A quick-drying moisture-wicking garment

CN224710584UActive Publication Date: 2026-09-04SHISHI SAIQI SPORTS GOODS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202621047390.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2026-07-10
Publication Date
2026-09-04
Estimated Expiration
2036-07-10

AI Technical Summary

Technical Problem

[0005]本实用新型的目的是为了解决导湿排汗服装存在明显缺陷:汗液承接、导流、蒸发协同性差,排汗速度慢,易导致汗液积聚,产生闷湿黏腻感;导流结构不合理,运动时通道易闭合,导湿性能不稳定;封闭方式单一,无法兼顾防护性与透气性,适配场景有限,难以满足不同穿着需求的缺点,而提出的一种快速导湿排汗服装

Benefits of technology

本实用新型中,通过贴肤层、支撑层、面料层的三层协同结构,实现汗液的快速承接、导流与蒸发,有效解决了汗液积聚导致的闷湿、黏腻问题,提升了穿着舒适度,避免了闷湿环境对皮肤造成的不适影响。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224710584U_ABST
    Figure CN224710584U_ABST
Patent Text Reader

Abstract

The utility model relates to clothing field discloses a kind of quick wetness conducting sweat-proof clothing, including zipper and button installed in the front side of clothing body, to be used for closing clothing body front side;The zipper can completely close clothing body front side, and the button leaves gap for ventilation when closing clothing body front side;The clothing body is sequentially provided with fabric layer, support layer and skin layer from outside to inside, the support layer is provided with vertical rib and horizontal fine strip, the vertical rib is equidistant vertical distribution, and the horizontal fine strip interval fixes all vertical rib, forms openwork flow channel;Large size irregular strip ventilation groove is opened in the surface of the fabric layer.The utility model in the present application, by three layers structure cooperation, quickly undertake, flow, evaporate sweat, prevent stuffy and sticky, utilize elastic flow channel and can be deformed with human body, guarantee wetness conducting passage unobstructed when moving, stable performance, improve wearing comfort and practicality.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of clothing, and in particular to a quick-drying and moisture-wicking garment. Background Technology

[0002] In everyday wear and sports, the moisture-wicking properties of clothing directly affect the wearer's comfort. When the body sweats, if the sweat cannot be wicked away in time, it will accumulate between the clothing and the skin, causing the wearer to feel stuffy and sticky. This not only affects the wearing experience, but long-term exposure to a stuffy environment may also cause skin discomfort.

[0003] Most moisture-wicking clothing on the market currently relies on the absorbent properties of a single fabric to wick away sweat, lacking a dedicated channeling structure design. This results in slow sweat diffusion, making it difficult to quickly transfer sweat from the skin-contacting surface to the clothing surface for evaporation. While some garments may have simple breathable structures, their design is flawed; when the body moves and bends, the breathable channels are easily compressed and closed, leading to a decrease in moisture-wicking performance.

[0004] In addition, the existing moisture-wicking clothing has a relatively simple closure method, which cannot flexibly adjust the protection and breathability according to different scenario needs. It is difficult to balance the comfort of daily wear and the protection needs in special scenarios, and there are certain limitations in its use. Utility Model Content

[0005] The purpose of this invention is to address the significant shortcomings of moisture-wicking clothing: poor coordination between sweat collection, diversion, and evaporation; slow sweat wicking speed; easy accumulation of sweat, resulting in a stuffy and sticky feeling; unreasonable diversion structure, with channels easily closing during exercise, leading to unstable moisture-wicking performance; and a single sealing method, which cannot balance protection and breathability, limiting its applicability to various scenarios and failing to meet different wearing needs. Therefore, this invention proposes a fast-wicking moisture-wicking garment.

[0006] To achieve the above objectives, the present invention provides the following technical solution: A quick-drying and moisture-wicking garment, comprising: A zipper and buttons are installed on the front of the garment body to close the front of the garment body; the zipper can completely close the front of the garment body, and the buttons leave a gap for ventilation when closing the front of the garment body. The garment body consists of a fabric layer, a support layer, and a skin-contact layer arranged sequentially from the outside to the inside. The support layer has vertical ribs and horizontal thin strips. The vertical ribs are equidistantly distributed vertically, and the horizontal thin strips are spaced to fix all the vertical ribs, forming hollowed-out drainage channels. The support layer is composed of a flexible thin plastic sheet and elastic nylon rigid strips. The vertical ribs and horizontal thin strips are integrally formed and are both made of elastic nylon rigid strips. The skin-contact layer is made of a thin elastic knitted fabric with regular rectangular moisture-wicking holes on its surface. The moisture-wicking holes are arranged in a uniform array and are standard cuboid openings. The fabric layer has large, irregularly shaped, long breathable grooves on its surface. The fabric layer is divided into a top layer, a middle layer, and a bottom layer from the outside to the inside. The bottom layer is attached to the rib structure of the support layer.

