Thin-Film Laminate
    1.
    发明申请
    Thin-Film Laminate 审中-公开
    薄膜层压板

    公开(公告)号:US20080268215A1

    公开(公告)日:2008-10-30

    申请号:US10594933

    申请日:2005-03-30

    IPC分类号: B32B7/02 G02B1/10 G02B1/11

    摘要: Disclosed is a thin-film laminate which could have effectively prevented interface reflection and the occurrence of interference fringes by rendering the interface substantially absent. The thin-film laminate comprises: a light-transparent base material; and an antistatic layer and a hardcoat layer provided in that order on the light-transparent base material, wherein the interface of the light-transparent base material and the antistatic layer is substantially absent and/or the interface of the antistatic layer and the hardcoat layer is substantially absent.

    摘要翻译: 公开了一种薄膜层压体,其可以通过使界面基本上不存在而有效地防止界面反射和干涉条纹的发生。 薄膜层叠体包括:透光基材; 以及在透光性基材上依次设置的抗静电层和硬涂层,其中,基本上不存在透光性基材和抗静电层的界面和/或抗静电层与硬涂层的界面 基本上不存在。

    Anti-dazzling film
    2.
    发明授权
    Anti-dazzling film 有权
    抗眩目的电影

    公开(公告)号:US07560158B2

    公开(公告)日:2009-07-14

    申请号:US10606276

    申请日:2003-06-26

    摘要: Disclosed is an anti-dazzling film which, when provided on the surface of a display, can prevent the dazzle of the display caused by reflection of light introduced through a window, light emitted from room lighting equipment, etc. with high efficiency and, at the same time, can suppress whitening and scintillation in the surface of the display. The anti-dazzling film comprises a transparent substrate film and an anti-dazzling layer provided on one side of the transparent substrate film. The anti-dazzling layer is a layer which has been formed from at least an ionizing radiation-curable resin and transparent fine particles. The transparent fine particles satisfy requirements represented by formulae (I) and (II): 2.0 μm≦d50%≦5.0 μm (I) and 0.5 μm≦(d84%−d16%)/2≦1.2 μm (II) wherein d84% represents a particle diameter corresponding to a point of 84% in a cumulative curve of a particle size distribution assuming that the total weight of the transparent fine particles is 100%; d50% represents a particle diameter corresponding to a point of 50% in the cumulative curve of a particle size distribution; and d16% represents a particle diameter corresponding to a point of 16% in the cumulative curve of a particle size distribution.

    摘要翻译: 本发明公开了一种防炫目的胶片,其在显示器的表面设置时能够高效地防止由室内照明设备等引入的光的反射引起的显示器的眩目, 同时,可以抑制显示器表面的美白和闪烁。 防眩光膜包括透明基材膜和设置在透明基材膜的一侧上的抗眩光层。 防晕层是至少由电离辐射固化树脂和透明微粒形成的层。 透明细颗粒满足式(I)和(II)表示的要求:2.0μm(d)50%<=5.0μm(I)和0.5μm<=(d84%-d16%)/ 2 <=1.2μm ),其中d84%表示相对于粒度分布的累积曲线中84%点的粒径,假定透明微粒的总重量为100%; d50%表示在粒度分布的累积曲线中对应于50%的点的粒径; d16%表示在粒度分布的累积曲线中相当于16%点的粒径。

    Optical laminate
    3.
    发明授权
    Optical laminate 有权
    光学层压板

    公开(公告)号:US07585560B2

    公开(公告)日:2009-09-08

    申请号:US11226077

    申请日:2005-09-14

    IPC分类号: B32B5/16 B32B27/32

    摘要: The present invention discloses an optical laminate that exhibits optical properties such as reflection prevention and interference fringe prevention. The optical laminate comprises: a light transparent base material; and an anti-dazzling layer provided on the light transparent base material, wherein the anti-dazzling layer having been formed by applying a composition for an anti-dazzling layer onto the light transparent base material, and a penetrable solvent and a resin contained in the composition for an anti-dazzling layer penetrate into the light transparent base material so that the resin and the light transparent base material perfectly uniformly blended together to form a penetrating layer.

    摘要翻译: 本发明公开了一种光学层叠体,其具有防止反射和防止干涉条纹等光学特性。 光学层压体包括:透光基材; 以及设置在透光基材上的抗眩光层,其中通过将抗眩光层用组合物涂布在透光性基材上形成的抗眩光层,以及包含在透光性基材中的可透过溶剂和树脂 用于防晕层的组合物穿透到透明基材中,使得树脂和透光基材完全均匀地共混在一起形成穿透层。

    Optical laminate
    4.
    发明申请

    公开(公告)号:US20060134428A1

    公开(公告)日:2006-06-22

    申请号:US11226077

    申请日:2005-09-14

    IPC分类号: B32B23/00

    摘要: The present invention discloses an optical laminate that exhibits optical properties such as reflection prevention and interference fringe prevention. The optical laminate comprises: a light transparent base material; and an anti-dazzling layer provided on the light transparent base material, wherein the anti-dazzling layer having been formed by applying a composition for an anti-dazzling layer onto the light transparent base material, and a penetrable solvent and a resin contained in the composition for an anti-dazzling layer penetrate into the light transparent base material so that the resin and the light transparent base material perfectly uniformly blended together to form a penetrating layer.