One-way moisture-wicking and sweat-releasing woven fabric and sportswear

By employing a combination structure of an elastic outer layer and a hydrophilic mesh interlayer in the sportswear fabric, and utilizing sweat-wicking channels and airflow to conduct moisture, the problems of easy soiling of the outer fabric and insufficient evaporation of sweat on the back are solved, achieving one-way moisture wicking and improved stain resistance.

CN118061645BActive Publication Date: 2026-01-16GAOFAN (ZHEJIANG) INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202410200283.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-23
Publication Date
2026-01-16
Estimated Expiration
2044-02-23

AI Technical Summary

Technical Problem

Existing sportswear fabrics, during the one-way moisture wicking process, tend to have an outer layer that easily absorbs dirt, exhibiting poor stain resistance and insufficient sweat evaporation capacity on the back.

Method used

It adopts a combination structure of elastic outer fabric and hydrophilic mesh interlayer. It wicks away moisture through sweat channels and airflow. The outer fabric is hydrophobic, and the inner fabric and mesh interlayer form a hydrophilic gradient. It uses airflow to evaporate sweat. The outer fabric is equipped with a waterproof and breathable membrane to improve its resistance to dirt.

Benefits of technology

It achieves one-way moisture wicking, keeps the outer fabric clean, effectively evaporates sweat on the back, and improves the fabric's stain resistance and breathability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of one-way wet sweat guiding weaving fabric and sportswear, including elastic outer fabric and lining, the edge of outer fabric and lining is fixed with each other by sewing, the gap between outer fabric and lining forms sweat passage, mesh interlayer is provided in sweat passage, surface interval is provided with adhesive point at the intersection of mesh interlayer grid, for making adhesive point and outer fabric adhesion.The weaving fabric is adhered to outer fabric by special treatment with mesh interlayer, and form bulge inward, so that sweat passage is formed between outer fabric and lining, its application in outdoor sportswear can guide airflow into sweat passage, then evaporate sweat, although it is used to sweat by hydrophilic gradient, but the outer surface of outer fabric still has good hydrophobicity, it helps to reduce the dirt of outer surface of outer fabric, improve the appearance of outer surface of outer fabric.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of sportswear, and particularly relates to a one-way moisture-wicking and sweat-releasing plain weave fabric and sportswear. BACKGROUND

[0002] The sweat-wicking and moisture-wicking capability of a fabric affects wearing comfort, and particularly the fabric applied in the field of sports needs excellent one-way moisture-wicking and sweat-releasing capability. In the prior art, sweat is wick and moisture is transferred to the outside fabric through a hydrophilic gradient, and evaporation is performed in the outside fabric with the help of external airflow. Although the fabric has one-way moisture-wicking capability, the outer surface of the fabric itself has high water absorption, and dirt is easily adsorbed. After sweat evaporation, dirt is left on the surface, and the fabric has poor external stain resistance. SUMMARY

[0003] The application aims to provide a one-way moisture-wicking and sweat-releasing plain weave fabric and sportswear to solve the above problems.

[0004] The application achieves the above-mentioned purpose through the following technical solutions.

[0005] A one-way moisture-wicking and sweat-releasing plain weave fabric comprises an elastic outer fabric and a lining, the edges of the outer fabric and the lining are sewn and fixed to each other, a gap between the outer fabric and the lining forms a sweat-releasing channel, and a net-like interlayer is arranged in the sweat-releasing channel.

[0006] When the outer fabric is in a stretched state, the outer fabric is bonded to the grid intersections of the net-like interlayer in a hot-pressing manner, so that, after the outer fabric is released from the stretching, the grid intersections of the net-like interlayer that are not bonded form protrusions in the direction of the lining. The lining and the net-like interlayer are both hydrophilic materials, and the hydrophilicity of the net-like interlayer is higher than that of the lining. The plain weave fabric adsorbs sweat in the net-like interlayer through a hydrophilic gradient, and performs one-way moisture-wicking and sweat-releasing through airflow formed in the sweat-releasing channel.

