Antibacterial and deodorant low stretch yarn composite structure fabric
By introducing antibacterial and anti-odor composite structures into low-elastic silk fabrics, antibacterial fibers and inorganic antibacterial agents are used to inhibit bacterial growth, and natural deodorants decompose odors, solving the problem of bacterial growth in low-elastic silk fabrics in warm and humid environments, achieving efficient antibacterial and anti-odorant, comfortable and durable effects.
Patent Information
- Application Number
- CN202422108141.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-29
AI Technical Summary
Low-elastic silk fabrics are easily a breeding ground for bacteria in warm and humid environments, affecting the comfort and health of the wearer. The existing technology has not effectively solved this problem.
The antibacterial, anti-odorant, low-elastic wire composite structure fabric is used to set up a base layer, anti-bacterial layer and anti-odor layer inside the main body of the fabric, and anti-bacterial fibers and inorganic anti-bacterial agents to inhibit bacterial growth. The natural deodorant decomposes odor substances, and combines the skin-friendly layer and wear-resistant layer to improve comfort and durability.
Significantly inhibit bacterial growth, reduce odor generation, improve fabric hygiene and comfort, maintain freshness, and enhance antistatic properties and wear resistance.
Smart Images

Figure CN223131560U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of low-elasticity yarn fabrics, in particular to an antibacterial and odor-proof low-elasticity yarn composite structure fabric. Background Art
[0002] Low-elasticity yarn fabric is a textile material with specific properties, mainly made from raw materials such as polyester chemical fibers through special processes. It is a type of deformed yarn of polyester chemical fiber and belongs to the raw materials of polyester chips. High-speed spinning of polyester pre-oriented yarn is used, and then processes such as drawing and false twisting are carried out. Compared with ordinary yarns, low-elasticity yarn has less elasticity and is not easily deformed. This stable elasticity enables the low-elasticity yarn fabric to maintain good shape and dimensional stability during wearing and use.
[0003] Due to its soft, comfortable, breathable and other properties, low-elasticity yarn fabric is generally used to make lightweight, soft summer clothes, women's underwear, socks, etc. This also makes the low-elasticity yarn fabric easily become a hotbed for bacteria growth in a warm and humid environment. Especially when human sweat remains on the fabric, this environment is more conducive to the reproduction of bacteria, and it will also affect the comfort and health of the wearer. Therefore, an antibacterial and odor-proof low-elasticity yarn composite structure fabric is needed. Content of the Utility Model
[0004] The purpose of the utility model is to provide an antibacterial and odor-proof low-elasticity yarn composite structure fabric to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: an antibacterial and odor-proof low-elasticity yarn composite structure fabric, including a fabric main body, a base layer, an antibacterial layer and a low-elasticity yarn main body. A base layer is arranged at the central position inside the fabric main body, and the low-elasticity yarn main body is evenly arranged inside the base layer. Antibacterial layers are arranged on both sides of the base layer, and the antibacterial layer is woven by antibacterial fibers. A yarn core is arranged at the central position inside each antibacterial fiber, and an antibacterial coating layer is arranged on the outer side of the yarn core through a first adhesive layer. An odor-proof layer is arranged on the outer side of the antibacterial coating layer through a second adhesive layer. A skin-friendly layer is arranged at the bottom side of the fabric main body, and an abrasion-resistant layer is arranged on the top side of the fabric main body.
[0006] Preferably, polyester fiber filaments and spandex filaments are evenly arranged inside the low-elasticity yarn main body, and the polyester fiber filaments and spandex filaments are twisted to form the low-elasticity yarn main body.
[0007] Preferably, convex portions are evenly distributed on the skin-friendly layer, and the material of the convex portions is milk protein fiber.
[0008] Preferably, cotton fibers and carbon fibers are evenly arranged inside the abrasion-resistant layer, and the cotton fibers and carbon fibers are woven in an "X" shape structure.
[0009] Preferably, antistatic fibers are wound around the spandex filaments, and the antistatic fibers are all bamboo charcoal fibers.
[0010] Preferably, the yarn cores are all linen fibers, the antibacterial coating layers are all inorganic antibacterial agents, and the odor-proof layers are all natural odor-proof agents.
