Ventilating and moisture-removing casual leather shoes

CN224761393UActive Publication Date: 2026-09-18PUTIAN APEX FOOTWEAR CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521286358.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2026-09-18
Estimated Expiration
2035-06-23

AI Technical Summary

Technical Problem

[0003]但由于皮革面料的透气性能一般,使得穿着者的脚部容易感到闷热,影响了穿着者的使用体验

Benefits of technology

1.透气网布层将穿着者脚部与皮革层相隔离开,透气网布层中的孔隙结构,可以将穿着者脚部表面积聚的热量、汗渍等引导至透气网布层中,并通过皮革层上的第一透气孔排放至外界中;即通过在皮革层内侧设置透气网布层,即保留了皮革层的质感和耐用性,又提高了皮面休闲鞋的排湿透气性能,以减少穿着者脚部的闷热感,提高穿着者的舒适性;

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224761393U_ABST
    Figure CN224761393U_ABST
Patent Text Reader

Abstract

The application relates to the technical field of shoes, in particular to a skin casual shoe with moisture removal and air permeation, which comprises a shoe sole body and a shoe upper body, the shoe upper body is fixed on the shoe sole body; along the inside-to-outside direction of the shoe upper body, the shoe upper body comprises a breathable mesh layer and a leather layer in sequence, the leather layer is provided with a plurality of first air permeation holes, and the breathable mesh layer is used for contacting the feet. In the application, the breathable mesh layer is arranged on the inside of the leather layer, the texture and durability of the leather layer are retained, the moisture removal and air permeation performance of the skin casual shoe is improved, the stuffiness of the feet of a wearer is reduced, and the comfort of the wearer is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of footwear technology, and in particular to a moisture-wicking and breathable leather casual shoe. Background Technology

[0002] In the field of casual footwear technology, the uppers of casual shoes can be made of leather to enhance their texture.

[0003] However, due to the generally poor breathability of leather fabric, the wearer's feet are prone to feeling stuffy and hot, which affects the wearer's user experience. Utility Model Content

[0004] In order to improve the moisture-wicking and breathability of leather casual shoes, this application provides a moisture-wicking and breathable leather casual shoe.

[0005] This application provides a moisture-wicking and breathable leather casual shoe, which adopts the following technical solution: A moisture-wicking and breathable leather casual shoe includes a sole body and an upper body, wherein the upper body is fixed to the sole body; along the inner side to the outer side of the upper body, the upper body sequentially includes a breathable mesh layer and a leather layer, wherein the leather layer has a plurality of first ventilation holes, and the breathable mesh layer is used to contact the foot.

[0006] By employing the above technical solution, the breathable mesh layer isolates the wearer's foot from the leather layer. The porous structure of the breathable mesh layer guides heat and sweat accumulated on the surface of the wearer's foot into the mesh layer, which is then released to the outside through the first ventilation hole on the leather layer. In other words, by setting a breathable mesh layer on the inside of the leather layer, the texture and durability of the leather layer are preserved while improving the moisture-wicking and breathability of the leather casual shoe, reducing stuffiness on the wearer's feet and enhancing comfort.

[0007] Optionally, the leather layer has a nano-waterproof coating on the side away from the breathable mesh layer.

[0008] By employing the above technical solution, it is found that the leather layer is not water-resistant, making it prone to damage upon contact with water. However, by applying a nano-waterproof coating to the surface of the leather layer, the lifespan of the leather layer and the aesthetic appearance of the shoe upper can be extended.

[0009] Optionally, the breathable mesh layer has a moisture-absorbing surface layer on the side away from the leather layer.

[0010] By adopting the above technical solution, a moisture-absorbing surface layer is set on the inner side of the breathable mesh layer. The moisture-absorbing surface layer has good water absorption performance and can absorb the sweat from the wearer's feet in time and transfer the sweat to the breathable mesh layer; thereby further improving the moisture absorption performance of the shoe upper.

[0011] Optionally, the moisture-absorbing surface layer is provided with a plurality of second air-permeable holes.

[0012] By adopting the above technical solution and opening a second ventilation hole on the moisture-absorbing surface layer, the breathability of the shoe upper can be further improved, which is conducive to the discharge of heat inside the shoe cavity.

