Composite antibacterial screen cloth for shoe body
By introducing buffer storage antibacterial agent and wear-resistant layer reinforcement design into the shoe mesh, the problem of insufficient antibacterial properties of the existing shoe mesh is solved, and higher wear resistance and long-term antibacterial effect are achieved.
Patent Information
- Application Number
- CN202421635460.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-11
AI Technical Summary
The mesh on existing shoes has insufficient antibacterial properties, especially after long-term bend and wear, the antibacterial properties will significantly decline.
The composite antibacterial mesh design is adopted, including an external mesh layer, a fill layer, an wear-resistant layer and an inner liner. The antibacterial agent is stored using a buffer body, and the wear resistance and structural strength of the mesh are improved through the wear-resistant layer and reinforced components.
On the premise of ensuring breathability, the wear resistance and antibacterial aging of the mesh are improved, and the slow dissipation of antibacterial agents in the body can be buffered to provide long-term antibacterial effects, and the reinforcement components enhance the structural strength of the mesh.
Smart Images

Figure CN222858941U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of antibacterial mesh cloth, in particular to a composite antibacterial mesh cloth for shoe bodies. Background Art
[0002] Suitable shoes can make people walk more comfortably and protect their feet. Nowadays, there are many types of shoes. According to different usage requirements, manufacturers will use different materials and different manufacturing processes to produce and process various parts of the shoe body. Existing shoes mostly use mesh fabrics to increase the breathability and lightness of the shoes, and are mostly used in the manufacturing of sports shoes.
[0003] For example, the Chinese invention patent document, with publication number CN111000327A, discloses a breathable mesh upper that automatically eliminates shoe marks. A fluid component is set inside the upper, which is always in contact with the upper and can absorb the bending force when the upper is bent. At the same time, the fluid component is a claw-shaped structure, which adapts to the stress of the upper when it is bent. The fluid component can also expand and deform to stretch and straighten the upper that is bent when the upper is bent, thereby actively repairing the creases on the upper. At the same time, the fork part and the main body are both in a connected state, so it can cope with complex upper bending conditions, further improving the wear resistance and comfort of the upper.
[0004] When people wear shoes, intense foot movement will cause sweating and make the inside of the shoes damp. A long period of damp environment will breed bacteria. Setting mesh cloth in appropriate parts of the shoe body can effectively reduce the growth of bacteria. However, the antibacterial property of the existing mesh cloth on the shoe body needs to be improved because the antibacterial material of most mesh cloths is directly exposed to the outside, especially under the premise of long-term bending and wear, which will only aggravate the decline of antibacterial performance. Utility Model Content
[0005] In order to overcome the technical defects of the prior art, the utility model provides a composite antibacterial mesh for a shoe body, which can utilize a buffer body to store an antibacterial agent, thereby increasing the antibacterial time while providing comfort.
[0006] The technical solution adopted by the utility model is: it includes an external mesh layer, which is the outermost layer of the shoe body and is preferably woven with nylon fiber, and mainly plays a role of wear-resistant protection. A filling layer is provided below the external mesh layer. The external mesh layer is relatively thin and soft, and the filling layer is used to auxiliary support the external mesh layer. A wear-resistant layer is provided below the filling layer. When worn, the foot moves continuously, causing the mesh surface of the shoe body to continuously deform. The wear-resistant layer can provide better internal support and can better maintain its shape when the mesh itself is deformed. An inner lining layer is provided below the wear-resistant layer, and a reinforcing component is provided in the filling layer. The reinforcing component is used to form a structural support for the mesh, and the reinforcing component is an interconnected rubber strip.
[0007] Preferably, in order to facilitate limiting the position of the buffer body, the lining layer is a thin layer of cotton mesh fibers, the lining layer directly contacts the inside of the shoe body, the wear-resistant layer includes a wrapping layer, a buffer body is arranged in the wrapping layer, the wrapping layer is a tubular mesh yarn, and the part without the buffer body is twisted into yarn.
[0008] Preferably, in order to improve the durability of the buffer body, the material of the buffer body includes polyurethane, and the buffer body is hollow and filled with carrier fibers.
