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    • 1. 发明授权
    • Optical film, method for producing the same, polarizing plate and image display device
    • 光学膜,其制造方法,偏光板和图像显示装置
    • US08389049B2
    • 2013-03-05
    • US12370645
    • 2009-02-13
    • Miho AsahiKenichi FukudaKatsumi InoueJun Watanabe
    • Miho AsahiKenichi FukudaKatsumi InoueJun Watanabe
    • B05D5/06
    • G02B1/113G02B1/111G02B5/3033Y10T428/249961Y10T428/265
    • An optical film, includes: a transparent support; and an optical functional layer as the outermost layer of the optical film, the optical functional layer being provided on or above the transparent support, wherein the optical functional layer has a thickness of 50 nm or more and not more than 250 nm; the optical functional layer contains low refractive index fine particles having a refractive index of not more than 1.45, high refractive index fine particles having a refractive index of 1.55 or more, and a fluorine-containing compound; the low refractive index fine particles are arranged substantially in a line on a surface of the optical functional layer on the opposite side of the transparent support; and the high refractive index fine particles are unevenly distributed in a lower part of the optical functional layer on the side of the transparent support.
    • 一种光学膜,包括:透明支撑体; 以及作为光学膜的最外层的光学功能层,所述光学功能层设置在所述透明支撑体上或上方,其中所述光学功能层的厚度为50nm以上且不大于250nm; 光学功能层包含折射率不大于1.45的低折射率微粒,折射率为1.55以上的高折射率微粒和含氟化合物; 所述低折射率微粒基本上在所述透明支撑体的相对侧上的所述光学功能层的表面上排成一行; 并且高折射率微粒不均匀地分布在透明支撑体侧的光学功能层的下部。
    • 6. 发明申请
    • Light-scattering film, polarizing plate and image display
    • 光散射膜,偏光板和图像显示
    • US20070229804A1
    • 2007-10-04
    • US11727581
    • 2007-03-27
    • Katsumi InoueJun WatanabeTetsuya AsakuraDaiki WakizakaHideyasu IshibashiIsao Ikuhara
    • Katsumi InoueJun WatanabeTetsuya AsakuraDaiki WakizakaHideyasu IshibashiIsao Ikuhara
    • G01J1/00
    • G02B5/0284G02B5/0242G02B5/0268G02F1/133504G02F1/133528G02F2201/38G02F2201/50G02F2202/28
    • A light-scattering film is provided and includes a transparent support having thereon at least a light-scattering layer. When substantially parallel light is incident on a surface of the film at an incident angle of 5°, the reflectance for an angle θ in the light-receiving part measured in a plane containing the film normal line and the incident direction is R(θ), the value obtained by normalizing R(θ) by the reflectance of regular reflection is Rrel(θ), and the value calculated from the maximum variation |dRrel(θ)/dθ|max for the angle θ is a scattering coefficient A (formula 1), the reflection coefficient B (formula 2) calculated from the scattering coefficient A and the 5° specular reflectance Rs is from 2.0 to 5.0. Scattering coefficient A=1/(10×|dRrel(θ)/dθ|max)  (Formula 1) Reflection coefficient B=2.2×log 10(Rs)−7.5×log 10(A)+5.9  (Formula 2)
    • 提供光散射膜,并且包括其上至少具有光散射层的透明支撑体。 当基本上平行的光以5°的入射角入射到膜的表面上时,在包含膜法线和入射方向的平面中测量的光接收部分中的角度θ的反射率为R(θ) 通过将正反射的反射率归一化为R(θ)所获得的值为Rrel(θ),并且从角度θ的最大变化| dRrel(θ)/dθ| max计算的值为散射系数A(公式 1),从散射系数A和5°镜面反射率Rs求出的反射系数B(式2)为2.0〜5.0。 散布系数A = 1 /(10x | dRrel(θ)/dθ| max)(公式1)<?in-line-formula description =“In-line formula”end =“lead” 公式描述=“内联公式”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?>反射系数B = 2.2xlog 10(Rs)-7.5 xlog 10(A)+5.9(公式2)<?in-line-formula description =“In-line Formulas”end =“tail”?>