[0007] As a further optimization scheme of the application, the outer fabric is woven from yarn, and the yarn is blended from polyamide fibers and spandex. The outer fabric uses polyamide fibers as the main material and has the advantages of wear resistance and dirt resistance. The woven fabric is firm and wear-resistant and is not prone to sagging. The purpose of adding spandex is to make the woven fabric elastic. This process is a prior art, and the purpose is to make the woven outer fabric elastic so as to be bonded to the net-like interlayer and form protrusions.

[0008] As a further optimization scheme of the present application, the outer side of the outer layer fabric is provided with a waterproof and breathable membrane, which is a prior art commonly used as the fabric of outdoor clothing.

[0009] In order to apply the above woven fabric, the present application further provides a one-way moisture guiding and sweat releasing sports suit, which is made of the above woven fabric and has an air inlet in the armpit region, the air inlet being communicated with a sweat releasing channel, and a plurality of sweat releasing ports being arranged on the back of the sports suit.

[0010] In the present scheme, the sports suit is used for outdoor cycling, running and other sports, and the airflow on the front chest is relatively large during the sports process, so that the conventional fabric can be used for ventilation, while the airflow on the back of the sports suit is relatively small and sweat is easily accumulated, and the sweat evaporation capacity of the back is much lower than that of the front chest, so that the woven fabric is applied to the back of the sports suit, and when used, the natural airflow enters the air inlet and passes through the gap formed by the net-shaped interlayer, and finally is discharged through the sweat releasing ports.

[0011] As a further optimization scheme of the present application, the outer surface of the back of the sports suit is provided with a first shielding edge for hiding the air inlet, and the outer surface of the armpit region of the sports suit is provided with a second shielding edge for hiding the sweat releasing ports, so as to improve the aesthetic appearance.

[0012] As a further optimization scheme of the present application, the air inlet is provided with a zipper assembly for controlling the opening and closing of the air inlet, and the air inlet can be opened and closed according to the needs during the sports process by the zipper.

[0013] As a further optimization scheme of the present application, the zipper assembly comprises a puller, a first zipper tape and a second zipper tape, wherein the first zipper tape is located on one side close to the first shielding edge, and the inside of the first zipper tape is lined with an elastic skeleton, and the inside of the second zipper tape is lined with a rigid skeleton, the rigid skeleton is fitted to the human body curve, and the elastic skeleton is arc-shaped for supporting the air inlet when the zipper assembly is opened.

[0014] The present application has the following advantages:

[0015] The application forms a sweat-removing channel between the outer fabric and the lining by sticking the reticular interlayer to the outer fabric and forming a bulge inwardly, which can guide airflow into the sweat-removing channel and evaporate sweat when applied in outdoor sportswear, although the sweat is removed by using hydrophilic gradient, the outer surface of the outer fabric still has good hydrophobicity, which helps to reduce dirt on the outer surface of the outer fabric and improve the appearance of the outer surface of the outer fabric. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a schematic diagram of the woven fabric structure of the application;

[0017] Figure 2 is a schematic diagram of the reticular interlayer of the application;

[0018] Figure 3 is a front view of the sportswear of the application;

[0019] Figure 4 is an enlarged schematic diagram of the zipper assembly of the application;

[0020] Figure 5 is a schematic diagram of the elastic skeleton and the rigid skeleton of the application;

[0021] Figure 6 is a rear view of the sportswear of the application;

[0022] In the figure: 101, outer fabric; 102, waterproof and breathable film; 103, lining; 104, reticular interlayer; 105, bulge; 106, bonding point; 107, sweat-removing channel; 2, sportswear; 201, first shielding edge; 202, air inlet; 3, zipper assembly; 301, puller; 302, first zipper tape; 303, second zipper tape; 304, elastic skeleton; 305, rigid skeleton; 4, sweat-removing port; 5, second shielding edge. DETAILED DESCRIPTION

[0023] It is necessary to point out here that the following detailed description is only used to further illustrate the application and cannot be understood as limiting the protection scope of the application, and those skilled in the art can make some non-essential improvements and adjustments to the application according to the above application content.

