Flexible textile fabric

By designing a multi-layer structure in textile fabrics, including a combination of textile fabric base layer, wear-resistant layer, reinforcement layer and various belts, the problem of easy deformation in textile fabrics during use is solved, and the effect of improving tensile strength and flexibility is achieved.

CN120116568APending Publication Date: 2025-06-10WUXI WEIYING GARMENT CO LTD
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Patent Information

Application Number
CN202510365338.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-06-10

AI Technical Summary

Technical Problem

Textile fabrics are easily deformed due to pulling during use, which affects their use effect and is difficult to effectively strengthen and protect.

Method used

The structural design includes a textile fabric base layer, wear-resistant layer, reinforcement layer, support belt, connecting belt, reinforcement belt and tensile belt. Through the combination of these layers and belts, the tensile strength and flexibility of the textile fabric are increased.

Benefits of technology

It effectively increases the tensile strength and flexibility of textile fabrics, prevents random pulling and deformation, and improves the service effect and service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120116568A_ABST
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Abstract

The invention discloses a flexible textile fabric which comprises a textile fabric base layer, the textile fabric base layer is provided with a wear-resistant layer, the top end and the bottom end of the textile fabric base layer are each provided with a reinforcing layer used for conducting tensile protection on the textile fabric base layer, and each reinforcing layer comprises a supporting belt, a connecting belt, a reinforcing belt and a tensile belt. The connecting belts are located between the adjacent supporting belts, the supporting belts and the connecting belts are used for improving the flexibility of the textile fabric base layer so as to carry out tensile protection on the textile fabric base layer, the reinforcing belts are located between the adjacent supporting belts, and the tensile belts are located between the adjacent connecting belts. The arrangement mode that the reinforcing layers, the supporting belts, the connecting belts, the reinforcing belts and the tensile belts are matched is utilized, the reinforcing belts reinforce the adjacent supporting belts, the tensile belts enable the adjacent connecting belts to be connected in a dragging mode, then the tensile strength of the textile fabric base layer is improved, the flexibility of the textile fabric base layer is improved, and the service life of the textile fabric base layer is prolonged. The random pulling deformation of the textile fabric base layer can be conveniently prevented.
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Description

Technical Field

[0001] The present invention relates to the field of flexible textile fabrics, and particularly relates to a flexible textile fabric. Background Art

[0002] Textile fabrics are also known as cloth or fabric. Textile fabrics are usually sheet-like soft materials formed by fine and long substances through specific structural relationships. After the substances are processed, a planar material is formed. Textile fabrics have a wide range of uses and diverse types.

[0003] Textile fabrics can be classified according to the fiber components they use, such as natural fibers, man-made fibers, and synthetic fibers, etc. When textile fabrics are made into clothes or ornaments for use, but when textile fabrics are in use, there are usually situations such as pulling the textile fabrics, resulting in the textile fabrics being pulled and deformed, affecting the use effect of the textile fabrics, and thus it is not convenient to carry out flexible reinforcement protection on the textile fabrics. Summary of the Invention

[0004] The purpose of the present invention is to provide a flexible textile fabric to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A flexible textile fabric, comprising:

[0006] A textile fabric base layer, and a wear-resistant layer is arranged above the textile fabric base layer;

[0007] Reinforcement layers are arranged at both the top end and the bottom end of the textile fabric base layer for tensile protection of the textile fabric base layer. The reinforcement layer includes:

[0008] Support belts and connecting belts. The connecting belts are located between adjacent support belts. The support belts and the connecting belts are used to increase the flexibility of the textile fabric base layer to carry out tensile protection on the textile fabric base layer;

[0009] Reinforcement belts and tensile belts. The reinforcement belts are located between adjacent support belts, and the tensile belts are located between adjacent connecting belts. The reinforcement belts and the tensile belts are used to connect and support adjacent support belts to increase the tensile strength of adjacent support belts.

