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laminated film

A laminated film and lamination technology, applied in the directions of layered products, synthetic resin layered products, polarizing elements, etc., can solve the problems of polarizing plates that cannot be used in liquid crystal displays, insufficient suppression, and reduced product yield, etc. Achieving good appearance, suppression of UV deterioration, and less color unevenness

Active Publication Date: 2020-01-21
TORAY IND INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] However, the conventionally studied biaxially stretched polyester film has a higher retardation (Retardation: retardation) than the TAC film due to the orientation of the polymer during stretching. The interference color caused by the delay in the display is generated, and the quality of the displayed image is degraded
In order to solve this problem, a delay (sometimes expressed as a delay) control method has been proposed, but it is still not sufficient to satisfy both the degree of delay and the deviation.
For example, a retardation of 400 nm or less has been proposed for a laminated film, but since the thickness retardation is large, there is a problem that it cannot be used as a polarizing plate for a liquid crystal display (Patent Document 1)
In addition, a polyester film for polarizer protection has been proposed, but the phase difference is large, and suppression of interference color and iridescent unevenness is insufficient (Patent Document 2)
A polyester film for polarizer protection with UV cut performance and a phase difference of 400nm or less was proposed, but the film production conditions due to low transmittance and increased bowing were adopted, so it has The problem that the deviation of the phase difference is large (Patent Document 3)
That is, when a biaxially stretched film is produced, there is a difference in the orientation state of the polymer in the film width direction. Therefore, for example, even if a part of the film can achieve the target low retardation, it can be used for a large screen. For a large-area film of a display, a low-retardation film cannot be uniformly obtained, and the product yield is lowered, and problems such as high cost remain.
In addition, since the retardation is proportional to the film thickness, it can also be suppressed by reducing the film thickness at the level of several μm, but due to the extremely thin film, the handleability will be reduced, and it is not practical for the application of the polarizing plate protective film.
Further, the polarizing plate protective film used in the outermost layer needs to have high UV cutoff, and the cost increase caused by the addition of a large amount of ultraviolet absorbing materials, process pollution, color change, etc. have become problems

Method used

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Examples

Experimental program
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Embodiment 1

[0118] As the crystalline polyester, polyethylene terephthalate (PET) having a melting point of 258° C. was used. As the thermoplastic resin B, ethylene terephthalate (PE / SPG T / CHDC) copolymerized with 15 mol% of spirodiol and 25 mol% of cyclohexanedicarboxylic acid as an amorphous resin having no melting point was used. ). The above-mentioned PE / SPG·T / CHDC 98% by mass, 2,4,6-tris(2-hydroxy-4-hexyloxy-3-methylphenyl)-1,3,5-triazine as UVA 2 mass %The raw materials are supplied from the metering hopper to the twin-screw extruder by mixing at this ratio, melted and kneaded at 280°C, discharged from the die in strips, cooled and solidified by a water tank at 25°C, cut into granules, and obtained thermoplasticity. Resin composition (B-1).

[0119] The prepared PET and the thermoplastic resin composition (B-1) were fully dried under vacuum and high temperature so as not to contain moisture, respectively, and then put into two single-screw extruders, and melt-kneaded at 280°C. Ne...

Embodiment 2

[0123] In Example 1, a laminated film was obtained in the same manner as in Example 1, except that the draw ratio during stretching in the film width direction was 3.6 times and the heat treatment temperature was 200°C. Table 1 shows the evaluation results of the obtained laminated film.

Embodiment 3

[0125] In Example 2, a laminated film was obtained in the same manner as in Example 1 except that the heat treatment temperature was set at 235°C. Table 1 shows the evaluation results of the obtained laminated film.

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Abstract

The present invention provides a laminated film, which is a laminated film in which three or more layers are laminated in the thickness direction. The deviation in the width direction is 18% or less, the film thickness of the laminated film is 40 μm or less, and the film width is a laminated film of 400 mm or more, so it is suitable for use as a polarizing plate facing a liquid crystal display, especially installed on a large screen The LCD display has no color unevenness and is of high quality.

Description

technical field [0001] The present invention relates to a laminated film that can be suitably used as a polarizing plate protective film. Moreover, it is related with the polarizing plate which uses this laminated film as a polarizing plate protective film. Background technique [0002] Thermoplastic resin films, among which biaxially stretched polyester films have excellent properties such as mechanical properties, electrical properties, dimensional stability, transparency, and chemical resistance, so they are used as base materials in most applications such as magnetic recording materials and packaging materials Membranes are widely used. Especially in recent years, in the field of flat panel displays and touch panels, the demand for various optical films such as polarizing plate protective films and transparent conductive films has increased. Among them, for polarizing plate protective films, low moisture permeability, mechanical strength and The replacement of the conv...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02B5/30B29C55/02B32B7/027B32B27/36B32B7/023
CPCB32B27/36B29C55/02G02B5/30B32B7/023B32B27/08B32B2250/24B32B2250/05
Inventor 合田亘藤本聪一园田和卫
Owner TORAY IND INC
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