Multifunctional breathable massage insole

By incorporating curved edges, massage blocks, shock-absorbing blocks, and breathable structures into the insoles, the stability and comfort issues of existing insoles are resolved, achieving both breathability and massage functions and enhancing the user experience.

CN224112214UActive Publication Date: 2026-04-14FUJIAN BAIBAO NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing insoles have a simple structure and lack anti-slip features, which makes them prone to shifting when walking or exercising. They also lack breathability and massage functions, resulting in stuffiness and poor foot support.

Method used

A multifunctional breathable massage insole has been designed, which includes curved edges, massage blocks, fitting grooves, shock-absorbing blocks, anti-slip holes and breathable fabric. The breathable fabric, anti-slip holes and raised dots form an airflow structure, and it contains ginger powder to promote blood circulation and warm the feet.

Benefits of technology

The insole's stability has been improved, reducing stuffiness in the soles of the feet, enhancing comfort and massage effects, and improving the foot's support and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related field of insoles, in particular to a multifunctional breathable massage insole which comprises an insole body and breathable cloth. The first protruding points and the second protruding points are arranged at the front end of the top of the pad body in an array mode, when a user walks, the first protruding points and the second protruding points can continuously stimulate corresponding acupuncture points of the half soles of the feet, blood circulation of the feet and even the whole body can be promoted, ginger powder materials are added into the pad body, and therefore the health care effect is achieved. Through continuous friction and extrusion between the sole and the pad body, the characteristics of warming and the like of the ginger powder can be slowly released, so that certain effects of warming the foot and promoting blood circulation of the foot are achieved; according to the utility model, the problems that the insoles in the prior art are relatively simple and have no other comfortable functions such as an anti-skid structure and massage are solved, and the problems that the insoles in the prior art have poor wrapping performance on soles and the soles are always stuffy when people wear shoes to walk for a long time in actual use are also solved.
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Description

Technical Field

[0001] This utility model relates to the field of insoles, and in particular to a multifunctional breathable massage insole. Background Technology

[0002] Insoles are widely used in the footwear industry, for health care, and for special purposes; they are generally divided into two types: footwear industry application type and shoe factory application type insoles and market commodity type. Footwear industry application insoles are mainly used to match the outsole and midsole of shoes and to make corresponding shapes; size boards are made according to the last or front panel and made into the corresponding shape.

[0003] The existing technology has the following problems: The insoles under the existing technology generally only serve to isolate the sole of the foot from direct contact with the insole of the shoe. The structure is relatively simple and there is no anti-slip structure. When walking or exercising, the insole will shift inside the shoe cavity. There are also no other comfort functions such as massage. In actual use, the insoles under the existing technology are laid flat directly inside the shoe, which does not provide good support for the sole of the foot. Moreover, when walking for a long time, the sole of the foot often feels stuffy due to the lack of a breathable structure.

[0004] Therefore, we propose a multifunctional breathable massage insole to solve the above problems. Summary of the Invention

[0005] This invention provides a multifunctional breathable massage insole to solve the technical problems mentioned in the background section.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a multifunctional breathable massage insole, comprising an insole body, the insole body comprising a pad body, the outer edge of the top of the pad body being provided with an arc edge, a massage block being provided at the front end of the top of the pad body, fitting grooves being provided on the left and right sides of the top middle of the pad body, the fitting grooves extending from the left and right sides of the middle of the pad body to the tail end of the top of the pad body, a first shock-absorbing block being provided at the tail end of the top of the pad body, and a second shock-absorbing block being arranged in an array on the outer edge of the bottom of the pad body.

[0007] Preferably, the bottom front end and middle of the pad body are provided with a first anti-slip hole and a second anti-slip hole, and the bottom rear end of the pad body is provided with a third shock-absorbing block, the installation position of the third shock-absorbing block being vertically corresponding to the first shock-absorbing block.

[0008] Preferably, the massage block includes a first protrusion and a second protrusion, which are arranged in an array at the top front end of the pad body. The first protrusion is a breathable structure, and its internal filling material is breathable material.

[0009] Preferably, the second anti-slip hole at the front end of the bottom of the pad extends through the pad to the bottom of the first protrusion.

