Ventilated anti-skid shock-absorbing insole

CN224791778UActive Publication Date: 2026-09-25HAINAN BIMAI SPORTS TECH CO LTD
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Patent Information

Application Number
CN202522234895.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-09-25
Estimated Expiration
2035-10-22

AI Technical Summary

Technical Problem

[0004]然而,许多传统鞋垫透气性能欠佳,在长时间穿着后,脚底容易出汗,不仅会产生异味,还可能滋生细菌,引发足部健康问题,严重影响使用者的体验

Benefits of technology

1.本实用新型中鞋垫采用三层设计,并在底部的两层均开设有透气孔,以实现双层错层蜂窝式透气鞋垫的设计,使透气效果更好,并且按摩层和透气层均采用TPE材质制成,使按摩层和透气层能够和用户脚底贴合,在用户走动时为用户足底提供弹性支撑,使用户使用起来更加舒适,适合马拉松后放松场景以及走路上班通勤的情况;

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Abstract

The utility model relates to the technical field of insoles, in particular to a ventilative antiskid shock attenuation insole, which comprises a mesh cloth layer, a massage layer and a ventilative layer arranged in sequence from top to bottom, wherein the mesh cloth layer, the massage layer and the ventilative layer are of the same shape, the opposite surfaces of the mesh cloth layer and the massage layer are fixedly connected, and the opposite surfaces of the massage layer and the ventilative layer are detachably connected. In the utility model, the insole is designed in three layers, and the two layers at the bottom are both provided with ventilative holes to realize the design of double-layer staggered honeycomb ventilative insole, so that the ventilative effect is better, and the massage layer and the ventilative layer are both made of TPE material, so that the massage layer and the ventilative layer can be attached to the sole of the user's foot, and the elastic support is provided for the sole of the user's foot when the user walks, so that the user can use it more comfortably, and it is suitable for the relaxation scene after marathon and the situation of walking to work.
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Description

Technical Field

[0001] This utility model relates to the field of shoe insole technology, specifically to a breathable, non-slip, shock-absorbing shoe insole. Background Technology

[0002] As an important component of shoes, insoles have a crucial impact on people's foot comfort, health, and walking experience in daily life.

[0003] Nowadays, more and more people are paying attention to their health and low-carbon travel, and they like to participate in marathons or walk to work. In order to improve the comfort of their shoes, they will choose suitable insoles to put in their shoes to ensure that their feet are not easily fatigued when running or walking.

[0004] However, many traditional insoles lack breathability, leading to sweaty feet after prolonged wear. This not only causes odor but can also breed bacteria, causing foot health problems and severely impacting the user experience. Furthermore, many existing insoles are made of ordinary plastics or hard rubber, which feel firm and fail to conform well to the foot's curves. During walking or exercise, pressure on the feet is not effectively distributed, leading to foot fatigue over time. Therefore, this invention proposes a breathable, non-slip, shock-absorbing insole to effectively address these shortcomings. Utility Model Content

[0005] The purpose of this invention is to provide a breathable, non-slip, shock-absorbing insole to solve the problems mentioned in the background art.

[0006] This utility model is achieved through the following technical solution: a breathable and non-slip shock-absorbing insole, comprising a mesh layer, a massage layer and a breathable layer arranged sequentially from top to bottom, wherein the mesh layer, the massage layer and the breathable layer have the same shape, the facing surfaces of the mesh layer and the massage layer are fixedly connected, and the facing surfaces of the massage layer and the breathable layer are detachably connected.

[0007] Optionally, both the massage layer and the breathable layer are provided with a plurality of breathable holes, the breathable holes on the massage layer and the breathable layer are staggered, and the breathable holes are honeycomb-shaped.

[0008] Optionally, both the massage layer and the breathable layer are made of TPE material, and the thickness of the massage layer is less than the thickness of the breathable layer.

