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Fold preventing process for low-elasticity polyester printed silver-coated fabric

A non-crease, polyester technology, applied in textiles and papermaking, etc., can solve the problem of poor non-crease processing effect of silver-coated cloth, and achieve the effect of reducing penetration and crease phenomenon

Pending Publication Date: 2020-02-25
ZHEJIANG SHENGSHAN TECH TEXTILE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The invention solves the problem of poor crease-free processing effect of silver-coated cloth in the prior art, and provides a crease-free process for printing silver-coated cloth with low elasticity

Method used

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  • Fold preventing process for low-elasticity polyester printed silver-coated fabric
  • Fold preventing process for low-elasticity polyester printed silver-coated fabric
  • Fold preventing process for low-elasticity polyester printed silver-coated fabric

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] A non-crease process for low-elastic polyester printed silver-coated cloth (see attached figure 1 ), including the following steps,

[0028] Step 1, overflow dyeing: use 100% polyester fabric as the base fabric, dye it according to the specified color as the standard sample color,

[0029] Step 2, shaping and finishing: based on the dyed base fabric, the flatness of the cloth surface is shaped and arranged,

[0030] Step 3, calendering finishing: perform single-roll calendering treatment on the finished base fabric,

[0031] Step 4, coating finishing: use acrylic glue to coat the calendered surface of the base fabric.

[0032] In the first step, 100% polyester fabric is selected as the base fabric, and in terms of quality, 5 parts of disperse dyes, 2 parts of leveling agent and 1 part of glacial acetic acid are used to dye the standard sample color according to the specified color under the high temperature condition of 135 degrees.

[0033] In step 2, on the basis o...

Embodiment 2

[0045] This embodiment is basically the same as the embodiment, the difference is that the following steps are included in this embodiment,

[0046] Step 1, overflow dyeing: use 100% polyester fabric as the base fabric, dye it according to the specified color as the standard sample color,

[0047] Step 2, shaping and finishing: based on the dyed base fabric, the flatness of the cloth surface is shaped and arranged,

[0048] Step 3, calendering finishing: perform single-roll calendering treatment on the finished base fabric,

[0049] Step 4, coating finishing: use acrylic glue to coat the calendered surface of the base fabric.

[0050] In the first step, 100% polyester fabric is selected as the base fabric, and in terms of quality, 5 parts of disperse dyes, 2 parts of leveling agent and 1 part of glacial acetic acid are used to dye the specified color as the standard sample color under the high temperature condition of 125 degrees.

[0051] In step 2, on the basis of the dyed...

Embodiment 3

[0055] This embodiment is basically the same as the embodiment, the difference is that the following steps are included in this embodiment,

[0056] Step 1, overflow dyeing: use 100% polyester fabric as the base fabric, dye it according to the specified color as the standard sample color,

[0057] Step 2, shaping and finishing: based on the dyed base fabric, the flatness of the cloth surface is shaped and arranged,

[0058] Step 3, calendering finishing: perform single-roll calendering treatment on the finished base fabric,

[0059] Step 4, coating finishing: use acrylic glue to coat the calendered surface of the base fabric.

[0060] In the first step, 100% polyester fabric is selected as the base fabric, and in terms of quality, 5 parts of disperse dyes, 2 parts of leveling agent and 1 part of glacial acetic acid are used to dye the standard sample color according to the specified color under the high temperature condition of 133 degrees.

[0061] In step 2, on the basis o...

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Abstract

The invention relates to a fold preventing process for low-elasticity polyester printed silver-coated fabric and solves the problems in the prior art. According to the technical scheme, the fold preventing process is characterized by including the steps of firstly, performing overflow dyeing, to be more specific, selecting 100% polyester fabric as the base cloth, and dyeing into standard sample color according an appointed color; secondly, performing setting finishing, to be more specific, performing fabric surface flatness setting finishing on the basis of the dyed base fabric; thirdly, performing calendaring finishing, to be more specific, performing single-roller calendaring on the base fabric obtained after the setting finishing; fourthly, performing coating fishing, to be more specific, coating the calendared surface of the base fabric with an acrylate sizing adhesive.

Description

technical field [0001] The invention belongs to a non-crease process for printed silver-coated cloth, and relates to a non-crease process for low-elastic polyester printed silver-coated cloth. Background technique [0002] As the life surface market has higher and higher requirements for polyester low-elasticity silver tape, it is required to fold the cloth surface without creases after being made into an umbrella. For a long time, because the yarn of polyester cloth is thicker and the density is lower: fabric When the yarn hole is large, the coating is black infiltrated from the hole, and the curing amount of the glue solution is large under high temperature baking, resulting in a relative increase in the hardness of the finished fabric when it is folded, and a decrease in resilience after folding, so it is easy to produce creases. Based on. Contents of the invention [0003] The invention solves the problem of poor crease-free processing effect of silver-coated cloth in...

Claims

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Application Information

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IPC IPC(8): D06N3/04D06N3/00
CPCD06N3/042D06N3/0077D06N3/0036D06N2209/103Y02P70/62
Inventor 李华桥
Owner ZHEJIANG SHENGSHAN TECH TEXTILE