METHOD FOR MANUFACTURING POLARIZING PLATE
The present application relates to a method for manufacturing a polarizing plate. The present application can provide a method for manufacturing a polarizing plate, wherein the manufacturing processes are simple and the manufacturing cost can be reduced. Such a polarizing plate can be used as an optical compensation polarizing plate in various display devices.
1 . A method for manufacturing a polarizing plate comprising a step of laminating a first laminate comprising a carrier film and a vertically aligned liquid crystal layer, and a second laminate comprising a negative biaxial retardation film and a polarizer via an adhesive layer to manufacture a third laminate.
2 . The method for manufacturing a polarizing plate according to claim 1 , wherein the first laminate further comprises a vertical alignment film between the carrier film and the vertically aligned liquid crystal layer.
3 . The method for manufacturing a polarizing plate according to claim 2 , wherein a peel force between the vertical alignment film and the carrier film at a peel angle of 180° and a peel rate of 300 mm/min is 15 N/20 mm or less.
4 . The method for manufacturing a polarizing plate according to claim 2 , wherein the vertical alignment film comprises a photo-orientational compound and an acrylate with trifunctionalities or more.
5 . The method for manufacturing a polarizing plate according to claim 1 , wherein the first laminate comprises no protective film for protecting the vertically aligned liquid crystal layer.
6 . The method for manufacturing a polarizing plate according to claim 1 , wherein the negative biaxial retardation film is a stretched polymer film.
7 . The method for manufacturing a polarizing plate according to claim 1 , wherein the adhesive layer is an ultraviolet cure adhesive layer.
8 . The method for manufacturing a polarizing plate according to claim 1 , wherein the second laminate does not include a liquid crystal alignment film and a liquid crystal layer.
9 . The method for manufacturing a polarizing plate according to claim 1 , further comprising a step of peeling the carrier film from the third laminate.
10 . The method for manufacturing a polarizing plate according to claim 9 , further comprising a step of attaching a release film to a side of the third laminate, on which the carrier film is peeled off, via a pressure-sensitive adhesive layer.
11 . A polarizing plate comprising a vertically aligned liquid crystal layer, a negative biaxial retardation film, and a polarizer, and further comprising:
an adhesive layer for attaching the vertically aligned liquid crystal layer and the negative biaxial retardation film.
12 . The polarizing plate according to claim 11 , which does not include a liquid crystal alignment film and a liquid crystal layer in direct contact with the negative biaxial retardation film.
13 . The polarizing plate according to claim 11 , wherein the negative biaxial retardation film is a stretched polymer film.
14 . The polarizing plate according to claim 11 , further comprising a vertical alignment film present on an opposite side of a side of the vertically aligned liquid crystal layer on which the negative biaxial retardation film is present.
15 . The polarizing plate according to claim 14 , wherein the vertical alignment film comprises a photo-orientational compound and an acrylate with trifunctionalities or more.