Foot sprain prevention shoe
By introducing anti-slip structures, reinforced support plates, and perforated structures into the shoes, combined with connecting support components, the anti-slip performance of the shoes is improved, solving the problem of poor comfort in existing anti-slip measures, and making them suitable for preventing children's ankle sprains.
Patent Information
- Application Number
- CN202520857419.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-30
AI Technical Summary
Existing ankle sprain prevention measures, such as ankle braces and elastic corrective structures, are restrictive and uncomfortable, making them difficult to effectively prevent ankle sprains in daily life.
The shoes are designed to prevent ankle sprains. They feature an anti-slip sole structure, reinforced support plate, perforated structure, and connecting support components. Combined with anti-slip blocks and reinforcements, these elements improve the stability, support capacity, and elastic deformation performance of the sole.
These shoes provide excellent ankle support in daily life, reducing the likelihood of ankle sprains, and are especially suitable for children.
Smart Images

Figure CN223913537U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of shoes, in particular to a kind of anti-ankle sprain shoes. BACKGROUND
[0002] Ankle sprain (ankle sprain) is a kind of injury to human foot in daily life and movement process, especially for children, its ankle sprain incidence is higher than adult, for the reason, in addition to children active, mainly in muscle control, movement mode, environmental adaptation and other factors jointly.
[0003] In order to prevent ankle sprain or reduce ankle sprain probability, the implementable means has the means of protecting ankle by ankle bandage, elastic correction structure etc., this kind of way except there is strong restraint, poor comfort shortcoming, also inconvenient to use in daily life.Therefore, how to improve the performance of anti-ankle sprain through the design of shoe structure is the technical problem to be solved by the design personnel. CONTENT OF THE UTILITY MODEL
[0004] The technical problem to be solved by the present application is how to improve the performance of anti-ankle sprain of shoes to reduce the probability of ankle sprain.
[0005] To solve the above technical problem, the anti-ankle sprain shoes provided by the present application comprises:
[0006] Sole, the bottom surface of the sole has anti-skid structure, in the width direction of the sole, at least one side is provided with hole structure, the hole of the hole structure is arranged on the side surface corresponding to the side width direction of the sole;
[0007] Reinforced support plate, for strengthening the structural strength of the sole, define the height direction of the anti-ankle sprain shoes as up-down direction, at least part of the edge of the reinforced support plate is located on the upper side of at least part of the hole structure;
[0008] Uppers, connected with the sole and surrounding the shoe cavity for accommodating foot, the upper end of the upper has shoe mouth, the upper also includes vamp between the shoe mouth and the sole;
[0009] Connecting support, located in the side of the width direction of the anti-ankle sprain shoes, the connecting support is connected between the shoe mouth and the sole, for strengthening the structural strength of the vamp between the shoe mouth and the sole.
[0010] In one technical solution, the upper side hole edge of the hole of at least one hole structure is arc-shaped structure with middle high and both sides low, and / or, the lower side hole edge is arc-shaped structure with middle low and both sides high.
[0011] In one technical solution, the shoe sole has a forefoot region corresponding to the forefoot of the foot, an arch region corresponding to the arch of the foot, and a heel region corresponding to the heel of the foot in the length direction of the shoe sole. On at least one side of the shoe sole in the width direction, the hole structure is arranged corresponding to the forefoot region, the arch region, and the heel region.
[0012] In one technical solution, the reinforcing support plate is a half-forefoot support plate, one end of which is located in the heel region and the other end is located in the forefoot region.
[0013] In one technical solution, the connecting support member includes a transverse segment and a vertical segment, one end of the vertical segment being connected to the middle of the transverse segment in the length direction, the transverse segment extending forward and backward to be connected to the shoe opening, and the other end of the vertical segment being connected to the shoe sole.
[0014] In one technical solution, the connecting support member is arranged on both sides of the shoe in the width direction.
[0015] In one technical solution, the connecting support member is connected to the shoe opening, the shoe sole, and the shoe upper by a fuse connection structure.
[0016] In one technical solution, a reinforcing member is connected to the back side of the shoe upper, the lower end of the reinforcing member being connected to the shoe sole, for supporting the back side of the shoe upper to strengthen the structural strength of the back side of the shoe upper.
[0017] In one technical solution, at least one side of the shoe sole in the width direction has an upper convex structure, which is located at the heel of the shoe sole in the length direction of the shoe sole to form a blocking wall structure outside the heel of the shoe upper.
