Double sweat-permeable ventilated sports shoes
Patent Information
- Application Number
- CN202610852842.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-12
- Publication Date
- 2026-08-21
AI Technical Summary
[0005]针对现有技术存在的不足,本发明目的是提供一种双重排汗透气运动鞋,以解决现有的运动员定制运动鞋在对具有透气功能鞋底进行定制时,定制重点在于材料与结构匹配运动员需求,对足弓处的包裹性调节后,原有结构无法在形变中维持气流路径的完整性,导致透气性能随调节失效,为了保证鞋底的透气性能,需要重新设计透气结构,较为不便的问题
一、运动员定制用的运动鞋通过设计透气鞋面、透气鞋底实现双重排汗透气功能,导流槽与导流调节件用于对气流引导,主透气孔用于将鞋内气流导入导流调节件内实现空气流通。
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Figure CN122604150A_ABST
Abstract
Description
Technical Field
[0001] This invention is a dual-wicking and breathable sports shoe, belonging to the field of sports shoes. Background Technology
[0002] Athletic shoes are footwear designed according to the needs of human movement. They typically use flexible and elastic soles to provide cushioning and protection, and are suitable for physical sports such as basketball and running.
[0003] The main purpose of custom-made athletic shoes is to achieve the ultimate personalized fit, thereby maximizing athletic performance and minimizing the risk of sports injuries. This is especially suitable for professional athletes who have extremely high requirements for equipment performance.
[0004] When customizing breathable soles, existing athlete-specific sports shoes focus on matching materials and structure to the athlete's needs. After adjusting the arch support, the original structure cannot maintain the integrity of the airflow path during deformation, causing the breathability to fail. To ensure the breathability of the sole, the breathable structure needs to be redesigned, which is inconvenient. Summary of the Invention
[0005] To address the shortcomings of existing technologies, the purpose of this invention is to provide a dual-wicking and breathable sports shoe. This addresses the problem that existing custom-made athletic shoes, when customizing breathable soles, focus on matching materials and structure to the athlete's needs. After adjusting the arch support, the original structure cannot maintain the integrity of the airflow path during deformation, causing the breathability to fail with adjustment. To ensure the breathability of the sole, a redesign of the breathable structure is required, which is inconvenient.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a dual-layer breathable and sweat-wicking athletic shoe, comprising a breathable upper and a breathable sole; the breathable sole is located at the lower edge of the breathable upper, and the breathable sole comprises, from top to bottom, an adjustable breathable midsole and an outsole; the adjustable breathable midsole includes a forefoot positioning block, a heel positioning block, and a sealing block, with an arch groove formed between the forefoot positioning block and the heel positioning block, and a flow-guiding adjustment component disposed on the inner wall of the top surface of the arch groove, the flow-guiding adjustment component having a centrally located... The shoe features a main ventilation hole, and a positioning port is punched on both sides of the arch groove. An adjustment part extends from the lower edge of the breathable upper at the arch, passing through the positioning port and connecting with the flow-guiding adjustment component. A flow-guiding groove is provided in the middle of the front positioning block, connecting with the output end of the flow-guiding adjustment component. A compression groove is provided in the middle of the rear positioning block, encircling the input end of the flow-guiding adjustment component. A compression air cushion is provided in the compression groove. The sealing block is simultaneously embedded in the arch groove, the flow-guiding groove, and the compression groove. The front end of the sealing block is sealed at the outlet of the flow-guiding groove and is provided with several breathable micropores.
[0007] Furthermore, in order to provide airflow and ventilation as well as arch support adjustment, the airflow adjustment component includes an adjustment component body, a U-shaped air vent, a reinforcing support strip, an adjustment plate, an adjustment post, and a limiting plate. The U-shaped air vent is located in the middle of the adjustment component body, and the opening of the U-shaped air vent connects to the airflow vent. Two reinforcing support strips are provided and symmetrically arranged on both sides of the rear of the adjustment component body. Two adjustment plates are provided and symmetrically arranged on the inner walls of both sides of the U-shaped air vent. The bottom surface of each adjustment plate is provided with an adjustment post, and the limiting plate is simultaneously fastened to the two adjustment posts.
[0008] Furthermore, in order to perform connection and positioning, the adjusting member body has slots on both sides for connecting and adjusting parts.
