorative covering.5. The kit of claim 1 , comprising the substrate claim 1 , the substrate being free of attachments to a base surface.6. The kit of claim 1 , wherein the first engagement system comprises at least one of: a hook-and-loop system claim 1 , a hook-and-hook system claim 1 , a tongue-and-groove system claim 1 , an interlocking system claim 1 , a plurality of protrusions claim 1 , a detachable adhesive and a permanent adhesive.7. The kit of claim 1 , wherein the first and second components of the first engagement system are substantially similar.8. The kit of claim 1 , wherein the engagement layer ...

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25-04-2013 дата публикации

TRANSLUCENT WALL PANEL

Номер: US20130097952A1
Принадлежит:

A translucent wall panel () comprises a single body of translucent polycarbonate material comprising skin wall means and a multiwall support () extending between the skin wall means. The skin wall means comprises an outer weather wall (), an inner liner wall (), a longitudinally extending first side () and a longitudinally extending second side () opposite to the first side. The first side () has outer projecting and recess parts and the second side () has outer projecting and recess parts. The projecting and recess parts of the first side () are of mating form with corresponding recess and projecting parts respectively of the second side for engagement between the first side () of one panel A and the second side of another like panel B. The sides () have additional spacer recesses () which are aligned so that when two similar panels () are aligned adjacent to one another as illustrated in FIG. a spacer element () bridges a gap between the panels () and a support frame element () such as a purlin. 116-. (canceled)17. A wall panel comprising a single body of translucent material , the single body comprising skin wall means and a multiwall support extending between the skin wall means , the skin walls and multiwall support all being of translucent material , and the skin wall means comprising an outer wall , an inner wall , a longitudinally extending first side , and a longitudinally extending second side opposite to the first side , the first side having outer projecting and recess parts and the second side having outer projecting and recess parts , the projecting and recess parts of the first side being of mating form with corresponding recess and projecting parts respectively of the second side for engagement between the first side of one panel and the second side of another like panel.18. The translucent panel as claimed in wherein the first side has an outer projecting part claim 17 , an inner projecting part claim 17 , and an intermediate recess part between the ...

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25-04-2013 дата публикации

METHOD FOR THE PRODUCTION OF A TEXTILE-REINFORCED RIGID FOAM SUPPORTING ELEMENT, AND RIGID FOAM SUPPORTING ELEMENT

Номер: US20130097954A1
Принадлежит: Construction Research & Technology GmbH

The fabric-reinforced rigid foam supporting element claimed having a total thickness of <10 mm is characterized in that it has been produced completely by machine. As a result of the specific features and the preferred production process, supporting elements which have a low thickness and do not differ in terms of their stiffness and strength from supporting elements having thicknesses above 10 mm are obtained. They are therefore outstandingly suitable as insulation materials in building and construction, in particular for constructions, and also for thermal and and/or acoustic insulation. 111-. (canceled)12. A building or construction comprising a fabric-reinforced rigid foam supporting element having a total thickness of <10 mm and is produced completely by machine.13. A method comprising:a) fabric-reinforcing a rigid foam board having a thickness of greater than 10 mm on at least one outer surface thereof; and subsequentlyb) b) cutting the rigid foam board which is obtained from process step a) and is fabric-reinforced on at least one side into individual boards each having a thickness of ≦10 mm, to produce a fabric-reinforced rigid foam supporting element having a total thickness of less than 10 mm.14. The method of claim 13 , further comprising the step ofc) adhesively bonding two of the rigid foam boards obtained from process step b) to one another over the area of surfaces which have not been fabric-reinforced so as to give a rigid foam supporting element which is fabric-reinforced on at least one outer surface and has a total thickness of <10 mm. The present invention relates to a fabric-reinforced rigid foam supporting element, a process for producing it and its use.Rigid foam supporting elements, also referred to as rigid foam boards, are well known from the prior art. These elements, which generally comprise foamed polystyrene, polyurethane or mixtures thereof, are widely used in building and construction for thermal and/or acoustic insulation.DE 10 2004 ...

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25-04-2013 дата публикации

Panel With Improved Coupling Means

Номер: US20130097959A1
Автор: MICHEL Yves
Принадлежит: KREAFIN GROUP SA

The present invention relates to a new floor or wall panel with improved coupling means and is aimed at offering a solution for the drawbacks of the “fall down” joining system. 1111111111117. Profiled strip () comprising a visible side () , a first end side provided with first male (′C) and first female connecting means (′D) , and a second end side which is situated opposite the first end side and is provided with second male (B) and second female (A) connecting means , in which the connecting means are suitable to join the end sides of adjoining profiled strips ( , ′) with one another by engagement of the male and the female connecting means , in which the profiled strip furthermore comprises first vertical locking means which are provided to produce a vertical lock between adjoining profiled strips , wherein the first vertical locking means are made from the same material as the profiled strip () and comprise a pliable projection (′) which forms part of the first or second male connecting means.2116. Profiled strip () according to claim 1 , wherein the first vertical locking means furthermore comprise a recess which forms part of the first or second female connecting means claim 1 , and in that the pliable projection is configured to carry out a bending movement during the joining of the adjoining profiled strips in the direction of the adjoining end side by moving in the recess (′) in order then to at least partly bend back into its original position when the first or second male connecting means engage in the first or second female connecting means.31. Profiled strip () according to claim 1 , wherein the profiled strip is made in a single part.41. Profiled strip () according to claim 1 , wherein the profiled strip is made from plastic.51. Profiled strip () according to claim 1 , wherein the visible side comprises a decorative top layer.611. Profiled strip () according to claim 1 , wherein the profiled strip () furthermore comprises second vertical locking means ...

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25-04-2013 дата публикации

Low weight and density fire-resistant gypsum panel

Номер: US20130101838A1
Принадлежит: United States Gypsum Co

An about ⅝ inch to ¾ inch thick low weight, low density gypsum panel with fire resistance capabilities sufficient to provide a Thermal Insulation Index of at least 17.0 minutes which when subjected to U419 test procedures will not fail for at least 30 minutes and, in selected embodiments, also has outstanding water resistance properties.

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25-04-2013 дата публикации

Carpet waste composite

Номер: US20130102707A1
Принадлежит: MATERIAL INNOVATIONS LLC

A composite material is produced from carpet waste and a binding agent, in intimate association, and may also include wood fiber or chips and/or other additives. A method of manufacturing a composite material includes shredding carpet waste, coating the carpet waste with a binding agent, and subjecting the shredded, coated carpet waste to elevated heat and pressure. As an additional step, the composite material may be actively cooled to prevent deformation of the material.

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02-05-2013 дата публикации

INSULATING FLOOR UNDERLAYMENT

Номер: US20130104477A1
Принадлежит:

A flooring material having a textile pad substructure with a density of greater than 10 pounds per cubic foot is provided. The textile pad has reinforcement and binding fibers. The binding fibers are thermoplastic and are used to bind the reinforcement fibers together. The pad is created by heating and compressing a fibrous textile batt so that it has a density of greater than 13 pounds per cubic foot. 1. A floor structure consisting of:a wood based laminate;an insulative pad disposed adjacent to wood based laminate, said insulative pad having consisting of a fibrous web layer wherein said fibrous web layer comprises reinforcement fibers distributed substantially randomly in a first plane, said reinforcement fibers being interlocked, wherein after the insulative pad material is compressed to 75% of its original thickness during a compression set test, the material is then capable of returning to more than 80% of its original thickness and has a compression resistance at a compression of 25% of the original thickness of greater than about 20 psi; anda vapor barrier fixably coupled to the insulative pad.2. The floor structure according to further comprising binder fibers selected from the group consisting of polyethylene claim 1 , polyester claim 1 , polypropylene claim 1 , and mixtures thereof.3. The floor structure according to wherein the insulative pad has a density of greater than about 10.0 pounds per cubic foot.4. The floor structure according to wherein the insulative pad has a density of about 18.9 pounds per cubic foot.5. The floor structure according to wherein the insulative pad is about 3/32 inch thick.6. The floor structure according to wherein the insulative pad has a compression resistance at 50% of the original thickness of greater than about 180 psi.7. The floor structure according to further comprising an adhesive layer disposed between the insulative pad and the vapor barrier.8. A floor structure consisting of:a wood based laminate;an insulative ...

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02-05-2013 дата публикации

PANEL FOR FORMING A FLOOR COVERING

Номер: US20130104478A1
Принадлежит: FLOORING INDUSTRIES LIMITED, SARL

A panel for forming a floor covering includes a substrate and a top layer, and is provided with coupling means defined at the edges. The substrate at the respective edges defines a profile, and a moisture-repellent or sealing covering layer is provided on the profiles. The covering layer extends over the profiles at least up to a lateral surface of the top layer. The covering layer, at least at one of the edges, is at least partially provided in an undercut performed in the lateral surface. 115-. (canceled)16. A panel for forming a floor covering comprising:a substrate;a top layer provided on the substrate;wherein the panel, at least at two opposite edges thereof, is provided with coupling means arranged to couple two of such panels to each other at the respective edges, such that in the coupled condition, the panels are locked in a horizontal direction perpendicular to the respective edge and in the plane of the coupled panels, and in a vertical direction perpendicular to the plane of the coupled panels;wherein the substrate defines a profile at both of said respective edges and a moisture-repellent or sealing covering layer is provided on the profile of said respective edges, said covering layer extends over said profiles at least up to a lateral surface of said top layer, said covering layer, at least at one of said respective edges, is at least partially provided in an undercut defined along said lateral surface.17. Panel for forming a floor covering comprising:a substrate;a top layer provided on the substrate;wherein the panel, at least at two opposite edges thereof, is provided with coupling means arranged to couple two of such panels to each other at the respective edges, such that in the coupled condition, the panels are locked in a horizontal direction perpendicular to the respective edge and in the plane of the coupled panels, and in a vertical direction perpendicular to the plane of the coupled panels;wherein the substrate defines a profile at both of ...

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02-05-2013 дата публикации

METHOD OF MANUFACTURING A FLOOR PANEL AND A FLOOR PANEL

Номер: US20130108859A1
Принадлежит: Spanolux N.V. Div.Balterio

A method of manufacturing a floor panel with insulating properties comprises the steps of supplying a panel having an upper side and a back side, applying a curable substance to the back side of the panel and curing the substance for forming a layer with insulating properties. 1. A method of manufacturing a floor panel with insulating properties , comprising supplying a panel having an upper side and a back side , applying a curable substance to the back side of the panel , curing the substance for forming a layer with insulating properties.2. The method according to claim 1 , wherein the insulating properties are such that the sound damping of the floor panel is higher than 10 dB according to ISO 717-2 and ISO 140-8.3. The method according to claim 1 , wherein the formed layer has a thickness of at least 0.25 mm.4. The method according to claim 1 , wherein the layer is compressible.5. The method according to claim 1 , wherein the curable substance is a non-gaseous fluid.6. The method according to claim 1 , wherein the curable substance is a composition for forming a foam layer.7. The method according to claim 1 , wherein the curable substance is applied to the entire back side.8. The method according to claim 1 , wherein the curable substance is heated during the curing step.9. The method according to claim 1 , wherein the thickness of the curable substance is controlled by pressing onto the substance by a press member after applying said substance to the back side of the panel.10. The method according to claim 6 , wherein the press member is cooled to control the foaming reaction.11. The method according to claim 1 , wherein the steps are performed in a continuous process.12. The method according to claim 11 , wherein the curable substance is applied by a roller coater claim 11 , a row of spraying nozzles claim 11 , or the like.13. The method according to claim 1 , wherein the panel is provided with coupling members before applying the curable substance or after ...

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09-05-2013 дата публикации

COVERING, AS WELL AS PANELS AND AUXILIARY PIECES USED THEREWITH

Номер: US20130111837A1
Принадлежит: FLOORING INDUSTRIES LIMITED, SARL

A floor covering formed by a plurality of panels each having two opposite edges arranged to couple adjacent panels to each other. The coupling parts include a tongue and a groove, as well as locking parts preventing the drifting apart of two such adjacent panels. A separately manufactured insert is provided between at least two of the coupled panels, and the tongue and groove. The insert comprises at least two portions functioning as fixed spacing elements with a first portion between the upper side of the tongue and the lower side of the upper lip, and a second portion between the locking parts. 146-. (canceled)47. A covering comprising a plurality of panels of a panel material; wherein said panels have coupling parts at least at two opposite edges and arranged to couple adjacent panels to each other; said coupling parts including a tongue and a groove , and locking parts preventing the drifting apart of two of the panels; wherein the groove is bordered by an upper lip and a lower lip; wherein the upper lip , the lower lip and the tongue are formed at least partially from the panel material; wherein in the coupled condition the tongue , at least with the portion thereof consisting of the panel material , reaches underneath a portion of the upper lip consisting of the panel material; and wherein between at least two of the coupled panels , between the tongue and groove , at least one separately manufactured insert is present , the insert having at least two portions functioning as fixed spacing elements including a first portion between the upper side of the tongue and the lower side of the upper lip , and a second portion between the locking parts , respectively.48. The covering of claim 47 , said covering being a floor covering.49. The covering of claim 47 , wherein the panel material consists of solid wood.50. The covering of claim 47 , wherein said insert and profiles with which the two opposite edges are equipped claim 47 , provide for that at the respective ...

