Blended cotton socks with antibacterial performance

By using a specific fiber blend fabric and an anti-slip design, the problems of poor antibacterial performance and easy slippage of the sock cuffs in traditional socks have been solved, achieving a comprehensive effect of antibacterial, anti-slip, elasticity, moisture absorption, warmth retention and breathability.

CN223626981UActive Publication Date: 2025-12-05YIWU SAIER KNITTING CO LTD
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Patent Information

Application Number
CN202422886398.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-12-05
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

Traditional socks have poor antibacterial properties and the cuffs tend to slip down, affecting their wearing comfort.

Method used

The socks are made of a cotton and spandex blend fabric, while the toe and heel are made of a cotton and antibacterial fiber/polyester blend fabric, respectively. The inner side is lined with a fleece layer and has ventilation holes. Anti-slip silicone dots are distributed in an array on the bottom of the sock, and an anti-slip silicone sheet is placed at the cuff.

Benefits of technology

It improves antibacterial properties, prevents socks from slipping down, and enhances elasticity, moisture absorption, warmth retention, and breathability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a blended cotton sock with an antibacterial property. The blended cotton sock comprises a sock body (1), a sock toe (2) and a sock heel (3) are connected to the sock body (1), the sock body (1) is made of cotton and spandex blended fabric, the sock toe (2) is made of cotton and antibacterial fiber blended fabric, and the sock heel (3) is made of cotton and polyester blended fabric. The inner side faces of the sock body (1), the sock head (2) and the sock heel (3) are all connected with velvet adding layers (4), and a plurality of air holes (5) are formed in the velvet adding layers (4). The sock body (1) is connected with a rib top (6), and the inner side face, corresponding to the position below the rib top (6), of the sock body (1) is connected with an anti-skid silica gel sheet (7) which is annularly arranged. According to the utility model, not only can the antibacterial performance be improved, but also the anti-slip performance, the elasticity, the hygroscopicity, the warmth retention property and the air permeability and perspiration performance are better.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of knit socks, especially a blended cotton sock with antibacterial performance. BACKGROUND

[0002] As a necessity in people's market life, socks can protect and warm feet well, and bring good guarantee for people's healthy life.

[0003] Traditional socks are generally composed of a sock body, a toe, a heel and a cuff, and the cuff can be self-adapted to be set on the ankle; wherein the sock body, the toe and the heel are all made of pure cotton yarn, although they have certain elasticity and moisture absorption, but the sweat remaining in the socks is easy to cause bacterial infection of the toe; at the same time, the action of the ankle during the movement of the foot is easy to pull the cuff, so that the cuff slips off, affecting the wearing.

[0004] Therefore, the existing socks have the problems of poor antibacterial performance and easy slipping of the cuff. INVENTION CONTENTS

[0005] The utility model discloses a blended cotton sock with antibacterial performance.

[0006] The technical scheme of the utility model discloses a blended cotton sock with antibacterial performance, including the sock body, the sock body is connected with the toe and the heel, the sock body is made of cotton and spandex blended fabric, the toe is made of cotton and antibacterial fiber blended fabric, the heel is made of cotton and polyester blended fabric, the inner side of the sock body, the toe and the heel is connected with the wool layer, the wool layer is equipped with a plurality of air holes, the sock body is connected with the cuff, the inner side of the sock body is connected with the annular anti-slip silica gel piece below the position corresponding to the cuff.

[0007] In the foregoing blended cotton sock with antibacterial performance, the bottom of the sock body is connected with a plurality of arrayed anti-slip silica gel points.

[0008] In the foregoing blended cotton sock with antibacterial performance, the diameter of the anti-slip silica gel point is 1-3mm.

[0009] In the foregoing blended cotton sock with antibacterial performance, the anti-slip silica gel piece is arranged in a wave shape.

[0010] In the foregoing blended cotton sock with antibacterial performance, the diameter of the air hole is 3-5mm.

[0011] Compared with the prior art, the utility model discloses a sock body is made of cotton and spandex blended fabric (cotton content is 95%, spandex content is 5%), so that the sock body has better elasticity and hygroscopicity, the toe is made of cotton and antibacterial yarn blended fabric (cotton content is 65%, antibacterial fiber content is 35%), so that the part has certain elasticity and hygroscopicity while greatly improving the antibacterial property, the heel is made of cotton and polyester blended fabric (cotton content is 55%, polyester content is 45%), and the strength and wear resistance of the part are improved, and simultaneously, the inner side of the sock body, the toe and the heel is connected with the wool adding layer, and the warm-keeping property is improved, the wool adding layer is equipped with a plurality of air holes, and the air permeability is improved to a certain extent, and the perspiration performance is improved, and the inner side of the sock body corresponding to the position below the cuff is connected with the annular anti-skid silica gel sheet, and the friction coefficient between the sock cuff part and the foot is large, and the sock is not easy to slip.

