CN218978078U - Antibacterial antistatic knitted garment - Google Patents
Antibacterial antistatic knitted garment Download PDFInfo
- Publication number
- CN218978078U CN218978078U CN202223369508.8U CN202223369508U CN218978078U CN 218978078 U CN218978078 U CN 218978078U CN 202223369508 U CN202223369508 U CN 202223369508U CN 218978078 U CN218978078 U CN 218978078U
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- fiber
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- trousers
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Abstract
The utility model discloses antibacterial and antistatic knitted clothing, which comprises clothing and trousers, wherein the clothing comprises a clothing body, sleeve pipes are connected to two sides of the clothing body, the lower part of the clothing body is sewed and connected with a back swing piece, the clothing body and the sleeve pipes are made of warp knitting plain fabrics, and the back swing piece is made of weft knitting plain fabrics; the trousers comprise two trousers legs, the upper parts of the two trousers legs are sewed and connected to a ring of waist ring, the lower parts of the trousers legs are sewed and connected with leg rings, and the leg rings are sewed with conductive fabrics which hang down to the bottom surface; the warp knitting plain weave fabric is formed by circularly knitting six warps serving as the minimum circulation number, and the weft knitting plain weave fabric is formed by circularly knitting five warps serving as the minimum circulation number, wherein the warp knitting plain weave fabric and the weft knitting plain weave fabric both contain silver ion fibers with sterilization effect and conductive fibers with conductive effect. Through the above-mentioned form, make the clothing possess antibacterial and antistatic function, be worth popularizing greatly.
Description
Technical Field
The utility model relates to knitted clothing, in particular to antibacterial and antistatic knitted clothing.
Background
The knitted garment is made of knitted fabric, and the garment made of the knitted fabric generally has the excellent characteristics of fitting, ventilation, moisture absorption, heat preservation and the like, so that the knitted garment has wide application in winter clothing. The yarn components in the existing knitted fabric are single, most of the knitted fabric is made of various animal and plant fibers or basic chemical fiber fibers, static electricity is easily generated when the knitted fabric with single component is in winter when air is dry, and discomfort is brought to people. In addition, common animal and plant fibers and basic chemical fibers do not have antibacterial effect, and the washing cycle of the clothing in winter is generally longer, so that bacteria in the clothing are easy to breed.
Disclosure of Invention
In view of the above-mentioned shortcomings, the present utility model aims to provide a bacteriostatic antistatic knitted garment, which can prevent static electricity generated when the garment is worn and can provide a bacteriostatic effect to the garment, so as to prevent a great deal of bacteria from breeding in a longer washing cycle.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
the antibacterial antistatic knitted garment comprises a garment body and trousers, wherein sleeve pipes are connected to two sides of the garment body, the lower part of the garment body is connected with a back swing piece in a sewing mode, the garment body and the sleeve pipes are made of warp knitting plain fabrics, and the back swing piece is made of weft knitting plain fabrics; the trousers comprise two trousers legs, the upper parts of the two trousers legs are sewed and connected to a ring of waist ring, the lower parts of the trousers legs are sewed and connected with leg rings, and the leg rings are sewed with conductive fabrics which hang down to the bottom surface; the warp knitting plain fabric is formed by circularly knitting six warp yarns serving as the minimum circulation quantity, wherein the first warp yarn is silver ion fiber; the second warp yarn is wool fiber; the third warp is wool fiber; the fourth warp yarn is conductive fiber; the fifth warp yarn is wool fiber; the sixth warp yarn is wool fiber; the weft knitting plain fabric is formed by circularly knitting five warps serving as the lowest circulation quantity, wherein the first weft is conductive fiber; the second weft yarn is wool fiber; the third weft yarn is silver ion fiber; the fourth weft yarn is wool fiber; the fifth weft yarn is conductive fiber.
Preferably, the wool fiber is 40S wool yarn; the conductive fiber is a 20D metallized acrylic copper-containing conductive fiber; the silver ion fiber is a 22D silver ion antibacterial fiber.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a minimum cycle weave pattern of a warp knit plain weave fabric;
fig. 3 is a minimum cycle weave pattern of a weft knit plain fabric.
Reference numerals: 100. garment 110, body 120, sleeve 130, back swing 200, pants 210, legs 220, waist ring 230, leg ring 240, conductive fabric.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The antibacterial and antistatic knitted garment shown in fig. 1 to 3 comprises a garment 100 and trousers 200, wherein the garment 100 is composed of a body 110, sleeves 120 sewn on both sides of the body, and a rear swing piece 130 sewn on the lower part of the body. The trousers 200 include two legs 210, a waist ring 220 sewn to the upper portions of the two legs, and leg rings 230 sewn to the lower portions of the legs, and a piece of conductive fabric 240 capable of being vertically arranged on the bottom surface of the upper back of the trousers is sewn to the leg rings.
