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    • 3. 发明授权
    • Method for manufacturing a solar cell module having photovoltaic cell
sandwiched between covering materials
    • 具有夹在被覆材料之间的太阳能电池的太阳能电池模块的制造方法
    • US6113718A
    • 2000-09-05
    • US999144
    • 1997-12-29
    • Satoru YamadaTakahiro MoriIchiro KataokaHidenori ShiotsukaAyako Shiotsuka
    • Satoru YamadaTakahiro MoriIchiro KataokaHidenori ShiotsukaAyako Shiotsuka
    • H01L31/04H01L21/56H01L31/048
    • H01L31/048Y02E10/50
    • A method for manufacturing a solar cell module including a photovoltaic cell between a surface covering material and a back-surface covering material is disclosed that includes the steps of sequentially laminating a member elastically deformable in the direction of the thickness and a member having a flexural rigidity on the surface covering material and/or the back-surface covering material, and providing an external pressure to the member having the flexural rigidity to cover the photovoltaic cell with the surface covering material and the back-surface covering material. According to the above-described manufacturing method, by providing the member elastically deformable in the direction of the thickness, it is possible to prevent deformation and breakage of the photovoltaic cell and rupture of the covering materials. Furthermore, by utilizing a property such that hardness changes in accordance with an amount of deformation, possesed by the member which is deformed in the direction of the thickness, foaming of a foamed member can be homogenized. In addition, since the pressure is provided via the member having the flexural rigidity, the surfaces of the covering materials of the solar cell module are not deformed more than the amount of deformation of the member which is elastically deformed in the direction of the thickness. As a result, large undulation does not occur in the solar cell module.
    • 公开了一种在表面覆盖材料和背面覆盖材料之间包括太阳能电池的太阳能电池模块的制造方法,其包括以下步骤:在厚度方向上可弹性变形的部件和具有弯曲刚度的部件 在表面覆盖材料和/或背面覆盖材料上,并且具有弯曲刚性的构件提供外部压力以用表面覆盖材料和背面覆盖材料覆盖光伏电池。 根据上述制造方法,通过提供沿厚度方向可弹性变形的构件,可以防止光伏电池的变形和断裂以及覆盖材料的破裂。 此外,通过利用硬度根据变形量而变化的特性,其由沿厚度方向变形的构件所具有的,可以均匀化发泡构件的发泡。 此外,由于通过具有抗弯刚度的构件提供压力,所以太阳能电池模块的覆盖材料的表面不会比在厚度方向上弹性变形的构件的变形量更大地变形。 结果,在太阳能电池模块中不会发生大的起伏。