Antibacterial socks
By designing the antibacterial surface layer and sweat-absorbing cotton layer of the sock head, the breathable mesh cloth of the sock, and the silver-ion antibacterial layer of the sock bottom and heel in the sock, combined with elastic silicone and anti-slip silicone, the problem that existing antibacterial socks are prone to bacteria and sweating in specific parts, achieving better antibacterial and comfort.
Patent Information
- Application Number
- CN202422201047.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-09
AI Technical Summary
Existing antibacterial socks are prone to bacterial and sweating in specific areas, resulting in poor use.
An antibacterial sock was designed, with an antibacterial surface layer and a sweat-absorbing cotton layer on the sock head, the sock surface is a breathable mesh cloth, and the sock bottom and heel are coated with silver ion antibacterial layer. Combined with elastic silicone pads and anti-slip silicone strips, it improves the antibacteriality and comfort of the socks.
Through designs for different foot positions, socks can quickly absorb sweat and last long-term antibacterial, increasing overall antibacterial properties, especially suitable for people with sweaty feet, extending wear time and improving comfort.
Smart Images

Figure CN222954922U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of personal daily necessities, and particularly relates to an antibacterial sock. Background Art
[0002] A sock is a piece of clothing worn closely on the feet, which mainly serves to prevent friction between the feet and shoes, protect the feet, and absorb foot sweat to prevent foot odor. To achieve the effect of preventing odor, it is usually required that the sock has antibacterial properties to resist the odor caused by the reproduction of bacteria and fungi. In the prior art, as shown in the technical solution of Chinese Patent Publication No. CN220712952 U, an antibacterial and deodorant sock includes a sock body, a sock toe, a sock heel, and a sock barrel. The sock is made by knitting a cotton-spandex blended yarn through multiple pick-and-press needles. The cotton-spandex blended yarn is formed by combining and twisting double-strand 40s combed cotton and spandex fiber. The sock body includes a sock face part for fitting the instep and a sock bottom part for fitting the sole. The sock face part includes a number of ventilation holes with a diameter of 0.4 mm to 0.8 mm. The sock toe and the sock heel are both provided with reinforcement layers, and the reinforcement layers are made of 75D cotton-spandex. This antibacterial and deodorant sock is made of a cotton-spandex blended yarn containing spandex fiber. The spandex fiber has antibacterial properties and can effectively inhibit the growth of bacteria, keeping the feet clean and healthy. The sock body is divided into a sock face part and a sock bottom part. The sock face part fits the instep, and the sock bottom part fits the sole, making the sock better fit the foot shape and providing a comfortable wearing feeling. The sock face part of the sock body is provided with multiple ventilation holes with a diameter of 0.4 mm to 0.8 mm, which can enhance air circulation, promote ventilation of the feet, and reduce the possibility of sweating and odor generation. The sock toe and the sock heel are both provided with reinforcement layers made of 75D cotton-spandex material, which increases the abrasion resistance and service life of the sock, making the sock toe and the sock heel more durable. Its main antibacterial function is realized by the applied antibacterial surface layer and the textile material of the sock.
[0003] However, this structure has limitations and does not have special designs for the parts that are particularly prone to bacteria growth and foot sweat accommodation, resulting in poor use effects. Summary of the Utility Model
[0004] Therefore, the utility model provides an antibacterial sock, which solves the problem of poor use effects of current antibacterial socks.
[0005] To achieve the above object, the utility model is realized through the following technical solutions:
[0006] An antibacterial sock, which is defined as having a sock surface located on the instep when worn, a sock sole located on the sole of the foot, a sock toe located in front of the toes, and a sock heel located at the ankle. The sock toe has an antibacterial surface layer on the outside and a sweat-absorbing cotton layer on the inside. The antibacterial surface layer and the sweat-absorbing cotton layer are sewn together. The antibacterial surface layer is made of a blended yarn of cotton fiber and spandex fiber. The sweat-absorbing cotton layer is woven from cotton yarns of 16-40 counts. The thickness of the sweat-absorbing cotton layer is not less than 0.8 mm. The sock surface is a breathable mesh fabric with mesh holes. The sock surface, sock sole, sock toe and sock heel are all coated with a silver ion antibacterial layer.
