Breathable shoes for women
By introducing lateral and sole support parts into women's shoes, the structural strength and stability of the shoes are enhanced, and the problem of lack of lateral support in women's shoes is solved, reducing ankle instability and fatigue, and improving wear comfort and safety.
Patent Information
- Application Number
- CN202422878741.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-11-26
AI Technical Summary
The existing women's shoes lack lateral support, which leads to the ankle being easily tilted or inverted, which increases the risk of sprains or strains, and is unstable when walking on uneven grounds, which increases leg fatigue and calf muscle soreness.
A breathable women's shoes are designed, including a lateral support part and a bottom support part. The lateral support part is composed of the first and second support columns, a connecting piece and a torsion spring. The bottom support part is composed of a support piece, an air gasket and a shrapnel. The reinforcement part is strengthened by a reinforcement piece, and a cotton layer and a through hole are provided in the upper of the side to improve comfort and breathability.
Effectively limit the valgus or valgus of the ankle, improve foot stability, reduce shaking and fatigue, enhance the structural strength of the shoe, provide sufficient support and shock absorption, reduce the risk of injury, maintain the shape and support effect of the shoe, and improve the comfort of wearing.
Smart Images

Figure CN223247678U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of women's shoes, in particular to a pair of breathable women's shoes. Background Art
[0002] In modern society, women's shoes are a symbol of feminine fashion and an essential part of expressing a woman's individuality. They are also one of the footwear styles that best embody feminine charm. However, the design characteristics of women's shoes often result in insufficient lateral support. This is especially true when walking on uneven surfaces or in confined spaces. This can easily lead to ankle eversion or inversion, increasing the risk of sprains or strains. It can also cause instability in the foot, forcing greater reliance on leg muscles for balance. This can not only increase leg fatigue but can also cause calf muscle soreness and stiffness.
[0003] Therefore, a kind of breathable type women's shoes is badly needed to solve the problems existing in the current technology. Utility Model Content
[0004] In view of this, the present invention proposes a breathable women's shoe, aiming to solve the problem that existing women's shoes have no lateral support.
[0005] The utility model provides a breathable women's shoe, comprising:
[0006] soles;
[0007] Two side vamps are provided, one end of each of the side vamps is fixed to one side of the upper surface of the sole;
[0008] An upper vamp, one end of which is connected to the front portion of the sole and the two side vamps respectively;
[0009] The support unit includes a lateral support part and a bottom support part, the lateral support part is arranged in the two side uppers, the lateral support part includes a first support column, a second support column and a first connecting piece, the first support column is arranged at the connection between the two side uppers and the upper surface of the sole, the second support column is arranged above the first support column, and several first connecting pieces are arranged between the first support column and the second support column, and the bottom support part is arranged in the sole.
[0010] Furthermore, the lateral support portion further includes a second connecting piece and a torsion spring. The second connecting piece is arranged opposite to the first connecting piece, and a torsion spring is arranged between the second connecting piece and the first connecting piece.
[0011] Furthermore, the bottom support portion includes a first support plate, a first air cushion, an air hole and a spring piece. The lower surface of the first support plate is in contact with the upper surface of the first air cushion. The lower surface of the first air cushion is provided with an air hole, and a spring piece is provided inside the first air cushion.
[0012] Furthermore, the support unit also includes a reinforcement part, which includes a first reinforcement plate and a second reinforcement plate. The first reinforcement plate and the second reinforcement plate are respectively arranged at the connection between the inner sides of the two side uppers, and the first reinforcement plate and the second reinforcement plate are respectively fixedly connected to one end of the first support column and the second support column.
[0013] Furthermore, the reinforcement part also includes a third reinforcement piece and a fourth reinforcement piece. There are two third reinforcement pieces, and the two third reinforcement pieces are respectively arranged on the outer surfaces of the two side shoe uppers. There are several fourth reinforcement pieces, and the several fourth reinforcement pieces are arranged in the middle of the outer surfaces of the two side shoe uppers.
[0014] Furthermore, the reinforcement portion further includes a fifth reinforcement piece, and the fifth reinforcement piece is provided at the connection between the outer surfaces of the two side uppers.
