A durable, age-resistant, and breathable basketball shoe
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]然而,这种以加厚为核心的性能强化设计,却在无形之中大幅牺牲了鞋子的透气性
[0015]本实用新型的有益效果是:该坚韧耐老化的透气篮球鞋,当穿着者在运动过程中产生脚步动作时,鞋底的多组透气气囊会因受力产生弹性形变而被压缩。在这一过程中,透气气囊内部的气体被排出,使得鞋体内部空间的气压降低,从而形成负压环境。此时,外界空气会在气压差的驱动下,经鞋底槽口源源不断地涌入鞋内,与鞋内原有气体形成高效对流,完成气体交换,及时带走脚部散发的热量和湿气,为双脚营造干爽舒适的穿着环境。
Smart Images

Figure CN224627661U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of basketball shoe technology, and in particular to a tough, aging-resistant, and breathable basketball shoe. Background Technology
[0002] Basketball is a highly competitive sport centered around the hands, and it is typically played on flat, hard surfaces such as concrete, wood, or acrylic floors. The intense running, jumping, and sudden stops and changes of direction performed on these surfaces place extremely high demands on athletes' foot protection and support. Basketball shoes were developed to address this need, becoming crucial equipment for helping athletes perform at their best and reducing the risk of injury.
[0003] In the design and manufacturing of basketball shoes, there has long been a difficult and irreconcilable contradiction that severely restricts the overall user experience of the products. Specifically, in order to enable basketball shoes to perform well in high-intensity sports scenarios, researchers often focus on improving the durability of the sole and the fit of the shoe body—the sole uses thicker, more durable materials to cope with the intense friction of the ground, while the upper is thickened to enhance the fit, ensuring that the athlete's foot receives stable support during rapid movement and changes of direction, preventing slippage or sprains.
[0004] However, this performance-enhancing design, centered on thickening, inadvertently sacrifices breathability. The thickened upper and sole compress airflow, and since most high-strength, abrasion-resistant materials inherently lack breathability, the large amount of heat and sweat generated by continuous foot activity during exercise cannot effectively dissipate through the shoe's interior. Over time, the feet become trapped in a damp, stuffy microenvironment: on one hand, this discomfort intensifies with prolonged exercise, distracting athletes and directly impacting performance; on the other hand, the damp, stuffy environment provides a breeding ground for bacteria and fungi, easily leading to foot odor, athlete's foot, fungal infections, and other foot health problems, posing a potential threat to the wearer's health and severely reducing the comfort and safety of the exercise experience.
[0005] Therefore, it is evident that how to effectively improve the breathability of basketball shoes while ensuring the core performance of the sole and the fit of the shoe body has become a technical problem that urgently needs to be solved in the current field of basketball shoe design. This utility model is an innovative solution proposed based on this situation. Utility Model Content
[0006] To overcome the technical defects of the existing technology, this utility model provides a tough, aging-resistant, and breathable basketball shoe.
[0007] The technical solution adopted by this utility model is as follows: it includes a sole, an upper, and shoelaces; the upper is bonded to the side of the sole; The shoe upper has eyelets on its side, and the shoelaces are fitted onto the inside of the eyelets. The bottom of the shoe sole has a groove; The inner side of the sole has ventilation grooves, and multiple sets of ventilation airbags are fixedly connected to the inner side of these grooves. When the wearer moves their feet during exercise, these ventilation airbags are compressed due to elastic deformation under pressure. During this process, the gas inside the ventilation airbags is expelled, reducing the air pressure inside the shoe and creating a negative pressure environment. At this time, driven by the pressure difference, outside air continuously flows into the shoe through the grooves, forming efficient convection with the existing gas inside the shoe, completing gas exchange, and promptly removing heat and moisture emitted by the feet, creating a dry and comfortable wearing environment for the feet.
