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Post-treatment method for comfortable and cool terylene silk-like fabric

A cool, artificial silk technology, applied in fiber processing, fiber type, textile and papermaking, etc., can solve the problems of high processing cost and poor durability, and achieve the effect of convenient product processing, good hygroscopicity, and improved wearing comfort.

Active Publication Date: 2012-10-17
ZHEJIANG TAIHUA NEW MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The purpose of the present invention is to provide a kind of finishing agent that can not only improve the hygroscopicity and air permeability of polyester silk fabrics but also improve its functional durability in view of the shortcomings of high processing cost and poor durability in the finishing agent for polyester spun silk fabrics in the prior art. Finishing agent

Method used

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  • Post-treatment method for comfortable and cool terylene silk-like fabric
  • Post-treatment method for comfortable and cool terylene silk-like fabric
  • Post-treatment method for comfortable and cool terylene silk-like fabric

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0039]The base fabric is polyester. The warp and weft raw materials of the base fabric are 1 / 75D / 72f polyester filaments, the warp and weft density is 580×380 threads / 10cm; the square meter weight is 83g / m 2 .

[0040] Post-processing proceeds as follows:

[0041] (1) Desizing: Open-width desizing machine is used. The temperature of the desizing tank is 95°C; the running speed of the fabric is 40m / min.

[0042] The treatment solution formula, by weight: includes caustic soda 2.5%; stabilizer 0.45%; penetrant 0.225%; scouring agent 0.225%, and the rest is water.

[0043] (2) Weight reduction treatment of base cloth alkali: adopt high temperature and high pressure overflow weight reduction machine. The bath ratio is 1:18; the treatment temperature is 120°C; the treatment time is 40 minutes, and then washed and dried.

[0044] The formula of the treatment liquid, by weight: 2.5% caustic soda; 0.2% penetrating agent; 0.2% scouring agent.

[0045] After finishing in step (2),...

Embodiment 2

[0051] (1) desizing: with embodiment 1

[0052] (2) Weight reduction treatment of base cloth alkali: adopt high temperature and high pressure overflow weight reduction machine. The bath ratio is 1:15; the treatment temperature is 115°C; the treatment time is 43 minutes, and then washed and dried.

[0053] The formulation of the treatment liquid, by weight: 2% caustic soda; 0.25% penetrating agent; 0.25% scouring agent.

[0054] After finishing in step (2), the weight reduction rate of the fabric is 10%.

[0055] (3) Padding finishing solution: padding at room temperature. The fabric running speed is 20±1m / min; the drying temperature is 120°C; the baking temperature is 158°C.

[0056] The finishing agent is prepared according to the following formula (parts by weight), including 5 parts of silk peptide; 3 parts of polyethylene glycol; 3 parts of citric acid, 1.5 parts of sodium dihydrogen phosphate, 2 parts of acetic acid, 2 parts of denatured silicone, and 1 part of chitosa...

Embodiment 3

[0060] (1) desizing: with embodiment 1

[0061] (2) Weight reduction treatment of base cloth alkali: adopt high temperature and high pressure overflow weight reduction machine. The bath ratio is 1:20; the treatment temperature is 125°C; the treatment time is 37 minutes, and then washed and dried.

[0062] The treatment solution formula, by weight: 3% caustic soda; 0.15% penetrating agent; 0.15% scouring agent.

[0063] After finishing in step (2), the weight reduction rate of the fabric is 12%.

[0064] The finishing agent is prepared according to the following formula (parts by weight), including 7 parts of silk peptide; 5 parts of polyethylene glycol; 5 parts of maleic anhydride, 2.5 parts of disodium hydrogen phosphate, 1 part of acetic acid, 1 part of softener, and 0.5 parts of chitosan share.

[0065] The preparation process of the finishing solution is as follows: by weight, dissolve 1 part of acetic acid in 75 parts of water, then add 0.5 parts of chitosan, dissolve ...

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Abstract

The invention discloses a post-treatment method for a comfortable and cool terylene silk-like fabric. The method includes steps of desizing, alkali decrement treatment on a base fabric and padding finishing. In the step of alkali decrement treatment on the base fabric, a treatment solution includes components of, by weight, 2-3% of caustic soda, 0.15-0.25% of penetrating agent, 0.15-0.25% of scouring agent, and the balance of water; a bath ratio is 1:15-20; a treatment temperature is 120+ / -5 DEG C; a treatment time is 40+ / -3min; and a reduction rate is 10-12%. Adoption of the method in the invention to prepare terylene fabric overcomes the hard handle of terylene fabric, improves wearing conformability of polyester fabric; and the product has the advantages of convenient processing and high resource utilization rate.

Description

[0001] This application is a divisional application of the invention patent application (application number 201010528042.4) filed on November 1, 2010, entitled "Finishing agent for polyester imitation silk fabric and its preparation and post-treatment method". technical field [0002] The invention relates to a finishing agent for polyester imitation silk fabrics, a preparation method thereof and a post-treatment method for polyester imitation silk fabrics. Background technique [0003] Polyester fabrics have incomparable excellent properties of natural fibers such as high strength, wear resistance, good wrinkle resistance, no insects, quick drying, and easy care. However, it has low moisture regain, poor moisture absorption and vapor permeability, stuffy clothes, easy to generate static electricity, easy to absorb dirt and breed bacteria. Therefore, the wearing comfort of polyester fabric is poor. [0004] The shortcomings of polyester fabrics can be improved by chemical f...

Claims

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Application Information

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IPC IPC(8): D06M11/38D06M15/15D06M15/53D06M15/03D06M15/643D06M13/192D06M13/207D06M13/203D06M101/32
Inventor 汪蔚沈卫锋徐丽亚厉恩祥许斌
Owner ZHEJIANG TAIHUA NEW MATERIAL
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