[0010] Preferably, the connecting belts are fixedly connected between adjacent support belts, the side part of the reinforcement belt is fixedly connected to the support belt, and adjacent reinforcement belts are arranged in a staggered manner.

[0011] Preferably, the bottom end of the tensile belt is fixedly connected to the connecting belt. Both the support belt and the connecting belt are made of spandex fiber material, and both the reinforcement belt and the tensile belt are made of polyester fiber material.

[0012] Preferably, the reinforcing layer is made of nylon fiber. A flame retardant layer is fixedly connected to the side of one of the reinforcing layers. The top end of the flame retardant layer is fixedly connected to the wear-resistant layer. The other side of one of the reinforcing layers is fixedly connected to the textile fabric base layer.

[0013] Preferably, the bottom end of the textile fabric base layer is fixedly connected to the other reinforcing layer. An antistatic layer is fixedly connected to the side of the other reinforcing layer. The antistatic layer is made of antistatic cloth.

[0014] Preferably, the bottom end of the antistatic layer is fixedly connected to a flexible layer. The bottom end of the flexible layer is fixedly connected to an antibacterial layer.

[0015] Preferably, the flexible layer is made of polypropylene fiber, and the antibacterial layer is made of bamboo fiber.

[0016] Preferably, the bottom end of the antibacterial layer is fixedly connected to a soft layer. The soft layer is made of pure cotton.

[0017] The technical effects and advantages of the present invention:

[0018] (1) The present invention utilizes the setting method of the cooperation of the reinforcing layer, the support belt, the connecting belt, the reinforcing belt and the tensile belt. The support belt and the connecting belt are both made of spandex, the reinforcing belt and the tensile belt are both made of polyester, and the reinforcing layer is made of nylon fiber. Nylon fiber is a synthetic fiber. Nylon fiber has a small density, is light in weight but high in strength, stronger than the strength of steel, and has high tensile strength and shear strength. The connecting belt supports the adjacent support belts, the reinforcing belt reinforces the adjacent support belts, and the tensile belt makes the adjacent connecting belts be pulled and connected, thereby being beneficial to increasing the tensile strength of the textile fabric base layer, facilitating the increase of the flexibility of the textile fabric base layer, and facilitating the prevention of the random pulling and deformation of the textile fabric base layer;

[0019] (2) The present invention utilizes the setting method of the cooperation of the wear-resistant layer, the flame retardant layer and the antistatic layer. The wear-resistant layer is made of polyester fiber. Polyester fiber is polyarylate fiber, which has small water absorption, good anti-creep and wear resistance. At the same time, polyester fiber has excellent wrinkle resistance, elasticity and dimensional stability, and polyester fiber has good electrical insulation performance, resistance to sunlight, resistance to friction, non-mildewing and non-moth-eaten, and has good resistance to chemical reagents, and can withstand weak acids and weak bases. The flame retardant layer is made of aramid fiber, and the antistatic layer is made of antistatic cloth, thereby being beneficial to increasing the wear-resistant strength, flame retardant performance and antistatic performance of the textile fabric base layer;

[0020] (3) The present invention utilizes the setting method of the cooperation of the antibacterial layer, the soft layer and the flexible layer. The antibacterial layer is made of bamboo fiber, the soft layer is made of pure cotton, and the flexible layer is made of polypropylene fiber, thereby being beneficial to improving the antibacterial ability of the textile fabric base layer and the use comfort of the textile fabric base layer, and at the same time being beneficial to increasing the flexibility of the textile fabric base layer. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0022] Figure 2 It is a front cross-sectional structural schematic diagram of the present invention.

[0023] Figure 3 It is a schematic diagram of the top cross-sectional structure of the support belt of the present invention.