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16-05-2013 дата публикации

BUILDING MODULE, A METHOD FOR MAKING SAME, AND A METHOD FOR USING SAME TO CONSTRUCT A BUILDING

Номер: US20130118104A1
Принадлежит:

A building module. The building module has a rigid inner construction panel defining a planar surface thereon; one or more rigid brackets each affixed by one or more mechanical fasteners to the planar surface of the inner construction panel; a rigid, closed-cell, spray foam or adhesive matrix contiguous to and substantially covering the planar surface of the construction panel and filling and surrounding and/or embedding at least a major portion of the one or more brackets. Each of the one or more brackets bears a planar surface facing substantially away from the planar surface of the inner construction panel. The surface area of the planar surface of each of the one or more brackets is substantially smaller than the surface area of the planar surface of the construction panel to which it is affixed. There is also a method for making a building module, a method for constructing a building using the building module, and brackets useful in the building module. 1. A building module , comprising:an inner construction panel defining a planar surface thereon;one or more rigid brackets each affixed by one or more fasteners to the planar surface of the inner construction panel, wherein the one or more brackets is contiguous to the inner construction panel, wherein each of the one or more brackets bears a planar surface facing substantially away from the planar surface of the inner construction panel, wherein the surface area of the planar surface of each of the one or more brackets is substantially smaller than the surface area of the planar surface of the inner construction panel to which the one or more brackets is affixed; anda rigid, closed-cell, spray polyurethane foam or adhesive matrix contiguous to and substantially covering the planar surface of the inner construction panel and filling to and surround and/or embed at least a major portion of the one or more brackets.2. The module of claim 1 , wherein the foam or adhesive matrix fills and surrounds and/or embeds ...

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23-05-2013 дата публикации

TPO Batten System

Номер: US20130125488A1
Автор: Svec James A.

Disclosed herein are various embodiments of a batten system comprising thermoplastic polyolefin (TPO) membranes. In an embodiment, a batten may comprise a plurality of TPO membranes heat sealed together. The heat sealed TPO membranes may include a plurality of unsealed areas between the membranes for engaging one or more coupling devices. Slate shingles may be hung from the one or more coupling devices. 1. A roofing batten system comprising:a first thermoplastic polyolefin (TPO) membrane comprising a first TPO scrim layer disposed between a first TPO upper layer and a first TPO lower layer; anda second TPO membrane comprising a second TPO scrim layer disposed between a second TPO upper layer and a second TPO lower layer;wherein the first TPO lower layer is heat sealed with the second TPO upper layer at sealed areas while leaving a plurality of unsealed areas between the first TPO membrane and the second TPO membrane at intervals; andwherein one or more coupling devices may be received through adjacent unsealed areas between the first TPO membrane and the second TPO membrane such that each coupling device may be fastened to the roofing batten system by mating at a top edge of a sealed area and hooking at a bottom edge of the sealed area.2. A roofing batten system comprising:a first thermoplastic polyolefin (TPO) membrane comprising a first TPO upper layer, a first TPO lower layer, and, optionally, a first TPO scrim layer disposed therebetween; anda second TPO membrane comprising a second TPO upper layer, a second TPO lower layer, and, optionally, a second TPO scrim layer disposed therebetween;wherein the first TPO lower layer is heat sealed with the second TPO upper layer at sealed areas while leaving a plurality of unsealed areas between the first TPO membrane and the second TPO membrane at intervals; andwherein adjacent unsealed areas between the first TPO membrane and the second TPO membrane are configured to receive a coupling device such that the coupling device ...

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06-06-2013 дата публикации

ROOFING SYSTEM INCLUDING ROOFING COMPONENTS AND METHODS

Номер: US20130139470A1
Принадлежит: JOHNS MANVILLE

A roofing system includes a plurality of insulation boards adapted for overlying a roof deck to form a layer of insulation, and a plurality of cover boards adapted for overlying the layer of insulation. Each insulation board includes a foam material that includes polyisucyanurate, the foam material having a first density. Each cover board includes a material including polyisocyanurate, the material having a second density greater than the first. The roofing system may further include a waterproofing membrane adapted for overlying the cover boards. The insulation boards and cover boards may include facers on top or bottom surfaces. 1. A roofing system , comprising:a plurality of insulation boards adapted for overlying a roof deck to form a layer of insulation, each insulation board comprising a foam material including polyisocyanurate, the foam material including polyisocyanurate having a first density; anda plurality of cover boards adapted for overlying the layer of insulation, each cover board comprising a material including polyisocyanurate, the material having a second density;wherein the second density is greater than the first density.2. The roofing system of claim 1 , further comprising a waterproofing membrane adapted for overlying the layer cover boards.3. The roofing system of claim 1 , wherein the second density is between 6 lbs/ftand 25 lbs/ft.4. The roofing system of claim 1 , wherein the second density is between 4 lbs/ftand 25 lbs/ft.5. The roofing system of claim 1 , wherein the first density is less than 6 lbs/ft.6. The roofing system of claim 1 , wherein the first density is less than 4 lbs/ft.7. The roofing system of claim 1 , wherein the first density is between about 1 lbs/ftand about 3 lbs/ft.8. The roofing system of claim 1 , wherein each of the insulation boards is bonded to a respective one of the cover boards prior to installation to form a roofing panel composite.9. The roofing system of claim 1 , wherein each of the insulation boards ...

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06-06-2013 дата публикации

MANUFACTURING AND ASSEMBLY OF ROOFING COMPONENTS

Номер: US20130139471A1
Принадлежит: JOHNS MANVILLE

A method includes dispensing a first polymer or predominantly polymer material foam precursor and allowing the precursor to rise and at least partially set to form a foam core layer for an insulation board, the foam core layer having a first density. The method further comprises dispensing a second polymer or predominantly polymer material foam precursor and allowing the second precursor to rise and set to form a core layer for a cover board, the core layer for the cover board having a second density greater than the first density. The second foam precursor may include polyisocyanurate. The method may also include feeding facer materials over the precursors to form facers on the core layers. Such insulation boards and cover boards may be cut to length and installed on a roof. 1. A method , comprising:providing a production line configured for continuous fabrication of polymer or predominantly polymer roofing boards by the setting and expansion of precursor materials on a conveyor;dispensing to the production line a first polymer or predominantly polymer material foam precursor;allowing the first foam precursor to rise and at least partially set to form a foam core layer for an insulation board, the foam core layer for the insulation board having a first density;dispensing to the production line a second polymer or predominantly polymer material foam precursor; andallowing the second foam precursor to rise and set to form a core layer for a cover board, the foam core layer for the cover board having a second density greater than the first density.2. The method of claim 1 , wherein:the production line comprises two forming stations;the first foam precursor is dispensed at a first one of the two forming stations; andthe second foam precursor is dispensed at a second one of the two forming stations.3. The method of claim 1 , wherein dispensing the second foam precursor comprises dispensing the second foam precursor on top of the at-least-partially-set insulation board ...

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13-06-2013 дата публикации

THERMAL INSULATION QUILT

Номер: US20130145709A1
Автор: WOODHALL Christopher

A multi-layer, thermal insulation quilt (1) comprises two spaced apart, outer layers (2, 3) at least one of which is a reflective thermal insulation layer, between which outer layers there is provided at least one inner layer (4) of thermal insulation, characterised in that the outer layers (2, 3) secured together by a non-metallic, common restraining tag (5) of such length, that the tag (5) determines the maximum separation of the outer layers (2, 3) but effects no compressive loading on the or each thermal insulation layer (4). 1. The use of a multi-layer , thermal insulation quilt as insulation in a wall or roof of a building , wherein the multi-layer , thermal insulation quilt comprises two spaced apart , outer layers at least one of which is a reflective thermal insulation layer , between which outer layers there is provided at least one inner layer of thermal insulation , wherein the outer layers are secured together by an array of non-metallic restraining tags of such having a length such that tags determine the maximum separation of the outer layers but effect no compressive loading on the or each thermal insulation layer.2. The use of a quilt as claimed in claim 1 , wherein both outer layers are of reflective thermal insulation.3. The use of a quilt as claimed in claim 1 , wherein the claim 1 , or each claim 1 , outer layer of reflective thermal insulation is a foil.4. (canceled)5. The use of a quilt as claimed in claim 1 , wherein the claim 1 , or each claim 1 , outer layer of reflective thermal insulation is a foil selected from the group comprising an aluminium foil and a metallic polyester foil.6. The use of a quilt as claimed in claim 5 , wherein the aluminium foil has an outer surface which is provided with a coating to prevent claim 5 , or reduce claim 5 , oxidation.7. The use of a quilt as claimed in claim 6 , wherein the coating is of nitrocellulose.8. The use of a quilt as claimed in claim 5 , wherein the claim 5 , or each claim 5 , outer claim 5 ...

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13-06-2013 дата публикации

ROOFING SYSTEM INCLUDING INSULATION AND COVER BOARDS

Номер: US20130145722A1
Принадлежит: JOHNS MANVILLE

A roofing system includes a plurality of insulation boards adapted for overlying a roof deck to form a layer of insulation, and a plurality of cover boards adapted for overlying the layer of insulation. Each insulation board includes a polymer foam material having a first density. Each cover board includes a material including polyisocyanurate, the material having a second density greater than the first. The foam material of the insulation boards may include, for example, polystyrene, polyurethane, or a phenolic material. The insulation boards and cover boards may include facers on top or bottom surfaces. 1. A roofing system , comprising:a plurality of insulation boards adapted for overlying a roof deck to form a layer of insulation, each insulation board comprising a polymer foam material, the polymer foam material having a first density; anda plurality of cover boards adapted for overlying the layer of insulation, each cover board comprising a material including polyisocyanurate, the material having a second density;wherein the second density is greater than the first density.2. The roofing system of claim 1 , wherein the polymer foam material comprises one or more materials selected from the group consisting of polyisocyanurate claim 1 , polystyrene claim 1 , polyurethane claim 1 , and a phenolic material.3. The roofing system of claim 1 , wherein the polymer foam material comprises polystyrene.4. The roofing system of claim 1 , wherein the polymer foam material comprises polyurethane.5. The roofing system of claim 1 , wherein the polymer foam material comprises phenolic material.6. The roofing system of claim 1 , further comprising a waterproofing membrane adapted for overlying the layer cover boards.7. The roofing system of claim 1 , wherein the second density is between 6 lbs/ftand 25 lbs/ft.8. The roofing system of claim 1 , wherein the second density is between 4 lbs/ftand 25 lbs/ft.9. The roofing system of claim 1 , wherein the first density is less than 6 ...

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20-06-2013 дата публикации

LOW-COST, ENERGY-EFFICIENT BUILDING PANEL ASSEMBLIES COMPRISED OF LOAD AND NON-LOAD BEARING SUBSTITUENT PANELS

Номер: US20130157018A1
Автор: Farrell, JR. William J.
Принадлежит:

This invention relates to building materials and methods. A building assembly for constructing a building includes load bearing structural panels joined and finished with a non-load bearing panels. The load bearing panels comprise a structural concrete insulating panel (SCIP) comprising a pair of wire mesh members sandwiching a middle member comprising polystyrene, wherein each of said wire mesh members defines two outwardly projecting screed ridges. The non-load bearing panels comprise a pair of fiber cement boards sandwiching a polystyrene core. The load bearing SCIP panel is placed in position and then the non-load bearing panel is positioned in a desirous location abutting the SCIP. The SCIP then receives a layer of cementitious material that is cut flat using the screed ridges. The assembled SCIP and non-load bearing composite is then finished with a final finishing layer so that the entire assembly has the same outer appearance. 1. A building assembly comprising:an exterior or load bearing panel connected to a non-load bearing panel to form a building assembly substrate;said exterior or load bearing panel comprising a pair of wire mesh members sandwiching a middle member comprising polystyrene, each of said wire mesh members defining two outwardly projecting screed ridges extending a length of said wire mesh members, wherein each of said screed ridges are configured as V-shaped impressions having an apex extending about ½ inch and oriented such that the apexes of each wire mesh member extend away from said middle member;said non-load bearing panel comprising a pair of fiber cement boards sandwiching a core member;an outer layer of cementitious material applied to each of said wire mesh members of said exterior or load bearing panel of said building assembly substrate to a depth extending from said middle member to the apexes of said inner and outer mesh members; anda final finish layer applied to said building assembly substrate after the application of said ...

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27-06-2013 дата публикации

CONSTRUCTION BOARDS WITH COATED FACERS

Номер: US20130164524A1
Принадлежит:

A construction board comprising a foam layer and at least one coated facer, where the at least one coated facer includes a substrate and a coating. 1. A construction board comprising:a foam layer; andat least one coated facer, where the at least one cellulosic coated facer includes a substrate and a coating.2. The construction board of claim 1 , wherein said coating is adhered to said substrate.3. The construction board of claim 1 , wherein said foam layer includes at least one planar surface and said coated facer is attached to said at least one planar surface.422. The construction board of claim 1 , wherein said coating is situated on a side of said substrate opposite said foam layer.5. The construction board of claim 1 , wherein said substrate is a cellulosic substrate.6. The construction board of claim 1 , wherein said coating includes a water-repellant composition.7. The construction board of claim 1 , wherein said foam layer includes a polyisocyanate foam having an ISO index of at least 200.8. The construction board of claim 1 , wherein said substrate is substantially devoid of fiberglass.9. The construction board of claim 1 , wherein said coating includes a binder and a filler.10. The construction board of claim 1 , wherein the coating includes a synthetic polymer.11. The construction board of claim 1 , wherein the coating has a thickness of at least 0.005 mm and less than 1.5 mm.12. The construction board of claim 1 , wherein the coating has a thickness of at least 0.09 mm and less than 0.1 mm. This is a national-stage application of International Application Serial No. PCT/US11/32461, filed on Apr. 14, 2011, which invention claims the priority of U.S. Provisional Application Ser. No. 61/324,064, filed on Apr. 14, 2010, which are incorporated herein by reference.One or more embodiments of the present invention relate to construction boards with particular facers that yield advantageous properties to the construction boards.Construction boards, particularly ...

