Anti-slip towel sports socks

CN224805947UActive Publication Date: 2026-09-29FOSHAN NANHAI DAXIN KNITTING IND CO LTD
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Patent Information

Application Number
CN202522531776.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2026-09-29
Estimated Expiration
2035-11-28

AI Technical Summary

Technical Problem

[0002]市场上的防滑袜子一般是袜底印胶防滑袜,是通过点胶的方法在袜子的底部加上印胶图案,这种方法制成的防滑袜在防滑效果上还有不足,而且市面上很少有专业的防滑运动袜,为此,我们提出一种防滑毛巾运动袜

Benefits of technology

1、该防滑毛巾运动袜,在脚底和脚背双区域增加防滑印胶,通过多处摩擦增强防滑与防护效果,袜底防滑印胶增强鞋袜底部的摩擦力,而袜背防滑印胶则抑制足部在鞋腔内的前后滑动,降低急停时脚尖撞击鞋头的风险。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of antiskid towel sports socks, it is related to the technical field of socks, including sock body component and toe toe head, the sock body component includes sock body main body and heel area, the rear end bottom of sock body main body is connected with heel area, the front end of sock body main body is connected with toe toe head, the sock body component also includes sock back anti-skid printing glue, sock bottom anti-skid printing glue and arch of foot pressure-increasing thickening area, the upper side middle part of sock body main body is provided with sock back anti-skid printing glue, the position of sock body main body in arch of foot is provided with arch of foot pressure-increasing thickening area.The antiskid towel sports socks, increase anti-skid printing glue in foot bottom and instep double area, enhance antiskid and protection effect by multiple rubbings, the design of towel-like pile can absorb the impact force of foot, effectively reduce the risk of blister produced in foot, increase three-dimensional fluff on ankle both sides and heel top, towel design not only reduces friction, can also provide better comfort.
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Description

Technical Field

[0001] This utility model relates to the field of sock technology, specifically to a non-slip terry cloth sports sock. Background Technology

[0002] Most anti-slip socks on the market are printed anti-slip socks, which use an adhesive method to add printed patterns to the bottom of the sock. Anti-slip socks made by this method are still insufficient in terms of anti-slip effect, and there are very few professional anti-slip sports socks on the market. Therefore, we propose an anti-slip terry cloth sports sock. Utility Model Content

[0003] The technical problem this invention aims to solve is to overcome existing defects and provide a non-slip terry cloth sports sock. It features non-slip printed rubber on both the sole and instep, enhancing anti-slip and protective effects through multiple friction points. The non-slip printed rubber on the sole increases friction at the bottom of the sock, while the non-slip printed rubber on the instep inhibits the foot from sliding back and forth within the shoe cavity, reducing the risk of the toes hitting the toe box during sudden stops. The terry cloth loops on the outer side of the heel, the bottom of the sock body, and the toe area absorb impact, effectively reducing the risk of blisters. Three-dimensional raised fleece is added to the sides of the ankle and above the heel. This terry cloth design not only reduces friction but also provides better comfort, effectively solving the problems in the prior art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a non-slip terry sports sock, comprising a sock body assembly and a toe cap, wherein the sock body assembly includes a sock body main body and a heel area, the heel area is connected to the rear bottom of the sock body main body, and the toe cap is connected to the front end of the sock body main body, the sock body assembly further includes a non-slip printed adhesive on the back of the sock, a non-slip printed adhesive on the sole of the sock, and a pressure-enhancing and thickened area for the arch, wherein the non-slip printed adhesive on the back of the sock is provided in the upper middle part of the sock body main body, the pressure-enhancing and thickened area for the arch is provided at the position of the arch of the sock body main body, and the non-slip printed adhesive on the sole is provided at the bottom edge of the sock body main body; It also includes a sock sleeve assembly, which is attached to the top front of the sock body and the top of the heel area.

[0005] The main body of the sock, the heel area, the toe box, and the sock leg assembly constitute a complete sports sock. Anti-slip rubber is added to both the sole and the instep areas to enhance anti-slip and protective effects through multiple friction points. The anti-slip rubber on the sole enhances the friction of the bottom of the main body of the sock, while the anti-slip rubber on the instep inhibits the foot from sliding back and forth within the shoe cavity, reducing the risk of the toes hitting the toe box when stopping suddenly. The arch support thickened area is thicker than the main body of the sock, and it conforms to the arch of the foot to increase pressure and improve the fit. The sock leg assembly wraps around the ankle and the outer bottom of the calf.