[0012] In addition, the utility model discloses a plurality of array distribution's anti -skid silica gel point is connected on the sock body bottom surface, and the diameter of anti -skid silica gel point is 1-3mm, improves the anti -skid performance between sock and insole.

[0013] The anti-skid silica gel sheet is arranged in a wave shape, so that it can stretch and contract to a certain extent in the horizontal direction with the sock, so that the cuff part can better fit the part above the ankle, and the anti-skid performance is good.

[0014] Therefore, the utility model not only can improve the antibacterial property, but also has the advantages of good anti-skid performance, good elasticity, good hygroscopicity, good warm-keeping property and good air permeability and perspiration performance. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the structure schematic diagram of the utility model.

[0016] The marks in the drawings are: 1-sock body, 2-toe, 3-heel, 4-wool adding layer, 5-air hole, 6-cuff, 7-anti-skid silica gel sheet, 8-anti-skid silica gel point. DETAILED DESCRIPTION

[0017] The utility model will be further described below in combination with the drawings and examples, but not as the basis for limiting the utility model.

[0018] Example. A blended cotton sock with antibacterial property, constitutes as Figure 1As shown, including the sock body 1; the sock body 1 is connected with the toe 2 and the heel 3, the sock body 1 is made of cotton and spandex blended fabric, the toe 2 is made of cotton and antibacterial fiber blended fabric, the heel 3 is made of cotton and polyester blended fabric; the inner side of the sock body 1, the toe 2 and the heel 3 is connected with the wool layer 4, the wool layer 4 is provided with a plurality of air holes 5; the sock body 1 is connected with the ro mouth 6, and the inner side of the sock body 1 corresponding to the position below the ro mouth 6 is connected with the annularly arranged anti-skid silica gel piece 7.

[0019] The bottom surface of the sock body 1 is connected with a plurality of array-shaped anti-skid silica gel points 8; the diameter of the anti-skid silica gel point 8 is 1-3mm; the anti-skid silica gel piece 7 is arranged in a wave shape; the diameter of the air hole 5 is 3-5mm.

[0020] Working principle: when the user wears the sock body 1, the ro mouth 6 at the top of the sock body 1 is self-adapted to be set on the user's ankle above through its own elasticity, the user's toes are located in the toe 2, and the user's heel is located in the heel 3. Since the inner side of the sock body 1, the toe 2 and the heel 3 is connected with the wool layer 4, and the wool layer 4 is provided with a plurality of air holes 5, the overall warmth is improved, and the sweat generated by the feet can be discharged through the air holes 5. The inner side of the sock body 1 corresponding to the position below the ro mouth 6 is connected with the annularly arranged wave-shaped anti-skid silica gel piece 7, which makes the anti-skid silica gel piece 7 can stretch to a certain extent in the horizontal direction with the sock body, so that the sock mouth part can better fit the part above the user's ankle, and the anti-skid performance is better. The bottom surface of the sock body 1 is connected with a plurality of array-shaped anti-skid silica gel points 8, the diameter of the anti-skid silica gel point 8 is 1-3mm, which improves the anti-skid performance between the sock body 1 and the insole.

[0021] Among them, the sock body 1 is made of cotton and spandex blended fabric (cotton content is 95%, spandex content is 5%), which makes the sock body 1 have good elasticity and moisture absorption; the toe 2 is made of cotton and antibacterial yarn blended fabric (cotton content is 65%, antibacterial fiber content is 35%), which makes this part have certain elasticity and moisture absorption while greatly improving the antibacterial performance; the heel 3 is made of cotton and polyester blended fabric (cotton content is 55%, polyester content is 45%), which improves the strength and wear resistance of this part.

Claims

1. A blended cotton sock having antibacterial properties, comprising a sock body (1); characterized in that: The sock body (1) is connected with a toe (2) and a heel (3), the sock body (1) is made of cotton and spandex blended fabric, the toe (2) is made of cotton and antibacterial fiber blended fabric, and the heel (3) is made of cotton and polyester blended fabric; the inner side of the sock body (1), the toe (2) and the heel (3) is connected with a wool layer (4), and the wool layer (4) is provided with a plurality of air holes (5); the sock body (1) is connected with a drawstring (6), and the inner side of the sock body (1) corresponding to the position below the drawstring (6) is connected with an annular anti-skid silica gel sheet (7).

2. The blended cotton socks with antibacterial properties as claimed in claim 1, wherein: A plurality of anti-skid silica gel points (8) are arranged on the bottom surface of the sock body (1) in an array.

3. The blended cotton sock having an antibacterial property according to claim 2, wherein the blended cotton sock is characterized by: The diameter of the anti-skid silica gel point (8) is 1-3 mm.

4. The blended cotton sock with antibacterial properties according to claim 1, wherein: the blended cotton sock with antibacterial properties is characterized by comprising 70% of the cotton yarn and 30% of the antibacterial yarn. The anti-skid silica gel sheet (7) is arranged in a wavy shape.

5. A blended cotton sock with antibacterial properties according to claim 1, characterized in that: The diameter of the air hole (5) is 3-5 mm.