[0015] Furthermore, it also includes a plurality of first through holes, which are arranged through the two side uppers.
[0016] Furthermore, the bottom surface of the sole is provided with anti-slip strips, and the anti-slip strips are provided in plurality.
[0017] Furthermore, a cotton layer is provided inside the two side shoe uppers, and the cotton layer is in contact with the inner surfaces of the two side shoe uppers.
[0018] Furthermore, it also includes a tongue, which is arranged at the connection between the two side uppers, and one end of the tongue is connected to the upper upper.
[0019] Compared with the prior art, the beneficial effects of the present invention are: the present invention can limit the ankle by arranging lateral support parts in the side shoe upper, preventing the ankle from everting or turning inward and causing physical injury. At the same time, the lateral support can make the position of the ankle in the shoe more fixed, reduce the sliding of the foot in the shoe, thereby improving the overall foot stability, and thus enhancing the wearer's comfort, reducing the shaking of the foot in the shoe, and reducing the fatigue of the feet. The bottom support part is arranged in the sole, which can maintain the stability of the foot during walking, and provide sufficient support and shock absorption to prevent injury and reduce fatigue, and protect the foot from excessive ground reaction force. The lateral support part and the bottom support part can increase the overall structural strength of the shoe, reduce the deformation of the shoe after long-term use, and maintain its original shape and support effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 A cross-sectional view of a breathable women's shoe provided by an embodiment of the present utility model;
[0021] Figure 2 A side view of the side upper of the breathable women's shoes provided in an embodiment of the present utility model;
[0022] Figure 3 An overall diagram of the breathable women's shoes provided by an embodiment of the utility model;
[0023] Figure 4 A schematic diagram of the sole of a breathable women's shoe provided in an embodiment of the utility model.
[0024] Among them: 1. sole; 101. anti-slip strip; 2. lateral upper; 201. cotton layer; 3. upper upper; 4. support unit; 410. lateral support part; 4101. first support column; 4102. second support column; 4103. first connecting piece; 4104. second connecting piece; 4105. torsion spring; 420. bottom support part; 4201. first support piece; 4202. first air cushion; 4203. air hole; 4204. spring piece; 430. first reinforcement piece; 440. second reinforcement piece; 450. third reinforcement piece; 460. fourth reinforcement piece; 470. fifth reinforcement piece; 5. first through hole; 6. shoelace; 7. tongue; 8. perforation. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0026] In the description of this application, it should be understood that the terms "center", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0027] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features indicated. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. Throughout this application, unless otherwise specified, "plurality" means two or more.
[0028] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0029] See Figure 1-2 As shown, Figure 2 , which is a side view from the heel, this embodiment provides a breathable women's shoe, comprising: a sole 1;
[0030] Two side vamps 2 are provided, and one end of each of the side vamps 2 is fixed to one side of the upper surface of the sole 1;
[0031] An upper vamp 3, one end of which is connected to the front portion of the sole 1 and the two side vamps 2;
[0032] The support unit 4 includes a lateral support portion 410 and a bottom support portion 420. The lateral support portion 410 is arranged in the two side uppers 2. The lateral support portion 410 includes a first support column 4101, a second support column 4102 and a first connecting piece 4103. The first support column 4101 is arranged at the connection between the two side uppers 2 and the upper surface of the sole 1, the second support column 4102 is arranged above the first support column 4101, and several first connecting pieces 4103 are arranged between the first support column 4101 and the second support column 4102. The bottom support portion 420 is arranged in the sole 1.