[0007] Preferably, the antibacterial surface layer and / or the sweat-absorbing cotton layer at the sock toe are in the shape of a toe cap.
[0008] Preferably, elastic silicone pads that fit the sole of the human foot are arranged on the sock sole at the metatarsal arch area of the human foot.
[0009] Preferably, an elastic binding ring for preventing the sock from slipping is provided at the sock toe.
[0010] Preferably, an anti-slip silicone strip extending in the horizontal direction is arranged inside the sock toe near the back of the human heel.
[0011] By adopting the foregoing technical solutions, the beneficial effects of the present utility model are:
[0012] This technical solution designs different fabrics for the socks at different positions of the human foot. Especially for the toe position at the sock toe, a sweat-absorbing cotton layer for absorbing a large amount of sweat is provided, which is combined with the antibacterial surface layer sewn together. It has the function of quickly absorbing sweat and continuously inhibiting bacteria and fungi, increasing the overall antibacterial property of the sock. Especially for people with a lot of foot sweat, it can better achieve long-term wearing and prevent the sock from affecting comfort due to foot sweat.
[0013] The mesh breathable mesh fabric structure of the sock surface can increase the overall breathability of the sock. For the instep area that is not under pressure, the thickness of the sock surface is reduced, further improving the comfort during wearing. Description of the Drawings
[0014] Figure 1 It is a schematic structural diagram of the sock in the side view direction of Embodiment 1 of the present utility model;
[0015] Figure 2 It is a schematic structural diagram of the bottom surface of the sock in Embodiment 1 of the present utility model;
[0016] Figure 3 It is a schematic structural diagram of the bottom surface of the sock in Embodiment 2 of the present utility model.
[0017] Reference signs: a, the sock surface; b, the sock sole; c, the sock toe; d, the sock heel; 1, the antibacterial surface layer; 2, the sweat-absorbing cotton layer; 3, the breathable mesh fabric; 4, the elastic silicone cushion block; 5, the elastic binding ring; 6, the anti-slip silicone strip; 7, the toe cover. Specific embodiments
[0018] The following will combine specific embodiments to detail the implementation manners of the present utility model, so as to fully understand how the present utility model uses technical means to solve technical problems and achieve the implementation process of technical effects and implement accordingly.
[0019] Embodiment 1
[0020] Reference Figure 1 and Figure 2 , an antibacterial sock, defining that the sock has a sock surface a located on the instep when worn, a sock sole b located on the sole of the foot, a sock toe c located in front of the toes, and a sock heel located at the ankle. The sock toe c has an antibacterial surface layer 1 on the outside and a sweat-absorbing cotton layer 2 on the inside. The antibacterial surface layer 1 and the sweat-absorbing cotton layer 2 are sewn into one body. The antibacterial surface layer 1 is made of a blended yarn of cotton fiber and spandex fiber. The sweat-absorbing cotton layer 2 is woven from cotton yarns of 16-40 counts. Here, according to different applicable populations, different types of yarns are selected to obtain fabrics of different thicknesses and softness; the thickness of the sweat-absorbing cotton layer 2 is not less than 0.8 mm, which minimally ensures the sweat absorption capacity; the sock surface a is a breathable mesh fabric 3 with mesh holes. The breathable mesh fabric 3 here can be obtained commercially and can be made of various raw materials, preferably cotton yarn or polyester, to select a comfort-oriented or elastic-oriented one, which is not limited here; the sock surface a, the sock sole b, the sock toe c, and the sock heel d are all coated with a silver ion antibacterial layer. Here, the silver ion antibacterial layer can be applied after the fabric is formed or in the state of yarn. Applying it after the fabric can preserve a more complete coating after cutting, while the yarn state can ensure the coverage of the coating. This technical solution designs different fabrics for different positions of the human foot for the sock. Especially for the toe position at the sock toe c, a sweat-absorbing cotton layer 2 for a large amount of sweat absorption is provided, which cooperates with the antibacterial surface layer 1 sewn into one body, has the effect of quickly absorbing sweat and persistently inhibiting bacteria and fungi, increases the overall antibacterial property of the sock, especially for people with a lot of foot sweat, and can better achieve long-term wearing and prevent the sock from being affected by foot sweat and affecting comfort; the mesh breathable mesh fabric 3 structure of the sock surface a can increase the overall breathability of the sock. For the instep part that is not under pressure, the thickness of the sock surface a is reduced, further improving the comfort during wearing.
