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    • 1. 发明授权
    • Transparent plastic printing film
    • 透明塑料印刷膜
    • US5085932A
    • 1992-02-04
    • US523251
    • 1990-05-14
    • Noboru FujitaToru OrisakaAkira HanedaYuukichi MiyokawaJun Arikawa
    • Noboru FujitaToru OrisakaAkira HanedaYuukichi MiyokawaJun Arikawa
    • B41M5/52
    • B41M5/5254Y10S428/914Y10T428/24802Y10T428/259Y10T428/31Y10T428/31931Y10T428/31935
    • This invention relates to a transparent plastic printing film suitable for offset printing or letterpress printing where an oil ink of the oxidative polymerization type is used. An ink-setting layer composed principally of a rubbery resin and/or styrene resin is provided on at least one side of a transparent plastic film, whereby the transparent plastic printing film permits lithographic offset or the like without losing the transparency of the film. Fine ruggedness may be formed on at least one side of the transparent plastic printing film. The transparent plastic printing film may also be subjected to an antistatic treatment. Sheet-fed printing making use of the above film does not develop blocking, tacking, scratch abrasion, etc. The above-described various properties have been improved further in a transparent plastic printing film provided with an ink-setting layer, which has been formed by coating a mixture of (i) a solution of the rubbery resin and/or styrene resin and (ii) a silica sol.
    • 本发明涉及适用于使用氧化聚合型油墨的胶版印刷或凸版印刷的透明塑料印刷膜。 主要由橡胶树脂和/或苯乙烯树脂构成的油墨凝固层设置在透明塑料膜的至少一侧上,由此透明塑料印刷膜允许光刻偏移等而不损失胶片的透明度。 可以在透明塑料印刷膜的至少一侧形成微细的凹凸。 透明塑料印刷膜也可以进行抗静电处理。 使用上述膜的单张纸印刷不会产生阻塞,粘合,划痕磨损等。上述各种性能在已经形成的具有油墨设定层的透明塑料印刷膜中进一步改进 通过涂覆(i)橡胶树脂和/或苯乙烯树脂的溶液和(ii)二氧化硅溶胶的混合物。
    • 6. 发明授权
    • Method and apparatus for manufacturing micro-lens array substrate
    • 用于制造微透镜阵列基板的方法和装置
    • US06914725B2
    • 2005-07-05
    • US10642314
    • 2003-08-14
    • Noboru Fujita
    • Noboru Fujita
    • G02F1/1333B29C43/02B29D11/00G02B3/00G02F1/1335G02B27/10
    • G02B3/0031B29C35/0888B29C43/021B29C2035/0827B29D11/00278B29D11/00365B29K2021/00B29L2011/0016
    • A method for manufacturing a micro-lens array substrate according to the present invention includes the steps of: (1) disposing a stamper having a first micro-lens array pattern formed on one surface of the stamper and a second micro-lens array pattern formed on other surface of the stamper between a first transparent substrate and a second transparent substrate facing each other; and (2) removing the stamper, after forming micro-lens arrays which are made of first and second light transmitting resins respectively between the first transparent substrate and the stamper and between the second transparent substrate and the stamper, so as to fix a third light transmitting resin between the two micro-lens arrays, thereby manufacturing a micro-lens array substrate. This eliminates the need for adjustment of optical axes of the micro-lens arrays which are formed respectively on the first and second transparent substrates, thus simplifying the steps for the manufacture of a micro-lens array substrate and realizing efficient mass production of a micro-lens array substrate with a high degree of accuracy.
    • 根据本发明的微透镜阵列基板的制造方法包括以下步骤:(1)设置具有形成在压模的一个表面上的第一微透镜阵列图案的压模和形成的第二微透镜阵列图案 在第一透明基板和彼此面对的第二透明基板之间的压模的另一表面上; 以及(2)在第一透明基板和压模之间以及第二透明基板和压模之间分别形成由第一和第二透光树脂制成的微透镜阵列之后,去除压模,以便固定第三光 在两个微透镜阵列之间传输树脂,从而制造微透镜阵列基板。 这就消除了分别形成在第一和第二透明基板上的微透镜阵列的光轴的调整的需要,从而简化了用于制造微透镜阵列基板的步骤,并实现了微型透镜阵列的高效批量生产, 透镜阵列基板具有高精度。