CN219427627U - Quick-drying sun-proof fabric - Google Patents
Quick-drying sun-proof fabric Download PDFInfo
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- CN219427627U CN219427627U CN202223508051.4U CN202223508051U CN219427627U CN 219427627 U CN219427627 U CN 219427627U CN 202223508051 U CN202223508051 U CN 202223508051U CN 219427627 U CN219427627 U CN 219427627U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
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Abstract
The utility model discloses a quick-drying sun-proof fabric which comprises a contact layer, an antibacterial layer, a sun-proof layer, a mosquito-repellent layer and a surface layer, wherein the contact layer is in direct contact with skin, a sweat-absorbing layer is arranged between the contact layer and the antibacterial layer, a sweat-discharging layer is arranged between the mosquito-repellent layer and the surface layer, and a plurality of sweat-discharging holes are formed in the antibacterial layer, the sun-proof layer and the mosquito-repellent layer. The utility model has the beneficial effects that on the basis of ensuring the cool touch feeling of the sun-proof fabric, sweat on the skin of a human body can be quickly absorbed and transferred to the surface of the fabric through the designed sweat absorbing layer and the sweat releasing layer, and the effect of quick sweat absorption and release is realized on the basis of the advantages of the traditional sun-proof fabric, so that the wearing comfort is improved, and the quick-drying characteristic is also realized.
Description
Technical Field
The utility model relates to the technical field of textile fabrics, in particular to a quick-drying sun-proof fabric.
Background
With the continuous improvement of the living standard of people, the requirements on the clothing of people are more severe, and when the weather is hot, the ultraviolet rays are very strong, so that the sun-proof clothing supported by the fabric with ice silk touch sense is not selected to be worn. In order to keep the fabric of the traditional ice silk sun-proof clothes light and thin, the single-layer fabric made of the fiber with the ice silk touch is basically adopted to manufacture sun-proof clothes, and the single-layer fabric with the ice touch is basically adopted to manufacture the sun-proof clothes although a certain ice touch is given to a wearer in touch, so that the sweat-absorbing and sweat-releasing effect of the ready-made clothes is poor, the fabric is easily directly attached to the skin of a human body due to sweat, and the wearing comfort level is greatly reduced.
Disclosure of Invention
(one) solving the technical problems
The utility model aims to solve the technical problems that: in order to keep the fabric of the traditional ice silk sun-proof clothes light and thin, a single-layer fabric made of fibers with ice silk touch is basically adopted to manufacture sun-proof clothes, and although a certain ice touch is given to a wearer in touch, the single-layer fabric with ice touch is basically adopted to manufacture sun-proof clothes, so that the sweat-absorbing and sweat-releasing effect of the ready-made clothes is poor, the fabric is easily directly attached to the skin of a human body due to sweat, and the wearing comfort is greatly reduced.
(II) technical scheme
In order to solve the problems, the utility model provides the following technical scheme: the quick-drying sun-proof fabric comprises a contact layer, an antibacterial layer, a sun-proof layer, a mosquito-repellent layer and a surface layer, wherein the contact layer is in direct contact with skin, a sweat-absorbing layer is arranged between the contact layer and the antibacterial layer, a sweat-discharging layer is arranged between the mosquito-repellent layer and the surface layer, and a plurality of rows of sweat holes are formed in the antibacterial layer, the sun-proof layer and the mosquito-repellent layer.
Furthermore, the contact layer is formed by cross weaving of corn fiber serving as warp yarn, chitin fiber serving as weft yarn and one-through-air plain weave.
Further, the sun-proof layer is made of polyacrylonitrile fiber in a braiding mode.
Furthermore, the mosquito-repellent layer is formed by crossing and weaving graphene nylon fibers serving as warp yarns and graphene polyester fibers serving as weft yarns through hollow plain weave.
Further, the surface layer is made of a modal fiber weave.
Furthermore, the sweat absorbing layer is formed by crossing and weaving a hollow plain weave by taking coffee grounds fibers as warp yarns and coolmax fibers as weft yarns.
Further, the sweat-discharging layer is formed by crossing and weaving a hollow plain weave by taking the coffee grounds fiber as warp yarn and coolmax fiber as weft yarn.
