Regenerated nylon antibacterial socks

By using antibacterial and abrasion-resistant fabrics in the socks, including a combination of polylactic acid fiber, antibacterial artemisia fiber, and recycled nylon fiber, the shortcomings of existing socks in terms of antibacterial and environmental protection are solved, achieving a comfortable, antibacterial, and abrasion-resistant sock effect to meet the diverse needs of consumers.

CN223810414UActive Publication Date: 2026-01-20PINGHU GOLD ELEPHANT TEXTILE
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Patent Information

Application Number
CN202422941891.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-30
Publication Date
2026-01-20
Estimated Expiration
2034-11-30

AI Technical Summary

Technical Problem

The demand for antibacterial and environmentally friendly socks has not been fully met. Especially in sports and fitness, daily work and leisure scenarios, consumers demand higher antibacterial and environmental performance in addition to the conventional characteristics of socks such as comfort, breathability and abrasion resistance.

Method used

Featuring an antibacterial and durable fabric design, the socks include a skin-contact layer, a sweat-wicking layer, and a wear-resistant layer. The skin-contact layer is woven from polylactic acid fiber filaments or antibacterial absorbent polyester filaments, the sweat-wicking layer is woven from ultra-soft, highly moisture-wicking modified polyester yarn, the wear-resistant layer is woven from recycled nylon fiber yarn, the antibacterial layer is woven from artemisia fiber yarn, and the sock cuff is woven from polyester filaments. Massage bumps are also provided between the sweat-wicking layer and the skin-contact layer.

Benefits of technology

It achieves rapid sweat wicking, keeping feet dry and comfortable, has excellent antibacterial effects, protects foot health, and is also environmentally friendly and wear-resistant, meeting diverse consumer needs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223810414U_ABST
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Abstract

The utility model discloses a regenerated nylon antibacterial sock which comprises a sock body, and the sock body comprises a sock body, a sock bottom and a sock leg. The sock body, the sock sole and the sock leg are connected through sewing; the sock body and the sock bottom are both made of antibacterial and wear-resistant fabric, and the antibacterial and wear-resistant fabric comprises a skin attaching layer, a sweat absorbing layer, an antibacterial layer and a wear-resistant layer which are sequentially arranged. The antibacterial layer is formed by weaving wormwood fiber yarns; the wear-resistant layer is formed by weaving regenerated nylon fiber yarns; the sock leg is formed by weaving polyester filament yarn. According to the regenerated nylon antibacterial sock, the skin attaching layer and the sweat absorbing layer are matched with each other, so that sweat and moisture generated by foot skin can be quickly led out and absorbed, and the foot is kept dry and comfortable; the antibacterial layer formed by weaving the wormwood fiber yarns has excellent antibacterial and bacteriostatic effects, is fragrant, and can keep a user away from pathogen invasion and protect foot health; and the wear-resistant layer is formed by weaving regenerated nylon fiber yarns, so that the wear-resistant layer is wear-resistant and environment-friendly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of socks, specifically a kind of regenerated nylon antibacterial socks. BACKGROUND

[0002] Socks are an important part of people's daily clothing, not only have basic functions such as protecting the skin of the foot, reducing friction, absorbing sweat and keeping warm, but also reflect the personal hygiene habits and fashion taste of the wearer to some extent. In modern life, people's demand for socks shows a trend of diversification and individualization. Whether in sports, daily work or leisure and entertainment, socks are indispensable. With the improvement of people's living standards and the enhancement of health consciousness, consumers have increasingly high requirements for the quality and performance of socks. In addition to focusing on comfort, breathability, wear resistance and other conventional characteristics, they also pay more attention to the antibacterial and environmental protection functions of socks. Therefore, it is necessary to provide a regenerated nylon antibacterial sock. SUMMARY

[0003] The utility model aims to provide a regenerated nylon antibacterial sock, which not only has the wear-resistant characteristics of conventional socks, but also has antibacterial function.

[0004] To solve the above technical problems, the utility model aims to achieve the following: a regenerated nylon antibacterial sock, comprising: a sock body, the sock body comprising a sock body, a sock bottom and a sock tube; the sock body, the sock bottom and the sock tube are connected by sewing; the sock body and the sock bottom are both antibacterial and wear-resistant fabric, the antibacterial and wear-resistant fabric comprises a skin layer, a sweat-absorbing layer, an antibacterial layer and a wear-resistant layer arranged in sequence; the antibacterial layer is woven from artemisia fiber yarn; the wear-resistant layer is woven from regenerated nylon fiber yarn; the sock tube is woven from polyester filament.