[0018] In one technical solution, the length direction of the shoe sole is defined as the front-rear direction, wherein the heel region is the back side and the toe region is the front side, and the width direction is the left-right direction. The shoe sole has:
[0019] A groove structure located on the bottom side of the shoe sole, the groove structure penetrating through the shoe sole in the left-right direction;
[0020] A front-side anti-skid block located on the front side of the groove structure;
[0021] A back-side anti-skid block located on the back side of the groove structure, the back-side anti-skid block having a three-dimensional pattern;
[0022] The front side anti-skid blocks and the rear side anti-skid blocks constitute at least part of the anti-skid structure, the front side anti-skid blocks are provided in plurality, each of the front side anti-skid blocks is arranged at intervals left and right, a gap between two adjacent front side anti-skid blocks forms a branch groove, the branch groove is communicated with the groove structure and penetrates the shoe sole forward, each of the front side anti-skid blocks comprises a first part and a second part, the first part is provided with a groove penetrating forward, the second part is provided corresponding to the groove, and part of the second part is located in the groove and part of the second part extends out of the groove, and the first part and the second part are arranged at intervals.
[0023] The utility model discloses the beneficial effects are:
[0024] The anti-tipping shoes are provided with the anti-skid structure, the ground adhesion performance of the shoe sole is guaranteed, the anti-tipping shoes have good stability when contacting the ground, the structural strength of the shoe sole is strengthened by the reinforcing support plate, the shoe sole has good supporting capacity, the hole structure is arranged on the side of the shoe sole, the hole structure makes the shoe sole have good deformation damping performance, improves the dynamic adaptability of the shoe sole and the ground, prevents the anti-tipping shoes from impacting the ground and being unstable in posture when a person walks and moves due to the arrangement of the reinforcing support plate, so that the anti-tipping shoes have good anti-tipping performance in many aspects. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is a structure schematic view of the anti-tipping shoes from the outside view in an embodiment of the application.
[0026] Figure 2 It is a structure schematic view of the anti-tipping shoes from the inside view in an embodiment of the application.
[0027] Figure 3 It is a structure schematic view of the anti-tipping shoes from the bottom view in an embodiment of the application.
[0028] Figure 4 It is a structure schematic view of the anti-tipping shoes from the top view in an embodiment of the application.
[0029] Figure 5 It is a structure schematic view of the anti-tipping shoes from the rear view in an embodiment of the application.
[0030] Figure 6 It is Figure 3 A partial enlarged view.
[0031] The list of feature names corresponding to the reference signs in the drawing is as follows:
[0032] 10, sole; 11, hole structure; 111, upper hole rim; 112, lower hole rim; 12, upper convex structure; 13, groove structure; 14, front side anti-skid block; 141, first part; 1411, groove; 142, second part; 1421, front section; 1422, rear section; 143, interval; 15, rear side anti-skid block; 151, first partition groove; 152, first block; 153, second block; 154, third block; 155, fourth block; 156, second partition groove; 157, third partition groove; 16, branch groove;
[0033] 20, upper; 201, toe cap; 202, upper;
[0034] 30, reinforcing support plate; 301, front end;
[0035] 40, connecting support; 401, horizontal section; 402, vertical section;
[0036] 50, reinforcing member. DETAILED DESCRIPTION
[0037] The application will be further described in details through specific embodiments and with reference to the drawings. In different embodiments, similar elements are designated by similar reference numerals. In the following embodiments, many details are described in order to make the application better understood. However, those skilled in the art can easily recognize that some features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the application are not shown or described in the specification, in order to avoid the core part of the application being overwhelmed by too much description, and it is not necessary for those skilled in the art to describe these related operations in detail according to the description in the specification and the general technical knowledge in the art.
[0038] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various embodiments, and the operation steps involved in each embodiment can also be sequentially adjusted or adjusted in a manner that can be easily apparent to those skilled in the art. Therefore, the specification and drawings are only intended to clearly describe one embodiment, and do not mean that the composition and / or order is necessary.
[0039] In this paper, the serial numbers of components, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any order or technical meaning. The "connection" and "coupling" in this application include direct and indirect connection (coupling) unless otherwise specified.
[0040] The sole of the anti-tipping shoe in the application ensures the stability of the sole when in contact with the ground through the anti-skid structure, and the strength of the sole is improved through the setting of the reinforcing support plate, so that the sole has good supporting capacity. On this basis, the hole structure is set on the side of the width direction of the sole, so that the sole has good elastic buffering capacity, and the setting of the reinforcing support plate is avoided to cause large impact force of the shoe and the ground when the foot moves and lands. The anti-tipping performance of the shoe is ensured through the cooperation of various aspects.