Further, the thickness of the contact layer is equal to that of the surface layer, the thicknesses of the antibacterial layer, the sun-screening layer and the mosquito-repellent layer are equal to two thirds of that of the contact layer, and the thicknesses of the sweat-absorbing layer and the sweat-discharging layer are equal to one half of that of the contact layer.
(III) beneficial effects
The utility model has the beneficial effects that: on the basis of guaranteeing the cool touch feeling of the sun-proof fabric, sweat on human skin can be quickly absorbed and transferred to the surface of the fabric through the designed sweat absorbing layer and the sweat discharging layer, and the sweat can be released, so that the effect of quickly absorbing sweat and discharging sweat is realized on the basis of realizing the advantages of the traditional sun-proof fabric, and the characteristic of quick drying is also realized on the basis of improving wearing comfort.
Drawings
FIG. 1 is an exploded view of the structure of the present utility model;
in the figure: 1-contact layer, 2-antibacterial layer, 3-sun-proof layer, 4-mosquito repellent layer, 5-surface layer, 6-sweat absorbing layer, 7-sweat releasing layer, and 8-sweat releasing holes.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which some, but not all embodiments of the utility model are shown. 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.
Referring to fig. 1, the anti-bacterial mosquito repellent comprises a contact layer 1, an anti-bacterial layer 2, a sun-proof layer 3, a mosquito repellent layer 4 and a surface layer 5, wherein the contact layer 1 and the anti-bacterial layer 2 are in direct contact, a sweat absorbing layer 6 is arranged between the contact layer 1 and the anti-bacterial layer 2, a sweat discharging layer 7 is arranged between the mosquito repellent layer 4 and the surface layer 5, and a plurality of rows of sweat holes 8 are formed in the anti-bacterial layer 2, the sun-proof layer 3 and the mosquito repellent layer 4.
Specifically, the contact layer 1 is formed by cross weaving corn fiber as warp yarn, chitin fiber as weft yarn and one-through-air plain weave.
In this embodiment, the corn fiber, i.e., the polylactic acid fiber, is produced from lactic acid formed by fermentation of corn starch. The corn fiber has excellent skin contact feeling, draping feeling and softness; good elasticity, and is not easily affected by ultraviolet rays, etc. The chitin fiber knitwear has the advantages of soft and intimate hand feeling, no stimulation, high moisture retention, heat preservation, bacteriostasis and deodorization, good skin care effect, auxiliary medical function on allergic dermatitis, compliance with green textile standards and the like.
Specifically, the sun-screening layer 3 is made of polyacrylonitrile fibers woven.
In this embodiment, the sun-screening function of the fabric is achieved by using the polyacrylonitrile fiber wind sun-screening function.
Specifically, the mosquito-repellent layer 4 is formed by intersecting and weaving graphene nylon fibers serving as warp yarns and graphene polyester fibers serving as weft yarns through a plain weave.
In the embodiment, the anti-mosquito function of the fabric is realized by the graphene nylon fiber and the anti-mosquito function of the graphene polyester fiber.
Specifically, the surface layer 5 is made of modal fiber braiding.
In the embodiment, the modal fiber is soft, bright and clean, has bright color, particularly soft hand feeling, bright luster of the cloth cover and good drapability, and gives people a cool touch feeling.
Specifically, the sweat-absorbing layer 6 is formed by weaving a hollow plain weave with coffee grounds fibers as warp yarns and coolmax fibers as weft yarns.
In this embodiment, the coffee grounds fibers are woven from coffee grounds and have the characteristics of high strength, quick drying and recyclability. The fiber blended with the coffee grounds fiber changes the original characteristics of the fiber. Compared with the traditional cotton, the yarn has a quick-drying effect which is twice as fast as that of the traditional cotton. Meanwhile, waste coffee grounds in the coffee industry are used as raw materials, and compared with cotton, the method is more environment-friendly and economical. Coolmax fiber is a four-pipe fiber material. The four pipelines and the fibers form the largest space, so that the best air permeability is ensured, and the moisture emitted from the surface of the skin is quickly conducted to the outer layer fibers. The Coolmax fiber can lead out hot and humid air generated by the body, and regulate the temperature of the body, thereby generating a thermal regulation effect and keeping the body cool. The cotton is quick-drying, has a drying speed which is 5 times that of pure cotton, is durable, is easy to care, and allows multiple times of washing, does not shrink or deform and does not mildew.