[0009] Preferably, in order to facilitate fixing the position of the buffer body and increase the antibacterial performance, the carrier fiber extends outward with an extended section, the extended section and the wrapping layer are bonded to each other, and an antibacterial agent is provided on the carrier fiber in the buffer body.
[0010] Preferably, in order to increase the structural strength of the mesh, the wrapping layer and the buffer body in different sections mutually form a mesh structure, and the mesh shape is a quadrilateral or a hexagon.
[0011] Preferably, in order to increase the structural strength of the mesh, the wrapping layers between different sections are connected by yarns, and the wrapping layers between different sections are parallel to each other.
[0012] Preferably, in order to facilitate the fixation of the shoe body and the mesh, the filling layer is filled with a sponge layer, and the rubber strip extends to the outside of the edge of the filling layer.
[0013] Preferably, in order to increase the supporting range of the rubber strips, the rubber strips are arranged in a U-shape or a Y-shape.
[0014] The beneficial effects of the utility model are: the utility model can improve the wear resistance of the mesh while ensuring air permeability, utilize the buffer body in the wear-resistant layer to enhance the comfort of the mesh, and the antibacterial agent can be slowly dispersed in the buffer body, thereby achieving a long-lasting antibacterial effect, and the reinforcement component can enhance the structural strength of the mesh. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the structure of the utility model.
[0016] Figure 2 This is a schematic diagram of the U-shaped structure of the reinforcement component of the utility model.
[0017] Figure 3 It is a schematic diagram of the Y-shaped structure of the reinforcement component of the utility model.
[0018] Figure 4 This is a schematic diagram of the structure of the buffer body of the utility model.
[0019] Figure 5 This is a schematic diagram of the quadrilateral structure of the wear-resistant layer of the utility model.
[0020] Figure 6 This is a schematic diagram of the hexagonal structure of the wear-resistant layer of the utility model.
[0021] Figure 7 It is a schematic diagram of the parallel structure of the wrapping layer of the utility model.
[0022] Explanation of the accompanying drawings: In the figure: 1, external mesh layer; 2, filling layer; 201, reinforcement component; 202, sponge filling layer; 3, wear-resistant layer; 301, wrapping layer; 302, buffer body; 303, carrier fiber; 4, lining layer. DETAILED DESCRIPTION
[0023] The utility model is further described below in conjunction with the accompanying drawings:
[0024] like Figure 1-Figure 7 shown.
[0025] Example 1
[0026] The present embodiment provides a composite antibacterial mesh cloth for a shoe body, including an external mesh layer 1, which is the outermost layer of the shoe body and is preferably woven with nylon fibers, and mainly plays a role of wear-resistant protection. A filling layer 2 is provided below the external mesh layer 1. The external mesh layer 1 is relatively thin and soft. The filling layer 2 is used to auxiliary support the external mesh layer 1. A wear-resistant layer 3 is provided below the filling layer 2. When worn, the foot moves continuously, causing the mesh surface of the shoe body to continuously deform. The wear-resistant layer 3 can provide better internal support and can better maintain its shape when the mesh cloth itself is deformed. An inner lining layer 4 is provided below the wear-resistant layer 3, and a reinforcing component 201 is provided in the filling layer 2. The reinforcing component 201 is used to form a structural support for the mesh cloth, and the reinforcing component 201 is an interconnected rubber strip.
[0027] The lining layer 4 is a thin layer of cotton mesh fiber, which directly contacts the inside of the shoe body. The wear-resistant layer 3 includes a wrapping layer 301, in which a buffer body 302 is arranged. The wrapping layer 301 is a tubular mesh yarn, which twists itself into yarn in the part without the buffer body 302, so as to facilitate limiting the position of the buffer body 302.
[0028] The material of the buffer body 302 includes polyurethane. The buffer body 302 is hollow and filled with carrier fibers 303, which can improve the durability of the buffer body 302. Using polyurethane as the main material source can make the buffer body 302 both wear-resistant and have a certain degree of elasticity.
[0029] The carrier fiber 303 has an extended section extending outward, and the extended section and the wrapping layer 301 are bonded to each other. The carrier fiber 303 in the buffer body 302 is provided with an antibacterial agent, which can facilitate fixing the position of the buffer body 302 and increase the antibacterial performance.
