Anti-ice slippery sole

By incorporating suction cup patterned blocks and anti-slip patterned blocks in the forefoot and heel areas of the sole, and embedding star-shaped anti-slip studs, the problem of insufficient anti-slip performance of the sole on ice is solved, achieving a strong grip and easy walking effect on ice.

CN224193020UActive Publication Date: 2026-05-05JIHUA 3515 LEATHER & SHOES
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIHUA 3515 LEATHER & SHOES
Filing Date
2024-12-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing shoe soles lack sufficient anti-slip performance on ice, and the suction cup pattern can easily cause the soles to become stuck, affecting walking.

Method used

Suction cup patterned blocks are set in the middle of the forefoot and heel areas of the sole, and anti-slip patterned blocks are set around them. The surface of the suction cup patterned blocks is inlaid with star-shaped anti-slip studs. Combined with a soft EVA foam layer and elastic rubber material, it enhances grip and friction.

Benefits of technology

It provides excellent anti-slip performance while ensuring that the sole can be walked on ice easily, avoiding the problem of the sole sticking to flat ground or ice and being unable to be pulled out.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-ice slippery sole, which relates to the field of soles and comprises a sole body, the sole body comprises a sole half sole area, a sole middle waist area and a heel rear sole area, and sucker anti-skid blocks are arranged in the middle of the sole half sole area and the middle of the heel rear sole area. Anti-skid pattern blocks are arranged on the periphery of the sucker anti-skid blocks in the half sole area of the shoe sole and the periphery of the sucker anti-skid blocks in the rear sole area of the shoe heel, a cavity is formed by sucker-shaped patterns and the ground, air in the cavity is exhausted after treading, the contact face of the shoe sole and the ground can be increased, and certain adsorption force to the ground or the ice surface is achieved. The star-shaped anti-skid nails are embedded in the concave cavities, and the concave cavities are matched with the star-shaped anti-skid nails, so that strong road holding force can be provided on the ice surface; meanwhile, the sucker-shaped patterns are small in size, adsorption force and foot pulling force can be well balanced, and a user can walk easily while the shoe sole has the ice slippery prevention function.
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Description

Technical Field

[0001] This utility model relates to the field of shoe soles, and more particularly to an anti-icy and anti-slip shoe sole. Background Technology

[0002] In cold regions or during winter, icy roads can easily cause pedestrians to slip and fall. Existing shoe soles still have insufficient anti-slip performance on ice. Utility model patent application number 202123297828.2 provides an anti-icing and water-resistant shoe sole, with a first elliptical suction cup on the inner side of the forefoot area and a second elliptical suction cup on the heel area. However, the first and second elliptical suction cups generate a large suction force on the ground, which can easily cause the sole to stick to flat ground or ice and become difficult to remove, making walking difficult. Utility Model Content

[0003] To solve the above problems, an anti-slip shoe sole is provided.

[0004] This utility model is achieved in the following manner:

[0005] An anti-slip shoe sole includes a sole body, which includes a forefoot area, a midfoot area, and a heel area. Suction cup patterned blocks are provided in the middle of the forefoot area and the heel area, and anti-slip patterned blocks are provided around the suction cup patterned blocks in the forefoot area and the heel area.

[0006] Furthermore, the surface of the suction cup patterned block is provided with a cavity, and star-shaped anti-slip studs are embedded in the cavity.

[0007] Furthermore, the inlay is a star-shaped anti-slip stud integrally formed with the concave cavity of the shoe sole.

[0008] Furthermore, the star shape is one or a combination of three-pointed stars to eight-pointed stars.

[0009] Furthermore, the star-shaped anti-slip studs are made of fiber composite material.

[0010] Furthermore, the fiber composite material is a glass fiber composite material or a carbon fiber composite material.

[0011] Compared to existing technologies, this invention features suction cup patterned blocks in the middle of the forefoot and heel areas of the sole, and anti-slip patterned blocks around these blocks. The suction cup-shaped patterns form a cavity with the ground, expelling air from the cavity when stepped on, increasing the contact area between the sole and the ground and providing adhesion to ground or ice. The surface of the suction cup patterned blocks has concave cavities embedded with star-shaped anti-slip studs. The combination of these cavities and the studs provides strong grip on ice. Furthermore, the small size of the suction cup pattern effectively balances adhesion and foot pull, allowing for easy walking while maintaining traction on ice. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the shoe sole structure.

[0013] Figure 2 This is a schematic diagram of the anti-slip patterned block structure.

[0014] Figure 3 This is a cross-sectional view of the anti-slip patterned block.