[0024] Example 1

[0025] As Figures 1-6As shown, a one-way moisture-wicking woven fabric includes an elastic outer fabric 101 and a lining 103, the edges of the outer fabric 101 and the lining 103 are sewn together, and the gap between the outer fabric 101 and the lining 103 forms a sweat passage 107, and a mesh interlayer 104 is arranged in the sweat passage 107, and adhesive points 106 are arranged at the intersections of the mesh interlayer 104, for bonding the adhesive points 106 with the outer fabric 101;

[0026] Wherein, when the outer fabric 101 is in a stretched state, it is bonded with the intersections of the mesh interlayer 104 by hot pressing, so that when the outer fabric 101 is released from stretching, the intersections of the mesh interlayer 104 that are not bonded form protrusions 105 towards the lining 103, wherein the lining 103 and the mesh interlayer 104 are both hydrophilic materials, and the hydrophilicity of the mesh interlayer 104 is higher than that of the lining 103, the woven fabric absorbs sweat in the mesh interlayer 104 through the hydrophilicity gradient, and performs one-way moisture-wicking through air flow formed in the sweat passage 107.

[0027] The outer fabric 101 is woven from yarn, and the yarn is a blend of polyamide fiber and spandex, the outer fabric 101 uses polyamide fiber as the main material, has the advantages of wear resistance and dirt resistance, is firm and wear-resistant after being woven into fabric, and is not prone to sagging, and the purpose of adding spandex is to make the woven fabric elastic, this process is a prior art, and the purpose is to make the outer fabric 101 woven elastic, so as to be bonded with the mesh interlayer 104 and form protrusions 105.

[0028] A waterproof and breathable film 102 is arranged on the outer side of the outer fabric 101, the waterproof and breathable film 102 is a prior art and is commonly used as the fabric of outdoor clothing, in this application, the waterproof and breathable film 102 can improve the water resistance and dirt resistance of the fabric, although the waterproof and breathable film 102 still has a poor air permeability, it is not suitable for sports, and it is applied in the fabric of the present application because the present application has other sweat-wicking structures.

[0029] In order to apply the above woven fabric, the present application also proposes a one-way moisture-wicking sports suit, which uses the above woven fabric to make the back of the sports suit 2, and the armpit of the sports suit 2 is provided with an air inlet 202, the air inlet 202 is communicated with the sweat passage 107, and the back of the sports suit 2 is provided with a plurality of sweat outlets 4, the sports suit 2 naturally takes in air through the air inlet 202 when running or cycling, and the air is discharged through the sweat outlets 4 after passing through the sweat passage 107.

[0030] In the scheme, the sports suit 2 is used for outdoor cycling, running and other sports. During the sports process, the airflow on the front chest is large, so the conventional fabric can be used for ventilation. The airflow on the back of the sports suit 2 is small, and the sweat evaporation capacity of the back is much lower than that of the front chest. Therefore, the above woven fabric is applied to the back of the sports suit 2. During use, the natural airflow enters the air inlet 202 and passes through the gap supported by the net-like interlayer 104, and finally is discharged through the sweat outlet 4. During the sports process, the body movement causes the net-like interlayer 104 to continuously rub against the lining cloth 103, and the sweat on the surface of the lining cloth 103 is wiped and absorbed into the net-like interlayer 104 through the hydrophilic gradient. The interlaced and stacked net-like interlayers 104 can better evaporate and remove moisture when the airflow passes through.

[0031] In order to improve the appearance, the first shielding edge 201 for hiding the air inlet 202 is arranged on the outer surface of the back of the sports suit 2, and the second shielding edge 5 for hiding the sweat outlet 4 is arranged on the outer surface of the armpit of the sports suit 2.

[0032] The air inlet 202 is provided with a zipper assembly 3 for controlling the opening and closing of the air inlet 202 through the zipper assembly 3. The opening and closing of the air inlet 202 can be controlled through the zipper assembly 3 according to the needs during the sports process.

