Moisture-absorbing and quick-drying fabric and shirt

By weaving together antibacterial cotton yarn and UV-resistant nylon 6 filament, moisture-wicking polyester FDY filament, and hydrophilic polyester FDY filament into a moisture-wicking and quick-drying fabric, the problem of shirts not absorbing moisture and resisting ultraviolet rays in summer is solved, achieving the effects of antibacterial, UV-resistant, and rapid moisture absorption and perspiration wicking.

CN224092088UActive Publication Date: 2026-04-07海宁市名路制衣有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing shirts lack the ability to wick away moisture and protect against ultraviolet rays in hot summers, leading to discomfort and potential bacterial growth, which can affect health.

Method used

The fabric is designed with a combination of warp and weft yarns to create a moisture-wicking and quick-drying material. It uses antibacterial cotton yarn, UV-resistant nylon 6 filament, moisture-wicking polyester FDY filament, and hydrophilic polyester FDY filament, combined with a hydrophobic and breathable layer to form a structure that is antibacterial, UV-resistant, and moisture-wicking and quick-drying.

Benefits of technology

It achieves antibacterial, UV-resistant, and quick-drying properties in the fabric, improving wearing comfort and reducing bacterial growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The fabric is formed by interweaving warp yarns and weft yarns, the surface layer warp yarns and the surface layer weft yarns are interwoven to form a surface layer, the inner layer warp yarns and the inner layer weft yarns are interwoven according to through hole tissues to form an inner layer, and the surface layer warp yarns and the surface layer weft yarns comprise antibacterial cotton yarns and anti-ultraviolet chinlon 6 filaments which are arranged alternately; the inner-layer warp yarns comprise moisture-conducting polyester FDY (Fully Drawn Yarn) filaments and hydrophilic polyester FDY filaments which are doubled and twisted; the inner-layer weft yarns comprise moisture-conducting polyester FDY filaments and antibacterial chinlon 6 filaments which are arranged in parallel, and network points are arranged in the length direction and used for entangling the moisture-conducting polyester FDY filaments and the antibacterial chinlon 6 filaments. Wherein the used yarns are antibacterial cotton yarns, so that the fabric has an antibacterial effect; and the anti-ultraviolet chinlon 6 filaments are used, so that the fabric has an anti-ultraviolet effect. The moisture-conducting polyester FDY filaments have a moisture-conducting effect, and the antibacterial cotton yarns can absorb sweat which is conducted by the antibacterial cotton yarns, so that the moisture-absorbing and quick-drying effects are realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of moisture-absorbing quick-drying fabrics, belong to textile fabric technical field. BACKGROUND

[0002] Shirt is common clothing in people's life, especially in summer, people usually wear only a shirt when going out. In hot summer, high temperature can make human body secrete more sweat, if the shirt does not have the effect of moisture absorption and perspiration, it will make the shirt adhere to the human skin, which is uncomfortable and unsightly. And damp fabric can easily breed bacteria, which affects human health. In summer, the sunlight is relatively strong, and the ultraviolet intensity in strong sunlight is also relatively strong. High-intensity ultraviolet can also affect the human body. How to prepare a fabric and shirt with anti-ultraviolet, moisture absorption, quick-drying and antibacterial properties has become a problem to be solved. SUMMARY

[0003] The utility model aims at providing a kind of moisture-absorbing quick-drying fabric and shirt, with the effect of anti-ultraviolet, moisture absorption, quick-drying and antibacterial.

[0004] To solve the above technical problems, the utility model aims at realizing as follows:

[0005] The utility model relates to a kind of moisture-absorbing quick-drying fabric, which is interwoven by warp yarn and weft yarn. The warp yarn includes surface layer warp yarn and inner layer warp yarn. The weft yarn includes surface layer weft yarn, inner layer weft yarn and connecting weft yarn. The surface layer warp yarn and surface layer weft yarn are interwoven to form a surface layer. The inner layer warp yarn and inner layer weft yarn are interwoven according to a through-hole organization to form an inner layer. The connecting weft yarn connects the surface layer and the inner layer.

[0006] The surface layer warp yarn and surface layer weft yarn both include antibacterial cotton yarn and anti-ultraviolet nylon 6 filament arranged alternately. The inner layer warp yarn includes moisture-conducting polyester FDY filament and hydrophilic polyester FDY filament twisted together. The inner layer weft yarn includes moisture-conducting polyester FDY filament and antibacterial nylon 6 filament arranged in parallel, and has network points along the length direction for entangling the moisture-conducting polyester FDY filament and the antibacterial nylon 6 filament.

[0007] In the above-mentioned scheme, and as a preferred scheme of the above-mentioned scheme: the cross section of the single filament in the moisture-conducting polyester FDY filament is flat, and an arc-shaped protruding part is arranged on one side surface of the long side, and a groove is arranged between the adjacent two protruding parts.

