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    • 1. 发明授权
    • Optical film
    • 光学胶片
    • US07128952B2
    • 2006-10-31
    • US10509759
    • 2003-05-21
    • Nao MurakamiYuuichi NishikoujiMasaki HayashiHiroyuki Yoshimi
    • Nao MurakamiYuuichi NishikoujiMasaki HayashiHiroyuki Yoshimi
    • G02F1/3363
    • B32B27/08B32B27/306B32B2307/42B32B2457/202B32B2551/00G02B5/3083Y10T428/10Y10T428/1036
    • An optical film including a transparent polymer film (b) and a birefringent layer (a) formed of a polymer and laminated above the transparent polymer film (b) is provided. The birefringent layer (a) and the transparent polymer film (b) satisfy the following formula (1), the birefringent layer (a) satisfies the following formulae (2) and (3), and the polymer forming the birefringent layer (a) has a weight-average molecular weight in the range between 10,000 and 400,000 inclusive. Δn(a)>Δn(b)×10  (1) 1
    • 提供了一种包括透明聚合物膜(b)和由聚合物形成并层压在透明聚合物膜(b)上方的双折射层(a)的光学膜。 双折射层(a)和透明聚合物膜(b)满足下式(1),双折射层(a)满足下式(2)和(3),形成双折射层(a)的聚合物 重均分子量在10,000和400,000之间的范围内。 <?in-line-formula description =“在线公式”end =“lead”?> Deltan(a)> Deltan(b)x10(1)<?in-line-formula description =“In-line Formulas” end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 1 <(nx-nz)/(nx-ny)(2) -formulae description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> 0.0005 <= Deltan(a)<= 0.5 3)<?in-line-formula description =“In-line Formulas”end =“tail”?>该光学膜可以防止虹膜的发生,裂缝的发生和延迟的变化的发生。
    • 4. 发明授权
    • Optical sheet, polarizer and liquid-crystal display device
    • 光学片,偏光片和液晶显示装置
    • US06881456B2
    • 2005-04-19
    • US09955928
    • 2001-09-20
    • Shuuji YanoYuuichi Nishikouji
    • Shuuji YanoYuuichi Nishikouji
    • G02B5/30G02F1/1335G02F1/13363G02F1/139
    • G02F1/1393G02F1/133634Y10T428/10Y10T428/1036Y10T428/1041
    • An optical sheet constituted by a retardation film; and a transparent layer provided on one of opposite surfaces of the retardation film. The retardation film exhibits Nz=(nx−nz)/(nx−ny) in a range of from 0.6 to 0.9 and (nx−ny)d in a range of from 200 to 350 nm in which d is a thickness of the retardation film, nz is a refractive index in a direction of a Z axis expressing a direction of the thickness d of the retardation film, nx is a refractive index in a direction of an X axis expressing a direction of the retardation film in a plane perpendicular to the Z axis while the X axis also expresses a direction of the highest in-plane refractive index, and ny is a refractive index in a direction of a Y axis expressing a direction of the retardation film perpendicular both to the Z axis and to the X axis. The transparent layer has a thickness not larger than 10 μm and exhibits refractive index anisotropy of nx≈ny>nz.
    • 由延迟膜构成的光学片; 以及设置在相位差膜的相对表面之一上的透明层。 延迟膜在200〜350nm的范围内,表现为0.6〜0.9,(nx-ny)d的范围内的Nz =(nx-nz)/(nx-ny),其中d为延迟的厚度 膜,nz是表示延迟膜的厚度d的方向的Z轴方向的折射率,nx是表示在与垂直于相邻膜的平面相关的平面中的相位差膜的方向的X轴方向的折射率 Z轴,而X轴也表示最高的面内折射率的方向,ny是表示相对于Z轴垂直的延迟膜的方向的Y轴的方向的折射率,X 轴。 透明层的厚度不大于10μm,折射率各向异性为nx≈ny> nz。
    • 6. 发明授权
    • Method for manufacturing a birefringent film
    • 双折射膜的制造方法
    • US07494689B2
    • 2009-02-24
    • US10940622
    • 2004-09-15
    • Masaki HayashiNao MurakamiYuuichi NishikoujiHiroyuki Yoshimi
    • Masaki HayashiNao MurakamiYuuichi NishikoujiHiroyuki Yoshimi
    • B05D5/06
    • G02B5/3083Y10T428/1036
    • It is an object of the present invention to provide a method for manufacturing a birefringent film that can reduce the amount of a remaining solvent in the birefringent film without degrading appearance uniformity or an alignment in its thickness direction. The method of the present invention for manufacturing an optical film includes the steps of: coating a base with a polymer solution obtained by dissolving a polyimide-containing polymer in a solvent so as to form a coating film; and drying the coating film so as to form a birefringent film, in which the drying step includes at least two stages of drying processes. The drying step preferably include two stages of the drying processes, and a temperature in the former stage of the drying process is preferably lower than a temperature in the latter stage of the drying process. If adding a step of providing the birefringent film with an anisotropy of a refractive index in an in-plane direction, a birefringent film with an optical biaxiality can be manufactured.
    • 本发明的目的是提供一种制造双折射膜的方法,其可以减少双折射膜中剩余溶剂的量而不降低其外观均匀性或其厚度方向的取向。 本发明的制造光学薄膜的方法包括以下步骤:用通过将含聚酰亚胺的聚合物溶解在溶剂中而获得的聚合物溶液涂覆底部以形成涂膜; 并干燥涂膜以形成双折射膜,其中干燥步骤包括至少两个阶段的干燥过程。 干燥步骤优选包括两个阶段的干燥过程,干燥过程的前一阶段的温度优选低于干燥过程后期的温度。 如果增加在面内方向上提供折射率的各向异性的双折射膜的步骤,则可以制造具有光学双轴性的双折射膜。
    • 9. 发明申请
    • Optical film and its manufacturing method
    • 光学薄膜及其制造方法
    • US20060055853A1
    • 2006-03-16
    • US10522380
    • 2003-07-29
    • Nao MurakamiHiroyuki YoshimiYuuichi NishikoujiMasaki Hayashi
    • Nao MurakamiHiroyuki YoshimiYuuichi NishikoujiMasaki Hayashi
    • G02F1/1335
    • G02B5/3016G02F1/133528
    • The present invention relates to an optical film that is excellent in optical properties and can be produced at low cost. In the optical film formed by laminating a transparent polymer film layer and a birefringent layer of a non-liquid crystalline polymer, the birefringent layer satisfies a condition represented by nx≧ny>nz and the in-plane retardation of the transparent polymer film layer is 50 nm or less. In the above formula, nx, ny and nz are the refraction indices in the X-, Y- and Z-axes directions of the birefringent layer, respectively. The X-axis direction is the axial direction in which the refraction index shows a maximum value in the in-plane direction of the birefringent layer, the Y-axis direction is the axial direction perpendicular to the X-axis direction in the plane, and the Z-axis direction is the thickness direction perpendicular to the X- and Y-axes directions.
    • 本发明涉及光学性能优异且可以低成本制造的光学膜。 在通过层叠透明聚合物膜层和非液晶聚合物的双折射层而形成的光学膜中,双折射层满足由nx> = ny> nz表示的条件,并且透明聚合物膜层的面内相位差 为50nm以下。 在上述公式中,nx,ny和nz分别是双折射层的X,Y和Z轴方向上的折射率。 X轴方向是折射率在双折射层的面内方向上呈现最大值的轴向,Y轴方向为与该平面中的X轴方向垂直的轴向, Z轴方向是与X轴方向和Y轴方向垂直的厚度方向。