[0033] Specifically, there are two side uppers 2, one end of each side upper 2 is fixedly connected to one side of the upper surface of the sole 1, and a plurality of through-holes 8 are provided on the other side of the side uppers 2, and the plurality of through-holes 8 are used to thread the shoelaces 6. One end of the upper upper 3 is respectively connected to the front part of the sole 1 and the side uppers 2, so that the space inside the shoe can accommodate the foot. The support unit 4 includes a lateral support part 410 and a bottom support part 420. The lateral support part 410 is arranged in the side uppers 2 and cooperates with the side uppers 2 to limit the ankle to prevent it from excessive eversion or inversion. The lateral support part 410 includes a first support column 4101, a second support column 4102 and a first connecting piece 4103. 2, a first support column 4101 is positioned at the junction of the side upper 2 and the sole 1, and a second support column 4102 is positioned above the first support column 4101, such that the space between the first and second support columns 4101 and 4102 corresponds to the length of the first connecting piece 4103. One end of the first connecting piece 4103 is fixedly connected to the first support column 4101, and the other end is fixedly connected to the second support column 4102. The first connecting piece 4103 is positioned on the side near the outside of the shoe. The bottom support portion 420 is positioned within the sole 1. Conventional shoe soles 1 typically include multiple layers: an insole, a midsole, and an outsole. The insole is a cushioning member adjacent to the foot and is typically very soft, enhancing the comfort of the shoe. The outsole refers to the outermost portion of the shoe that contacts the ground and is typically made of a wear-resistant material. The midsole is typically used to prevent excessive pronation of the foot and protect the foot from excessive ground reaction forces. The bottom support portion 420 is positioned within the midsole.
[0034] It is understood that by providing lateral support portions 410 and bottom support portions 420 within the side vamp 2 and sole 1, respectively, the functionality and safety of the shoe are enhanced. One end of each side vamp 2 is fixed to one side of the upper surface of the sole 1, and the other side is provided with a plurality of perforations 8 for threading shoelaces 6. The shoelaces 6 are then used to fasten the side vamps 2 and the tongue 7, ensuring that the position of the ankle in the shoe is more fixed and reducing unnecessary movement and sliding. The lateral support can limit excessive ankle eversion or inversion, especially during strenuous exercise or walking on uneven ground, and can reduce the risk of sprains caused by ankle instability. At the same time, the lateral support portion 410 enhances the structural strength of the side vamp 2, making the shoe more durable and reducing deformation after long-term use.
[0035] One end of the upper vamp 3 is connected to the front of the sole 1 and the side vamps 2, respectively, so that the space inside the shoe can accommodate the foot. This not only ensures the fit of the shoe, but also improves the comfort and convenience of wearing. Through the tight connection between the upper vamp 3 and the side vamp 2, the overall sense of wrapping of the shoe is improved, the shaking of the foot inside the shoe is reduced, and the foot's stability is further enhanced.
[0036] Bottom-facing support portion 420 within support unit 4 is located within the midsole of sole 1. The midsole is typically used to prevent excessive pronation and protect the foot from excessive ground reaction forces. Bottom-facing support portion 420 not only provides enhanced support and shock absorption, but also ensures even pressure distribution across the sole of the foot during walking, reducing plantar pressure and pain, alleviating fatigue during prolonged walking or running, and minimizing the risk of injury.
[0037] The first support column 4101 of the lateral support portion 410, which is provided in the side uppers 2, is located at the connection between the side uppers 2 and the upper surface of the sole 1, ensuring a tight connection between the side uppers 2 and the sole 1, and enhancing the structural strength and lateral stability of the sole 1. The second support column 4102 is provided above the first support column 4101, and a plurality of first connecting pieces 4103 between the first support column 4101 and the second support column 4102 form a strong and flexible support system. One end of the first connecting piece 4103 is fixed to the first support column 4101, and the other end is fixed to the second support column 4102. The first connecting piece 4103 is provided on the side close to the outside of the shoe. While providing strong support, it can also limit the eversion movement of the ankle, reducing the risk of sprains caused by excessive eversion of the ankle. The first support column 4101 and the second support column 4102 are fixed and connected at multiple points to form a three-dimensional support framework, enhancing the overall structural strength of the lateral upper 2. This not only improves the durability of the shoe and reduces the need for frequent shoe replacement, but also ensures that the shoe's shape and support effectiveness are not significantly affected during prolonged use or high-intensity exercise. Secondly, the first connecting piece 4103 allows the lateral support portion 410 to provide rigid support while retaining a certain degree of flexibility. This flexibility allows the wearer's ankle to adjust naturally during various movements without feeling stiff or restricted. Furthermore, the lateral support portion 410 can help improve gait. By limiting excessive ankle eversion or inversion, the lateral support portion 410 can guide and normalize gait (for example, turning inward or outward), reducing unhealthy walking habits. This helps improve overall body posture and reduce the risk of injury. For patients recovering from ankle instability, the lateral support portion 410 can provide the necessary support to help them gradually regain a normal gait and reduce the pain and discomfort caused by ankle instability. The first support column 4101 and the second support column 4102 are generally made of a harder material, such as TPU (thermoplastic polyurethane) or carbon fiber, which has excellent strength and durability and can resist the influence of external forces.
