Breathable degerming insole
By using urlagra materials with sterilization effect in the insole and designing a support layer for breathable mesh, the problem of insufficient breathability and antibacterial and odor resistance of the existing insoles is solved, and the breathability, antibacterial and anti-odor functions of the insoles are realized, improving the comfort and health of the use.
Patent Information
- Application Number
- CN202421837165.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-31
AI Technical Summary
Existing insoles have shortcomings in breathability and antibacterial and odor resistance, which leads to odor in the shoes, breeds bacteria, and may cause diseases such as foot odor or athlete's foot.
A breathable sterilization insole is designed, including a sole contact layer and a support layer arranged sequentially from top to bottom. The support layer is made of a material with a sterilization effect, such as Ulagra, which is combined with the sole contact layer by bonding or pressing. The sole support block and through hole are provided on the bottom of the support layer to improve breathability.
It realizes the breathability, antibacteriality and odor resistance of the insole, quickly absorbs moisture and reduces bacterial growth. Long-term use can eliminate fatigue and treat athlete's foot, and has the effect of fragrance and long-lasting odor removal.
Smart Images

Figure CN222941870U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of insoles, in particular to a breathable and sterilizing insole. Background Art
[0002] Insoles are usually made to match the outsole and midsole of the shoe. The size plate is made according to the last or panel, and the shape is made to match the sole. There are many types and functions of insoles. In addition to comfort and beautiful appearance, people also have functional requirements for warmth, elastic support, slight height increase, breathability, deodorization, etc. for the choice of insoles. For people who sweat easily, breathable, antibacterial and deodorizing insoles become the first choice.
[0003] Existing insoles usually use a sponge layer or a latex layer as the base layer, and then set an anti-slip fabric layer on the base layer. Some insoles will add some antibacterial substances for antibacterial purposes, but most of the antibacterial materials added to existing insoles cannot truly achieve antibacterial and odor-proof properties. Moreover, the sponge layer, latex layer and fabric cannot truly absorb moisture. Poor air permeability will cause odor to be emitted from the shoes and breed bacteria. Most of the bacteria will be adsorbed on the insoles, which will cause foot odor or athlete's foot and other diseases in the long run.
[0004] The utility model aims to provide a breathable and antibacterial insole, which achieves the functions of breathability, antibacterial and deodorization. Utility Model Content
[0005] In order to solve the above problems, the utility model provides a breathable and antibacterial insole, including an insole body 1, the insole body 1 includes a plantar contact layer 2 and a support layer 3 arranged in sequence from top to bottom, the support layer 3 is made of a material with a sterilization effect, and is combined with the plantar contact layer 2 into one body by bonding or pressing, and a plantar support block 31 is formed on the bottom surface of the support layer 3 at least corresponding to the forefoot part, and a plurality of through holes 32 are arranged on the plantar support block 31, and each through hole serves as a breathable mesh and is covered by the plantar contact layer 2 on the surface.
[0006] The utility model can provide better support effect for the forefoot by forming a sole support block 31 at the support layer 3 corresponding to the forefoot. The sole support block 31 is provided with a breathable mesh, which can improve the air permeability of the insole, quickly absorb moisture, and reduce bacterial growth. The support layer 3 is made of a material with a sterilization effect, which can inhibit bacteria and achieve the functions of breathability, antibacterial and deodorization.
[0007] Preferably, the support layer 3 is pressed from Ula grass. The support layer 3 is pressed from Ula grass, which has a strong inhibitory effect on fungi and bacteria. Long-term close-fitting use can eliminate fatigue and treat athlete's foot. In addition, Ula grass has excellent adsorption, absorbs moisture, automatically adjusts and maintains moisture, keeps warm in winter and cool in summer, and has a lasting fragrance and removes odor.
[0008] Preferably, a heel support block 33 is formed on the bottom surface of the support layer 3 at a position corresponding to the heel. The heel support block 33 is arranged at a position corresponding to the heel of the support layer 3 to support the heel and improve the comfort of the heel.
[0009] Preferably, the middle part of the sole contact layer 2 corresponding to the arch of the foot is convex upward to form an arch support block 22. The arch support block 22 can support the arch of the foot, protect the arch of the foot, and prevent stepping on empty feet.