[0010] Preferably, the top of the pad is covered with a layer of breathable fabric.

[0011] Preferably, the breathable fabric, the second anti-slip hole, and the first protrusion work together to form an airflow-through structure.

[0012] Preferably, the outer edge of the second anti-slip hole is provided with a protrusion no higher than 1 mm, and an anti-slip groove is provided at the front end of the protrusion.

[0013] Preferably, ginger powder is added to the inside of the pad.

[0014] The beneficial effects of this utility model are:

[0015] This invention features a first and second protrusion array at the front top of the pad. When walking, the first and second protrusions continuously stimulate the corresponding acupoints on the forefoot, which helps promote blood circulation in the feet and even the whole body. In addition, ginger powder is added inside the pad. Through the continuous friction and compression between the soles of the feet and the pad, the warming properties of the ginger powder are slowly released, which can warm the feet and promote blood circulation in the feet.

[0016] The combination of breathable fabric, second anti-slip holes and first raised dots forms an airflow structure. When walking, the heat accumulated at the bottom of the insole can be circulated through the airflow structure, reducing the feeling of stuffiness in the soles of the feet.

[0017] By incorporating a first anti-slip hole and a second anti-slip hole, the friction between the insole and the insole can be increased, allowing the insole to stay securely inside the shoe and prevent it from easily slipping or shifting, thus improving wearing comfort.

[0018] By setting an arc edge on the outer edge of the pad, it can better fit the contours of the outer and inner sides of the foot, as well as the heel and toes, so that the pad can completely wrap around the sole of the foot;

[0019] In summary, this invention solves the problem that existing insoles are relatively simple and lack anti-slip structures and other comfort functions such as massage. It also solves the problem that existing insoles do not provide good foot support and often cause stuffiness in the feet when walking for long periods of time. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the present invention;

[0021] Figure 2 This is a schematic diagram of the structure of the top of the pad body of this utility model;

[0022] Figure 3 This is a schematic diagram of the structure of the bottom of the pad body of this utility model;

[0023] Figure 4 This is the utility model Figure 3 Enlarged structural diagram at point B;

[0024] Figure 5 This is the utility model Figure 2 Enlarged structural diagram at point A in the middle.

[0025] The components include: insole body-1, breathable fabric-2, insole body-11, curved edge-12, massage block-13, fitting groove-14, first shock-absorbing block-15, second shock-absorbing block-16, first anti-slip hole-17, second anti-slip hole-18, third shock-absorbing block-19, first raised point-131, second raised point-132, and anti-slip groove-181. Detailed Implementation

[0026] To further explain the technical solution of this utility model, a detailed description is provided below through specific embodiments.

[0027] like Figure 1 , 2 As shown, this utility model provides a multifunctional breathable massage insole, including an insole body 1. The insole body 1 includes a pad 11, which isolates the foot from direct contact with the insole and also enhances comfort. An arc edge 12 is provided on the outer edge of the top of the pad 11. The arc edge 12 is used to better conform to the contours of the outer and inner sides of the foot, as well as the heel and toes, allowing the pad 11 to completely wrap around the sole of the foot, further improving comfort. A massage block 13 is provided at the front top of the pad 11. By providing the massage block 13, corresponding acupoints on the forefoot can be stimulated, promoting blood circulation in the foot and even the entire body. Fitting grooves 14 are provided on the left and right sides of the top center of the pad 11, extending from the left and right sides of the middle of the pad 11 to the rear top of the pad 11. By providing the fitting grooves 14, the middle of the pad 11 can be... The insole better conforms to the arch of the foot, providing support. The groove 14 allows for some deformation, improving the overall flexibility of the insole 11. A first shock-absorbing block 15 is also provided at the top and bottom of the insole 11. This first shock-absorbing block 15 effectively cushions and absorbs the impact force on the heel during walking or exercise, reducing and dispersing the strong impact force, thereby greatly reducing the pressure on the heel. A second shock-absorbing block 16 is arranged in an array on the bottom outer edge of the insole 11. This second shock-absorbing block 16 further absorbs the impact on the foot, improving comfort. The second shock-absorbing block 16, located on the bottom outer edge of the insole 11, can also increase the friction between the insole 11 and the insole to a certain extent, preventing the insole 11 from shifting.

