Elasticity-enhancing wear-resisting polyester yarn woven fabric

By introducing a multi-layer composite structure into polyester woven fabric, including a polyester base layer, a skin-friendly and sweat-absorbing layer, an antibacterial layer, an elastic layer, and an abrasion-resistant layer, the problems of insufficient elasticity and poor abrasion resistance of polyester woven fabric are solved, and the high resilience, abrasion resistance, and comfort are improved.

CN223918908UActive Publication Date: 2026-02-17WUJIANG ZHONGZHONG TEXTILE CO LTD
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Patent Information

Application Number
CN202422076910.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2026-02-17
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

Existing polyester woven fabrics lack elasticity during use, making it difficult to meet the needs of movement and stretching, and have weak abrasion resistance, making them prone to tightness and wear.

Method used

It adopts a composite structure design of polyester filament base layer, skin-friendly and sweat-absorbing layer, antibacterial layer, elastic layer and wear-resistant layer. The polyester filament base layer is woven with warp and weft yarns. The skin-friendly and sweat-absorbing layer is composed of cotton fiber, silk fiber and pearl fiber. The antibacterial layer is composed of carbon fiber and silver-plated fiber. The elastic layer is composed of PTT fiber filament and high-resilience sponge. The wear-resistant layer is interwoven with polyurethane elastic fiber and polyamide fiber.

Benefits of technology

It improves the elasticity and resilience of the fabric, enhances abrasion resistance, maintains comfort and antibacterial effects, extends service life, and improves the comfort and durability of clothing during sports and daily activities.

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Abstract

The utility model discloses an elasticity-enhancing wear-resisting polyester yarn woven fabric which comprises a fabric body, a polyester yarn base layer is arranged in the middle of the inner side of the fabric body, a skin-friendly sweat-absorbing layer is arranged on the inner surface of the fabric body, an antibacterial layer is arranged between the skin-friendly sweat-absorbing layer and the polyester yarn base layer, and a wear-resisting layer is arranged on the outer surface of the fabric body. And an elasticizing layer is arranged between the wear-resistant layer and the polyester yarn base layer. According to the elasticity-enhancing wear-resisting polyester yarn woven fabric, through the arrangement of the elasticity-enhancing layer, the elasticity of the fabric can be improved, the fabric has high rebound resilience and wrinkle resistance, the fabric has better ductility and rebound resilience when people do exercises, the wear-resisting performance of the fabric can be improved through the outer wear-resisting layer, the service life of the fabric is prolonged, and the fabric is worthy of popularization and application. The skin-friendly layer and the antibacterial layer are arranged, so that the comfort level is guaranteed, bacteria breeding is reduced, and the fabric is kept clean and tidy, so that the fabric can be better stretched, resistant to abrasion, fresh and comfortable when being worn.
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Description

Technical Field

[0001] This utility model relates to the field of woven fabric technology, specifically to a woven fabric made of elastic and wear-resistant polyester yarn. Background Technology

[0002] Woven fabrics are made by weaving yarns together in the warp and weft directions on a loom. Due to the interlacing of warp and weft, these fabrics are strong, tight, and durable, and are not easily unraveled or damaged. They are also not easily deformed. Classified by composition, woven fabrics include cotton fabrics, silk fabrics, wool fabrics, linen fabrics, chemical fiber fabrics, and their blends and interweaves. The woven process brings additional structural stability to polyester fabrics, allowing the fabric to maintain its shape and size even after multiple washes. Woven fabrics are among the world's leading products in terms of both variety and production volume, and are widely used in various high-end garments.

[0003] A comfortable elastic woven fabric disclosed in CN214449226U has a surface layer with a three-up-one-down right-hand twill weave, which makes the surface layer fluffy and soft with a good hand feel. By setting an anti-wrinkle layer at the bottom of the surface layer, the anti-wrinkle layer has a good anti-wrinkle effect, so that the garments made of this fabric are not easy to wrinkle after being folded, thus making the garments flatter and more beautiful.

[0004] However, the above solutions still have the following problems in use: the inner layer of the fabric is close to the skin, and the outer layer is in contact with the outside world. The outer side is easily bumped and worn, so it is necessary to enhance the wear resistance. When people are active, the clothing needs to have high elasticity to stretch freely. However, it is difficult to meet people's needs for clothing elasticity with just the anti-wrinkle layer. As a result, the clothing is prone to tightness during activities, such as sportswear, casual wear, and outdoor clothing. These garments need to withstand a lot of stretching and friction during wear, so it is necessary to enhance the elasticity and wear resistance of the clothing.