[0011] Preferably, the convex portions are all in an arc-shaped structure, and flow channels are formed on the skin-friendly layer between the convex portions.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The antibacterial and odor-proof low-elastic filament composite structure fabric is provided with a fabric main body, a base layer and an antibacterial layer. The base layer is woven from a low-elastic filament main body, and the antibacterial layer is arranged on both sides of the base layer. The antibacterial layer is woven from antibacterial fibers, and the antibacterial fibers are composed of a yarn core, a first adhesive layer, an antibacterial coating layer, a second adhesive layer and an odor-proof layer. The yarn core is made of linen fiber, and the antibacterial coating layer is compounded on the outside of the yarn core through the first adhesive layer. The antibacterial coating layer is an inorganic antibacterial agent (such as metal ions such as silver, copper, and zinc ions). These components can effectively inhibit the growth and reproduction of bacteria, thereby achieving the antibacterial effect, significantly improving the hygienic performance of the fabric main body, reducing the odor and skin problems caused by bacterial growth. At the same time, an odor-proof layer is arranged on the outside of the antibacterial coating layer through the second adhesive layer. The odor-proof layer is a natural odor-proof agent, which has a strong electron-donating ability, can improve the activity of odor substances, and cause them to undergo an active oxidation reaction to be decomposed and eliminated. The odor-proof layer and the antibacterial coating layer work together to adsorb, decompose or inhibit the substances that produce odors, thereby keeping the fabric main body fresh. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required to be used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present utility model, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0014] Figure 1 It is a front view sectional structure schematic diagram of the present utility model;
[0015] Figure 2 It is a schematic diagram of the low-elastic filament main body structure of the present utility model;
[0016] Figure 3 It is a sectional structure schematic diagram of the antibacterial fiber of the present utility model;
[0017] Figure 4 For the present utility model Figure 1 The enlarged structure schematic diagram at A in;
[0018] Figure 5 For the present utility model Figure 1 The enlarged structural schematic diagram at position B in
[0019] In the figure: 1, fabric main body; 2, base layer; 3, antibacterial layer; 4, low-elasticity filament main body; 5, skin-friendly layer; 6, wear-resistant layer; 7, antibacterial fiber; 8, polyester fiber filament; 9, spandex filament; 10, antistatic fiber; 11, yarn core; 12, first adhesive layer; 13, antibacterial coating layer; 14, second adhesive layer; 15, odor-proof layer; 16, carbon fiber; 17, cotton fiber; 18, convex part; 19, circulation channel. Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0021] Please refer to Figure 1-5 , an embodiment provided by the present utility model: an antibacterial and odor-proof low-elasticity filament composite structure fabric, including a fabric main body 1, a base layer 2, an antibacterial layer 3, and a low-elasticity filament main body 4. A base layer 2 is provided at the central position inside the fabric main body 1, and a low-elasticity filament main body 4 is evenly provided inside the base layer 2. Polyester fiber filaments 8 and spandex filaments 9 are evenly provided inside the low-elasticity filament main body 4, and the polyester fiber filaments 8 and spandex filaments 9 are twisted to form the low-elasticity filament main body 4;
[0022] It provides appropriate elasticity and resilience, so that the fabric will neither be too tight nor too loose when worn, and is suitable for making tight-fitting clothes and skin-friendly clothing;
[0023] Antistatic fibers 10 are wound around the spandex filaments 9, and the antistatic fibers 10 are all bamboo charcoal fibers, which have good hygroscopicity, antibacterial and deodorizing properties, and have the functions of anti-static and anti-electromagnetic radiation, and can greatly improve the antistatic performance of the fabric main body 1;
[0024] Antibacterial layers 3 are provided on both sides of the base layer 2, and the antibacterial layers 3 are formed by interweaving antibacterial fibers 7. Yarn cores 11 are provided at the central positions inside the antibacterial fibers 7, and the yarn cores 11 are all linen fibers, and their porous structures have good inhibitory or killing effects on bacteria;
[0025] Antibacterial coating layers 13 are provided on the outer sides of the yarn cores 11 through the first adhesive layers 12, and the antibacterial coating layers 13 are all inorganic antibacterial agents, such as metal ions such as silver, copper, and zinc ions. These components can effectively inhibit the growth and reproduction of bacteria, so as to achieve the antibacterial effect, can significantly improve the hygienic performance of the fabric main body 1, and reduce the odor and skin problems caused by bacterial growth;
[0026] On the outer side of the antibacterial coating layer 13, an anti-odor layer 15 is provided through a second adhesive layer 14. The anti-odor layers 15 are all natural anti-odor agents, which have a strong electron-donating ability, can improve the activity of odor substances, and cause them to undergo active oxidation reactions and thus be decomposed and eliminated.
[0027] Through the synergistic effect of the anti-odor layer 15 and the antibacterial coating layer 13, by adsorbing, decomposing or inhibiting substances that produce peculiar smells, the freshness of the fabric main body 1 can be maintained.
[0028] A skin-friendly layer 5 is provided on the bottom side of the fabric main body 1. Protrusions 18 are evenly distributed on the skin-friendly layer 5, and the materials of the protrusions 18 are all milk protein fibers, which are softer and more skin-friendly when contacting the skin of the user, and the touch is comfortable.
[0029] The protrusions 18 are all in an arc-shaped structure, and a circulation channel 19 is formed on the skin-friendly layer 5 between the protrusions 18, which can reduce the contact area with the skin of the user, increase air circulation, and be more skin-friendly and comfortable when wearing.
[0030] A wear-resistant layer 6 is provided on the top side of the fabric main body 1. Cotton fibers 17 and carbon fibers 16 are evenly arranged inside the wear-resistant layer 6, and the cotton fibers 17 and the carbon fibers 16 are woven in an "X" shape, combining the comfort of the cotton fibers 17 and the strong wear-resistant characteristics of the carbon fibers 16, and improving the wear-resistant performance of the fabric main body 1.