[0024] In the figure: 1. Textile fabric base layer; 2. Wear-resistant layer; 3. Reinforcement layer; 31. Support belt; 32. Connecting belt; 33. Reinforcement belt; 34. Tensile belt; 4. Flame retardant layer; 5. Antistatic layer; 6. Flexible layer; 7. Antibacterial layer; 8. Soft layer. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0026] The present invention provides Figures 1-3A flexible textile fabric as shown, including a textile fabric base layer 1. Above the textile fabric base layer 1, there is a wear-resistant layer 2. The wear-resistant layer 2 is made of polyester fiber. The polyester fiber is a polyarylate fiber, which has low water absorption, good anti-creep and wear resistance. At the same time, the polyester fiber has excellent wrinkle resistance, elasticity and dimensional stability, and the polyester fiber has good electrical insulation performance, resistance to sunlight, resistance to friction, does not mildew or moth-eat, has good resistance to chemical reagents, and can withstand weak acids and weak bases. This is conducive to increasing the wear resistance of the textile fabric base layer 1 and improving the service life of the textile fabric base layer 1. At the top and bottom of the textile fabric base layer 1, there are reinforcement layers 3 for tensile protection of the textile fabric base layer 1. The reinforcement layer 3 is made of nylon fiber. Nylon fiber is also known as polyamide fiber. Nylon fiber is a synthetic fiber. The density of nylon fiber is small, it is light in weight but high in strength, stronger than the strength of steel, and has high tensile strength and shear strength. The corrosion resistance of nylon fiber is good, and it is not corroded by acids, alkalis and organic substances. Nylon fiber has high elasticity and can quickly return to its original shape. The volume resistance of nylon is very high, and the breakdown voltage resistance is high. Nylon fiber is an electrical and electrical insulation material. Nylon fiber has strong resistance to ultraviolet rays and is not easy to fade. The melting point of nylon fiber is relatively high, can withstand high temperatures and is not easy to melt. This is conducive to increasing the tensile performance of the textile fabric base layer 1, facilitating the rapid recovery of the textile fabric base layer 1 after being pulled, and increasing the tensile strength of the textile fabric base layer 1. The reinforcement layer 3 includes a support belt 31, a connecting belt 32, a reinforcement belt 33 and a tensile belt 34. The connecting belt 32 is located between adjacent support belts 31. The support belt 31 and the connecting belt 32 are used to increase the flexibility of the textile fabric base layer 1 for tensile protection of the textile fabric base layer 1. The reinforcement belt 33 is located between adjacent support belts 31, and the tensile belt 34 is located between adjacent connecting belts 32. The reinforcement belt 33 and the tensile belt 34 are used to connect and support adjacent support belts 31 to increase the tensile strength of adjacent support belts 31. The connecting belt 32 is fixedly connected between adjacent support belts 31. The side of the reinforcement belt 33 is fixedly connected to the support belt 31. Adjacent reinforcement belts 33 are arranged in a staggered manner. The bottom end of the tensile belt 34 is fixedly connected to the connecting belt 32. Both the support belt 31 and the connecting belt 32 are made of spandex fiber. Spandex fiber has the characteristics of low sensitivity, good air permeability and high elasticity. The elastic elongation of spandex fiber is high, higher than that of polyamide high elastic yarn. The resilience of spandex fiber is high. Spandex fiber has excellent elasticity, corrosion resistance, heat resistance, tear resistance, acid and alkali resistance, sweat resistance, dry cleaning resistance and wear resistance. Spandex fiber has the characteristics of high breaking elongation and high recovery rate. This is conducive to increasing the elastic performance of the textile fabric base layer 1, facilitating the increase of the tensile strength of the textile fabric base layer 1, increasing the flexibility of the textile fabric base layer 1 and improving the service strength of the textile fabric base layer 1. Both the reinforcement belt 33 and the tensile belt 34 are made of polyester fiber. Polyester fiber is also known as polyester fabric. Polyester fabric has relatively high strength and elastic recovery ability.Furthermore, polyester fibers are characterized by being strong, durable, wrinkle-resistant and easy to iron. Polyester fibers have good light resistance, excellent wear resistance, and a strong luster. After dyeing, the color is stable, the hue can be adjusted, and it is not easy to fade. This is conducive to increasing the elastic performance between the support bands 31, facilitating the increase of the tensile strength of the textile fabric base layer 1, and enhancing the flexibility of the textile fabric base layer 1.

