CN221094433U - Antibacterial sweat-absorbing fabric - Google Patents

Antibacterial sweat-absorbing fabric Download PDF

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Publication number
CN221094433U
CN221094433U CN202322792225.2U CN202322792225U CN221094433U CN 221094433 U CN221094433 U CN 221094433U CN 202322792225 U CN202322792225 U CN 202322792225U CN 221094433 U CN221094433 U CN 221094433U
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China
Prior art keywords
yarn
fiber
yarns
lining
antibacterial
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CN202322792225.2U
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Chinese (zh)
Inventor
岳志飞
施志勇
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Fujian Huilong Chemical Textile Co ltd
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Fujian Huilong Chemical Textile Co ltd
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  • Woven Fabrics (AREA)

Abstract

The utility model relates to the technical field of cloth, in particular to a bacteriostatic sweat-absorbing fabric which comprises a fabric body, wherein the fabric body is composed of bacteriostatic A yarns, bacteriostatic B yarns and sweat-absorbing yarns, the bacteriostatic A yarns are composed of A lining fiber first yarns, A lining fiber second yarns and A lining fiber third yarns, the bacteriostatic B yarns are composed of B lining fiber first yarns, B lining fiber second yarns and B lining fiber third yarns, the sweat-absorbing yarns are composed of lining yarn fiber first, lining yarn fiber second and lining yarn fiber third, and the three yarns, including the bacteriostatic A yarns, the bacteriostatic B yarns and the sweat-absorbing yarns, are woven in a cross shape in a staggered mode to form the bacteriostatic sweat-absorbing fabric, so that the bacteriostatic sweat-absorbing capacity of the fabric is greatly enhanced, and the bacteriostatic A yarns, the bacteriostatic B yarns and the sweat-absorbing yarns are twisted by three fibers, and the characteristics of the bacteriostatic A yarns are superimposed and effectively enhanced.

