A tear-resistant woven fabric

By interlacing triangular antibacterial fabric and rubber sheets into the spun fabric, a tear-resistant layer is formed, which solves the problem of tearing of the spun fabric under external force and improves the tear resistance and abrasion resistance of the fabric.

CN119141966BActive Publication Date: 2026-01-02SUZHOU YINGYU TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202411289267.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2026-01-02
Estimated Expiration
2044-09-14

AI Technical Summary

Technical Problem

Existing spun fabrics are prone to tearing under strong external forces and cannot meet the tear resistance requirements.

Method used

A design is employed in which triangular antibacterial fabric A and triangular antibacterial fabric B are interwoven during the weaving process, and triangular support-shaped rubber sheets A and B are embedded in between to form a tear-resistant layer. Combined with the weaving and coating treatment of the tensile layer, the tear resistance of the fabric is enhanced.

Benefits of technology

The interwoven structure of triangular fabric and rubber sheets enhances the fabric's tear resistance, counteracting external pulling forces while the coating enhances the fabric's abrasion resistance and prevents tearing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of fabrics, in particular to a tear-resistant spinning fabric which solves the problem of weak tear resistance of the spinning fabric. The spinning fabric comprises a tear-resistant layer. The spinning fabric is internally provided with three-layer triangular antibacterial cloth A and three-layer triangular antibacterial cloth B in the shape of triangular supports. When the tear-resistant layer is subjected to pulling, the triangular antibacterial cloth A and the triangular antibacterial cloth B located in the tear-resistant layer will be deformed, the triangular antibacterial cloth A and the triangular antibacterial cloth B will extrude the triangular support-shaped rubber sheet A and the triangular support-shaped rubber sheet B between the triangular antibacterial cloth A and the triangular antibacterial cloth B in each layer in the process of deformation, and the triangular support-shaped rubber sheet A and the triangular support-shaped rubber sheet B can offset a part of external pulling force through the material properties of the triangular support-shaped rubber sheet A and the triangular support-shaped rubber sheet B, and the tear resistance of the fabric is improved through the technical scheme.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fabric, in particular to a tear-resistant spinning fabric. BACKGROUND

[0002] The spinning fabric is a fabric made of fibers after spinning process, which covers various fiber materials and complex processing technology, and is divided into cotton spinning fabric, wool spinning fabric, silk spinning fabric, chemical fiber fabric, etc. according to different raw materials, and has various properties and applications.

[0003] The spinning fabric has the following advantages: comfort: the spinning fabric usually has a soft and smooth hand feeling, suitable for clothes directly contacting the skin, such as underwear, shirts, etc., air permeability: good air permeability helps to promote air circulation, keeping the skin dry and comfortable, moisture absorption: can absorb sweat on the body surface and quickly discharge, providing a refreshing wearing feeling, and wear resistance: the spinning fabric usually has high wear resistance, which can resist the wear caused by daily use and friction, prolonging the service life of the clothes.

[0004] However, the existing spinning fabric itself has a tear-resistant angle, which may be torn under a large external pulling force, thus failing to meet the existing requirements. Therefore, we propose a tear-resistant spinning fabric. SUMMARY

[0005] The present application aims to provide a tear-resistant spinning fabric to solve the problems of the existing spinning fabric itself having a tear-resistant angle, which may be torn under a large external pulling force, etc.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical solution: a tear-resistant spinning fabric, comprising a tear-resistant layer, the tear-resistant layer is made of a plurality of triangular antibacterial cloth A and triangular antibacterial cloth B, the cross-sectional shape of the triangular antibacterial cloth A and the triangular antibacterial cloth B is a triangular support shape, the pointed head of the triangular antibacterial cloth B is upward, the pointed head of the triangular antibacterial cloth B is downward, every three vertically arranged triangular antibacterial cloth A and triangular antibacterial cloth B form a group, the two ends of the first and second triangular antibacterial cloth A from top to bottom in each group are respectively inserted between the two groups of triangular antibacterial cloth B adjacent to them.

[0007] Each two of the triangular antibacterial cloth B is provided with a triangular support shaped rubber sheet A, the upper end surface of the triangular support shaped rubber sheet A is a conical angle of 90 degrees, the upper end surface of the triangular support shaped rubber sheet A is attached to the inner wall of the triangular antibacterial cloth B above it, the lower end surface of the triangular support shaped rubber sheet A is provided with an isosceles triangular groove A, the upper end surface of the triangular antibacterial cloth B below the triangular support shaped rubber sheet A is attached to the inner wall of the isosceles triangular groove A.

