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Process for preparing glass fiber composite

A technology of glass fiber and composite materials, applied in the direction of manufacturing tools, fiber chemical characteristics, glass manufacturing equipment, etc., can solve the problems of acid and alkali resistance, rigidity, oxidation resistance, anti-aging performance, etc., and achieve the effect of good rigidity

Inactive Publication Date: 2016-05-04
CHANGSHU JIANGNAN GLASS FIBER
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The acid and alkali resistance, rigidity, oxidation resistance and aging resistance of existing glass fiber composite materials need to be improved

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A kind of technology for preparing glass fiber composite material, comprises the steps:

[0021] 1) Add 1 to 2 parts by mass of sodium tripolyphosphate, 3.6 parts by mass of acrylonitrile terpolymer, 2.4 parts by mass of silicon nitride, 24 parts by mass of glass fiber mineral powder, 3.8 parts by mass of AES resin, 1.8 parts by mass of bis(2 , 4-di-tert-butylphenyl) pentaerythritol diphosphite, 2.6 parts by mass of sodium pyrophosphate, and 0.6 parts by mass of vinyltrimethoxysilane were uniformly mixed, melted and drawn to obtain glass fibers;

[0022] 2) Mix 7 parts by mass of ABS resin and 6 parts by mass of ABS resin evenly, and spin to form polymer fibers;

[0023] 3) Weave glass fibers and polymer fibers together to obtain glass fiber composites.

Embodiment 2

[0025] A process for preparing glass fiber composites, comprising the steps of:

[0026] 1) Mix 1 part by mass of sodium tripolyphosphate, 3.6 parts by mass of acrylonitrile terpolymer, 2.4 parts by mass of silicon nitride, 24 parts by mass of glass fiber mineral powder, 3.8 parts by mass of AES resin, 1.8 parts by mass of bis(2,4 -di-tert-butylphenyl) pentaerythritol diphosphite, 2.6 parts by mass of sodium pyrophosphate, and 0.6 parts by mass of vinyltrimethoxysilane are mixed uniformly, melted and drawn to obtain glass fibers;

[0027] 2) Mix 7 parts by mass of ABS resin and 6 parts by mass of ABS resin evenly, and spin to form polymer fibers;

[0028] 3) Weave glass fibers and polymer fibers together to obtain glass fiber composites.

Embodiment 3

[0030] A process for preparing glass fiber composites, comprising the steps of:

[0031] 1) 2 parts by mass of sodium tripolyphosphate, 3.6 parts by mass of acrylonitrile terpolymer, 2.4 parts by mass of silicon nitride, 24 parts by mass of glass fiber mineral powder, 3.8 parts by mass of AES resin, 1.8 parts by mass of bis(2,4 -di-tert-butylphenyl) pentaerythritol diphosphite, 2.6 parts by mass of sodium pyrophosphate, and 0.6 parts by mass of vinyltrimethoxysilane are mixed uniformly, melted and drawn to obtain glass fibers;

[0032] 2) Mix 7 parts by mass of ABS resin and 6 parts by mass of ABS resin evenly, and spin to form polymer fibers;

[0033] 3) Weave glass fibers and polymer fibers together to obtain glass fiber composites.

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PUM

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Abstract

The invention discloses a process for preparing a glass fiber composite. The process includes the following steps: (1) evenly mixing 1-2 parts by mass of sodium tripolyphosphate, 3.6 parts by mass of acrylonitrile ternary polymer, 2.4 parts by mass of silicon nitride, 24 parts by mass of glass fiber mineral powder, 3.8 parts by mass of AES resin, 1.8 parts by mass of Bis(2,4-di-tert-butylphenyl) pentaerythritol diphosphite, 2.6 parts by mass of sodium pyrophosphate, and 0.6 parts by mass of triethoxyvinylsilane, and performing melting and drawing to obtain glass fiber; (2) evenly mixing 7 parts by mass of ABS resin and 6 parts by mass of ABS resin, and performing spinning to form polymer fiber; and (3) knitting the glass fiber and the polymer fiber to obtain the glass fiber composite. According to the process for preparing the glass fiber composite, the obtained glass fiber composite is excellent in acid-base resistance, rigidity, antioxidant activity and ageing resistance.

Description

technical field [0001] The present invention relates to a process for preparing glass fiber composites. Background technique [0002] The acid and alkali resistance, rigidity, oxidation resistance and aging resistance of existing glass fiber composite materials need to be improved. Contents of the invention [0003] The object of the present invention is to provide a process for preparing glass fiber composite materials, the prepared glass fiber composite materials are resistant to acid and alkali, good in rigidity, anti-oxidation and anti-aging. [0004] In order to achieve the above object, the technical solution of the present invention is to design a process for preparing glass fiber composites, comprising the steps of: [0005] 1) Add 1 to 2 parts by mass of sodium tripolyphosphate, 3.6 parts by mass of acrylonitrile terpolymer, 2.4 parts by mass of silicon nitride, 24 parts by mass of glass fiber mineral powder, 3.8 parts by mass of AES resin, 1.8 parts by mass of b...

Claims

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Application Information

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IPC IPC(8): D03D15/00D03D13/00D01D5/08D02G3/04D01F1/10D01F8/10C03C13/06C03B37/022D03D15/267D03D15/283D03D15/50
CPCD01D5/08D01F1/10D01F8/10D02G3/04D03D13/00C03B37/022C03C13/06C03C2213/00D03D15/267
Inventor 张志刚
Owner CHANGSHU JIANGNAN GLASS FIBER