A sole with multi-zone composite slip-resistant structure

CN224597645UActive Publication Date: 2026-08-07HUBEI RUZINIU SHOES IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI RUZINIU SHOES IND CO LTD
Filing Date
2025-08-08
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

现有设计中,排水结构常与防滑凸块的布局冲突,或因排水路径不合理导致积水排出效率低,影响防滑效果

Benefits of technology

[0012] (1) Because the technical solution adopted by this utility model is to set up multi-directional geometric anti-slip blocks, arc-shaped anti-slip blocks and anti-slip stripes and other differentiated anti-slip structures for the forefoot area, heel area, toe area, heel area and arch area of ​​the sole, this utility model can adapt to the force characteristics and friction requirements of different areas of the foot, achieve precise anti-slip and improve the overall anti-slip effect.

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Abstract

The utility model relates to the technical field of shoes, especially a shoe sole with multi-region composite antiskid structure, including shoe sole main part, in the bottom surface of shoe sole main part, the forefoot region and rear sole region all are provided with multidirectional geometric antiskid block group, multidirectional geometric antiskid block group is by the outside antiskid block group along the bottom surface outer edge of shoe sole main part and the middle antiskid block area is composed, the middle antiskid block area is by several '' mountain '' shaped antiskid blocks and is composed, every '' mountain '' shaped antiskid block is by two '' concave '' shaped antiskid blocks adjacent joint and constitutes, the forefoot region and heel region of shoe sole main part bottom surface are provided with arc antiskid block respectively, and every arc antiskid block all is equipped with the corrugated groove, the medial arch region of shoe sole main part bottom surface both sides is equipped with antiskid stripe. The utility model can realize the accurate antiskid of each region through the antiskid structure, improves the overall antiskid performance, and the utility model can improve the overall drainage performance through various groove structures.
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Description

Technical Field

[0001] This utility model relates to the technical field of shoes, and in particular to a shoe sole with a multi-area composite anti-slip structure. Background Technology

[0002] Shoes are essential items in people's daily lives and various activities, and the anti-slip performance of the soles directly affects the safety and comfort of wearing them. Especially on wet surfaces, slippery roads, or in sports scenarios, insufficient anti-slip performance can easily lead to risks such as slips and sprains. Therefore, the optimized design of anti-slip structures in shoe soles has always been a key research focus in the footwear industry.

[0003] Traditional shoe soles often feature simple anti-slip designs, such as simple bumps or treads, which are insufficient to meet the anti-slip needs of different ground conditions and multi-directional force during walking and exercise. Different areas of the foot (such as the forefoot, heel, toes, heel, and arch) experience significantly different force distributions and friction requirements during walking or exercise. A single anti-slip structure cannot address the specific needs of each area, resulting in insufficient localized anti-slip performance. In wet environments, water accumulation between the sole and the contact surface, if not drained quickly, will form a water film, significantly reducing friction. In existing designs, drainage structures often conflict with the layout of anti-slip bumps, or unreasonable drainage paths lead to low water drainage efficiency, affecting anti-slip performance. Furthermore, traditional shoe soles primarily concentrate their anti-slip structures on the sole surface, lacking effective anti-slip design on the sides. When the foot tilts to the side, the sole side is prone to slipping when in contact with the ground, posing a safety hazard. Summary of the Invention

[0004] To address the problems existing in the prior art, this invention provides a shoe sole with a multi-area composite anti-slip structure. This invention can achieve precise anti-slip in each area through the anti-slip structure, thereby improving the overall anti-slip performance. Furthermore, this invention can improve the overall drainage performance through various groove structures.

