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    • 1. 发明申请
    • LIQUID CRYSTAL LIGHT CONTROL DEVICE AND METHOD FOR PRODUCING THE SAME
    • 液晶灯控制装置及其制造方法
    • US20100302476A1
    • 2010-12-02
    • US12744659
    • 2008-11-13
    • Masaatsu KidoMitsuhiro KawazuYuichi YanoDaisuke ShinikeHitoshi Shinike
    • Masaatsu KidoMitsuhiro KawazuYuichi YanoDaisuke ShinikeHitoshi Shinike
    • G02F1/1335B32B37/02
    • C09K19/544G02F1/1334Y10T156/10
    • In the production method of the present invention, an emulsion including a copolymer with a glass transition temperature (Tg) of −50 to 20° C. is obtained by the emulsion polymerization of a monomer group including a monomer A that is a (meth)acrylic acid alkyl ester (where the alkyl group is an open chain group with 1 to 20 carbon atoms or a cyclic group with 5 to 20 carbon atoms) as the main monomer and a monomer B having a carbon-carbon double bond and a nonionic hydrophilic group such as a polyoxyalkylene group, an amide group, and a hydroxyl group. Liquid crystals are dispersed in this emulsion, which is applied onto a conductive film-coated substrate. Another conductive film-coated substrate is laminated thereto, and thus a liquid crystal light control device is obtained. A monomer C having a carboxyl group and/or an amino group and a carbon-carbon double bond may be used in combination with a crosslinking agent so that a crosslinked structure is introduced into the copolymer. The present invention provides a liquid crystal light control device in which the transparency with a voltage applied and the shielding property with no voltage applied are compatible at high level.
    • 在本发明的制造方法中,通过包含单体A(甲基)丙烯酸酯单体的乳液聚合,得到玻璃化转变温度(Tg)为-50〜20℃的共聚物的乳液, 丙烯酸烷基酯(其中烷基是具有1至20个碳原子的开链基团或具有5至20个碳原子的环状基团)作为主要单体和具有碳 - 碳双键的单体B和非离子亲水性 例如聚氧化烯基,酰胺基和羟基。 将液晶分散在该乳液中,将其施加到导电膜涂覆的基底上。 将另一个导电膜涂覆的基板层压,从而获得液晶光控制装置。 具有羧基和/或氨基的单体C和碳 - 碳双键可以与交联剂组合使用,使得交联结构被引入到共聚物中。 本发明提供了一种液晶光控制装置,其中施加电压的透明度和没有施加电压的屏蔽性能在高水平上是兼容的。
    • 2. 发明授权
    • Cover glass for photoelectric conversion devices and method for producing the same
    • 光电转换装置用盖玻璃及其制造方法
    • US09188705B2
    • 2015-11-17
    • US13513972
    • 2010-11-05
    • Mizuho KoyoToru YamamotoMitsuhiro KawazuMasaatsu Kido
    • Mizuho KoyoToru YamamotoMitsuhiro KawazuMasaatsu Kido
    • B32B5/16B05D1/02G02B1/113G02B1/115H01L31/0216
    • G02B1/113G02B1/115H01L31/02168Y02E10/50Y10T428/24421
    • In order to eliminate non-uniformity in the appearance of a cover glass for photoelectric conversion devices, the reflectance curve of the cover glass is extremely flattened. Provided is a cover glass for photoelectric conversion devices that includes a glass sheet having an uneven surface such as a figured glass, and a reflection-reducing film formed on the uneven surface. The reflection-reducing film includes silica fine particles and a binder for the silica fine particles. The silica fine particles are arranged in a single layer on the top portion of the uneven surface of the glass sheet, while the silica fine particles are arranged in stacks to a thickness equivalent to at least three layers on the bottom portion of the uneven surface. The uneven surface of the glass sheet has an average spacing Sm of at least 0.4 mm but not more than 2.5 mm and an arithmetic average roughness Ra of 0.5 μm to 5 μm. The cover glass has a reflectance of at least 1.5% but not more than 3% over the entire wavelength range of 380 nm to 780 nm for incident light from the side on which the reflection-reducing film is formed.
