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Imitation brick wall photovoltaic module and manufacturing method thereof
A brick-wall-imitated photovoltaic module is provided with front glass, a front transparent packaging adhesive film, a crystalline silicon cell layer and a black back packaging body which are sequentially stacked from top to bottom, a colored brick-wall-imitated grain layer is printed on a glass substrate of the front glass, and the colored brick-wall-imitated grain layer comprises a colored brick-imitated grain area and a colored mortar-imitated grain area. The colorful imitation brick line area is formed by arranging a plurality of colorful imitation brick line units in parallel in an up-down staggered mode, each colorful imitation brick line unit comprises a plurality of rectangular colorful imitation brick line single bodies, and the area between every two adjacent colorful imitation brick line single bodies and the area between every two adjacent colorful imitation brick line units form a colorful imitation mortar line area; the position of the crystalline silicon cell layer corresponding to the colorful brick-imitated grain area is a cell piece area, and the position of the crystalline silicon cell layer corresponding to the colorful mortar-imitated grain area is a non-cell piece area. The brick wall imitating effect is achieved by printing the brick wall lines on the glass, and the battery pieces are arranged in different areas to reduce the hot spot effect and increase the power generation output.
一种仿砖墙光伏组件,由上至下依次叠设有正面玻璃、正面透明封装胶膜、晶硅电池层、黑色背面封装体,正面玻璃的玻璃基材上印制有彩色仿砖墙纹路图层,彩色仿砖墙纹路图层包括彩色仿砖纹路区域和彩色仿砂浆纹路区域,彩色仿砖纹路区域由多个彩色仿砖纹路单元上下错位平行排列构成,彩色仿砖纹路单元包括多个矩形彩色仿砖纹路单体,相邻彩色仿砖纹路单体之间的区域以及相邻彩色仿砖纹路单元之间的区域构成彩色仿砂浆纹路区域,晶硅电池层对应彩色仿砖纹路区域的位置处为电池片区域,晶硅电池层对应彩色仿砂浆纹路区域的位置处为非电池片区域。本发明通过在玻璃上印制砖墙纹路以实现仿砖墙效果,并将电池片分区域排布以降低热斑效应、增加发电输出。
Imitation brick wall photovoltaic module and manufacturing method thereof
A brick-wall-imitated photovoltaic module is provided with front glass, a front transparent packaging adhesive film, a crystalline silicon cell layer and a black back packaging body which are sequentially stacked from top to bottom, a colored brick-wall-imitated grain layer is printed on a glass substrate of the front glass, and the colored brick-wall-imitated grain layer comprises a colored brick-imitated grain area and a colored mortar-imitated grain area. The colorful imitation brick line area is formed by arranging a plurality of colorful imitation brick line units in parallel in an up-down staggered mode, each colorful imitation brick line unit comprises a plurality of rectangular colorful imitation brick line single bodies, and the area between every two adjacent colorful imitation brick line single bodies and the area between every two adjacent colorful imitation brick line units form a colorful imitation mortar line area; the position of the crystalline silicon cell layer corresponding to the colorful brick-imitated grain area is a cell piece area, and the position of the crystalline silicon cell layer corresponding to the colorful mortar-imitated grain area is a non-cell piece area. The brick wall imitating effect is achieved by printing the brick wall lines on the glass, and the battery pieces are arranged in different areas to reduce the hot spot effect and increase the power generation output.
一种仿砖墙光伏组件,由上至下依次叠设有正面玻璃、正面透明封装胶膜、晶硅电池层、黑色背面封装体,正面玻璃的玻璃基材上印制有彩色仿砖墙纹路图层,彩色仿砖墙纹路图层包括彩色仿砖纹路区域和彩色仿砂浆纹路区域,彩色仿砖纹路区域由多个彩色仿砖纹路单元上下错位平行排列构成,彩色仿砖纹路单元包括多个矩形彩色仿砖纹路单体,相邻彩色仿砖纹路单体之间的区域以及相邻彩色仿砖纹路单元之间的区域构成彩色仿砂浆纹路区域,晶硅电池层对应彩色仿砖纹路区域的位置处为电池片区域,晶硅电池层对应彩色仿砂浆纹路区域的位置处为非电池片区域。本发明通过在玻璃上印制砖墙纹路以实现仿砖墙效果,并将电池片分区域排布以降低热斑效应、增加发电输出。
Imitation brick wall photovoltaic module and manufacturing method thereof
一种仿砖墙光伏组件及其制造方法
SUN AIXIANG (author) / WEI QINGZHU (author) / JI MINGLIANG (author) / CHEN JIN (author)
2023-03-21
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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