[0010] Preferably, a first groove 311 is formed on the outer periphery of the area corresponding to the forefoot on the bottom surface of the support layer 3, and the portion in the first groove 311 serves as the sole support block 31. The sole support block 31 is separated from other areas of the support layer 3 by the first groove 311, so that the sole support block 31 forms an independent block surface on the bottom surface of the support layer 3, which can increase the bending force during walking and provide better support for the sole of the foot, that is, the first groove 311 is formed around the sole support block 31, and as a relatively independent area, the sole support block 31 will not be deformed together with the entire insole, and thus provides better support.
[0011] Preferably, a second groove 331 is formed on the outer periphery of the area corresponding to the heel on the bottom surface of the support layer 3, and the portion in the second groove 331 serves as the heel support block 33. The bottom of the heel support block 33 is separated from other areas of the support layer 3 by the second groove 331, so that the heel support block 33 forms an independent block surface on the bottom surface of the support layer 3, which can increase the bending force during walking and provide better support for the heel.
[0012] Preferably, a plurality of circular convex points 21 are evenly formed on the front half of the sole contact layer 2. The front half of the sole contact layer is evenly provided with a plurality of circular convex points 21, which can play a role in buffering and shock absorbing the sole of the foot, and also has the function of wrapping the sole of the foot and massaging, thereby improving the comfort of the foot.
[0013] Preferably, a plurality of protrusions 23 are formed at the rear portion of the sole contact layer 2 corresponding to the heel, and the plurality of protrusions 23 are arranged in a cat's paw pattern.
[0014] Preferably, the sole contact layer 2 is made of genuine leather. The sole contact layer is made of genuine leather, which can provide better softness and adaptability, thereby increasing the comfort of wearing. Genuine leather has a natural pore structure, which can regulate the humidity and temperature in the shoe and keep the feet dry and comfortable.
[0015] Preferably, the sole contact layer 2 is made of pigskin. The sole contact layer 2 is made of pigskin, which can improve the air permeability, softness and elasticity of the insole, help the moisture of the foot to be discharged, keep the foot dry and comfortable, effectively prevent foot odor and bacterial growth, and improve comfort and durability. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 . Schematic diagram of the top surface structure of the breathable and antibacterial insole;
[0017] Figure 2 . Schematic diagram of the bottom structure of the breathable and antibacterial insole;
[0018] Figure 3 . Figure 1 Schematic diagram of the AA section structure.
[0019] In the figure, 1. insole body, 2. sole contact layer, 21. round convex point, 22. arch support block, 23. convex block, 3. support layer, 31. sole support block, 311. first groove, 32. through hole, 33. heel support block, 331. second groove. DETAILED DESCRIPTION
[0020] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings.
[0021] like Figure 1 , Figure 2 and Figure 3 As shown, the breathable and antibacterial insole comprises an insole body 1, wherein the insole body 1 comprises a sole contact layer 2 and a support layer 3 arranged in sequence from top to bottom, and the support layer 3 is integrated with the sole contact layer 2 by bonding or pressing.
[0022] The support layer 3 is pressed from Ula grass, which has a strong inhibitory effect on fungi and bacteria. Long-term close-fitting use can eliminate fatigue and treat athlete's foot. Ula grass has excellent adsorption, absorbs moisture, automatically adjusts and maintains moisture, keeps warm in winter and cool in summer, and also has a lasting fragrance and removes odor.
[0023] The sole contact layer 2 is a dermis layer. In this embodiment, the sole contact layer 2 is made of pigskin. The sole contact layer is made of pigskin, which can improve the air permeability, softness and elasticity of the insole, help the moisture of the foot to be discharged, keep the foot dry and comfortable, effectively prevent foot odor and bacterial growth, and improve comfort and durability. In other embodiments, the sole contact layer 2 can also be made of other dermis, such as cowhide, sheepskin, etc.
[0024] A plurality of circular convex points 21 are evenly arranged on the surface of the front half of the sole contact layer 2. The circular convex points 21 can play a role of buffering and shock absorption on the position of the sole of the foot, and also have the function of wrapping the sole of the foot and massaging, thereby improving the comfort of the foot.
[0025] The position of the sole contact layer 2 corresponding to the arch of the foot is provided with an arch support block 22. The arch of the foot can be supported by the arch support block 22 to prevent stepping on air.
[0026] A plurality of protrusions 23 are formed in the rear portion of the sole contact layer 2 corresponding to the heel area, and the plurality of protrusions 23 are arranged in a cat's paw pattern.
[0027] A sole support block 31 is formed on the bottom surface of the support layer 3 at least corresponding to the forefoot portion, and a plurality of through holes 32 are arranged on the sole support block 31 . Each through hole is covered by the sole contact layer 2 on the surface as a breathable mesh.
