摘要:
Provided are a liquid crystal panel and a liquid crystal display apparatus each of which: contributes to a reduction in thickness; and is excellent in optical characteristics, and a method of producing the liquid crystal panel with extremely high production efficiency. A liquid crystal panel of the present invention has a first polarizer, a first protective layer, a first optical compensation layer, a first negative C plate, a liquid crystal cell, a second negative C plate, a second optical compensation layer, a second protective layer, and a second polarizer in the stated order. The first optical compensation layer is arranged between the first protective layer and the first negative C plate to be in close contact with the first protective layer without using any adhesive. The second optical compensation layer is arranged between the second negative C plate and the second protective layer to be in close contact with the second protective layer without using any adhesive. The first and second optical compensation layers are each a coating layer functioning as a λ/4 plate, and each have a thickness of 0.3 to 3 μm. The first and second negative C plates are each a coating layer, and each have a thickness of 0.5 to 10 μm.
摘要:
This invention provides a method for producing an optical film, the method comprising a rubbing treatment step of rubbing the surface of a lengthy plastic film F with a rubbing roll 4 obtained by winding a raised fabric 4a, an application step of applying a liquid crystalline molecule to the surface of the plastic film processed through said rubbing treatment step and a fixing step of fixing said applied liquid crystalline molecule. In the rubbing treatment step, the lengthy plastic film is supported and conveyed by a conveyer belt 3 having a metal surface, and plural backup rolls 5 which support the underside of the conveyer belt supporting the plastic film are disposed opposite to said rubbing roll, to set a rubbing strength RS defined by the following equation (1) to 2600 mm or more (more preferably 3400 mm or more).
摘要:
Provided are a liquid crystal panel which contributes to reduction in thickness and is excellent in optical properties and a liquid crystal display apparatus. The liquid crystal panel of the present invention includes a liquid crystal cell, a first polarizer disposed on one side of the liquid crystal cell, a second polarizer disposed on another side of the liquid crystal cell, a first optical compensation layer and a first negative C plate disposed between the first polarizer and the liquid crystal cell, and a second negative C plate and a second optical compensation layer disposed between the liquid crystal cell and the second polarizer, in which the first optical compensation layer is disposed between the first polarizer and the first negative C plate, the second optical compensation layer is disposed between the second negative C plate and the second polarizer, the first and second optical compensation layers each include a coating layer functioning as a λ/4 plate, and each have a thickness of 0.3 to 3 μm, and the first and second negative C plates each include a coating layer, and each have a thickness of 0.5 to 10 μm.
摘要:
The present invention provides a method of producing an elliptically polarizing plate including the steps of: forming a first birefringent layer on a surface of a transparent protective film; laminating a polarizer on a surface of the transparent protective film; forming a second birefringent layer on a surface of the first birefringent layer; and forming a third birefringent layer on a surface of the second birefringent layer. The first birefringent layer is arranged on the opposite side against the polarizer with respect to the transparent protective film. The step of forming the first birefringent layer includes the steps of: applying a liquid crystal material onto a substrate subjected to an alignment treatment; treating the applied liquid crystal material, so as to form the first birefringent layer on the substrate; and transferring the first birefringent layer onto a surface of the transparent protective film.
摘要:
The present invention provides a method of producing an elliptically polarizing plate including the steps of: forming a first birefringent layer on a surface of a transparent protective film; laminating a polarizer on a surface of the transparent protective film; forming a second birefringent layer on a surface of the first birefringent layer; and forming a third birefringent layer on a surface of the second birefringent layer. The first birefringent layer is arranged on the opposite side against the polarizer with respect to the transparent protective film. The step of forming the first birefringent layer includes the steps of: applying a liquid crystal material onto a substrate subjected to an alignment treatment; treating the applied liquid crystal material, so as to form the first birefringent layer on the substrate; and transferring the first birefringent layer onto a surface of the transparent protective film.