[0038] In some embodiments of the present application, the lateral support portion 410 further includes a second connecting piece 4104 and a torsion spring 4105. The second connecting piece 4104 is arranged opposite to the first connecting piece 4103, and a torsion spring 4105 is arranged between the second connecting piece 4104 and the first connecting piece 4103.
[0039] Specifically, the lateral support portion 410 also includes a second connecting piece 4104 and a torsion spring 4105. The second connecting piece 4104 is arranged opposite to the first connecting piece 4103. Specifically, the second connecting piece 4104 is arranged in the shoe upper 2 on both sides, close to the inner side of the shoe. The second connecting piece 4104 is slidingly connected to the first support column 4101 and the second support column 4102, and a torsion spring 4105 is arranged between the first connecting piece 4103 and the second connecting piece 4104.
[0040] It can be understood that by adding the second connecting piece 4104 and the torsion spring 4105 to the lateral support portion 410, the performance of the shoe in terms of ankle protection and overall stability is further improved. The lateral support portion 410 includes not only the first support column 4101, the second support column 4102 and the first connecting piece 4103, but also the second connecting piece 4104 and the torsion spring 4105. The first support column 4101 and the second support column 4102 are respectively arranged above and below the connection between the side upper 2 and the sole 1, forming a three-dimensional support frame. The first connecting piece 4103 is arranged near the outside of the shoe, one end of which is fixedly connected to the first support column 4101, and the other end is fixedly connected to the second support column 4102. The multiple first connecting pieces 4103 enhance the lateral support of the side upper 2. The second connecting piece 4104 is positioned opposite the first connecting piece 4103, specifically located within the side vamp 2, near the inside of the shoe. The second connecting piece 4104 is slidably connected to the first support post 4101 and the second support post 4102, forming a flexible and adjustable medial support structure. A torsion spring 4105 is positioned between the first and second connecting pieces 4103, 4104, providing not only rigid support but also increasing the elasticity and dynamic response of the lateral support portion 410. The first and second support posts 4101, 4102 are fixed and connected at multiple points, forming a three-dimensional support framework. This enhances the overall structural strength of the lateral vamp 2, improving the durability of the shoe and ensuring that the shoe's shape and support are not significantly affected during prolonged use or high-intensity exercise. Furthermore, the opposing arrangement of the first and second connecting pieces 4103, 4104, creates a more comprehensive and balanced lateral support structure, with the first connecting piece 4103 providing lateral support and the second connecting piece 4104 providing medial support. The first connecting piece 4103 and the second connecting piece 4104 can limit the eversion movement of the ankle, reduce the risk of sprains caused by excessive eversion of the ankle, and further enhance the stability of the ankle. The symmetrical support not only improves the balance of the shoe, but also ensures that the ankle is fully protected and supported in various movements and posture changes. At the same time, the sliding connection of the second connecting piece 4104 can also disperse and absorb part of the impact force, reducing the burden on the ankle. Furthermore, the torsion spring 4105 provided between the first connecting piece 4103 and the second connecting piece 4104 further enhances the elasticity and dynamic response capability of the lateral support part 410. The torsion spring 4105 can provide an immediate reaction force when the ankle is slightly twisted, helping the ankle return to its normal position, thereby reducing the possibility of sprains and other injuries. It can also provide additional shock absorption when the shoe lands, allowing the wearer to experience a more stable and comfortable experience during exercise.The first connecting piece 4103 and the second connecting piece 4104 in the upper 2 on both sides form a balanced support structure on the inside and outside. Coupled with the elastic support of the torsion spring 4105, the shoe can provide necessary support while maintaining good flexibility and dynamic response capabilities.
[0041] In some embodiments of this application, see Figure 4 As shown, the bottom support portion 420 includes a first support plate 4201, a first air gasket 4202, an air hole 4203 and a spring 4204. The lower surface of the first support plate 4201 is in contact with the upper surface of the first air gasket 4202. The lower surface of the first air gasket 4202 is provided with an air hole 4203. The first air gasket 4202 is provided with a spring 4204.
