A type of women's athletic shoe that can absorb moisture and deodorize

CN224698732UActive Publication Date: 2026-09-01WENZHOU SHENGZHANGKE SHOES CO LTD
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Patent Information

Application Number
CN202522037978.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-09-01
Estimated Expiration
2035-09-22

AI Technical Summary

Technical Problem

运动过程中,脚部产生的大量汗液无法从鞋体内快速排出,导致运动鞋内细菌滋生而出现异味,传统的网布运动鞋上的透气网虽然能提高鞋子的透气性,但无法完全消除鞋内的汗液,长时间的运动在鞋内形成湿热环境,加速细菌滋生,影响穿着者的足部健康

Benefits of technology

[0013]采用上述结构后,通过第一金属座设置在嵌合槽内,并与嵌合槽的内壁粘接,使橡胶磁条能与透气网的边缘贴合,减少抑菌药液向侧面逸散到鞋子主体的外侧。

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Abstract

This utility model relates to a moisture-absorbing and deodorizing women's athletic shoe, comprising a shoe body, a medicine bag, and a drying bag. The shoe body has a breathable mesh on its upper. The medicine bag includes a waterproof fabric layer and a mesh layer sewn together on both sides. A sponge sheet is placed inside the medicine bag, which absorbs antibacterial liquid. The drying bag is sewn to the outside of the waterproof fabric layer and contains an activated carbon layer. An annular elastic plate is connected to the edge of the waterproof fabric layer, and a rubber magnetic strip corresponding to the edge shape of the breathable mesh is connected to the edge of the elastic plate. Multiple ferromagnetic first metal seats are spaced along the edge of the breathable mesh. The rubber magnetic strips on the edge of the elastic plate can be aligned with the first metal seats for magnetic attraction. The drying bag is first used to absorb moisture and odor gases by adhering to the breathable mesh, and then the medicine bag is attached to the breathable mesh to allow the antibacterial liquid to evaporate and penetrate into the shoe, thus treating the dried shoe with antibacterial properties, reducing the growth of bacteria and fungi inside the shoe, and protecting the wearer's foot health.
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Description

Technical Field

[0001] This utility model relates to the field of sports shoe technology, and in particular to a women's sports shoe that can absorb moisture and deodorize. Background Technology

[0002] With the continuous development of society and the increasing health awareness of people, more and more people are choosing hiking or running for fitness. Sports shoes are essential equipment for running enthusiasts and professional athletes. During exercise, a large amount of sweat produced by the feet cannot be quickly expelled from the shoe, leading to bacterial growth and odor. While the breathable mesh on traditional mesh sports shoes can improve breathability, it cannot completely eliminate sweat. Prolonged exercise creates a hot and humid environment inside the shoe, accelerating bacterial growth and affecting the wearer's foot health. Therefore, designing a moisture-wicking and deodorizing women's sports shoe that can accelerate drying and inhibit bacterial growth after exercise has become an urgent technical problem to be solved. Summary of the Invention

[0003] To solve the above problems, this utility model provides a women's sports shoe that can absorb moisture and deodorize.

[0004] The present invention relates to a moisture-absorbing and deodorizing women's athletic shoe, comprising a shoe body, a medicine bag, and a drying bag. The shoe body has a breathable mesh on its upper. The medicine bag includes a waterproof fabric layer and a mesh layer sewn together on both sides. A sponge sheet is placed inside the medicine bag, which absorbs antibacterial liquid. The drying bag is sewn to the outside of the waterproof fabric layer and contains an activated carbon layer. An annular elastic plate is connected to the edge of the waterproof fabric layer, and a rubber magnetic strip corresponding to the edge shape of the breathable mesh is connected to the edge of the elastic plate. Multiple ferromagnetic first metal seats are spaced along the edge of the breathable mesh.