[0006] Furthermore, the sock assembly also includes a heel anti-slip adhesive, which is provided in the heel area. The heel anti-slip adhesive can increase the friction between the heel and the inner sole of the shoe.

[0007] Furthermore, the sock body assembly also includes support and positioning lines, with Y-shaped support and positioning lines respectively provided on both sides of the heel area. The support and positioning lines and the heel area form a Y-shaped heel wrap design, enhancing the comfort and fit of wearing the sock. The Y-shaped design closely conforms to the contour of the heel, effectively reducing the movement of the sock during wear, and preventing slippage and heel slippage.

[0008] Furthermore, the sock body assembly also includes a breathable mesh area for the back of the sock. The breathable mesh area for the back of the sock is provided in the upper middle part of the main body of the sock. The breathable mesh area for the back of the sock is an elliptical area. This area is knitted to form a breathable mesh structure. The breathable mesh design for the back of the sock helps to accelerate the evaporation of sweat.

[0009] Furthermore, it also includes terry loops, which are provided on the outer side of the heel area, the bottom of the main body of the sock, and the outer side of the toe. The terry loops are evenly distributed on the outer side of the heel area, the bottom of the main body of the sock, and the toe, forming a terry design. Using loops similar to those on a towel, it has the characteristics of sweat absorption, abrasion resistance, and high elasticity. Its sweat absorption capacity can be several times that of ordinary socks. The loops can absorb the impact of the foot, effectively reducing the risk of blisters.

[0010] Furthermore, the sock tube assembly includes a sock tube, thickened vertical ribs on the sock tube, a thickened tightening ring at the top edge of the sock tube, and a top edge vertical rib. The top front side of the sock body and the top of the heel area connect to the bottom of the sock tube. Thickened vertical ribs are evenly spaced on the outer side of the sock tube. The top of the sock tube is connected to the thickened tightening ring at the top edge, and top edge vertical ribs are evenly spaced on the outer side of the thickened tightening ring. The sock tube has a high-top structure. The thickened tightening ring at the top edge is used to tighten the wearer's calf, preventing the sock tube from slipping down the calf. The thickened vertical ribs increase the local thickness of the sock tube and increase the tightness of the sock tube on the calf, which helps to enhance the lateral support of the ankle joint and reduce the probability of sprains. The top edge vertical ribs can increase the local thickness of the thickened tightening ring at the top edge of the sock tube and also increase the tightening force of the thickened tightening ring on the calf.

[0011] Furthermore, the sock assembly also includes a three-dimensional raised fleece area at the ankle and a three-dimensional raised fleece area above the heel. Three-dimensional raised fleece areas at the ankle are respectively located on both sides of the bottom of the sock, and a three-dimensional raised fleece area above the heel is located on the rear side of the bottom of the sock. The three-dimensional raised fleece areas at the ankle are crescent-shaped, and there are three such areas on each side of the sock, arranged vertically at equal intervals. The three-dimensional raised fleece areas above the heel are horizontal strips, and there are four such strips, arranged vertically at equal intervals. Both the ankle and heel raised fleece areas are covered with three-dimensional raised fleece, similar to the raised fleece on a towel. This towel design not only reduces friction but also provides better comfort. This non-slip towel sports sock is made entirely of high-elasticity knitted fibers, achieving overall coverage and continuously promoting venous blood return during exercise, reducing muscle tremor amplitude.

[0012] Compared with existing technologies, the beneficial effects of these non-slip terry cloth sports socks are: 1. This non-slip terry cloth sports sock has added non-slip printed rubber in both the sole and instep areas. Through multiple friction points, it enhances the non-slip and protective effects. The non-slip printed rubber on the sole increases the friction of the bottom of the sock, while the non-slip printed rubber on the instep inhibits the foot from sliding back and forth in the shoe cavity, reducing the risk of the toes hitting the toe of the shoe when stopping suddenly.