[0031] Working principle: When the embodiment of this application is in use, the fabric main body 1 is composed of a base layer 2, an antibacterial layer 3, a skin-friendly layer 5, and a wear-resistant layer 6. The base layer 2 is woven from a low-elasticity filament main body 4. The low-elasticity filament main body 4 is twisted from polyester fiber filaments 8 and spandex filaments 9. An antistatic fiber 10 is wound around the spandex filament 9. The antistatic fiber 10 is made of bamboo charcoal fiber, which has good hygroscopicity, antibacterial and deodorizing properties, and functions of preventing static electricity and electromagnetic radiation, and can greatly improve the antistatic performance of the fabric main body 1. The antibacterial layer 3 is arranged on both sides of the base layer 2 and is interwoven by antibacterial fibers 7. The antibacterial fiber 7 is composed of a yarn core 11, an antibacterial coating layer 13, and an anti-odor layer 15. The yarn core 11 is made of linen fiber. The outside of the yarn core 11 is compounded with an antibacterial coating layer 13 through a first adhesive layer 12. The antibacterial coating layer 13 is an inorganic antibacterial agent (such as metal ions such as silver, copper, and zinc ions). These components can effectively inhibit the growth and reproduction of bacteria, thereby achieving the antibacterial effect, can significantly improve the hygienic performance of the fabric main body 1, reduce the odor and skin problems caused by bacterial growth. At the same time, an anti-odor layer 15 is arranged on the outside of the antibacterial coating layer 13 through a second adhesive layer 14. The anti-odor layer 15 is a natural anti-odor agent, which has a strong electron-donating ability, can improve the activity of odor substances, and enables them to undergo an active oxidation reaction and be decomposed and eliminated. The anti-odor layer 15 and the antibacterial coating layer 13 work together to adsorb, decompose or inhibit the substances that produce odors, thereby keeping the fabric main body 1 fresh. The skin-friendly layer 5 is evenly distributed with protrusions 18. The materials of the protrusions 18 are all milk protein fibers, which are softer and more skin-friendly when contacting the skin of the user, and the touch is comfortable. The protrusions 18 are in an arc structure, and a circulation channel 19 is formed on the skin-friendly layer 5 between the protrusions 18, which can reduce the contact area with the skin of the user, increase air circulation, and be more skin-friendly and comfortable when wearing. The wear-resistant layer 6 is woven from cotton fibers 17 and carbon fibers 16, combining the comfort of cotton fibers 17 and the strong wear resistance of carbon fibers 16.
[0032] Obviously, the above-described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
Claims
1. Antibacterial and odor-proof low-elasticity filament composite structure fabric, characterized in that, It includes a fabric body (1), a base layer (2), an antibacterial layer (3) and a low-elasticity filament body (4). A base layer (2) is arranged at the central position inside the fabric body (1), and the low-elasticity filament body (4) is uniformly arranged inside the base layer (2). Antibacterial layers (3) are arranged on both sides of the base layer (2), and the antibacterial layers (3) are woven by antibacterial fibers (7). A yarn core (11) is arranged at the central position inside each antibacterial fiber (7), and an antibacterial coating layer (13) is arranged on the outer side of each yarn core (11) through a first adhesive layer (12). An odor-proof layer (15) is arranged on the outer side of each antibacterial coating layer (13) through a second adhesive layer (14). A skin-friendly layer (5) is arranged at the bottom side of the fabric body (1), and a wear-resistant layer (6) is arranged at the top side of the fabric body (1).
2. The antibacterial and deodorant low-elasticity filament composite structure fabric according to claim 1, wherein: Polyester fiber filaments (8) and spandex filaments (9) are uniformly arranged inside the low-elasticity filament body (4), and the polyester fiber filaments (8) and the spandex filaments (9) are twisted to form the low-elasticity filament body (4).
3. The antibacterial and odor-proof low-elasticity filament composite structure fabric according to claim 1, characterized in that: Protrusions (18) are uniformly distributed on the skin-friendly layer (5), and the materials of the protrusions (18) are all milk protein fibers.
4. The antibacterial and odor-proof low-elasticity filament composite structure fabric according to claim 1, characterized in that: Cotton fibers (17) and carbon fibers (16) are uniformly arranged inside the wear-resistant layer (6), and the cotton fibers (17) and the carbon fibers (16) are woven in an "X" shaped structure.
5. The antibacterial and deodorant low-elasticity filament composite structure fabric according to claim 2, wherein: Antistatic fibers (10) are wound on each spandex filament (9), and the antistatic fibers (10) are all bamboo charcoal fibers.
6. The antibacterial and deodorant low-elasticity filament composite structure fabric according to claim 1, wherein: The yarn cores (11) are all linen fibers, the antibacterial coating layers (13) are all inorganic antibacterial agents, and the odor-proof layers (15) are all natural odor-proof agents.
7. The antibacterial and odor-proof low-elasticity filament composite structure fabric according to claim 3, characterized in that: The protrusions (18) are all in an arc-shaped structure, and a circulation channel (19) is formed on the skin-friendly layer (5) between the protrusions (18).