Sweat-removing casual shoe

By incorporating a mesh upper, a sweat-absorbing layer, and an interlaced ventilation channel design in the sweat-wicking casual shoes, combined with elastic panels and a retaining structure, the problem of sweat being difficult to expel from inside the shoes is solved, enabling rapid evaporation and expulsion, thus improving the breathability and comfort of the shoes.

CN223489248UActive Publication Date: 2025-10-31PUTIAN XIELONG FOOTWEAR CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423073191.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-10-31
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing shoes cannot effectively expel sweat after the feet sweat, leading to the accumulation of heat and moisture inside the shoe and reducing wearing comfort.

Method used

A sweat-wicking casual shoe has been designed, featuring a mesh upper and insole. The insole has a sweat-absorbing layer and staggered ventilation channels, combined with an elastic sheet and a retaining structure, to accelerate the evaporation and expulsion of sweat through air circulation.

Benefits of technology

It effectively absorbs foot sweat, improves breathability and comfort, ensures rapid evaporation and expulsion of sweat, and enhances the wearing experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223489248U_ABST
    Figure CN223489248U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of shoes, in particular to a sweat-releasing casual shoe which comprises a sole and an upper fixedly mounted on the top side of the sole, the upper is a mesh surface, a shoe cavity is defined between the sole and the upper, an insole is placed in the shoe cavity, a sweat-absorbing layer is fixedly mounted on the top side of the insole, and the sweat-absorbing layer is fixedly mounted on the top side of the insole. A plurality of first exhaust channels are formed in the top side of the insole, the first exhaust channels are transversely and longitudinally arranged in a staggered mode, and the two ends of each first exhaust channel are communicated. The shoe has the effect of improving the comfort of wearing the shoe.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of footwear, and more particularly to a sweat-wicking casual shoe. Background Technology

[0002] As an indispensable part of daily life, shoes not only need to provide basic protection but also meet the need for comfort. With the improvement of people's living standards, the performance requirements for shoes are also increasing, especially for athletic shoes and casual shoes, where breathability and sweat-wicking properties have become key concerns for consumers.

[0003] Existing shoes mainly consist of a sole, insole, and upper. The upper is usually made of mesh or has a design with ventilation holes to enhance breathability, and the sweat from the feet can also be discharged through the upper.

[0004] When your feet sweat, the insole absorbs the sweat first, and then the sweat on the insole evaporates. However, because the feet cover the insole, the evaporated sweat is difficult to expel and continues to accumulate on the insole and the sole of the foot, thus reducing the comfort of wearing the shoes. Utility Model Content

[0005] To improve the comfort of wearing shoes, this application provides a sweat-wicking casual shoe.

[0006] This application provides a moisture-wicking casual shoe, which adopts the following technical solution:

[0007] A sweat-wicking casual shoe includes a sole and an upper fixedly installed on the top side of the sole. The upper is made of mesh. The sole and the upper form a shoe cavity. An insole is placed inside the shoe cavity. A sweat-absorbing layer is fixedly installed on the top side of the insole. Multiple first exhaust channels are provided on the top side of the insole. The multiple first exhaust channels are arranged in a crisscross pattern, and the two ends of the first exhaust channels are connected.

[0008] By employing the above-mentioned technical solutions, the sweat-absorbing layer on the insole can effectively absorb sweat from the soles of the feet, reducing the feeling of dampness and heat. The design of the primary ventilation channel allows air to enter from the shoe upper, and the moisture from evaporated sweat can be smoothly expelled, further improving the breathability and comfort of the shoe. The crisscrossing arrangement of the primary ventilation channels enhances airflow, ensuring that sweat is evenly distributed and quickly expelled, avoiding localized liquid accumulation and improving the wearing experience.

[0009] Optionally, the inner bottom wall of the first exhaust channel is provided with multiple ventilation holes, and an elastic sheet is provided on the bottom side of the insole. The elastic sheet is repeatedly bent along the length of the insole, the crest of the elastic sheet is fixedly connected to the insole, and the trough of the elastic sheet abuts against the sole of the shoe. The elastic sheet and the insole form multiple second exhaust channels.