[0005] Therefore, we propose a woven fabric made of elastic and abrasion-resistant polyester yarn to solve the problems mentioned above. Utility Model Content

[0006] The purpose of this invention is to provide a textured and wear-resistant polyester woven fabric to solve the problems mentioned in the background art, such as insufficient elasticity of existing polyester woven fabrics on the market, which hinders movement and stretching, and weak wear resistance.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a woven fabric with elastic and wear-resistant polyester yarn, comprising a fabric body, a polyester yarn base layer disposed in the middle of the inner side of the fabric body, a skin-friendly and sweat-absorbing layer disposed on the inner surface of the fabric body, and an antibacterial layer disposed between the skin-friendly and sweat-absorbing layer and the polyester yarn base layer, and a wear-resistant layer disposed on the outer surface of the fabric body, and an elastic layer disposed between the wear-resistant layer and the polyester yarn base layer.

[0008] As a preferred technical solution of this utility model, the polyester filament base layer is woven from interlaced warp and weft yarns, with a tight structure that is not easy to come loose, and the polyester filament base layer is connected to the upper and lower layers through yarns.

[0009] As a preferred technical solution of this utility model, the skin-friendly sweat-absorbing layer is composed of cotton fiber, silk fiber and pearl fiber, and the silk fiber and pearl fiber are interlaced and wound around the outside of the cotton fiber. The cotton fiber, silk fiber and pearl fiber constitute a skin-friendly sweat-absorbing unit, and the skin-friendly sweat-absorbing layer is woven from the skin-friendly sweat-absorbing unit.

[0010] As a preferred technical solution of this utility model, the silk fiber has high tensile strength, high breaking strength, good wear resistance, good moisture absorption and dissipation properties, and good air permeability. The pearl fiber has both the skin care benefits of pearl and the moisture absorption, breathability, and comfortable wearing characteristics of viscose fiber, thus increasing the comfort of wearing clothing.

[0011] As a preferred technical solution of this utility model, the antibacterial layer is a mesh structure composed of carbon fiber and silver-plated fiber. The carbon fiber has the characteristics of being lightweight and strong, and the silver-plated fiber has significant antibacterial and antistatic properties, effectively inhibiting bacterial growth.

[0012] As a preferred technical solution of this utility model, the elastic layer is composed of PTT fiber filaments, high-resilience sponge and elastic metal wire, and the PTT fiber filaments are covered with high-resilience sponge. The high-resilience sponge is distributed longitudinally at equal intervals, and the elastic metal wire is interlaced through the outer side of the high-resilience sponge. The elastic metal wire is set with a wavy structure.

[0013] As a preferred technical solution of this utility model, the wear-resistant layer is made of polyurethane elastic fibers and polyamide fibers interwoven, and the polyurethane elastic fibers and polyamide fibers are arranged in a rhomboid pattern, and the polyurethane elastic fibers and polyamide fibers improve the abrasion resistance of the fabric.

[0014] Compared with existing technologies, the beneficial effects of this new type of elastic and wear-resistant polyester woven fabric are as follows: During use, it increases the fabric's elasticity, giving it higher resilience and wrinkle resistance. This results in better stretch and resilience during exercise. Furthermore, the outer wear-resistant layer enhances the fabric's abrasion resistance, extending its lifespan. The addition of a skin-friendly and antibacterial layer ensures comfort while reducing bacterial growth and maintaining fabric cleanliness. Therefore, the fabric offers better stretch, wear resistance, and a cool, comfortable feel when worn. Specific details are as follows:

[0015] 1. Through the addition of elastic layers, the high-resilience sponge can quickly recover after being compressed, and the elastic metal wires undergo elastic deformation, working together with the high-resilience sponge to form a multi-layered elastic structure, thereby improving the elasticity of the fabric and giving it high resilience. At the same time, PTT fiber has good elasticity, which can further increase the elasticity of the fabric, giving it high resilience and wrinkle resistance. This allows the fabric to have better extensibility and resilience when people exercise.

[0016] 2. The wear-resistant layer is made of polyurethane elastic fibers and polyamide fibers. Polyurethane elastic fibers and polyamide fibers have good wear resistance and a dense structure, which can withstand external friction. The diamond-shaped distribution can improve the extensibility and recovery of the fabric during use, thus giving the fabric high resilience and strength.

[0017] 3. The skin-friendly and sweat-absorbing layer makes the fabric feel soft and comfortable. The silk and pearl fibers in the skin-friendly layer are soft, breathable and refreshing. The cotton fibers can be breathable and absorb sweat, and can accelerate the absorption of sweat and dry the fabric.