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04-07-2013 дата публикации

Prefabricated structural wall system

Номер: US20130167473A1
Принадлежит: Individual

A prefabricated wall panel is provided. The wall panel has a sheathing having a first edge parallel to a long dimension and a plurality of spaced-apart molded studs. The studs are secured to the sheathing parallel to the first edge of the sheathing with tops of the studs positioned below a top edge of the sheathing for installation of a seal plate across the tops of the studs. The studs include an outer stud secured to the first edge of the sheathing and extends beyond the first edge by about one-half of the width of the outer stud.

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18-07-2013 дата публикации

FIBER REINFORCED CELLULAR PVC

Номер: US20130183482A1
Автор: Hannen Timothy J.
Принадлежит:

The present invention relates to exterior siding, trim and rigid architectural assemblies for buildings. 1. A composition comprising cellular PVC reinforced with at least one continuous fiber oriented in a first direction within the cellular PVC material , wherein the at least one continuous fiber is bonded to the cellular PVC , and wherein the at least one continuous fiber provides resistance to temperature-induced expansion and contraction along the direction of the at least one fiber.2. The cellular PVC material of claim 1 , wherein the at least one continuous fiber is coated with an agent that bonds the fibers to the cellular PVC.3. The cellular PVC material of claim 1 , wherein the at least one continuous fiber is selected from the group consisting of co-mingled silicate based fiber and thermoplastic fiber claim 1 , non-comingled silicate based fibers claim 1 , non-comingled carbon based fibers and non-comingled polyamide based fibers.4. The cellular PVC material of claim 3 , wherein the at least one continuous fiber is a silicate based fiber.5. The cellular PVC material of claim 4 , wherein the silicate based fiber is a glass fiber.6. The cellular PVC material of claim 3 , wherein the at least one continuous fiber is a co-mingled silicate based fiber and thermoplastic fiber.7. The cellular PVC material of claim 6 , wherein the silicate based fiber is a glass fiber.8. The cellular PVC material of claim 2 , wherein the agent that bonds the at least one continuous fiber to the cellular PVC is polybutylene terephthalate.9. The cellular PVC material of claim 1 , wherein the first direction is aligned with the direction at which the cellular PVC material is extruded.10. A method to produce a composition comprising cellular PVC reinforced with at least one continuous fiber oriented in a first direction within the cellular PVC material claim 1 , wherein the at least one continuous fiber is bonded to the cellular PVC claim 1 , and wherein the at least one continuous ...

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18-07-2013 дата публикации

Engineered composite building materials and methods of making same

Номер: US20130183505A1
Принадлежит: James Hardie Technology Ltd

An engineered composite building material, such as fiber cement, having one or more engineered sub-surface regions designed to provide the building material with improved moisture ingress resistance, paint adhesion, and other mechanical properties is provided. The sub-surface region has a cement-polymer matrix formed by introducing an impregnating agent into the pores of the substrate. The composite building material may be formed by applying impregnating agents to the subsurface regions of the substrate to form chemical and/or mechanical bonds with the matrix of the building material, the reinforcement fibers, and/or the surface coatings applied to the material. The thickness of the sub-surface regions may be controlled by varying the viscosity and porosity of the building material substrate. The cement-polymer building material has enhanced durability, weather resistance, strength, and stiffness.

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18-07-2013 дата публикации

Panel comprising a polymeric composite layer and a reinforcement layer

Номер: US20130183506A1
Принадлежит: Spanolux NV SA

A panel comprises a polymeric composite layer and at least a reinforcement layer for reinforcing the polymeric composite layer at least in the plane of the panel. The reinforcement layer is made of a material which is different from that of the polymeric composite layer.

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25-07-2013 дата публикации

Fire-resistant cellulose-bitumen roofing sheet and method of manufacturing

Номер: US20130186033A1
Принадлежит: Onduline SA

Bitumen-impregnated cellulose fiber sheets include on one of their main surfaces, an adhesive primer layer, and, deposited on this adhesive primer layer, a fireproof coating including expandable graphite. In a preferred embodiment of the invention, the expandable graphite has a trigger temperature lower than 300° C. and the layer of expandable graphite corresponds to a dry matter basis weight of 80 to 140 g/m2. The sheets have a fire resistance fulfilling in particular the European Standard EN 13 501-5. They are mainly intended to be used as covering material, and in particular, as roof covering material.

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01-08-2013 дата публикации

Panel and a method for building panels

Номер: US20130192157A1
Автор: Sean Coyle
Принадлежит: Individual

A method of manufacturing a construction panel comprising the steps of laying a plurality of rigid support members on a preformed assembly jig, each rigid support member having two main planar surfaces with perimeter surfaces extending between these main planar surfaces, laying the plurality of rigid support members so that each rigid support member has at least one perimeter surface in an abutting relationship with the perimeter surface of an adjacent rigid support member, bridging at least part of the length of abutting perimeter surfaces with at least one connector means for connecting the plurality of rigid support members together into a predetermined shape and size of modular rigid panel member.

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15-08-2013 дата публикации

Gypsum Board with Multiple Tapered Edges

Номер: US20130209722A1
Принадлежит: Individual

A gypsum board with multiple tapered edges has a flat, rectangular main flat body with four tapered edges. The main flat body is a gypsum core sandwiched between two paper sheets. The main flat body may be of any appropriate size, including 4 feet by 4 feet or other sizes. In a method for manufacturing the gypsum board with multiple tapered edges, a quantity of gypsum slurry is fed between two continuous paper sheets with a conveyor system to make a continuous gypsum sheet and longitudinal edges of the continuous gypsum sheet are tapered. The gypsum slurry is partially dried, and then the continuous gypsum sheet is transversely compressed between an upper bracket and a lower bracket to form a transverse tapered impression. The continuous gypsum sheet is cut at the tapered impression, and the transverse tapered edges are enclosed with finishing paper.

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05-09-2013 дата публикации

Asymmetrical Concrete Backerboard

Номер: US20130231019A1
Автор: Dinkel Jeffrey T.
Принадлежит:

The present invention is a backerboard having a fiberglass mesh on one side, and a impervious reinforcement membrane on the other side. The backerboard incorporates a low density, high compressive strength concrete core having an upper principal surface and a lower principal surface. The upper principal surface of the core is covered by a fiberglass mesh reinforcement layer, itself covered and bonded to the core by a thin layer of Portland cement. The lower principal surface of the backerboard is covered with a high tensile strength, impervious reinforcement membrane. 1. A prefabricated asymmetrical construction element comprising:a cementitious core including alkaline resistant fibers and having an upper principal face and a lower principal face;an impervious non-cementitious reinforcement web disposed directly on the lower principal face of the core;a cementitious bonding surface on the upper principal face of the construction element; anda non-cementitious surface on the lower principal face of the construction element.2. The construction element of claim 1 , the alkaline resistant fibers comprising chopped reinforcement fibers randomly dispersed in the core.3. The construction element of claim 1 , the impervious non-cementitious reinforcement web comprising a reinforced polymer membrane.4. The construction element of claim 1 , the impervious non-cementitious reinforcement web comprising water impervious paperboard.5. The construction element of claim 1 , the impervious non-cementitious reinforcement web comprising spunbonded olefin.6. The construction element of claim 1 , the impervious non-cementitious reinforcement web comprising an alkaline resistant dense polymer fiber mat.7. The construction element of claim 1 , the core comprising Portland cement claim 1 , alkaline resistant fibers claim 1 , and one or more additives selected from the group consisting of expanded shale claim 1 , expanded clay claim 1 , sintered clay claim 1 , pumice claim 1 , slag claim 1 ...

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26-09-2013 дата публикации

WOOD STRAND CEMENT BOARDS WITH A PRCTICALLY CLOSED SURFACE AND PRODUCTION PROCESS

Номер: US20130251951A1
Автор: Van Elten Gerrit Jan
Принадлежит:

A mineral bonded Wood Strand Cement (usually Portland cement or Magnesite or Gypsum) Board which is produced from a mixture of wood strands or a similar fibre material, water, a suitable binder like cement, and possibly additives, which mixture is cured under pressure to form a board with a practically entirely closed surface. For the boards according to the invention, wood strands are being used that are broader and thinner than used until presently in acoustic Wood Wool Cement Boards. Moreover, the invention relates to a method of orienting wood strands and a production process for the production of such Wood Strand Cement Boards. 1. A wood strand cement board , manufactured from a mixture consisting essentially of:wood strands not of woody grasses, a major portion of all said wood strands having a length of at least 250 mm;a cement binder; andwater;which mixture is cured to form a board with a practically entirely closed surface;wherein said wood strands have a width of at least 2 mm, a width of maximally 12 mm, and a thickness of at least 0.15 mm and maximally 1 mm and wherein the weight ratio of water to wood strands is maximally 1.20:1; andwherein said wood strands are not embedded in a matrix of cement; andwherein edges of the strands are pointed at angles of less than 120°.2. A board as described in wherein at least 50% of the wood strands are oriented more longitudinally than transversely to the length of the board.3. A board as described in claim 1 , wherein said wood strands have width of at least 3 mm.4. A board as described in claim 3 , wherein said wood strands have a width of at least 6 mm.5. A board as described in claim 1 , wherein said wood strands have a width of maximally 10 mm.6. A board as described in claim 1 , wherein said wood strands have a thickness of maximally 0.5 mm.7. A board as described in claim 1 , wherein said board comprises a board with corrugated or trapezium shaped profiles.8. A board as described in claim 1 , wherein said ...

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17-10-2013 дата публикации

APPARATUS AND METHOD FOR MANUFACTURING INSULATED WALL PANELS

Номер: US20130269272A1
Автор: Turner Ray
Принадлежит: Lenmak Exterior Innovations Inc.

The present invention relates to an apparatus and method for manufacturing unitary insulated wail panels, wherein the panels form a cavity for receiving expandable foam insulation, and form integral attachment means for attaching the panel to a building wall system. Unitary foam insulated panels having integral attachment means are further provided. 1. An apparatus for manufacturing unitary insulated wall panels , the apparatus comprising: a cavity comprising at least one sidewall and a bottom wall for receiving and containing the insulation, and', 'attachment means, integral to the at least one sidewall, for affixing the panel to a wall, and, 'a) bending means capable of forming a panel from a sheet of metal, the panel havingb) insulation application means for applying expandable foam insulation to the cavity.2. The apparatus of claim 1 , wherein the attachment means correspond to attachment means on the wall claim 1 , an adjacent panel or both.3. The apparatus of claim 2 , wherein the attachment means comprise at least one lateral flange extending from the at least one sidewall.4. The apparatus of claim 1 , wherein the foam insulation is a polyurethane foam insulation.5. The apparatus of claim 4 , wherein the polyurethane foam insulation is an open-cell spray foam insulation.6. The apparatus of claim 1 , wherein the application means comprises an applicator head having a nozzle.7. The apparatus of claim 1 , wherein the apparatus further comprises press means for receiving and pressing the panel while the foam cures.8. The apparatus of claim 1 , wherein the apparatus further comprises an oven for heating the panel before the insulation is applied.9. The apparatus of claim 8 , wherein the oven heats the panel to a temperature of approximately 80-100° F.10. The apparatus of claim 9 , wherein the panel is heated to a temperature of 95° F.11. The apparatus of claim 1 , wherein the panels are manufactured of steel or aluminum.12. The apparatus of claim 1 , wherein the ...

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31-10-2013 дата публикации

WOOD-FIBERGLASS HYBRID PANEL DOOR

Номер: US20130283716A1
Автор: CAI Zhihua
Принадлежит: MaxCraft Doors, Inc.

A wood-fiberglass hybrid panel door featuring natural wood veneer permanently bonded to at least one side of a fiberglass door. The panel and the stile/rail portions of the fiberglass door skin for bonding wood veneers can be either one-piece compression molded construction or can be separately compression molded pieces joined together by mechanical or chemical methods. The two pieces of door skins are used to make a fiberglass door first. Wood veneer is then bonded to at least one side of the said fiberglass door through the use of a vacuum press. Wood raised molding or flush sticking is applied around the veneered panel to cover the veneer edges on the panel and/or stiles/rails. Wood raised molding or flush sticking is fixed to the door by mechanical or chemical methods. 1. A wood-fiberglass hybrid panel door featuring natural wood veneer permanently bonded to at least one side of a fiberglass door. The fiberglass door skin with wood veneer bonded to it is constructed of stiles/rails and at least one panel. The stiles/rails and panel can be either of one-piece compression molded construction or can be separately compression molded pieces joined together by mechanical or chemical methods. The wood-fiberglass hybrid door comprises two piece of fiberglass panel door skins with at least one of them bonded with natural wood veneer , internal wood blocks , internal wood stiles/rails , insulation core , wood raised molding/wood flush sticking , and decorative glass.2. A wood-fiberglass hybrid panel door of in which comprises(a) a one-piece construction fiberglass panel door skin with at least one panel(b) a veneer fiberglass door skin with the stile/rail portion and panel portion being of either one-piece compression molded construction or separately compression molded pieces joined together by mechanical or chemical methods.3. A wood-fiberglass hybrid panel door of in which a fiberglass panel door is produced in the same way as a known public knowledge. The panel and ...

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07-11-2013 дата публикации

DECORATIVE MONOLITHIC, FUNCTIONALLY BONDED COMPOSITE SURFACE OVERLAYMENT SYSTEM AND APPLICATION PROCESS

Номер: US20130295346A1
Принадлежит: RENEWABLE TECHNOLOGY HOLDINGS, INC.