[0005] With the above structure, after exercising, the shoes are removed, and the sewn-together medicine bag and dry bag are taken out. The edge of the elastic plate is aligned with the edge of the breathable mesh. The shape of the rubber magnetic strip corresponds to the edge of the breathable mesh, allowing the rubber magnetic strip located on the edge of the elastic plate to magnetically attract the first metal seat. The elastic plate is connected to the edge of the waterproof fabric layer, separating the medicine bag and dry bag on both sides, preventing the antibacterial liquid in the medicine bag from seeping into the dry bag. First, the side with the dry bag faces the breathable mesh, using the dry bag to adhere to the breathable mesh. The activated carbon layer inside the bag absorbs moisture from the breathable mesh, accelerating sweat drying. Then, the elastic plate is flipped over, allowing the rubber magnetic strip to magnetically attract the first metal seat from the other side. At this time, the side with the medicine bag faces the breathable mesh. The air mesh, through the sponge sheet inside the medicine bag, absorbs antibacterial liquid containing drugs such as alcohol and salicylic acid. The medicine bag is attached to the breathable mesh, and the antibacterial liquid evaporates and penetrates into the shoe through the mesh layer, performing antibacterial treatment on the dried shoes, reducing the growth of bacteria and fungi inside the shoes, thereby reducing the odor produced inside the shoes and protecting the wearer's foot health. It is connected to the edge of the waterproof fabric layer by an elastic plate. When the medicine bag or dry bag is attached to the breathable mesh, it is squeezed, causing the elastic plate to deform elastically. The elastic plate bends towards the side away from the breathable mesh, and cooperates with the connected waterproof fabric layer to form a receiving cavity, so that the medicine bag or dry bag can be placed in the receiving cavity, avoiding the volume conflict of the bag, which would prevent the rubber magnetic strip from being able to be magnetically attracted to the first metal seat.

[0006] As a further improvement of this utility model, it also includes a protective plate, on the front edge of which a second metal seat with ferromagnetism is fixed, the shape of which matches the rubber magnetic strip.

[0007] With the above structure, the second metal seat on the edge of the protective plate is magnetically connected to the rubber magnetic strip. This allows the protective plate to be placed on the side where the medicine bag is located to block the flow of antibacterial drugs inside the medicine bag, even when the main body of the shoe has not been treated for moisture absorption and deodorization.

[0008] As a further improvement of this utility model, a U-shaped elastic clip is connected to the back of the protective plate. The elastic clip is set on the edge of the protective plate and the opening direction is towards the center of the protective plate. The two ends of the elastic clip are provided with clamping plates, and the opposite side of the clamping plates is provided with staggered protrusions.

[0009] With the above structure, after the second metal seat and the rubber magnetic strip are magnetically attracted, the protective plate and the breathable mesh are in the same situation, causing the elastic plate to bend towards the side away from the protective plate, forming a receiving cavity. This ensures that one of the medicine bag or the drying bag is inside the receiving cavity, allowing the second metal seat to be magnetically connected to the rubber magnetic strip. The other bag is pushed up by the receiving cavity and protrudes further. At this time, the elastic clip is used to clamp the shoe opening of the shoe body, with the protective plate inside the shoe. The medicine bag or drying bag is placed at the shoe opening for moisture absorption and deodorization. The elastic clip clamps the shoe opening on both the inside and outside sides, and the protruding teeth on the clip plate press against the shoe opening to increase friction and prevent the elastic clip from falling off the shoe opening.

[0010] As a further improvement of this utility model, the sponge sheet is provided with honeycomb-shaped flow channels, and the medicine bag is provided with an injection hole that connects to the flow channels.

[0011] With the above structure, the medicine bag has an injection hole that connects to the flow channel. The antibacterial solution can be injected into the injection hole using a syringe. After entering the medicine bag, the antibacterial solution flows onto the flow channel of the sponge sheet and then flows and disperses along the honeycomb-shaped flow channel, making the sponge sheet absorb the antibacterial solution more evenly.

[0012] As a further improvement of this utility model, the edge of the breathable mesh is provided with a fitting groove that matches the first metal seat. The first metal seat is placed in the fitting groove and is bonded to the inner wall of the fitting groove.

[0013] With the above structure, the first metal seat is set in the fitting groove and bonded to the inner wall of the fitting groove, so that the rubber magnetic strip can fit with the edge of the breathable mesh, reducing the leakage of antibacterial liquid to the outside of the shoe body. Attached Figure Description

[0014] Figure 1 The diagram shows the structure of the medicine bag connected to the breathable mesh of this utility model.

[0015] Figure 2 The diagram shows the structure of the elastic clip of this utility model clamped at the shoe opening.

[0016] Figure 3 The diagram shows the structure of the medicine bag connected to the protective plate.

[0017] Figure 4 The diagram shows the structure of the sponge sheet and the flow channel.