[0008] In the above-mentioned scheme, and as a preferred scheme of the above-mentioned scheme: the connecting weft yarn is moisture-conducting polyester FDY filament.

[0009] On the basis of the above scheme and as a preferred scheme of the above scheme: the cross section of the monofilament in the hydrophilic polyester FDY filament is trilobal, and the surface has a hydrophilic group.

[0010] On the basis of the above scheme and as a preferred scheme of the above scheme: the surface of the surface layer away from the inner layer is attached with a hydrophobic breathable layer; the hydrophobic breathable layer is surface hydrophobic modified silica nanoparticles, and the particle size of the surface hydrophobic modified silica nanoparticles is 200-300nm.

[0011] The utility model also relates to a shirt, adopt the moisture absorption and quick dry fabric of above.

[0012] The utility model discloses a moisture absorption and quick dry fabric and shirt, wherein the yarn antibacterial cotton yarn is used, so that the fabric has antibacterial effect, and the ultraviolet resistant polyamide 6 filament is used, so that the fabric has ultraviolet resistance effect. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is the structure schematic diagram of moisture absorption and quick dry fabric that embodiment one relates to;

[0014] Figure 2 It is the cross section structure schematic diagram of monofilament in the wet guide polyester DFY filament that embodiment one relates to;

[0015] Figure 3 It is the structure schematic diagram of moisture absorption and quick dry fabric that embodiment two relates to.

[0016] Markings in the drawing are as follows: 1 - surface layer;2 - inner layer;3 - protruding portion;4 - groove;5 - hydrophobic breathable layer. DETAILED DESCRIPTION

[0017] The utility model is further explained in connection with the drawings and specific embodiment.

[0018] Embodiment one

[0019] In connection with Figure 1 And Figure 2 , the embodiment is explained in detail. A moisture absorption and quick dry fabric is related to the embodiment, which is interwoven by warp yarn and weft yarn, the warp yarn includes surface layer warp yarn and inner layer warp yarn, the weft yarn includes surface layer weft yarn, inner layer weft yarn and connecting weft yarn;The surface layer warp yarn and surface layer weft yarn are interwoven to form surface layer 1 according to plain weave, the inner layer warp yarn and inner layer weft yarn are interwoven to form inner layer 2 according to openwork weave, and the connecting weft yarn connects surface layer 1 and inner layer 2.

[0020] The surface layer warp yarns and the surface layer weft yarns both comprise antibacterial cotton yarns and anti-ultraviolet polyamide 6 filaments arranged alternately. The antibacterial cotton yarns can provide antibacterial effect, and the anti-ultraviolet polyamide 6 filaments can provide good anti-ultraviolet effect.

[0021] The inner layer warp yarns comprise moisture-conducting polyethylene terephthalate (PET) filaments and hydrophilic PET filaments arranged in parallel; and the inner layer weft yarns comprise moisture-conducting PET filaments and antibacterial polyamide 6 filaments arranged in parallel and provided with network points along the length direction for intertwining the moisture-conducting PET filaments and the antibacterial polyamide 6 filaments. The moisture-conducting PET filaments can provide moisture-conducting effect, and the antibacterial polyamide 6 filaments can provide antibacterial effect. The through-hole structure makes the surface of the inner layer 2 form uniformly distributed small holes, which can improve the air permeability.

[0022] Further, the section of the single yarn of the moisture-conducting PET filament is flat, and an arc-shaped protruding part 3 is arranged on one side surface of the long side of the moisture-conducting PET filament, and the end part is arc-shaped. There is a groove 4 between the two adjacent protruding parts 3. The groove 4 on the surface can guide the sweat through the wicking effect, so as to achieve the effect of moisture absorption and sweat release.

[0023] Further, the binder weft yarn is a moisture-conducting PET filament. The section of the single yarn of the hydrophilic PET filament is trilobal, and the surface of the hydrophilic PET filament has a hydrophilic group. A modified polyester master batch containing a hydrophilic group and nano powder is added to the melt in the spinning process, and then the modified polyester master batch is blended with conventional PET chips at a specified ratio to spin, so that the hydrophilic group is introduced into the surface of the fiber, the wettability of the fiber to sweat is improved, the cross section is trilobal, and after moderate alkali reduction treatment, part of the hydrophilic group is still retained on the surface of the fiber, and at the same time, the fiber forms a rough surface with micro-pits or bark-like groove marks. Therefore, the modified polyester fabric has the ability of rapid wetting and moisture absorption and diffusion, and the rough surface of the special-shaped cross section also expands the specific surface area for the evaporation of sweat.