[0027] Specifically, a flame retardant layer 4 is fixedly connected to the side of one of the reinforcement layers 3. The flame retardant layer 4 is made of aramid fiber. Aramid fiber usually has the characteristics of high strength and high modulus. At the same time, aramid fiber can maintain good performance at high temperatures. Aramid fiber has good fire resistance. Aramid fiber can remain stable in corrosive environments such as strong acids and strong alkalis and is not corroded by chemicals. Aramid fiber also has good insulation and anti-aging properties and can maintain its performance stability for a long time. Aramid fiber also has the characteristics of antibacterial and corrosion resistance. Thus, it is beneficial to increase the flame retardant performance of the textile fabric base layer 1, facilitate improving the safety of using the textile fabric base layer 1, and prevent the random combustion of the textile fabric base layer 1. The top end of the flame retardant layer 4 is fixedly connected to the wear-resistant layer 2. The other side of one of the reinforcement layers 3 is fixedly connected to the textile fabric base layer 1. The bottom end of the textile fabric base layer 1 is fixedly connected to the other reinforcement layer 3. An antistatic layer 5 is fixedly connected to the side of the other reinforcement layer 3. The antistatic layer 5 is made of antistatic cloth. Antistatic cloth has excellent antistatic performance. Antistatic cloth uses polyester as the main body and is woven with conductive fibers in the warp or weft direction through a special process, having an efficient antistatic function. Antistatic can effectively reduce static electricity accumulation, prevent charge accumulation on the human body, and reduce the occurrence of electric shock. It has good dust-proof performance. Antistatic cloth not only has an antistatic function but also can effectively prevent the shedding of fabric fibers and the leakage of fine dust particles from the fabric gaps. Antistatic cloth has the characteristics of being soft, thin, smooth, and having clear texture. The surface of the antistatic cloth is soft, easy to wear and wash, has high temperature resistance and stable chemical properties. Antistatic cloth has the characteristic of high temperature resistance and can adapt to use in high temperature environments. At the same time, the chemical properties of antistatic cloth are stable, it is resistant to washing, and is not easily affected by chemical substances. Thus, it is beneficial to increase the antistatic performance of the textile fabric base layer 1, facilitate increasing the wearing comfort of the user. The bottom end of the antistatic layer 5 is fixedly connected to a flexible layer 6. The flexible layer 6 is made of polypropylene fiber. Polypropylene fiber has the characteristics of high strength, good elasticity, electrical insulation, and warmth retention. Polypropylene fiber has good resilience. At the same time, polypropylene fiber has good chemical tolerance and has the characteristics of acid resistance, alkali resistance, and anti-microbial. Thus, it is beneficial to increase the flexibility of the textile fabric base layer 1, facilitate increasing the flexible strength of the textile fabric base layer 1, and facilitate increasing the tensile performance of the textile fabric base layer 1. The bottom end of the flexible layer 6 is fixedly connected to an antibacterial layer 7. The antibacterial layer 7 is made of bamboo fiber. Bamboo fiber has high strength and wear resistance. The tensile breaking strength of bamboo fiber is higher than that of viscose fiber. The tensile breaking elongation rate of bamboo fiber is high. At the same time, bamboo fiber has good air permeability, can allow the skin to breathe, and keep the skin dry. The moisture absorption performance of bamboo fiber is excellent and can absorb more water than its own weight. Bamboo fiber has the characteristic of natural antibacterial. There is a natural antibacterial substance contained in bamboo fiber, which can effectively kill bacteria and inhibit the growth of bacteria, and is gentle and skin-friendly. Thus, it is beneficial to increase the antibacterial performance of the textile fabric base layer 1 and facilitate the protection of the user's skin.The bottom end of the antibacterial layer 7 is fixedly connected to a soft layer 8. The soft layer 8 is made of pure cotton material. The pure cotton material has the characteristics of comfort, durability, good air permeability and warmth retention. The pure cotton fabric is soft and comfortable, relatively durable, not easy to wear and deform. At the same time, since cotton fibers are poor conductors of heat and electricity, the thermal conductivity coefficient is extremely low. Cotton fibers themselves have porosity and high elasticity, and a large amount of air can be accumulated between the fibers, which is conducive to increasing the softness of the textile fabric base layer 1 and improving the comfort of the user when wearing.

