Encapsulating material for solar cell and solar cell module
    3.
    发明授权
    Encapsulating material for solar cell and solar cell module 有权
    太阳能电池和太阳能电池组件封装材料

    公开(公告)号:US09193854B2

    公开(公告)日:2015-11-24

    申请号:US14370716

    申请日:2012-12-26

    摘要: An encapsulating material for solar cell is made of a resin composition containing a crosslinkable resin, and satisfies the following 1) and 2). 1) When the encapsulating material for solar cell is immersed in acetone at 23° C. for one hour after a crosslinking treatment in which the encapsulating material for solar cell is heated and depressurized at 150° C. and 250 Pa for three minutes, and then is heated and pressurized at 150° C. and 100 kPa for 15 minutes, an acetone-absorbing ratio is in a range of 3.5 weight % to 12.0 weight % with respect to the weight of the above-described crosslinking-treated encapsulating material for solar cell. 2) A volume resistivity of the above-described crosslinking-treated encapsulating material for solar cell, which is based on JIS K6911 and measured at a temperature of 100° C. with an applied voltage of 500 V, is in a range of 1.0×1013 Ω·cm to 1.0×1018 Ω·cm.

    摘要翻译: 太阳能电池用封装材料由含有交联性树脂的树脂组合物构成,满足下述1)和2)。 1)将太阳能电池用封装材料在交联处理后,在23℃,丙酮中浸渍1小时后,将太阳能电池用封装材料在150℃,250Pa下加热减压3分钟, 然后在150℃和100kPa下加热和加压15分钟,相对于上述交联处理的包封材料的重量,丙酮吸收比在3.5重量%至12.0重量%的范围内 太阳能电池。 2)上述用于太阳能电池的交联处理的封装材料的体积电阻率是基于JIS K6911并且在施加电压为500V的温度下在100℃下测量的体积电阻率在1.0× 1013&OHgr;·cm至1.0×1018&OHgr;·cm。

    ENCAPSULATING MATERIAL FOR SOLAR CELL AND SOLAR CELL MODULE
    5.
    发明申请
    ENCAPSULATING MATERIAL FOR SOLAR CELL AND SOLAR CELL MODULE 有权
    太阳能电池和太阳能电池模块的封装材料

    公开(公告)号:US20150000739A1

    公开(公告)日:2015-01-01

    申请号:US14370716

    申请日:2012-12-26

    IPC分类号: C08L23/08 H01L31/048

    摘要: An encapsulating material for solar cell is made of a resin composition containing a crosslinkable resin, and satisfies the following 1) and 2). 1) When the encapsulating material for solar cell is immersed in acetone at 23° C. for one hour after a crosslinking treatment in which the encapsulating material for solar cell is heated and depressurized at 150° C. and 250 Pa for three minutes, and then is heated and pressurized at 150° C. and 100 kPa for 15 minutes, an acetone-absorbing ratio is in a range of 3.5 weight % to 12.0 weight % with respect to the weight of the above-described crosslinking-treated encapsulating material for solar cell. 2) A volume resistivity of the above-described crosslinking-treated encapsulating material for solar cell, which is based on JIS K6911 and measured at a temperature of 100° C. with an applied voltage of 500 V, is in a range of 1.0×1013 Ω·cm to 1.0×1018 Ω·cm.

    摘要翻译: 太阳能电池用封装材料由含有交联性树脂的树脂组合物构成,满足下述1)和2)。 1)将太阳能电池用封装材料在交联处理后,在23℃,丙酮中浸渍1小时后,将太阳能电池用封装材料在150℃,250Pa下加热减压3分钟, 然后在150℃和100kPa下加热和加压15分钟,相对于上述交联处理的包封材料的重量,丙酮吸收比在3.5重量%至12.0重量%的范围内 太阳能电池。 2)上述用于太阳能电池的交联处理的封装材料的体积电阻率是基于JIS K6911并且在施加电压为500V的温度下在100℃下测量的体积电阻率在1.0× 1013&OHgr;·cm至1.0×1018&OHgr;·cm。

