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    • 1. 发明申请
    • ENCAPSULATING MATERIAL FOR SOLAR CELL
    • 太阳能电池的封装材料
    • US20100229944A1
    • 2010-09-16
    • US12279687
    • 2007-02-16
    • Koichi NishijimaYasuhisa HosoaiYouichi Shinya
    • Koichi NishijimaYasuhisa HosoaiYouichi Shinya
    • H01L31/0203H01L31/0376C09D133/08C09D133/10
    • B32B17/10678B32B17/10697B32B17/10743H01L31/048Y02E10/50
    • The present invention provides an encapsulating material for a solar cell, which is easy to prepare a solar cell module, and excellent in processability, insulating property, non-corrosion property, transparency, heat resistance, flexibility and the like, and a solar cell module prepared by using the same. The encapsulating material for a solar cell is one consisting of a cross-linkable resin composition (A) containing an ethylene-(meth)acrylic ester copolymer as a base polymer, an organic peroxide and a crosslinking aid wherein the decomposition temperature (temperature for a half-life period of one hour) of the organic peroxide is equal to or lower than 150° C., and total compounding amount of the organic peroxide and the crosslinking aid, is in a range of from 0.5 to 5 parts by weight per 100 parts by weight of the base polymer, and compounding ratio of the organic peroxide and the crosslinking aid (organic peroxide/crosslinking aid) is in a range of from 1/5 to 1/0.1, in weight ratio.
    • 本发明提供一种太阳能电池用封装材料,其容易制备太阳能电池组件,加工性,绝缘性,非腐蚀性,透明性,耐热性,柔软性等优异,太阳能电池模块 准备使用相同的。 用于太阳能电池的封装材料是由含有乙烯 - (甲基)丙烯酸酯共聚物作为基础聚合物的交联树脂组合物(A),有机过氧化物和交联助剂组成的,其中分解温度( 有机过氧化物的半衰期为1小时)等于或低于150℃,有机过氧化物和交联助剂的总配混量在每100重量份为0.5-5重量份的范围内 基础聚合物的重量份和有机过氧化物和交联助剂(有机过氧化物/交联助剂)的配合比例以重量比计为1/5至1 / 0.1。
    • 2. 发明授权
    • Encapsulating material for solar cell
    • 太阳能电池封装材料
    • US08053086B2
    • 2011-11-08
    • US11885933
    • 2006-03-08
    • Koichi NishijimaKenji Miharu
    • Koichi NishijimaKenji Miharu
    • H02N6/00
    • B32B17/10743B32B17/10018B32B17/10036B32B17/10678B32B27/32H01L31/0481Y02E10/50Y10T428/31909Y10T428/31913
    • An encapsulating material for solar cell containing a laminated adhesive and heat resistant layer (A) and a buffering layer (B), wherein a difference in flexural modulus between the heat resistant layer (A) and the buffering layer (B) is at least 30 MPa or more, is provided. The adhesive and heat resistant layer (A) is preferably an olefin polymer (a) having a melting point (according to JIS K7121) of 75° C. or higher and having a storage elastic modulus at 150° C. of 103 Pa or more and the buffering layer (B) is preferably an olefin polymer (d) having a stiffness of 100 MPa or less. The encapsulating material for solar cell can provide superior transparency, flexibility, heat resistance and adhesiveness and can remarkably improve production efficiency of a solar cell module even when no organic peroxide is used. The encapsulating material can also exhibit a performance capable of corresponding to the thickness reduction of the solar cell element even when an organic peroxide is used. A solar cell module containing the encapsulating material is also provided.
    • 一种用于太阳能电池的封装材料,其包含层压粘合剂和耐热层(A)和缓冲层(B),其中耐热层(A)和缓冲层(B)之间的挠曲模量差为至少30 MPa以上。 粘合耐热层(A)优选为熔点(根据JIS K7121)为75℃以上且在150℃下的储能弹性模量为103Pa以上的烯烃聚合物(a) 缓冲层(B)优选为硬度为100MPa以下的烯烃聚合物(d)。 太阳能电池用封装材料可以提供优异的透明性,柔软性,耐热性和粘合性,并且即使不使用有机过氧化物,也可以显着提高太阳能电池组件的生产效率。 即使使用有机过氧化物,封装材料也可以表现出能够对应于太阳能电池元件的厚度减小的性能。 还提供了包含封装材料的太阳能电池组件。
    • 5. 发明授权
    • Process for producing encapsulating material for solar cell
    • 太阳能电池封装材料的制造方法
    • US08350147B2
    • 2013-01-08
    • US11884050
    • 2006-02-10
    • Koichi NishijimaManabu KawamotoRie SatoTetsuya Nakamura
    • Koichi NishijimaManabu KawamotoRie SatoTetsuya Nakamura
    • H01L31/0203
    • C08K5/14B32B17/10697B32B17/10788C08J3/243C08J7/12C08J7/16C08J2323/04H01G9/2068H01L31/0481Y02E10/50C08L23/04
    • The present invention provides a process for producing an encapsulating material for solar cell which makes high-speed crosslinking possible and causes no blister phenomenon without significant restrictions being imposed on the conditions for molding the encapsulating material.The present invention provides a process for producing the encapsulating material for solar cell including impregnating a molded form of an ethylene copolymer with an organic peroxide in a liquid state at normal temperature which shows a decomposition temperature (a temperature at which the half-life period is one hour) of not higher than 150° C.A process for producing the encapsulating material for solar cell in which dialkyl peroxide (A) and an organic peroxide (B) selected from peroxycarbonate and peroxyketal at a ratio by weight of 10/90 to 90/10 of (A) and (B) in a liquid state impregnate the molded form of the ethylene copolymer is a preferable embodiment of the present invention.
