Sole with quadrilateral anti-skid blocks and V-shaped anti-skid blocks
By designing an interlaced quadrilateral and V-shaped anti-slip block structure on the sole, combined with raised dots and grooves, the problems of insufficient anti-slip performance and poor arch support are solved, achieving higher friction and comfort.
Patent Information
- Application Number
- CN202520439077.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Existing shoe soles lack sufficient anti-slip performance on wet or slippery surfaces and do not conform well to the arch curve of the foot, affecting walking safety and health.
Design a shoe sole structure with an anti-slip structure of alternating quadrilateral and V-shaped anti-slip blocks on the forefoot, a regularly arrayed quadrilateral anti-slip blocks on the heel, and a ring-shaped arrangement of V-shaped anti-slip blocks on the arch. Raised dots and grooves are set on the anti-slip blocks to form a brand size marking area.
It significantly improves the anti-slip performance of the sole, increases friction, conforms to the arch curve, reduces arch pressure, and enhances walking safety and comfort.
Smart Images

Figure CN223653322U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of shoes, and in particular to a shoe sole with a quadrilateral anti-slip block and a V-shaped anti-slip block. Background Technology
[0002] Currently, many shoe soles on the market have shortcomings in terms of anti-slip performance. Some soles have a rather simplistic anti-slip design, relying only on simple treads or a few anti-slip blocks. In complex environments such as wet or slippery surfaces, they fail to provide sufficient friction, easily causing users to slip and posing safety hazards. At the same time, existing soles are not adequate in terms of arch support, failing to conform well to the arch curve. Prolonged wear may lead to arch fatigue and affect foot health. Furthermore, traditional soles often lack clear and aesthetically pleasing labeling of brands and sizes, affecting the overall product image and potentially causing inconvenience for consumers during purchase and use. Summary of the Invention
[0003] To address the problems existing in the prior art, this invention provides a shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks. This invention can significantly improve the anti-slip performance of the shoe sole, effectively prevent users from slipping during walking, and ensure walking safety. Moreover, this invention can provide good support for the arch of the foot, reduce the pressure on the arch of the foot during walking, and relieve arch fatigue.
[0004] To achieve the above objectives, the technical solution provided by this utility model is as follows: a shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks, the bottom surface of the shoe sole being divided into a forefoot portion, an arch portion, and a heel portion. The forefoot portion is provided with several rows of quadrilateral anti-slip blocks and a row of anti-slip structures composed of alternating quadrilateral and V-shaped anti-slip blocks. The arch portion is provided with V-shaped anti-slip blocks arranged in a ring, with the open end of the V-shaped anti-slip blocks facing the edge of the bottom surface of the shoe sole and the pointed end facing the center of the bottom surface of the shoe sole, forming a circular concave surface in the arch portion. The heel portion is provided with several rows of quadrilateral anti-slip blocks arranged in a regular array. The side of the shoe sole is provided with two rings of quadrilateral anti-slip blocks and a ring of stitching grooves, with the two rings of quadrilateral anti-slip blocks adjacent to the anti-slip blocks on the bottom surface. Both the quadrilateral and V-shaped anti-slip blocks are provided with raised dots, and grooves are formed between adjacent anti-slip blocks.
[0005] Furthermore, the anti-slip structure on the forefoot, consisting of alternating quadrilateral and V-shaped anti-slip blocks, is adjacent to the V-shaped anti-slip blocks arranged in a ring on the arch.
[0006] Furthermore, each row of anti-slip blocks on the forefoot and heel is arranged to be recessed towards the arch of the foot.
[0007] In addition, each quadrilateral anti-slip block has a raised dot, and each V-shaped anti-slip block has three or four raised dots.
[0008] Furthermore, the arch area forms a circular concave surface for the brand's size labeling area.
[0009] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. The sole of this utility model has several rows of quadrilateral anti-slip blocks and an anti-slip structure composed of alternating quadrilateral and V-shaped anti-slip blocks on the forefoot. The heel has a regularly arranged array of quadrilateral anti-slip blocks, and the side of the sole has two rings of quadrilateral anti-slip blocks. These anti-slip blocks of different shapes and distributions work together to greatly increase the contact area and friction between the sole and the ground, effectively preventing slipping and ensuring the user's walking safety. 2. The arch area has V-shaped anti-slip blocks arranged in a ring, with the open end of the V-shaped anti-slip block facing the edge of the sole and the pointed end facing the center of the sole. The resulting circular concave surface better conforms to the arch curve, providing good support for the arch, reducing pressure on the arch during walking, relieving arch fatigue, and helping to improve wearing comfort and health. 3. Both the quadrilateral and V-shaped anti-slip blocks have raised dots, and grooves are formed between adjacent anti-slip blocks. The raised dots further increase friction, while the grooves help to drain water and mud, preventing water and mud accumulation from affecting the anti-slip effect. These detailed designs further enhance the anti-slip performance and practicality of the sole. Attached Figure Description
[0010] Figure 1 Diagram of the sole surface;
[0011] Figure 2 A side view of the shoe sole.
