Sole integrated with honeycomb-shaped buffer layer

By integrating a honeycomb cushioning layer into the sole design, the shoe enhances friction with anti-slip teeth and anti-slip rings. Combined with a nylon filament weave layer and a silver ion antibacterial layer, the shoe solves the problems of insufficient anti-slip and antibacterial properties, thus improving the stability and health of the sole.

CN224234811UActive Publication Date: 2026-05-15FOSHAN PINRUI SHOE MATERIAL CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN PINRUI SHOE MATERIAL CO LTD
Filing Date
2025-07-09
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing shoe soles have simple anti-slip and wear-resistant structures, poor anti-slip effect, and insufficient antibacterial properties, which can easily lead to slipping and bacterial growth.

Method used

The outsole design features an integrated honeycomb cushioning layer, including an anti-slip mechanism, a honeycomb cushioning layer, a support layer, an antibacterial mechanism, and an insole layer. The anti-slip mechanism enhances friction through anti-slip teeth and anti-slip rings, while the antibacterial mechanism improves comfort and hygiene through a nylon filament weave layer and a silver ion antibacterial layer.

Benefits of technology

It enhances the friction between the sole and the ground, improves wearing stability, reduces moisture buildup and bacterial growth, keeps the inside of the shoe fresh, and improves overall comfort and hygiene.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224234811U_ABST
    Figure CN224234811U_ABST
Patent Text Reader

Abstract

The utility model discloses a shoe sole integrated with a honeycomb-shaped buffer layer, which belongs to the technical field of shoe soles, aims at solving the problems of simple anti-skid and wear-resistant structure and poor antibacterial property, and comprises an anti-skid mechanism, the top of the anti-skid mechanism is fixedly connected with the honeycomb-shaped buffer layer, and the top of the honeycomb-shaped buffer layer is fixedly connected with a supporting layer. According to the anti-skid shoe sole, the anti-skid mechanism is arranged, the anti-skid teeth are located on the two sides of the bottom pad and are in a protruding shape, the friction force between the shoe sole and the ground can be effectively enhanced, and the anti-skid teeth help to avoid slipping during walking or sports; especially on the wet and slippery or uneven ground, extra road holding force is provided; the anti-slip rings located at the front end and the rear end of the sole provide additional support and friction force in a high-impact or pressure area, the contact stability of the sole and the ground is enhanced, the footstep is more stable, and the overall wearing experience is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of shoe sole technology, specifically relating to a shoe sole with an integrated honeycomb cushioning layer. Background Technology

[0002] The construction of shoe soles is quite complex. In a broad sense, it can include all the materials that make up the bottom, such as the outsole, midsole, and heel. In a narrow sense, it refers only to the outsole. As people's requirements for comfort, functionality, and athletic performance continue to increase, the design of shoe soles has gradually developed from the traditional single function to a diversified direction. Especially in sports shoes, running shoes, and everyday shoes, the cushioning performance of the sole plays a crucial role in reducing foot pressure, improving comfort, and enhancing athletic performance.

[0003] The prior art patent publication number CN222397234U describes a shoe sole with a flexible support structure. This patent includes a main sole body with a cushioning component connected within it. The cushioning component includes a rubber cushioning pad and a storage groove. The rubber cushioning pad has honeycomb grooves evenly distributed along its length. A support plate is bonded to the bottom of the rubber cushioning pad, and an elastic plate is bonded to the bottom of the support plate. Shock-absorbing rubber is bonded to the storage groove, and an air chamber is formed within the shock-absorbing rubber… This device uses the expansion of elastic airbags to support the support plate, thus completing the shock absorption of the sole and improving the comfort of the shoe sole, while also providing support. However, in practical use, it still has the following shortcomings: From a practical standpoint, the anti-slip and wear-resistant structure of the sole is simple, with the anti-slip patterns generally following the same direction, resulting in poor anti-slip effect and wear resistance, easily causing slippage. Furthermore, people sweat a lot during exercise, and the sweat remaining on the sole after exercise can breed bacteria, which is detrimental to human health.

