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The invention discloses a photovoltaic curtain wall double-glass assembly comprising a double-glass assembly body, the double-glass assembly body is formed by hot pressing of a first tempered glass layer, a first PO layer, a battery pack layer, a second PO layer and a second tempered glass layer, and a first light-transmitting plate is connected to the edge of the top face of the double-glass assembly body in a glued mode. The photovoltaic curtain wall double-glass assembly has the beneficial effects that the edges of the two faces of the double-glass assembly body are connected with the firstlight-transmitting plate and the second light-transmitting plate in the glued mode correspondingly, and then a bearing structure is provided for installation of the rubber frame; a rubber frame of arectangular structure is embedded in the periphery of a double-glass assembly body; lining strips on the inner side face of the rubber frame are promoted to extend into the gap between the first light-transmitting plate and the second light-transmitting plate, the tightness and integrating degree of connection between the rubber frame and the double-glass assembly body can be improved through cooperation of the multiple abutting strips on the side faces of the lining strips and the coated rubber face, and therefore coating type protection is conducted on the double-glass assembly body on the basis of an original frameless structure. And the problem of glue failure and layering of the double-glass assembly body is effectively solved.
本发明公开了光伏幕墙双玻组件,包括双玻组件本体,所述双玻组件本体由第一钢化玻璃层、第一PO层、电池组层、第二PO层和第二钢化玻璃层热压而成,所述双玻组件本体顶面的边缘处胶合连接有第一透光板。有益效果:本发明通过在双玻组件本体两个面的边缘处分别胶合连接有第一透光板和第二透光板,进而给予橡胶框的安装提供了承载结构,通过将矩形结构的橡胶框嵌套在双玻组件本体外围,促使橡胶框内侧面的内衬条伸入第一透光板和第二透光板的间隙中,配合内衬条侧面的多个抵条以及涂覆的胶面,能够增加橡胶框与双玻组件本体连接的紧密性和契合度,从而在原有无边框的基础上对双玻组件本体进行包覆式防护,有效避免双玻组件本体开胶分层的问题。
The invention discloses a photovoltaic curtain wall double-glass assembly comprising a double-glass assembly body, the double-glass assembly body is formed by hot pressing of a first tempered glass layer, a first PO layer, a battery pack layer, a second PO layer and a second tempered glass layer, and a first light-transmitting plate is connected to the edge of the top face of the double-glass assembly body in a glued mode. The photovoltaic curtain wall double-glass assembly has the beneficial effects that the edges of the two faces of the double-glass assembly body are connected with the firstlight-transmitting plate and the second light-transmitting plate in the glued mode correspondingly, and then a bearing structure is provided for installation of the rubber frame; a rubber frame of arectangular structure is embedded in the periphery of a double-glass assembly body; lining strips on the inner side face of the rubber frame are promoted to extend into the gap between the first light-transmitting plate and the second light-transmitting plate, the tightness and integrating degree of connection between the rubber frame and the double-glass assembly body can be improved through cooperation of the multiple abutting strips on the side faces of the lining strips and the coated rubber face, and therefore coating type protection is conducted on the double-glass assembly body on the basis of an original frameless structure. And the problem of glue failure and layering of the double-glass assembly body is effectively solved.
本发明公开了光伏幕墙双玻组件,包括双玻组件本体,所述双玻组件本体由第一钢化玻璃层、第一PO层、电池组层、第二PO层和第二钢化玻璃层热压而成,所述双玻组件本体顶面的边缘处胶合连接有第一透光板。有益效果:本发明通过在双玻组件本体两个面的边缘处分别胶合连接有第一透光板和第二透光板,进而给予橡胶框的安装提供了承载结构,通过将矩形结构的橡胶框嵌套在双玻组件本体外围,促使橡胶框内侧面的内衬条伸入第一透光板和第二透光板的间隙中,配合内衬条侧面的多个抵条以及涂覆的胶面,能够增加橡胶框与双玻组件本体连接的紧密性和契合度,从而在原有无边框的基础上对双玻组件本体进行包覆式防护,有效避免双玻组件本体开胶分层的问题。
Photovoltaic curtain wall double-glass assembly
光伏幕墙双玻组件
ZHU JING (author)
2021-04-02
Patent
Electronic Resource
Chinese
IPC:
H01L
Halbleiterbauelemente
,
SEMICONDUCTOR DEVICES
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
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