[0005] On the basis of the above-mentioned scheme and as a preferred scheme of the above-mentioned scheme: the skin layer is interwoven from polylactic acid fiber filaments, and the cross-sectional shape of the polylactic acid fiber filaments is cross-shaped.

[0006] On the basis of the above-mentioned scheme and as a preferred scheme of the above-mentioned scheme: the skin layer is interwoven from antibacterial and absorbent polyester filaments, and the specification of the antibacterial and absorbent polyester filaments is 50D / 48F.

[0007] On the basis of the above-mentioned scheme and as a preferred scheme of the above-mentioned scheme: the sweat-absorbing layer is woven from super-soft high-hygroscopic modified polyester fiber yarn.

[0008] On the basis of the above-mentioned scheme and as a preferred scheme of the above-mentioned scheme: the sock bottom is provided with uniformly distributed massage bumps; the massage bumps are arranged between the skin layer and the sweat-absorbing layer; the massage bumps are hemispherical, and one side of the spherical surface is close to the skin layer.

[0009] The utility model discloses a beneficial effect is: based on the utility model regenerates nylon antibacterial socks, and the skin layer and the sweat absorbing layer cooperate with each other can export and absorb the sweat and humidity of the foot skin, keep the foot dry and comfortable, the antibacterial layer that is woven with the fiber yarn of wormwood is excellent antibacterial, bacteriostatic effect, has the fragrance, can make the user away from the disease bacteria invasion, protects the foot health, the wear -resisting layer is woven with the fiber yarn of regenerates nylon, is wear -resisting and environmental protection. BRIEF DESCRIPTION OF DRAWINGS

[0010] Fig. 1 It is the structure diagram of regenerates nylon antibacterial socks that the utility model relates to;

[0011] Fig. 2 It is the structure diagram of antibacterial wear -resisting fabric that the utility model relates to;

[0012] In the drawing: 1 - sock body, 2 - sock bottom, 3 - sock tube, 4 - skin layer, 5 - sweat absorbing layer, 6 - antibacterial layer, 7 - wear -resisting layer. DETAILED DESCRIPTION

[0013] The utility model is further explained below in combination with the drawings and specific embodiment.

[0014] Embodiment one

[0015] Combine Figs. 1-2 Detailed description is made to this embodiment, a kind of regenerates nylon antibacterial socks, comprising: sock main body, the sock main body includes sock body, sock bottom and sock tube;The sock body, sock bottom and sock tube are connected by sewing;The sock body and sock bottom are all antibacterial wear -resisting fabric, and the antibacterial wear -resisting fabric includes sequentially arranged skin layer, sweat absorbing layer, antibacterial layer and wear -resisting layer;The antibacterial layer is woven with the fiber yarn of wormwood;The wear -resisting layer is woven with the fiber yarn of regenerates nylon;The sock tube is woven with polyester filament.The specific skin layer, sweat absorbing layer, antibacterial layer and wear -resisting layer are connected by quilting.

[0016] Wormwood fiber is obtained by adding wormwood powder, dispersing agent and solvent mixture spinning in spinning solution. The fiber moisture regain is 12.76%, the moisture absorption and moisture transmission are good, has the advantages of bacteriostatic, soft hand feeling, biodegradable, no pollution. Wormwood fiber does not lose antibacterial effect after washing and dyeing for many times, does not cause harm to the environment and human body, has excellent antibacterial, bacteriostatic effect, away from the disease bacteria invasion, protects the foot health.

[0017] The regenerated nylon fiber is generally produced by melting and granulating nylon yarn, nylon thread or nylon cloth. Compared with traditional nylon fiber, the biggest advantage of regenerated nylon fiber is its environmental friendliness. It reduces the dependence on non-renewable resources such as petroleum, reduces energy consumption and greenhouse gas emissions, and is more friendly to the environment. After reasonable processing, the regenerated nylon fiber can still retain certain mechanical properties such as strength, wear resistance, elasticity and resilience, and can meet the basic requirements of various textile applications such as socks, clothing, home textiles, etc.