[0018] Figure 5 The diagram shows a cross-sectional view of the medicine bag connected to the protective plate.

[0019] Figure 6 The diagram shows a cross-sectional view of the drying bag with the breathable mesh attached.

[0020] 1-Shoe body, 2-Medicine bag, 3-Drying bag, 4-Breathable mesh, 5-Waterproof fabric layer, 6-Mesh fabric layer, 7-Sponge sheet, 8-Activated carbon layer, 9-Elastic plate, 10-Rubber magnetic strip, 11-First metal seat, 12-Protective plate, 13-Second metal seat, 14-Elastic clip, 15-Clamping plate, 16-Protruding teeth, 17-Guide groove, 18-Injection hole. Detailed Implementation

[0021] like Figures 1-6The present invention discloses a moisture-absorbing and deodorizing women's sports shoe, comprising a shoe body 1, a medicine bag 2, and a desiccant bag 3. The shoe body 1 has a breathable mesh 4 on its upper. The medicine bag 2 includes a waterproof fabric layer 5 and a mesh fabric layer 6 sewn on both sides. A sponge sheet 7 is provided inside the medicine bag 2, and the sponge sheet 7 absorbs antibacterial liquid. The desiccant bag 3 is sewn to the outside of the waterproof fabric layer 5 and has an activated carbon layer 8 inside. An annular elastic plate 9 is connected to the edge of the waterproof fabric layer 5. A rubber magnetic strip 10 corresponding to the edge shape of the breathable mesh 4 is connected to the edge of the elastic plate 9. Multiple ferromagnetic first metal seats 11 are connected at intervals along the edge of the breathable mesh 4.

[0022] After exercising, remove the shoes and take out the sewn-together medicine bag 2 and dry bag 3. Align the edge of the elastic plate 9 with the edge of the breathable mesh 4. Align the shape of the rubber magnetic strip 10 with the edge of the breathable mesh 4, allowing the rubber magnetic strip 10 located on the edge of the elastic plate 9 to magnetically attract the first metal seat 11. The elastic plate 9 is connected to the edge of the waterproof fabric layer 5, separating the medicine bag 2 and dry bag 3 on both sides, preventing the antibacterial liquid in the medicine bag 2 from seeping into the dry bag 3. First, place the side with the dry bag 3 facing the breathable mesh 4, allowing the dry bag 3 to adhere to the breathable mesh 4. The activated carbon layer 8 inside the bag absorbs moisture from the breathable mesh 4, accelerating sweat drying. Then, flip the elastic plate 9 so that the rubber magnetic strip 10 magnetically attracts the first metal seat 11 from the other side. At this point, the side with the medicine bag 2 facing the breathable mesh 4... The air mesh 4, through the sponge sheet 7 inside the medicine bag 2, absorbs antibacterial liquid containing drugs such as alcohol and salicylic acid. The medicine bag 2 is attached to the air mesh 4, and the antibacterial liquid evaporates and penetrates into the shoe through the mesh layer 6, performing antibacterial treatment on the dried shoe, reducing the growth of bacteria and fungi inside the shoe, thereby reducing the odor generated inside the shoe and protecting the wearer's foot health; it is connected to the edge of the waterproof fabric layer 5 by an elastic plate 9. When the medicine bag 2 or the drying bag 3 is attached to the air mesh 4, it is squeezed, causing the elastic plate 9 to deform elastically. The elastic plate 9 bends to the side away from the air mesh 4, and cooperates with the connected waterproof fabric layer 5 to form a receiving cavity, so that the medicine bag 2 or the drying bag 3 can be located in the receiving cavity, avoiding the volume conflict of the bags, which would prevent the rubber magnetic strip 10 from being magnetically attracted to the first metal seat 11.

[0023] It also includes a protective plate 12, on the front edge of which a second metal seat 13 with ferromagnetic properties is fixed, and the shape of the second metal seat 13 matches that of the rubber magnetic strip 10.

[0024] The protective plate 12 is magnetically connected to the rubber magnetic strip 10 via the second metal seat 13 at the edge of the protective plate 12. When the shoe body 1 is not treated for moisture absorption and deodorization, the protective plate 12 can be placed on the side where the medicine bag 2 is located to block the spread of antibacterial drugs in the medicine bag 2.