[0009] Furthermore, to prevent foot discomfort, the bottom surface of the adjusting member body is flush with the bottom surface of the limiting plate.
[0010] Furthermore, in order to improve breathability, the top surface of the sealed block, together with the main vent, the U-shaped exhaust groove, and the guide groove, forms a breathable channel, wherein the top of the main vent is connected to the inside of the breathable shoe upper.
[0011] Furthermore, in order to have excellent shock absorption and fatigue resistance, both the limiting plate and the adjusting component body are made of carbon fiber, and the top surface of the limiting plate has a buckle hole that matches the adjusting column.
[0012] Furthermore, to improve anti-slip performance, the outsole is made of anti-slip and wear-resistant material, and its bottom is provided with anti-slip grooves with a depth of 1-3mm.
[0013] Furthermore, in order to deform towards the flow guide adjustment component under pressure to achieve active ventilation, at least one air chamber is provided in the squeeze air cushion. The inner wall thickness of the squeeze air cushion facing the flow guide adjustment component is 2-3 mm, and the inner wall thickness of the other positions is 4-6 mm.
[0014] The beneficial effects of this invention are: 1. Sports shoes customized for athletes achieve dual sweat-wicking and breathability through the design of breathable uppers and soles. The airflow channels and airflow adjustment components are used to guide airflow, and the main ventilation holes are used to guide the airflow inside the shoe into the airflow adjustment components to achieve air circulation.
[0015] Second, the breathable upper is connected to the airflow adjustment component through the adjustment part, so that when the airflow adjustment component adjusts the arch support, the corresponding part of the breathable upper can be adjusted accordingly. The internal volume of the breathable upper can be adaptively adjusted to maintain the integrity of the airflow path. Compared with the existing technology, there is no need to redesign the breathable structure.
[0016] Third, the air cushion deforms during walking and compresses the airflow in the airflow channels, enhancing the breathability. Attached Figure Description
[0017] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a structural schematic diagram of a dual-wicking and breathable sports shoe according to the present invention; Figure 2 A top-down view of the structure of a breathable shoe sole; Figure 3 This is a schematic diagram of the unclosed structure of an adjustable, breathable midsole. Figure 4 A schematic diagram of the closed-state structure of an adjustable breathable midsole; Figure 5 This is a schematic diagram of the unadjusted state of the flow guide adjustment component; Figure 6 This is a schematic diagram of the adjustment state structure of the flow guide adjustment component.
[0018] In the diagram: Breathable upper-1, Breathable sole-2, Adjustable breathable midsole-21, Outsole-22, Front positioning block-211, Rear positioning block at the heel-212, Sealing block-213, Arch groove-2131, Airflow adjustment component-2132, Main ventilation hole-2133, Positioning port-2134, Airflow channel-2111, Extrusion groove-2121, Extrusion air cushion-2122, Adjustment component body-21321, U-shaped exhaust channel-21322, Reinforced support strip-21323, Adjustment plate-21324, Adjustment column-21325, Restriction plate-21326. Detailed Implementation
[0019] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments. Example 1
[0020] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6This invention provides a dual-layer breathable and sweat-wicking sports shoe technical solution: its structure includes a breathable upper 1 and a breathable sole 2; the breathable sole 2 is located at the lower edge of the breathable upper 1, and the breathable sole 2 consists of an adjustable breathable midsole 21 and an outsole 22 from top to bottom; the adjustable breathable midsole 21 includes a forefoot positioning block 211, a rear positioning block 212, and a sealing block 213 at the heel, and an arch groove 2131 is formed between the forefoot positioning block 211 and the rear positioning block 212, and a flow guiding adjustment component 2132 is provided on the inner wall of the top surface of the arch groove 2131, and a main ventilation hole 2133 is provided in the center of the flow guiding adjustment component 2132, and the two sides of the arch groove 2131 are... A positioning opening 2134 is punched on the edge of the breathable upper 1. An adjustment part 11 extends through the positioning opening 2134 and connects to the flow adjustment component 2132 at the lower edge of the arch. A flow channel 2111 is provided in the middle of the front positioning block 211, which connects to the output end of the flow adjustment component 2132. The compression groove 2121 of the input end of the flow adjustment component 2132 is wrapped around the middle of the rear positioning block 212. A compression air cushion 2122 is provided in the compression groove 2121. The sealing block 213 is simultaneously embedded in the arch groove 2131, the flow channel 2111, and the compression groove 2121. The front end of the sealing block 213 is sealed at the outlet of the flow channel 2111 and is provided with several breathable micropores.