[0041] Embodiments of the anti-tipping shoe in the application:
[0042] Please refer to Figure 1 and Figure 2 , the anti-tipping shoe comprises a sole 10 and an upper 20, the upper 20 is connected with the sole 10 and surrounds a shoe cavity for accommodating a foot.
[0043] Please refer to Figure 1 and Figure 2 , the bottom surface of the sole 10 has an anti-skid structure, which makes the sole 10 have a good grip performance and ensures that the sole 10 can stably contact with the ground. The hole structure 11 is arranged on both sides of the width direction of the sole 10, and the hole of the hole structure 11 is arranged on the side surface of the corresponding side of the width direction of the sole 10, that is, the hole of the hole structure 11 horizontally faces outward, so that the sole 10 has good elastic deformation capacity. When the foot moves, the anti-tipping shoe can be based on the elastic deformation capacity of the sole 10 to perform shock absorption when landing, so as to ensure that the sole 10 has good adaptability to the ground, thereby reducing the impact force of the anti-tipping shoe when contacting with the ground.
[0044] At the same time, please refer to Figure 3 , a reinforcing support plate 30 is arranged on the sole 10, and the reinforcing support plate 30 strengthens the structural strength of the sole 10. The reinforcing support plate 30 can be a carbon fiber plate, and of course TPU plate, high-elastic nylon plate, etc. can also be selected. By setting the reinforcing support plate 30, the supporting capacity of the sole 10 is improved, so as to provide stable support to the foot. At least part of the edge of the reinforcing support plate 30 is located on the upper side of at least part of the hole structure 11, so as to form a buffering and shock-absorbing structure under the lower side of the reinforcing support plate 30. The area corresponding to the heel of the reinforcing support plate 30 can be holed to improve comfort.
[0045] In some embodiments, the reinforcing support plate 30 is a half-sole support plate, as the name implies, the length of the reinforcing support plate 30 is less than the length of the sole 10, so that the reinforcing support plate 30 only supports part of the foot sole. The sole 10 is divided into regions along the length direction, the front end of the sole 10 corresponds to the front sole region of the foot, the region corresponding to the arch of the foot is the arch region, and the region corresponding to the heel of the foot is the rear sole region. The rear end of the half-sole support plate is located in the rear sole region, please refer to Figure 4 , the front end 301 is located in the front sole region.
[0046] The upper end of the upper 20 has a shoe opening 201, and the upper 20 further comprises a vamp 202 between the shoe opening 201 and the sole 10. On the sides in the width direction of the anti-tipping shoe, connecting support members 40 are arranged between the shoe opening 201 and the sole 10, for strengthening the structure of the vamp 202 between the shoe opening 201 and the sole 10. The structural strength of the connecting support members 40 themselves can be greater than that of the vamp 202, or the structural strength of the connecting support members 40 themselves can be not greater than that of the vamp 202. Because the connecting support members 40 are arranged in layers with the vamp 202, a thickened portion is formed, and the thickened portion has a higher structural strength than the other parts of the vamp 202. The vamp 202 can be in the form of a full mesh. After the laces are tightened, the connecting support members 40 can promote the binding of the vamp 202 to the foot, similar to a muscle patch, to prevent the foot from moving relative to the anti-tipping shoe and causing tipping.
[0047] Based on the above structure, the anti-tipping shoe has good stability, support ability, and adaptability to the ground, ensuring that the anti-tipping shoe has good anti-tipping performance.
[0048] Regarding the distribution of the hole structures 11 on the sole 10, in some embodiments, hole structures 11 are arranged on both sides in the width direction of the sole 10. Please refer to Figure 1 and Figure 2 , Figure 1 and Figure 2 A right shoe is shown, Figure 1 which is shown as the side of the anti-tipping shoe facing away from the other paired anti-tipping shoe, i.e., the lateral side. It can be seen that three hole structures 11 are arranged on the lateral side in the width direction of the sole 10, one in the forefoot region, one in the arch region, and one in the rear foot region. In other embodiments, the arrangement position and number of the hole structures 11 on the lateral side of the sole 10 can be changed, such as arranging two or more hole structures in each region, or arranging hole structures 11 in only one or two of the forefoot region, the arch region, and the rear foot region.