[0013] Optionally, the moisture-absorbing surface layer is one of pure cotton fabric, modal fabric, ice silk fabric, or bamboo fiber fabric.

[0014] By adopting the above technical solution, the fabric not only has good sweat absorption properties, but also provides a cool feeling for the wearer's feet, improving the comfort of the wearer's feet.

[0015] Optionally, the sole body includes a wear-resistant outsole and an elastic midsole, the elastic midsole is fixedly mounted on the wear-resistant outsole, and the elastic midsole is fixedly connected to the upper body; the wear-resistant outsole has a recessed area at the arch, so that the elastic midsole comes into contact with the outside air; the elastic midsole has a third ventilation hole through it, the vertical projection of the third ventilation hole is located in the recessed area, and the outside air enters the shoe cavity through the third ventilation hole.

[0016] By adopting the above technical solution, outside air can pass through the third ventilation hole, and the high humidity and high temperature gas inside the shoe cavity can also be discharged to the outside through the third ventilation hole; that is, by opening the third ventilation hole in the elastic midsole, the moisture wicking and breathability performance of leather casual shoes is further improved.

[0017] Optionally, the sole body also includes an elastic element embedded in the elastic midsole, and the elastic element is arranged around the third ventilation hole; the elastic element is compressed and deformed in the vertical direction.

[0018] By adopting the above technical solution, the elastic element can provide good support, thereby reducing excessive deformation of the elastic midsole around the third ventilation hole and improving the service life of leather casual shoes.

[0019] Optionally, the elastic element is a corrugated metal sleeve, and the corrugated metal sleeve and the elastic insole are provided with a distance.

[0020] By adopting the above technical solution, the metal corrugated sleeve has good support performance, which can reduce excessive deformation of the elastic midsole around the third ventilation hole and improve the service life of leather casual shoes. In summary, this application includes at least one of the following beneficial technical effects: 1. The breathable mesh layer separates the wearer's foot from the leather layer. The porous structure of the breathable mesh layer can guide the heat and sweat accumulated on the surface of the wearer's foot into the breathable mesh layer, and then release them to the outside through the first vent on the leather layer. In other words, by setting a breathable mesh layer on the inside of the leather layer, the texture and durability of the leather layer are preserved, while the moisture-wicking and breathability of the leather casual shoes are improved, so as to reduce the stuffiness of the wearer's feet and improve the wearer's comfort. 2. Because the leather layer is not water-resistant, it is easily damaged when it comes into contact with water. However, by applying a nano-waterproof coating to the surface of the leather layer, the lifespan of the leather layer and the aesthetic appearance of the shoe upper can be extended. 3. Outside air can pass through the third ventilation hole, and the high humidity and temperature gas inside the shoe cavity can also be discharged to the outside through the third ventilation hole; that is, by opening the third ventilation hole in the elastic midsole, the moisture wicking and breathability of the leather casual shoes are further improved. Attached Figure Description

[0021] Figure 1 This is a structural schematic diagram of the leather casual shoe in Example 1.

[0022] Figure 2 This is a schematic diagram illustrating the structure of the shoe upper in Example 1.

[0023] Figure 3 This is a schematic diagram illustrating the structure of the shoe upper in Example 2.

[0024] Figure 4 This is a schematic diagram illustrating the structure of the shoe sole in Example 3. Explanation of reference numerals in the attached diagram: 1. Outsole body; 11. Abrasion-resistant outsole; 111. Recessed area; 12. Elastic midsole; 121. Third ventilation hole; 13. Metal corrugated sleeve; 2. Upper body; 21. Breathable mesh layer; 22. Leather layer; 221. First ventilation hole; 23. Nano waterproof coating; 24. Moisture-absorbing surface layer; 241. Second ventilation hole. Detailed Implementation

[0025] The following is in conjunction with the appendix Figure 1 -4 provides further detailed description of this application.

[0026] Example 1 This application discloses a moisture-wicking and breathable leather casual shoe. (See also...) Figure 1 The moisture-wicking and breathable leather casual shoes include a sole body 1 and an upper body 2, with the upper body 2 fixed to the sole body 1.