[0010] By employing the above technical solution, the foot repeatedly squeezes the insole during walking, causing the insole to repeatedly compress the elastic sheet. This repeated compression and deformation of the elastic sheet accelerates airflow within the second exhaust channel. As air flows through the second exhaust channel, the vents guide the air from the second exhaust channel into the first exhaust channel, further accelerating airflow within the first exhaust channel. This, in turn, speeds up the expulsion of moisture from the evaporating sweat through the first exhaust channel, improving the shoe's breathability and comfort.

[0011] Optionally, a baffle is fixedly installed along the edge of the bottom side of the insole, and the bottom side of the baffle is higher than the inner wall of the bottom side of the second exhaust channel.

[0012] By adopting the above technical solution, when the insole compresses the elastic sheet, the barrier abuts against the top side of the sole, thereby preventing air from the second exhaust channel from being directly sprayed from both ends towards the shoe upper, thus increasing the amount of air entering the first exhaust channel from the second exhaust channel. By increasing the amount of air entering the first exhaust channel, the airflow rate inside the first exhaust channel is accelerated, thereby accelerating the expulsion of water vapor from the evaporation of sweat through the first exhaust channel into the shoe cavity.

[0013] Optionally, the elastic sheet is located at the sidewalls of both ends of the second exhaust channel, gradually approaching each other from top to bottom in an inclined manner.

[0014] By adopting the above technical solution, the elastic sheet is inclined on the side wall at both ends of the second exhaust channel, which facilitates reducing the obstruction of the enclosure to the air entering from both ends of the second exhaust channel when the elastic sheet is restored.

[0015] Optionally, the enclosure is inclined, gradually moving away from the elastic sheet from bottom to top.

[0016] By adopting the above technical solution, when the enclosure and the sole of the shoe are squeezed against each other, the enclosure is affected by the tilt of the enclosure and deforms into the elastic sheet. This makes it easier for the enclosure to abut against the side wall of the elastic sheet when the elastic sheet is compressed, thereby making it easier for the enclosure to block air from entering from both ends of the second exhaust channel.

[0017] Optionally, the diameter of the vent hole gradually increases from top to bottom.

[0018] By adopting the above technical solution, when the air inside the second exhaust channel enters the first exhaust channel through the vent, the air pressure increases due to the change in the diameter of the vent, which facilitates the spraying of air onto the soles of the feet, allowing the sweat on the soles of the feet to evaporate more quickly.

[0019] Optionally, multiple locking blocks are fixedly installed on the outer wall of the trough of the elastic sheet, and a slot for the locking blocks to be inserted is provided on the top side of the shoe sole.

[0020] By adopting the above technical solution, the card block is inserted into the card slot, thereby playing an anti-slip role for the insole.

[0021] Optionally, the bottom side of the card block is arc-shaped.

[0022] By adopting the above technical solution, when the insole is placed into the shoe cavity, the locking block needs to be inserted into the locking slot. The bottom side of the locking block is curved, which facilitates the insertion of the locking block into the locking slot.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. The sweat-absorbing layer effectively absorbs sweat produced by the soles of the feet, preventing sweat from accumulating on the surface of the insole and thus improving wearing comfort. Then, the sweat evaporated from the sweat-absorbing layer enters the first exhaust channel, and then the sweat is discharged from both ends of the first exhaust channel towards the shoe upper, and is discharged through the shoe upper, thus improving wearing comfort.

[0025] 2. When walking, the elastic sheet is repeatedly compressed and deformed, thereby accelerating the airflow inside the second exhaust channel. The second exhaust channel is connected to the first exhaust channel through the vent, thereby accelerating the airflow inside the first exhaust channel, and thus facilitating the discharge of evaporated sweat from both ends of the first exhaust channel. Attached Figure Description

[0026] Figure 1 This is a cross-sectional view along the length of the sweat-wicking casual shoe according to an embodiment of this application;

[0027] Figure 2 yes Figure 1 Enlarged view at point A;

[0028] Figure 3 This is a schematic diagram of the structure of the insole according to an embodiment of this application;

[0029] Figure 4 yes Figure 3 Sectional view at AA.