Specifically, the perspiration layer 7 is formed by weaving a plain weave with a warp yarn made of coffee grounds fibers and a weft yarn made of coolmax fibers.
In this embodiment, the coffee grounds fibers are woven from coffee grounds and have the characteristics of high strength, quick drying and recyclability. The fiber blended with the coffee grounds fiber changes the original characteristics of the fiber. Compared with the traditional cotton, the yarn has a quick-drying effect which is twice as fast as that of the traditional cotton. Meanwhile, waste coffee grounds in the coffee industry are used as raw materials, and compared with cotton, the method is more environment-friendly and economical. Coolmax fiber is a four-pipe fiber material. The four pipelines and the fibers form the largest space, so that the best air permeability is ensured, and the moisture emitted from the surface of the skin is quickly conducted to the outer layer fibers. The Coolmax fiber can lead out hot and humid air generated by the body, and regulate the temperature of the body, thereby generating a thermal regulation effect and keeping the body cool. The cotton is quick-drying, has a drying speed which is 5 times that of pure cotton, is durable, is easy to care, and allows multiple times of washing, does not shrink or deform and does not mildew.
Specifically, the thickness of the contact layer 1 is equal to the thickness of the surface layer 5, the thicknesses of the antibacterial layer 2, the sun-screening layer 3 and the mosquito repellent layer 4 are equal to two thirds of the thickness of the contact layer 1, and the thicknesses of the sweat-absorbing layer 6 and the sweat-releasing layer 7 are equal to one half of the thickness of the contact layer 1.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.
Claims (8)
1. The quick-drying sun-proof fabric is characterized in that: contain contact layer (1), antibiotic layer (2), sun-proof layer (3), mosquito repellent layer (4) and surface layer (5) with skin direct contact, contact layer (1) with be equipped with sweat-absorbing layer (6) between antibiotic layer (2), mosquito repellent layer (4) with be equipped with sweat-discharging layer (7) between surface layer (5), antibiotic layer (2) sun-proof layer (3) with all be equipped with a plurality of row sweat pores (8) on mosquito repellent layer (4).
2. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the contact layer (1) is formed by cross weaving of corn fiber serving as warp yarn, chitin fiber serving as weft yarn and plain weave.
3. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the sun-proof layer (3) is made of polyacrylonitrile fibers by braiding.
4. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the mosquito-repellent layer (4) is formed by intersecting and weaving graphene nylon fibers serving as warp yarns and graphene polyester fibers serving as weft yarns through hollow plain weave.
5. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the surface layer (5) is made of a modal weave.
6. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the sweat absorbing layer (6) is formed by crossing and weaving a hollow plain weave by taking coffee grounds fibers as warp yarns and coolmax fibers as weft yarns.
7. The quick-drying sun-proof fabric as claimed in claim 6, wherein: the sweat-discharging layer (7) is formed by crossing and weaving a hollow plain weave by taking the coffee grounds fiber as warp yarn and coolmax fiber as weft yarn.
8. The quick-drying sun-proof fabric as claimed in claim 1, wherein: the thickness of the contact layer (1) is equal to that of the surface layer (5), the thicknesses of the antibacterial layer (2), the sun-proof layer (3) and the mosquito-repellent layer (4) are equal to each other and are two thirds of that of the contact layer (1), and the thicknesses of the sweat-absorbing layer (6) and the sweat-discharging layer (7) are equal to each other and are one half of that of the contact layer (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223508051.4U CN219427627U (en) | 2022-12-28 | 2022-12-28 | Quick-drying sun-proof fabric |
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CN202223508051.4U CN219427627U (en) | 2022-12-28 | 2022-12-28 | Quick-drying sun-proof fabric |
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CN219427627U true CN219427627U (en) | 2023-07-28 |
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CN202223508051.4U Active CN219427627U (en) | 2022-12-28 | 2022-12-28 | Quick-drying sun-proof fabric |
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2022
- 2022-12-28 CN CN202223508051.4U patent/CN219427627U/en active Active
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