摘要:
To provide a method of producing a liquid crystal panel capable of easily realizing stable high contrast of the liquid crystal panel to be obtained at low cost, a liquid crystal panel, and an image display apparatus. There is provided a method of producing a liquid crystal panel including a first optical compensation layer having refractive index profile of nx>ny=nz and a polarizer on each side of a liquid crystal cell in the order given, in which an angle formed between an absorption axis of the polarizer (A) and a slow axis of the first optical compensation layer (B) on one side of the liquid crystal cell is +α°, an angle formed between an absorption axis of the polarizer (A′) and a slow axis of the first compensation layer (B′) on another side of the liquid crystal cell is −α°, and 0
摘要翻译:为了提供一种能够容易地实现低成本获得的液晶面板的稳定的高对比度的液晶面板的制造方法,液晶面板和图像显示装置。 提供了一种制造液晶面板的方法,该液晶面板包括具有nx> ny = nz的折射率分布的第一光学补偿层和液晶单元的每一侧上的偏振器,其中形成在 偏振器(A)的吸收轴和液晶单元一侧的第一光学补偿层(B)的慢轴为+α°,在偏振器(A')的吸收轴和 在液晶单元的另一侧的第一补偿层(B')的慢轴为α°,0 <α<90,该方法包括使由单一原始片形成的衬底经受+α °和相对于基底的纵向方向以α°的取向处理; 以及在经受+α°取向处理的表面上形成第一光学补偿层(B)并在经受α°取向处理的表面上形成第一光学补偿层(B')的步骤。
摘要:
To provide a method of producing a broadband and wide viewing angle elliptically polarizing plate having excellent properties in an oblique direction, the elliptically polarizing plate, and an image display apparatus.The method of producing an elliptically polarizing plate of the present invention includes the steps of: forming a first birefringent layer on a surface of a transparent protective film; laminating a polarizer on a surface of the transparent protective film; and forming a second birefringent layer on a surface of the first birefringent layer, in which: the first birefringent layer and the polarizer are arranged on opposite sides of the transparent protective film; the step of forming a first birefringent layer includes the steps of: applying a liquid crystal material to an alignment substrate; forming a first birefringent layer on the substrate from the liquid crystal material; and transferring the first birefringent layer to a surface of the transparent protective film; and angles α and β satisfy a predetermined relationship (where, α represents an angle formed between a slow axis of the polarizer and a slow axis of the first birefringent layer, and β represents an angle formed between the absorption axis of the polarizer and a slow axis of the second birefringent layer).
摘要:
Provided are an elliptically polarizing plate that is excellent in contrast in an oblique direction and has a broadband and a wide viewing angle, and an image display device using the elliptically polarizing plate. The elliptically polarizing plate of the present invention includes in order: a polarizer; a protective layer; a first birefringent layer having a refractive index profile of nz>nx=ny; a second birefringent layer that functions as a λ/2 plate; and a third birefringent layer that functions as a λ/4 plate. A ratio Rth1/Rthp between an absolute value Rthp of a thickness direction retardation of the protective layer and an absolute value Rth1 of a thickness direction retardation of the first birefringent layer is preferably in a range of 1.1 to 4.
摘要:
The present invention provides: a method of producing a broadband and wide viewing angle elliptically polarizing plate having excellent characteristics in an oblique direction as well; and an image display using the elliptically polarizing plate obtained through the method. The method of producing an elliptically polarizing plate according to the present invention includes the steps of: subjecting a surface of a transparent protective film to alignment treatment; forming a first birefringent layer by applying a liquid crystal composition onto the surface of the transparent protective film subjected to the alignment treatment; laminating a polarizer on a surface of the transparent protective film opposite to the surface subjected to the alignment treatment; and forming a second birefringent layer by laminating a polymer film on a surface of the first birefringent layer, in which the elliptically polarizing plate has a relationship represented by the following expression (1) 2α+40°
摘要:
The present invention provides: a method of producing a broadband and wide viewing angle elliptically polarizing plate having excellent characteristics in an oblique direction as well; and an image display using the elliptically polarizing plate obtained through the method. The method of producing an elliptically polarizing plate according to the present invention includes the steps of: subjecting a surface of a transparent protective film to alignment treatment; forming a first birefringent layer by applying a liquid crystal composition onto the surface of the transparent protective film subjected to the alignment treatment; laminating a polarizer on a surface of the transparent protective film opposite to the surface subjected to the alignment treatment; and forming a second birefringent layer by laminating a polymer film on a surface of the first birefringent layer, in which the elliptically polarizing plate has a relationship represented by the following expression (1) 2α+40°