[0030] The wrapping layers 301 and the buffer bodies 302 of different sections mutually form a mesh structure, and the mesh shape is a quadrilateral, which can increase the structural strength of the mesh.
[0031] The filling layer 2 contains a sponge filling layer 202, and the rubber strips extend to the outside of the edge of the filling layer 2, which makes it easier to fix the shoe body and the mesh. The rubber strips are arranged in a U shape, which can increase the support range of the rubber strips.
[0032] The utility model can improve the wear resistance of the mesh while ensuring air permeability, utilize the buffer body 302 in the wear-resistant layer 3 to enhance the comfort of the mesh, and the antibacterial agent can be slowly dispersed from the buffer body 302, thereby achieving a long-lasting antibacterial effect, and the reinforcement component 201 can enhance the structural strength of the mesh.
[0033] During use, when the mesh is twisted, the reinforcing component 201 in the filling layer 2 can maintain the shape of the mesh, and when the foot contacts the mesh, the buffer body 302 in the wear-resistant layer 3 can roll itself, thereby avoiding hard friction.
[0034] Example 2
[0035] The present embodiment provides a composite antibacterial mesh cloth for a shoe body, including an external mesh layer 1, which is the outermost layer of the shoe body and is preferably woven with nylon fibers, and mainly plays a role of wear-resistant protection. A filling layer 2 is provided below the external mesh layer 1. The external mesh layer 1 is relatively thin and soft. The filling layer 2 is used to auxiliary support the external mesh layer 1. A wear-resistant layer 3 is provided below the filling layer 2. When worn, the foot moves continuously, causing the mesh surface of the shoe body to continuously deform. The wear-resistant layer 3 can provide better internal support and can better maintain its shape when the mesh cloth itself is deformed. An inner lining layer 4 is provided below the wear-resistant layer 3, and a reinforcing component 201 is provided in the filling layer 2. The reinforcing component 201 is used to form a structural support for the mesh cloth, and the reinforcing component 201 is an interconnected rubber strip.
[0036] The lining layer 4 is a thin layer of cotton mesh fiber, which directly contacts the inside of the shoe body. The wear-resistant layer 3 includes a wrapping layer 301, in which a buffer body 302 is arranged. The wrapping layer 301 is a tubular mesh yarn, which twists itself into yarn in the part without the buffer body 302, so as to facilitate limiting the position of the buffer body 302.
[0037] The material of the buffer body 302 includes polyurethane. The buffer body 302 is hollow and filled with carrier fibers 303 , which can improve the durability of the buffer body 302 .
[0038] The carrier fiber 303 has an extended section extending outward, and the extended section and the wrapping layer 301 are bonded to each other. The carrier fiber 303 in the buffer body 302 is provided with an antibacterial agent, which can facilitate fixing the position of the buffer body 302 and increase the antibacterial performance.
[0039] The wrapping layers 301 and the buffer bodies 302 of different sections mutually form a mesh structure, and the mesh shape is hexagonal, which can increase the structural strength of the mesh.
[0040] The filling layer 2 contains a sponge filling layer 202, and the rubber strips extend to the outside of the edge of the filling layer 2, which makes it easier to fix the shoe body and the mesh. The rubber strips are arranged in a U shape, which can increase the support range of the rubber strips.
[0041] In this embodiment, the structural shape of the wrapping layer 301 in the wear-resistant layer 3 is changed, so that the density of the buffer body 302 is higher and the relative mobility is reduced. It is suitable for being set in a part with complex bending stress conditions. The U-shaped rubber strip can also provide a higher degree of deformation.