The present invention describes a decorative surface covering comprising a plurality of component layers, structural and/or chemical, chemically bonded to the surface, together forming a unique single unit, monolithic decorative surface overlay, referred to generally herein as a functionally bonded system. The functionally bonded system is designed to be flexible, expandable, and functional, providing the same durability as pre-existing flooring or horizontal surfaces. While the individual components have various properties, the chemical bonding of one layer to an adjacent layer above and/or below provides for a unique surface covering that is decorative and functional. The functionally bonded system can be installed, retrofitted and bonded to a raw concrete floor foundation, countertops and other horizontal surfaces or to such surfaces having an existing ceramic tile, porcelain tile, concrete, VCT (Vinyl), asbestos (VAT) composite tile, hardwood floor, laminate or engineered wood floor, other synthetic or natural materials, or glass or architectural glass. 1. A decorative , monolithic , functionally bonded system comprising:a functional bonding solution adapted for creating a bond to between a base layer and a substrate;a base layer composition, said base layer composition having one or more components that forms a permanent bond with a substrate to form a base layer-substrate composition,a substrate; anda decorative image overlay having at least one form of printed indicia printed thereto, said decorative image overlay bonded with said base layer-substrate composition to form a decorative, monolithic, functionally bonded system.2. The decorative claim 1 , monolithic claim 1 , functionally bonded system according to further including a protective layer composition claim 1 , said protective layer bonded to said monolithic claim 1 , decorative and functional surface overlay.3. The decorative claim 1 , monolithic claim 1 , functionally bonded system according to ...

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14-11-2013 дата публикации

Transparent structural element for covers

Номер: US20130298486A1
Автор: Conterno Cosimo
Принадлежит: KOSCON INDUSTRIAL S.A.

A transparent structural element for covers extruded in a synthetic thermoplastic material includes two or more horizontal sheets parallel to each other and shaped to form a corrugated profile, wherein the two or more sheets are spaced and connected by a plurality of ribs having an undulating trend, the ribs having an undulating trend being present in both flat parts of the corrugated section and in tilted connection parts between the flat parts. In one embodiment, the transparent structural element for covers is made of polycarbonate (PC) or polymethylmethacrylate (PMMA). 1) A transparent structural element for covers extruded in a synthetic thermoplastic material comprising:two or more horizontal sheets parallel to each other and shaped to form a corrugated profile,wherein said two or more sheets are spaced and connected by a plurality of ribs having an undulating pattern, said ribs being provided both in flat parts of the corrugated profile and in tilted connection parts defined between the flat parts.2) The transparent structural element for covers according to claim 1 , wherein said synthetic thermoplastic material is polycarbonate (PC) or polymethylmethacrylate (PMMA).3) The transparent structural element for covers according to claim 1 , wherein said plurality of ribs comprises more than one layer of ribs interspaced between more than two sheet claim 1 , said more than one layer of ribs being in an offset position from one another.4) The transparent structural element for covers according to claim 1 , wherein the transparent structural element has two shaped ends claim 1 , at least one of said two shaped ends being shaped with a cross-section having an upper portion of an isosceles trapezoid in which a full tilted part is connected to a full flat part terminating with a shortened section of a tilted part.5) The transparent structural element for covers according to claim 1 , wherein said corrugated profile is defined in a shape of an isosceles trapezoid. The ...

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21-11-2013 дата публикации

COMPOSITE BUILDING PANEL

Номер: US20130305641A1
Автор: SLEEMAN WILLIAM R.
Принадлежит:

A composite panel useful for efficient and economic construction of a building wall or roof includes at least a first rigid structural layer and a cross-linked polymer film layer bonded to and covering a first major planar surface of the rigid structural panel. The panels integrate sheathing or decking and weatherproofing into an integrated product that may be installed on building frame members in substantially the same way that ordinary sheathing or decking is conventionally installed. 1. A composite panel comprising:at least a first rigid structural layer; anda cross-linked polymer film layer bonded to and covering a first major planar surface of the first rigid structural panel.2. The composite panel of claim 1 , wherein the first rigid structural layer is made of an engineered wood product.3. The composite panel of claim 1 , wherein the first rigid structural layer is made of particleboard claim 1 , plywood or oriented strand board.4. The composite panel of claim 1 , wherein the first rigid structural layer is made of lumber or glued laminated timber.5. The composite panel of claim 1 , wherein the first rigid structural layer is made of a fiberboard selected from the group consisting of particleboard claim 1 , medium-density fiberboard and hardboard.6. The composite panel of claim 1 , wherein the first rigid structural layer is made of masonite.7. The composite panel of claim 1 , wherein the first rigid structural layer is made of concrete.8. The composite panel of claim 1 , wherein the first rigid structural layer has a modulus of elasticity (Young's modulus) of at least 5×10lb/in(3.4 MPa) and a thickness of at least 0.15 inches (3.8 millimeters).9. The composite panel of claim 1 , wherein the first rigid structural layer has a modulus of elasticity (Young's modulus) of at least 7×10lb/in(4.8 MPa) and a thickness of at least 0.15 inches (3.8 millimeters).10. The composite panel of claim 1 , wherein the cross-linked polymer film is a thermoset polyurethane ...

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21-11-2013 дата публикации

STRUCTURAL INSULATED PANEL FRAMING SYSTEM

Номер: US20130305643A1
Принадлежит: Nexgen Framing Solutions LLC

Systems and methods are disclosed herein to a structural insulated panel framing system comprising: insulation sheathing receivable by a wall jig; a frame for placement atop the insulation sheathing; and spray foam for application to the frame and the insulation sheathing to fuse the frame and insulation sheathing to produce a structural insulated panel. 1. A structural insulated panel framing system comprising:insulation sheathing receivable by a wall jig;a frame for placement atop the insulation sheathing; andspray foam for application to the frame and the insulation sheathing to fuse the frame and insulation sheathing to produce a structural insulated panel.2. The structural insulated panel framing system of claim 1 , further comprising:fiberglass mesh for application to the insulation sheathing for usage as a filter of the spray foam applied to the frame and the insulation sheathing.3. The structural insulated panel framing system of claim 1 , wherein the frame includes framing members claim 1 , braces claim 1 , and blockings that are precut to receive rivets or screws after production of the structural insulated panel.4. The structural insulated panel framing system of claim 1 , wherein the insulation sheathing comprises expanded polystyrene.5. The structural insulated panel framing system of claim 1 , wherein the spray foam is applied to the frame and the insulation sheathing to attach the frame and the insulation sheathing without the use of mechanical fastening.6. The structural insulated panel framing system of claim 1 , wherein the spray foam comprises closed cell spray foam.7. A method for constructing a structural insulated panel comprising:fusing a frame and insulation sheathing using spray foam to produce a structural insulated panel, wherein the insulation sheathing is placed atop a wall jig, and wherein the frame is also placed atop the wall jig in alignment with the insulation sheathing.8. The method of claim 7 , further comprising:generating a map ...

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05-12-2013 дата публикации

COMPOSITE FACE PANELS FOR STRUCTURAL INSULATED PANELS

Номер: US20130318908A1
Автор: Holley Woodrow W.
Принадлежит:

Composite face panels for use with structural insulated panels (SIP) are provided to form a suitable replacement for structural insulated panels that employ oriented strand board or plywood. The structural insulated panel has a sandwich structure with a generally planar, insulating core. A composite face panel is disposed on each of the opposed surfaces of the insulating core. The insulating core composition includes an insulating material that is formed of an expanded polystyrene or a rigid polyurethane foam. Each composite face panel includes a core and face sheets on each surface of the core. The core composition includes mixture of a resin binder and a fire retardant. The resin binder can be formed of a methacrylate modified urethane, and the fire retardant can be formed of alumina trihydrate. 1. A structural insulated panel comprising:a sandwich structure comprising an insulating core having a generally planar configuration and two opposed surfaces, a face panel disposed on each of the two opposed surfaces;the insulating core comprising an insulating material; and a core comprising a mixture of at least a binder resin and a fire retardant, the amount of binder resin being at least 25 percent by weight of the mixture, the amount of fire retardant ranging from 50 to 200 parts per hundred relative to the binder resin; and', 'face sheets on opposed surfaces of the core of the face panel, each face sheet comprised of a fiber reinforcing material embedded in the binder resin, the binder resin comprised of the same binder resin as in the core of each face panel., 'each face panel comprising2. The structural insulated panel of claim 1 , wherein the binder resin is comprised of a methacrylate modified urethane claim 1 , the amount of binder resin being at least 25 percent by weight of the mixture claim 1 , the fire retardant is comprised of alumina trihydrate claim 1 , and the amount of alumina trihydrate ranging from 50 to 200 parts per hundred relative to the binder ...

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12-12-2013 дата публикации

Coated non-woven fabrics from inorganic fibers and functional, decorative layers for floor coverings, ceiling coverings and wall coverings manufactured therefrom

Номер: US20130330513A1
Принадлежит:

The present invention relates to a non-woven fabric made of inorganic fibers, which has a coating of at least two layers on one of both surfaces, wherein 1. A non-woven fabric made of inorganic fibers , which has a coating of at least two layers on one of both surfaces , wherein(i) the non-woven fabric made of inorganic fibers has a thickness of at least 0.2 mm,(ii) the first layer of the coating comprises particles, whose particle size is between 50 and 100 μm,(iii) the second layer of the coating, which is applied onto the first layer, comprises particles, wherein more than 90% of the particles have a particle size of less than 20 μm.2. The non-woven fabric according to claim 1 , characterized in that the coated non-woven fabric made of inorganic fibers claim 1 , in particular the glass non-woven fabric claim 1 , has a weight per unit area of between 50 and 500 g/m claim 1 , preferably 100 and 500 g/m claim 1 , wherein these values refer to the final product claim 1 , and wherein the coating is at least 25 g/mand at most 300 g/m.3. The non-woven fabric according to claim 1 , characterized in that the weight per unit area of the non-woven fabric made of mineral fibers is between 25 and 350 g/m claim 1 , preferably 40 and 150 g/m claim 1 , wherein these data refer to a non-woven fabric with a binder.4. The non-woven fabric according to claim 1 , characterized in that the inorganic fibers claim 1 , in particular the mineral fibers and glass fibers claim 1 , have an average diameter of between 5 and 30 μm claim 1 , preferably between 8 and 24 μm.5. The non-woven fabric according to claim 1 , characterized in that the non-woven fabric made of inorganic fibers claim 1 , in particular of the glass non-woven fabric claim 1 , is between 5 and 30% claim 1 , preferably 10 and 20% claim 1 , wherein this value refers to the total weight of the non-woven fabric with binder.6. The non-woven fabric according to claim 1 , characterized in that the non-woven fabric made of ...

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12-12-2013 дата публикации

COMPOSITE MATERIALS AND SHAPED ARTICLES

Номер: US20130330993A1
Принадлежит: HOLLAND COMPOSITES INNOVATION B.V.

A process for the preparation of a composite material from a particulate binder material having an average particle size (D9 0) of from 15 to 850 pm and a fibrous material having a density of from 150 to 550 kg/m3, comprising the steps of: a) blending the particulate binder material and the fibrous material, preferably in a weight ratio of 60:40 to 10:90, and b) subjecting the blended material obtained in a) to a curing step under increased temperature and pressure to obtain a composite material. The invention further relates to the composite material thus obtained, and to its use as building materials or as panelling. 1. A process for the preparation of a composite material from a particulate binder material having an average particle size (D90) of from 15 to 850 μm and a fibrous material having a density of from 150 to 550 kg/m , comprising the steps of:a) blending the particulate binder material and the fibrous material in a weight ratio of 60:40 to 10:90, andb) subjecting the blended material obtained in a) to a curing step under increased temperature and pressure to obtain a composite material.2. The process according to claim 1 , wherein the density of the fibrous material is in the range of from 200 to 450 kg/m.3. The process according to claim 1 , wherein the fibrous material is obtained by a method comprising the steps of:A) shredding a car body,B) removing at least part of ferrous and/or non-ferrous metal, andC) separating the fibrous material from a heavier fraction and a lighter particulate fraction.4. The process according to claim 1 , wherein the fibrous material has a carbon content of above 45% wt claim 1 , and a hydrogen content of above 5% wt.5. The process according to claim 1 , wherein the particulate binder material comprises a thermoset polymeric material.6. The process according to claim 1 , wherein the particulate binder material comprises waste powder coating material obtained from overspray and/or powder coating production.7. The process ...

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02-01-2014 дата публикации

PANEL FORMING

Номер: US20140000197A1
Автор: PERVAN Darko
Принадлежит:

Building panels, especially laminated floor panels are shown, which are provided with a locking system and several core grooves at the rear side in order to save material and decrease weight. 1. Building panels , each having a surface layer on a front side , a backing layer on a rear side and an intermediate core , wherein the intermediate core and the surface and the backing layer all comprise wood fibres and thermosetting resins , said building panels are provided with a locking system for vertical and horizontal locking of a first edge of a first building panel to an adjacent second edge of a second building panel , wherein upper parts of the first and the second edge in a locked position together define a vertical plane perpendicular to a horizontal plane , which is parallel to the surface layer , said locking system comprises a tongue and a tongue groove configured to cooperate for vertical locking , and at the first edge a strip provided with a locking element , which is configured to cooperate for horizontal locking with a downwardly open locking groove formed in the second edge ,wherein the backing layer and the intermediate core comprise at least two vertically extending core grooves with an opening towards the rear side, andwherein the area of the backing layer is less than about 90% of the area of the surface layer.2. The building panels as claimed in claim 1 , wherein the backing layer comprises at least three core grooves spaced horizontally and inwardly from the locking system at one pair of opposite edges.3. The building panels as claimed in claim 1 , wherein the area of the backing layer is less than 80% of the area of the surface layer.4. The building panels as claimed in claim 1 , wherein the entire parts of at least one core groove is arranged inside the vertical plane VP at all edges.5. The building panels as claimed in claim 1 , wherein the building panels are rectangular with long edges and short edges and wherein the core grooves are ...

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09-01-2014 дата публикации

SYSTEM AND METHOD OF INSULATION

Номер: US20140007533A1
Принадлежит: Innovative Energy Inc.

