Production process for anti-ultraviolet flame-retardant light-resistant curtain shell fabric

A production process, anti-ultraviolet technology, applied in the direction of fiber type, textile and paper making, fiber treatment, etc., can solve the problems affecting the color, pattern, fading and degradation of curtain fabric, etc.

Inactive Publication Date: 2014-04-16
ZHEJIANG HUIDE NEW MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This cycle of heat and cold will further lead to fading and degradation of the curtain fabric, affecting the color, pattern and even the life of the curtain

Method used

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  • Production process for anti-ultraviolet flame-retardant light-resistant curtain shell fabric

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] 3 parts by weight of phosphorus-free flame-retardant polyester fibers, 5 parts by weight of polyacrylonitrile fibers, 2 parts by weight of fine sulfur cotton, and 0.3 parts by weight of flame-retardant nylon are mixed and spun into yarns, and then the yarns are spun into Semi-finished fabrics;

[0018] Weigh each raw material separately and configure it into a finishing solution. The components of the finishing solution are as follows: paint 45g / L, paint white FTW 4g / L, acrylate adhesive 15g / L, urea 20g / L, glycerin 2g / L, Gemini Cationic softener 40g / L, flame retardant 3g / L, micronano oxide 15g / L, alkyl polyoxyethylene ether succinate sulfonate 1g / L, tribenzylphenol polyoxyethylene ether 2.5g / L L;

[0019] Add the penetrating agent JFC to the above finishing solution, so that the JFC content in the finishing solution reaches 1g / L. Put the above-mentioned semi-finished fabric into the finishing solution for two dipping and two rolling. The rolling rate is 75%. Re-baking...

Embodiment 2

[0021] 3 parts by weight of phosphorus-free flame-retardant polyester fibers, 5 parts by weight of polyacrylonitrile fibers, 2 parts by weight of fine sulfur cotton, and 0.3 parts by weight of flame-retardant nylon are mixed and spun into yarns, and then the yarns are spun into Semi-finished fabrics;

[0022] Weigh each raw material respectively and configure it into a finishing solution. The components of the finishing solution are as follows: paint 50g / L, paint white FTW 3g / L, acrylate adhesive 25g / L, urea 15g / L, glycerin 2.5g / L, Gemini cationic softener 38g / L, flame retardant 3.5g / L, micronano oxide 8g / L, alkyl polyoxyethylene ether succinate sulfonate 1.5g / L, tribenzylphenol polyoxyethylene ether 2.5g / L;

[0023] Add the penetrating agent JFC to the above finishing solution, so that the JFC content in the finishing solution reaches 1g / L. Put the above-mentioned semi-finished fabric into the finishing solution for two dipping and two rolling. The rolling rate is 75%. Re-b...

Embodiment 3

[0025] 3.5 parts by weight of phosphorus-free flame-retardant polyester fiber, 4 parts by weight of polyacrylonitrile fiber, 2 parts by weight of refined sulfur cotton, and 0.3 parts by weight of flame-retardant nylon are mixed and spun into yarn, and then the yarn is spun into Semi-finished fabrics;

[0026] Weigh each raw material separately and configure it into a finishing solution. The components of the finishing solution are as follows: paint 55g / L, paint white FTW 2g / L, acrylate adhesive 30g / L, urea 20g / L, glycerin 3g / L, Gemini Cationic softener 35g / L, flame retardant 4g / L, micronano oxide 2.5g / L, alkyl polyoxyethylene ether succinate sulfonate 2g / L, tribenzylphenol polyoxyethylene ether 2.5g / L;

[0027] Add the penetrating agent JFC to the above finishing solution, so that the JFC content in the finishing solution reaches 0.5g / L. Put the above-mentioned semi-finished fabric into the finishing solution for two dipping and two rolling. The rolling rate is 75%, and it i...

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Abstract

The invention discloses a production process for an anti-ultraviolet flame-retardant light-resistant curtain shell fabric. The production process comprises the following steps: mixing and spinning flame-retardant polyester fiber, polyacrylonitrile fiber, refined sulfur cotton and flame-retardant nylon into yarns; spinning the yarns into a semi-finished shell fabric; padding the semi-finished shell fabric into a finishing solution for padding, and then drying and cooking the semi-finished shell fabric to obtain a finished curtain shell fabric, wherein the finishing solution comprises a coating, a Gemini cationic softener, a flame retardant, a micro-nano-oxide, polyoxyethylene alkyl ether sulfonates succinate and the like; the flame retardant is obtained by synthesizing trimethylolpropane, trimethyl phosphate and trimethyl phosphate in the molar ratio of 1:1:1; and the Gemini cationic softener is obtained by synthesizing stearyl amidopropyl dimethyl amine and bis(2-chloroethyl) ether in the molar ratio of 2:1. The curtain shell fabric prepared by the method has high ultraviolet resistance, high light resistance and high flame retardant performance.

Description

technical field [0001] The invention relates to the field of curtain fabric production, in particular to a production process for an ultraviolet-resistant, flame-retardant and light-resistant curtain fabric. Background technique [0002] Curtains are an important part of the soft decoration of the living room, and play a great role in the beautification of the modern home environment and the creation of the environment. Residential houses, offices, hotels, conference rooms, etc. place great emphasis on lighting effects, and the design of glass windows is getting bigger and bigger, and interior decoration fabrics such as curtains will fade and degrade due to sunlight and ultraviolet rays. In addition, prolonged exposure to the sun will increase the temperature in the room. Especially in summer, the indoor temperature in a room with large windows and multiple windows may exceed 50°C at noon, while the temperature drops at night and the humidity increases. This cycle of heat ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D06M13/148D06M13/292D06M13/402D06M13/165D06M13/432D06M15/53D06M101/32D06M101/28D06M101/06D06M101/34
Inventor 张剑许慧英胡俊
Owner ZHEJIANG HUIDE NEW MATERIAL
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