[0004] Therefore, there is a need for a shoe sole with an integrated honeycomb cushioning layer to solve the problems of simple anti-slip and wear-resistant structure and poor antibacterial properties in existing technologies. Utility Model Content

[0005] The purpose of this invention is to provide a shoe sole with an integrated honeycomb cushioning layer to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a shoe sole with an integrated honeycomb cushioning layer, comprising an anti-slip mechanism, wherein a honeycomb cushioning layer is fixedly connected to the top of the anti-slip mechanism, a support layer is fixedly connected to the top of the honeycomb cushioning layer, an antibacterial mechanism is provided on the top of the support layer, and an insole layer is fixedly connected to the top of the antibacterial mechanism.

[0007] It should be noted in the solution that the anti-slip mechanism includes a base pad, with multiple anti-slip teeth fixedly connected to the bottom of the base pad near both sides, a first anti-slip ring fixedly connected to the bottom of the base pad near the front end, and a second anti-slip ring fixedly connected to the bottom of the base pad near the rear end.

[0008] It is worth noting that the base pad is made of thermoplastic polyurethane, and the anti-slip teeth, the first anti-slip ring, and the second anti-slip ring are all made of rubber.

[0009] It should be further noted that the honeycomb buffer layer is made of polyurethane, and the support layer is made of rigid EVA.

[0010] In a preferred embodiment, the antibacterial mechanism includes a nylon filament braided layer, a silver ion antibacterial layer bonded to the top of the nylon filament braided layer, and a cotton fiber filament layer bonded to the top of the silver ion antibacterial layer.

[0011] In a preferred embodiment, the insole layer is made of memory foam material.

[0012] In a preferred embodiment, the anti-slip mechanism, honeycomb buffer layer, support layer, antibacterial mechanism, and insole layer are all fixedly connected by adhesive, and protective rings are sewn at the edges of the honeycomb buffer layer, support layer, antibacterial mechanism, and insole layer.

[0013] Compared with the prior art, the shoe sole with an integrated honeycomb cushioning layer provided by this utility model has at least the following beneficial effects:

[0014] (1) By setting up an anti-slip mechanism, the anti-slip teeth are located on both sides of the sole and have a raised shape, which can effectively enhance the friction between the sole and the ground. When walking or exercising, they help to avoid slipping, especially on wet or uneven ground, providing extra grip. The anti-slip rings located at the front and rear of the sole provide extra support and friction in high impact or pressure areas, enhance the stability of the sole in contact with the ground, make the foot more stable, and improve the overall wearing experience.

[0015] (2) By setting up an antibacterial mechanism, the nylon filament weave layer is breathable and can effectively wick away moisture and reduce moisture accumulation. The cotton fiber filament layer helps to absorb moisture and keep dry. The combination of these two materials can improve the comfort and hygiene of the feet and reduce skin diseases caused by damp environment. The silver ion antibacterial layer has a strong antibacterial effect and can effectively kill bacteria that may grow in the shoe, keep the shoe fresh and prevent odor. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is an exploded view of the structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the anti-slip mechanism of this utility model;

[0019] Figure 4 This is a schematic diagram of the antibacterial mechanism of this utility model.

[0020] In the diagram: 1. Anti-slip mechanism; 101. Base pad; 102. Anti-slip teeth; 103. First anti-slip ring; 104. Second anti-slip ring; 2. Honeycomb buffer layer; 3. Support layer; 4. Antibacterial mechanism; 401. Nylon filament braided layer; 402. Silver ion antibacterial layer; 403. Cotton fiber layer; 5. Insole layer. Detailed Implementation

[0021] The present invention will be further described below with reference to the embodiments.

[0022] Please see Figure 1-4 This utility model provides a shoe sole with an integrated honeycomb cushioning layer, including an anti-slip mechanism 1, a honeycomb cushioning layer 2 fixedly connected to the top of the anti-slip mechanism 1, a support layer 3 fixedly connected to the top of the honeycomb cushioning layer 2, an antibacterial mechanism 4 provided on the top of the support layer 3, and an insole layer 5 fixedly connected to the top of the antibacterial mechanism 4.