Description

Antibacterial sweat-absorbing fabric
Technical Field
The utility model relates to the technical field of cloth, in particular to a bacteriostatic sweat-absorbent fabric.
Background
The existing textile fabric has a ventilation function, so that the absorption of hot air can be realized, but the problem of poor sweat absorption capacity exists, and bacteria are easy to grow on the fabric due to the fact that sweat is adhered to the fabric, so that the skin of a user can be corroded by the bacteria.
Therefore, the antibacterial sweat-absorbing fabric is designed to change the technical defects, and the overall practicability is improved.
Disclosure of utility model
The utility model aims to provide a bacteriostatic sweat-absorbent fabric, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The antibacterial sweat-absorbing fabric comprises a fabric body, wherein the fabric body is composed of antibacterial A yarns, antibacterial B yarns and sweat-absorbing yarns, the antibacterial A yarns are composed of first yarns of inner fibers, second yarns of inner fibers and third yarns of inner fibers, the antibacterial B yarns are composed of first yarns of inner fibers, second yarns of inner fibers and third yarns of inner fibers, and the sweat-absorbing yarns are composed of first yarns of inner fibers, second yarns of inner fibers and third yarns of inner fibers.
As a preferable scheme of the utility model, the antibacterial A yarn, the antibacterial B yarn and the sweat absorbing yarn are respectively connected by using a single yarn in a cross shape in a staggered weaving manner.
In a preferred embodiment of the present utility model, the first yarn of the a-back fiber, the second yarn of the a-back fiber, the third yarn of the a-back fiber, the first yarn of the B-back fiber, the second yarn of the B-back fiber, the third yarn of the B-back fiber, and the first yarn of the back fiber, the second yarn of the back fiber, and the third yarn of the back fiber are twisted together in a twist structure.
As a preferable scheme of the utility model, the first yarn of the A lining fiber adopts kapok fiber, the second yarn of the A lining fiber adopts chitosan fiber, and the third yarn of the A lining fiber adopts bamboo fiber.
As a preferable scheme of the utility model, the first yarn of the B lining fiber adopts nano silver antibacterial fiber, the second yarn of the B lining fiber adopts organic antibacterial agent antibacterial fiber, and the third yarn of the B lining fiber adopts novel open yarn fiber.
In a preferred embodiment of the present utility model, the first inner yarn fiber is a bamboo fiber, the second inner yarn fiber is a hemp fiber, and the third inner yarn fiber is a nylon fiber.
Compared with the prior art, the utility model has the beneficial effects that:
According to the antibacterial sweat-absorbing fabric, three yarns including the antibacterial A yarn, the antibacterial B yarn and the sweat-absorbing yarn are woven in a cross shape in a staggered mode to form the antibacterial sweat-absorbing fabric, so that the antibacterial sweat-absorbing capacity of the fabric is greatly enhanced, the antibacterial A yarn, the antibacterial B yarn and the sweat-absorbing yarn are twisted by three fibers, and the characteristics of the antibacterial A yarn, the antibacterial B yarn and the sweat-absorbing yarn are overlapped to effectively enhance the functionality of the fabric.
Drawings
FIG. 1 is a perspective view of the overall structure of the present utility model;
FIG. 2 is a schematic view of a woven structure of the present utility model;
FIG. 3 is a diagram showing the internal structure of the antibacterial A yarn, antibacterial B yarn and sweat-absorbent yarn according to the present utility model.
In the figure: 1. a fabric body; 2. antibacterial yarn A; 201. a fiber one yarn in A; 202. fiber two yarns in A; 203. fiber three yarns in A; 3. antibacterial B yarns; 301. b, fiber one yarn; 302. b, fiber two yarns; 303. b, three yarns of the inner fiber; 4. sweat-absorbent yarns; 401. a first inner yarn fiber; 402. inner yarn fiber II; 403. and (3) inner yarn fiber III.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
Referring to fig. 1-3, the present utility model provides a technical solution:
A bacteriostatic sweat-absorbing fabric, which is a fabric body 1, wherein the fabric body 1 is composed of a bacteriostatic A yarn 2, a bacteriostatic B yarn 3 and a sweat-absorbing yarn 4, wherein the bacteriostatic A yarn 2 is composed of a first yarn 201 of an inner fiber, a second yarn 202 of the inner fiber and a third yarn 203 of the inner fiber, wherein the bacteriostatic B yarn 3 is composed of a first yarn 301 of the inner fiber, a second yarn 302 of the inner fiber and a third yarn 303 of the inner fiber, and wherein the sweat-absorbing yarn 4 is composed of a first yarn 401 of the inner fiber, a second yarn 402 of the inner fiber and a third yarn 403 of the inner fiber;
The antibacterial A yarn 2, the antibacterial B yarn 3 and the sweat absorbing yarn 4 are respectively connected by cross-shaped staggered weaving, wherein the first A lining fiber yarn 201, the second A lining fiber yarn 202 and the third A lining fiber yarn 203, the first B lining fiber yarn 301, the second B lining fiber yarn 302 and the third B lining fiber yarn 303 are respectively twisted in a twist structure, the first A lining fiber yarn 201 adopts kapok fibers, the second A lining fiber yarn 202 adopts chitosan fibers, the third A lining fiber yarn 203 adopts bamboo fibrils, the first B lining fiber yarn 301 adopts nano silver antibacterial fibers, the second B lining fiber yarn 302 adopts organic antibacterial agent antibacterial fibers, the third B lining fiber yarn 303 adopts novel open yarn fibers, the first lining fiber yarn 401 adopts bamboo fibers, the second lining fiber 402 adopts hemp fibers, and the third lining fiber 403 adopts nylon fibers.