[0009] Optionally, the massage layer has a plurality of protrusions protruding outwards on the side facing the breathable layer, and the breathable layer has a plurality of grooves recessed inwards on the side facing the massage layer. The plurality of grooves and the plurality of protrusions correspond one-to-one, and the grooves are used for the protrusions to be embedded to connect the massage layer and the breathable layer.

[0010] Optionally, the massage layer protrudes outward on the side facing the breathable layer to form two positioning posts, which are located at the front and rear ends of the massage layer facing the breathable layer, respectively. The breathable layer is recessed inward on the side facing the massage layer to form two positioning grooves. The two positioning grooves and the two positioning posts are aligned and have matching shapes. The positioning posts and the protrusions are different in size, and the positioning grooves and the recesses are different in size.

[0011] Optionally, the outer walls of the protrusion and the positioning post are both fixedly provided with flanges, and the inner walls of the groove and the positioning slot are both provided with anti-detachment grooves, which are used for the flanges to be embedded.

[0012] Optionally, the massage layer and the breathable layer are connected by Velcro, with the hook side of the Velcro fixedly connected to the side of the massage layer facing the breathable layer, and the loop side of the Velcro fixedly connected to the side of the breathable layer facing the massage layer.

[0013] Compared with the prior art, this utility model provides a breathable, non-slip, shock-absorbing insole with the following beneficial effects: 1. The insole of this utility model adopts a three-layer design, and the bottom two layers are provided with ventilation holes to realize the design of double-layer staggered honeycomb breathable insole, which makes the breathability better. The massage layer and the breathable layer are both made of TPE material, so that the massage layer and the breathable layer can fit the user's foot and provide elastic support for the user's foot when walking, making the user more comfortable to use. It is suitable for relaxation after marathon and commuting to work by walking. 2. In this utility model, the breathable layer can be detachably installed at the bottom of the massage layer, so that after the breathable layer wears out due to long-term use, the user can replace the breathable layer, thereby reducing the replacement cost of the insole and extending its service life. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a bottom view of the massage layer in Embodiment 1 of this utility model; Figure 3 This is a top view of the breathable layer in Embodiment 1 of this utility model; Figure 4 This is a side sectional view of an embodiment of the present utility model; Figure 5 for Figure 4 Enlarged structural diagram at point A in the middle; Figure 6 This is a bottom view of the massage layer in Embodiment 2 of this utility model; Figure 7 This is a top view of the breathable layer in Embodiment 2 of this utility model.

[0015] In the diagram: 1. Mesh layer; 2. Massage layer; 201. Raised section; 202. Positioning post; 3. Breathable layer; 301. Groove; 302. Positioning groove; 4. Ventilation hole; 5. Flange; 6. Anti-detachment groove; 7. Velcro. Detailed Implementation

[0016] 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.

[0017] Example 1: Please refer to Figure 1 - Figure 5 A breathable, non-slip, shock-absorbing insole includes a mesh layer 1, a massage layer 2, and a breathable layer 3 arranged sequentially from top to bottom. The mesh layer 1, massage layer 2, and breathable layer 3 have the same shape so that they can be connected together to form the insole body.

[0018] The insole features two main components: a woven fabric layer (1) with fine mesh holes to ensure breathability; and a massage layer (2) and a breathable layer (3) made of TPE material. TPE is soft and conforms well to the foot's curves, reducing gaps between the foot and insole for greater comfort and reducing fatigue during long walks or standing, making it suitable for commuting. The material also boasts excellent elasticity, absorbing impact when the foot contacts the ground during walking, running, or other activities, reducing shock and cushioning damage to joints such as the feet, knees, and lower back. The contact with the sole of the foot also provides a massage-like sensation, making it ideal for marathons and other running activities.

[0019] Furthermore, the mesh layer 1, massage layer 2, and breathable layer 3 have different thicknesses, with the massage layer 2 being thinner than the breathable layer 3. This ensures that the breathable layer 3 closest to the ground is the thickest, blocking the feel of hard surfaces and making the user's feet more comfortable. Secondly, it should be noted that the area of ​​massage layer 2 and breathable layer 3 facing the heel is thicker than the area facing the forefoot, to conform to the curve of the user's foot.