[0012] In the picture: 1. Forefoot; 2. Arch; 3. Heel; 4. Quadrilateral anti-slip block; 5. V-shaped anti-slip block; 6. Circular concave surface; 7. Seam groove; 8. Raised dot; 9. Groove. Detailed Implementation
[0013] 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.
[0014] The present invention provides a shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks. The bottom surface of the shoe sole is divided into a forefoot part 1, an arch part 2, and a heel part 3. The forefoot part 1 is provided with several rows of quadrilateral anti-slip blocks 4 and a row of anti-slip structures composed of quadrilateral anti-slip blocks 4 and V-shaped anti-slip blocks 5 arranged alternately. The arch part 2 is provided with V-shaped anti-slip blocks 5 arranged in a ring, with the open end of the V-shaped anti-slip block 5 facing the edge of the bottom surface of the shoe sole and the pointed end facing the center of the bottom surface of the shoe sole, forming a circular concave surface 6 in the arch part 2. The heel part 3 is provided with several rows of quadrilateral anti-slip blocks 4 arranged in a regular array. The side of the shoe sole is provided with two rings of quadrilateral anti-slip blocks 4 and a ring of stitching grooves 7, with the two rings of quadrilateral anti-slip blocks 4 adjacent to the anti-slip blocks on the bottom surface. Both the quadrilateral anti-slip blocks 4 and the V-shaped anti-slip blocks 5 are provided with raised dots 8, and grooves 9 are formed between adjacent anti-slip blocks.
[0015] Furthermore, the anti-slip structure on the forefoot 1, consisting of a row of quadrilateral anti-slip blocks 4 and V-shaped anti-slip blocks 5 arranged alternately, is adjacent to the V-shaped anti-slip blocks 5 arranged in a ring on the arch 2.
[0016] Furthermore, each row of anti-slip blocks on the forefoot 1 and the heel 3 is arranged concave towards the arch 2.
[0017] Furthermore, each quadrilateral anti-slip block 4 has a raised dot, and each V-shaped anti-slip block 5 has three or four raised dots.
[0018] Furthermore, the arch area 2 forms a circular concave surface 6, which serves as the brand size labeling area.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. The sole of this utility model has several rows of quadrilateral anti-slip blocks and an anti-slip structure composed of alternating quadrilateral and V-shaped anti-slip blocks on the forefoot. The heel has a regularly arranged array of quadrilateral anti-slip blocks, and the side of the sole has two rings of quadrilateral anti-slip blocks. These anti-slip blocks of different shapes and distributions work together to greatly increase the contact area and friction between the sole and the ground, effectively preventing slipping and ensuring the user's walking safety. 2. The arch area has V-shaped anti-slip blocks arranged in a ring, with the open end of the V-shaped anti-slip block facing the edge of the sole and the pointed end facing the center of the sole. The resulting circular concave surface better conforms to the arch curve, providing good support for the arch, reducing pressure on the arch during walking, relieving arch fatigue, and helping to improve wearing comfort and health. 3. Both the quadrilateral and V-shaped anti-slip blocks have raised dots, and grooves are formed between adjacent anti-slip blocks. The raised dots further increase friction, while the grooves help to drain water and mud, preventing water and mud accumulation from affecting the anti-slip effect. These detailed designs further enhance the anti-slip performance and practicality of the sole.
Claims
1. A shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks, characterized in that: The sole is divided into a forefoot section, an arch section, and a heel section. The forefoot section has several rows of quadrilateral anti-slip blocks and a row of anti-slip structures composed of alternating quadrilateral and V-shaped anti-slip blocks. The arch section has V-shaped anti-slip blocks arranged in a ring, with the open end of the V-shaped anti-slip blocks facing the edge of the sole and the pointed end facing the center of the sole, forming a circular concave surface in the arch. The heel section has several rows of quadrilateral anti-slip blocks arranged in a regular array. The side of the sole has two rings of quadrilateral anti-slip blocks and a ring of stitching grooves, with the two rings of quadrilateral anti-slip blocks adjacent to the anti-slip blocks on the bottom surface. Both the quadrilateral and V-shaped anti-slip blocks have raised dots, and grooves are formed between adjacent anti-slip blocks.
2. The shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks according to claim 1, characterized in that: The anti-slip structure on the forefoot, consisting of alternating quadrilateral and V-shaped anti-slip blocks, is adjacent to the V-shaped anti-slip blocks arranged in a ring on the arch.
3. A shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks according to claim 1, characterized in that: Each row of anti-slip blocks on the forefoot and heel is arranged concave towards the arch of the foot.
4. A shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks according to claim 1, characterized in that: Each quadrilateral anti-slip block has one raised dot, and each V-shaped anti-slip block has three or four raised dots.
5. A shoe sole with quadrilateral anti-slip blocks and V-shaped anti-slip blocks according to claim 1, characterized in that: The arch area forms a circular concave surface, which is the brand size labeling area.