[0013] 2. These non-slip terry cloth sports socks feature terry cloth loops on the outer side of the heel, the bottom of the sock body, and the toe area to absorb impact and effectively reduce the risk of blisters. The addition of three-dimensional fleece on both sides of the ankle and above the heel further reduces friction and provides better comfort. Attached Figure Description

[0014] Figure 1 This is a side view of the structure of this utility model; Figure 2 This is a schematic diagram of the front structure of this utility model; Figure 3 This is a schematic diagram of the rear structure of this utility model; In the image: 1. Sock cuff assembly, 11. Sock cuff, 12. Thickened vertical ribs on the sock cuff, 13. 3D raised fleece area on the ankle, 14. 3D raised fleece area above the heel, 15. Thickened tightening ring at the top edge of the sock cuff, 16. Vertical ribs at the top edge, 2. Sock body assembly, 21. Main body of the sock, 22. Heel area, 23. Support and positioning line, 24. Anti-slip printing on the heel, 25. Anti-slip printing on the instep, 26. Breathable mesh area on the instep, 27. Anti-slip printing on the sole, 28. Thickened and pressure-enhancing arch support area, 3. Toe box, 4. Towel-shaped fleece loop. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Example 1, please refer to Figures 1 to 3 This utility model provides a technical solution: a non-slip towel sports sock, including a sock body component 2 and a toe cap 3. The sock body component 2 includes a sock body main body 21 and a heel area 22. The heel area 22 is connected to the bottom rear end of the sock body main body 21, and the toe cap 3 is connected to the front end of the sock body main body 21. The sock body component 2 also includes a sock back anti-slip printing adhesive 25, a sock sole anti-slip printing adhesive 27, and an arch compression thickening area 28. The sock back anti-slip printing adhesive 25 is provided in the upper middle part of the sock body main body 21, the arch compression thickening area 28 is provided at the arch position of the sock body main body 21, and the bottom edge of the sock body main body 21 is provided with a sock sole anti-slip printing adhesive 27. It also includes a sock tube assembly 1, which is connected to the top front side of the sock body 21 and the top of the heel area 22.

[0017] The sock body 21, heel area 22, toe cap 3, and sock leg assembly 1 constitute a complete sports sock. Anti-slip printing is added to both the sole and instep areas to enhance anti-slip and protective effects through multiple friction points. The anti-slip printing on the sole enhances the friction at the bottom of the sock body 21, while the anti-slip printing on the instep inhibits the foot from sliding back and forth within the shoe cavity, reducing the risk of the toes hitting the toe cap during sudden stops. The arch support thickening area 28 has a knit thickness greater than the sock body 21. The arch support thickening area 28 conforms to the arch of the foot to enhance pressure and improve the fit. The sock leg assembly 1 wraps around the ankle and the outer side of the lower leg.

[0018] The sock body component 2 also includes a heel anti-slip adhesive 24, which is provided in the heel area 22. The heel anti-slip adhesive 24 can increase the friction between the heel and the inner sole of the shoe.

[0019] The sock body component 2 also includes support and positioning lines 23, and Y-shaped support and positioning lines 23 are respectively provided on both sides of the heel area 22. The support and positioning lines 23 and the heel area 22 form a Y-shaped heel wrap design, which enhances the comfort and wrapping feeling of wearing. The Y-shaped design closely fits the contour of the heel, effectively reducing the movement of the sock during wearing, and preventing slippage and heel slippage.

[0020] The sock body component 2 also includes a breathable mesh area 26 on the back of the sock. The breathable mesh area 26 on the back of the sock body 21 is located in the upper middle part. The breathable mesh area 26 on the back of the sock is an oval area. This area is knitted to form a breathable mesh structure. The breathable mesh design on the back of the sock helps to accelerate the evaporation of sweat.

[0021] It also includes terry loops 4, which are provided on the outer side of the heel area 22, the bottom of the sock body 21, and the outer side of the toe box 3. The terry loops 4 are evenly distributed on the outer side of the heel area 22, the bottom of the sock body 21, and the toe box 3, forming a terry design. It uses loops similar to those on a towel, which have the characteristics of sweat absorption, wear resistance, and high elasticity. The sweat absorption capacity can be several times that of ordinary socks. The loops can absorb the impact of the foot and effectively reduce the risk of blisters.

[0022] Example 2, please refer to Figures 1 to 3 This utility model provides a technical solution: a non-slip towel sports sock. This embodiment is a further explanation of the structure of Embodiment 1. The sock tube assembly 1 includes a sock tube 11, a sock tube thickened vertical rib 12, a sock tube top edge thickened tightening ring 15, and a top edge vertical rib 16. The top front side of the sock body 21 and the top of the heel area 22 are connected to the bottom of the sock tube 11. The sock tube thickened vertical ribs 12 are evenly spaced on the outer side of the sock tube 11. The top of the sock tube 11 is provided with the sock tube top edge thickened tightening ring 15. The top edge vertical ribs 16 are evenly spaced on the outer side of the sock tube top edge thickened tightening ring 15. The sock cuff 11 has a high-top structure. The thickened tightening ring 15 at the top edge of the sock cuff is used to tighten the wearer's calf and prevent the sock cuff 11 from slipping down the calf. The thickened vertical rib 12 of the sock cuff increases the local thickness of the sock cuff 11 and at the same time increases the tightness of the sock cuff 11 on the calf, which helps to enhance the lateral support of the ankle joint and reduce the probability of sprain. The vertical rib 16 at the top edge can increase the local thickness of the thickened tightening ring 15 at the top edge of the sock cuff, and at the same time increase the tightening force of the thickened tightening ring 15 at the top edge of the sock cuff on the calf.