    • 本发明提供了一种制造太阳能电池用封装材料的方法,其可以进行高速交联,并且不会对包封材料成型的条件施加明显的限制,而不引起起泡现象。 本发明提供一种太阳能电池用封装材料的制造方法,其特征在于,在常温下以液态的有机过氧化物浸渍乙烯共聚物的模塑形式,其表现出分解温度(半衰期为 1小时)。一种太阳能电池用封装材料的制造方法,其中,过氧化碳酸二烷基酯(A)和有机过氧化物(B)以过氧碳酸酯和过氧缩酮的重量比为10/90〜 本发明优选的实施方案是浸渍乙烯共聚物的模塑形式的液态的(A)和(B)的90/10。
    • 6. 发明申请
    • Process for Producing Encapsulating Material for Solar Cell
    • 太阳能电池封装材料生产工艺
    • US20090023867A1
    • 2009-01-22
    • US11884050
    • 2006-02-10
    • Koichi NishijimaManabu KawamotoRie SatoTetsuya Nakamura
    • Koichi NishijimaManabu KawamotoRie SatoTetsuya Nakamura
    • C08F210/02
    • C08K5/14B32B17/10697B32B17/10788C08J3/243C08J7/12C08J7/16C08J2323/04H01G9/2068H01L31/0481Y02E10/50C08L23/04
    • The present invention provides a process for producing an encapsulating material for solar cell which makes high-speed crosslinking possible and causes no blister phenomenon without significant restrictions being imposed on the conditions for molding the encapsulating material.The present invention provides a process for producing the encapsulating material for solar cell including impregnating a molded form of an ethylene copolymer with an organic peroxide in a liquid state at normal temperature which shows a decomposition temperature (a temperature at which the half-life period is one hour) of not higher than 150° C.A process for producing the encapsulating material for solar cell in which dialkyl peroxide (A) and an organic peroxide (B) selected from peroxycarbonate and peroxyketal at a ratio by weight of 10/90 to 90/10 of (A) and (B) in a liquid state impregnate the molded form of the ethylene copolymer is a preferable embodiment of the present invention.
    • 本发明提供了一种制造太阳能电池用封装材料的方法,其可以进行高速交联,并且不会对包封材料成型的条件施加明显的限制,而不引起起泡现象。 本发明提供一种太阳能电池用封装材料的制造方法,其特征在于,在常温下以液态的有机过氧化物浸渍乙烯共聚物的模塑形式,其表现出分解温度(半衰期为 1小时)。一种太阳能电池用封装材料的制造方法,其中,过氧化碳酸二烷基酯(A)和有机过氧化物(B)以过氧碳酸酯和过氧缩酮的重量比为10/90〜 本发明优选的实施方案是浸渍乙烯共聚物的模塑形式的液态的(A)和(B)的90/10。
    • 10. 发明申请
    • Encapsulating Material for Solar Cell
    • 太阳能电池封装材料
    • US20090120489A1
    • 2009-05-14
    • US11885933
    • 2006-03-08
    • Koichi NishijimaKenji Miharu
    • Koichi NishijimaKenji Miharu
    • H02N6/00
    • B32B17/10743B32B17/10018B32B17/10036B32B17/10678B32B27/32H01L31/0481Y02E10/50Y10T428/31909Y10T428/31913
    • An encapsulating material for solar cell containing a laminated adhesive and heat resistant layer (A) and a buffering layer (B), wherein a difference in flexural modulus between the heat resistant layer (A) and the buffering layer (B) is at least 30 MPa or more, is provided. The adhesive and heat resistant layer (A) is preferably an olefin polymer (a) having a melting point (according to JIS K7121) of 75° C. or higher and having a storage elastic modulus at 150° C. of 103 Pa or more and the buffering layer (B) is preferably an olefin polymer (d) having a stiffness of 100 MPa or less. The encapsulating material for solar cell can provide superior transparency, flexibility, heat resistance and adhesiveness and can remarkably improve production efficiency of a solar cell module even when no organic peroxide is used. The encapsulating material can also exhibit a performance capable of corresponding to the thickness reduction of the solar cell element even when an organic peroxide is used. A solar cell module containing the encapsulating material is also provided.
    • 一种用于太阳能电池的封装材料,其包含层压粘合剂和耐热层(A)和缓冲层(B),其中耐热层(A)和缓冲层(B)之间的挠曲模量差为至少30 MPa以上。 粘合耐热层(A)优选为熔点(根据JIS K7121)为75℃以上且在150℃下的储能弹性模量为103Pa以上的烯烃聚合物(a) 缓冲层(B)优选为硬度为100MPa以下的烯烃聚合物(d)。 太阳能电池用封装材料可以提供优异的透明性,柔软性,耐热性和粘合性,并且即使不使用有机过氧化物,也可以显着提高太阳能电池组件的生产效率。 即使使用有机过氧化物,封装材料也可以表现出能够对应于太阳能电池元件的厚度减小的性能。 还提供了包含封装材料的太阳能电池组件。