[0007] Furthermore, the vertical ribs of the support layer are spaced 15-30mm apart, the horizontal ribs are spaced 50-80mm apart, and the width of the hollowed-out guide channel is 5-10mm.

[0008] Furthermore, the diameter of the moisture-conducting through-hole is 0.5-2 mm, and the center-to-center distance between two adjacent moisture-conducting through-holes is 5-10 mm.

[0009] Furthermore, the fabric layer is made of breathable fabric and is sewn to the edge of the support layer. Its surface has large-sized irregular long strips of breathable grooves. The width of the breathable grooves is 3-8mm, the length is 50-150mm, and the distance between two adjacent breathable grooves is 10-20mm.

[0010] Furthermore, the surface layer is made of ultra-fine nylon breathable mesh fabric, which has the characteristics of surface micropores for breathability, windproof and slightly water-repellent properties, smooth texture, regular shape, and wear and washability.

[0011] Furthermore, the intermediate layer is a high-elastic PE breathable film, which has the characteristics of microporous one-way air permeability, allowing only moisture to pass through without allowing rainwater to enter, being thin, flexible, and wrinkle-free, and is used to fix the interlayer structure to prevent slippage.

[0012] Furthermore, the bottom layer of the fabric layer is closely bonded to the flexible thin plastic sheet of the support layer and fixed by needle and thread sewing. The bottom layer is a quick-drying yarn knitted layer with an irregular cross section of polyester.

[0013] Furthermore, the zipper and buttons are symmetrically distributed along the center line of the front side of the garment body, and the zipper is located inside the button, achieving double closure adjustment.

[0014] This utility model has the following beneficial effects: In this invention, the three-layer synergistic structure of the skin-adhesive layer, the support layer, and the fabric layer enables the rapid reception, diversion, and evaporation of sweat, effectively solving the problem of stuffiness and stickiness caused by sweat accumulation, improving wearing comfort, and avoiding the discomfort caused to the skin by a stuffy and humid environment.

[0015] In this invention, the support layer adopts a hollowed-out guide channel composed of vertical ribs and horizontal thin strips. The ribs are elastic and can be bent and stretched with the human body without collapsing or closing, ensuring that the moisture-wicking channel remains unobstructed during exercise, guaranteeing stable performance of moisture-wicking and perspiration-wicking properties, and improving the limitations of its use.

[0016] This invention features two closure methods: zippers and buttons. Wearers can choose flexibly according to different scenarios. The zipper provides complete closure for good protection, while the buttons allow for ventilation, thus accommodating the needs of different scenarios and improving the practicality and applicability of the garment. Attached Figure Description

[0017] Figure 1 This is a three-dimensional view of a quick-drying and moisture-wicking garment proposed in this utility model; Figure 2 This is a disassembly diagram of the garment body of a quick-drying and moisture-wicking garment proposed in this utility model; Figure 3 This is a schematic diagram of the fabric layer structure of a quick-dampening and moisture-wicking garment proposed in this utility model.

[0018] Legend: 1. Garment body; 2. Zipper; 3. Button; 4. Fabric layer; 5. Support layer; 6. Skin-contact layer; 7. Vertical ribs; 8. Horizontal stripes; 9. Breathable channels; 10. Moisture-wicking holes; 11. Bottom layer; 12. Middle layer; 13. Top layer. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Reference Figure 1-3This utility model provides an embodiment of a quick-drying and moisture-wicking garment, comprising a garment body 1, a zipper 2, and multiple buttons 3. Both the zipper 2 and the buttons 3 are installed on the front side of the garment body 1 to achieve closure of the front side of the garment body 1. The zipper 2 can completely close the front side of the garment body 1, thus providing better protection, suitable for scenarios requiring protection such as windy or slightly cool conditions. When the buttons 3 close the front side of the garment body 1, a certain gap is left to ensure breathability inside the garment, suitable for hot scenarios with excessive sweating. The wearer can choose the appropriate closure method according to actual needs.