[0008] Each two of the triangular antibacterial cloth A is provided with a triangular support shaped rubber sheet B, the lower end surface of the triangular support shaped rubber sheet B is a conical angle of 90 degrees, the lower end surface of the triangular support shaped rubber sheet B is attached to the inner wall of the triangular antibacterial cloth A below it, the lower end surface of the triangular support shaped rubber sheet B is provided with an isosceles triangular groove B, the lower end surface of the triangular antibacterial cloth A above the triangular support shaped rubber sheet B is attached to the inner wall of the isosceles triangular groove B.

[0009] Preferably, the anti-tear layer further comprises two anti-tension layers, the first anti-tension layer from top to bottom covers the upper end surface of the uppermost triangular antibacterial cloth A and triangular antibacterial cloth B, and the second anti-tension layer from top to bottom covers the lower end surface of the lowermost triangular antibacterial cloth A and triangular antibacterial cloth B.

[0010] Preferably, the upper end surface of the first anti-tension layer and the lower end surface of the second anti-tension layer are coated with a coating layer, the outer surface of the coating layer is provided with a plurality of through holes, and the through holes extend to the inside of the anti-tension layer by penetrating the coating layer.

[0011] Preferably, both sides above the uppermost triangular antibacterial cloth B are provided with a weaving line inside the anti-tension layer, the weaving line cyclically pierces the connection position between the triangular antibacterial cloth A and the triangular antibacterial cloth B.

[0012] Preferably, the weaving method of the anti-tear layer comprises the following steps:

[0013] Step A: first lay an anti-tension layer on the weaving table, then lay a triangular antibacterial cloth A on the anti-tension layer every certain distance with the pointed cone head of the triangular antibacterial cloth A facing down, and ensure that the distance between the triangular antibacterial cloths A is less than the distance between the two vertices of the upper end surface of the triangular antibacterial cloth A;

[0014] Step B: when the triangular antibacterial cloth A is laid out, take the same number of triangular support shaped rubber sheets B as the triangular antibacterial cloth A, and place a triangular support shaped rubber sheet B inside each triangular antibacterial cloth A;

[0015] Step C; when the triangular support rubber sheet B is placed, pick up the triangular antibacterial fabric B, and place it between every two triangular antibacterial fabric A with the pointed head facing up. When every two triangular antibacterial fabric A has one triangular antibacterial fabric B between them, place a triangular support rubber sheet A on the upper end of the triangular antibacterial fabric B. When every triangular antibacterial fabric B has one triangular support rubber sheet A on it, place a layer of triangular antibacterial fabric A on the triangular antibacterial fabric B just laid. When the triangular antibacterial fabric A and B are all laid for three layers, it is done.

[0016] Step D; when the triangular antibacterial fabric A and B are laid, pick up a layer of the tensile layer, and place it on the upper end of all the triangular antibacterial fabric A and B. Then, align the knitting thread on the outer surface of the tensile layer with the connection between the triangular antibacterial fabric A and B, and move up and down in a wavy line at this position. In this way, the tensile layer, triangular antibacterial fabric A and B are knitted together.

[0017] Preferably, the tensile layer 3 includes the following components by weight fraction: cotton fiber: 50-70 parts, polyester fiber: 20-40 parts, elastic fiber: 5-20 parts, silver nanowire: 0.5-3 parts, antistatic agent: 1-6 parts, antibacterial agent: 10-20 parts, modified glass fiber: 20-30 parts, aramid fiber: 30-40 parts, concentrated lye: 20-30 parts, and resin solvent: 10-20 parts.

[0018] Preferably, the knitting method of the tensile layer is as follows:

[0019] Mix the cotton fiber, polyester fiber, elastic fiber, modified glass fiber, and aramid fiber according to the corresponding proportions to make the basic fiber of the fabric.

[0020] During the mixing process, add the corresponding proportion of silver nanowire to the fiber mixture four times;

[0021] After the silver nanowire is added, gradually add the antistatic agent and antibacterial agent to the mixture;

[0022] After the mixing is complete, the mixed fibers are spun into yarn, which is knitted into a spinning thread. During this process, the fiber tension and twist can be adjusted to improve the strength and toughness of the spinning thread. Finally, the spinning thread is knitted into a spinning fabric by a spinning machine.