[0049] For the medial side in the width direction of the sole 10, as Figure 2 shown, one hole structure 11 is arranged in the forefoot region and the rear foot region, respectively, and the arch region itself is an arc structure facing the ground, so no hole structure 11 is arranged. In other embodiments, hole structures 11 can be arranged on only one side in the width direction of the sole 10 under the premise of meeting performance indicators.
[0050] Regarding the specific shape of the hole structures 11, the shapes of the hole structures 11 at different positions can be different. Please refer to Figure 2The upper hole edge 111 of the hole structure 11 of the forefoot region is an arc structure with high middle and low sides, the lower hole edge 112 is an arc structure with low middle and high sides, and the lower hole edge 112 of the hole structure 11 of the rear foot region is an arc structure with low middle and high sides. In other embodiments, the shape of each hole structure 11 can be the same, only the upper hole edge 111 can be an arc structure, or only the lower hole edge 112 can be an arc structure.
[0051] The hole structure 11 is provided in the form of a hole arc structure, so that the area around the hole structure 11 has better elastic deformation capability. In other embodiments, the hole can also be circular, polygonal, etc.
[0052] Regarding the structure of the connecting support 40, in one embodiment, please refer to Figure 1 and Figure 2 The connecting support 40 includes a transverse section 401 and a vertical section 402, one end of the vertical section 402 is connected to the middle of the length direction of the transverse section 401, so that the connecting support 40 is in the form of a T-shaped structure, the transverse section 401 extends forward and backward to connect with the shoe opening 201, and the other end of the vertical section 402 is connected with the sole 10. In other embodiments, the connecting support 40 can also be in the form of a triangular, linear, or other structure.
[0053] Regarding the connection method of the connecting support 40 and each structure, in some embodiments, the connecting support 40 is connected to the shoe opening 201, the sole 10, and the upper 202 by a fuse connection structure. In other embodiments, the connecting support 40 can also be connected at the target position by sewing with a needle. In some embodiments, the connecting support 40 is provided on both sides of the width direction of the anti-tipping shoe.
[0054] As shown in Figure 1 and Figure 2 , a reinforcing member 50 is connected to the rear side of the upper 20, the structural strength of the reinforcing member 50 is higher than that of the upper 202, and the lower end thereof is connected with the sole 10, for supporting the rear side of the upper 20 to strengthen the structural strength of the rear side of the upper 20.
[0055] Please refer to Figure 1 and Figure 5 In order to further enhance the anti-tipping performance of the anti-tipping shoe, an upper convex structure 12 is provided on the outside of the sole 10 corresponding to the rear foot region, and in the whole shoe, the upper convex structure 12 is located at the heel of the upper 20 of the sole 10, so as to form a blocking wall structure on the outside of the heel of the upper 20, and to block the ankle when the ankle is turned out.
[0056] Regarding the anti-skid structure of the sole 10, please refer to Figure 3, define the length direction of the sole 10 as the front-back direction, wherein the heel area is the rear side and the toe area is the front side, and the width direction is the left-right direction. A groove structure 13 is provided on the bottom side of the sole 10, which extends through the sole 10 along the left-right direction. The groove structure 13 is arranged so that the sole 10 is easily deformed at the groove structure 13.
[0057] A plurality of front-side anti-skid blocks 14 are arranged on the front side of the groove structure 13, and rear-side anti-skid blocks 15 are arranged on the rear side. The rear-side anti-skid blocks 15 have a three-dimensional pattern, which provides good anti-skid performance. In some embodiments, the front-side anti-skid blocks 14 and / or the rear-side anti-skid blocks 15 are rubber anti-skid blocks. Of course, under the premise of meeting the anti-skid index requirements, the front-side anti-skid blocks 14 and the rear-side anti-skid blocks 15 can also be made of other materials, such as EVA (ethylene-vinyl acetate copolymer), PU (polyurethane), TPU (thermoplastic polyurethane), etc.
[0058] Please refer to Figure 3 , the front-side anti-skid blocks 14 are arranged in multiple numbers. In some embodiments, the front-side anti-skid blocks 14 are arranged in four numbers, which are arranged in the left-right direction. In other embodiments, the number of front-side anti-skid blocks 14 can be increased or decreased as needed, such as two, three, or more than four, such as five, six, or even more.
