Running socks with optimized pressure distribution
By introducing cushioning and anti-slip elements into running socks, combined with multiple cushioning layers and anti-slip silicone rings, the problem of poor shock absorption and anti-slip performance in running socks is solved, achieving greater exercise comfort and safety.
Patent Information
- Application Number
- CN202423143922.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Running socks on the market often have poor shock absorption and anti-slip properties, which affects the user's comfort and safety during exercise.
The sock design incorporates cushioning and anti-slip elements, including multiple cushioning layers and anti-slip silicone rings, combined with breathable knit layers, sweat-absorbing layers, and odor-removing layers, optimizing the sock's structure and material composition.
It improves the shock absorption of running socks, prevents them from slipping off, extends their lifespan, enhances breathability and slip resistance, and improves the user experience.
Smart Images

Figure CN223568728U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of socks, specifically relates to a pressure distribution optimization running sock. BACKGROUND
[0002] Socks are a kind of dress goods worn on feet, and are classified into cotton yarn socks, wool socks, silk socks and various chemical fiber socks according to raw materials, and are classified into long socks, medium socks, boat socks and panty hose according to shapes; socks are necessities for our daily life and dressing activities, and the comfort during exercise can be improved by wearing socks during exercise, but the shock absorption effect and anti-skid effect of the running socks on the market are poor, which reduces the use experience of users and also cannot protect the users during exercise. UTILITY MODEL CONTENTS
[0003] In view of the poor shock absorption and anti-skid effect of the socks in the prior art, the utility model provides a pressure distribution optimization running sock, which aims to improve the shock absorption and anti-skid effect of the socks.
[0004] The technical scheme adopted by the utility model is as follows:
[0005] A pressure distribution optimization running sock, which comprises a sock tube and a sock body, and further comprises:
[0006] A buffer part is arranged on the outer side of the sock body;
[0007] An anti-skid part is arranged at the top end of the sock tube;
[0008] The buffer part comprises:
[0009] A first buffer layer is fixedly arranged on the upper surface of the sock body and located at the ankle;
[0010] A second buffer layer is fixedly arranged on the lower surface of the sock body and located at the sole;
[0011] A third buffer layer is fixedly arranged on the lower surface of the sock body and located at the heel;
[0012] The anti-skid part comprises:
[0013] An elastic ring opening is fixedly arranged at the top end of the sock tube;
[0014] A plurality of anti-skid silica gel rings are fixedly arranged on the inner wall of the elastic ring opening;
[0015] A tightening ring is fixedly connected at both ends of the sock tube and the sock body.
[0016] Through the above technical scheme, the shock absorption effect of the socks during exercise and the prevention of the socks from falling off are realized.
[0017] Further comprising:
[0018] The elasticated side is located at the bottom of the sock, in the arch of the foot, to ensure a snug fit between the bottom of the sock and the foot.
[0019] The above technical solution enables the socks to fit snugly against the surface of the foot.
[0020] Also includes:
[0021] The abrasion-resistant layer is fixed to the upper surface of the sock, located at the toes.
[0022] The above technical solutions improve the abrasion resistance of the toe area of socks, thereby increasing the lifespan of the socks.
[0023] Also includes:
[0024] A breathable woven layer is located on the upper surface of the sock, at the instep.
[0025] The above technical solutions improve the breathability of socks.
[0026] Also includes:
[0027] The sock cuff and sock body are composed of a sweat-absorbing layer, an odor-removing layer, and an anti-slip layer, arranged sequentially outwards.
[0028] The deodorizing layer is fixedly connected to the sweat-absorbing layer and the anti-slip layer on both sides.
[0029] The above technical solution achieves sweat-absorbing and odor-resistant treatment for socks, while further improving their anti-slip properties.
[0030] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:
[0031] 1. By incorporating cushioning and anti-slip components, the socks achieve shock absorption during exercise and prevent them from slipping off, improving the user experience and providing cushioning protection for the user during exercise.