[0028] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A flexible textile fabric, comprising: A textile fabric base layer (1), wherein a wear-resistant layer (2) is arranged above the textile fabric base layer (1); The invention is characterized in that a reinforcement layer (3) for providing tensile protection to the textile fabric base layer (1) is provided at the top and bottom ends of the textile fabric base layer (1), and the reinforcement layer (3) comprises: A supporting belt (31) and a connecting belt (32), wherein the connecting belt (32) is located between adjacent supporting belts (31), and the supporting belt (31) and the connecting belt (32) are used to increase the flexibility of the textile fabric base layer (1) so as to provide tensile protection for the textile fabric base layer (1); A reinforcement belt (33) and an anti-tensile belt (34), wherein the reinforcement belt (33) is located between adjacent support belts (31), and the anti-tensile belt (34) is located between adjacent connecting belts (32), and the reinforcement belt (33) and the anti-tensile belt (34) are used to connect and support adjacent support belts (31) to increase the tensile strength of the adjacent support belts (31).

2. A flexible textile fabric according to claim 1, characterized in that: The connecting belt (32) is fixedly connected between adjacent supporting belts (31), the side portions of the reinforcing belts (33) are fixedly connected to the supporting belts (31), and the adjacent reinforcing belts (33) are arranged in a staggered manner.

3. A flexible textile fabric according to claim 1, characterized in that: The bottom end of the anti-tension belt (34) is fixedly connected to the connecting belt (32); the supporting belt (31) and the connecting belt (32) are both made of spandex fiber; and the reinforcing belt (33) and the anti-tension belt (34) are both made of polyester fiber.

4. A flexible textile fabric according to claim 1, characterized in that: The reinforcement layer (3) is made of nylon fiber material, one side of the reinforcement layer (3) is fixedly connected to a flame retardant layer (4), the top of the flame retardant layer (4) is fixedly connected to the wear-resistant layer (2), and the other side of one of the reinforcement layers (3) is fixedly connected to the textile fabric base layer (1).

5. The flexible textile fabric according to claim 1, characterized in that: The bottom end of the textile fabric base layer (1) is fixedly connected to another reinforcement layer (3), wherein the side of the other reinforcement layer (3) is fixedly connected with an antistatic layer (5), and the antistatic layer (5) is made of antistatic cloth.

6. A flexible textile fabric according to claim 5, characterized in that: The bottom end of the antistatic layer (5) is fixedly connected to a flexible layer (6), and the bottom end of the flexible layer (6) is fixedly connected to an antibacterial layer (7).

7. A flexible textile fabric according to claim 6, characterized in that: The flexible layer (6) is made of polypropylene fiber, and the antibacterial layer (7) is made of bamboo fiber.

8. The flexible textile fabric according to claim 6, characterized in that: The bottom end of the antibacterial layer (7) is fixedly connected to a soft layer (8), and the soft layer (8) is made of pure cotton.

Citation Information

Patent Citations

  • Textile fabric with high wear resistance

    CN213138174U

  • High-elastic wear-resistant braid

    CN215473617U

  • High-temperature-resistant filter cloth

    CN219333487U

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    CN220742350U