[0059] Please refer to Figure 3 , in some embodiments, the middle position of the groove structure 13 in the left-right direction is located on the front side of the left and right end slots, that is, the groove structure 13 as a whole is an arc shape with the center of the arc on the lower side. Therefore, the four front-side anti-skid blocks 14 are arranged in the left-right direction along the contour of the front end of the sole 10, rather than being arranged in a straight line in the left-right direction. In other embodiments, the groove structure 13 can also be a straight line groove extending in the left-right direction. In this case, the rear ends of the front-side anti-skid blocks 14 are aligned and arranged in the left-right direction.
[0060] As shown in Figure 3 , the gap between the two adjacent front-side anti-skid blocks 14 forms a branch groove 16, which is in communication with the groove structure 13 at the rear end and extends through the sole 10 in the front direction, so that the rear side wall of the front-side anti-skid block 14 forms the slot wall at the corresponding position of the groove structure 13.
[0061] The branch groove 16, the groove structure 13, and the three-dimensional pattern on the rear-side anti-skid blocks 15 can all serve as drainage grooves to prevent the formation of a water film between the sole 10 and the ground and improve the anti-skid performance of the sole 10.
[0062] The four front-side anti-skid blocks 14 have different shapes but the same structure. Please refer to Figure 6 , Figure 6The structure of the front anti-skid block 14 is shown by taking one of the front anti-skid blocks 14 as an example. The front anti-skid block 14 includes a first part 141 and a second part 142. The first part 141 has a groove 1411 extending forwardly, and the second part 142 is arranged correspondingly to the groove 1411. The second part 142 is arranged in the groove 1411, and a part of the second part 142 extends out of the groove 1411. The first part 141 and the second part 142 are arranged in a spaced manner, and a space 143 is formed between the first part 141 and the second part 142. In this way, the front anti-skid block 14 also has a three-dimensional pattern, and the front anti-skid block 14 has a good anti-skid performance. In addition, the front anti-skid blocks 14 are arranged in a spaced manner, and the first part 141 and the second part 142 of each front anti-skid block 14 are arranged in a spaced manner. Therefore, a three-dimensional pattern is formed in a transverse direction, and a claw-shaped gripping structure is formed. In combination with the rear anti-skid block 15 having a three-dimensional pattern, the sole 10 has a good gripping performance.
[0063] Further, as shown in Figure 6 , the second part 142 includes a front section 1421 and a rear section 1422. The height of the rear section 1422 is lower than the height of the first part 141 and the height of the front section 1421. In this way, a larger space is formed between the front section 1421 and the first part 141. For outdoor activities, especially for light outdoor activities, this structure can improve the fit between the front anti-skid block 14 and the ground, and improve the gripping effect and the anti-skid performance.
[0064] The position of the groove structure 13 on the sole 10 corresponds to the toe of the human foot. In this way, the sole 10 can adapt to the structure of the human foot, and deform along with the movement of the human foot. Therefore, the rear region of the groove structure 13 includes a forefoot region and a hindfoot region. The forefoot region corresponds to the forefoot of the human foot, and the hindfoot region corresponds to the hindfoot of the human foot.
[0065] As shown in Figure 3 , the rear anti-skid block 15 includes a plurality of blocks. Some of the blocks are arranged in the forefoot region, and some of the blocks are arranged in the hindfoot region. No rear anti-skid block 15 is arranged between the forefoot region and the hindfoot region, i.e., at a position corresponding to the arch of the human foot. The blocks are arranged in a spaced manner, and a separation groove is formed between each pair of adjacent blocks. In addition, each block has a three-dimensional pattern.
[0066] Please refer to Figure 3In the forefoot region of the shoe sole 10, a plurality of blocks are arranged, one of which is a first block 152 and one of which is a second block 153, the first block 152 and the second block 153 being arranged in front and back, and the first block 152 and the front anti-skid block 14 forming at least part of the groove structure 13, the separation groove between the first block 152 and the second block 153 being a first separation groove 151, the left and right ends of which communicate with the groove structure 13, so that the first separation groove 151 also extends in the left-right direction, facilitating the deformation of the shoe sole 10 at this position, cooperating with the groove structure 13, and realizing the easy deformation of the shoe sole 10 in multiple segments in front and back.
[0067] Further, the rear anti-skid block 15 further comprises a third block 154 and a fourth block 155 in the forefoot region, the third block 154 and the second block 153 having a second separation groove 156 inclined to the right from back to front, and the fourth block 155 and the second block 153 having a third separation groove 157 inclined to the left from back to front. In this way, the separation grooves between the first block 152, the second block 153, the third block 154 and the fourth block 155 enable the forefoot region to be easily deformed in multiple directions, so that the anti-tipping shoes can better adapt to the road surface and ensure good gripping performance and anti-skid performance of the anti-tipping shoes on different road surfaces. Three blocks are arranged in the heel region, and the three blocks in the heel region are arranged in an asymmetric manner.