[0020] In this embodiment, both the massage layer 2 and the breathable layer 3 are provided with a plurality of breathable holes 4 to enable the insole to have good breathability. The breathable holes 4 on the massage layer 2 and the breathable layer 3 are staggered and have a honeycomb shape, with a line thickness of 0.6 mm between different breathable holes 4.

[0021] Furthermore, the facing surfaces of the mesh layer 1 and the massage layer 2 are fixedly connected, which can be done by stitching or hot melt adhesive. The facing surfaces of the massage layer 2 and the breathable layer 3 are detachably connected, so that the breathable layer 3 can be removed and replaced. This allows the user to replace the breathable layer 3 separately after it wears out, thereby reducing the user's replacement costs.

[0022] Specifically, the side of the massage layer 2 facing the breathable layer 3 protrudes outward to form several protrusions 201, and the side of the breathable layer 3 facing the massage layer 2 is recessed inward to form several grooves 301. The grooves 301 and the protrusions 201 correspond one-to-one. The grooves 301 are used for the protrusions 201 to be inserted to connect the massage layer 2 and the breathable layer 3.

[0023] In this embodiment, several protrusions 201 are distributed on the side of the massage layer 2 facing the breathable layer 3 near the edge. In this embodiment, the protrusions 201 are concentrated on the front, middle and rear parts of the massage layer 2 facing the breathable layer 3. Several grooves 301 and several protrusions 201 are aligned and distributed so that the front edge, middle edge and rear edge of the massage layer 2 and the breathable layer 3 facing each other can be connected by the protrusions 201 and the grooves 301, ensuring that each area of ​​the massage layer 2 and the breathable layer 3 are connected together and improving the connection firmness.

[0024] Furthermore, the side of the massage layer 2 facing the breathable layer 3 protrudes outward to form two positioning posts 202. The two positioning posts 202 are located at the front and rear ends of the side of the massage layer 2 facing the breathable layer 3, respectively. The side of the breathable layer 3 facing the massage layer 2 is recessed inward to form two positioning grooves 302. The two positioning grooves 302 and the two positioning posts 202 are aligned and have matching shapes. The positioning posts 202 and the protrusions 201 are different in size, and the positioning grooves 302 and the recesses 301 are different in size.

[0025] In this embodiment, the positioning post 202 has a cylindrical structure, and its diameter is larger than that of the protrusion 201. This allows the two positioning posts 202 to cooperate with the two positioning grooves 302 to position the massage layer 2 and the breathable layer 3, preventing all holes from being the same size and causing the breathable layer 3 to shift during connection with the massage layer 2. This makes the installation of the breathable layer 3 more convenient and faster. Alternatively, the positioning posts 202 and positioning grooves 302 can also be designed with irregular shapes, as long as they differ from the protrusion 201 and the groove 301.

[0026] On the other hand, the bottom edges of the protrusion 201 and the positioning post 202 are rounded to make it easier for the protrusion 201 and the positioning post 202 to be embedded in the groove 301 and the positioning slot 302.

[0027] In this embodiment, flanges 5 are fixedly provided on the outer walls of both the protrusion 201 and the positioning post 202, and anti-detachment grooves 6 are provided on the inner walls of both the groove 301 and the positioning slot 302. The anti-detachment grooves 6 are used for the flanges 5 to be inserted. The flanges 5, protrusions 201, and positioning posts 202 are all made of TPE material to give the flanges 5 elasticity and deformation capability. After the protrusions 201 and positioning posts 202 are inserted into the grooves 301 and the positioning slots 302, the flanges 5 can also be inserted into the anti-detachment grooves 6, so that the protrusions 201 and positioning posts 202 are not easily detached from the grooves 301 and the positioning slots 302, making the connection between the massage layer 2 and the breathable layer 3 more secure.