[0028] The top of the pad 11 is covered with a layer of breathable fabric 2, which is in direct contact with the sole of the foot. The breathable fabric 2 can increase the comfort of wearing it. The breathable fabric 2, together with the second anti-slip hole 18 and the first protrusion 131, form an airflow structure, which allows the heat accumulated at the bottom of the pad 11 to circulate and reduces the stuffiness of the sole of the foot.

[0029] The pad 11 contains ginger powder. As the soles of the feet rub and squeeze against the pad 11, the warming properties of the ginger powder are slowly released, which helps to warm the feet and promote blood circulation in the feet.

[0030] like Figure 3 , 4 As shown, the bottom front end and middle of the pad body 11 of this utility model are provided with a first anti-slip hole 17 and a second anti-slip hole 18. By providing the first anti-slip hole 17 and the second anti-slip hole 18, the friction between the pad body 11 and the insole of the shoe can be increased, so that the pad body 11 can stay firmly in the shoe and will not easily slide or misalign, thus improving the comfort of wearing. The bottom rear end of the pad body 11 is provided with a third shock-absorbing block 19. The installation position of the third shock-absorbing block 19 corresponds vertically to the first shock-absorbing block 15. Through the cooperation of the first shock-absorbing block 15 and the third shock-absorbing block 19, the impact force on the heel can be better absorbed, greatly increasing the comfort of wearing.

[0031] The second anti-slip hole 18 at the bottom front of the pad 11 extends through the pad 11 to the bottom of the first protrusion 131. The breathable fabric 2, the second anti-slip hole 18, and the first protrusion 131 work together to form an airflow passage structure. When walking, the pad 11 and the insole of the shoe will continuously rub against each other and generate heat. The heat generated by the foot walking and the pad 11 will continuously accumulate in the pad 11 and the insole of the shoe. The airflow passage structure formed by the breathable fabric 2, the second anti-slip hole 18, and the first protrusion 131 can allow the accumulated heat to circulate and reduce the stuffiness of the feet.

[0032] The second anti-slip hole 18 has a protrusion no higher than 1 mm on its outer edge, and an anti-slip groove 181 is provided at the front end of the protrusion. The protrusion on the outer edge of the second anti-slip hole 18 can increase the friction with the insole of the shoe, ensuring that the pad body 11 will not slide in the shoe cavity. Furthermore, the anti-slip groove 181 at the front end of the protrusion can further enhance the friction, ensuring that the pad body 11 will not slide in the shoe cavity.

[0033] like Figure 5As shown, the massage block 13 of this utility model includes a first protrusion 131 and a second protrusion 132, which are arranged in an array at the front end of the top of the pad body 11. When walking, the first protrusion 131 and the second protrusion 132 will continuously stimulate the corresponding acupoints on the forefoot, achieving a massage effect. The first protrusion 131 is a breathable structure, and its internal filling is a breathable material. In this embodiment, the breathable material is cotton. The breathable fabric 2, the second anti-slip hole 18, and the first protrusion 131 work together to form an airflow through structure. The heat accumulated in the pad body 11 and the inner sole of the shoe will flow into the second anti-slip hole 18 when walking, and then flow to the first protrusion 131 through the second anti-slip hole 18. The first protrusion 131 is a breathable structure, and the heat will pass through the first protrusion 131 to the breathable fabric 2 and be discharged, thereby achieving a warm air circulation effect and reducing the stuffiness of the soles of the feet.

[0034] Working principle: The pad body 11 isolates the sole of the foot from direct contact with the insole of the shoe. The top of the pad body 11 is covered with a layer of breathable fabric 2, which is in direct contact with the sole of the foot, increasing wearing comfort. The curved edge 12 set on the outer edge of the top of the pad body 11 can better fit the contours of the outer and inner sides of the sole, as well as the heel and toes, so that the pad body 11 can completely wrap the sole of the foot. When walking, the acupoints on the forefoot will be continuously stimulated by the massage block 13 to achieve a massage effect.