[0018] 4. Through the antibacterial layer, carbon fiber can effectively inhibit the growth of bacteria and keep the skin fresh. Silver-plated fiber can effectively inhibit the growth of bacteria, thereby avoiding odor and making the fabric comfortable and breathable, thus improving the comfort of wearing. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the present invention;

[0020] Figure 2 This is a schematic diagram of the unit structure of the skin-friendly and sweat-absorbing layer of this utility model;

[0021] Figure 3 This is a top view of the antibacterial layer structure of this utility model;

[0022] Figure 4 This is a top view schematic diagram of the polyester filament woven structure of this utility model;

[0023] Figure 5 This is a schematic diagram of the three-dimensional structure of the elastic layer of this utility model;

[0024] Figure 6 This is a top view of the wear-resistant layer structure of this utility model;

[0025] Figure 7 This is a schematic diagram of the unit structure of the wear-resistant layer of this utility model.

[0026] In the diagram: 1. Fabric body; 2. Polyester filament base layer; 3. Skin-friendly and sweat-absorbing layer; 301. Cotton fiber; 302. Silk fiber; 303. Pearl fiber; 4. Antibacterial layer; 401. Carbon fiber; 402. Silver-plated fiber; 5. Elastic layer; 501. PTT fiber filament; 502. High-resilience sponge; 503. Elastic metal wire; 6. Abrasion-resistant layer; 601. Polyurethane elastic fiber; 602. Polyamide fiber. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] like Figure 1 - Figure 7 As shown, a type of elastic and wear-resistant polyester woven fabric includes a fabric body 1, a polyester filament base layer 2 disposed in the middle of the inner side of the fabric body 1, a skin-friendly and sweat-absorbing layer 3 disposed on the inner surface of the fabric body 1, and an antibacterial layer 4 disposed between the skin-friendly and sweat-absorbing layer 3 and the polyester filament base layer 2, and a wear-resistant layer 6 disposed on the outer surface of the fabric body 1, and an elastic layer 5 disposed between the wear-resistant layer 6 and the polyester filament base layer 2. The polyester filament base layer 2 is woven by interlacing warp and weft yarns, has a tight structure and is not easy to unravel, and the polyester filament base layer 2 is connected to the upper and lower layers through yarns.

[0029] First, let's briefly introduce the composition of the fabric body 1. The fabric body 1 is composed of a polyester filament base layer 2, which is woven from warp and weft yarns to form a fabric that is tighter, stronger, and less prone to fraying or damage. The weaving process brings additional structural stability to the polyester fabric, allowing it to maintain its shape and size even after multiple washes. The side of the fabric body 1 closest to the skin has a skin-friendly and sweat-absorbing layer 3, which can maintain a soft touch and absorb sweat and dry it in time, preventing sweat residue from remaining on the skin surface. On the outside of the skin-friendly and sweat-absorbing layer 3, there is an antibacterial layer 4, which can effectively inhibit bacterial growth and thus prevent the fabric from producing odor due to absorbing sweat. Furthermore, the outermost abrasion-resistant layer 6 of the fabric body 1 can improve the overall abrasion resistance of the fabric body 1, thereby extending the service life of the fabric and reducing damage. The elastic layer 5 inside the abrasion-resistant layer 6 can increase the high resilience and extensibility of the fabric body 1, making it easier for users to move freely without feeling tight and restricting their movement.

[0030] Example 1: To improve the high resilience of the fabric, the following solution is proposed, please refer to the figure for details.

[0031] The elastic layer 5 is composed of PTT fiber 501, high-resilience sponge 502 and elastic metal wire 503. The PTT fiber 501 is covered with high-resilience sponge 502. The high-resilience sponge 502 is distributed longitudinally at equal intervals. The elastic metal wire 503 is interlaced through the outer side of the high-resilience sponge 502. The elastic metal wire 503 is set with a wavy structure.

[0032] When the user stretches during the wearing of the garment, the elastic metal wires 503 in the elastic layer 5 will undergo elastic deformation and extend. At the same time, the PTT fiber filaments 501 and the high-resilience sponge 502 will also stretch, making it easier for people to perform large movements. This forms a multi-layered elastic structure, thereby improving the elasticity of the fabric. When the range of motion decreases, the fabric body 1 can also quickly recover, thus giving the fabric better extensibility and resilience.

[0033] Example 2: To improve the abrasion resistance of the fabric, the following solution is proposed, please refer to the figure for details.

[0034] The abrasion-resistant layer 6 is made of polyurethane elastic fibers 601 and polyamide fibers 602 interwoven, and the polyurethane elastic fibers 601 and polyamide fibers 602 are arranged in a diamond pattern, and the polyurethane elastic fibers 601 and polyamide fibers 602 improve the abrasion resistance of the fabric.