[0023] Further as Figure 3 As shown, it is worth noting that the anti-slip mechanism 1 includes a bottom pad 101. Multiple anti-slip teeth 102 are fixedly connected to the bottom of the bottom pad 101 near both sides. A first anti-slip ring 103 is fixedly connected to the bottom of the bottom pad 101 near the front end, and a second anti-slip ring 104 is fixedly connected to the bottom of the bottom pad 101 near the rear end. By setting up the anti-slip mechanism 1, the anti-slip teeth 102, located on both sides of the bottom pad 101 and having a protruding shape, can effectively enhance the friction between the sole and the ground. During walking or exercise, they help prevent slipping, especially on wet or uneven surfaces, providing extra grip. The anti-slip rings located at the front and rear ends of the sole provide extra support and friction in high-impact or high-pressure areas, enhancing the stability of the sole's contact with the ground, making the foot more stable, and improving the overall wearing experience.

[0024] Further as Figure 3As shown, it is worth noting that the sole 101 is made of thermoplastic polyurethane, which has high compressive strength and can maintain good support when bearing body weight for a long time, and is not easily deformed; the anti-slip teeth 102, the first anti-slip ring 103 and the second anti-slip ring 104 are all made of rubber, which has a high coefficient of friction, which can effectively increase the contact friction between the sole and the ground and improve the anti-slip performance. At the same time, rubber has strong wear resistance, can withstand high friction, and is not easily damaged under long-term use.

[0025] As can be seen from the above working process: by setting up the anti-slip mechanism 1, in which the anti-slip teeth 102 are located on both sides of the bottom pad 101 and have a protruding shape, the friction between the sole and the ground can be effectively enhanced. When walking or exercising, they help to avoid slipping, especially on wet or uneven ground, providing extra grip. The anti-slip rings located at the front and rear of the sole provide extra support and friction in high impact or pressure areas, enhance the stability of the sole in contact with the ground, make the foot more stable, and improve the overall wearing experience.

[0026] Further as Figure 1 and Figure 2 As shown, it is worth noting that the honeycomb buffer layer 2 is made of polyurethane. Polyurethane has good elasticity and compressibility, which can effectively absorb impact force, reduce the impact vibration when the foot lands, and provide a more comfortable walking experience. The support layer 3 is made of rigid EVA material. Rigid EVA has high hardness and strength, which can provide better support for the foot, especially when walking or standing for a long time, it can effectively distribute the pressure on the foot and reduce foot fatigue.

[0027] Further as Figure 4 As shown, it is worth noting that the antibacterial mechanism 4 includes a nylon filament braided layer 401, a silver ion antibacterial layer 402 bonded to the top of the nylon filament braided layer 401, and a cotton fiber filament layer 403 bonded to the top of the silver ion antibacterial layer 402. By setting the antibacterial mechanism 4, the nylon filament braided layer 401 is breathable and can effectively wick away moisture, reducing moisture accumulation. The cotton fiber filament layer 403 helps to absorb moisture and keep the feet dry. The combination of these two materials can improve the comfort and hygiene of the feet and reduce skin diseases caused by a damp environment. The silver ion antibacterial layer 402 has a strong antibacterial effect and can effectively kill bacteria that may grow inside the shoe, keep the inside of the shoe fresh, and prevent odor.

[0028] Further as Figure 1 and Figure 2As shown, it is worth noting that the insole layer 5 is made of memory foam. Memory foam has a strong shaping ability and can automatically adjust according to the shape and pressure of the foot to provide personalized comfort. Every pressure point of the foot will be precisely adapted, thereby reducing discomfort and friction. At the same time, memory foam can effectively absorb the impact from the ground, relieve vibration when walking or running, protect the feet and joints, and reduce the risk of sports injuries.

[0029] Further as Figure 1 and Figure 2 As shown, it is worth noting that the anti-slip mechanism 1, honeycomb cushioning layer 2, support layer 3, antibacterial mechanism 4, and insole layer 5 are all fixedly connected by adhesive. This adhesive connection ensures the stability of each layer and reduces detachment or displacement caused by external impact or pressure. The use of adhesive also enhances the overall strength and durability of the sole. Furthermore, protective rings are sewn at the edges of the honeycomb cushioning layer 2, support layer 3, antibacterial mechanism 4, and insole layer 5. These protective rings provide additional protection for the edges of the sole, preventing edge wear caused by external friction, especially in the application areas of the sole. This extends the lifespan of the sole and maintains its original performance.