[0042] Specifically, the bottom support part 420 includes a first support plate 4201, a first air cushion 4202, an air hole 4203 and a spring piece 4204. The first support plate 4201 is arranged above the first air cushion 4202 and fits with the first air cushion 4202. The spring piece 4204 is arranged in the first air cushion 4202. The air hole 4203 is arranged on the bottom side of the first air cushion 4202. The air hole 4203 penetrates into the sole 1. The first support plate 4201 is provided with anti-slip grooves, which can prevent the insole and the sole 1 from displacement and causing damage.
[0043] It can be understood that by providing the first support sheet 4201, the first air cushion 4202, the air holes 4203 and the shrapnel 4204 in the bottom support portion 420, the sole support, shock absorption effect, stability and durability of the shoe are improved. First, the first support sheet 4201 and the first air cushion 4202 form a strong and elastic support layer, which can prevent the sole of the foot from sinking or deforming unnecessary during walking or exercise, thereby improving the stability and comfort of the sole of the foot. At the same time, while providing good support, it can reduce the impact of the ground reaction force on the sole of the foot, reducing fatigue and discomfort during long-term walking or running. Secondly, the shrapnel 4204 provided in the first air cushion 4202 further enhances the shock absorption effect and dynamic response capability, and can provide an immediate reaction force when the shoe lands, helping the sole of the foot to quickly return to its normal position and reducing vibration and instability caused by impact force. It can significantly reduce the risk of injury to the sole of the foot and knees and improve athletic performance. Furthermore, the air holes 4203 on the underside of the first air cushion 4202 effectively enhance breathability and shock absorption. The air holes 4203 extend through the sole 1 and instantly open when the shoe touches the ground, releasing the air inside and reducing the impact. They also quickly close when the foot is lifted, forming an air cushion that cushions the next step of landing and enhances shock absorption. Finally, the anti-slip grooves on the first support sheet 4201 effectively prevent displacement between the insole and the sole 1. These anti-slip grooves significantly increase the friction between the first support sheet 4201 and the insole, preventing the insole and sole 1 from sliding relative to each other even during intense exercise. This reduces foot instability and discomfort caused by displacement and improves the overall stability of the shoe.
[0044] In some embodiments of this application, see Figure 2 As shown, the support unit 4 also includes a reinforcement part, which includes a first reinforcement piece 430 and a second reinforcement piece 440. The first reinforcement piece 430 and the second reinforcement piece 440 are respectively arranged at the connection between the inner sides of the two side uppers 2, and the first reinforcement piece 430 and the second reinforcement piece 440 are respectively fixedly connected to one end of the first support column 4101 and the second support column 4102.
[0045] Specifically, the first reinforcement plate 430 and the second reinforcement plate 440 are arranged in the two side uppers 2, the first reinforcement plate 430 is arranged at the front end of the shoe, and the second reinforcement plate 440 is arranged at the heel of the shoe. The first reinforcement plate 430 and the second reinforcement plate 440 are fixedly connected to the first support column 4101 and the second support column 4102 respectively.
[0046] It is understood that the reinforcement portion includes a first reinforcement sheet 430 and a second reinforcement sheet 440, which are respectively arranged at the connection between the inner sides of the side uppers 2, namely the front end and the heel. The first reinforcement sheet 430 and the second reinforcement sheet 440 are respectively fixedly connected to one end of the first support column 4101 and the second support column 4102, forming a more solid and coherent support structure. First, the first reinforcement sheet 430 and the second reinforcement sheet 440 enhance the structural strength of the side upper 2. The first reinforcement sheet 430 is located at the front end of the shoe, which can support the toes and forefoot to prevent deformation and damage to the front upper caused by strenuous exercise. The second reinforcement sheet 440 is located at the heel of the shoe, which can provide stronger heel support, reduce shaking and instability in the heel area, and thus improve the overall stability of the ankle. By arranging reinforcement sheets at the front end and the heel respectively, the side structure and front structure of the shoe are comprehensively reinforced, extending the service life of the shoe and reducing the need for frequent replacement. Secondly, the fixed connection between the first and second reinforcement plates 430, 440, and the first and second support columns 4101, 4102 forms an integrated support frame, which not only improves the structural strength of the shoe but also ensures more uniform and comprehensive ankle protection during various sports. The connection between the first reinforcement plate 430 and the first support column 4101 strengthens the stability and support of the forefoot, allowing the wearer to better control the movement of the toes and forefoot during dynamic movements such as running and jumping, reducing the risk of injury caused by forefoot instability. The connection between the second reinforcement plate 440 and the second support column 4102 enhances the support of the heel, keeping the ankle stable during various posture changes, reducing shaking and sliding in the heel area, and improving overall wearing comfort.
