Wear-resistant textile chemical fiber cloth with reinforced surface microstructure

By weaving the fish scale-like embossed structure on the surface of the chemical fiber fabric, combining the anti-wear layer and the modified gelatinous polysilicic acid solvent, the problem of natural palm fibers being easily wrinkled is solved, and the wear resistance of the chemical fiber fabric is improved and the comfort of the chemical fiber fabric is maintained.

CN223252533UActive Publication Date: 2025-08-22CHANGZHOU YAOSHICHI TEXTILE CO LTD
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Patent Information

Application Number
CN202422410265.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-08-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

In the prior art, natural palm fibers, which account for a large proportion of external reinforcement layer materials, are prone to wrinkles and unevenness, resulting in frictional damage to the surface of chemical fiber fabrics.

Method used

Fish scale-like embossed on the surface of the chemical fiber fabric, including an anti-wearing agent layer, a polyester fiber layer and a polyamide fiber layer, and the anti-wearing agent layer is penetrated through the padding process, and the friction is reduced by using a modified gelatinous polysilicic acid solvent, and the fish scale-like embossed is arranged interlaced to enhance wear resistance.

Benefits of technology

Effectively reduce the tendency of pilling and lintling of polyester fiber layers and polyamide fiber layers, improve the overall wear resistance of chemical fiber fabrics, while maintaining comfort without affecting it.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides surface microstructure reinforced wear-resistant textile chemical fiber cloth, which relates to the field of chemical fiber cloth and comprises a chemical fiber cloth body, a first chemical fiber layer and a second chemical fiber layer are arranged in the chemical fiber cloth body, and fish scale-shaped raised grains are woven on the outer surface of the chemical fiber cloth body. An anti-wear agent layer, a polyester fiber layer and a polyamide fiber layer are arranged in the fish scale-shaped convex patterns, and the anti-wear agent layer permeates into the polyester fiber layer and the polyamide fiber layer through a padding process. The utility model solves the problem that the friction damage of the surface of the chemical fiber cloth is increased due to the fact that natural palm silk fibers with more external reinforced layer materials are easy to wrinkle and unsmooth in the prior art.
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Description

Technical Field

[0001] The utility model relates to the technical field of chemical fiber cloths, in particular to a wear-resistant textile chemical fiber cloth with enhanced surface microstructure. Background Art

[0002] Chemical fiber fabrics are new types of clothing developed in modern times, and there are many types. Here it mainly refers to pure, blended or interwoven fabrics made from chemical fibers, that is, fabrics woven from pure chemical fibers, excluding blends and interwoven fabrics with natural fibers. The properties of chemical fiber fabrics are determined by the properties of the chemical fibers themselves. After searching, the prior art (Announcement No.: CN202222647449.X) has an antibacterial and wear-resistant chemical fiber cloth. The article records that "the antibacterial and wear-resistant chemical fiber cloth is provided with a wear-resistant layer on both the inner and outer sides of the antibacterial chemical fiber cloth, and the wear-resistant layer includes an external reinforcement layer material and an internal reinforcement layer material, by mixing 40% wear-resistant polyester The fiber and 60% natural palm silk fiber are made into an external reinforcement layer using a twill weaving process. At the same time, the internal reinforcement layer is made of 20% wear-resistant polyester fiber and 80% long-staple cotton silk fiber using a dense grid weaving process. The overall exterior of the fabric has super wear resistance and high strength. At the same time, the interior of the fabric is softer and more comfortable, and pilling is reduced while improving the overall wear resistance. However, in the existing technology, the natural palm silk fiber that accounts for a large proportion of the external reinforcement layer is prone to wrinkles and unevenness, which increases the friction damage to the surface of the chemical fiber fabric. Utility Model Content

[0003] In order to overcome the defects of the existing technology, a surface microstructure enhanced wear-resistant textile chemical fiber fabric is provided to solve the problem that natural palm silk fiber, which accounts for a relatively large proportion of external reinforcement layer materials in the existing technology, is prone to wrinkles and unevenness, resulting in increased friction damage on the surface of the chemical fiber fabric.

[0004] To achieve the above object, a surface microstructure-enhanced wear-resistant textile chemical fiber fabric is provided, comprising: a chemical fiber fabric body, wherein the chemical fiber fabric body contains a first chemical fiber layer and a second chemical fiber layer.

[0005] The outer surface of the chemical fiber cloth body is woven with fish scale convex patterns, and the fish scale convex patterns contain an anti-wear agent layer, a polyester fiber layer and a polyamide fiber layer. The anti-wear agent layer is infiltrated into the polyester fiber layer and the polyamide fiber layer through a padding process.