[0021] Specifically, the breathable upper 1 is made of perforated leather or knitted material.
[0022] The sports shoes designed for athletes achieve dual sweat-wicking and breathability through the design of a breathable upper 1 and a breathable sole 2. The airflow channel 2111 and the airflow adjustment component 2132 are used to guide the airflow, and the main ventilation hole 2133 is used to guide the airflow inside the shoe into the airflow adjustment component 2132 to achieve air circulation. The breathable upper 1 is connected to the airflow adjustment component 2132 through the adjustment part 11, so that when the airflow adjustment component 2132 is adjusted for arch support, the corresponding part of the breathable upper 1 can be adjusted accordingly. The internal volume of the breathable upper 1 can be adaptively adjusted to maintain the integrity of the airflow path. Compared with the existing technology, there is no need to redesign the breathable structure. The compression air cushion 2122 deforms during walking and compresses the airflow in the airflow channel to enhance the breathability.
[0023] For airflow and ventilation as well as arch support adjustment, the airflow adjustment component 2132 includes an adjustment component body 21321, a U-shaped exhaust channel 21322, a reinforcing support strip 21323, an adjustment plate 21324, an adjustment column 21325, and a limiting plate 21326. The U-shaped exhaust channel 21322 is located in the middle of the adjustment component body 21321, and the opening of the adjustment component body 21321 is connected to the airflow channel 2111. Two reinforcing support strips 21323 are provided and symmetrically arranged on both sides of the rear of the adjustment component body 21321. Two adjustment plates 21324 are provided and symmetrically arranged on the inner walls of both sides of the U-shaped exhaust channel 21322. The bottom surface of each of the two adjustment plates 21324 is provided with an adjustment column 21325, and the limiting plate 21326 is fastened to both adjustment columns 21325.
[0024] The principle of arch support adjustment of the airflow adjustment component 2132 is as follows: The limiting plate 21326 has multiple length sizes available. After the limiting plate 21326 is fastened with the two adjusting posts 21325, under the positioning of the adjusting plate 21324, the adjusting component body 21321 with the U-shaped exhaust groove 21322 will bend and deform inward. The adjusting component body 21321 will pull the breathable upper 1 through the adjusting part 11. The athlete can first wear the sports shoe in this state to contact the ground. When the support is satisfactory, the perfectly fitting sealing block 213 is installed in the arch groove 2131, the airflow groove 2111, and the compression groove 2121 for positioning and restriction. Finally, the outsole 22 is fixedly connected to complete the customization work.
[0025] The adjusting plate 21324 is made of nylon material with added glass fiber, which effectively resists torsion.
[0026] For connection and positioning, the adjustment body 21321 has slots on both sides for connecting adjustment parts 11.
[0027] To prevent foot discomfort, the bottom surface of the adjusting body 21321 is flush with the bottom surface of the limiting plate 21326.
[0028] To improve breathability, the top surface of the sealing block 213, together with the main vent 2133, the U-shaped exhaust groove 21322, and the guide groove 2111, forms a breathable channel, wherein the top of the main vent 2133 is connected to the interior of the breathable shoe upper 1.
[0029] The ventilation principle of the adjustable breathable midsole 21 is as follows: under the action of the foot, the gas inside the shoe enters the top surface of the closed block 213 through the main ventilation hole 2133 and forms a ventilation channel with the main ventilation hole 2133, the U-shaped exhaust groove 21322, and the guide groove 2111. Under the auxiliary power of the compressed air cushion 2122, the gas is finally discharged through the breathable micropores. The pore size of the breathable micropores is 0.2-1μm, which effectively prevents rainwater from entering.
[0030] In order to have excellent shock absorption and fatigue resistance, both the limiting plate 21326 and the adjusting body 21321 are made of carbon fiber. The top surface of the limiting plate 21326 has a buckle hole that matches the adjusting column 21325.