[0024] Further, the inner layer warp yarns comprise an inner layer first warp yarn, an inner layer second warp yarn, an inner layer third warp yarn, an inner layer fourth warp yarn, an inner layer fifth warp yarn, an inner layer sixth warp yarn, an inner layer seventh warp yarn, and an inner layer eighth warp yarn. The inner layer weft yarns comprise an inner layer first weft yarn, an inner layer second weft yarn, an inner layer third weft yarn, an inner layer fourth weft yarn, an inner layer fifth weft yarn, an inner layer sixth weft yarn, an inner layer seventh weft yarn, and an inner layer eighth weft yarn.

[0025] With the weft as a reference, the floating and sinking rule of the first layer of first warp yarns is: sink-float-float-sink-float-sink-sink-float; the floating and sinking rule of the first layer of second warp yarns is: float-float-float-float-sink-sink-sink-sink; the floating and sinking rule of the first layer of third warp yarns is: float-float-float-float-sink-sink-sink-sink; the floating and sinking rule of the first layer of fourth warp yarns is: sink-float-float-sink-float-sink-sink-float; the floating and sinking rule of the first layer of fifth warp yarns is: float-sink-sink-float-sink-float-float-sink; the floating and sinking rule of the first layer of sixth warp yarns is: sink-sink-sink-sink-float-float-float-float; the floating and sinking rule of the first layer of seventh warp yarns is: sink-sink-sink-sink-float-float-float-float; and the floating and sinking rule of the first layer of eighth warp yarns is: float-sink-sink-float-sink-float-float-sink. Wherein, float means that the warp yarn is above the weft yarn, which is a warp organization point; and sink means that the warp yarn is below the weft yarn, which is a weft organization point.

[0026] Embodiment two

[0027] In combination Figure 3 The present embodiment is described in detail. The moisture absorption and quick-drying fabric involved in the present embodiment is different from that of Embodiment One in that the surface of the surface layer 1 away from the inner layer 2 is attached with a hydrophobic and breathable layer 5, and the hydrophobic and breathable layer 5 has breathable holes. The hydrophobic and breathable layer 5 is surface hydrophobic modified silicon dioxide nanoparticles, and the particle size of the surface hydrophobic modified silicon dioxide nanoparticles is 200-300 nm.

[0028] Embodiment three

[0029] The shirt involved in the present embodiment uses the above moisture absorption and quick-drying fabric.

[0030] The above describes the preferred embodiments of the present application in detail. It should be understood that those skilled in the art can make many modifications and changes without creative labor according to the concept of the present application. Therefore, any technical solution obtained by logical analysis, reasoning or limited experiment on the basis of the prior art according to the concept of the present application shall be within the protection scope defined by the claims.

Claims

1. A moisture-wicking and quick-drying fabric, characterized in that, It is made of interwoven warp and weft yarns. The warp yarns include a surface warp yarn and an inner warp yarn. The weft yarns include a surface weft yarn, an inner weft yarn, and a knotted weft yarn. The surface warp yarns and surface weft yarns interweave to form a surface layer (1). The inner warp yarns and inner weft yarns interweave according to a perforated structure to form an inner layer (2). The knotted weft yarns connect the surface layer (1) and the inner layer (2). Both the outer warp and outer weft yarns consist of alternating antibacterial cotton yarn and UV-resistant nylon 6 filaments; the inner warp yarns consist of twisted moisture-wicking polyester FDY filaments and hydrophilic polyester FDY filaments; the inner weft yarns consist of parallel moisture-wicking polyester FDY filaments and antibacterial nylon 6 filaments, and are provided with network points along the length direction for entanglement of the moisture-wicking polyester FDY filaments and antibacterial nylon 6 filaments.

2. The moisture-wicking and quick-drying fabric according to claim 1, characterized in that, The cross-section of the single filament in the moisture-wicking polyester FDY filament is flat, and an arc-shaped protrusion (3) is provided on one side surface of its long side, with a groove (4) between two adjacent protrusions (3).

3. The moisture-wicking and quick-drying fabric according to claim 1, characterized in that, The weft yarn used for bonding is moisture-wicking polyester FDY filament.

4. The moisture-wicking and quick-drying fabric according to claim 1, characterized in that, The hydrophilic polyester FDY filament has a trilobal cross-section and hydrophilic groups on its surface.

5. The moisture-wicking and quick-drying fabric according to claim 1, characterized in that, The surface of the outer layer (1) away from the inner layer (2) is covered with a hydrophobic and breathable layer (5); the hydrophobic and breathable layer (5) is composed of surface hydrophobic modified silica nanoparticles with a particle size of 200-300 nm.

6. A shirt, characterized in that, The material used is the moisture-wicking and quick-drying fabric as described in any one of claims 1 to 5.