[0006] Furthermore, an elastic fabric layer is woven between the first chemical fiber layer and the second chemical fiber layer.

[0007] Furthermore, a conductive fiber layer is interwoven on the surfaces of the first chemical fiber layer and the second chemical fiber layer.

[0008] Furthermore, the polyester fiber layer and the polyamide fiber layer in the fish-scale convex pattern are interwoven in half.

[0009] Furthermore, the polyester fiber layer and the polyamide fiber layer contain an anti-wear agent layer of modified colloidal polysilicic acid solvent.

[0010] Furthermore, the fish-scale convex patterns are distributed on the surfaces of the first chemical fiber layer and the second chemical fiber layer in a staggered arrangement.

[0011] Furthermore, the anti-wear agent layer, the polyester fiber layer and the polyamide fiber layer constitute an enhanced wear-resistant convex microstructure of the chemical fiber cloth body.

[0012] The beneficial effect of the present invention is that the surface microstructure enhanced wear-resistant textile chemical fiber fabric of the present invention utilizes a fish-scale embossed pattern formed by mixing a polyester fiber layer impregnated with an anti-wear agent layer and a polyamide fiber layer to be woven on the outer surface of the chemical fiber fabric, and the anti-wear agent layer with modified colloidal polysilicate as the main component reduces the surface friction of the chemical fiber fabric, thereby facilitating the reduction of the pilling and fuzzing tendency of the polyester fiber layer and the polyamide fiber layer, while not affecting the comfort of the embossed structure on the surface of the chemical fiber fabric, thereby realizing a chemical fiber fabric with an enhanced wear-resistant embossed microstructure and improving the overall wear resistance of the chemical fiber fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic top view of the surface microstructure reinforced wear-resistant textile chemical fiber fabric according to an embodiment of the present utility model.

[0014] Figure 2 This is a schematic diagram of the front cross-sectional structure of the surface microstructure reinforced wear-resistant textile chemical fiber fabric according to an embodiment of the present utility model.

[0015] Figure 3 This is a schematic front view cross-sectional structure diagram of the fish-scale convex pattern according to an embodiment of the present utility model.

[0016] Figure 4 This is a schematic diagram of the three-dimensional arrangement structure of the fish-scale ridges according to an embodiment of the present invention.

[0017] In the figure: 1. Chemical fiber fabric body; 2. Fish scale-like embossed pattern; 21. Anti-wear agent layer; 22. Polyester fiber layer; 23. Polyamide fiber layer; 3. First chemical fiber layer; 4. Elastic fabric layer; 5. Second chemical fiber layer; 6. Conductive fiber layer. DETAILED DESCRIPTION

[0018] Reference Figures 1 to 4 As shown, the utility model provides a surface microstructure enhanced wear-resistant textile chemical fiber fabric, comprising: a chemical fiber fabric body 1, the chemical fiber fabric body 1 contains a first chemical fiber layer 3 and a second chemical fiber layer 5,

[0019] The outer surface of the chemical fiber fabric body 1 is woven with fish scale ridges 2, which contain an anti-wear agent layer 21, a polyester fiber layer 22 and a polyamide fiber layer 23. The anti-wear agent layer 21 penetrates into the polyester fiber layer 22 and the polyamide fiber layer 23 through a padding process.

[0020] The chemical fiber fabric body 1 utilizes a fish-scale embossed pattern 2 formed by a blend of a polyester fiber layer 22 and a polyamide fiber layer 23 impregnated with an anti-wear agent layer 21. The anti-wear agent layer 21, whose main component is modified colloidal polysilicic acid, reduces surface friction of the chemical fiber fabric body 1, thereby facilitating reduction of the pilling tendency of the polyester fiber layer 22 and the polyamide fiber layer 23, while maintaining the comfort of the embossed structure on the surface of the chemical fiber fabric. This achieves a chemical fiber fabric with an enhanced wear-resistant embossed microstructure, thereby improving the overall wear resistance of the chemical fiber fabric.

[0021] In this embodiment, an elastic fabric layer 4 is woven between the first chemical fiber layer 3 and the second chemical fiber layer 5. A conductive fiber layer 6 is interwoven on the surfaces of the first chemical fiber layer 3 and the second chemical fiber layer 5.

