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The invention relates to the technical field of energy-saving hollow glass, and discloses energy-saving hollow glass and a production method thereof.The energy-saving hollow glass comprises a sealing frame, an outer glass layer and an inner glass layer, the outer glass layer and the inner glass layer are installed in the sealing frame, a cavity is formed between the outer glass layer and the inner glass layer, and a first low-radiation film is bonded to the face, away from the cavity, of the outer glass layer; a second low-radiation film adheres to the face, away from the cavity, of the inner glass layer, a third low-radiation film adheres to the middle of the cavity, the cavity is divided into two sealing cavities through the third low-radiation film, and a sealing glue layer and a heat insulation layer adheres to the outer side of the sealing glue layer are installed in each sealing cavity. According to the energy-saving hollow glass, the low-radiation films with the good heat insulation effect are additionally arranged on the two sides of the inner glass layer, the outer glass layer and the cavity, so that the hollow glass has the good heat preservation performance, and by installing the heat insulation layer, indoor and outdoor energy conversion can be reduced or reduced; and heat conduction loss caused by indoor and outdoor temperature difference of the hollow glass after building installation is reduced.
本申请涉及节能中空玻璃技术领域,且公开了节能中空玻璃及其生产方法,包括密封边框、以及安装在密封边框内的外玻璃层和内玻璃层,外玻璃层与内玻璃层之间设有空腔,外玻璃层远离空腔的一面粘接有第一低辐射膜,内玻璃层远离空腔的一面粘接有第二低辐射膜,空腔的中部粘接第三低辐射膜,且通过第三低辐射膜隔隔开形成两个密封腔,密封腔内部均安装有密封胶层以及粘接在密封胶层外侧的隔热层。该节能中空玻璃,通过在内外玻璃层的两侧以及空腔内均增加了隔热效果好的低辐射膜,从而使得中空玻璃具有良好的保温热性能,通过安装隔热层,可以减少或降低室内与室外的能量转换,减少建筑安装后因中空玻璃的室内与室外的温差热传导损失。
The invention relates to the technical field of energy-saving hollow glass, and discloses energy-saving hollow glass and a production method thereof.The energy-saving hollow glass comprises a sealing frame, an outer glass layer and an inner glass layer, the outer glass layer and the inner glass layer are installed in the sealing frame, a cavity is formed between the outer glass layer and the inner glass layer, and a first low-radiation film is bonded to the face, away from the cavity, of the outer glass layer; a second low-radiation film adheres to the face, away from the cavity, of the inner glass layer, a third low-radiation film adheres to the middle of the cavity, the cavity is divided into two sealing cavities through the third low-radiation film, and a sealing glue layer and a heat insulation layer adheres to the outer side of the sealing glue layer are installed in each sealing cavity. According to the energy-saving hollow glass, the low-radiation films with the good heat insulation effect are additionally arranged on the two sides of the inner glass layer, the outer glass layer and the cavity, so that the hollow glass has the good heat preservation performance, and by installing the heat insulation layer, indoor and outdoor energy conversion can be reduced or reduced; and heat conduction loss caused by indoor and outdoor temperature difference of the hollow glass after building installation is reduced.
本申请涉及节能中空玻璃技术领域,且公开了节能中空玻璃及其生产方法,包括密封边框、以及安装在密封边框内的外玻璃层和内玻璃层,外玻璃层与内玻璃层之间设有空腔,外玻璃层远离空腔的一面粘接有第一低辐射膜,内玻璃层远离空腔的一面粘接有第二低辐射膜,空腔的中部粘接第三低辐射膜,且通过第三低辐射膜隔隔开形成两个密封腔,密封腔内部均安装有密封胶层以及粘接在密封胶层外侧的隔热层。该节能中空玻璃,通过在内外玻璃层的两侧以及空腔内均增加了隔热效果好的低辐射膜,从而使得中空玻璃具有良好的保温热性能,通过安装隔热层,可以减少或降低室内与室外的能量转换,减少建筑安装后因中空玻璃的室内与室外的温差热传导损失。
Energy-saving hollow glass and production method thereof
节能中空玻璃及其生产方法
06.12.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
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