[0027] Reference Figure 1The sole body 1 includes a wear-resistant outsole 11 and an elastic midsole 12, with the elastic midsole 12 fixed on the wear-resistant outsole 11. In this embodiment, the wear-resistant outsole 11 is made of rubber, giving it good wear resistance; the elastic midsole 12 is made of EVA foam, giving it good elasticity.

[0028] Reference Figure 1 and Figure 2 Along the inner to outer side of the shoe upper body 2, the shoe upper body 2 sequentially includes a breathable mesh layer 21, a leather layer 22, and a nano-waterproof coating 23. The leather layer 22 has several first ventilation holes 221. The breathable mesh layer 21 is used for contact with the foot. In this embodiment, the first ventilation holes 221 of the leather layer 22 are located in the toe area and the waist area of ​​the shoe upper body 2; this reduces the impact of the first ventilation holes 221 on the structural strength of the leather layer 22, reduces the deformation of the shoe upper body 2, and improves the texture of the leather casual shoe.

[0029] Reference Figure 2 The breathable mesh layer 21 is made of breathable mesh fabric, which gives the breathable mesh layer 21 a large number of pore structures.

[0030] Reference Figure 2 The leather can be natural leather or artificial leather. Natural leather can be made of materials such as cowhide or pigskin, while artificial leather can be made of polyvinyl chloride artificial leather, polyurethane artificial leather, microfiber polyurethane synthetic leather, etc. In this embodiment, the leather layer 22 is made of natural cowhide. Natural cowhide has certain natural gaps, which can allow for a certain amount of air circulation and moisture expulsion, thereby improving the moisture-wicking and breathability of the shoe upper body 2. In other embodiments, the leather layer 22 can also be made of other materials. This embodiment does not limit the specific material of the leather layer 22.

[0031] Reference Figure 2 Because the leather layer 22 is not water-resistant, it is easily damaged when it comes into contact with water. However, by applying a nano-waterproof coating 23 to the surface of the leather layer 22, the lifespan of the leather layer 22 and the aesthetics of the shoe upper 2 can be extended. The nano-waterproof coating 23 can be made of nano-coating materials such as nano-silica or siloxane polymers.

[0032] The implementation principle of a moisture-wicking and breathable leather casual shoe according to an embodiment of this application is as follows: Reference Figure 1 and Figure 2 The breathable mesh layer 21 separates the wearer's feet from the leather layer 22. The porous structure in the breathable mesh layer 21 can guide the heat and sweat accumulated on the surface of the wearer's feet into the breathable mesh layer 21 and release them to the outside through the first ventilation hole 221 on the leather layer 22.

[0033] By setting a breathable mesh layer 21 on the inside of the leather layer 22, the texture and durability of the leather layer 22 are preserved, while the moisture-wicking and breathability of the leather casual shoes are improved, so as to reduce the stuffiness of the wearer's feet and improve the wearer's comfort.

[0034] Example 2 The difference between Example 2 and Example 1 is as follows: Reference Figure 3 The breathable mesh layer 21 has a moisture-absorbing surface layer 24 on the side away from the leather layer 22, and the moisture-absorbing surface layer 24 has several second ventilation holes 241. The moisture-absorbing surface layer 24 is one of pure cotton fabric, modal fabric, ice silk fabric, and bamboo fiber fabric; the above-mentioned fabrics not only have good sweat absorption properties, but also provide the wearer's feet with a cool feeling, improving the comfort of the wearer's feet.

[0035] The implementation principle of a moisture-wicking and breathable leather casual shoe according to an embodiment of this application is as follows: Reference Figure 3 By providing a moisture-absorbing surface layer 24 on the inner side of the breathable mesh layer 21, the moisture-absorbing surface layer 24 has good water absorption performance, which can absorb the sweat stains on the wearer's feet in time and transfer the sweat stains to the breathable mesh layer 21; thereby further improving the moisture absorption performance of the shoe upper body 2.

[0036] By opening a second ventilation hole 241 on the moisture-absorbing surface layer 24, the breathability of the shoe upper body 2 can be further improved, which is conducive to the discharge of heat inside the shoe cavity.