[0028] Example 2: Please refer to Figure 6 and Figure 7 This application also proposes another embodiment, which differs from Embodiment 1 in that: the massage layer 2 and the breathable layer 3 are connected by Velcro 7. The hook side of the Velcro 7 is fixedly connected to the side of the massage layer 2 facing the breathable layer 3, and the loop side of the Velcro 7 is fixedly connected to the side of the breathable layer 3 facing the massage layer 2. Specifically, the hook side of the Velcro 7 is distributed along the edge of the massage layer 2 facing the breathable layer 3, and the loop side of the Velcro 7 is distributed along the edge of the breathable layer 3 facing the massage layer 2, so that the massage layer 2 and the breathable layer 3 can be connected together after being attached, and can be easily removed by tearing them apart, making the operation simple and convenient.

[0029] The working principle and usage process of this utility model are as follows: When the user uses the insole, the massage layer 2 and the breathable layer 3 provide flexible support for the user's feet to improve comfort. Simultaneously, the ventilation holes 4 on the massage layer 2 and the breathable layer 3 ensure good breathability and reduce foot sweating. After a period of use, friction between the breathable layer 3 and the shoe will cause wear on the breathable layer 3. The user can then remove the breathable layer 3 from the bottom of the massage layer 2 and replace it, thereby reducing replacement costs and extending its service life.

[0030] It should be noted that, in this document, relational terms such as "first" and "second" are used merely 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 a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.

[0031] 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 breathable, non-slip, shock-absorbing insole, characterized in that: It includes a mesh layer (1), a massage layer (2) and a breathable layer (3) arranged sequentially from top to bottom. The mesh layer (1), the massage layer (2) and the breathable layer (3) have the same shape. The mesh layer (1) and the massage layer (2) are fixedly connected to each other, and the massage layer (2) and the breathable layer (3) are detachably connected to each other.

2. The breathable, non-slip, shock-absorbing insole according to claim 1, characterized in that: Both the massage layer (2) and the breathable layer (3) are provided with a number of breathable holes (4). The breathable holes (4) on the massage layer (2) and the breathable layer (3) are staggered and the breathable holes (4) are honeycomb-shaped.

3. A breathable, non-slip, shock-absorbing insole according to claim 1 or 2, characterized in that: Both the massage layer (2) and the breathable layer (3) are made of TPE material, and the thickness of the massage layer (2) is less than the thickness of the breathable layer (3).

4. The breathable, non-slip, shock-absorbing insole according to claim 3, characterized in that: The massage layer (2) has a number of protrusions (201) protruding outwards on the side facing the breathable layer (3), and the breathable layer (3) has a number of grooves (301) recessed inwards on the side facing the massage layer (2). The number of grooves (301) and the number of protrusions (201) correspond one-to-one. The grooves (301) are used for the protrusions (201) to be inserted to connect the massage layer (2) and the breathable layer (3).

5. The breathable, non-slip, shock-absorbing insole according to claim 4, characterized in that: The massage layer (2) has two positioning posts (202) protruding outwards on the side facing the breathable layer (3). The two positioning posts (202) are located at the front and rear ends of the side of the massage layer (2) facing the breathable layer (3), respectively. The breathable layer (3) has two positioning grooves (302) recessed inwards on the side facing the massage layer (2). The two positioning grooves (302) and the two positioning posts (202) are aligned and have matching shapes. The positioning posts (202) and the protrusions (201) are different in size, and the positioning grooves (302) and the recesses (301) are different in size.

6. The breathable, non-slip, shock-absorbing insole according to claim 5, characterized in that: The outer walls of the protrusion (201) and the positioning post (202) are both fixedly provided with flanges (5), and the inner walls of the groove (301) and the positioning groove (302) are both provided with anti-detachment grooves (6), which are used for the flanges (5) to be embedded.

7. The breathable, non-slip, shock-absorbing insole according to claim 3, characterized in that: The massage layer (2) and the breathable layer (3) are connected by Velcro (7), with the hook side of the Velcro (7) fixedly connected to the side of the massage layer (2) facing the breathable layer (3) and the loop side of the Velcro (7) fixedly connected to the side of the breathable layer (3) facing the massage layer (2).