Transparent film and optical compensatory film, polarizing plate and liquid-crystal display device employing it
A transparent film and film technology, applied in optics, polarizing elements, nonlinear optics, etc., can solve the problems of biaxial film axis offset, image plane, unevenness, etc.
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[0137] The transparent film of the present invention can be formed from a hot melt of a thermoplastic polymer resin, or a homogeneous solution of a polymer (solvent casting method). In the case of film formation that is a hot melt of resin, various additives (for example, optical anisotropy-reducing compounds, wavelength dispersion controllers, ultraviolet inhibitors, plasticizers, antioxidants, fine particles, etc.) , optical performance control agent) was added to it. On the other hand, when a transparent film is formed from a polymer solution (hereinafter referred to as a dope), various additives (for example, compounds for reducing optical anisotropy, wavelength Dispersion control agent, UV inhibitor, plasticizer, antioxidant, fine particles, optical performance control agent) are added to the dope. These additives are described below. These additives may be added to the dope at any time during the preparation of the dope. For example, the dope preparation method may in...
Embodiment 1-1
[0522] (Formation of transparent film)
[0523] Polycarbonate film "Panlite C1400" (available from Teijin Chemical), thermoplastic norbornene resin (JSR's Arton) and Zeonoa (available from Nippon Zeon) were dissolved in methylene chloride to prepare a solution. Compounds having reduced optical anisotropy (Re(λ) and Rth(λ)) shown in Table 1-1 were added to the solution in a predetermined amount relative to the polymer solid content of the solution, and the resulting solution was cast A transparent thin film (001-006) with a thickness of 40 µm was formed. As for its optical properties, it is understood that the positiveness / negativeness of Rth of the transparent thin film of the present invention, 002, 004 and 006 are opposite at 400nm and 700nm.
[0524]
[0525] (Preparation of Polarizer)
[0526] A roll-shaped polyvinyl alcohol film with a thickness of 80 μm was continuously stretched 5 times in an iodine aqueous solution, and dried to obtain a polarizing film with a thi...
Embodiment 1-2
[0528] (Formation of transparent film)
[0529] (Preparation of Cellulose Acylate Solution)
[0530] Using the different cellulose acylates in Tables 1-2, the following compositions were put into a mixing tank and stirred to dissolve the components, whereby cellulose acylate solutions were prepared.
[0531] (Composition of Cellulose Acylate Solution)
[0532] Cellulose acylate 100.0 parts by weight
[0533] Dichloromethane (first solvent) 402.0 parts by weight
[0534] Methanol (the second solvent) 60.0 parts by weight
[0535] (Preparation of matting agent solution)
[0536] 20 parts by weight of silica particles having an average particle diameter of 16 nm (Aerosil R972 from Nippon Aerosil) and 80 parts by weight of methanol were thoroughly stirred and mixed for 30 minutes to prepare a silica particle dispersion. This dispersion liquid was added to a disperser together with the following composition, and stirred therein again for 30 minutes or longer to dissolve these ...
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Abstract
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