[0005] To achieve the above objectives, the technical solution provided by this utility model is as follows: a shoe sole with a multi-area composite anti-slip structure, comprising a shoe sole body, wherein the forefoot and heel areas of the bottom surface of the shoe sole body are provided with multi-directional geometric anti-slip block groups; the multi-directional geometric anti-slip block groups consist of an outer anti-slip block group arranged along the outer edge of the bottom surface of the shoe sole body and a central anti-slip block area; the outer anti-slip block groups of the forefoot and heel areas are each composed of several independent quadrilateral anti-slip blocks adjacent to each other, and each quadrilateral anti-slip block has a transverse groove on its outer surface; the central anti-slip block area consists of several "mountain" shaped anti-slip blocks, each "mountain" shaped anti-slip block is composed of two adjacent "concave" shaped anti-slip blocks, and each "concave" shaped anti-slip block has a zigzag drainage groove; the toe area and heel area of ​​the bottom surface of the shoe sole body are respectively provided with arc-shaped anti-slip blocks, and each arc-shaped anti-slip block has a wavy groove; the arch area of ​​the bottom surface of the shoe sole body is provided with anti-slip stripes on both sides.

[0006] Furthermore, the anti-slip blocks on the outer sides of the forefoot and heel areas of the sole body extend to the side of the sole body.

[0007] Furthermore, the anti-slip stripes on both sides of the arch area of ​​the sole body extend to the sides of the sole body.

[0008] Furthermore, the "mountain" shaped anti-slip block, which is composed of two adjacent "U"-shaped anti-slip blocks, has a vertical groove in the middle.

[0009] Moreover, both the left and right sides of the quadrilateral anti-blocking block are curved.

[0010] Furthermore, a flat surface is provided in the middle of the arch area on the bottom surface of the sole body, which is a brand and size labeling area.

[0011] As can be seen from the above technical solution, the shoe sole with a multi-area composite anti-slip structure provided by this utility model has the following advantages over the prior art:

[0012] (1) Because the technical solution adopted by this utility model is to set up multi-directional geometric anti-slip blocks, arc-shaped anti-slip blocks and anti-slip stripes and other differentiated anti-slip structures for the forefoot area, heel area, toe area, heel area and arch area of ​​the sole, this utility model can adapt to the force characteristics and friction requirements of different areas of the foot, achieve precise anti-slip and improve the overall anti-slip effect.

[0013] (2) Because the quadrilateral anti-slip block is provided with a horizontal groove, the "U" shaped anti-slip block is provided with a zigzag drainage groove, the arc-shaped anti-slip block is provided with a wave-shaped groove, and the "mountain" shaped anti-slip block is provided with a vertical groove in the middle, the present invention can quickly drain the water between the sole and the contact surface through a variety of groove structures, avoid the formation of water film, and enhance the anti-slip performance in wet environments.

[0014] (3) Because the anti-slip strips on the outer side of the forefoot and heel areas and the anti-slip stripes in the arch area of ​​the present invention extend to the side of the sole, the present invention can enhance the anti-slip ability of the side of the sole, reduce the risk of slipping in scenarios such as foot tilting, and improve the safety of use. Attached Figure Description

[0015] Figure 1 Schematic diagram of the bottom surface of the shoe sole;

[0016] Figure 2 Side view of the main body of the shoe sole.

[0017] In the picture: 1. Quadrilateral anti-slip block; 2. Horizontal groove; 3. "Mountain" shaped anti-slip block; 4. "U" shaped anti-slip block; 5. Zigzag drainage groove; 6. Arc-shaped anti-slip block; 7. Wavy groove; 8. Anti-slip stripes; 9. Vertical groove; 10. Brand and size labeling area. Detailed Implementation

[0018] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments, but the scope of protection of the present invention is not limited to the following embodiments.

[0019] In the technical solution provided by this utility model, a shoe sole with a multi-area composite anti-slip structure, such as Figure 1 and Figure 2 As shown, the shoe includes a main sole. The bottom surface of the main sole has multi-directional geometric anti-slip blocks in both the forefoot and heel areas. Each multi-directional geometric anti-slip block consists of an outer anti-slip block group along the outer edge of the main sole's bottom surface and a central anti-slip block area. The outer anti-slip blocks in both the forefoot and heel areas are composed of several adjacent, independent quadrilateral anti-slip blocks 1, each with a transverse groove 2 on its outer surface. The central anti-slip block area consists of several "mountain"-shaped anti-slip blocks 3, each composed of two adjacent "concave"-shaped anti-slip blocks 4, and each "concave"-shaped anti-slip block 4 has a zigzag drainage groove 5. The toe and heel areas of the main sole's bottom surface are each provided with arc-shaped anti-slip blocks 6, each with a wavy groove 7. Anti-slip stripes 8 are provided on both sides of the arch area of ​​the main sole's bottom surface.