An insulation system and method of insulation suitable for thermally insulating commercial buildings without the need to modify the building being insulated during installation of the insulation system. The insulation system includes a plurality of boards, at least two rails secured to supporting members of the building and adapted to secure opposite ends of each of the boards between the supporting members, and a plurality of trim pieces between adjacent boards and adapted to connect the adjacent boards. 1. An insulation system for thermally insulating a building , the insulation system comprising:a plurality of boards;at least two rails secured to supporting members of the building and adapted to secure opposite ends of each of the boards between the supporting members; anda plurality of trim pieces between adjacent boards and adapted to connect the adjacent boards.2. The insulation system of claim 1 , wherein the boards are formed of a thermally insulating material.3. The insulation system of claim 1 , wherein the boards comprise a core material with a reflective thermal resistant layer exposed on a first side of the core material.4. The insulation system of claim 3 , wherein the boards comprise an ultra violet light resistant layer exposed on a second side of the core material opposite the first side.5. The insulation system of claim 3 , wherein the reflective thermal resistant layer is formed of a reflective metallized polymeric film or aluminum foil.6. The insulation system of claim 4 , wherein the reflective thermal resistant layer is formed of a reflective metallized polymeric film or aluminum foil claim 4 , and the ultra violet light resistant layer is formed of a white polymeric film.7. The insulation system of claim 1 , wherein each of the rails comprises a rail support portion adapted to be secured to the supporting member of the building and a pair of board support portions that define a cavity configured to receive and secure ends of the ends of each ...

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16-01-2014 дата публикации

PANEL MEMBER

Номер: US20140013686A1
Автор: Langdon Peter David
Принадлежит:

A panel member () is provided for a wall structure () including a first surface () and a second surface () spaced from the first surface, at least one rib member () extending between the first and second surfaces, a first end member () and a second end member () each extending between the first and second surfaces, substantially parallel with the at least one rib member, so as to form at least two channels () between the first and second surfaces. The first end member has a male connector () extending therefrom and the second end member has a female connector () formed therein. The male and female connectors are each configured to be complementary, such that the male connector of the panel member is able to be received within a female connector of another panel member to facilitate connection of adjacent panel members to form the wall structure. 1. A panel member for a wall structure comprising:a first surface;a second surface spaced from said first surface;at least one rib member extending between said first surface and said second surface;a first end member and a second end member, each of said first end member and said second end member extending between said first surface and said second surface substantially parallel with the at least one rib member so as to form at least two channels between said first surface and said second surface; whereinthe first end member has a male connector member extending therefrom and the second end member has a female connector formed therein, the male connector member and the female connector being configured to be complementary such that the male connector member of the panel member is able to be received within a female connector of an adjacent panel member to facilitate connection of adjacent panel members to form said wall structure.2. A panel member according to claim 1 , wherein the male connector member and the female connector extend substantially longitudinally along a length of the first end member and the second end ...

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16-01-2014 дата публикации

WALL FOR SEPARATING THE INSIDE OF A BUILDING FROM THE OUTSIDE

Номер: US20140013687A1
Принадлежит: Swiss Building Components AG

The wall serves for separating the inside of a building from the outside. According to a first aspect, the wall has a water vapor diffusion resistance of at most 20 meters, wherein the heat transfer coefficient amounts to at most 1.5 W/(m·K), and the moisture storage capacity amounts to at least 2 kg/m. According to a second aspect, the wall has a bearing layer () as well as an outer layer () and an inner layer (), which include moisture-buffering materials. 1. Wall for separating the inside of a building from the outside , characterized in that the wall has a water vapor diffusion resistance , SD-value , of at most 20 meters , wherein the heat transfer coefficient , U-value , of the wall amounts to at most 1.5 W/(m·K) , and the moisture storage capacity , FK-value , of the wall , determined from a comparison of the state of the wall at 80% relative humidity and a temperature of 20 degrees Celsius with the dry state of the wall amounts to at least 2.0 kg/m.2. Wall according to claim 1 , wherein the SD-value fulfills at least one of the following conditions:the SD-value amounts to at least 2 meters,the SD-value amounts to at least 3 meters.3. Wall according to claim 1 , wherein the SD-value fulfills at least one of the following conditions:the SD-value amounts to at most 15 meters,the SD-value amounts to at most 10 meters.4. Wall according to claim 1 , wherein the FK-value claim 1 , determined from a comparison of the state of the wall at 80% relative humidity and a temperature of 20 degrees Celsius with the dry state of the wall claim 1 , fulfills at least one of the following conditions:{'sup': '2', 'the FK-value amounts to at least 3.0 kg/m,'}{'sup': '2', 'the FK-value amounts to at least 4.0 kg/m,'}{'sup': '2', 'the FK-value amounts to at least 4.5 kg/m,'}{'sup': '2', 'the FK-value amounts to at least 5.5 kg/m.'}5. Wall according to claim 1 , wherein the FK-value claim 1 , determined from a comparison of the state of the wall at 80% relative humidity and a ...

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16-01-2014 дата публикации

Structured-core laminate panels and methods of forming the same

Номер: US20140013691A1
Принадлежит: 3Form LLC

A structured-core laminate panel can be made in an efficient, structurally sound manner without the use of adhesives (film or liquid forms) using materials with different melt or glass transition temperatures. In one implementation, a manufacturer positions one or more resin substrates about a structured core, which comprises a relatively high melt or glass transition temperature compared with that of the one or more resin substrates. The manufacturer heats the assembly to at least the glass transition temperature of the resin substrates, but not to the melt or glass transition temperature of the structured core. This allows the one or more resin substrates to melt and bond (mechanically, chemically, or both) to the structured core on one side (or inner surface), while maintaining a substantially planar or original conformation on an opposing side (or outer surface).

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16-01-2014 дата публикации

MODULAR BUILDING PANEL

Номер: US20140013695A1
Принадлежит:

An improved modular building panel and system for building construction is disclosed. The improved modular building panel comprises a novel honeycomb or lattice core comprising multiple layers of corrugated, preferably metal, components mechanically connected by any means known in the art, but which may be chemical bonding. External cladding layers comprising a novel cement mix comprising, in a preferred embodiment, Portland cement, silica sand, perlite, glass beads, and water, in combination with the honeycomb structure, provide a lightweight, highly durable, low-cost, projectile resistant, highly insulating, water, mold and mildew resistant, wind resistant novel modular wall system which is adapted for use in commercial, residential, and other construction and which provides superior security to the user. The modular building panel and system of the invention may be utilized for walls, roofs, floors, bridges, or other structures. 1. An improved modular wall system , comprising:an inner panel having an interior side, exterior side, top edge, bottom edge, and right side edge;an outer panel having an interior side, exterior side, top edge, bottom edge, and right side edge;a first corrugated panel having a top and a bottom;a second corrugated panel having a top and a bottom;a third corrugated panel having a top and a bottom;a fourth corrugated panel having a top and a bottom;wherein said first corrugated panel and said second corrugated panel are attached by a first attachment means selected from the group consisting of chemical bonding, threaded fasteners, rivets and welding to form a first honeycomb structure having a first side and a second side, and wherein said third corrugated panel and said fourth corrugated panel are attached by a second attachment means selected from the group consisting of chemical bonding, threaded fasteners, rivets and welding to form a second honeycomb structure having a first side and a second side, said first honeycomb structure and ...

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23-01-2014 дата публикации

PLATE BUILDING MATERIAL

Номер: US20140023811A1
Автор: KUO Ching-Sung
Принадлежит:

The present invention discloses a plate building material, which comprises a plurality of strip fiber units, a filler and a coupling agent. The plurality of strip fiber units includes a plurality of crude chaffs. The fiber axes of the chaffs are randomly oriented. A plurality of gaps exists among the chaffs. The filler fills the gaps dispersed among the chaffs and bonds the strip fiber units to form a plate structure. The coupling agent is distributed on the interfaces between the strip fiber units and the filler to enhance the bonding between the strip fiber units and the filler. The plate building material of the present invention has the advantages: preserving chaff fiber to enhance strength; easiness to acquire chaffs; reducing consumption of wood and plastic; being environment-friendly, durable and economic. 1. A plate building material comprisinga plurality of strip fiber units made of a plurality of crude chaffs, wherein axes of fibers of said chaffs are randomly oriented, and wherein a plurality of gaps exists among said chaffs and is distributed dispersively;a filler filling said gaps dispersively distributed among said chaffs and bonding said strip fiber units to form a plate structure; anda coupling agent distributed on interfaces between said strip fiber units and said filler to enhance bonding between said strip fiber units and said filler.2. The plate building material according to claim 1 , wherein said chaffs are rice husks claim 1 , wheat husks claim 1 , or mixtures of said rice husks and said wheat husks.3. The plate building material according to claim 1 , wherein said filler includes at least one selected from a group consisting of nylon claim 1 , PP (polypropene) claim 1 , PE (polyethene) claim 1 , PVC (polyvinylchloride) claim 1 , PET (polyethylene terephthalate) and recycled and regenerated materials thereof.4. The plate building material according to claim 1 , wherein said coupling agent is selected from a group consisting of maleic anhydride ...

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06-02-2014 дата публикации

MODULAR BUILDING PANEL WITH FRAME

Номер: US20140033627A1
Принадлежит:

A building panel includes a polymeric block, one or more framing studs and one or more framing studs at least partially embedded in or to the polymeric block. The block includes a panel interior surface and a panel exterior surface. The panel interior surface of the polymeric block is offset from at least one of the one or more framing studs. The panel interior surface of the polymeric block includes one or more slots that can receive framing studs. 1. A building panel , comprising:a polymeric block comprising a panel interior surface and an panel exterior surface;one or more framing studs at least partially coupled to the polymeric block,wherein the panel interior surface of the polymeric block is offset from at least one of the framing studs,wherein the panel interior surface of the polymeric block comprises one or more slots, wherein at least one of the slots is configured to receive a framing stud.2. The building panel of claim 1 , wherein one or more of the framing studs are embedded by expanding loose polymeric material such that the loose polymeric material forms the polymeric block with one or more framing studs at least partially embedded in or to the polymeric block.3. The building panel of claim 2 , wherein the polymeric material is expanded by heating in an oven.4. (canceled)5. (canceled)6. (canceled)7. The building panel of claim 1 , wherein the slots are configured to receive a framing stud in an orientation that is different from at least one of the one or more embedded framing studs.8. The building panel of claim 1 , wherein the polymeric block comprises a window opening.9. The building panel of claim 1 , wherein the polymeric block comprises one or more passages.10. The building panel of claim 9 , wherein at least one of the passages comprises a horizontal slot on a surface of the polymeric block claim 9 , wherein the horizontal slot is configured to receive one or more electrical lines or one or more plumbing lines.11. The building panel of claim 1 ...

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13-02-2014 дата публикации

PRECAST CONCRETE STRUCTURES, PRECAST TILT-UP CONCRETE STRUCTURES AND METHODS OF MAKING SAME

Номер: US20140041329A1
Принадлежит:

The invention comprises a method of forming a concrete structure. The method comprises placing plastic concrete in a form of a desired shape, encasing the concrete in insulating material having insulating properties equivalent to at least 1 inch of expanded polystyrene and allowing the plastic concrete to at least partially cure inside the insulating material. An insulated concrete form and a method of using the insulated concrete form are also disclosed. 136-. (canceled)37. A product comprising:a foam insulating panel having a first primary surface and a second primary surface;an elongate anchor member having a first end and an opposite second end, a first portion of the anchor member penetrating the foam panel from the first primary surface to the second primary surface, a second portion of the anchor member extending outwardly from the first primary surface of the foam panel and terminating in a portion configured to receive a concrete reinforcing member;a first flange formed on the elongate anchor member intermediate the first and second ends of the elongate anchor member; anda cap member attached to the first end of the anchor member, such that the foam panel is captured between the first flange and the cap member.38. The product of further comprising a second flange on the second portion of the elongate anchor member adjacent the portion configured to receive a reinforcing member.39. The product of further comprising a layer of reinforcing material disposed on the second primary surface of the foam insulating panel and at least a portion of the layer of reinforcing material is disposed between the cap member and the second primary surface of the foam insulating panel.40. The product of wherein the layer of reinforcing material is attached to the second primary surface of the foam insulating panel.41. The product of further comprising an elastomeric membrane coating on the second primary surface of the foam insulating panel.42. A product comprising:a foam ...

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13-02-2014 дата публикации

Method and system for applying particulate solids on a substrate

Номер: US20140044958A1
Принадлежит: KRONOTEC AG

The present invention relates to a method for spraying particulate solids onto a substrate, comprising the steps of: coating the substrate with a wet and/or adhesive synthetic resin layer, building up a gas pressure in a line, generating a pressure differential in the line, swirling and carrying along particulate solids in the line, ejecting swirled, particulate solids from the line onto the surface of the wet and/or adhesive synthetic resin layer of the substrate. The invention also relates to a substrate, in particular a wood-based panel or decorative paper, at least partially coated with a particulate solid, characterized in that the particulate solid is applied to the substrate with an accuracy of up to ±0.8 g/m 2 , preferably of up to ±0.5 g/m 2 , particularly preferably of up to ±0.3 g/m 2 , preferably of up to 0.1 g/m 2 .

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27-02-2014 дата публикации

Composite insulation panel

Номер: US20140053485A1
Принадлежит: Kingspan Research and Developments Ltd

A manufactured composite insulating panel comprises an external sheet having an outer face and an inner face, an internal sheet having an outer face and an inner face, and an insulating body between the inner face of the external sheet and the inner face of the internal sheet. The external sheet has a portion that extends beyond the internal sheet and the insulating body to define an overlap part for overlapping with part of an adjacent panel, on assembly and a seal is applied to the inner face of the overlap part of the external sheet. The panel has a side overlap part to which a side seal is factory applied. An end seal is also factory applied to an end overlap part of the panel.

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27-02-2014 дата публикации

BUILDING BOARDS AND METHOD FOR MANUFACTURING THE SAME

Номер: US20140057066A1
Автор: Cai Hongliang
Принадлежит: NEWSPIRIT CHINA LTD.

