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    • 1. 发明授权
    • Photosensitive resin composition
    • 感光树脂组合物
    • US5344744A
    • 1994-09-06
    • US848360
    • 1992-03-09
    • Koichi UedaKazunori KandaHidefumi Kusuda
    • Koichi UedaKazunori KandaHidefumi Kusuda
    • G03F7/00G03F7/012G03F7/027G03F7/031G03F7/032G03F7/033G03F7/038G03C1/73
    • G03F7/031Y10S430/108Y10S430/111
    • The present invention imparts elasticity, reproducibility of dots, film toughness and wear resistance to printing plates obtained therefrom, in addition to good water developability and mechanical properties, by providing a photosensitive resin composition comprising:(A) 10 to 90% by weight of specific crosslinked polymer particles having a particle size of 0.01 to 5 micron,(B) 10 to 70% by weight of a specific hydrophobic elastomer,(C) 1 to 25% by weight of a hydophilic polymer having a molecular weight of 1,000 to 1,000,000,(D) 1 to 30% by weight of a basic nitrogen-containing compound,(E) 1 to 60% by weight of a photopolymerizable ethylenically unsaturated monomer, and(F) 0.01 to 10% by weight of a photopolymerization initiator; % by weight being based on a total amount of the resin composition. The present invention also provides a flexoprinting plate obtained from the above resin composition and a process for producing the flexoprinting plate.
    • 通过提供感光性树脂组合物,除了具有良好的水显影性和机械性能外,本发明赋予了由其获得的印版的弹性,点重现性,薄膜韧性和耐磨性,所述感光性树脂组合物包含:(A)10〜90重量% 粒径为0.01〜5微米的交联聚合物颗粒,(B)10〜70重量%的特定疏水性弹性体,(C)1〜25重量%的分子量为1,000〜1,000,000的亲油性聚合物, (D)1〜30重量%的碱性含氮化合物,(E)1〜60重量%的光聚合性烯键式不饱和单体,(F)0.01〜10重量%的光聚合引发剂; 重量%为树脂组合物的总量。 本发明还提供一种由上述树脂组合物获得的柔性印刷板以及用于制造柔性印刷板的方法。
    • 4. 发明授权
    • Photosensitive resin composition
    • 感光树脂组合物
    • US5073477A
    • 1991-12-17
    • US621435
    • 1990-12-04
    • Hidefumi KusudaKatsuji KonishiKoichi Ueda
    • Hidefumi KusudaKatsuji KonishiKoichi Ueda
    • G03F7/032G03F7/027G03F7/028G03F7/031G03F7/033G03F7/038
    • G03F7/033Y10S430/108Y10S430/111
    • Disclosed is a photosensitive resin composition for flexographic printing which has high water developability and good mechanical strength. The resin composition comprises (A) a partially crosslinked copolymer prepared by a radical emulsion polymerization of a specific monomer mixture (B) a linear polymer having a molecular weight of at least 5,000, which has at least 30 mol % of a conjugated diene unit, (C) a basic nitrogen atom-containing compound, (D) a photopolymerizable ethylenically unsaturated monomer, and (E) a photopolymerization inhitiator. The present invention also provides a resin plate for flexographic printing obtained from the above mentioned resin composition and a process for preparing it. The present invention further provides a printing plate obtained from the resin plate and a process for preparing it.
    • 公开了一种用于柔性版印刷的感光性树脂组合物,其具有高水显影性和良好的机械强度。 树脂组合物包含(A)通过特定单体混合物(B)的自由基乳液聚合制备的部分交联共聚物(B)分子量至少为5,000的直链聚合物,其具有至少30mol%的共轭二烯单元, (C)含碱性氮原子的化合物,(D)可光聚合的烯属不饱和单体,和(E)光聚合吸附剂。 本发明还提供了由上述树脂组合物获得的用于柔性版印刷的树脂板及其制备方法。 本发明还提供从树脂板获得的印版及其制备方法。
    • 5. 发明授权
    • Water-developable photosensitive composition for producing relief plates
    • 用于生产浮雕板的水显影光敏组合物
    • US5175076A
    • 1992-12-29
    • US805671
    • 1991-12-17
    • Katsukiyo IshikawaHidefumi KusudaKatsuji Konishi
    • Katsukiyo IshikawaHidefumi KusudaKatsuji Konishi
    • G03F7/033
    • G03F7/033Y10S430/111Y10S430/12Y10S430/121
    • A water-developable photosensitive resin plate suitable for the manufacture of a relief printing plate having high resistance to water-based inks, high resilience and excellent form stability, which comprises:(A) a copolymer comprising units of (i) an aliphatic conjugated diene monomer (ii) and .alpha., .beta.-ethylenically unsaturated carboxylic acid and (iii) a polyfunctional vinyl monomer, optionally with (iv) a monofunctional vinyl monomer, the content of the aliphatic conjugated diene monomer (i), the .alpha., .beta.-ethylenically unsaturated carboxylic acid (ii), the polyfunctional vinyl monomer (iii) and the monofunctional vinyl monomer (iv) being respectively from about 5 to 95 mol %, from about 1 to 30 mol %, from about 0.1 to 10 mol % and 0 to 70 mol % based on the combination of those monomeric components;(B) a basic nitrogen atom-containing compound;(C) an ethylenically unsaturated monomer; and(D) a photopolymerization initiator.