[0030] Explanation of reference numerals in the attached diagram: 1. Sole; 2. Insole; 3. Upper; 4. Shoe cavity; 5. Sweat-absorbing layer; 6. First ventilation channel; 7. Second ventilation channel; 8. Elastic sheet; 9. Enclosure; 10. Locking block; 11. Locking groove; 12. Vent hole. Detailed Implementation

[0031] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.

[0032] This application discloses a sweat-wicking casual shoe.

[0033] Reference Figure 1 , Figure 2A type of sweat-wicking casual shoe includes a sole 1, an insole 2, and an upper 3. The upper 3 is made of mesh to improve its breathability. The upper 3 is fixedly installed on the top side of the sole 1, and the sole 1 and the upper 3 together form a shoe cavity 4. The insole 2 is located inside the shoe cavity 4, and a sweat-absorbing layer 5 is fixedly installed on the top side of the insole 2. The sweat-absorbing layer 5 is made of absorbent materials such as cotton or sponge. After the feet sweat, the sweat-absorbing layer 5 absorbs the sweat from the feet, thus helping to keep the feet dry.

[0034] Reference Figure 2 , Figure 3 The insole 2 has multiple first ventilation channels 6 on its top side, which are arranged in a crisscross pattern and are connected at both ends. Sweat from the absorbent layer 5 evaporates and enters the first ventilation channels 6. The sweat then flows from both ends of the first ventilation channels 6 towards the upper 3, where it is wicked away through the mesh upper 3, thus improving the comfort of wearing the shoe.

[0035] An elastic sheet 8 is provided on the bottom side of the insole 2, and the elastic sheet 8 is repeatedly bent along the length of the insole 2. The crests of the elastic sheet 8 are fixedly connected to the insole 2, and the troughs of the elastic sheet 8 abut against the sole 1. The elastic sheet 8 and the insole 2 form multiple second exhaust channels 7. The inner bottom wall of the first exhaust channel 6 has multiple vent holes 12 that connect to the second exhaust channels 7.

[0036] During walking, the foot repeatedly squeezes the insole 2, which in turn repeatedly squeezes the elastic sheet 8. When the insole 2 squeezes the elastic sheet 8, the internal space of the second exhaust channel 7 decreases, and some of the air inside the second exhaust channel 7 enters the first exhaust channel 6 through the vent 12, thereby accelerating the airflow speed inside the first exhaust channel 6.

[0037] When the elastic piece 8 is released from the insole 2, the elastic piece 8 returns to its original position, the internal space of the second exhaust channel 7 increases, some air flows from the upper 3 to both ends of the second exhaust channel 7 and then enters, and the other part of the air flows from the first exhaust channel 6 to the second exhaust channel 7, thereby accelerating the air flow rate inside the first exhaust channel 6.

[0038] By increasing the airflow speed inside the first exhaust channel 6, the evaporated sweat can flow along the first exhaust channel 6 and be discharged from the shoe upper 3, thereby improving the comfort of wearing the shoes.

[0039] Reference Figure 3 , Figure 4 A retaining wall 9 is fixedly installed along the edge of the bottom side of the insole 2, and the bottom side of the retaining wall 9 is higher than the inner wall of the bottom side of the second exhaust channel 7. The elastic sheet 8 is located on the side walls at both ends of the second exhaust channel 7, gradually approaching each other from top to bottom and being inclined. The retaining wall 9 is located gradually away from the elastic sheet 8 from bottom to top and is inclined.

[0040] When the insole 2 compresses the elastic sheet 8, the insole 2 moves towards the sole 1. When the baffle 9 is against the sole 1, influenced by the tilt direction of the baffle 9, the baffle 9 deforms towards the elastic sheet 8, thereby blocking air from entering from both ends of the second exhaust channel 7. Afterwards, the insole 2 continues to compress the elastic sheet 8, and the air inside the second exhaust channel 7 is discharged from the vent 12 into the first exhaust channel 6, thereby increasing the amount of air entering the first exhaust channel 6, and thus accelerating the airflow inside the first exhaust channel 6, facilitating the expulsion of evaporated sweat.