    SOLAR CELL MODULE
    7.
    发明申请
    SOLAR CELL MODULE 审中-公开
    太阳能电池模块

    公开(公告)号:US20150171247A1

    公开(公告)日:2015-06-18

    申请号:US14390437

    申请日:2013-03-14

    IPC分类号: H01L31/048

    摘要: A solar cell module (10) includes a light-incident surface protective member (14), a back surface protective member (15), solar cell elements (13), and an encapsulating layer (11) that encapsulates the solar cell elements (13) between the light-incident surface protective member (14) and the back surface protective member (15). The volume resistance per square centimeter at 85° C. between the light-incident surface protective member (14) and the solar cell element (13) is in a range of 1×1013 Ω·cm2 to 1×1017 Ω·cm2.

    摘要翻译: 太阳能电池模块(10)包括光入射表面保护构件(14),背面保护构件(15),太阳能电池元件(13)和封装太阳能电池元件(13)的封装层(11) )在光入射表面保护构件(14)和背面保护构件(15)之间。 光入射表面保护构件(14)和太阳能电池元件(13)之间在85℃下的每平方厘米的体积电阻在1×10 13Ω·cm·cm -1〜1×10 17Ω·cm·cm 2的范围内 。

    SHEET SET FOR ENCAPSULATING SOLAR BATTERY
    8.
    发明申请
    SHEET SET FOR ENCAPSULATING SOLAR BATTERY 审中-公开
    用于封装太阳能电池的表格

    公开(公告)号:US20150013768A1

    公开(公告)日:2015-01-15

    申请号:US14381055

    申请日:2013-02-22

    IPC分类号: H01L31/048

    摘要: A sheet set for encapsulating a solar battery including a first encapsulating sheet and a second encapsulating sheet which are disposed between a light-incident surface protective member and a back surface protective member, and are used to encapsulate solar battery elements is provided. When the first encapsulating sheet and the second encapsulating sheet are subjected to a heating and pressurization treatment in which the first encapsulating sheet and the second encapsulating sheet are heated and depressurized under defined conditions, a volume resistivity of the first encapsulating sheet measured under defined conditions, is higher than a volume resistivity of the second encapsulating sheet. The first encapsulating sheet is disposed between the light-incident surface protective member and the solar battery elements. The second encapsulating sheet has at least one polar group selected from a carboxyl group, an ester group, a hydroxyl group, an amino group, and an acetal group.

    摘要翻译: 提供了一种用于封装包括设置在光入射表面保护构件和背面保护构件之间的第一封装片和第二封装片的太阳能电池并用于封装太阳能电池元件的片组。 当第一密封片和第二密封片进行加热和加压处理时,在规定条件下对第一密封片和第二包封片进行加热和减压,在规定条件下测量第一包封片的体积电阻率, 高于第二封装片的体积电阻率。 第一封装片设置在光入射表面保护构件和太阳能电池元件之间。 第二包封片具有至少一个选自羧基,酯基,羟基,氨基和缩醛基的极性基团。

    Sheet set for encapsulating solar battery

    公开(公告)号:US11282975B2

    公开(公告)日:2022-03-22

    申请号:US14381055

    申请日:2013-02-22

    摘要: A sheet set for encapsulating a solar battery including a first encapsulating sheet and a second encapsulating sheet which are disposed between a light-incident surface protective member and a back surface protective member, and are used to encapsulate solar battery elements is provided. When the first encapsulating sheet and the second encapsulating sheet are subjected to a heating and pressurization treatment in which the first encapsulating sheet and the second encapsulating sheet are heated and depressurized under defined conditions, a volume resistivity of the first encapsulating sheet measured under defined conditions, is higher than a volume resistivity of the second encapsulating sheet. The first encapsulating sheet is disposed between the light-incident surface protective member and the solar battery elements. The second encapsulating sheet has at least one polar group selected from a carboxyl group, an ester group, a hydroxyl group, an amino group, and an acetal group.