    • PCT No.PCT / US87 / 02372 Sec。 371日期1990年7月12日 102(e)日期1990年7月12日PCT提交1987年9月22日PCT公布。 出版物WO88 / 02135 日本,1988年3月24日。适用于制造具有高耐水性油墨,高回弹性和优异形状稳定性的凸版印刷版的水显影感光性树脂板,其包含:(A)包含 (i)脂族共轭二烯单体(ii)和α,β-烯属不饱和羧酸和(iii)多官能乙烯基单体,任选具有(iv)单官能乙烯基单体,脂族共轭二烯单体(i) ,α,β-烯属不饱和羧酸(ii),多官能乙烯基单体(iii)和单官能乙烯基单体(iv)分别为约5至95摩尔%,约1至30摩尔%,约0.1 〜10摩尔%,0〜70摩尔%。 (B)含碱性氮原子的化合物; (C)烯属不饱和单体; 和(D)光聚合引发剂。
    • 7. 发明授权
    • Transparent conductive laminate and touch panel
    • 透明导电层压板和触摸屏
    • US08512847B2
    • 2013-08-20
    • US12739673
    • 2008-09-19
    • Haruhiko ItoKoichi UedaKazuhito KobayashiHidefumi Kusuda
    • Haruhiko ItoKoichi UedaKazuhito KobayashiHidefumi Kusuda
    • B32B3/30B32B18/00B32B27/06B32B33/00
    • B32B7/02B32B27/06B32B2307/202B32B2307/412B32B2457/208C08J7/042C08J2367/02G06F3/045Y10T428/24364Y10T428/24967Y10T428/265Y10T428/31931
    • This invention aims to provide a transparent conductive laminate excellent in sliding durability, edge-writing durability, finger writing durability and light resistance and suitable as a movable electrode substrate for a touch panel. Further, it aims to provide a touch panel using the above transparent conductive laminate. This invention is a transparent conductive laminate that is a laminate formed by laminating a polymer film, a cured resin layer-1 and a transparent conductive layer in this order, the cured resin layer-1 having concavoconvex shapes formed by phase separation of two components and containing no fine particles that impart concavoconvex shapes, and the cured resin layer-1 having an arithmetic average roughness (Ra), measured according to JIS B0601-1994, of 0.05 μm or more but less than 0.5 μm and a ten-point average roughness (Rz), measured according to JIS B0601-1982, of 0.5 μm or more but less than 2.0 μm, and a touch panel using the transparent conductive laminate.
    • 本发明旨在提供一种滑动耐久性,边缘书写耐久性,手指书写耐久性和耐光性优异的透明导电层压片,并且适合作为用于触摸面板的可动电极基板。 此外,其目的在于提供一种使用上述透明导电层压板的触摸面板。 本发明是通过层叠聚合物膜,固化树脂层-1和透明导电层而形成的层叠体的透明导电性层叠体,具有通过两相分离形成的具有凹凸形状的固化树脂层-1, 不含赋予凹凸形状的细小颗粒,根据JIS B0601-1994测定的具有算术平均粗糙度(Ra)的固化树脂层-1为0.05μm以上且小于0.5μm,十点平均粗糙度 (Rz)根据JIS B0601-1982测量为0.5μm以上且小于2.0μm,以及使用该透明导电性层叠体的触摸面板。
    • 8. 发明申请
    • TRANSPARENT CONDUCTIVE LAMINATE AND TOUCH PANEL
    • 透明导电层压板和触控面板
    • US20100289762A1
    • 2010-11-18
    • US12739673
    • 2008-09-19
    • Haruhiko ItoKoichi UedaKazuhito KobayashiHidefumi Kusuda
    • Haruhiko ItoKoichi UedaKazuhito KobayashiHidefumi Kusuda
    • G06F3/041B32B3/30
    • B32B7/02B32B27/06B32B2307/202B32B2307/412B32B2457/208C08J7/042C08J2367/02G06F3/045Y10T428/24364Y10T428/24967Y10T428/265Y10T428/31931
    • This invention aims to provide a transparent conductive laminate excellent in sliding durability, edge-writing durability, finger writing durability and light resistance and suitable as a movable electrode substrate for a touch panel. Further, it aims to provide a touch panel using the above transparent conductive laminate. This invention is a transparent conductive laminate that is a laminate formed by laminating a polymer film, a cured resin layer-1 and a transparent conductive layer in this order, the cured resin layer-1 having concavoconvex shapes formed by phase separation of two components and containing no fine particles that impart concavoconvex shapes, and the cured resin layer-1 having an arithmetic average roughness (Ra), measured according to JIS B0601-1994, of 0.05 μm or more but less than 0.5 μm and a ten-point average roughness (Rz), measured according to JIS B0601-1982, of 0.5 μm or more but less than 2.0 μm, and a touch panel using the transparent conductive laminate.
    • 本发明旨在提供一种滑动耐久性,边缘书写耐久性,手指书写耐久性和耐光性优异的透明导电层压片,并且适合作为用于触摸面板的可动电极基板。 此外,其目的在于提供一种使用上述透明导电层压板的触摸面板。 本发明是通过层叠聚合物膜,固化树脂层-1和透明导电层而形成的层叠体的透明导电性层叠体,具有通过两相分离形成的具有凹凸形状的固化树脂层-1, 不含赋予凹凸形状的细小颗粒,根据JIS B0601-1994测定的具有算术平均粗糙度(Ra)的固化树脂层-1为0.05μm以上且小于0.5μm,十点平均粗糙度 (Rz),根据JIS B0601-1982测定为0.5μm以上且小于2.0μm,以及使用该透明导电性层叠体的触摸面板。