[0047] In some embodiments of the present application, the reinforcement part also includes a third reinforcement piece 450 and a fourth reinforcement piece 460. There are two third reinforcement pieces 450, and the two third reinforcement pieces 450 are respectively arranged on the outer surfaces of the two side uppers 2. There are several fourth reinforcement pieces 460, and several fourth reinforcement pieces 460 are arranged in the middle of the outer surfaces of the two side uppers 2.
[0048] As can be appreciated, the third and fourth reinforcing plates 450, 460 further enhance the shoe's ankle protection, overall stability, and durability. The reinforcement section includes the third and fourth reinforcing plates 450, 460. Two third reinforcing plates 450 are provided, one on each side of the outer surface of the upper 2, while several fourth reinforcing plates 460 are located in the middle of the outer surface of the upper 2. This strengthens the shoe in multiple key areas, providing more comprehensive and effective support. First, the placement of the third reinforcing plates 450 on the outer surfaces of the upper 2 on both sides enhances the shoe's lateral support. By adding the third reinforcing plates 450 to the outer surfaces of the upper 2 on both sides, the shoe prevents ankle eversion during strenuous exercise, reducing the risk of sprains and other injuries caused by eversion. The third reinforcing plates 450 allow the shoe to better conform to the outer side of the ankle, providing natural, non-rigid support. Secondly, the fourth reinforcement piece 460 is provided in the middle of the outer surface of the upper 2 on both sides, further enhancing the support effect of the middle part of the shoe. Multiple fourth reinforcement pieces 460 are provided to ensure uniform distribution of support effect, effectively resisting lateral stretching and deformation, and maintaining more stable support for the ankle during various movements and posture changes. The fourth reinforcement piece 460 not only enhances the structural strength of the shoe, but also reduces the risk of ankle instability and injury caused by insufficient support in the middle part. The fourth reinforcement piece 460 can provide additional support and protection, reducing the burden and fatigue on the ankle. This allows the shoe to provide effective support in multiple directions and multiple locations, not only improving the stability of the ankle, but also enhancing the shoe's impact resistance and wear resistance.
[0049] In some embodiments of the present application, the reinforcement portion further includes a fifth reinforcement piece 470 , and the fifth reinforcement piece 470 is provided at the connection between the outer surfaces of the two side uppers 2 .
[0050] It will be appreciated that the fifth reinforcing plate 470 is positioned at the junction of the outer surfaces of the upper 2 on both sides, corresponding to the position of the second reinforcing plate 440. The second reinforcing plate 440 is located at the heel inside the shoe, while the fifth reinforcing plate 470 is positioned at a corresponding position on the outer surface of the shoe. This dual reinforcement, both inside and outside, provides the wearer with more comprehensive and effective support. First, the fifth reinforcing plate 470 enhances the external protection of the heel. The heel bears the primary impact force during walking, running, and other sports, so its stability and protection are crucial to the overall performance of the shoe. By providing the fifth reinforcing plate 470 at the junction of the outer surfaces of the upper, it can resist external impact and friction, protecting the heel area from damage. This not only improves the durability of the shoe but also reduces pain and discomfort caused by uneven force on the heel. Second, the fifth reinforcing plate 470 and the second reinforcing plate 440 are arranged inside and outside in correspondence, forming a complete support structure. The second reinforcement plate 440 is located at the heel inside the shoe and is mainly responsible for internal support and stability, while the fifth reinforcement plate 470 provides additional reinforcement on the outside. Through the combination of internal and external, when the heel is subjected to external impact, it can be protected by the fifth reinforcement plate 470 to further disperse and buffer the force. In this way, the force on the heel becomes more uniform, reducing fatigue and damage caused by excessive local pressure. At the same time, the internal and external reinforcement plates also improve the overall structural strength of the shoe, so that it can still maintain a good support effect during long-term use. Furthermore, the fifth reinforcement plate 470 improves the balance and athletic performance of the shoe. As the main part of the shoe that bears force, the stability of the heel directly affects the balance of the entire body. The dual internal and external support of the fifth reinforcement plate 470 and the second reinforcement plate 440 ensures that the heel can remain stable in various movements and standing postures.