[0031] To improve anti-slip performance, the outsole 22 is made of anti-slip and wear-resistant material, and its bottom is provided with anti-slip grooves with a depth of 1-3mm. Example 2
[0032] For the sake of brevity, the parts that are the same as those in other embodiments will not be described again. The main focus is on the structure that is different from other embodiments of the present invention. In order to deform toward the flow guide adjustment member 2132 under pressure to achieve active ventilation, at least one air cavity is provided in the compression air cushion 2122. The inner wall thickness of the compression air cushion 2122 toward the flow guide adjustment member 2132 is 2-3mm, and the inner wall thickness of the other positions is 4-6mm.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0034] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A double-wicking and breathable sports shoe, characterized in that: Its structure includes a breathable upper (1); A breathable sole (2) is provided at the lower edge of the breathable upper (1), and the breathable sole (2) consists of an adjustable breathable midsole (21) and an outsole (22) from top to bottom. The adjustable breathable midsole (21) includes a front positioning block (211) at the forefoot, a rear positioning block (212) at the heel, and a sealing block (213). An arch groove (2131) is formed between the front positioning block (211) and the rear positioning block (212). A flow guide adjustment component (2132) is provided on the inner wall of the top surface of the arch groove (2131). A main ventilation hole (2133) is provided in the center of the flow guide adjustment component (2132). A positioning port (2134) is punched on both sides of the arch groove (2131). An adjustment part (11) extends through the positioning port (2134) and connects with the flow guide adjustment component (2132) at the lower edge of the breathable upper (1) at the arch. The front positioning block (211) has a flow guide groove (2111) in the middle that is connected to the output end of the flow guide adjustment component (2132). The rear positioning block (212) has a compression groove (2121) in the middle that surrounds the input end of the flow guide adjustment component (2132). A compression air cushion (2122) is provided in the compression groove (2121). The sealing block (213) is simultaneously embedded in the arch groove (2131), the flow guide groove (2111), and the compression groove (2121). The front end of the sealing block (213) is sealed at the outlet of the flow guide groove (2111) and has several breathable micropores.
2. The double-wicking and breathable sports shoe according to claim 1, characterized in that: The flow guiding and adjusting component (2132) includes an adjusting component body (21321), a U-shaped exhaust groove (21322), a reinforcing support bar (21323), an adjusting plate (21324), an adjusting column (21325), and a limiting plate (21326). The U-shaped exhaust groove (21322) is located in the middle of the adjusting component body (21321), and the opening of the U-shaped exhaust groove (21322) is connected to the flow guiding groove (2111). Two reinforcing support bars (21323) are provided and symmetrically arranged on both sides of the rear of the adjusting component body (21321). Two adjusting plates (21324) are provided and symmetrically arranged on both sides of the inner wall of the U-shaped exhaust groove (21322). The bottom surface of each of the two adjusting plates (21324) is provided on an adjusting column (21325). The limiting plate (21326) is simultaneously fastened to the two adjusting columns (21325).
3. The double-wicking and breathable sports shoe according to claim 2, characterized in that: The adjusting body (21321) has slots on both sides for connecting the adjusting part (11).
4. The double-wicking and breathable sports shoe according to claim 3, characterized in that: The bottom surface of the adjusting body (21321) is flush with the bottom surface of the limiting plate (21326).
5. A double-wicking and breathable sports shoe according to claim 2, characterized in that: The top surface of the closed block (213) forms a ventilation channel with the main ventilation hole (2133), the U-shaped exhaust groove (21322), and the guide groove (2111). The top of the main ventilation hole (2133) is connected to the inside of the breathable shoe upper (1).
6. A double-wicking and breathable sports shoe according to claim 4, characterized in that: Both the limiting plate (21326) and the adjusting body (21321) are made of carbon fiber. The top surface of the limiting plate (21326) has a buckle hole that matches the adjusting column (21325).
7. A double-wicking and breathable sports shoe according to claim 1, characterized in that: The outsole (22) is made of anti-slip and wear-resistant material, and its bottom is provided with anti-slip grooves with a depth of 1-3mm.
8. A double-wicking and breathable sports shoe according to claim 1, characterized in that: At least one air chamber is provided in the squeeze air cushion (2122). The inner wall thickness of the squeeze air cushion (2122) facing the flow guide adjustment member (2132) is 2-3mm, and the inner wall thickness of the other positions is 4-6mm.