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    • 15. 发明申请
    • ANTI-SMUDGE HARD COAT AND ANTI-SMUDGE HARD COAT PRECURSOR
    • 防伪硬帽和防硬硬包装前身
    • WO2014022363A3
    • 2014-06-12
    • PCT/US2013052677
    • 2013-07-30
    • 3M INNOVATIVE PROPERTIES COUEDA SAORISUGIYAMA NAOTATAKAMATSU YORINOBU
    • UEDA SAORISUGIYAMA NAOTATAKAMATSU YORINOBU
    • C09D4/00
    • C09D5/00C09D4/00C09D7/65C09D7/69C09D133/16C08F230/08C08F2222/1086C08F2222/1093
    • A hard coat including a nanoparticle mixture and a binder, the nanoparticles constituting from 40 to 95 mass% of an entire mass of the hard coat; from 10 to 50 mass% of the nanoparticles having an average particle size within a range of 2 to 200 nm; from 50 to 90 mass% of the nanoparticles having an average particle size within a range of 60 to 400 nm; a ratio of the average particle size of nanoparticles having an average particle size within the range of 60 to 400 nm to the average particle size of nanoparticles having an average particle size within the range of 2 to 200 nm being within a range of 2:1 to 200:1; and the binder including a polyfunctional fluorinated (meth)acrylic compound, a reaction product thereof, or a combination thereof. The polyfunctional fluorinated (meth)acrylic compound comprises cyclic siloxane units. The particle size distribution of the nanoparticles is bimodal or multimodal.
    • 包含纳米颗粒混合物和粘合剂的硬质涂层,所述纳米颗粒占所述硬质涂层整体质量的40〜95质量% 10〜50质量%的平均粒径为2〜200nm的纳米粒子; 50〜90质量%的平均粒径为60〜400nm的纳米粒子; 平均粒径在60〜400nm范围内的纳米粒子的平均粒径与平均粒径在2〜200nm范围内的纳米粒子的平均粒径的比例在2:1以下 至200:1; 并且所述粘合剂包括多官能的氟化(甲基)丙烯酸化合物,其反应产物或其组合。 多官能的氟化(甲基)丙烯酸类化合物包含环状硅氧烷单元。 纳米颗粒的粒度分布是双峰的或多峰的。
    • 17. 发明申请
    • SOLAR CELL MODULE MANUFACTURING METHOD
    • 太阳能电池模块制造方法
    • WO2013022629A2
    • 2013-02-14
    • PCT/US2012/048765
    • 2012-07-30
    • 3M INNOVATIVE PROPERTIES COMPANYAKIYAMA, HirokoHARADA, TakashiTAKAMATSU, YorinobuSEE, Shirlene,
    • AKIYAMA, HirokoHARADA, TakashiTAKAMATSU, YorinobuSEE, Shirlene,
    • H01L31/042H01L31/18
    • H01L31/02008H01L31/0512Y02E10/50
    • To provide a method of manufacturing a solar cell module capable of minimizing the degradation in properties of the solar cell, and so on, due to heating associated with the connection between the solar cell and the electrically conductive sheet, and that is capable of obtaining excellent connection reliability that can withstand long term heat cycling. Resolution Means: A method of manufacturing a solar cell module that includes a solar cell and an electrically conductive sheet that is electrically connected to the solar cell, method including: thermally bonding a stacked body that includes an electrode of the solar cell and the electrically conductive sheet disposed in opposition to each other with an adhesive film that is applied to one surface of the electrically conductive sheet disposed therebetween, to harden the adhesive film, and electrically connect the electrode and the electrically conductive sheet, wherein the adhesive film is formed from at least thermosetting epoxy resin, latent hardener, and organic elastic fine particles, and the content of the organic elastic fine particles in the adhesive film is 20 to 55 mass% of the total mass of the adhesive film.
    • 为了提供一种太阳能电池模块的制造方法,该太阳能电池模块能够使太阳能电池和导电片之间的连接相关联的加热使太阳能电池的性能降低等降低,并且能够获得优异的 可承受长期热循环的连接可靠性。 解决方法:一种制造太阳能电池组件的方法,该太阳能电池模块包括太阳能电池和与太阳能电池电连接的导电片,其方法包括:将包括太阳能电池的电极和导电 使用涂布在其间的导电片的一个表面上的粘合剂膜彼此相对设置的片材,使粘合剂膜硬化,并将电极和导电片材电连接,其中粘合剂膜由 最低热硬化性环氧树脂,潜在硬化剂和有机弹性微粒,粘合膜中有机弹性微粒的含量为粘合膜总质量的20〜55质量%。