[0021] The garment body 1 consists of a fabric layer 4, a support layer 5, and a skin-contact layer 6 arranged sequentially from the outside to the inside. These three layers work together to achieve rapid moisture wicking. The skin-contact layer 6 is made of a lightweight, elastic knitted fabric with regularly spaced rectangular moisture-wicking holes 10 on its surface. These holes 10 are evenly arranged in a standard cuboid shape, allowing them to quickly collect sweat from the body and channel it into the support layer 5. The diameter of the moisture-wicking holes 10 is 1.1–1.4 mm, and the center-to-center distance between two adjacent moisture-wicking holes 10 is 8 mm.

[0022] The support layer 5 is made of flexible thin plastic sheet and elastic nylon rigid strips, and adopts a structure of vertical ribs 7 and horizontal thin strips 8. The vertical ribs 7 are distributed vertically at equal intervals, and the horizontal thin strips 8 are fixed at intervals on all the vertical ribs 7 to form hollow drainage channels. This structure can form a gap channel between the skin-contact layer 6 and the fabric layer 4, completely separating the skin from the surface layer 13 of the fabric layer 4 and avoiding the stuffy feeling caused by sweat accumulation. At the same time, the hollow drainage channels can use gravity and mechanical guidance to quickly guide and diffuse sweat outward and downward along the grooves between the vertical ribs 7, providing a channel for rapid sweat conduction. The vertical ribs 7 are spaced 23mm apart, the horizontal thin strips 8 are spaced 65mm apart, and the width of the hollow drainage channels is 8mm.

[0023] The fabric layer 4 is made of breathable fabric and is sewn to the edge of the support layer 5. Its surface has large, irregularly shaped breathable grooves 9. The width of the breathable grooves 9 is 5mm and the length is 100mm. The distance between two adjacent breathable grooves 9 is 15mm. The design is simple and has good breathability, which can accelerate the evaporation of sweat on the surface. Furthermore, the fabric layer 4 consists of a top layer 13, a middle layer 12, and a bottom layer 11 from the outside to the inside: the top layer 13 is made of ultra-fine nylon breathable mesh fabric with a microporous breathable structure on the surface, and also has slight windproof and water-repellent properties. It has a smooth texture, regular shape, and is wear-resistant and washable, which is conducive to the evaporation and dissipation of sweat. The middle layer 12 is made of high-elastic PE breathable film with microporous one-way breathable characteristics, which only allows moisture to escape and can block rainwater from entering. At the same time, it is thin, flexible, and not easy to wrinkle. As an intermediate barrier moisture-wicking layer, it can fix the interlayer structure and prevent slippage between layers. The bottom layer 11 is made of polyester irregular cross-section quick-drying yarn knitted layer with its own capillary moisture-wicking channels. It can receive the sweat discharged from the support layer 5 and spread the sweat quickly in the horizontal direction to accelerate the drying of sweat. It is also elastic and not tight, and can fit tightly with the rib structure of the support layer 5 to avoid structural collapse and affect the moisture-wicking effect.

[0024] In use, after sweating, the sweat first seeps into the support layer 5 through the moisture-wicking holes 10 of the skin-contact layer 6. The vertical ribs 7 of the support layer 5 form a space-gap channel that separates the skin from the surface layer 13, preventing stuffiness and dampness. Under the mechanical guidance of gravity and the hollowed-out channel, the sweat quickly flows outward and downward along the grooves between the vertical ribs 7 until it reaches the breathable grooves 9 of the fabric layer 4, where it evaporates quickly after full contact with the air. At the same time, the vertical ribs 7 and the horizontal strips 8 of the support layer 5 can bend and stretch with the body, ensuring that the hollowed-out channel will not be squeezed and closed. Even during exercise, the moisture-wicking channel remains unobstructed, continuously achieving the function of rapid moisture wicking and perspiration removal. The wearer can choose to completely close the zipper 2 or close it with the buttons 3, depending on the needs of the situation, balancing protection and breathability.

[0025] This utility model of rapid moisture-wicking clothing achieves efficient moisture wicking through a synergistic mechanism of receiving, guiding, and evaporating, while also incorporating a double-sealing design to adapt to different scenario requirements. Its overall working principle is as follows: First, the front of the garment body 1 is equipped with two types of closure structures: zipper 2 and button 3, forming a scene adaptation mechanism: zipper 2 can completely close the front of the garment, forming a good protective barrier to deal with scenes that require protection, such as windy or slightly cool conditions; when button 3 is closed, a ventilation gap is left to ensure air circulation inside the garment, which is suitable for hot and sweaty scenes. The wearer can flexibly switch according to actual needs, taking into account both protection and breathability.

