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Method for producing environmental-friendly glass fiber facing felt

A technology of glass fiber and production method, which is applied in the direction of textiles, papermaking, non-woven fabrics, etc., can solve the problems of poor appearance, influence on decoration effect, and large difference in air humidity, etc., and achieve simple and convenient operation, strong climate adaptability, and high dryness The effect of state strength

Inactive Publication Date: 2010-09-15
泰山玻璃纤维淄博有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The traditional wall decoration is paint, latex paint, or scraped porcelain, and the light on the scraped porcelain wall is prone to mirror reflection
Moreover, due to climate changes and large differences in air humidity, cracks are prone to occur on the wall, which affects the decorative effect.
After a certain period of time, if the wall surface is damp, it is easy to mold, deform, fall off, etc., and the appearance is very poor

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0012] Prepare 100kg of binder, the operation is as follows: Weigh 35kg of urea-formaldehyde resin with a concentration of 58%, then weigh 20kg of polyacrylate binder with a concentration of 48%, 0.4kg of KH-560 coupling agent, and KLD-930 defoaming agent Agent 0.1kg, water 44.5kg.

[0013] Add a part of water into the preparation tank, start stirring, add KH-560 coupling agent, urea-formaldehyde resin, polyacrylate binder, KLD-930 defoamer and mix well.

[0014] Take the non-alkali glass fiber as raw material, choose the non-alkali glass fiber of 10 microns in diameter, 12 millimeters in length, add the hydroxyethyl cellulose of 0.2% by weight, the DSC-1 dispersant of 0.3% by weight in white water and KLD-930 defoamer with a weight of 0.1% is diluted ten times and then pumped into the head box. Using papermaking technology and using inclined wire formers, a uniformly dispersed wet felt is produced, and then the prepared adhesive is poured on it. Control the temperature of th...

Embodiment 2

[0017] Prepare 100kg of binder, the operation is as follows: Weigh 40kg of urea-formaldehyde resin with a concentration of 56%, then weigh 15kg of polyacrylate binder with a concentration of 50%, 0.8kg of KH-560 coupling agent, and KLD-930 defoaming agent Agent 0.4kg, water 43.8kg.

[0018] Add a part of water into the preparation tank, start stirring, add KH-560 coupling agent, urea-formaldehyde resin, polyacrylate binder, KLD-930 defoamer and mix well.

[0019] Take the non-alkali glass fiber as raw material, choose the non-alkali glass fiber of 10 microns in diameter, 12 millimeters in length, add the hydroxyethyl cellulose of 0.4% by weight, the DSC-1 dispersant of 0.1% by weight in white water and KLD-930 defoamer with a weight of 0.6% is diluted ten times and pumped into the head box. Using papermaking technology and using inclined wire formers, a uniformly dispersed wet felt is produced, and then the prepared adhesive is poured on it. Control the temperature of the hot...

Embodiment 3

[0022] Prepare 100kg of binder, the operation is as follows: Weigh 45kg of urea-formaldehyde resin with a concentration of 60%, and then weigh 12kg of polyacrylate binder with a concentration of 52%, 0.6kg of KH-560 coupling agent, and KLD-930 defoaming agent Agent 0.8kg, water 41.6kg.

[0023] Add a part of water into the preparation tank, start stirring, add KH-560 coupling agent, urea-formaldehyde resin, polyacrylate binder, KLD-930 defoamer and mix well.

[0024] Take the non-alkali glass fiber as raw material, choose the non-alkali glass fiber of 10 microns in diameter, 12 millimeters in length, add the hydroxyethyl cellulose of 0.8% by weight, the DSC-1 dispersant of 0.6% by weight in white water and KLD-930 defoamer with a weight of 0.3% is diluted ten times and then pumped into the head box. Using papermaking technology and inclined wire formers, a uniformly dispersed wet felt is produced, and then the prepared adhesive is poured on it. Control the temperature of the ...

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PUM

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Abstract

The invention relates to a method for producing an environmental-friendly glass fiber facing felt from adhesion agent and glass fiber cut into the length according to the process requirement in the steps of forming with fiber, dipping the glue, drying and rolling. The method for producing the environmental-friendly glass fiber facing felt is characterized in that the main components of the adhesion agent are urea formaldehyde and polyacrylate. The glass fiber facing felt has good air permeability, high dry strength, strong clamate adaptability and no mirror reflection, can be adhered to the wall surface conveniently and easily to decorate the wall surface and make the wall surface attractive without blistering and cracking and is mildewproof, fireproof, attractive and durable.

Description

technical field [0001] The invention relates to a manufacturing method of an environment-friendly glass fiber veneer felt, which belongs to the field of decorative building materials. Background technique [0002] The traditional wall decoration is paint, latex paint, or scraped porcelain. The scraped porcelain wall is prone to mirror reflection when the light shines on it. Moreover, due to climate changes and large differences in air humidity, cracks are prone to occur on the wall surface, which affects the decorative effect. After a certain period of time, if the wall is damp, it is prone to mildew, deformation, falling off, etc., and the appearance is very poor. Contents of the invention [0003] According to the deficiencies of the prior art, the technical problem to be solved by the present invention is to provide a new type of glass fiber wall surface decoration material, which has no specular reflection, no cracks, no mildew, and is elegant in appearance. [0004]...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D04H1/64D04H1/587D04H1/645
Inventor 雷明军刘秀伟陈振雷
Owner 泰山玻璃纤维淄博有限公司
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