[0051] In some embodiments of the present application, a plurality of first through holes 5 are further included, and the plurality of first through holes 5 are arranged through the two side uppers 2.
[0052] It can be appreciated that the addition of several first through-holes 5 to the upper 2 on both sides improves the shoe's breathability and comfort. These first through-holes 5, arranged throughout the front and sides of the upper, enhance air exchange between the shoe's interior and the outside world. Heat easily accumulates inside shoes during prolonged wear and exercise, leading to sweating and dampness in the feet. This not only increases bacteria but can also cause health issues such as foot odor and athlete's foot. The addition of these first through-holes 5 allows heat and moisture inside the shoe to escape, allowing cool air from outside to flow in, thereby improving the shoe's internal microenvironment and keeping the feet dry and comfortable. Firstly, the design of the first through-holes 5 enhances the shoe's breathability. Conventional shoe designs often neglect optimizing breathability, particularly in the front and sides of the upper, where heat and moisture easily accumulate. By adding these first through-holes 5, breathability in these areas is improved. When the wearer is exercising or standing for long periods, heat from the feet can escape through the first through-holes 5, allowing cool air from outside to flow in, helping to cool the feet. Sweating feet are a major factor in bacterial growth. Prolonged exposure to heat and humidity can lead to bacterial proliferation, causing athlete's foot, foot odor, and other issues. The first through-holes 5 increase air circulation, allowing moisture to escape from the shoe and reducing bacterial growth. Furthermore, fresh air entering the shoe further inhibits bacterial growth, reducing the risk of foot infection.
[0053] In some embodiments of the present application, the bottom surface of the sole 1 is further provided with anti-slip strips 101, and the anti-slip strips 101 are provided in plurality.
[0054] As can be appreciated, the provision of several anti-slip strips 101 on the underside of the sole 1 enhances the shoe's anti-slip properties. These strips 101 increase the friction between the sole 1 and the ground, making walking on slippery or uneven surfaces safer for the wearer. This not only reduces the risk of slips and falls, but also improves the wearer's stability and control during exercise and daily activities. These strips 101 not only effectively protect against adverse weather conditions such as rain, snow, or wet surfaces, but also provide enhanced anti-slip properties on common surfaces such as indoor floors and stairs, ensuring a more stable footing and reducing the risk of accidental injury.
[0055] In some embodiments of the present application, a cotton layer 201 is further provided inside the two side uppers 2 , and the cotton layer 201 is in contact with the inner surfaces of the two side uppers 2 .
[0056] It is understood that the placement of the cotton layer 201 within the side uppers 2 enhances the comfort and warmth retention of the shoe. The cotton layer 201 adheres to the inner surfaces of the side uppers 2, forming a soft and breathable lining that provides additional protection and support for the wearer's feet. The cotton layer 201 not only absorbs perspiration from the feet, reducing dampness and heat, but also maintains warmth, especially in cold environments. The addition of the cotton layer 201 creates a more comfortable interior for the shoe, reducing foot fatigue and discomfort, and enhancing the wearing experience. Furthermore, the cotton layer 201 prevents the lateral support portions 410 from directly contacting the wearer's feet, enhancing foot comfort.
[0057] In some embodiments of the present application, a tongue is further included, which is arranged at the connection between the two side uppers, and one end of the tongue is connected to the upper upper.
[0058] Specifically, a tongue 7 is provided on the other side of the two side uppers 2 , and the two side uppers 2 and the tongue 7 are fastened by shoelaces 6 .