[0008] Preferably, an abrasion-resistant component is bonded to the inner side of the sole. The abrasion-resistant component includes an abrasion-resistant outer shell, the inner side of which is filled with polyurethane rubber. The abrasion-resistant outer shell composed of polyurethane rubber enhances the abrasion resistance of the sole.
[0009] Preferably, a breathable component is bonded to the upper surface of the breathable groove, and the breathable component is bonded to the inside of the sole. The breathable component includes a breathable outer shell, the inner side of which is filled with seaweed fiber fabric. The breathable outer shell filled with seaweed fiber fabric enhances the breathability of the sole.
[0010] Preferably, a shock-absorbing component is bonded to the upper surface of the breathable outer shell, and the shock-absorbing component is bonded to the inside of the sole; The cushioning component includes a cushioning shell, the inner side of which is filled with polyurethane foam. The cushioning shell filled with polyurethane foam enhances the cushioning effect of the sole during use.
[0011] Preferably, a deodorizing component is fixedly connected to the upper surface of the shock-absorbing shell, and the deodorizing component is bonded to the inside of the sole; The deodorizing component includes a deodorizing shell, the inside of which is filled with activated carbon. The deodorizing shell filled with activated carbon enhances the deodorizing effect when the shoe sole is used.
[0012] Preferably, a breathable mesh is fixedly connected to the upper surface of the shoe upper; The inner side of the shoe upper is bonded with a waterproof layer, which is woven from water-repellent modified polyester and microfiber polyester. The waterproof layer woven from water-repellent modified polyester and microfiber polyester enhances the waterproof and water-repellent effect of the shoe upper.
[0013] Preferably, an antibacterial layer is bonded to the inner side of the shoe upper, and the antibacterial layer is bonded to the lower surface of the waterproof layer; The antibacterial layer is woven from bamboo fiber and chitin fiber; The inner side of the antibacterial layer is filled with an antibacterial sac. The antibacterial layer, which is woven from bamboo fiber and chitin fiber, effectively enhances the antibacterial properties of the shoe upper. The antibacterial sac further enhances its antibacterial properties.
[0014] Preferably, a skin-friendly layer is bonded to the inner side of the shoe upper, and the skin-friendly layer is bonded to the lower surface of the antibacterial layer; The skin-friendly layer is woven from modal fibers and combed long-staple cotton, which reduces friction on the feet and enhances comfort.
[0015] The beneficial effects of this invention are as follows: This durable, age-resistant, and breathable basketball shoe, when the wearer makes foot movements during exercise, has multiple sets of breathable airbags on the sole compressed due to elastic deformation under force. During this process, the gas inside the breathable airbags is expelled, reducing the air pressure inside the shoe and creating a negative pressure environment. At this time, driven by the pressure difference, outside air continuously flows into the shoe through the sole opening, forming efficient convection with the existing gas inside, completing gas exchange, and promptly removing heat and moisture emitted from the feet, creating a dry and comfortable wearing environment for the feet. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the complete structure of this utility model.
[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of the sole of the present invention.
[0018] Figure 3 This is a partial exploded view of the sole structure of the present invention.
[0019] Figure 4 This utility model Figure 2 Enlarged structural diagram at point A in the middle.
[0020] Figure 5 This is a schematic diagram of the three-dimensional structure of the shoe upper of this utility model.
[0021] Figure 6 This is a schematic diagram of the cross-sectional structure of the shoe upper of this utility model.