[0030] This solution has the following working process: In actual use, the anti-slip teeth 102 can effectively enhance the friction between the sole and the ground, helping to prevent slipping during walking or exercise. The first anti-slip ring 103 and the second anti-slip ring 104 provide additional support and friction in high-impact or high-pressure areas, enhancing the stability of the sole's contact with the ground. When encountering vibration, the honeycomb buffer layer 2 can play a good role in cushioning and shock absorption, protecting people's feet and making people more comfortable to wear. When people exercise and their feet excrete a lot of sweat, the cotton fiber layer 403 and the nylon filament weave layer 401 can accelerate the absorption and evaporation of sweat, and the silver ion antibacterial layer 402 can play an antibacterial and bacteriostatic role, protecting human health.

[0031] In summary: By incorporating the anti-slip mechanism 1, where the anti-slip teeth 102 are located on both sides of the sole pad 101 and have a raised shape, the friction between the sole and the ground can be effectively enhanced. During walking or exercise, they help prevent slipping, especially on wet or uneven surfaces, providing extra grip. The anti-slip rings located at the front and rear of the sole provide extra support and friction in high-impact or high-pressure areas, enhancing the stability of the sole's contact with the ground, making the foot more stable, and improving the overall wearing experience. By incorporating the antibacterial mechanism 4, the nylon woven layer 401 is breathable and can effectively wick away moisture, reducing moisture buildup, while the cotton fiber layer 403 helps to absorb moisture and keep the feet dry. The combination of these two materials can improve foot comfort and hygiene, reducing skin diseases caused by damp environments. The silver ion antibacterial layer 402 has a strong antibacterial effect, which can effectively kill bacteria that may grow inside the shoe, keeping the inside of the shoe fresh and preventing odor.

Claims

1. A shoe sole with an integrated honeycomb cushioning layer, comprising an anti-slip mechanism (1), characterized in that: The anti-slip mechanism (1) is fixedly connected to a honeycomb buffer layer (2) at the top, the honeycomb buffer layer (2) is fixedly connected to a support layer (3) at the top, the support layer (3) is provided with an antibacterial mechanism (4) at the top, and the antibacterial mechanism (4) is fixedly connected to an insole layer (5) at the top.

2. The shoe sole with an integrated honeycomb cushioning layer according to claim 1, characterized in that: The anti-slip mechanism (1) includes a base pad (101), with multiple anti-slip teeth (102) fixedly connected to the bottom of the base pad (101) near both sides, a first anti-slip ring (103) fixedly connected to the bottom of the base pad (101) near the front end, and a second anti-slip ring (104) fixedly connected to the bottom of the base pad (101) near the rear end.

3. The shoe sole with an integrated honeycomb cushioning layer according to claim 2, characterized in that: The base pad (101) is made of thermoplastic polyurethane, and the anti-slip teeth (102), the first anti-slip ring (103), and the second anti-slip ring (104) are all made of rubber.

4. The shoe sole with an integrated honeycomb cushioning layer according to claim 1, characterized in that: The honeycomb buffer layer (2) is made of polyurethane, and the support layer (3) is made of rigid EVA.

5. The shoe sole with an integrated honeycomb cushioning layer according to claim 1, characterized in that: The antibacterial mechanism (4) includes a nylon filament braided layer (401), a silver ion antibacterial layer (402) is bonded to the top of the nylon filament braided layer (401), and a cotton fiber filament layer (403) is bonded to the top of the silver ion antibacterial layer (402).

6. The shoe sole with an integrated honeycomb cushioning layer according to claim 1, characterized in that: The insole layer (5) is made of memory foam.

7. The shoe sole with an integrated honeycomb cushioning layer according to claim 1, characterized in that: The anti-slip mechanism (1), honeycomb buffer layer (2), support layer (3), antibacterial mechanism (4) and insole layer (5) are all fixedly connected by adhesive, and protective rings are sewn at the edges of the honeycomb buffer layer (2), support layer (3), antibacterial mechanism (4) and insole layer (5).