[0035] Polyurethane elastic fiber 601 and polyamide fiber 602 have good abrasion resistance and a dense structure, which can withstand external friction. The diamond-shaped distribution can improve the extensibility and recovery of the fabric during use, thus giving the fabric high resilience and strength. In turn, when the clothing is bumped and rubbed against the outside world, it can reduce wear and extend the service life of the fabric.

[0036] Example 3: To improve the comfort of the fabric, the following solution is proposed. Please refer to the figure for details.

[0037] The skin-friendly and sweat-absorbing layer 3 is composed of cotton fiber 301, silk fiber 302 and pearl fiber 303. The silk fiber 302 and pearl fiber 303 are interwoven and wound around the outside of the cotton fiber 301. The cotton fiber 301, silk fiber 302 and pearl fiber 303 constitute the skin-friendly and sweat-absorbing unit, and the skin-friendly and sweat-absorbing layer 3 is woven from the skin-friendly and sweat-absorbing unit. The silk fiber 302 has high tensile strength, high breaking strength and good wear resistance. It has good moisture absorption, moisture dissipation and air-breathing properties. The pearl fiber 303 has both the skin-care and beauty benefits of pearl and the moisture-absorbing, breathable and comfortable properties of viscose fiber, which increases the comfort of wearing the clothing.

[0038] When worn, both silk fiber 302 and pearl fiber 303 are soft, breathable, and refreshing, making them gentle and comfortable against the skin. Cotton fiber 301 is breathable and absorbent, and it can accelerate the absorption of sweat and the drying of the fabric.

[0039] Example 4: To improve the antibacterial properties of the fabric, the following solution is proposed, please refer to the figure for details.

[0040] The antibacterial layer 4 is a mesh structure composed of carbon fiber 401 and silver-plated fiber 402. Carbon fiber 401 has the characteristics of being lightweight and strong, while silver-plated fiber 402 has significant antibacterial and antistatic properties, effectively inhibiting bacterial growth.

[0041] Carbon fiber 401 effectively inhibits bacterial growth and keeps the skin fresh, while silver-plated fiber 402 effectively inhibits bacterial growth, thus preventing odors and making the fabric comfortable and breathable, thereby improving wearing comfort.

[0042] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0043] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A stretch and abrasion resistant polyester filament woven fabric comprising a fabric body (1) characterized in that: The middle part of the inner side of the fabric body (1) is provided with a polyester filament base layer (2), the inner surface of the fabric body (1) is provided with a skin-friendly sweat-absorbing layer (3), and a bacteriostatic layer (4) is arranged between the skin-friendly sweat-absorbing layer (3) and the polyester filament base layer (2), the outer surface of the fabric body (1) is provided with a wear-resistant layer (6), and an elastic layer (5) is arranged between the wear-resistant layer (6) and the polyester filament base layer (2); The elastic layer (5) is composed of PTT fiber filaments (501), high-resilience sponge (502) and elastic metal wires (503), and the outside of the PTT fiber filaments (501) is covered with high-resilience sponge (502), the high-resilience sponge (502) is longitudinally and equidistantly distributed, and the outside of the high-resilience sponge (502) is staggered through elastic metal wires (503), and the elastic metal wires (503) are arranged in a wave shape.

2. A stretch and abrasion resistant polyester filament woven fabric according to claim 1, characterized in that: The polyester filament base layer (2) is composed of interlaced weaving of warp yarns and weft yarns, and the structure is compact and not easy to unravel, and the polyester filament base layer (2) is connected with the upper and lower layer structures through yarns.

3. A stretch and abrasion resistant polyester filament shuttle weave fabric according to claim 1, characterized in that: The skin-friendly sweat-absorbing layer (3) is composed of cotton fibers (301), silk fibers (302) and pearl fibers (303), and the silk fibers (302) and pearl fibers (303) are interlaced and arranged outside the cotton fibers (301), the cotton fibers (301), silk fibers (302) and pearl fibers (303) constitute a skin-friendly sweat-absorbing unit, and the skin-friendly sweat-absorbing layer (3) is woven by the skin-friendly sweat-absorbing unit.

4. A power warp and wear polyester filament shuttle weave fabric as claimed in claim 1, wherein: The bacteriostatic layer (4) is a mesh structure composed of carbon fibers (401) and silver-plated fibers (402), and the carbon fibers (401) have the characteristics of light weight and toughness.

5. A power warp and wear polyester filament shuttle weave fabric as claimed in claim 1, wherein: The wear-resistant layer (6) is interwoven by polyurethane elastic fibers (601) and polyamide fibers (602), and the polyurethane elastic fibers (601) and polyamide fibers (602) are arranged in a diamond shape.

Citation Information

Patent Citations

  • Comfortable elastic woven fabric

    CN214449226U