    • 为了消除用于光电转换装置的玻璃罩外观的不均匀性,盖玻璃的反射率曲线非常扁平化。 提供一种用于光电转换装置的玻璃罩,其包括具有不平坦表面的玻璃板,例如图案玻璃,以及形成在不平坦表面上的反射减少膜。 减反射膜包括二氧化硅微粒和二氧化硅微粒的粘合剂。 二氧化硅微粒在玻璃板的不平坦表面的顶部上排列成单层,而二氧化硅微粒以不均匀表面的底部相当于三层的厚度排列。 玻璃板的不平坦表面的平均间隔Sm为至少0.4mm但不大于2.5mm,算术平均粗糙度Ra为0.5μm至5μm。 对于从形成有减反射膜的一侧的入射光,玻璃罩在380nm〜780nm的整个波长范围内具有至少1.5%且不大于3%的反射率。
    • 4. 发明申请
    • COVER GLASS FOR PHOTOELECTRIC CONVERSION DEVICES AND METHOD FOR PRODUCING THE SAME
    • 用于光电转换装置的覆盖玻璃及其制造方法
    • US20120244318A1
    • 2012-09-27
    • US13513972
    • 2010-11-05
    • Mizuho KoyoToru YamamotoMitsuhiro KawazuMasaatsu Kido
    • Mizuho KoyoToru YamamotoMitsuhiro KawazuMasaatsu Kido
    • B32B5/16B05D1/02
    • G02B1/113G02B1/115H01L31/02168Y02E10/50Y10T428/24421
    • In order to eliminate non-uniformity in the appearance of a cover glass for photoelectric conversion devices, the reflectance curve of the cover glass is extremely flattened. Provided is a cover glass for photoelectric conversion devices that includes a glass sheet having an uneven surface such as a figured glass, and a reflection-reducing film formed on the uneven surface. The reflection-reducing film includes silica fine particles and a binder for the silica fine particles. The silica fine particles are arranged in a single layer on the top portion of the uneven surface of the glass sheet, while the silica fine particles are arranged in stacks to a thickness equivalent to at least three layers on the bottom portion of the uneven surface. The uneven surface of the glass sheet has an average spacing Sm of at least 0.4 mm but not more than 2.5 mm and an arithmetic average roughness Ra of 0.5 μm to 5 μm. The cover glass has a reflectance of at least 1.5% but not more than 3% over the entire wavelength range of 380 nm to 780 nm for incident light from the side on which the reflection-reducing film is formed.
    • 为了消除用于光电转换装置的玻璃罩外观的不均匀性,盖玻璃的反射率曲线非常扁平化。 提供一种用于光电转换装置的玻璃罩,其包括具有不平坦表面的玻璃板,例如图案玻璃,以及形成在不平坦表面上的反射减少膜。 减反射膜包括二氧化硅微粒和二氧化硅微粒的粘合剂。 二氧化硅微粒在玻璃板的不平坦表面的顶部上排列成单层,而二氧化硅微粒以不均匀表面的底部相当于三层的厚度排列。 玻璃板的不平坦表面的平均间隔Sm为至少0.4mm但不大于2.5mm,算术平均粗糙度Ra为0.5μm至5μm。 对于从形成有减反射膜的一侧的入射光,玻璃罩在380nm〜780nm的整个波长范围内具有至少1.5%且不大于3%的反射率。
    • 5. 发明授权
    • Liquid crystal light control device and method for producing the same comprising a step of emulsion polymerization of monomers of a liquid crystal resin composite
    • 液晶光控制装置及其制造方法,包括液晶树脂复合体的单体的乳液聚合工序
    • US08310626B2
    • 2012-11-13
    • US12744659
    • 2008-11-13
    • Masaatsu KidoMitsuhiro KawazuYuichi YanoDaisuke ShiraishiHitoshi Shinike
    • Masaatsu KidoMitsuhiro KawazuYuichi YanoDaisuke ShiraishiHitoshi Shinike
    • G02F1/1333H01L21/00
    • C09K19/544G02F1/1334Y10T156/10
    • In the production method of the present invention, an emulsion including a copolymer with a glass transition temperature (Tg) of −50 to 20° C. is obtained by the emulsion polymerization of a monomer group including a monomer A that is a (meth)acrylic acid alkyl ester (where the alkyl group is an open chain group with 1 to 20 carbon atoms or a cyclic group with 5 to 20 carbon atoms) as the main monomer and a monomer B having a carbon-carbon double bond and a nonionic hydrophilic group such as a polyoxyalkylene group, an amide group, and a hydroxyl group. Liquid crystals are dispersed in this emulsion, which is applied onto a conductive film-coated substrate. Another conductive film-coated substrate is laminated thereto, and thus a liquid crystal light control device is obtained. A monomer C having a carboxyl group and/or an amino group and a carbon-carbon double bond may be used in combination with a crosslinking agent so that a crosslinked structure is introduced into the copolymer. The present invention provides a liquid crystal light control device in which the transparency with a voltage applied and the shielding property with no voltage applied are compatible at high level.
    • 在本发明的制造方法中,通过包含单体A(甲基)丙烯酸酯单体的乳液聚合,得到玻璃化转变温度(Tg)为-50〜20℃的共聚物的乳液, 丙烯酸烷基酯(其中烷基是具有1至20个碳原子的开链基团或具有5至20个碳原子的环状基团)作为主要单体和具有碳 - 碳双键的单体B和非离子亲水性 例如聚氧化烯基,酰胺基和羟基。 将液晶分散在该乳液中,将其施加到导电膜涂覆的基底上。 将另一个导电膜涂覆的基板层压,从而获得液晶光控制装置。 具有羧基和/或氨基的单体C和碳 - 碳双键可以与交联剂组合使用,使得交联结构被引入到共聚物中。 本发明提供了一种液晶光控制装置,其中施加电压的透明度和没有施加电压的屏蔽性能在高水平上是兼容的。