[0033] Further, in order to increase the air inlet capacity of the air inlet 202, the zipper assembly 3 includes a puller 301, a first zipper strip 302 and a second zipper strip 303. The first zipper strip 302 is located on one side close to the first shielding edge 201, and the inside of the first zipper strip 302 is lined with an elastic skeleton 304. The inside of the second zipper strip 303 is lined with a rigid skeleton 305. The rigid skeleton 305 fits the human body curve, and the elastic skeleton 304 is arc-shaped for supporting the air inlet 202 when the zipper assembly 3 is opened. By arranging the elastic skeleton 304, the elastic skeleton 304 supports the air inlet 202 when the zipper assembly 3 is opened, facilitating air inlet during sports, and when not in use, the rigid skeleton 305 constrains the curved elastic skeleton 304.

[0034] The embodiment is specifically: when running or cycling, the puller 301 is pulled to open the zipper assembly 3, and the elastic skeleton 304 supports the air inlet 202. During the sports process, the natural airflow enters the sweat outlet channel 107 through the air inlet 202 and is discharged from the sweat outlet 4. During the process, the sweat on the surface of the net-like interlayer 104 is evaporated. During running and cycling, the continuous movement of the body causes the net-like interlayer 104 to continuously rub against the lining cloth 103, and then the sweat on the surface of the lining cloth 103 is absorbed into the net-like interlayer 104, facilitating evaporation. After use, the zipper assembly 3 is closed.

[0035] The above embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, several modifications and improvements can be made, which are within the protection scope of the present application.

Claims

1. A one-way moisture management sportswear characterized in that: The back of the sports suit (2) is made of a woven fabric, which comprises an elastic outer fabric (101) and a lining (103). The edges of the outer fabric (101) and the lining (103) are sewn together to form sweat channels (107) between the outer fabric (101) and the lining (103). A mesh interlayer (104) is arranged in the sweat channels (107). The mesh interlayer (104) is provided with adhesive points (106) at the intersections of the mesh, which are used to adhere the adhesive points (106) to the outer fabric (101). When the outer fabric (101) is in a stretched state, the mesh intersections of the mesh interlayer (104) that are not adhered form protrusions (105) towards the lining (103) after the outer fabric (101) is released from the stretch. The lining (103) and the mesh interlayer (104) are both hydrophilic materials, and the hydrophilicity of the mesh interlayer (104) is higher than that of the lining (103). The woven fabric uses the gradient of hydrophilicity to absorb sweat in the mesh interlayer (104) and form a unidirectional airflow in the sweat channels (107) for sweat removal. The armpit of the sports suit (2) is provided with an air inlet (202) that communicates with the sweat channels (107). The back of the sports suit (2) is provided with a plurality of sweat outlets (4). When running or cycling, the sports suit (2) naturally takes in air through the air inlet (202), which is then discharged through the sweat outlets (4) after passing through the sweat channels (107).

2. The one-way moisture management sportswear according to claim 1, wherein: The outer fabric (101) is woven from yarn, which is a blend of polyamide fiber and spandex.

3. The one-way moisture management sportswear according to claim 1, wherein: A waterproof and breathable membrane (102) is arranged on the outer side of the outer fabric (101).

4. The one-way moisture management sportswear according to claim 1, wherein: A first shielding edge (201) is arranged on the outer surface of the armpit of the sports suit (2) to hide the air inlet (202). A second shielding edge (5) is arranged on the outer surface of the back of the sports suit (2) to hide the sweat outlets (4).

5. The one-way moisture management sportswear according to claim 1, wherein: The air inlet (202) is provided with a zipper assembly (3) to control the opening and closing of the air inlet (202).

6. The one-way moisture management and perspiration releasing sportswear according to claim 5, wherein: The zipper assembly (3) comprises a puller (301), a first zipper tape (302), and a second zipper tape (303). The first zipper tape (302) is located on the side close to the first shielding edge (201). The inside of the first zipper tape (302) is lined with an elastic skeleton (304), and the inside of the second zipper tape (303) is lined with a rigid skeleton (305). The rigid skeleton (305) conforms to the human body curve, and the elastic skeleton (304) is arc-shaped to support the air inlet (202) when the zipper assembly (3) is opened.

Citation Information

Patent Citations

  • Breathable item of clothing

    CN112399806A

  • Breathable sportswear

    CN215455495U