[0023] Preferably, after the fabric is knitted, the lint on the fabric surface is removed by high-temperature flame or red-hot metal surface.

[0024] Afterwards, it is soaked in the interior of resin solvent for half an hour;

[0025] After half an hour, it is placed in high-temperature concentrated lye to boil for one hour to remove residual impurities on the fabric;

[0026] Finally, it is subjected to dyeing, washing, drying, setting and other process treatments.

[0027] Preferably, the coating is one of an epoxy coating, a polyester coating or a PA coating.

[0028] Preferably, an expansion groove B is arranged between the two ends of the triangular support-shaped rubber sheet B and the triangular antibacterial fabric B, an expansion groove A is arranged between the two ends of the triangular support-shaped rubber sheet A and the triangular antibacterial fabric A, and the triangular support-shaped rubber sheet A and the triangular support-shaped rubber sheet B are integrally made of rubber.

[0029] Compared with the prior art, the present application has the following advantages:

[0030] 1. The triangular support-shaped three-layer triangular antibacterial fabric A and the triangular support-shaped three-layer triangular antibacterial fabric B are arranged in the interior of the anti-tearing layer, and all the triangular antibacterial fabrics A and B are sewn and fixed with the anti-tearing layer by the weaving thread. When the anti-tearing layer is pulled, the triangular antibacterial fabrics A and B in the interior will be deformed. In the process of deformation, the triangular support-shaped rubber sheet A and the triangular support-shaped rubber sheet B between the triangular antibacterial fabrics A and B in each layer will be deformed. During the pulling of the anti-tearing layer, the pulling force will also act on all the triangular support-shaped rubber sheets A and B. Since the triangular support-shaped rubber sheets A and B are integrally made of rubber and have a certain elasticity, a part of the external pulling force can be offset by the triangular support-shaped rubber sheets A and B during the deformation of the anti-tearing layer, thereby improving the anti-tearing property of the fabric.

[0031] 2. During the production of the anti-tearing layer, it needs to be soaked in the interior of the resin solvent for half an hour. After the anti-tearing layer absorbs the resin solvent, the anti-tearing property and the surface wear resistance of the anti-tearing layer can be improved, thereby improving the anti-tearing property of the surface of the anti-tearing layer and preventing the surface from being torn while the interior is not torn by the external pulling force. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is a structural schematic diagram of the present application.

[0033] Figure 2 The cross-sectional structure front view of the whole application;

[0034] Figure 3 The structure enlarged view of A in the application Figure 2

[0035] Figure 4 The structure top view of the triangular antibacterial cloth A and the triangular antibacterial cloth B in the application

[0036] Figure 5 The structure schematic view of the triangular antibacterial cloth A and the triangular antibacterial cloth B in the application

[0037] In the figure: 1, the anti-tearing layer; 2, the coating layer; 3, the anti-tension layer; 4, the through hole; 5, the triangular antibacterial cloth A; 6, the triangular antibacterial cloth B; 7, the triangular support-shaped rubber piece A; 8, the woven wire; 9, the triangular support-shaped rubber piece B; 10, the isosceles triangular groove A; 11, the isosceles triangular groove B; 12, the expansion groove A; 13, the expansion groove B. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the application will be apparently and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application.

[0039] Please refer to Figures 1 to 5 , the application provides an embodiment: an anti-tearing spun fabric, comprising an anti-tearing layer 1, the anti-tearing layer 1 is woven by a plurality of triangular antibacterial cloths A 5 and triangular antibacterial cloths B 6, the cross-sectional shape of the triangular antibacterial cloth A 5 and the triangular antibacterial cloth B 6 is triangular support-shaped, the pointed head on the triangular antibacterial cloth B 6 faces upward, the pointed head on the triangular antibacterial cloth B 6 faces downward, every three vertically arranged triangular antibacterial cloths A 5 and triangular antibacterial cloths B 6 form a group, the two ends of the first and second triangular antibacterial cloths A 5 from top to bottom in each group of triangular antibacterial cloths A 5 are respectively inserted between two groups of triangular antibacterial cloths B 6 adjacent to the two ends;