[0023] The sock sleeve assembly 1 also includes a three-dimensional raised fleece area 13 at the ankle and a three-dimensional raised fleece area 14 above the heel. The ankle raised fleece area 13 is located on both sides of the bottom of the sock sleeve 11, and the heel raised fleece area 14 is located on the back side of the bottom of the sock sleeve 11. The ankle raised fleece area 13 is crescent-shaped, and each side of the sock sleeve 11 has three ankle raised fleece areas 13, which are vertically equidistant. The heel raised fleece area 14 is a horizontal strip, and there are four of these strips, vertically equidistant. Both the ankle raised fleece area 13 and the heel raised fleece area 14 are covered with three-dimensional raised fleece, similar to the raised fleece on a towel. This towel design not only reduces friction but also provides better comfort. This non-slip towel sports sock is made entirely of high-elasticity fiber knitting, achieving overall wrapping and continuously promoting venous blood return during exercise, reducing muscle tremor amplitude.

[0024] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0025] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A non-slip terry cloth sports sock, comprising a sock body assembly (2) and a toe cap (3), wherein the sock body assembly (2) includes a sock body main body (21) and a heel area (22), the heel area (22) is connected to the rear bottom of the sock body main body (21), and the toe cap (3) is connected to the front end of the sock body main body (21), characterized in that, The sock body assembly (2) also includes anti-slip printing adhesive (25) on the back of the sock, anti-slip printing adhesive (27) on the sole of the sock, and a pressure-enhancing thickened area (28) on the arch. The upper middle part of the sock body (21) is provided with anti-slip printing adhesive (25) on the back of the sock, and the position of the sock body (21) at the arch of the foot is provided with a pressure-enhancing thickened area (28) on the arch of the foot. The bottom edge of the sock body (21) is provided with anti-slip printing adhesive (27) on the sole of the sock. It also includes a sock tube assembly (1), which is connected to the top front of the sock body (21) and the top of the heel area (22).

2. The anti-slip terry cloth sports sock according to claim 1, characterized in that: The sock body assembly (2) also includes a heel anti-slip printing adhesive (24), and the heel area (22) is provided with the heel anti-slip printing adhesive (24).

3. The anti-slip terry cloth sports sock according to claim 1, characterized in that: The sock body assembly (2) also includes support positioning lines (23), and Y-shaped support positioning lines (23) are respectively provided on both sides of the heel area (22).

4. The anti-slip terry cloth sports sock according to claim 1, characterized in that: The sock body assembly (2) also includes a breathable mesh area (26) on the back of the sock, and the breathable mesh area (26) on the back of the sock body (21) is provided in the middle of the upper side.

5. The anti-slip terry cloth sports sock according to claim 1, characterized in that: It also includes terry loops (4), which are provided on the outer side of the heel area (22), the bottom of the sock body (21), and the outer side of the toe (3).

6. The anti-slip terry cloth sports sock according to claim 1, characterized in that: The sock tube assembly (1) includes a sock tube (11), a sock tube thickened vertical rib (12), a sock tube top edge thickened tightening ring (15), and a top edge vertical rib (16). The top front side of the sock body (21) and the top of the heel area (22) are connected to the bottom of the sock tube (11). The sock tube (11) is provided with sock tube thickened vertical ribs (12) at equal intervals on the outer side. The top of the sock tube (11) is provided with a sock tube top edge thickened tightening ring (15), and the sock tube top edge thickened tightening ring (15) is provided with top edge vertical ribs (16) at equal intervals on the outer side.

7. The anti-slip terry cloth sports sock according to claim 6, characterized in that: The sock assembly (1) also includes a three-dimensional raised area (13) at the ankle and a three-dimensional raised area (14) above the heel. The bottom sides of the sock (11) are respectively provided with three-dimensional raised areas (13) at the ankle and a three-dimensional raised area (14) above the heel is provided on the bottom rear side of the sock (11).