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Hard-coated film, method of manufacturing the same, optical device, and image display

A manufacturing method and thin-film technology, applied in optical components, optics, lamination devices, etc., can solve problems such as inability to obtain surface hardness

Inactive Publication Date: 2009-11-18
NITTO DENKO CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When containing a polymer that does not have a reactive group, there is an effect of suppressing curing shrinkage that occurs when ionizing radiation curable resins are cured and suppressing the occurrence of curling, but when such a polymer is added, there is a problem that sufficient The problem of surface hardness

Method used

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  • Hard-coated film, method of manufacturing the same, optical device, and image display
  • Hard-coated film, method of manufacturing the same, optical device, and image display
  • Hard-coated film, method of manufacturing the same, optical device, and image display

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0106] A resin raw material (manufactured by Dainippon Ink Co., Ltd., trade name: GRANDIC PC1071) containing the following ( The raw material which consists of A component, (B) component, (C) component, and the resin component of a photoinitiator. 0.5% by weight of a leveling agent was added to this resin raw material. Then, the resin raw material that has added above-mentioned leveling agent is diluted with ethyl acetate, so that butyl acetate: ethyl acetate (weight ratio)=46: 54 (the ratio of ethyl acetate relative to total solvent is 54% by weight), The solid content concentration was 50% by weight. Thus, the hard coat layer forming material was prepared. The above-mentioned leveling agent is a copolymer of dimethyl siloxane: hydroxypropyl siloxane: 6-isocyanate hexyl isocyanate: aliphatic polyester = 6.3: 1.0: 2.2: 1.0 molar ratio things.

[0107] (A) Component: Urethane acrylate (100 parts by weight) composed of pentaerythritol-based acrylate and hydrogenated xylene d...

Embodiment 2

[0114] In this example, except changing the thickness of the hard-coat layer to 15 micrometers, the same method as Example 1 was carried out, and the hard-coat film was produced.

Embodiment 3

[0116] In this example, except changing the thickness of the hard-coat layer to 25 micrometers, the same method as Example 1 was carried out, and the hard-coat film was produced.

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PUM

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Abstract

A hard-coated antiglare film is provided that has high hardness, high scratch resistance, and good antiglare properties. In the hard-coated antiglare film of the present invention including a transparent plastic film substrate, a hard-coating layer containing fine particles is formed on at least one surface of the transparent plastic film substrate, the hard-coating layer has a thickness in the range of 15 to 30 mum, the fine particles have a weight average particle size of 30 to 75% of a thickness of the hard-coating layer, the average tilt angle thetaa of the unevenness of the hard-coating layer surface is in the range of 0.4 DEG to 1.5 DEG , and the hard-coating layer is formed using a resin for forming the hard-coating layer containing three specific resin components.

Description

technical field [0001] The invention relates to a hard-coated film, a manufacturing method of the hard-coated film, an optical element and an image display device. Background technique [0002] In recent years, with the advancement of technology, on the basis of the existing CRT (Cathode Ray Tube), liquid crystal displays (LCDs), plasma displays (PDPs) and electroluminescent displays (ELDs) have also been developed and put into practical use. change. Among them, as far as LCD is concerned, along with technological innovations related to high field of view, high definition, high-speed response, color reproduction, etc., applications using LCD are also changing from notebook personal computers or monitors to TVs. . The basic structure of an LCD is that flat glass substrates each equipped with transparent electrodes are arranged to face each other through a spacer so as to form a gap with a certain interval, and a liquid crystal material is injected between the glass substrat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B7/02B32B33/00B32B9/00B32B27/08B32B37/15C09D133/08G02B1/10G02B1/14
Inventor 高田胜则鹰尾宽行楠本诚一滨本大介重松崇之
Owner NITTO DENKO CORP
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