[0040] One triangular support-shaped rubber piece A 7 is arranged between every two triangular antibacterial cloths B 6, the upper end surface of the triangular support-shaped rubber piece A 7 is a conical angle of ninety degrees, the upper end surface of the triangular support-shaped rubber piece A 7 is attached to the inner wall of the triangular antibacterial cloth B 6 above the triangular support-shaped rubber piece A 7, the lower end surface of the triangular support-shaped rubber piece A 7 is provided with an isosceles triangular groove A 10, the upper end surface of the triangular antibacterial cloth B 6 below the triangular support-shaped rubber piece A 7 is attached to the inner wall of the isosceles triangular groove A 10;

[0041] ​A fifth triangular anti-bacterial fabric A5 is arranged on the upper end of the fourth triangular anti-bacterial fabric B6, and a sixth triangular anti-bacterial fabric B7 is arranged on the lower end of the fifth triangular anti-bacterial fabric A5. A triangular support-shaped rubber sheet B9 is arranged between every two triangular anti-bacterial fabrics A5, and the lower end surface of the triangular support-shaped rubber sheet B9 is a conical surface with an angle of 90 degrees. The lower end surface of the triangular support-shaped rubber sheet B9 is attached to the inner wall of the triangular anti-bacterial fabric A5 below it, and the lower end surface of the triangular support-shaped rubber sheet B9 is provided with an isosceles triangular groove B11. The lower end surface of the triangular anti-bacterial fabric A5 above the triangular support-shaped rubber sheet B9 is attached to the inner wall of the isosceles triangular groove B11.

[0042] The anti-tear layer 1 further comprises two tensile layers 3. The first tensile layer 3 from top to bottom covers the upper end surface of the uppermost triangular anti-bacterial fabric A5 and the triangular anti-bacterial fabric B6, and the second tensile layer 3 from top to bottom covers the lower end surface of the lowermost triangular anti-bacterial fabric A5 and the triangular anti-bacterial fabric B6. The triangular anti-bacterial fabric B6 above the uppermost triangular anti-bacterial fabric B6 is provided with a braided wire 8 inside the tensile layer 3 on both sides. The braided wire 8 penetrates the connection position between the triangular anti-bacterial fabric A5 and the triangular anti-bacterial fabric B6 in a circular manner. The triangular support-shaped rubber sheet B9 is provided with an expansion groove B13 between the two ends and the triangular anti-bacterial fabric B6, and the triangular support-shaped rubber sheet A7 is provided with an expansion groove A12 between the two ends and the triangular anti-bacterial fabric A5. The triangular support-shaped rubber sheet A7 and the triangular support-shaped rubber sheet B9 are integrally made of rubber.

[0043] The braiding method of the anti-tear layer 1 comprises the following steps:

[0044] First, lay a layer of tensile layer 3 on the braiding table, then lay a triangular anti-bacterial fabric A5 on the tensile layer 3 every certain distance with the pointed cone head of the triangular anti-bacterial fabric A5 facing down, and ensure that the distance between the triangular anti-bacterial fabrics A5 is less than the distance between the two vertices on the upper end surface of the triangular anti-bacterial fabric A5.

[0045] After the triangular anti-bacterial fabric A5 is laid, take the same number of triangular support-shaped rubber sheets B9 as the triangular anti-bacterial fabric A5, and place one triangular support-shaped rubber sheet B9 in the interior of each triangular anti-bacterial fabric A5.

[0046] When the triangular support shape rubber sheet B9 is placed, pick up the triangular antibacterial fabric B6, and place one triangular antibacterial fabric B6 between every two triangular antibacterial fabrics A5 with the pointed head of the triangular antibacterial fabric B6 upward. When every two triangular antibacterial fabrics A5 contain one triangular antibacterial fabric B6, place a triangular support shape rubber sheet A7 on the upper end surface of the triangular antibacterial fabric B6. When every triangular antibacterial fabric B6 contains one triangular support shape rubber sheet A7, place a layer of triangular antibacterial fabric A5 on the triangular antibacterial fabric B6 just laid. When the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 are laid for three layers, it is completed.