[0068] The above anti-tipping shoes can be children's sports shoes, reducing the probability of children's ankle sprain.
[0069] The above application of specific examples to the utility model is described, which is only used to help understand the utility model, and does not limit the utility model. For those skilled in the art to which the utility model belongs, according to the idea of the utility model, a number of simple deductions, deformations or substitutions can be made.
Claims
1. A tip-out preventing shoe, characterized by, The invention relates to a kind of anti-tipping shoes, comprising: A sole, the bottom surface of the sole has anti-skid structure, in the width direction of the sole, at least one side is provided with hole structure, the aperture of the hole structure is arranged on the side surface of the corresponding side width direction of the sole; A reinforcing support plate is used to reinforce the structural strength of the sole, and the height direction of the anti-tipping shoe is defined as up-down direction, at least part of the edge of the reinforcing support plate is located on the upper side of at least part of the hole structure; An upper is connected with the sole and encloses a shoe cavity for accommodating the foot, and the upper end of the upper has a shoe opening, and the upper further comprises an upper between the shoe opening and the sole; A connecting support is located on the side of the width direction of the anti-tipping shoe, and the connecting support is connected between the shoe opening and the sole for reinforcing the structural strength of the upper between the shoe opening and the sole.
2. The tip-out preventing shoe according to claim 1, wherein The upper side hole edge of the aperture of at least one hole structure is arc-shaped structure with middle high and both sides low, and / or, the lower side hole edge is arc-shaped structure with middle low and both sides high.
3. The tip-repellent shoe according to claim 1 or 2, wherein The sole has a forefoot region corresponding to the forefoot of the foot, an arch region corresponding to the arch of the foot and a heel region corresponding to the heel of the foot in the length direction of the sole, and the hole structure is arranged on at least one side of the width direction of the sole corresponding to the forefoot region, the arch region and the heel region.
4. The tip-out shoe of claim 3, wherein, The reinforcing support plate is a half-forefoot support plate, one end of the half-forefoot support plate is located in the heel region, and the other end is located in the forefoot region.
5. The tip-out shoe of claim 1, wherein, The connecting support comprises a transverse section and a vertical section, one end of the vertical section is connected to the middle position of the length direction of the transverse section, the transverse section is connected with the shoe opening, and the other end of the vertical section is connected with the sole.
6. The tip-repellent shoe according to claim 1 or 2 or 5, wherein The connecting support is arranged on both sides of the width direction of the anti-tipping shoe.
7. The tip-repellent shoe according to claim 1 or 2 or 5, wherein The connecting support, the shoe opening, the sole and the upper are connected by a fuse connection structure.
8. The tip-repellent shoe according to claim 1 or 2 or 5, wherein A reinforcing member is connected to the rear side of the upper, and the lower end of the reinforcing member is connected with the sole for supporting the rear side of the upper to reinforce the structural strength of the rear side of the upper.
9. The tip-repellent shoe according to claim 1 or 2 or 5, wherein At least one side of the width direction of the sole has an upper convex structure, and the upper convex structure is located at the heel of the sole in the length direction of the sole to form a blocking wall structure outside the heel of the upper.
10. The tip-out shoe of claim 1, wherein, The length direction of the sole is defined as front-rear direction, wherein the heel region is the rear side, the toe region is the front side, and the width direction is left-right direction, and the sole has: A groove structure is located on the bottom side of the sole, and the groove structure penetrates the sole along the left-right direction; A front side anti-skid block is located on the front side of the groove structure; A rear side anti-skid block is located on the rear side of the groove structure, and the rear side anti-skid block has a three-dimensional pattern. The front side anti-skid blocks and the rear side anti-skid blocks constitute at least part of the anti-skid structure, the front side anti-skid blocks are provided in plurality, each of the front side anti-skid blocks is arranged left and right with interval, a gap between two adjacent front side anti-skid blocks forms a branch groove, the branch groove is communicated with the groove structure and penetrates the shoe sole forward, each of the front side anti-skid blocks comprises a first part and a second part, the first part is provided with a groove penetrating forward, the second part is arranged corresponding to the groove, and a part of the second part is located in the groove and a part of the second part extends out of the groove, the first part and the second part are arranged with interval.