[0059] It is understandable that the tongue is usually made of soft material, which can reduce the pressure of the laces on the instep and improve the comfort of wearing. At the same time, it can form a barrier between the foot and the shoe to prevent foreign objects such as sand, stones, dust, etc. from entering the shoe and keep the shoe clean. Finally, the tongue can work with the laces to help fix the position of the foot, making the foot more stable in the shoe and suitable for wearing during exercise.
[0060] A breathable women's shoe in the above-mentioned embodiments can limit the ankle by arranging a lateral support part in the side shoe upper, preventing the ankle from everting or turning inward and causing physical injury. At the same time, the lateral support can make the position of the ankle in the shoe more fixed, reduce the sliding of the foot in the shoe, thereby improving the overall foot stability, and thus enhancing the wearer's comfort, reducing the shaking of the foot in the shoe, and reducing the fatigue of the feet. The bottom support part is arranged in the sole, which can maintain the stability of the foot during walking, and provide sufficient support and shock absorption to prevent injury and reduce fatigue, and protect the foot from excessive ground reaction force. The lateral support part and the bottom support part can increase the overall structural strength of the shoe, reduce the deformation of the shoe after long-term use, and maintain its original shape and support effect.
[0061] Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if such modifications and variations fall within the scope of the claims of the present invention and their equivalents, the present invention is intended to include such modifications and variations.
Claims
1. A breathable women's shoe, characterized in that: include: soles; Two side vamps are provided, one end of each of the side vamps is fixed to one side of the upper surface of the sole; An upper vamp connected to the front portion of the sole and the two side vamps; The support unit includes a lateral support part and a bottom support part, the lateral support part is arranged in the two side uppers, the lateral support part includes a first support column, a second support column and a first connecting piece, the first support column is arranged at the connection between the two side uppers and the upper surface of the sole, the second support column is arranged above the first support column, and several first connecting pieces are arranged between the first support column and the second support column, and the bottom support part is arranged in the sole.
2. The breathable women's shoes according to claim 1, characterized in that: The lateral support portion further includes a second connecting piece and a torsion spring. The second connecting piece is arranged opposite to the first connecting piece, and a torsion spring is arranged between the second connecting piece and the first connecting piece.
3. The breathable women's shoes according to claim 2, characterized in that: The bottom support portion includes a first support sheet, a first air cushion, an air hole and a spring piece. The lower surface of the first support sheet is in contact with the upper surface of the first air cushion. The lower surface of the first air cushion is provided with an air hole, and a spring piece is provided inside the first air cushion.
4. The breathable women's shoes according to claim 1, characterized in that: The support unit also includes a reinforcement part, which includes a first reinforcement plate and a second reinforcement plate. The first reinforcement plate and the second reinforcement plate are respectively arranged at the connection between the inner sides of the two side shoe uppers. The first reinforcement plate and the second reinforcement plate are respectively fixedly connected to one end of the first support column and the second support column.
5. The breathable women's shoes according to claim 4, characterized in that: The reinforcement part also includes a third reinforcement piece and a fourth reinforcement piece. There are two third reinforcement pieces, and the two third reinforcement pieces are respectively arranged on the outer surfaces of the two side shoe uppers. There are several fourth reinforcement pieces, and the several fourth reinforcement pieces are arranged in the middle of the outer surfaces of the two side shoe uppers.
6. The breathable women's shoes according to claim 5, characterized in that: The reinforcement portion further includes a fifth reinforcement piece, which is arranged at the connection between the outer surfaces of the two side shoe uppers.
7. The breathable women's shoes according to claim 6, characterized in that: It also includes a plurality of first through holes, which are arranged through the two side shoe uppers.
8. The breathable women's shoes according to claim 1, characterized in that: The bottom surface of the sole is further provided with anti-slip strips, and the anti-slip strips are provided with a plurality of strips.
9. The breathable women's shoes according to claim 1, characterized in that: A cotton layer is further provided inside the two side shoe uppers, and the cotton layer is in contact with the inner surfaces of the two side shoe uppers.
10. The breathable women's shoes according to claim 1, characterized in that: It also includes a tongue, which is arranged at the connection between the two side uppers, and one end of the tongue is connected to the upper upper.