[0047] When the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 are laid, pick up a layer of the anti-tension layer 3, and cover the anti-tension layer 3 on the upper end surface of all the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6. Then, align the connection between the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 on the outer surface of the anti-tension layer 3 with the wave line up and down movement at this position to stitch the triangular antibacterial fabric A5, the triangular antibacterial fabric B6 and the anti-tension layer 3 together to fix them. The inside of the anti-tearing layer 1 after stitching contains three layers of triangular antibacterial fabric A5 and three layers of triangular antibacterial fabric B6 in the shape of triangular support, and all the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 are fixed with the anti-tension layer 3 through the stitching of the stitching line 8. When the anti-tension layer 3 is pulled, the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 inside it will be deformed. The triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 will squeeze the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9 between every layer of the triangular antibacterial fabric A5 and the triangular antibacterial fabric B6 to deform. The expansion groove A12 and the expansion groove B13 on one side of the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9 can provide space for the deformation of the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9. The pulling force will also act on all the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9 when the anti-tension layer 3 is pulled. Since the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9 are made of rubber and have a certain elasticity, a part of the pulling force from the outside can be offset through the triangular support shape rubber sheet A7 and the triangular support shape rubber sheet B9 when the anti-tension layer 3 is deformed. The above technical solution can improve the anti-tearing property of the anti-tearing layer 1.

[0048] The upper end face of the first tensile layer 3 and the lower end face of the second tensile layer 3 are both coated with a coating layer 2, the outer surface of the coating layer 2 is provided with a plurality of through holes 4, and the through holes 4 extend to the inside of the tensile layer 3 by penetrating through the coating layer 2; the coating layer 2 is one of an epoxy coating layer, a polyester coating layer or a PA coating layer; through the high-elasticity epoxy coating layer, polyester coating layer or PA coating layer, the surface coating layer can be prevented from being cracked when the tensile layer 1 is pulled and torn.

[0049] The tensile layer 3 includes the following components according to its weight fraction: 50-70 parts of cotton fiber, 20-40 parts of polyester fiber, 5-20 parts of elastic fiber, 0.5-3 parts of silver nanowire, 1-6 parts of antistatic agent, 10-20 parts of antibacterial agent, 20-30 parts of modified glass fiber, 30-40 parts of aramid fiber, 20-30 parts of concentrated lye, and 10-20 parts of resin solvent.

[0050] The preparation method of the tensile layer 3 is as follows:

[0051] The cotton fiber, polyester fiber, elastic fiber, modified glass fiber and aramid fiber are mixed according to the corresponding proportions to prepare the basic fibers of the fabric;

[0052] During the mixing process, the corresponding proportion of silver nanowire is added to the inside of the fiber mixture four times;

[0053] After the addition of silver nanowire is completed, the antistatic agent and the antibacterial agent are gradually added to the mixture;

[0054] After the mixing is completed, the mixed fibers are subjected to a spinning operation to prepare a spun yarn, and the stretch and twist of the fibers can be adjusted during this process to improve the strength and toughness of the spun yarn. Finally, the spun yarn is prepared into a spun fabric by a spinning machine.

[0055] After the fabric is prepared, the lint on the fabric surface is removed by a high-temperature flame or a red-hot metal surface; the fabric surface is smooth and beautiful, and the uneven dyeing and printing defects caused by the presence of lint during dyeing and printing are prevented;

[0056] Then it is soaked in the resin solvent for half an hour to enhance the tensile strength and wear resistance of the fabric;

[0057] After half an hour, it is placed in a high-temperature concentrated lye for one hour to remove residual impurities on the fabric; to ensure the dimensional stability and comfort of the fabric;

[0058] Finally, it is subjected to dyeing, washing, drying, setting and other process treatments.

[0059] The present application is generated in the process of producing the anti-tension layer 3, and needs to additionally immerse it in the resin solvent for half an hour, so that the anti-tension layer 3 can enhance the anti-tension property and the surface wear resistance of the anti-tension layer 3 after absorbing the resin solvent. The above technical solution can improve the anti-tension property of the surface of the anti-tear layer 1, and prevent the anti-tear layer 1 from being torn inside and the surface from being torn outside due to the external pulling force.

[0060] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the application can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the application. Therefore, the embodiments should be considered as exemplary and not limiting in any way. The scope of the application is defined by the appended claims rather than by the foregoing description, and it is intended to encompass all changes and modifications that fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.