[0026] Secondly, the garment body 1 adopts a three-layer structure consisting of a fabric layer 4, a support layer 5, and a skin-contact layer 6, forming an efficient moisture-wicking channel: the skin-contact layer 6, as a sweat-receiving layer, is made of a thin, elastic knitted fabric that fits the skin, and the evenly arrayed rectangular moisture-wicking holes 10 on its surface can quickly capture the sweat excreted by the body, achieving rapid sweat penetration and preventing sweat from accumulating on the skin surface; the support layer 5, as the core diversion layer, forms hollow diversion channels through the combination of vertical ribs 7 and horizontal thin strips 8, that is, forming a gap between the skin-contact layer and the fabric layer, isolating the skin from the fabric surface 13. To eliminate the feeling of stuffiness and dampness, the fabric layer 4 utilizes gravity and mechanical guidance to quickly conduct the absorbed sweat outwards and downwards along the vertical grooves, providing a stable channel for sweat diffusion. As a sweat evaporation layer, the fabric layer 4 has large, irregularly shaped, long breathable grooves 9 on its surface to increase the contact area with air and accelerate sweat evaporation. At the same time, the fabric layer itself has a three-layer structure of surface layer 13, middle layer 12, and bottom layer 11 working together. The bottom layer 11 receives the sweat conducted by the support layer and spreads it horizontally, the middle layer 12 achieves one-way breathability and blocks rainwater, and the surface layer 13 helps sweat evaporate, further improving the quick-drying effect.

[0027] Finally, the vertical ribs 7 and horizontal thin strips 8 of the support layer 5 ensure the stability of the moisture-wicking performance: the ribs, which are composed of elastic nylon rigid strips and flexible thin plastic sheets, can bend and stretch flexibly with the human body, preventing the hollowed-out channel from being squeezed and closed during exercise, ensuring that the sweat conduction channel is always unobstructed, realizing continuous and efficient moisture wicking and sweating during exercise, and completely solving the problems of stuffiness and slow sweating in traditional clothing.

[0028] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A quick-drying and moisture-wicking garment, characterized in that, include: A zipper (2) and a button (3) are installed on the front side of the garment body (1) to close the front side of the garment body (1); the zipper (2) can completely close the front side of the garment body (1), and the button (3) leaves a gap for ventilation when closing the front side of the garment body (1). The garment body (1) is provided with a fabric layer (4), a support layer (5) and a skin-contact layer (6) from the outside to the inside. The support layer (5) is provided with vertical ribs (7) and horizontal thin strips (8). The vertical ribs (7) are distributed vertically at equal intervals, and the horizontal thin strips (8) fix all the vertical ribs (7) at intervals to form hollow guide channels. The fabric layer (4) has large-sized irregular long strip breathable grooves (9) on its surface. The fabric layer (4) is divided into a top layer (13), a middle layer (12) and a bottom layer (11) from the outside to the inside. The bottom layer (11) is attached to the rib structure of the support layer (5).

2. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The vertical ribs (7) of the support layer (5) are spaced 15-30mm apart, and the horizontal thin strips (8) are spaced 50-80mm apart, forming a hollowed-out guide channel with a width of 5-10mm. The support layer (5) is composed of a flexible thin plastic sheet and an elastic nylon rigid strip. The vertical ribs (7) and the horizontal thin strips (8) are integrally formed and are both made of elastic nylon rigid strip.

3. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The skin-adhesive layer (6) is made of thin and elastic knitted fabric, and regular rectangular moisture-wicking holes (10) are opened on its surface. The moisture-wicking holes (10) are arranged in a uniform array and are standard cuboid openings. The diameter of the moisture-wicking holes (10) is 0.5-2mm, and the center distance between two adjacent moisture-wicking holes (10) is 5-10mm.

4. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The fabric layer (4) is made of breathable fabric and is sewn to the edge of the support layer (5). Its surface is provided with large-sized irregular long strip breathable grooves (9). The width of the breathable grooves (9) is 3-8mm, the length is 50-150mm, and the distance between two adjacent breathable grooves (9) is 10-20mm.

5. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The outer layer (13) is made of ultra-fine nylon breathable mesh.

6. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The intermediate layer (12) is a high-elastic PE breathable film.

7. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The bottom layer (11) of the fabric layer (4) is closely attached to the flexible thin plastic sheet of the support layer (5) and fixed by needle and thread sewing. The bottom layer (11) is a polyester irregular cross section quick-drying yarn knitted layer.

8. The quick-drying and moisture-wicking garment according to claim 1, characterized in that: The zipper (2) and the button (3) are symmetrically distributed along the front center line of the garment body (1), and the zipper (2) is located inside the button (3) to achieve double closure adjustment.