Optical slice and backlight unit using it
A technology of optical sheet and backlight unit, which is applied in optics, nonlinear optics, diffuser elements, etc. It can solve the problems of insufficient anti-adhesion function and insufficient prevention of optical sheet damage, etc., and achieves the effect of easy handling
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Embodiment 1
[0114] A binder resin compound containing 100 parts of polyester polyol as a matrix material polymer (Toyobo Co., Ltd. "Byron"), 50 parts of colloidal silica with an average particle size of 20 nm (Fuso Chemical Industry ( Co., Ltd. "PL-1"), 5 parts of hardener (Nippon Polyurethane Co., Ltd. "Coronet HX"), and 5 parts of light stabilizer (Otsuka Chemical Co., Ltd. "PUVA-1033") 50 parts of acrylic resin beads with an average particle size of 15 μm ("MBX-15" of Sekisui Chemical Industry Co., Ltd.) 2 (in solid conversion) was applied to the surface of a transparent polyester base material layer ("A-4300" by Toyobo Co., Ltd.) with a thickness of 100 μm, and cured to form an optical layer.
[0115] In addition, as the coating solution for the anti-adhesion layer, 0.6 parts by mass of acrylic resin, 41.9 parts by mass of pentaerythritol triacrylate as a monomer containing a polyfunctional unsaturated double bond, 57.7 parts by mass of urethane acrylate, 7 parts by mass of 2-methyl-...
Embodiment 2
[0117] Except the coating amount of the coating liquid for the anti-adhesion layer is 0.5g / m 2 The optical sheet of Example 2 in which the average thickness of the antiadhesion layer was 0.7 μm was obtained in the same manner as in Example 1 except (in terms of solids).
Embodiment 3
[0119] Except the coating amount of the coating liquid for the anti-adhesion layer is 1g / m 2 The optical sheet of Example 3 in which the average thickness of the antiadhesion layer was 1.4 μm was obtained in the same manner as in Example 1 except (in solid conversion).
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