[0032] 2. The abrasion-resistant layer prevents the toe area of the socks from getting worn out, extending the lifespan of the socks;
[0033] 3. By incorporating a breathable knit layer, an odor-absorbing layer, and a sweat-wicking layer, the breathability of the socks is improved, while also achieving the functions of wicking away sweat and deodorizing, thus enhancing the user experience. Attached Figure Description
[0034] This utility model will be described by way of example and with reference to the accompanying drawings, wherein:
[0035] Fig. 1 This is a schematic diagram of the three-dimensional structure of socks;
[0036] Fig. 2 This is a schematic diagram of the cross-sectional structure of sock material.
[0037] Reference numerals: 1-sock cuff, 2-sock body, 3-cushioning section, 31-first cushioning layer, 32-second cushioning layer, 33-third cushioning layer, 4-anti-slip section, 41-elastic cuff, 42-anti-slip silicone ring, 43-tightening ring, 5-elastic fit surface, 6-abrasion-resistant layer, 7-breathable knitted layer, 8-sweat-absorbing layer, 9-odor-removing layer, 10-anti-slip layer. Detailed Implementation
[0038] All features disclosed in this specification, or all steps in all disclosed methods or processes, may be combined in any way, except for mutually exclusive features and / or steps.
[0039] The following is combined with Figs. 1-2 This utility model will be described in detail.
[0040] A pressure-distribution optimized running sock includes a sock leg 1 and a sock body 2, and also includes a cushioning part 3 located on the outside of the sock body 2; an anti-slip part 4 located at the top of the sock leg 1; the cushioning part 3 includes a first cushioning layer 31 fixed to the upper surface of the sock body 2 at the ankle; a second cushioning layer 32 fixed to the lower surface of the sock body 2 at the forefoot; and a third cushioning layer 33 fixed to the lower surface of the sock body 2 at the heel; the anti-slip part 4 includes an elastic band 41 fixed to the top of the sock leg 1; a plurality of anti-slip silicone rings 42 fixed to the inner wall of the elastic band 41; and a tightening ring 43 whose two ends are fixedly connected to the sock leg 1 and the sock body 2.
[0041] Furthermore, it also includes an elasticated surface 5, which is located at the bottom of the sock body 2, at the arch of the foot, to achieve a fit between the bottom of the sock body 2 and the foot.
[0042] Furthermore, it also includes an abrasion-resistant layer 6, which is fixed to the upper surface of the sock body 2 and located at the toes.
[0043] Furthermore, it also includes a breathable woven layer 7, which is located on the upper surface of the sock body 2 at the instep.
[0044] Furthermore, the sock cuff 1 and sock body 2 are formed by a sweat-absorbing layer 8, an odor-removing layer 9, and an anti-slip layer 10 arranged outwards in sequence; wherein, the odor-removing layer 9 is fixedly connected to the sweat-absorbing layer 8 and the odor-removing layer 9 on both sides respectively.
[0045] The sock cuff 1 is fixedly connected to the sock body 2. The anti-slip part 4 set at the top of the sock cuff 1 solves the problem of the sock slipping during exercise. The cushioning part 3 set on the surface of the sock body 2 improves the cushioning and shock absorption effect of the sock during exercise.
[0046] The buffer part 3 comprises a first buffer layer 31, a second buffer layer 32 and a third buffer layer 33, the first buffer layer 31 is provided with the upper surface of the sock body 2 and is located at the ankle of the foot part, so as to reduce the impact force between the foot part and the shoe when the foot part is bent during running and to reduce the shock above the foot part; the second buffer layer 32 and the third buffer layer 33 are respectively arranged at the instep and the heel of the sock, so as to reduce the impact force between the foot part and the ground when the foot part is in contact with the bottom surface during use, to further improve the shock-absorbing effect of the sock and to buffer and protect the foot part of the user.
