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    • 4. 发明授权
    • Optical member cell substrate and liquid-crystal display
    • 光学元件单元基板和液晶显示器
    • US06208397B1
    • 2001-03-27
    • US09387733
    • 1999-09-01
    • Kiichi ShimodairaMasayuki SatakeToshiyuki UmeharaHiroshi Sugawa
    • Kiichi ShimodairaMasayuki SatakeToshiyuki UmeharaHiroshi Sugawa
    • G02F11333
    • G02F1/1335G02F1/1333
    • There is provided an optical member having an optical material and a tacky layer provided on at least one surface of the optical material. The tacky layer has an initial adhesive force of not smaller than 400 g per 25 mm based on 90° peeling from a resin substrate and has an adhesive force of not larger than 1000 g per 25 mm after heating at 70° C. for 5 hours. There is also provided a cell substrate made of a resin substrate. The resin substrate has an initial adhesive force of not smaller than 400 g per 25 mm on based on 90° peeling from the tacky layer provided on the optical material and having an adhesive force of not larger than 1000 g per 25 mm after heating at 70° C. for 5 hours. And there is provided a liquid-crystal display in which the optical member is adhesively bonded through the tacky layer of the optical member to the surface of a liquid-crystal cell formed by used of the cell substrate.
    • 提供了一种光学构件,其具有设置在光学材料的至少一个表面上的光学材料和粘性层。 粘合层的初始粘合力基于从树脂基材的90°剥离而不小于400g / 25mm,并且在70℃下加热5小时后具有不大于1000g / 25mm的粘合力 。 还提供了由树脂基板制成的电池基板。 树脂基板的初始粘合力为基于从设置在光学材料上的粘性层90°剥离而不超过每25mm on的400g的初始粘合力,并且在70℃加热后具有不大于1000g / 25mm的粘合力 ℃5小时。 并且提供了一种液晶显示器,其中光学构件通过光学构件的粘性层粘合到通过使用单元基板形成的液晶单元的表面。
    • 7. 发明授权
    • Multilayered resin plate and process for producing the same
    • 多层树脂板及其制造方法
    • US06565975B2
    • 2003-05-20
    • US09736179
    • 2000-12-15
    • Toshiyuki UmeharaYoshimasa Sakata
    • Toshiyuki UmeharaYoshimasa Sakata
    • B32B2738
    • B32B27/08B29C39/203B32B27/18B32B27/38B32B37/0007B32B2038/0076B32B2305/72B32B2307/734B32B2310/0831B32B2363/00B32B2457/12B32B2457/208Y10T428/1086Y10T428/24612Y10T428/31511
    • A cured resin plate which is reduced in undulation and has excellent flatness even when having a thickness of 100 &mgr;m or larger or a size exceeding 2 inches; and a process for efficiently mass-producing the resin plate. The process comprises spreading a resinous coating fluid A on a support (5) having a smooth surface to form an unsolidified or solidified coating layer, spreading thereon a resinous coating fluid B which is the same as or different from the coating fluid A to form two or more superposed layers of the coating fluid B, and solidifying the layers (12, 22, and 42) separately or simultaneously to thereby form superposed resin layers (1, 2, and 4) adhered to each other which comprise two or more adjacent cured resin layers (1 and 2). The multilayered resin plate comprises superposed layers adhered to each other which are composed of a thermoset epoxy resin layer and superposed thereon a thermoset epoxy resin layer having a smaller thickness than that layer. The multilayered resin plate can be continuously produced by the process in which resinous coating fluids are spread. The resin plate can be reduced in undulation because it comprises cured resin layers superposed on each other.
    • 固化树脂板,即使在厚度为100μm以上或者尺寸超过2英寸的情况下,起伏减小,平坦度也优异, 以及有效地批量生产树脂板的方法。 该方法包括将树脂涂布液A铺展在具有光滑表面的支撑体(5)上以形成未固化或固化的涂层,在其上铺展与涂布液A相同或不同的树脂涂布液B,形成两个 或更多的涂层流体B的叠层,并且分别或同时地固化层(12,22和42),从而形成彼此粘附的叠置的树脂层(1,2和4),所述叠置树脂层(1,2和4)包括两个或更多个相邻的固化 树脂层(1和2)。 多层树脂板包括由热固性环氧树脂层构成的彼此粘合的叠层,并且叠置有厚度小于该层的热固性环氧树脂层。 可以通过涂布树脂涂布液的方法连续制造多层树脂板。 由于树脂板包括彼此重叠的固化树脂层,所以可以减少起伏的波动。