[0041] When the insole 2 is released and the elastic plate 8 returns to its original position, the retaining wall 9 separates from the sole 1. By tilting the side walls of the elastic plate 8 at both ends of the second exhaust channel 7, the obstruction of the retaining wall 9 from the air entering from both ends of the second exhaust channel 7 when the elastic plate 8 returns to its original position is reduced.

[0042] Reference Figure 2 The diameter of the vent 12 gradually increases from top to bottom. When air inside the second exhaust channel 7 enters the first exhaust channel 6 through the vent 12, it is affected by the change in the diameter of the vent 12, thereby increasing the air pressure. Afterwards, the air passes through the sweat-absorbing layer 5 and is sprayed onto the soles of the feet, thus improving the comfort of wearing the shoes.

[0043] Multiple locking blocks 10 are fixedly installed on the outer wall of the trough of the elastic sheet 8. The top side of the sole 1 has a slot 11 for the locking blocks 10 to be inserted into, and the bottom side of the locking block 10 is arc-shaped. The locking block 10 cooperates with the slot 11 to play a limiting role, thereby reducing the possibility of the sole 1 slipping inside the shoe cavity 4.

[0044] The implementation principle of a sweat-wicking casual shoe according to an embodiment of this application is as follows: After sweat evaporates, it enters the first exhaust channel 6 from the sweat-absorbing layer 5. The two ends of the first exhaust channel 6 face the shoe upper 3. Since the shoe upper 3 is made of mesh and has breathable properties, the evaporated sweat is discharged from the two ends of the first exhaust channel 6 to the shoe upper 3, and then the sweat passes through the shoe upper 3 and is discharged, thereby facilitating the discharge of sweat and improving the comfort of wearing the shoes.

[0045] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A type of sweat-wicking casual shoe, characterized in that: The shoe includes a sole (1) and an upper (3) fixedly installed on the top side of the sole (1). The upper (3) is made of mesh. The sole (1) and the upper (3) form a shoe cavity (4). An insole (2) is placed inside the shoe cavity (4). A sweat-absorbing layer (5) is fixedly installed on the top side of the insole (2). Multiple first exhaust channels (6) are provided on the top side of the insole (2). The multiple first exhaust channels (6) are arranged in a crisscross pattern. The two ends of the first exhaust channels (6) are connected.

2. The sweat-wicking casual shoe according to claim 1, characterized in that: The inner bottom wall of the first exhaust channel (6) is provided with multiple ventilation holes (12). An elastic sheet (8) is provided on the bottom side of the insole (2). The elastic sheet (8) is repeatedly bent along the length of the insole (2). The crest of the elastic sheet (8) is fixedly connected to the insole (2). The trough of the elastic sheet (8) abuts against the sole (1). The elastic sheet (8) and the insole (2) form multiple second exhaust channels (7).

3. A sweat-wicking casual shoe according to claim 2, characterized in that: The insole (2) has a barrier (9) fixedly installed along the edge of its bottom side, and the bottom side of the barrier (9) is higher than the inner wall of the bottom side of the second exhaust channel (7).

4. A sweat-wicking casual shoe according to claim 3, characterized in that: The elastic sheet (8) is located on the side walls at both ends of the second exhaust channel (7) and is inclined from top to bottom.

5. A sweat-wicking casual shoe according to claim 4, characterized in that: The enclosure (9) is inclined and gradually moves away from the elastic sheet (8) from bottom to top.

6. A sweat-wicking casual shoe according to claim 2, characterized in that: The diameter of the vent (12) gradually increases from top to bottom.

7. A sweat-wicking casual shoe according to claim 2, characterized in that: Multiple locking blocks (10) are fixedly installed on the outer wall of the trough of the elastic sheet (8), and a slot (11) for the locking blocks (10) to be inserted is provided on the top side of the sole (1).

8. A sweat-wicking casual shoe according to claim 7, characterized in that: The bottom side of the card block (10) is arc-shaped.