[0021] Structurally, elastic silicone cushion blocks 4 that fit the human foot sole are arranged on the sock sole b located in the metatarsal arch area of the human foot sole. The setting of the elastic silicone blocks conforms to the curve of the human foot sole and has a repositioning effect when the sock is worn, avoiding running off during wearing and affecting the service life of the sock.
[0022] In this embodiment, an elastic binding ring 5 for preventing the socks from slipping is provided at the toe c of the socks; the elastic binding ring 5 adds an anti-slipping structure at the toe c of the socks, which is another anti-deviation structure to further ensure the stability during wearing. Similarly, an anti-slip silica gel strip 6 extending in the horizontal direction is arranged inside the toe c near the back of the human heel; the extension in the horizontal direction here refers to conforming to the bone contour of the back of the human heel to obtain another anti-slip effect.
[0023] Embodiment 2
[0024] Reference Figure 3 , compared with Embodiment 1, the antibacterial surface layer 1 and / or the sweat-absorbing cotton layer 2 at the toe c are in the shape of a toe cap 7; the shape of the toe cap 7 here means that the antibacterial surface layer 1 and / or the sweat-absorbing surface layer are made separately for each finger and are designed to fit into the toe gaps of the human body. Here, the structure at the toe c can be improved to make the sweat-absorbing and antibacterial structures fit the toe gaps of the human body to obtain a more fitting wearing effect, and the antibacterial effect is stronger for people with particularly sweaty feet.
[0025] Although the present invention has been specifically shown and described in combination with the preferred embodiments, those skilled in the art should understand that various changes can be made to the present invention in terms of form and details without departing from the spirit and scope of the present invention defined by the appended claims, and all of them fall within the protection scope of the present invention.
Claims
1. An antibacterial sock, comprising a sock upper (a) located at the top of the foot when worn, a sock sole (b) located at the bottom of the foot, a sock head (c) located in front of the toes, and a sock heel located at the ankle, characterized in that: The sock toe (c) has an antibacterial surface layer (1) located outside and a sweat-absorbent cotton layer (2) located inside. The antibacterial surface layer (1) and the sweat-absorbent cotton layer (2) are sewn into one piece. The antibacterial surface layer (1) is made of a blend of cotton fiber and spandex fiber yarn. The sweat-absorbent cotton layer (2) is woven from 16-40 count cotton yarn. The thickness of the sweat-absorbent cotton layer (2) is not less than 0.8 mm. The sock surface (a) is a breathable mesh (3) with mesh. The sock surface (a), the sock sole (b), the sock toe (c) and the sock heel (d) are all coated with a silver ion antibacterial layer.
2. The antibacterial socks according to claim 1, characterized in that: The antibacterial surface layer (1) and / or the sweat-absorbing cotton layer (2) at the sock toe (c) are in the shape of a toe cover (7).
3. The antibacterial socks according to claim 1, characterized in that: An elastic silica gel pad (4) which fits the sole of the human foot is arranged on the sole (b) of the sock located in the plantar arch area of the sole of the human foot.
4. The antibacterial socks according to claim 1, characterized in that: An elastic band (5) is provided at the toe (c) of the sock to prevent the sock from slipping.
5. The antibacterial socks according to any one of claims 1 to 4, characterized in that: An anti-skid silicone strip (6) extending in the horizontal direction is arranged inside the sock toe (c) near the back of the human heel.
Citation Information
Patent Citations
Antibacterial and deodorant socks
CN220712952U