[0025] A U-shaped elastic clip 14 is connected to the back of the protective plate 12. The elastic clip 14 is located on the edge of the protective plate 12 and the opening direction is towards the center of the protective plate 12. The two ends of the elastic clip 14 are provided with clamping plates 15, and the opposite side of the clamping plates 15 is provided with staggered protrusions 16.

[0026] After the second metal seat 13 is magnetically attracted to the rubber magnetic strip 10, the protective plate 12 and the breathable mesh 4 are in the same situation, causing the elastic plate 9 to bend towards the side away from the protective plate 12, forming a receiving cavity. This allows one of the medicine bag 2 and the drying bag 3 to be inside the receiving cavity, ensuring that the second metal seat 13 can be magnetically connected to the rubber magnetic strip 10. The other bag is pushed up by the receiving cavity and protrudes further. At this time, the elastic clip 14 is used to clamp the shoe opening of the shoe body 1, with the protective plate 12 located inside the shoe. The medicine bag 2 or the drying bag 3 is placed at the shoe opening for moisture absorption and deodorization. The elastic clip 14 clamps the shoe opening on both the inside and outside sides, and the protruding teeth 16 on the clip plate 15 press against the shoe opening to increase friction and prevent the elastic clip 14 from falling off the shoe opening.

[0027] The sponge sheet 7 is provided with honeycomb-shaped flow channels 17, and the medicine bag 2 is provided with a medicine injection hole 18 that connects to the flow channels 17.

[0028] The medicine bag 2 has an injection hole 18 that connects to the flow channel 17. An antibacterial solution can be injected into the injection hole 18 using a syringe. After entering the medicine bag 2, the antibacterial solution flows onto the flow channel 17 of the sponge sheet 7 and then flows and disperses along the honeycomb-shaped flow channel 17, making the sponge sheet 7 absorb the antibacterial solution more evenly.

[0029] The edge of the breathable mesh 4 is provided with a fitting groove that matches the first metal seat 11. The first metal seat 11 is placed in the fitting groove and is bonded to the inner wall of the fitting groove.

[0030] The first metal seat 11 is set in the fitting groove and is bonded to the inner wall of the fitting groove, so that the rubber magnetic strip 10 can fit with the edge of the breathable mesh 4, reducing the leakage of antibacterial liquid to the outside of the shoe body 1.

Claims

1. A type of women's athletic shoe that can absorb moisture and deodorize, characterized in that: The shoe includes a main body (1), a medicine bag (2) and a desiccant bag (3). The upper of the main body (1) is provided with a breathable mesh (4). The medicine bag (2) includes a waterproof fabric layer (5) and a mesh fabric layer (6) sewn on both sides. A sponge sheet (7) is provided inside the medicine bag (2). The sponge sheet (7) absorbs antibacterial liquid. The desiccant bag (3) is sewn on the outside of the waterproof fabric layer (5). An activated carbon layer (8) is provided inside the desiccant bag (3). An annular elastic plate (9) is connected to the edge of the waterproof fabric layer (5). A rubber magnetic strip (10) corresponding to the edge shape of the breathable mesh (4) is connected to the edge of the elastic plate (9). A plurality of first metal seats (11) with ferromagnetism are connected at intervals along the edge of the breathable mesh (4).

2. The women's sports shoes with moisture-absorbing and deodorizing properties according to claim 1, characterized in that: It also includes a protective plate (12), on the front edge of which a second metal seat (13) with ferromagnetic properties is fixed, the shape of which matches the rubber magnetic strip (10).

3. The women's sports shoes with moisture-absorbing and deodorizing properties according to claim 2, characterized in that: A U-shaped elastic clip (14) is connected to the back of the protective plate (12). The elastic clip (14) is located on the edge of the protective plate (12) and its opening direction is towards the center of the protective plate (12). The two ends of the elastic clip (14) are provided with clamping plates (15), and the opposite side of the clamping plates (15) is provided with staggered protrusions (16).

4. The moisture-absorbing and deodorizing women's sports shoes according to claim 1, characterized in that: The sponge sheet (7) is provided with honeycomb-shaped flow channels (17), and the medicine bag (2) is provided with an injection hole (18) that connects to the flow channels (17).

5. The moisture-absorbing and deodorizing women's sports shoes according to claim 1, characterized in that: The edge of the breathable mesh (4) is provided with a fitting groove that matches the first metal seat (11). The first metal seat (11) is set in the fitting groove and is bonded to the inner wall of the fitting groove.