Building boards and method for manufacturing the same are provided. The building board comprises a cement layer () and a magnesium oxide layer (). The method for manufacturing the building board comprises the steps of providing a cement board and a magnesium oxide board, dehydrating and binding the cement board and the magnesium oxide board. The performance of moisture proofing, fungus proofing, erode proofing, fireproof and others can be improved by utilizing the building boards. 136-. (canceled)37. A laminate flooring building board comprising:a cement board as a top layer; anda magnesium oxide board as a lower layer, wherein the cement board and magnesium oxide board are bound to one another with a glue, wherein each side of the laminate flooring building board has at least one of a tongue and groove, and wherein the surface of the laminate flooring building board is covered with a protective coating of oil which permeates into the surface of the laminate flooring building board and mixes with cement of the cement board.38. The laminate flooring building board of claim 37 , wherein the top layer cement board comprises cement and glass fiber.39. The laminate flooring building board of claim 37 , wherein the top layer cement board has a thickness from 2 to 20 millimeters claim 37 , wherein the lower layer magnesium oxide board has a thickness from 8 to 15 millimeters claim 37 , and wherein the cement board has a density from 1.1 to 1.8 g/cm.40. The laminate flooring building board of claim 37 , further comprising a buffer layer claim 37 , wherein the buffer layer is connected to the magnesium oxide board claim 37 , and wherein the buffer layer preferably comprises at least one of rubber and plastic.41. The laminate flooring building board of claim 37 , wherein the laminate flooring building board is shaped as one of a square claim 37 , a rectangle claim 37 , a parallelogram claim 37 , a hexagon and an octagon.42. A method for manufacturing a laminate flooring ...

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06-03-2014 дата публикации

WALL INSULATION SYSTEM

Номер: US20140059955A1
Автор: WESTRA GREGORY
Принадлежит:

The embodiments of the invention includes a retrofitting system for the insulation of existing interior walls such as basements; a retrofitting system for the insulation of exterior walls of a structure such as a home needing further insulation without a convenient or economical method to do so within the interior walls. The insulated wall systems of those embodiments provide an economical and efficient method of providing the installation of insulation panels to each of the walls described. The insulation panels are generally of a foam structure supported by horizontal connecting and/or horizontal multi-purpose channels. The horizontal connecting channels and horizontal multi-purpose channels are of a unique design that are easily fastened to an existing wall. In addition to supporting the insulation panels, the channels are structured to provide a moisture gap between the insulation and the existing wall to which they are mounted. The horizontal connecting channels and horizontal multi-purpose channels also provide for wire chase areas for power distribution with a wall system. 1. An insulated wall system comprising:a. a plurality of horizontally mounted connecting channels;b. a plurality of horizontally mounted multi-purpose channels;c. a plurality of horizontally installed insulation panels;d. wherein said channels are mounted to a wall;f. further wherein said horizontally installed insulation panels are vertically coupled to a pair of channels.2. The system of wherein said plurality of insulation panels are vertically coupled to a pair of connecting channels and/or vertically coupled to a pair of channels comprising a multi-purpose channel and a connecting channel.3. The system of wherein said horizontally mounted connecting channels and horizontally mounted multi-purpose channels are glued to said wall.4. The system of wherein said horizontally mounted connecting channels and horizontally mounted multi-purpose channels are mechanically fastened to said wall.5. ...

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06-03-2014 дата публикации

STRUCTURAL ISOTHERMAL CONSTRUCTION SIP PANEL AND METHODS

Номер: US20140059958A1
Автор: Ratto Anduaga Pablo
Принадлежит:

A structural isothermal construction SIP panel comprising a board made of insulating material with two cement-based boards attached to said board made of insulating material per each one of its faces. The insulating board has in each of its sides a “C” type galvanized metal profile, that is embedded in the insulating board and the cement-based boards are attached to the insulating board and are placed overlapped opposite to each other with respect to their longitudinal axis, the overlapped bonding of the cement-based boards with the insulating board creates a protruding area which has a width equal to the width of the galvanized metal profile the bonding between two panels is made using screws. Two manufacturing methods and a bonding method are also provided. 1. A structural isothermal construction SIP panel comprising an insulating board made of insulating material with two cement-based boards attached to said board made of insulating material per each one of its faces , wherein:the insulating board has in each of its sides a “C” type galvanized metal profile, that is embedded in the insulating board;the cement-based boards are attached to the insulating board and are placed overlapped opposite to each other with respect to their longitudinal axis;the overlapped bonding of the cement-based boards with the insulating board creates a protruding area which has a width equal to the width of the galvanized metal profile; andbonding between two panels is made using screws.2. A structural isothermal construction SIP panel according to claim 1 , wherein the insulating board is made of expanded polystyrene.3. A structural isothermal construction SIP panel according to claim 1 , wherein the insulating board is made of extruded polystyrene claim 1 , rigid insulating polystyrene or other rigid insulating material.4. A structural isothermal construction SIP panel according to claim 1 , wherein the cement-based board material is silicate reinforced with fiberglass mesh and ...

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06-03-2014 дата публикации

Composite Pre-Formed Building Panels

Номер: US20140059959A1
Принадлежит: SYNTHEON, INC.

A composite building panel including a central body, substantially parallelepipedic in shape, comprised of an expanded polymer matrix, having a first surface and an opposing second surface; and one or more structural reinforcing elements longitudinally extending across the central body between said opposite faces, having a first side portion embedded in the expanded polymer matrix, and a second side portion extending away from the first surface of the central body and one or more expansion holes located in the reinforcing member between the first side portion of the reinforcing member and the first surface of the central body. The central body includes a polymer matrix that expands through the expansion holes. 1. A central body , substantially parallelepipedic in shape , comprised of an expanded polymer matrix , having a first surface and an opposing second surface; and 'a body having a length, a width, and a thickness, the body comprising: a first side portion; and an opposed second side portion, the first side portion and the second side portion being positioned along a longitudinal axis of the width of the body,', 'one or more reinforcing structural elements longitudinally extending across the central body, the reinforcing structural elements comprisingwherein the first side portion comprises a plurality of expansion holes spaced along the length of the body, the plurality of expansion holes comprising at least a first row of equally spaced, elongated holes, a second row of equally spaced, elongated holes, and a third row of equally spaced, elongated holes, each row extending longitudinally along a length of the first side portion, and the holes of the second row are offset with respect to the holes of the first and third rows, andthe expanded polymer matrix expands through the expansion holes such that the first side portion of the reinforcing structural element is embedded in the expanded polymer matrix.2. A composite building panel comprising:a central body, ...

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06-03-2014 дата публикации

Insulated sheathing and method

Номер: US20140059963A1
Принадлежит: EMERCOR Ltd

An insulated sheathing for use in construction is provided. The insulated sheathing comprises a sheathing having a first surface, second surface, and edges; and a backing attached to the first surface of the sheathing. The sheathing is at least one of plywood, OSB, drywall, fiberglass, concrete board, metal, and plastic. The backing may have an insulation medium, which may be at least one of polyurethane, polystyrene, and fiberglass. Methods of using the insulated sheathing in constructing sections of a building are also provided.

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06-03-2014 дата публикации

Architectural panels including elongated thermoplastic members and methods of making the same

Номер: US20140065341A1
Принадлежит: 3Form LLC

Implementations of the present invention relate to for incorporating virgin or recycled thermoplastic resin materials into architectural thermoplastic panels that have ordered and reproducible geometric patterns. More specifically, at least one implementation provides a method for fusing thermoplastic elongated members, such as circular rods and rectangular bars, sourced from recycled thermoplastic resin to form the architectural thermoplastic panels.

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13-03-2014 дата публикации

To modular dwellings

Номер: US20140069032A1
Принадлежит: Individual

Modular dwellings comprise attached wall members that enclose an interior area, and a central truss system extending across the dwelling. A lower roof member is supported by a truss system lower chord and wall member, and an upper roof member is supported by a truss system upper chord and a wall member. The ends of the truss system are supported by a vertical post. The upper part of a wall section and of the upper chord are in co-planar alignment and the lower chord and the upper part of another wall section are in co-planar alignment. Wall panels include an internal frame and a tongue on one side and a groove on the other side which mate with the tongues and grooves of other like panels to compress resiliently deformable seals. A frame portion positioned at the internal side of the extension supports the extension for proper alignment during construction.

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13-03-2014 дата публикации

Composite panels and methods and apparatus for manufacture and installtion thereof

Номер: US20140069050A1
Автор: Joel W. Bolin
Принадлежит: Joel W. Bolin

Panels usable for construction of a surface, to provide the surface with a desired appearance, durability, water, air, and fire resistance, dimensions, and weight include a layer of substrate material having first and second sides. Finish elements are positioned on the first side, while a backing material is positioned on the second side, such that the substrate bonds the finish elements to the backing material. Particulate material can also be included, such as within spaces between finish elements. Manufacture of such panels can include use of a vacuum system that acquires finish elements in a selected orientation, acquires particulate material into spaces unoccupied by finish elements, then deposits the arranged finish elements and particulate material into a mold for subsequent manufacturing steps. Use of lightweight, durable materials, such as magnesium oxide, can enable panels having a reduced thickness and weight to be manufactured, without sacrificing durability or longevity.

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20-03-2014 дата публикации

RECYCLING OF LAMINATE FLOORINGS

Номер: US20140075874A1
Принадлежит: VALINGE INNOVATION AB

Recycling of laminate flooring based on a separation of the panels into particles which are connected with a binder and formed to a new sheet shaped material. A building panel includes a surface layer and a wood fiber based core, and the wood fiber based core includes aluminium oxide particles. 120-. (canceled)21. A building panel comprising a core , a surface layer and a balancing layer , wherein the balancing layer comprises particles from recycled floor panels.22. The building panel according to claim 21 , wherein the core is of HDF.23. The building panel according to claim 21 , wherein the particles from recycled floor panels comprise aluminium oxide particles.24. The building panel according to claim 21 , wherein the particles from recycled floor panels comprises aluminium oxide claim 21 , melamine particles and wood fibres coated or impregnated with cured binders.25. The building panel according to claim 21 , wherein the particles from recycled floor panels comprises decorative paper claim 21 , melamine flakes and aluminium oxide particles.26. The building panel according to claim 21 , wherein the balancing layer further comprises virgin fibres or fibres of a type used for manufacturing of MDF or HDF.27. The building panel according to claim 21 , wherein the balancing layer further comprises a binder mixed with the particles from recycled floor panels.28. The building panel according to claim 21 , wherein the building panel is a floorboard.29. The building panel according to claim 21 , wherein the surface layer comprises particles from recycled floor panels.30. The building panel according to claim 21 , wherein the recycled floor panels are recycled laminate floor panels.31. The building panel according to claim 30 , wherein the recycled laminate floor panels are from laminate floor panels comprising a wood fibre based core claim 30 , a decorative surface layer claim 30 , the decorative surface layer comprising a thermosetting resin claim 30 , and aluminium ...

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27-03-2014 дата публикации

Stable flooring products and method of making same

Номер: US20140083034A1
Принадлежит: Dubon Associates Inc

The present invention is directed to an article of manufacture suitable for flooring utilization which comprises a flooring panel adapted for interlocking connection with another correspondingly adapted flooring panel, such article having at least one edge with one or more elements formed such that they are operative to mate with one or more reciprocal elements associated with said other correspondingly adapted flooring panel, which article further comprises a frictional backing material that is non-adhesive in respect of, but exhibits resistance to movement with respect to, a surface underlying the article when in contact with the surface; and a method of making same.

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03-04-2014 дата публикации

Modular building system utilizing composite, foam core panels

Номер: US20140090321A1
Принадлежит: Innovative Composites International Inc

A system is for constructing a structure and includes composite panels having a laminate structure. The laminate structure includes a foam core to which are attached cover layers of the same or different material. One or both of the cover layers may include composite sub-layers. The system includes a number elongate and preferably extruded components for connecting the panels to form walls, roofs or floors for the structure. The system is modular, thereby providing a time and cost efficient approach for erecting a structure.

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10-04-2014 дата публикации

Plastic wall panel

Номер: US20140097034A1
Принадлежит: Aus Group Alliance Pty Ltd

Embodiments relate generally to plastic wall panels. Wall panels are formed by rotational molding processes and may be used in sound attenuation barriers or other wall or building structures. Some embodiments include reinforcing structure. The reinforcing structure may be configured to effectively support a plastic shell of the wall panel in a way that allows some relative movement between the plastic shell and the reinforcing structure.

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06-01-2022 дата публикации

METHOD FOR MANUFACTURING A CONSTRUCTION PANEL

Номер: US20220002996A1
Автор: KLIEN Carlos
Принадлежит:

Method for manufacturing on industrial scale of complete, highly reliable, flexible and accurate construction panels that are lightweight and have a very high R-value, wherein the processing is performed, under the control of a digital construction data file, by means of digitally controlled processing devices, such as milling and/or cutting devices. Portions of the construction panel from which the covering layer has been removed by the processing devices (such as the sides of recesses for door and window frames etcetera and optionally milled gutter slots) and portions of the construction panel of which the cover layer requires extra protection, such as portions below ground level, under control of the digital construction data file, are provided with a rigid and highly reliable protective layer of polyurea, polyester or epoxy by means of digitally controlled spraying devices. One or more delta robots can be used for mounting cladding elements such as a brick strip, which robots can be moved by means of the X-Y displacement system above the construction panel controllable from the digital construction data file. 1. Method for manufacturing a building panel intended for use as a self-supporting wall panel or roof panel having a high R-value , comprising the following steps:providing a digital construction data file with the desired construction data of the construction panel, obtained by scanning of an existing building and/or obtained from design;providing a device for manufacturing a construction panel comprising a base layer of foamed material of, for example, EPS, provided with a thin, rigid reinforcement cover layer on one side, hereinafter referred to as the first cover layer, and on the other side also provided with a thin, rigid reinforcement cover layer, hereinafter referred to as the second cover layer, wherein the layers are either directly applied to the base layer or by means of an intermediate layer of a material, which is suitable for screws,providing ...