[0037] Example 3 The difference between Example 3 and Example 2 is as follows: Reference Figure 4 The wear-resistant outsole 11 has a recessed area 111 at the arch, allowing the elastic midsole 12 to contact the outside air. A third ventilation hole 121 is provided through the elastic midsole 12, with its vertical projection positioned within the recessed area 111, allowing outside air to enter the shoe cavity through the third ventilation hole 121. In this embodiment, the cross-sectional area of ​​the third ventilation hole 121 decreases along the vertically upward direction. Therefore, during walking, outside air can pass through the third ventilation hole 121, and high-humidity, high-temperature air inside the shoe cavity can also be released to the outside through the third ventilation hole 121; that is, by providing a third ventilation hole 121 in the elastic midsole 12, the moisture-wicking and breathability performance of the leather casual shoe is further improved. It is worth noting that the leather casual shoe in this embodiment is mainly used in indoor environments to reduce the impact of surface water on the leather casual shoe.

[0038] Reference Figure 4The leather casual shoes also include elastic elements. These elastic elements are embedded in the elastic midsole 12 and surround the third ventilation hole 121. The elastic elements deform under vertical compression. Therefore, when the elastic midsole 12 around the third ventilation hole 121 is subjected to force, the elastic elements provide good support, reducing excessive deformation of the elastic midsole 12 around the third ventilation hole 121 and improving the lifespan of the leather casual shoes.

[0039] In this embodiment, the elastic element is a corrugated metal sleeve 13, and a distance is provided between the corrugated metal sleeve 13 and the elastic midsole 12. The corrugated metal sleeve 13 has good support performance, which can reduce excessive deformation of the elastic midsole 12 around the third ventilation hole 121 and improve the service life of the leather casual shoes. In other embodiments, the elastic element can also be an elastic structure such as a spiral metal tube.

[0040] 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 moisture-wicking and air-permeable casual leather shoe, characterized in that: The shoe includes a sole body (1) and an upper body (2), the upper body (2) being fixed on the sole body (1); along the inner to outer direction of the upper body (2), the upper body (2) includes a breathable mesh layer (21) and a leather layer (22), the leather layer (22) having a plurality of first ventilation holes (221), and the breathable mesh layer (21) being used to contact the foot.

2. The moisture-wicking, breathable casual leather shoe according to claim 1, wherein: The leather layer (22) has a nano-waterproof coating (23) on the side away from the breathable mesh layer (21).

3. The moisture-wicking, breathable casual leather shoe of claim 1, wherein: The breathable mesh layer (21) has a moisture-absorbing surface layer (24) on the side away from the leather layer (22).

4. The moisture-wicking, breathable casual leather shoe according to claim 3, wherein: The moisture-absorbing surface layer (24) is provided with a number of second air vents (241).

5. The moisture-wicking and breathable leather casual shoe according to claim 3, characterized in that: The moisture-absorbing surface layer (24) is one of pure cotton fabric, modal fabric, ice silk fabric, or bamboo fiber fabric.

6. The moisture-wicking, breathable casual leather shoe of claim 1, wherein: The sole body (1) includes a wear-resistant outsole (11) and an elastic midsole (12). The elastic midsole (12) is fixed on the wear-resistant outsole (11) and is fixedly connected to the upper body (2). The wear-resistant outsole (11) has a recessed area (111) at the arch, so that the elastic midsole (12) is in contact with the outside air. The elastic midsole (12) is provided with a third ventilation hole (121). The vertical projection of the third ventilation hole (121) is set in the recessed area (111), and the outside air enters the shoe cavity through the third ventilation hole (121).

7. The moisture-wicking, breathable casual leather shoe according to claim 6, wherein: The sole body (1) also includes an elastic element, which is embedded in the elastic midsole (12) and is arranged around the third ventilation hole (121); the elastic element is compressed and deformed in the vertical direction.

8. The moisture-wicking, breathable casual leather shoe according to claim 7, wherein: The elastic element is a corrugated metal sleeve (13), and there is a distance between the corrugated metal sleeve (13) and the elastic insole (12).