[0047] The top end of the sock tube 1 is provided with an elastic ring port 41, the elastic ring port 41 has elasticity, the diameter of the top of the elastic ring port 41 is not too large, so as to ensure that the sock is in an open state when worn on the foot part of the user; a plurality of anti-skid silica gel rings 42 are fixedly arranged on the inner wall of the elastic ring port 41, the silica gel rings arranged in the elastic ring port 41 improve the friction coefficient between the sock tube 1 and the foot part, so as to improve the anti-skid property of the sock when worn; the sock tube 1 and the sock body 2 are fixedly connected through a tightening ring 43, and the diameter of the tightening ring 43 is smaller than the diameter of the elastic ring port 41, the arrangement of the tightening ring 43 enables the sock tube 1 to be closely attached to the foot part when the sock is worn, and further improves the anti-skid effect of the sock.
[0048] The bottom surface of the sock body 2 is provided with an elastic fitting surface 5, the elastic fitting surface 5 is integrally formed with the sock body 2, so that the bottom surface of the sock body 2 can be attached to the instep of the foot part when the sock is worn, and the sock can better realize its effects of sweat absorption and anti-skid.
[0049] The outer surface of the toe part of the sock body 2 is fixedly provided with a wear-resistant layer 6, the wear-resistant layer 6 can be made of nylon or other clothing materials with wear resistance, the arrangement of the wear-resistant layer 6 prevents the sock from being worn out by the toes of the foot part, and prolongs the service life of the sock.
[0050] The upper surface of the sock body 2 is provided with a breathable knitted layer 7, the breathable knitted layer 7 is integrally formed with the sock body 2, the arrangement of the breathable knitted layer 7 improves the breathability of the foot part and the sock during exercise, and improves the comfort of the foot part when wearing the sock.
[0051] The materials of the sock tube 1 and the sock body 2 are an absorbent layer 8, a deodorizing layer 9 and an anti-skid layer 10, and the constituent materials are from inside to outside; the absorbent layer 8 can be made of materials with good sweat absorption performance (such as cotton materials), so as to increase the sweat absorption capacity of the sock and improve the wearing comfort of the sock; the deodorizing layer 9 contains activated carbon materials and has adsorption capacity, so as to absorb and adsorb the odor generated by the foot part during exercise; the friction coefficient of the outer surface of the anti-skid layer 10 can be improved to improve the anti-skid performance of the sock, to play a role in anti-skid, and to further improve the anti-skid effect of the sock.
[0052] The above embodiments only express the specific implementation of the present application, which is described in more detail and specifically, but cannot be understood as a limitation to the protection scope of the present application. It should be noted that for those skilled in the art, without departing from the technical concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application.
Claims
1. A pressure distribution optimized running sock comprising a sock tube (1) and a sock body (2), characterized in that, Also includes: Buffering part (3) is arranged in the outside of the legging (2); Anti-skid part (4) is arranged in the top end of the sock (1); The buffering part (3) includes: The first buffering layer (31) is fixedly arranged on the upper surface of the legging (2) at the ankle; The second buffering layer (32) is fixedly arranged on the lower surface of the legging (2) at the sole; The third buffering layer (33) is fixedly arranged on the lower surface of the legging (2) at the heel; The anti-skid part (4) includes: The elastic ring port (41) is fixedly arranged on the top end of the sock (1); A plurality of anti-skid silica gel rings (42) are fixedly arranged on the inner wall of the elastic ring port (41); The tightening ring (43) is fixedly connected at both ends of the sock (1) and the legging (2).
2. A pressure-distributing optimized running sock according to claim 1, characterized in that Also includes: The elastic fit surface (5) is arranged at the bottom of the legging (2) at the heart of the foot, which is used to realize the fit between the bottom of the legging (2) and the foot.
3. The pressure-distributing, optimized running sock of claim 1, wherein, Also includes: The wear-resistant layer (6) is fixedly arranged on the upper surface of the legging (2) at the toes.
4. The pressure-distributing optimized running sock of claim 1, wherein, Also includes: The breathable knitted layer (7) is arranged on the upper surface of the legging (2) at the instep.
5. The pressure distribution optimization running sock according to claim 1, wherein: The sock (1) and the legging (2) are composed of the sweat-absorbing layer (8), the deodorizing layer (9) and the anti-skid layer (10) from outside to inside; Wherein, the deodorizing layer (9) is fixedly connected with the sweat-absorbing layer (8) and the anti-skid layer (10) on both sides.