[0022] Explanation of reference numerals in the attached diagram: 1. Outsole; 101. Groove; 102. Ventilation groove; 103. Ventilation air bladder; 2. Abrasion-resistant component; 201. Abrasion-resistant outer shell; 3. Ventilation component; 301. Ventilation outer shell; 4. Cushioning component; 401. Cushioning outer shell; 5. Odor-reducing component; 501. Odor-reducing outer shell; 6. Upper; 601. Eyelet; 602. Ventilation mesh; 603. Waterproof layer; 604. Antibacterial layer; 605. Antibacterial bladder; 606. Skin-friendly layer; 7. Shoelaces. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings: like Figures 1-4 As shown, this embodiment provides a tough, age-resistant, and breathable basketball shoe, including a sole 1, an upper 6, and shoelaces 7; the upper 6 is bonded to the side of the sole 1; The side of the shoe upper 6 has a shoe eyelet 601, and the shoelace 7 is threaded onto the inside of the shoe eyelet 601; The bottom of the shoe sole 1 has a groove 101; The inner side of the sole 1 is provided with a ventilation groove 102. Multiple ventilation airbags 103 are fixedly connected to the inner side of the ventilation groove 102. When the basketball shoe is worn, the ventilation airbags 103 are compressed, the internal gas is released, and a negative pressure is formed inside the shoe. External air enters the shoe through the groove 101, forming gas flow and keeping the inside of the shoe dry.
[0024] like Figures 1-4 As shown, an abrasion-resistant component 2 is bonded to the inner side of the sole 1. The abrasion-resistant component 2 includes an abrasion-resistant outer shell 201, and the inner side of the abrasion-resistant outer shell 201 is filled with polyurethane rubber. The abrasion-resistant component 2 filled with polyurethane rubber enhances the abrasion resistance of the sole 1.
[0025] like Figures 1-4 As shown, a breathable component 3 is bonded to the upper surface of the breathable groove 102, and the breathable component 3 is bonded to the inside of the sole 1. The breathable component 3 includes a breathable shell 301, the inside of which is filled with seaweed fiber fabric. The breathable component 3 filled with seaweed fiber fabric enhances the breathability of the sole 1.
[0026] like Figures 1-4 As shown, a shock-absorbing component 4 is bonded to the upper surface of the breathable outer shell 301, and the shock-absorbing component 4 is bonded to the inside of the sole 1. The cushioning component 4 includes a cushioning shell 401, the inner side of which is filled with polyurethane foam. The polyurethane foam-filled cushioning component 4 enhances the cushioning ability of the sole 1.
[0027] like Figures 1-4 As shown, the upper surface of the shock-absorbing shell 401 is fixedly connected to the deodorizing component 5, and the deodorizing component 5 is adhered to the inside of the sole 1; The deodorizing component 5 includes a deodorizing shell 501, the inside of which is filled with activated carbon. The activated carbon-filled deodorizing component 5 enhances the deodorizing ability of the sole 1 when worn.
[0028] like Figure 1 , Figure 5 and Figure 6 As shown, a breathable mesh 602 is fixedly connected to the upper surface of the shoe upper 6; A waterproof layer 603 is bonded to the inside of the upper 6. The waterproof layer 603 is woven from water-repellent modified polyester and ultra-fine denier polyester. The waterproof layer 603, woven from water-repellent modified polyester and ultra-fine denier polyester, enhances the hydrophobic and waterproof properties of the upper 6.
[0029] like Figure 1 , Figure 5 and Figure 6 As shown, an antibacterial layer 604 is bonded to the inner side of the shoe upper 6, and the antibacterial layer 604 is bonded to the lower surface of the waterproof layer 603. The antibacterial layer 604 is woven from bamboo fiber and chitin fiber; The antibacterial layer 604 is filled with an antibacterial sac 605. The antibacterial layer 604, which is woven from bamboo fiber and chitin fiber, works with the antibacterial sac 605 to sterilize and inhibit bacteria inside the shoe.
[0030] like Figure 1 , Figure 5 and Figure 6 As shown, a skin-friendly layer 606 is bonded to the inner side of the shoe upper 6, and the skin-friendly layer 606 is bonded to the lower surface of the antibacterial layer 604. The skin-friendly layer 606 is woven from modal fibers and combed long-staple cotton, which reduces friction on the feet and improves comfort.