[0022] As a preferred embodiment, the elastic fabric layer 4 enhances the elasticity of the synthetic fiber fabric body 1, and the specific fiber materials of the first synthetic fiber layer 3 and the second synthetic fiber layer 5 can be selected based on the actual application of the fabric. The conductive fiber layer 6 suppresses the generation of static electricity in the fish-scale pattern 2.

[0023] In this embodiment, the fish-scale patterns 2 are composed of a polyester fiber layer 22 and a polyamide fiber layer 23 interwoven in half. The polyester fiber layer 22 and the polyamide fiber layer 23 contain an anti-wear agent layer 21 containing a modified colloidal polysilicic acid solvent. The fish-scale patterns 2 are arranged in a staggered pattern on the surfaces of the first and second chemical fiber layers 3 and 5. The fish-scale patterns 2 resemble fish scales.

[0024] As a preferred embodiment, the polyamide fiber layer 23 has a certain degree of resilience, which prevents wrinkles and unevenness in the fish-scale pattern 2, thereby protecting the outer surface of the synthetic fiber fabric body 1 from wear. The anti-wear agent layer 21, mainly composed of modified colloidal polysilicic acid, reduces the pilling tendency of the polyester fiber layer 22 and the polyamide fiber layer 23, while maintaining the comfort of the synthetic fiber fabric's surface pattern structure.

[0025] In this embodiment, the anti-wear agent layer 21 , the polyester fiber layer 22 and the polyamide fiber layer 23 constitute the enhanced wear-resistant convex microstructure of the chemical fiber fabric body 1 .

[0026] As a preferred embodiment, the enhanced wear-resistant embossed microstructure of the chemical fiber fabric body 1 facilitates reducing the pilling tendency of the polyester fiber layer 22 and the polyamide fiber layer 23, while not affecting the comfort of the embossed structure on the surface of the chemical fiber fabric body 1, thereby improving the overall wear resistance of the chemical fiber fabric body 1.

[0027] The surface microstructure enhanced wear-resistant textile chemical fiber fabric of the utility model can effectively solve the problem in the prior art that natural palm silk fibers, which have a relatively large proportion of external reinforcement layer materials, are prone to wrinkles and unevenness, resulting in increased friction damage on the surface of the chemical fiber fabric. It is convenient to reduce the pilling tendency of the polyester fiber layer and the polyamide fiber layer, and at the same time does not affect the comfort of the embossed structure on the surface of the chemical fiber fabric, thereby realizing a chemical fiber fabric with an enhanced wear-resistant embossed microstructure, improving the overall wear resistance of the chemical fiber fabric, and is suitable for surface microstructure enhanced wear-resistant textile chemical fiber fabric.

Claims

1. A wear-resistant textile chemical fiber fabric with enhanced surface microstructure, comprising: A chemical fiber fabric body (1), wherein the chemical fiber fabric body (1) contains a first chemical fiber layer (3) and a second chemical fiber layer (5), and is characterized in that: The outer surface of the chemical fiber fabric body (1) is woven with fish-scale convex patterns (2), and the fish-scale convex patterns (2) contain an anti-wear agent layer (21), a polyester fiber layer (22) and a polyamide fiber layer (23). The anti-wear agent layer (21) is infiltrated into the polyester fiber layer (22) and the polyamide fiber layer (23) through a padding process. The polyester fiber layer (22) and the polyamide fiber layer (23) in the fish-scale convex patterns (2) are interwoven in half. The fish-scale convex patterns (2) are staggered and distributed on the surfaces of the first chemical fiber layer (3) and the second chemical fiber layer (5).

2. The wear-resistant textile chemical fiber fabric with surface microstructure reinforcement according to claim 1, characterized in that: An elastic fabric layer (4) is woven between the first chemical fiber layer (3) and the second chemical fiber layer (5).

3. The wear-resistant textile chemical fiber fabric with surface microstructure reinforcement according to claim 1, characterized in that: Conductive fiber layers (6) are interwoven on the surfaces of the first chemical fiber layer (3) and the second chemical fiber layer (5).

4. The wear-resistant textile chemical fiber fabric with surface microstructure reinforcement according to claim 1, characterized in that: The polyester fiber layer (22) and the polyamide fiber layer (23) contain an anti-wear agent layer (21) containing a modified colloidal polysilicic acid solvent.

5. The wear-resistant textile chemical fiber fabric with surface microstructure reinforcement according to claim 1, characterized in that: The anti-wear agent layer (21), the polyester fiber layer (22) and the polyamide fiber layer (23) constitute the enhanced wear-resistant convex microstructure of the chemical fiber cloth body (1).

Citation Information

Patent Citations

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