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06-01-2022 дата публикации

Structural building panels and panel components, panel assemblies, methods of making, and methods of using

Номер: US20220002997A1
Принадлежит:

Light weight fiber-reinforced polymeric structural building panels and methods; sized, configured for fabrication of non-portable wall structures permanently fixed to natural base. The panel main body, and studs, can be fabricated separately, then assembled to each other to complete panel fabrication. Methods for making the main body are hand lay-up, or pultrusion. Studs are typically pultruded, and subsequently prepared having consistent thickness, flat surface, across the width of the stud end wall which is to be mounted to the main body. Foam blocks are between inner and outer layers of the panel. Foam blocks can be prepared in block clusters before assembly to the main body. In the main body, a fibrous layer is between each pair of next adjacent foam blocks. Intercostals extend “y” and “z” dimensions transverse to the length of the main body. Studs can be mounted to the main body using adhesive, mechanical fasteners, or both. 2. A fiber-reinforced polymeric structural building panel as in claim 1 , said first stud end wall having been subjected to a post-fabrication roughening procedure thereby enhancing receptivity of said first stud end wall to chemical adhesion to said main body.3. A fiber-reinforced polymeric structural building panel as in claim 2 , at least one remaining one of said stud walls having a maximum thickness across a width thereof at least 10 percent greater claim 2 , and up to at least 60 percent greater claim 2 , than the thickness of said first stud end wall.4. A building panel as in claim 1 , said studs being secured to said main body by adhesive.5. A building panel as in claim 1 , said studs being secured to said main body by mechanical fasteners.6. A building panel as in claim 1 , said studs being secured to said main body by a combination of adhesive and mechanical fasteners.7. A building panel as in claim 6 , said mechanical fasteners comprising first and second fasteners accessing said first stud end wall through opposing open ends of ...

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02-01-2020 дата публикации

Lightweight, weather-resistant, barriers, methods and structures using the same

Номер: US20200001583A1
Принадлежит: RHINO BUILDING PRODUCTS

Insulated building products, methods and structure using those products are disclosed. The embodiments described include building materials having a core of encapsulated polystyrene (EPS) which is completely coated with a polymer. The polymer coating provides protection and structural integrity to the foam such that virtually indestructible structures can made of EPS foam that can form barriers for use in crowd control, cordoning off areas, creating corrals for lines at events, etc. Moreover, additional embodiments are provided in which additional structural integrity is provided by affixing one or more rigid materials to the EPS foam prior to coating. The results, as disclosed, are light-weight, portable building structures that can be made into lightweight, easily deployable and easily storable barriers.

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05-01-2017 дата публикации

PRECAST MODULAR CONCRETE WALL PANEL, SYSTEM THEREOF, AND METHOD OF CONSTRUCTION

Номер: US20170002558A1
Автор: HOU Jianqun, WU Yazhi
Принадлежит:

The present invention provided a precast modular concrete wall panel having a rectangular wall body with an upper slot and two side slots, and the wall body can further include an insulating layer and a decorative layer, and can contain a sandwich layer embedded in the concrete structure. The wall panels may be used with wall columns, wall corners and other components to form a wall panel system and further to form a building of frame structure or frame-share wall structure. Such wall panels have advantageous structural features and thus can be cost effectively prefabricated, and the construction process using such panel system can be performed with high efficiency. 1. A precast modular concrete wall panel , comprising:a rectangular body, having a first face and a second face, an upper end and a lower end, and a first side and a second side, wherein an upper slot is formed along the upper end, and a first and second side slots are respectively formed along the first and second sides, and the body has a concrete structure with a plurality of steel bars therein for reinforcement, wherein the upper slot runs through the entire length of the upper end, the side slots run through the entire length of the sides, respectively, such that the upper slot is connected to each of the side slots.2. The precast modular concrete wall panel of claim 1 , further comprising:an insulating layer attached on the second face; anda decorative layer attached on the insulating layer.3. The precast modular concrete wall panel of claim 1 , further comprising:a sandwich layer, embedded in the concrete structure between the first face and the second face; a plurality of longitudinal dovetail groves being formed in two faces of the sandwich layer; and the sandwich layer being formed of lightweight materials.4. The precast modular concrete wall panel of claim 1 , wherein the upper slot is greater in depth of slot comparing to the side slots.5. The precast modular concrete wall panel of claim 1 , ...

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05-01-2017 дата публикации

FOLDED FOAM SHEATHING WITH STARTER STRIP

Номер: US20170002561A1
Принадлежит:

An exemplary foam insulation board includes a plurality of insulation panels hingeably connected by hinged portions. The foam insulation board has a folded configuration and an unfolded configuration. The hinged portions allow the insulation panels to fold flat against each other in the folded configuration. The plurality of insulation panels includes a first insulation panel and a plurality of additional insulation panels, one of which is an adjacent insulation panel adjacent to the first insulation panel. The first insulation panel also includes a starter portion that extends beyond at least the adjacent insulation panel of the additional panels. 1. A foam insulation board comprising:a plurality of insulation panels hingeably connected by a plurality of hinged portions;a first insulation panel of the plurality of insulation panels;a starter portion of the first insulation panel;a plurality of additional insulation panels including an adjacent insulation panel adjacent to the first insulation panel;wherein the foam insulation board has an unfolded and folded configuration;wherein the hinged portions allow the plurality of insulation panels to fold flat against each other when the foam insulation board is in the folded configuration; andwherein the starter portion of the first insulation panel extends beyond at least the adjacent insulation panel of the plurality of additional insulation panels.2. The foam insulation board of claim 1 , wherein the foam insulation board is 4 feet by 8 feet in the unfolded configuration.3. The foam insulation board of claim 1 , wherein the foam insulation board comprises two additional insulation panels.4. The foam insulation board of claim 3 , wherein the first insulation panel is 18 inches wide and the additional insulation panels are 15 inches wide.5. The foam insulation board of claim 1 , wherein the plurality of insulation panels are joined by tongue and groove joints when the foam insulation board is in the unfolded ...

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05-01-2017 дата публикации

Glass mat and method of making the glass mat

Номер: US20170002564A1
Принадлежит: Saint Gobain Adfors Canada Ltd

A method of making a glass mat includes providing an assembly of glass fibers, applying a binder composition to the assembly of glass fibers, wherein the binder includes an organic resin, and curing the binder composition while dimensionally constraining the assembly of glass fibers. Dimensional constraining includes directly contacting a first major surface and a second major surface of the assembly of glass fibers between two substantially parallel surfaces. Further provided is a glass mat that includes an assembly of glass fibers, wherein the assembly of glass fibers are substantially randomly oriented with a tensile anisotropy of less than about 6 in any two directions. The glass mat has a decreased surface roughness and a decreased caliper compared to an equivalent glass mat having an assembly of naturally packed glass fibers with an equivalent fiber diameter size.

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07-01-2016 дата публикации

PANELIZED STRUCTURE IMPROVEMENT

Номер: US20160002911A1
Автор: Hedler Martin P.
Принадлежит:

A panelized complex polyhedron structure can be constructed quickly and inexpensively from a plurality panels. According to one embodiment, the structure includes a plurality of panels, wherein a first panel comprises an integrated connecting feature formed unitarily with the first panel and including a faceted feature connected to a plain end of a second panel. According to another embodiment, the first panel includes integrated connecting features including a plurality of planar faceted features, wherein one of the faceted features is connected to a plain end of the second panel. The plurality of planar faceted features are oriented at angles selected to enable a plurality of panel connections necessary to construct the structure. In one embodiment, the panel comprising the integrated connecting features is formed unitarily. 1. A panelized complex polyhedron structure , comprising:a plurality of panels, wherein a first panel comprises an integrated connecting feature formed unitarily with the first panel and including a faceted feature connected to a plain end of a second panel;wherein the plurality of planar faceted features is oriented at an angle from a flat face of the first panel selected to enable a panel connection necessary to construct the structure, wherein the angle is selected from 108 degrees, 126 degrees, and 144 degrees.2. A panelized complex polyhedron structure , comprising:a plurality of panels, wherein a first panel comprises integrated connecting features including a plurality of planar faceted features, wherein one of the faceted features is connected to a plain end of a second panel;wherein the plurality of planar faceted features are oriented at angles selected to enable a plurality of panel connections necessary to construct the structure.3. The polyhedron structure of claim 2 , the panel comprising the integrated connecting features is formed unitarily.4. The polyhedron structure of claim 2 , the panel comprising the integrated connecting ...

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07-01-2016 дата публикации

BUILDING ELEMENT COMPOSED OF TWO PANELS WITH A COUPLING STRIP

Номер: US20160002913A1
Автор: SCHILCHER Josef
Принадлежит:

A planar, angled or T-shaped building element () has at least two panels () of cross-laminated wood which are connected to one another in the narrow faces of the panels with the aid of a coupling strip (). The coupling strip () has a cross-sectional shape with two ribs () with a trapezoidal cross-sectional shape which positively engage in undercut grooves in the interconnected panels (). The coupling strip () is composed, for example, of two wedge-shaped parts ( and ) of mirror-symmetrical design. 112-. (canceled)131232121422424524101113141011131441516111014134. Building element () , made of at least two panels () , which are interconnected in the joint area () between large surfaces and/or narrow sides of two adjacent panels () with one another to form the building element () , whereby in the large surfaces and/or narrow sides—where the panels () are to be interconnected to form building elements ()—a coupling strip () , which is connected to the panels () , is provided between the panels () , whereby the coupling strip () engages by friction in grooves in the panels () by the coupling strips () having two trapezoidal ribs () that extend outward , which ribs are received in corresponding undercut grooves in the panels () , characterized in that the coupling strip () consists of two parts ( , , , ) that are wedge-shaped in a mating manner and in that one part ( or ; or ) of the coupling strip () is arranged with its thicker end () in the area of the thinner end () of the other part ( or ; or ) of the coupling strip ().144564. Building element according to claim 13 , wherein the coupling strip () has an essentially cross-shaped cross-section claim 13 , whereby between the extending ribs () claim 13 , cross ribs () that project toward both sides of the coupling strip () are provided.156432. Building element according to claim 14 , wherein cross ribs () of the coupling strip () are arranged in the joint area () between edges of the panels () that are adjacent to one ...

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07-01-2016 дата публикации

ASH INSULATION PANELS

Номер: US20160002923A1
Принадлежит:

The present invention relates to ash recycling and use in thermal insulation (decrease of thermal transmission from inside buildings into outside, and vice versa). Ash insulation panels are made of the following basic materials: ash and Polystyrene (PS) and/or waste plastics made of Polystyrene and chemical bond. These panels have many advantages beside thermal insulation such as lightweight and low water absorption rate. They are produced by mixing the mentioned basic materials, casting the mixture into molds of variable size and shape depending on the desired product, pressing the mold, and treating the final product thermally. 19.-. (canceled)10. A thermal insulation panel comprising a mixture of ash and a polymeric material.11. The thermal insulation panel according to claim 10 , wherein the polymeric material comprises polystyrene or plastic waste material.12. The thermal insulation panel according to claim 10 , comprising from 55-70% ash and from 30-45% polymeric material.13. The thermal insulation panel according to claim 10 , having a density of 1.43 g/cmand a water absorption of 2.83%.14. The thermal insulation panel according to claim 10 , wherein the polymeric material is polystyrene.15. A process for producing thermal insulation panels claim 10 , comprising:forming a mixture of ash and a polymeric material;gradually adding chloroform to the mixture;continuing mixing until the mixture is almost dry;casting the mixture into a mold; andmolding the mixture under pressure.16. The process according to claim 15 , wherein the formed mixture comprises from 55-70% ash and from 30-45% polymeric material.17. The process according to claim 15 , wherein the polymeric material is selected from polystyrene or plastic waste material.18. The process according to claim 15 , wherein the pressure applied to the mold is from 3-30 tons.19. The process according to claim 15 , further comprising treating the mold in a thermal furnace at a temperature of from 160-180° C. for 2 to ...

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04-01-2018 дата публикации

CONSTRUCTION PANELS, MATERIALS, SYSTEMS, AND METHODS

Номер: US20180002916A1
Принадлежит: Georgia-Pacific Gypsum LLC

Construction panels and other materials, methods for their manufacture, and systems and methods for monitoring environmental conditions with such panels are provided herein. The panels include a core having a first surface and an opposed second surface, and an environmental sensor assembly associated with the panel and configured to detect an environmental condition of the panel and wirelessly communicate data on the environmental condition to a reader. 1. A building panel , comprising:a panel having a first surface and an opposed second surface; and 'wherein the environmental sensor assembly is self-supporting and comprises an antenna, a processing module, and a wireless communication module.', 'an environmental sensor assembly associated with the panel and configured to detect an environmental condition of the panel and wirelessly communicate data on the environmental condition to a reader,'}2. The panel of claim 1 , wherein the environmental sensor assembly is configured to detect an environmental condition of the panel selected from a group consisting of moisture claim 1 , temperature claim 1 , and pressure.3. The panel of claim 1 , wherein the environmental sensor assembly comprises a passive radio frequency identification sensor.4. The panel of claim 1 , wherein:the antenna comprises a resistor inductor capacitor tuned circuit operable to convert the environmental condition into an impedance change, andthe processing module is coupled to the antenna and is operable to translate the impedance change into a sensor code by matching antenna impedance to die impedance.5. The panel of claim 1 , wherein:the antenna has an antenna impedance operable to vary based on the environmental condition,the processing module is coupled to the antenna and comprises a tuning module operable to (i) vary a reactive component impedance in order to change a system impedance comprising the antenna impedance and the reactive component impedance, and (ii) produce an impedance value ...