[0035] The top and bottom ends of the pad body 11 are respectively provided with a first shock-absorbing block 15 and a third shock-absorbing block 19. When walking or exercising, the two can work together to effectively buffer and absorb the impact force on the heel, reduce and disperse the strong impact force, and thus greatly reduce the pressure on the heel. A second shock-absorbing block 16 is arranged in an array on the outer edge of the bottom of the pad body 11. The second shock-absorbing block 16 can further absorb the impact on the ball of the foot and improve comfort. The second shock-absorbing block 16 is located on the outer edge of the bottom of the pad body 11 and can also increase the friction between the pad body 11 and the insole to a certain extent, preventing the pad body 11 from shifting.

[0036] The insole 11 has a first anti-slip hole 17 and a second anti-slip hole 18 arrayed at the front and middle of its bottom. These holes increase the friction between the insole 11 and the insole, allowing the insole 11 to stay firmly in the shoe without easily slipping or shifting, thus improving wearing comfort. The outer edge of the second anti-slip hole 18 has a protrusion no higher than 1 mm. This protrusion increases the friction between the insole and the insole. Furthermore, the anti-slip groove 181 at the front of the protrusion further enhances the friction between the insole and the insole.

[0037] The massage block 13 includes a first protrusion 131 and a second protrusion 132. When walking, the first protrusion 131 and the second protrusion 132 will continuously stimulate the corresponding acupoints on the forefoot, achieving a massage effect. The second anti-slip hole 18 extends through the pad body 11 to the bottom of the first protrusion 131. The breathable fabric 2, the second anti-slip hole 18, and the first protrusion 131 work together to form an airflow structure. The heat accumulated in the pad body 11 and the insole of the shoe will flow into the second anti-slip hole 18 when walking, and then flow through the second anti-slip hole 18 to the first protrusion 131. The first protrusion 131 is a breathable structure, and the heat will pass through the first protrusion 131 to the breathable fabric 2 and be discharged, thereby achieving a warm air circulation effect and reducing the stuffiness of the soles of the feet.

[0038] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A multifunctional breathable massage insole, characterized in that: The insole includes an insole body (1), which includes a pad body (11). The outer edge of the top of the pad body (11) is provided with an arc edge (12). The front end of the top of the pad body (11) is provided with a massage block (13). The left and right sides of the top middle of the pad body (11) are provided with a fitting groove (14). The fitting groove (14) extends from the left and right sides of the middle of the pad body (11) to the top tail end of the pad body (11). The top tail end of the pad body (11) is also provided with a first shock-absorbing block (15). The bottom outer edge of the pad body (11) is provided with a second shock-absorbing block (16).

2. The multifunctional breathable massage insole according to claim 1, characterized in that: The pad body (11) is provided with a first anti-slip hole (17) and a second anti-slip hole (18) at the front and middle of the bottom. The pad body (11) is provided with a third shock absorber (19) at the rear of the bottom. The installation position of the third shock absorber (19) corresponds to that of the first shock absorber (15).

3. The multifunctional breathable massage insole according to claim 1, characterized in that: The massage block (13) includes a first protrusion (131) and a second protrusion (132), which are arranged in an array at the top front end of the pad body (11). The first protrusion (131) is a breathable structure, and its internal filling material is breathable material.

4. The multifunctional breathable massage insole according to claim 3, characterized in that: The second anti-slip hole (18) provided at the front end of the bottom of the pad (11) extends through the pad (11) to the bottom of the first protrusion (131).

5. The multifunctional breathable massage insole according to claim 4, characterized in that: The top of the pad (11) is covered with a breathable fabric (2).

6. The multifunctional breathable massage insole according to claim 5, characterized in that: The breathable fabric (2), the second anti-slip hole (18) and the first protrusion (131) work together to form an airflow penetration structure.

7. The multifunctional breathable massage insole according to claim 6, characterized in that: The second anti-slip hole (18) has a protrusion of no more than 1 mm on its outer edge, and an anti-slip groove (181) is provided at the front end of the protrusion.

8. The multifunctional breathable massage insole according to claim 5, characterized in that: The inside of the pad (11) contains ginger powder.