[0028] By forming a sole support block 31 at the supporting layer 3 corresponding to the forefoot, the forefoot can be better supported. A breathable mesh is provided on the sole support block 31 to improve the breathability of the insole, quickly absorb moisture, and reduce bacterial growth.
[0029] A first groove 311 is formed on the outer periphery of the area corresponding to the forefoot area on the bottom surface of the support layer 3, and the area within the first groove 311 serves as the sole support block 31. The first groove 311 separates the bottom of the sole support block 31 from other areas of the support layer 3, so that the sole support block 31 forms an independent block surface on the bottom surface of the support layer 3, which can increase the bending force during walking and provide better local support for the sole. That is, the first groove 311 is formed around the sole support block 31, and as a relatively independent area, the sole support block 31 will not deform together with the entire insole, and thus provide better support.
[0030] Figure 3 The sizes of the first groove 311 and the second groove 331 are only for reference, and the sizes in the figure do not represent the actual sizes.
[0031] A heel support block 33 is formed on the bottom surface of the support layer 3 at a position corresponding to the heel. The heel support block 33 is arranged at a position corresponding to the heel of the support layer 3 to support the heel and improve the comfort of the heel.
[0032] A second groove 331 is formed on the outer periphery of the area corresponding to the heel portion on the bottom surface of the support layer 3, and the area within the second groove 331 serves as the heel support block 33. The bottom of the heel support block 33 is separated from other areas of the support layer 3 by the second groove 331, so that the heel support block 33 forms an independent block surface on the bottom surface of the support layer 3, which can increase the bending force during walking and provide better local support for the heel.
[0033] The utility model arranges a support layer 3 at the bottom of the sole contact layer 2. The support layer 3 is pressed from Ula grass and can inhibit fungi and bacteria. Long-term close-fitting use can eliminate fatigue and treat athlete's foot. It has excellent adsorption capacity for moisture and can automatically adjust and maintain the moisture level. It is warm in winter and cool in summer. It also has a lasting fragrant smell and can remove odors.
[0034] It should be noted that the above embodiments illustrate the present invention rather than limit the present invention.
Claims
1. Breathable and sterilizing insole, characterized in that: It comprises an insole body (1), The insole body (1) comprises a sole contact layer (2) and a support layer (3) which are arranged in sequence from top to bottom; the support layer (3) is made of a material having a sterilization effect and is integrated with the sole contact layer (2) by bonding or pressing. A sole support block (31) is formed on the bottom surface of the support layer (3) at least corresponding to the forefoot portion, and a plurality of through holes (32) are provided on the sole support block (31), each through hole (32) serving as a breathable mesh hole on the surface of the support layer (3) and covered by the sole contact layer (2).
2. The breathable and sterilizing insole according to claim 1, characterized in that: The support layer (3) is formed by pressing Ula grass.
3. The breathable and sterilizing insole according to claim 2, characterized in that: A heel support block (33) is formed on the bottom surface of the support layer (3) at a position corresponding to the heel.
4. The breathable and sterilizing insole according to claim 3, characterized in that: The part of the sole contact layer (2) corresponding to the arch of the foot bulges upwards to form an arch support block (22) corresponding to the shape of the arch of the foot.
5. The breathable and sterilizing insole according to claim 4, characterized in that: A first groove (311) is formed on the outer periphery of an area corresponding to the forefoot on the bottom surface of the support layer (3), and the portion within the first groove (311) serves as the sole support block (31).
6. The breathable and sterilizing insole according to claim 5, characterized in that: A second groove (331) is formed on the outer periphery of an area corresponding to the heel on the bottom surface of the support layer (3), and the portion within the second groove (331) serves as the heel support block (33).
7. The breathable and sterilizing insole according to claim 6, characterized in that: A plurality of circular convex points (21) are evenly formed on the surface of the front half of the sole contact layer (2).
8. The breathable and sterilizing insole according to claim 7, characterized in that: A plurality of convex blocks (23) are formed at the rear portion of the sole contact layer (2) corresponding to the heel, and the plurality of convex blocks (23) are arranged in a cat's paw pattern.
9. The breathable and antibacterial insole according to claim 8, characterized in that: The sole contact layer (2) is made of genuine leather.
10. The breathable and sterilizing insole according to claim 9, characterized in that: The sole contact layer (2) is made of pig skin.
Citation Information
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