The working flow of the utility model is as follows: three yarns, including a bacteriostatic A yarn 2, a bacteriostatic B yarn 3 and a sweat-absorbent yarn 4, are woven in a cross shape in a staggered manner to form a bacteriostatic sweat-absorbent fabric, the bacteriostatic sweat-absorbent capacity of the fabric is greatly enhanced, the bacteriostatic A yarn 2, the bacteriostatic B yarn 3 and the sweat-absorbent yarn 4 are mutually twisted by three fibers, the characteristics of the bacteriostatic A yarn 2, the bacteriostatic B yarn 3 and the sweat-absorbent yarn 4 are overlapped to effectively strengthen the functionality of the fabric, the A-fiber yarn 201 adopts kapok fibers, the A-fiber yarn has a large hollow structure with two closed ends, which is unfavorable for the survival of anaerobic bacteria, the outer wall of the A-fiber yarn contains a natural and bitter substance, the natural and bitter substances can fall off in the wearing process, the antibacterial effect is weakened, the A-fiber two yarns 202 adopt chitosan fibers, the A-fiber three yarns 203 adopt bamboo fibers, which are fibers extracted from naturally grown bamboos, the natural antibacterial and bactericidal effect with lasting high efficiency is achieved, the first yarn 301 of the B lining fiber adopts nano silver antibacterial fibers, the antibacterial property is that nano silver particles are continuously released, the second yarn 302 of the B lining fiber adopts organic antibacterial agent antibacterial fibers, a trace amount of organic antibacterial agent is added on the premise of not changing the basic performance of the fibers, so that the obtained antibacterial fiber is obtained, the third yarn 303 of the B lining fiber adopts novel open yarn fibers, the fiber cannot fall off hairs, the fiber has better water absorption and softness compared with the traditional cotton fiber, the antibacterial capability is excellent, the first yarn 401 of the lining yarn adopts bamboo fibers, the fiber has the advantage of mildew resistance in the moisture absorption characteristic, the second yarn 402 of the lining yarn adopts fibrilia, the fiber has good air permeability, sweat can be quickly evaporated after being drawn, the third yarn 403 of the lining yarn adopts nylon fibers, and the fiber has the advantage of sweat absorption and easiness in drying.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a antibacterial sweat-absorbing surface fabric, includes surface fabric body (1), its characterized in that: the fabric body (1) is composed of antibacterial A yarns (2), antibacterial B yarns (3) and sweat-absorbent yarns (4), wherein the antibacterial A yarns (2) are composed of A lining fiber one yarns (201), A lining fiber two yarns (202) and A lining fiber three yarns (203), the antibacterial B yarns (3) are composed of B lining fiber one yarns (301), B lining fiber two yarns (302) and B lining fiber three yarns (303), and the sweat-absorbent yarns (4) are composed of lining yarn fiber one (401), lining yarn fiber two (402) and lining yarn fiber three (403).
2. The antibacterial sweat-absorbent fabric according to claim 1, wherein: the antibacterial A yarn (2), the antibacterial B yarn (3) and the sweat absorbing yarn (4) are respectively connected by using a single yarn in a cross shape in a staggered weaving mode.
3. The antibacterial sweat-absorbent fabric according to claim 1, wherein: the first yarn (201), the second yarn (202) and the third yarn (203) are twisted with each other in a twist structure, and the first yarn (301), the second yarn (302) and the third yarn (303) are twisted with each other in a twist structure, and the first yarn (401), the second yarn (402) and the third yarn (403) are twisted with each other in a twist structure.
4. The antibacterial sweat-absorbent fabric according to claim 1, wherein: the A lining fiber one yarn (201) adopts kapok fiber, the A lining fiber two yarn (202) adopts chitosan fiber, and the A lining fiber three yarn (203) adopts bamboo fiber.
5. The antibacterial sweat-absorbent fabric according to claim 1, wherein: the first B lining fiber yarn (301) adopts nano silver antibacterial fiber, the second B lining fiber yarn (302) adopts organic antibacterial agent antibacterial fiber, and the third B lining fiber yarn (303) adopts novel open yarn fiber.
6. The antibacterial sweat-absorbent fabric according to claim 1, wherein: the first lining yarn fiber (401) adopts bamboo fiber, the second lining yarn fiber (402) adopts fibrilia, and the third lining yarn fiber (403) adopts nylon fiber.
CN202322792225.2U 2023-10-18 2023-10-18 Antibacterial sweat-absorbing fabric Active CN221094433U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322792225.2U CN221094433U (en) 2023-10-18 2023-10-18 Antibacterial sweat-absorbing fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322792225.2U CN221094433U (en) 2023-10-18 2023-10-18 Antibacterial sweat-absorbing fabric

Publications (1)

Publication Number Publication Date
CN221094433U true CN221094433U (en) 2024-06-07

Family

ID=91328484

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322792225.2U Active CN221094433U (en) 2023-10-18 2023-10-18 Antibacterial sweat-absorbing fabric

Country Status (1)

Country Link
CN (1) CN221094433U (en)

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