[0042] Example 3
[0043] The present embodiment provides a composite antibacterial mesh cloth for a shoe body, including an external mesh layer 1, which is the outermost layer of the shoe body and is preferably woven with nylon fibers, and mainly plays a role of wear-resistant protection. A filling layer 2 is provided below the external mesh layer 1. The external mesh layer 1 is relatively thin and soft. The filling layer 2 is used to auxiliary support the external mesh layer 1. A wear-resistant layer 3 is provided below the filling layer 2. When worn, the foot moves continuously, causing the mesh surface of the shoe body to continuously deform. The wear-resistant layer 3 can provide better internal support and can better maintain its shape when the mesh cloth itself is deformed. An inner lining layer 4 is provided below the wear-resistant layer 3, and a reinforcing component 201 is provided in the filling layer 2. The reinforcing component 201 is used to form a structural support for the mesh cloth, and the reinforcing component 201 is an interconnected rubber strip.
[0044] The lining layer 4 is a thin layer of cotton mesh fiber, which directly contacts the inside of the shoe body. The wear-resistant layer 3 includes a wrapping layer 301, in which a buffer body 302 is arranged. The wrapping layer 301 is a tubular mesh yarn, which twists itself into yarn in the part without the buffer body 302, so as to facilitate limiting the position of the buffer body 302.
[0045] The material of the buffer body 302 includes polyurethane. The buffer body 302 is hollow and filled with carrier fibers 303 , which can improve the durability of the buffer body 302 .
[0046] The carrier fiber 303 has an extended section extending outward, and the extended section and the wrapping layer 301 are bonded to each other. The carrier fiber 303 in the buffer body 302 is provided with an antibacterial agent, which can facilitate fixing the position of the buffer body 302 and increase the antibacterial performance.
[0047] The wrapping layers 301 between different sections are connected by yarns, and the wrapping layers 301 between different sections are parallel to each other, which can increase the structural strength of the mesh.
[0048] The filling layer 2 contains a sponge filling layer 202, and the rubber strips extend to the outside of the edge of the filling layer 2, which makes it easier to fix the shoe body and the mesh. The rubber strips are arranged in a Y shape, which can increase the support range of the rubber strips.
[0049] In this embodiment, the wrapping layers 301 are arranged in parallel, and the rolling direction of the buffer body 302 is limited, which is more suitable for installing the mesh cloth on the side of the shoe body, that is, the part with a single force direction.
[0050] The above shows and describes the basic principles, main features and advantages of the invention. Those skilled in the art should understand that the invention is not limited to the above embodiments. The above embodiments and descriptions are only for explaining the principles of the invention. Without departing from the spirit and scope of the invention, the invention may have various changes and improvements, which shall fall within the scope of the invention to be protected. The scope of protection of the invention shall be defined by the attached claims and their equivalents.
Claims
1. A composite antibacterial mesh for a shoe body, comprising an outer mesh layer (1), a filling layer (2) being provided below the outer mesh layer (1), characterized in that: A wear-resistant layer (3) is provided below the filling layer (2), an inner lining layer (4) is provided below the wear-resistant layer (3), a reinforcing component (201) is provided inside the filling layer (2), the reinforcing component (201) is a rubber strip connected to each other, the inner lining layer (4) is a thin layer of cotton mesh fibers, the wear-resistant layer (3) comprises a wrapping layer (301), a buffer body (302) is provided inside the wrapping layer (301), the buffer body (302) is made of polyurethane, the buffer body (302) is hollow and filled with carrier fibers (303), the carrier fibers (303) extend outwards to form a protruding section, the protruding section and the wrapping layer (301) are bonded to each other, and an antibacterial agent is provided on the carrier fibers (303) in the buffer body (302).
2. The composite antibacterial mesh for shoe body according to claim 1, characterized in that: The wrapping layers (301) and the buffer body (302) of different sections mutually form a mesh structure, and the mesh shape is a quadrilateral or a hexagon.
3. The composite antibacterial mesh for shoe body according to claim 1, characterized in that: The wrapping layers (301) between different sections are connected by yarns, and the wrapping layers (301) between different sections are parallel to each other.
4. The composite antibacterial mesh for shoe body according to claim 1, characterized in that: The filling layer (2) contains a sponge filling layer (202), and the rubber strip extends to the outside of the edge of the filling layer (2).
5. The composite antibacterial mesh for shoe body according to claim 4, characterized in that: The rubber strips are arranged in a U-shape or a Y-shape.
Citation Information
Patent Citations
Breathable mesh cloth vamp capable of automatically eliminating shoe marks
CN111000327A