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Photovoltaic glass mounting structure and mounting method thereof
The photovoltaic glass installation structure comprises a glass plate and further comprises a reinforcing material plate and a hanging piece set, the reinforcing material plate is fixedly connected to the glass plate, the bottom of the reinforcing material plate is flush with the bottom of the glass plate, the hanging piece set is fixedly connected to the reinforcing material plate, a fixed connection set is bonded between the glass plate and the reinforcing material plate, and the fixed connection set is fixedly connected to the glass plate. The fixed connection group comprises a double-sided sticker and structural adhesive, the double-sided sticker is adhered to the middle of one side of the reinforcing material plate, and the structural adhesive is symmetrically adhered to two sides of one side of the reinforcing material plate. The reinforcing material plate is arranged between the glass plate and the hanging piece set, the glass plate and the hanging piece set are connected through the reinforcing material plate, compared with a common connecting mode, the reinforcing material plate and the glass plate are in surface contact, the contact area of connection is increased, meanwhile, the overall strength of the glass plate is improved, and the service life of the glass plate is prolonged. And the capability of resisting wind pressure deformation is enhanced, so that the overall stability is improved.
一种光伏玻璃安装结构及其安装方法,包括玻璃板,还包括加强料板、挂件组,所述加强料板固接在所述玻璃板上,所述加强料板底部与所述玻璃板底部平齐设置,所述挂件组固接在加强料板上,所述玻璃板与所述加强料板之间粘接有固接组,所述固接组包括双面贴、结构胶,所述双面贴粘接于所述加强料板一侧的中部,所述结构胶对称的粘接在所述加强料板一侧的两边。本申请中的玻璃板与挂件组之间设置有加强料板,通过加强料板来实现玻璃板与挂件组之间的连接,相较于普通连接方式,本申请中加强料板与玻璃板之间采用面接触,增大了连接的接触面积,同时,提高了玻璃板的整体强度,增强了抵抗风压变形的能力,进而提高了整体的稳定性。
Photovoltaic glass mounting structure and mounting method thereof
The photovoltaic glass installation structure comprises a glass plate and further comprises a reinforcing material plate and a hanging piece set, the reinforcing material plate is fixedly connected to the glass plate, the bottom of the reinforcing material plate is flush with the bottom of the glass plate, the hanging piece set is fixedly connected to the reinforcing material plate, a fixed connection set is bonded between the glass plate and the reinforcing material plate, and the fixed connection set is fixedly connected to the glass plate. The fixed connection group comprises a double-sided sticker and structural adhesive, the double-sided sticker is adhered to the middle of one side of the reinforcing material plate, and the structural adhesive is symmetrically adhered to two sides of one side of the reinforcing material plate. The reinforcing material plate is arranged between the glass plate and the hanging piece set, the glass plate and the hanging piece set are connected through the reinforcing material plate, compared with a common connecting mode, the reinforcing material plate and the glass plate are in surface contact, the contact area of connection is increased, meanwhile, the overall strength of the glass plate is improved, and the service life of the glass plate is prolonged. And the capability of resisting wind pressure deformation is enhanced, so that the overall stability is improved.
一种光伏玻璃安装结构及其安装方法,包括玻璃板,还包括加强料板、挂件组,所述加强料板固接在所述玻璃板上,所述加强料板底部与所述玻璃板底部平齐设置,所述挂件组固接在加强料板上,所述玻璃板与所述加强料板之间粘接有固接组,所述固接组包括双面贴、结构胶,所述双面贴粘接于所述加强料板一侧的中部,所述结构胶对称的粘接在所述加强料板一侧的两边。本申请中的玻璃板与挂件组之间设置有加强料板,通过加强料板来实现玻璃板与挂件组之间的连接,相较于普通连接方式,本申请中加强料板与玻璃板之间采用面接触,增大了连接的接触面积,同时,提高了玻璃板的整体强度,增强了抵抗风压变形的能力,进而提高了整体的稳定性。
Photovoltaic glass mounting structure and mounting method thereof
一种光伏玻璃安装结构及其安装方法
WANG CHUNZHI (Autor:in) / WEI QINGZHU (Autor:in) / JI MINGLIANG (Autor:in) / JIANG JIANHUI (Autor:in) / XU JIAN (Autor:in) / WANG XIANLI (Autor:in)
29.04.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
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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