[0020] Furthermore, the anti-slip blocks on the outer sides of the forefoot and heel areas of the sole body extend to the side of the sole body.

[0021] Furthermore, the anti-slip stripes 8 on both sides of the arch area of ​​the sole body extend to the sides of the sole body.

[0022] Furthermore, a vertical groove 9 is provided in the middle of the "mountain" shaped anti-slip block 3, which is composed of two adjacent "U" shaped anti-slip blocks 4.

[0023] Moreover, the left and right sides of the quadrilateral anti-blocking block 1 are both curved.

[0024] Furthermore, a flat surface is provided in the middle of the arch area of ​​the sole body, which is the brand and size labeling area 10.

[0025] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0026] (1) The technical solution adopted by this utility model is to set up multi-directional geometric anti-slip blocks, arc-shaped anti-slip blocks and anti-slip stripes and other differentiated anti-slip structures for the forefoot area, heel area, toe area, heel area and arch area of ​​the main body of the shoe sole. It can adapt to the force characteristics and friction requirements of different areas of the foot, achieve precise anti-slip and improve the overall anti-slip effect.

[0027] (2) In the technical solution adopted by this utility model, the quadrilateral anti-slip block is provided with a horizontal groove, the "U" shaped anti-slip block is provided with a zigzag drainage groove, the arc-shaped anti-slip block is provided with a wave-shaped groove, and the "mountain" shaped anti-slip block is provided with a vertical groove in the middle. It can quickly drain the water between the sole and the contact surface through a variety of groove structures, avoid the formation of water film, and enhance the anti-slip performance in wet environments.

[0028] (3) In the technical solution adopted by this utility model, the anti-slip strips on the outer side of the forefoot and heel areas and the anti-slip stripes in the arch area extend to the side of the sole, which strengthens the anti-slip ability of the side of the sole, reduces the risk of slipping in scenarios such as foot tilting, and improves the safety of use.

Claims

1. A shoe sole with a multi-zone composite anti-slip structure, comprising a sole body, characterized in that: The bottom surface of the sole body has multi-directional geometric anti-slip blocks in both the forefoot and heel areas. Each multi-directional geometric anti-slip block consists of an outer anti-slip block group along the outer edge of the sole body and a central anti-slip block area. The outer anti-slip blocks in both the forefoot and heel areas are composed of several adjacent, independent quadrilateral anti-slip blocks, each with a transverse groove on its outer surface. The central anti-slip block area consists of several "mountain"-shaped anti-slip blocks, each composed of two adjacent "concave"-shaped anti-slip blocks, and each "concave"-shaped anti-slip block has a zigzag drainage groove. The toe and heel areas of the sole body are each equipped with arc-shaped anti-slip blocks, each with a wavy groove. Anti-slip stripes are located on both sides of the arch area of ​​the sole body.

2. The shoe sole with a multi-zone composite anti-slip structure according to claim 1, characterized in that: The anti-slip blocks on the outer sides of the forefoot and heel areas of the sole body extend to the side of the sole body.

3. The sole with a multi-zone composite anti-slip structure according to claim 1, characterized in that: The anti-slip stripes on both sides of the arch area of ​​the sole body extend to the sides of the sole body.

4. The shoe sole with a multi-zone composite anti-slip structure according to claim 1, characterized in that: The "mountain" shaped anti-slip block, which is composed of two adjacent "U"-shaped anti-slip blocks, has a vertical groove in the middle.

5. The shoe sole with a multi-zone composite anti-slip structure according to claim 1, characterized in that: The left and right sides of the quadrilateral anti-blocking block are both curved.

6. The shoe sole with a multi-zone composite anti-slip structure according to claim 1, characterized in that: The arch area of ​​the sole has a flat surface in the middle, which is the brand and size labeling area.