[0018] Further, the skin layer is interwoven by polylactic acid fiber filaments, and the cross-sectional shape of the polylactic acid fiber filaments is cross-shaped. Polylactic acid is a 100% biodegradable material based on renewable resources, which is an environmentally friendly, green and environmentally friendly, functional biobased textile material. The fiber is a natural weak acid with a pH value close to that of human skin, and is not allergic to skin care, naturally antibacterial, anti-mite and mildew resistant, and has a wide application prospect in the textile industry. Based on the friendly performance of polylactic acid fiber to human skin and the functions of cross-section fiber such as moisture transfer, quick drying, fluffy and soft, it is widely used in the production of socks. Therefore, the skin layer 2 can quickly guide the sweat on the feet out, keeping the feet dry and comfortable.

[0019] Further, the sweat-absorbing layer is woven by super-soft high-hygroscopic modified polyester fiber yarn. Specifically, the super-soft hygroscopic modified polyester fiber is prepared by copolymerizing and melt spinning with adipic acid glutaric amide as a modified monomer and terephthalic acid glycol ester. Polyethylene terephthalate has a very regular macromolecular chain structure, and the crystallinity and orientation of the fiber are high. The macromolecular chain is composed of ester groups, rigid benzene rings and flexible methylene chain segments. The polarity between the ester groups and the benzene rings allows them to form a conjugated structure, so the macromolecular chain of PET has a certain rigidity. In addition, due to the lack of hydrophilic groups in the macromolecular chain, the hygroscopicity of PET fiber is very poor, with a standard moisture regain of only 0.4%, while polyamide 6 and polyamide 66 have water-absorbing amide groups, with a fiber standard moisture regain of up to 4.5%, which is more than 10 times that of polyester. The macromolecular chain is an aliphatic flexible segment, and the softness of the fiber is good; however, the price of polyamide is relatively high, which limits its application to a certain extent. Introducing amide bonds into PET can effectively improve the hydrophilicity and softness of PET fiber. Therefore, the super-soft high-hygroscopic modified polyester fiber improves the hydrophilicity and softness of the polyester fiber, and the yarn used to weave the sweat-absorbing layer of the sock can quickly absorb the sweat guided out by the skin layer.

[0020] Example two

[0021] The difference from the first embodiment is that the skin layer is interwoven by the antibacterial moisture-wicking polyester filament, and the specification of the antibacterial moisture-wicking polyester filament is 50D / 48F. The antibacterial moisture-wicking polyester filament is obtained by adding nano silver in the process of spinning the polyester moisture-wicking fiber, and has the functions of antibiosis and moisture-wicking, which can not only guide the moisture generated by the skin of the foot, but also has the effect of antibiosis.

[0022] The third embodiment

[0023] On the basis of the first embodiment, the sock bottom is provided with uniformly distributed massage convex points; the massage convex points are arranged between the skin layer and the moisture-wicking layer; the massage convex points are semispherical, and one side of the spherical surface is close to the skin layer. When walking, the massage convex points can comprehensively massage and stimulate the foot bottom, act on the meridian system, help to promote the circulation of blood and qi, help the wearer to easily relieve fatigue, and improve the physical condition.

[0024] The above detailed the preferred embodiments of the present application. 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 type of recycled nylon antibacterial sock, characterized in that, include: The sock body includes a sock body, a sock sole, and a sock cuff; the sock body, sock sole, and sock cuff are connected by stitching; the sock body and sock sole are both made of antibacterial and abrasion-resistant fabric, the antibacterial and abrasion-resistant fabric including a skin-contact layer, a sweat-absorbing layer, an antibacterial layer, and an abrasion-resistant layer arranged sequentially; the antibacterial layer is woven from mugwort fiber yarn; the abrasion-resistant layer is woven from recycled nylon fiber yarn; and the sock cuff is woven from polyester filament.

2. The recycled nylon antibacterial sock according to claim 1, characterized in that, The skin-adhesive layer is made of interwoven polylactic acid fiber filaments, and the cross-sectional shape of the polylactic acid fiber filaments is cross-shaped.

3. The recycled nylon antibacterial sock according to claim 1, characterized in that, The skin-adhesive layer is made of interwoven antibacterial absorbent polyester filaments, the specifications of which are 50D / 48F.

4. The recycled nylon antibacterial sock according to claim 1, characterized in that, The sweat-absorbing layer is woven from ultra-soft, highly absorbent modified polyester fiber yarn.

5. The recycled nylon antibacterial sock according to claim 1, characterized in that, The sole of the sock is provided with evenly distributed massage bumps; the massage bumps are located between the skin-contact layer and the sweat-absorbing layer; the massage bumps are hemispherical, with one side of the sphere close to the skin-contact layer.