Claims

1. A tear-resistant woven fabric comprising a tear-resistant layer (1), characterized in that: The anti-tearing layer (1) is made of several triangular antibacterial cloth A (5) and triangular antibacterial cloth B (6), the cross-sectional shape of the triangular antibacterial cloth A (5) and the triangular antibacterial cloth B (6) is triangular support shape, the pointed head of the triangular antibacterial cloth B (6) faces upward, the pointed head of the triangular antibacterial cloth A (5) faces downward, every three vertical arrangement of the triangular antibacterial cloth A (5) and the triangular antibacterial cloth B (6) is a group, the two ends of the first and the second triangular antibacterial cloth A (5) from top to bottom are respectively inserted into the two groups of the triangular antibacterial cloth B (6) adjacent to them, A triangular support shape rubber sheet A (7) is arranged between every two triangular antibacterial cloth B (6), the upper end surface of the triangular support shape rubber sheet A (7) is a conical angle of 90 degrees, the upper end surface of the triangular support shape rubber sheet A (7) is attached to the inner wall of the triangular antibacterial cloth B (6) above it, the lower end surface of the triangular support shape rubber sheet A (7) is provided with an isosceles triangular groove A (10), the upper end surface of the triangular antibacterial cloth B (6) below the triangular support shape rubber sheet A (7) is attached to the inner wall of the isosceles triangular groove A (10), A triangular support shape rubber sheet B (9) is arranged between every two triangular antibacterial cloth A (5), the lower end surface of the triangular support shape rubber sheet B (9) is a conical angle of 90 degrees, the lower end surface of the triangular support shape rubber sheet B (9) is attached to the inner wall of the triangular antibacterial cloth A (5) below it, the upper end surface of the triangular support shape rubber sheet B (9) is provided with an isosceles triangular groove B (11), the lower end surface of the triangular antibacterial cloth A (5) above the triangular support shape rubber sheet B (9) is attached to the inner wall of the isosceles triangular groove B (11).

2. A tear resistant woven fabric according to claim 1, wherein: The anti-tearing layer (1) further comprises two anti-tension layers (3), the first anti-tension layer (3) from top to bottom covers the upper end surface of the triangular antibacterial cloth A (5) and the triangular antibacterial cloth B (6) at the top, the second anti-tension layer (3) from top to bottom covers the lower end surface of the triangular antibacterial cloth A (5) and the triangular antibacterial cloth B (6) at the bottom.

3. A tear resistant woven fabric according to claim 2, wherein: The upper end surface of the first anti-tension layer (3) and the lower end surface of the second anti-tension layer (3) are both coated with a coating layer (2), the outer surface of the coating layer (2) is provided with a plurality of through holes (4), and the through holes (4) extend to the inside of the anti-tension layer (3) by penetrating the coating layer (2).

4. A tear resistant woven fabric according to claim 2, wherein: Both sides above the triangular antibacterial cloth B (6) at the top are provided with a weaving line (8) inside the anti-tension layer (3), the weaving line (8) cyclically pierces the connection position between the triangular antibacterial cloth A (5) and the triangular antibacterial cloth B (6) above and below.

5. A tear resistant woven fabric according to claim 2, wherein: The weaving method of the anti-tension layer (3) is as follows: Cotton fiber, polyester fiber, elastic fiber, modified glass fiber and aramid fiber are mixed to make the basic fiber of the fabric; In the process of mixing, the corresponding proportion of silver nanowires is added to the inside of the fiber mixture in four times; When the addition of silver nanowires is completed, the antistatic agent and the antibacterial agent are gradually added to the mixture; When the mixing is completed, the mixed fibers are subjected to a spinning operation, and are woven into yarns. In this process, the stretch and twist of the fibers can be adjusted to improve the strength and toughness of the yarns. Finally, the yarns are woven into a woven fabric by a spinning machine.

6. A tear resistant woven fabric according to claim 5, wherein: After the fabric is woven, the lint on the fabric surface is removed by a high-temperature flame or a red-hot metal surface; Then it is immersed in a resin solvent for half an hour; After half an hour, it is placed in a high-temperature concentrated lye for one hour to remove residual impurities on the fabric; Finally, it is subjected to process treatments such as dyeing, washing, drying, and setting.

7. A tear resistant woven fabric according to claim 3, wherein: The coating (2) is one of an epoxy coating, a polyester coating, or a PA coating.

8. A tear resistant woven fabric according to claim 1, wherein: The two ends of the triangular support-shaped rubber sheet B (9) and the triangular antibacterial fabric B (6) are provided with an expansion groove B (13), the two ends of the triangular support-shaped rubber sheet A (7) and the triangular antibacterial fabric A (5) are provided with an expansion groove A (12), and the triangular support-shaped rubber sheet A (7) and the triangular support-shaped rubber sheet B (9) are integrally made of rubber.

Citation Information

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