In this embodiment, the body 110 and the sleeve 120 are made of a warp knitting plain weave fabric, and the back swing piece 130 is made of a weft knitting plain weave fabric; while the legs 210 of the pants 200 are warp knit plain weave fabric, the waist and leg rings are weft knit plain weave fabric.
In detail, the warp knitting plain fabric is formed by circularly knitting six warp yarns serving as the minimum circulation quantity in the scheme, wherein the first warp yarn is silver ion fiber; the second warp yarn is wool fiber; the third warp is wool fiber; the fourth warp yarn is conductive fiber; the fifth warp yarn is wool fiber; the sixth warp yarn is wool fiber; the weft-knitted plain fabric is formed by circularly knitting five warp yarns serving as the lowest circulation quantity, wherein the first weft yarn is conductive fiber; the second weft yarn is wool fiber; the third weft yarn is silver ion fiber; the fourth weft yarn is wool fiber; the fifth weft yarn is conductive fiber.
In the scheme, the warp knitting plain weave material is adopted for the clothing body, the sleeve pipe and the trouser legs, and the aim is that the static charges generated after the warp knitting of the conductive fibers can be conveniently conducted downwards to the rear swing piece, the waist ring and the leg ring through the conductive fibers. The reason that the weft-wise plain weave is adopted for the swing piece, the waist ring and the leg ring is that the weft-wise conductive fibers in the swing piece, the waist ring and the leg ring are conveniently and fully conducted with the conductive fibers in the clothing body, the sleeve pipe and the trouser legs, so that the charges can be finally led into the ground through the conductive fabric contacted with the ground. After the garment rises, the back swing piece on the garment can be erected on the waist ring to conduct between the garment and trousers, so that electric charge on the garment can be conveniently led into the ground. In addition, the silver ion fiber adopted in the scheme has a bacteriostatic effect, can inhibit the production of bacteria in the clothing under the condition that the clothing is changed and washed for a long time, and the wool fiber can enable the clothing to have good warm-keeping and ventilation effects.
In the above embodiment, the wool fiber is a 40S wool yarn; the conductive fiber is a 20D metallized acrylic copper-containing conductive fiber; the silver ion fiber is a 22D silver ion antibacterial fiber.
Claims (2)
1. The utility model provides a antibacterial antistatic knitted garment which characterized in that: the garment comprises a garment body and trousers, wherein sleeve pipes are connected to two sides of the garment body, the lower part of the garment body is connected with a back swing piece in a sewing mode, the garment body and the sleeve pipes are made of warp knitting plain fabrics, and the back swing piece is made of weft knitting plain fabrics; the trousers comprise two trousers legs, the upper parts of the two trousers legs are sewed and connected to a ring of waist ring, the lower parts of the trousers legs are sewed and connected with leg rings, and the leg rings are sewed with conductive fabrics which hang down to the bottom surface; the warp knitting plain fabric is formed by circularly knitting six warp yarns serving as the minimum circulation quantity, wherein the first warp yarn is silver ion fiber; the second warp yarn is wool fiber; the third warp is wool fiber; the fourth warp yarn is conductive fiber; the fifth warp yarn is wool fiber; the sixth warp yarn is wool fiber; the weft knitting plain fabric is formed by circularly knitting five warps serving as the lowest circulation quantity, wherein the first weft is conductive fiber; the second weft yarn is wool fiber; the third weft yarn is silver ion fiber; the fourth weft yarn is wool fiber; the fifth weft yarn is conductive fiber.
2. A bacteriostatic antistatic knitted garment according to claim 1, characterized in that: the wool fiber is made of 40S wool yarns; the conductive fiber is a 20D metallized acrylic copper-containing conductive fiber; the silver ion fiber is a 22D silver ion antibacterial fiber.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223369508.8U CN218978078U (en) | 2022-12-12 | 2022-12-12 | Antibacterial antistatic knitted garment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223369508.8U CN218978078U (en) | 2022-12-12 | 2022-12-12 | Antibacterial antistatic knitted garment |
Publications (1)
Publication Number | Publication Date |
---|---|
CN218978078U true CN218978078U (en) | 2023-05-09 |
Family
ID=86193952
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202223369508.8U Active CN218978078U (en) | 2022-12-12 | 2022-12-12 | Antibacterial antistatic knitted garment |
Country Status (1)
Country | Link |
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CN (1) | CN218978078U (en) |
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2022
- 2022-12-12 CN CN202223369508.8U patent/CN218978078U/en active Active
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