[0015] Among them, the forefoot area of ​​the sole is 1; the midfoot area of ​​the sole is 2; the heel area is 3; the anti-slip pattern block is 4; the suction cup pattern block is 5; the concave cavity is 51; the star-shaped anti-slip stud is 52; the star center is 53; and the star corner is 54. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings.

[0017] A type of anti-icy shoe sole, see Figures 1-3 The shoe includes a sole body comprising a forefoot area 1, a midfoot area 2, and a heel area 3. The characteristic feature is that suction cup patterned blocks 5 are provided in the middle of the forefoot area 1 and the heel area 3, and anti-slip patterned blocks 4 are provided around the suction cup patterned blocks 5 in both the forefoot area 1 and the heel area 3. The periphery of the suction cup patterned blocks 5 in the forefoot area 1 includes the toe area, and the periphery of the suction cup patterned blocks 5 in the heel area 1 includes the heel area. The suction cup pattern forms a cavity with the ground; when stepped on, the air inside the cavity is expelled, increasing the contact area between the sole and the ground, and providing a certain degree of adhesion to ground or ice surfaces.

[0018] The surface of the suction cup patterned block 5 has a recessed cavity 51, and a star-shaped anti-slip stud 52 is embedded in the recessed cavity 51. The recessed cavity, together with the star-shaped anti-slip stud, can provide strong grip on the ice surface; at the same time, the suction cup pattern is small in size, which can well balance the suction force and the pull-out force, so that the sole of the shoe can not only prevent ice slipping, but also make walking easy.

[0019] The star-shaped formation is one or a combination of 3- to 8-pointed stars. For example... Figures 2-3 As shown, the star shape has six points, with a total of 54 points.

[0020] The star-shaped anti-slip studs are made of fiber composite material. The fiber composite material can be glass fiber composite material or carbon fiber composite material.

[0021] The star-shaped anti-slip studs are embedded in the concave cavity, or they can be placed in a mold and integrally molded.

[0022] The suction cup patterned blocks 5 are radially distributed, with the wide opening of the suction cup patterned blocks 5 located away from the circumferential edge of the sole.

[0023] The anti-slip pattern blocks on the circumferential surface of the sole are triangular, with the wide opening of the anti-slip pattern blocks facing the circumferential edge of the sole. When walking outdoors, it is less likely for sand and gravel to get stuck on the sole.

[0024] The suction cup patterned block 5 and the anti-slip patterned block 4 are arranged in opposite directions to increase the friction of the shoe sole.

[0025] The triangular protrusions on the side ribs have triangular notches to prevent mud and sand from getting stuck in the soles of the shoes.

[0026] The sole body is made of soft EVA foam, providing a comfortable feel. The suction cup patterned block 5 and the anti-slip patterned block 4 are made of elastic rubber, which is wear-resistant and anti-slip. The rubber has a certain degree of flexibility and can adapt to different road conditions. When walking, it can adjust the contact method with the ground according to the pressure, further enhancing the anti-slip effect.

[0027] The above description is only a preferred embodiment of the present utility model. It should be noted that those skilled in the art can make several changes and improvements without departing from the overall concept of the present utility model, and these should also be considered within the protection scope of the present utility model.

Claims

1. An anti-slip shoe sole, comprising a sole body, the sole body comprising a forefoot area (1), a midfoot area (2), and a heel area (3), characterized in that, Suction cup patterned blocks (5) are provided in the middle of the forefoot area (1) and heel area (3) of the sole, and anti-slip patterned blocks (4) are provided around the suction cup patterned blocks (5) in the forefoot area (1) and heel area (3). The surface of the suction cup patterned block (5) is provided with a cavity (51), and a star-shaped anti-slip nail (52) is embedded in the cavity (51). The concave cavity combined with the star-shaped anti-slip studs provides strong grip on ice; at the same time, the small suction cup pattern can effectively balance the suction force and the pull force, so that the sole can not only prevent ice slipping but also make walking easy.

2. The anti-icy and slippery shoe sole as described in claim 1, characterized in that, The inlay is a star-shaped anti-slip stud (52) integrally formed with the shoe sole cavity (51).

3. The anti-icy and slip-resistant shoe sole as described in claim 2, characterized in that, The star shape is one or a combination of three-pointed stars to eight-pointed stars.

4. The anti-icy and slip-resistant shoe sole as described in claim 3, characterized in that, The star-shaped anti-slip studs are made of fiber composite material.

5. The anti-icy and slip-resistant shoe sole as described in claim 4, characterized in that, The fiber composite material is either a glass fiber composite material or a carbon fiber composite material.

Citation Information

Patent Citations

  • Anti-ice and anti-water anti-slip sole

    CN217136982U