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04-01-2018 дата публикации

RECONFIGURABLE WALL PANELS

Номер: US20180002924A1
Принадлежит:

Reinforced panels include a layer of glass joined to a substrate to support the glass. Connectors are joined to the side of the substrate opposite the glass to enable the reinforced panel to be configured with and/or attached to a modular wall system. The glass can be backpainted prior to joining to the substrate, and/or a film can be included in the reinforced tile disposed between the glass panel and the substrate. A reinforced panel includes a conductive material disposed between a glass layer and a substrate to form a touch-responsive section. One or more intermediate layers disposed between the glass layer and the substrate are included. The one or more intermediate layers have sufficient elastic deformability so as to enable the reinforced panel to tolerate differences in thermal expansion between the substrate and the glass layer without resulting in cracking of the glass layer. 1. A reinforced panel configured for use with a reconfigurable wall , the panel comprising:a first layer formed from a first material;a substrate coupled to the first layer, the substrate being formed from a second material; andone or more connectors coupled to the substrate on a side of the substrate opposite the first layer, the one or more connectors configured to allow the panel to be integrated with a reconfigurable wall.2. The reinforced panel of claim 1 , wherein the first material is glass.3. The reinforced panel of claim 1 , further comprising:an intermediate layer disposed between the first layer and the substrate, the intermediate layer being formed at least in part from a material that is elastically deformable;wherein the intermediate layer has sufficient elastic deformability so as to enable the reinforced panel to tolerate differences in thermal expansion between the substrate and the first layer without resulting in cracking of the first layer4. (canceled)5. The reinforced panel of claim 3 , wherein the intermediate layer is formed of one or more polymers claim 3 , ...

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04-01-2018 дата публикации

HIGH-PERFORMANCE TORCHABLE THERMAL INSULATING PANEL FOR BUILDINGS ROOFS

Номер: US20180002927A1
Автор: MAZZER Luciano
Принадлежит:

Separating membrane of plastic material, made up of a bossed and waterproof sheet which is coupled with a permeable base layer. The bosses are of the cylindrical type with a double diameter and have such a shape and arrangement as to feature improved adhesion on both faces. The gripping of the adhesive is increased in order to obtain greater tear strength, on the upper face, and at the same time increases the area of contact with the base layer for a greater resistance to delamination on the lower face. In particular, inside each chamber there is an internal crown, which divides it like a necking into two superimposed compartments having the same diameter, wherein the first compartment has a depth amounting to at least ⅓ of the total. A production process for obtaining the membrane is also disclosed. 121. High-performance torchable thermal insulating panel for buildings roofs of the multi-layer type comprising a sandwich structure being provided with an intermediate layer of rigid polyurethane foam of the PUR or PIR type or of an equivalent material whose upper face and lower face are each provided with a multi-layer coating , characterised in that the multi-layer coating is gas-tight and torchable and is coupled to the intermediate insulating layer of the thermal insulating panel at least in correspondence of the upper face () and of the lower face.2. High-performance torchable thermal insulating panel for buildings roofs according to claim 1 , characterised in that the multi-layer coating is made up of the following layers coupled in sequence:a) at least one layer consisting of a metallized polyester film;b) at least one layer consisting of a polyethylene film;c) at least one layer consisting of a moisture-proof paper sheet;d) at least one layer consisting of a film of bituminous compound of polymer bitumen;e) at least one layer consisting of a non-woven polypropylene fabric,wherein the layer consisting of the metallized polyester film is coupled to the ...

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04-01-2018 дата публикации

FIBRE BASED PANELS WITH A WEAR RESISTANCE SURFACE

Номер: US20180002934A1
Принадлежит: VALINGE INNOVATION AB

Building panels with a homogenous decorative surface having a wear layer comprising fibres, binders and wear resistant particles. A building panel including a surface layer and a core, the core including wood fibres, and the surface layer including a substantially homogenous mix of wood fibres, a binder and wear resistant particles, the substantially homogenous mix of wood fibres including natural resins. 1the core comprising wood fibres, andthe surface layer comprising a substantially homogenous mix of wood fibres, a binder and wear resistant particles,the substantially homogenous mix of wood fibres comprising natural resins.. A building panel comprising a surface layer and a core, The present application is a continuation of U.S. application Ser. No. 12/270,257, filed on Nov. 13, 2008, which claims the benefit of U.S. Provisional Application No. 60/996,473, filed on 19 Nov. 2007, and to U.S. Provisional Application No. 61/042,938, filed on 7 Apr. 2008. The entire contents of each of U.S. application Ser. No. 12/270,257, U.S. Provisional Application No. 60/996,473, and U.S. Provisional Application No. 61/042,938 are hereby incorporated herein by reference in their entirety.The disclosure generally relates to the field of fibre-based panels with wear resistant surfaces for building panels, preferably floor panels. The disclosure relates to building panels with such wear resistance surface and to production methods to produce such panels.The present disclosure is particularly suitable for use in floating floors, which are formed of floor panels with a wood fibre core and a decorative wear resistant surface. The following description of technique, problems of known systems and objects and features of the invention will therefore, as a non-restrictive example, be aimed above all at this field of application and in particular at floorings which are similar to traditional floating wood fibre based laminate floorings. The disclosure does not exclude floors that are glued ...

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02-01-2020 дата публикации

METHOD OF MANUFACTURING OSB WITH EXTRUDED POLYMER BANDS

Номер: US20200002945A1
Автор: LINE JARROD KEVIN
Принадлежит:

A system for introducing a noise-dampening polymer in-line in the manufacturing process of a manufactured wood product to achieve higher acoustic performance in siding, sheathing, roofing, flooring, and similar applications using the manufactured wood product. Several lines or bands of the noise-dampening polymer are deposited transversely across one side or face of the product. The polymer is deposited where the product is expected to contact joists or studs. The polymer may be a viscoelastic polymer. 1. A method of producing a wood product with acoustic dampening properties , comprising the steps of:applying a noise-dampening polymer to a plurality of locations on a back face of a manufactured wood product;wherein the plurality of locations comprise a plurality of linear areas parallel to each other and a first edge of the product; andfurther wherein the plurality of linear areas are spaced at a series of pre-determined distances from the first edge and each other, said spacing selected to correspond to an end-use application with a particular spacing of joists, studs, or other flooring or framing support elements.2. The method of claim 1 , wherein the plurality of linear areas comprise an area proximate the first edge claim 1 , and an area proximate a second edge claim 1 , wherein the second edge is opposite and parallel to the first edge.3. The method of claim 1 , wherein the plurality of locations further comprise locations between the plurality of linear areas.4. The method of claim 1 , wherein the polymer is applied in a continuous line in each linear area.5. The method of claim 1 , wherein the polymer is applied intermittently in each linear area.6. The method of claim 1 , wherein the plurality of linear areas are spaced at multiples of 16 inches claim 1 , 24 inches claim 1 , or 48 inches from the first edge.7. The method of claim 1 , wherein the plurality of linear areas are spaced at multiples of 16 inches or 24 inches from the first edge.8. The method of ...

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07-01-2021 дата публикации

ASSEMBLY FOR IMPROVED INSULATION

Номер: US20210002906A1
Принадлежит:

An insulated panel assembly having improved insulative R-value. The insulated panel assembly comprises a cover panel, a first insulation layer, and at least one additional insulation layer, wherein the at least one additional insulation layer has a higher R-value than the first insulation layer. The first insulation layer is secured to the cover panel. The first insulation layer further forms at least one recessed portion. The at least one additional insulation layer is positioned in the at least one recessed portion of the first insulation layer. Examples of the at least one additional insulation layer may include vacuum insulated panels and modified atmosphere insulation panels. 1. An insulated panel assembly comprising:a first cover layer;a first insulation layer secured to the first cover layer, the first insulation layer comprising a front face, a rear face, a first end, a second end, and at least one recessed portion in the front face, the rear face, the first end, or the second end; andat least one additional insulation layer positioned in the at least one recessed portion of the first insulation layer;wherein the at least one additional insulation layer has freedom of movement within the at least one recessed portion to allow for differences in expansion and contraction rates between the at least one additional insulation layer and the first insulation layer; andwherein the at least one additional insulation layer has a higher R-value than the first insulation layer.2. The insulated panel assembly of wherein the at least one additional insulation layer is a vacuum insulated panel.3. The insulated panel assembly of wherein the at least one additional insulation layer is a MAI panel.4. The insulated panel assembly of wherein the first cover layer is a siding panel.5. The insulated panel assembly of wherein the first insulation layer is comprised expanded polystyrene foam.6. The insulated panel assembly of or further comprising:a back cover secured to the first ...

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03-01-2019 дата публикации

Insulated roof diaphragms and methods

Номер: US20190003180A1
Автор: Hill Laurie
Принадлежит:

A roof system and related methods for installing the roof system. The roof system includes a roof diaphragm including a nail board and an insulating panel connected to the nail board, wherein the insulating panel is adapted to be positioned between the nail board and a roof frame so that the insulating panel engages the roof frame. In several exemplary embodiments, the nail board comprises one or both of: oriented strand board (OSB) and plywood. In several exemplary embodiments, the insulating panel comprises one or both of: a closed-cell rigid polyisocyanurate (polyiso) foam core and a polystyrene foam core. In several exemplary embodiments, the roof system further includes a plurality of nail board fasteners connecting the roof diaphragm to the roof frame, the nail board fasteners each extending through the nail board, through the insulating panel, and into the roof frame to a depth. 1. A roof system , comprising:a roof frame; a nail board; and', a foam core; and', 'a facer bonded to a side of the foam core opposite the nail board; and, 'the insulating panel comprising, 'an insulating panel bonded to the nail board so that respective surfaces of the insulating panel and the nail board mate against one another,'}], 'a roof diaphragm connected to the roof frame, the roof diaphragm comprisingan attic space at least partially defined by the roof frame and the roof diaphragm;wherein the roof frame comprises first and second roof structural members; first and second portions of the facer are engaged with the first and second roof structural members, respectively;', 'a third portion of the facer extends between the first and second roof structural members;', 'the third portion of the facer is exposed to the attic space and is thus visible within the attic space; and', 'the nail board does not engage either the first roof structural member or the second roof structural member; and, 'wherein the insulating panel is positioned between the nail board and each of the first ...

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03-01-2019 дата публикации

METHOD AND APPARATUS FOR PANELS HAVING AN EMBEDMENT BRACKET

Номер: US20190003183A1
Автор: MOFFETT Anthony Ryan
Принадлежит:

A panel of a structure is provided that includes a first layer of material, a second layer of material, a filler material between the first layer of material and the second layer of material, and a bracket connected to the first layer of material. The bracket has a bottom flange spaced from the first layer of material. The filler material is between the first layer of material and the bottom flange securing the first layer of material to the filler material to function as an anchor and to provide embedment strength. 1. A panel comprising:a first layer of material;a second layer of material;a filler material between the first layer of material and the second layer of material; anda bracket connected to the first layer of material, the bracket having a bottom flange spaced from the first layer of material, the filler material being between the first layer of material and the bottom flange securing the first layer of material to the filler material.2. The panel of claim 1 , wherein the bracket has a non-linear shape.3. The panel of claim 1 , wherein the bracket has a top flange connected to the first layer of material.4. The panel of claim 3 , wherein the top flange is spaced from the bottom flange so that the filler material is between the top flange and the bottom flange securing the first layer of material to the filler material.5. The panel of claim 3 , wherein the top flange is connected to the bottom flange by a connector flange claim 3 , and wherein the connector flange extends in a direction so that the top flange and the bottom flange are spaced apart.6. The panel of claim 5 , wherein the connector flange extends in a direction so that the bracket is spaced from a locking mechanism that connects the panel with another panel.7. The panel of claim 1 , wherein the bracket forms a C-shape.8. The panel of claim 1 , wherein the bracket forms a Z-shape.9. The panel of claim 1 , wherein the bracket forms a J-shape.10. The panel of claim 1 , wherein the bracket has a ...

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13-01-2022 дата публикации

BUILDING PANEL ASSEMBLY AND METHOD OF MANUFACTURING

Номер: US20220010556A1
Принадлежит:

Building panel assemblies for use in the construction of new homes, commercial buildings and extensions having rectangular structural insulated panel (SIP) (), comprises a pair of spaced-apart containment boards () an inner insulating core () and a low profile peripheral external rigid frame (), preferably of metal, e.g. steel, extending around the entire periphery of the spaced-apart boards (). 1. A building panel assembly comprising a pair of spaced-apart containment boards , separated by an inner insulating core , said inner insulating core comprising one or more preformed body around which a curable insulating foam may be introduced.2. A building panel assembly as claimed in wherein each preformed body has one or more alignment members to maintain its position away from at least one of the containment boards during introduction of the curable insulating foam3. An assembly as claimed in wherein the alignment members comprise one or more protrusions extending from the surface of the preformed body.4. An assembly as claimed in having at least one peripherally disposed channel for receiving a rigid frame claim 1 , said channel spaced apart from and disposed between the containment boards.5. An assembly as claimed in wherein claim 4 , the frame defines a pair of spaced-apart longitudinal channels claim 4 , which extend around the periphery of the panel and extend into the space between the spaced-apart pair of containment boards.6. assembly as claimed in comprising at least one conduit disposed adjacent to and between the containment board and the inner insulating core.7. An assembly as claimed in having two conduits.8. An assembly as claimed in claim 1 , in which the containment boards are selected from oriented strand board claim 1 , cement particle board magnesium oxide wall board claim 1 , plywood claim 1 , pressure treated plywood claim 1 , steel claim 1 , aluminium claim 1 , fibre reinforced plastics claim 1 , or metal claim 1 , or composite sheeting.9. An ...

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