首页> 外国专利> FILM SHEET WITH INK RECEIVING LAYER ALLOWING IMAGE TO BE FORMED BY PHOTOCOPYING TECHNIQUE, ON ONE SURFACE OF BASE MATERIAL FILM

FILM SHEET WITH INK RECEIVING LAYER ALLOWING IMAGE TO BE FORMED BY PHOTOCOPYING TECHNIQUE, ON ONE SURFACE OF BASE MATERIAL FILM

机译:在基材膜的一个表面上具有可通过影印技术形成图像的带有油墨接收层的膜片

摘要

PROBLEM TO BE SOLVED: To obtain an image that can display desirable display function with excellent light diffusivity by simple photocopying technique by forming an ink receiving layer on the surface of a base material film for using ink formed by mixing beads in a specific state into an ink base. ;SOLUTION: An ink receiving layer 1 of 5 μ-100 μ in thickness is formed on the surface of a base material film 2 particularly by screen printing, using ink formed by mixing beads which are spherical bodies of 5 μ-40 μ in average grain diameter, at 15-35 wt.% in an ink base. The ink base contains a component that can be solidified or hardened by polymerization, cross-linking, or the like with ionizing radiation such as ultraviolet rays or electron beams. As the beads, it is desirable to be narrow in grain diameter distribution, and glass beads, resin beads formed of a silicone resin or the like is used. In the case of the grain diameter being less than 10 μ, image quality is not improved, and in the case of being larger than 40 μ, light diffusion effect is small, and surface friction is large, so that the surface is easily flawed.;COPYRIGHT: (C)1999,JPO
机译:解决的问题:通过简单的影印技术,通过在基材膜的表面上形成油墨接收层以使用通过将特定状态的珠粒混合成油墨而形成的油墨,来获得能够以优异的光扩散性显示期望的显示功能的图像。墨水底座。 ;解决方案:尤其是通过丝网印刷在基材膜2的表面上形成厚度为5μ-100μm的墨水接收层1,该墨水接受层是通过混合平均为5μ-40μg球形的珠子而形成的墨水油墨基质中的颗粒直径为15-35 wt。%。墨汁基料包含可以通过聚合,交联等用电离辐射如紫外线或电子束固化或硬化的组分。作为珠,期望其粒径分布窄,并且使用玻璃珠,由有机硅树脂形成的树脂珠等。粒径小于10μ的情况下,无法提高画质,大于40μ的情况下,光的扩散效果小,表面摩擦大,因此容易产生表面不良。 ;版权:(C)1999,日本特许厅

著录项

  • 公开/公告号JPH11219113A

    专利类型

  • 公开/公告日1999-08-10

    原文格式PDF

  • 申请/专利权人 TEIKOKU INK SEIZO KK;

    申请/专利号JP19980019803

  • 发明设计人 YAMANASHI HIDETOSHI;TAKADA NAOTO;

    申请日1998-01-30

  • 分类号G09F3/02;B32B27/00;B41M5/00;G03G7/00;

  • 国家 JP

  • 入库时间 2022-08-22 02:33:42

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