[0031] When in use, the breathable air bladder 103 is compressed when the basketball shoes are worn, releasing the internal gas and creating negative pressure inside the shoe. External air enters the shoe through the slot 101, creating airflow and keeping the inside of the shoe dry. The wear-resistant component 2, filled with polyurethane rubber, enhances the wear resistance of the sole 1; the breathable component 3, filled with seaweed fiber fabric, enhances the breathability of the sole 1; the cushioning component 4, filled with polyurethane foam, enhances the cushioning ability of the sole 1; and the deodorizing component 5, filled with activated carbon, enhances the deodorizing ability of the sole 1 during wear. A waterproof layer 603, woven from water-repellent modified polyester and ultra-fine denier polyester, enhances the hydrophobic and waterproof properties of the upper 6; an antibacterial layer 604, woven from bamboo fiber and chitosan fiber, works with the antibacterial bladder 605 to sterilize and inhibit bacteria inside the shoe; and a skin-friendly layer 606, woven from modal fiber and combed long-staple cotton, reduces friction on the feet and improves comfort.
[0032] The foregoing has shown and described the basic principles and main features of this invention, as well as its advantages. Those skilled in the art should understand that this invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this invention. Various changes and modifications can be made to this invention without departing from its spirit and scope. All such changes and modifications fall within the scope of this invention as defined by the appended claims and their equivalents.
Claims
1. A durable, age-resistant, and breathable basketball shoe, characterized in that: Includes sole (1), upper (6) and laces (7); The upper (6) is bonded to the side of the sole (1); The shoe upper (6) has a shoe hole (601) on its side, and the shoelace (7) is fitted inside the shoe hole (601); The bottom of the sole (1) is provided with a groove (101); The inner side of the sole (1) is provided with a ventilation groove (102), and multiple sets of ventilation airbags (103) are fixedly connected to the inner side of the ventilation groove (102).
2. The durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: The inner side of the sole (1) is bonded with an abrasion-resistant component (2), the abrasion-resistant component (2) including an abrasion-resistant outer shell (201), the inner side of which is filled with polyurethane rubber.
3. The durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: The upper surface of the ventilation groove (102) is bonded with a ventilation component (3), and the ventilation component (3) is bonded to the inside of the sole (1); The breathable component (3) includes a breathable shell (301) with seaweed fiber fabric filling the inside of the breathable shell (301).
4. The durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: The upper surface of the breathable outer shell (301) is bonded with a shock-absorbing component (4), and the shock-absorbing component (4) is bonded to the inside of the sole (1); The shock-absorbing assembly (4) includes a shock-absorbing shell (401) with the inner side of the shock-absorbing shell (401) filled with polyurethane foam.
5. A durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: The upper surface of the shock-absorbing shell (401) is fixedly connected to a deodorizing component (5), and the deodorizing component (5) is bonded to the inside of the sole (1); The deodorizing component (5) includes a deodorizing shell (501), the inside of which is filled with activated carbon.
6. A durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: A breathable mesh (602) is fixedly connected to the upper surface of the shoe upper (6). The inner side of the shoe upper (6) is bonded with a waterproof layer (603), which is woven from water-repellent modified polyester and ultrafine denier polyester.
7. A durable, age-resistant, and breathable basketball shoe according to claim 1, characterized in that: An antibacterial layer (604) is bonded to the inner side of the shoe upper (6), and the antibacterial layer (604) is bonded to the lower surface of the waterproof layer (603); The antibacterial layer (604) is woven from bamboo fiber and chitin fiber; The inner side of the antibacterial layer (604) is filled with an antibacterial capsule (605).
8. A tough, aging-resistant, and breathable basketball shoe according to claim 1, characterized in that: The inner side of the shoe upper (6) is bonded with a skin-friendly layer (606), and the skin-friendly layer (606) is bonded to the lower surface of the antibacterial layer (604). The skin-friendly layer (606) is woven from modal fibers and combed long-staple cotton.