Sliding plate shoe sole with supporting plate

By introducing support plates and cushioning grooves into the sole of skateboard shoes, combined with popcorn sole material, the problem of poor support and shock absorption in skateboard shoe soles has been solved, achieving better support and shock absorption, extending service life, and improving the performance of skateboarding.

CN223640231UActive Publication Date: 2025-12-09FUJIAN DIS BRAND OPERATION CO LTD
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Patent Information

Application Number
CN202520068039.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2025-12-09
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Existing skateboard shoe soles have poor support and shock absorption, and a short lifespan.

Method used

The skateboard shoe features a support plate with a carbon fiber sole. The midsole has mounting grooves and cushioning grooves, which, combined with popcorn sole material, enhance support and shock absorption. The shoe also improves grip through flex grooves and anti-slip structures.

Benefits of technology

It improves the support strength and shock absorption of the sole, extends its service life, enhances its aesthetics and consumer confidence, reduces energy loss, and increases the speed and explosiveness of skateboarding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of skateboard soles, and provides a skateboard sole with a support plate, which comprises a sole main body, the sole main body comprises a midsole and an outsole, at least one mounting groove is arranged in the midsole, the support plate is arranged in the mounting groove, the at least one support plate is arranged in the middle of the midsole, and the outsole is arranged in the middle of the midsole. The bottom of the insole is provided with a first buffer groove, the first buffer groove is communicated with the mounting groove, one side or two sides of the insole is provided with a second buffer groove, and the second buffer groove is communicated with the mounting groove. The supporting plate can well support the whole shoe sole body, the first buffer groove and the second buffer groove can also deform, the damping effect on the bottom and the two sides of the supporting plate can be achieved, the damping effect of the whole shoe sole cannot be reduced while the supporting force of the whole shoe sole is increased, and the problems that a sliding plate shoe sole is poor in supporting and damping effect and poor in damping effect are solved. And the service life is short.
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Description

Technical Field

[0001] This utility model relates to the field of skateboard shoe soles, and more particularly to a skateboard shoe sole with a support plate. Background Technology

[0002] Skate shoes are shoes specifically designed for skateboarding. Their main features include a flat sole, durable materials, cushioning, and protective design. The main difference between skate shoes and regular skate shoes lies in their intended use and materials. Skate shoes prioritize athletic performance and protection, while regular skate shoes focus more on fashion and everyday comfort. Skate shoes have higher material and technical requirements, typically using more durable and cushioning materials. The sole, in particular, needs to offer good grip, durability, support, cushioning, and shock absorption. Existing skate shoe soles often use ordinary cushioning soles, which not only have limited shock absorption but also suffer from poor support due to the frequent application of force, resulting in rapid wear and a short lifespan.

[0003] Chinese Patent Application No. 202222621847.4 discloses a high-safety, non-slip skateboard shoe, including a sole, an upper connected to the top of the sole, and a cushioning insole covering the top of the sole. A wear-resistant rubber layer is adhered to the upper near the outer side of the sole. The connection between the sole and the upper is covered with an edge. The bottom surface of the sole has multiple diamond-shaped support pillars arranged in concentric rings. Continuously extending support ridges are provided at the center and outermost ring of each concentric ring. However, this sole has poor support and shock absorption, is frequently subjected to significant forces, wears out quickly, and has a short lifespan. Utility Model Content

[0004] Therefore, to address the aforementioned problems, this utility model proposes a skateboard sole with a support plate. It solves the technical problems of poor support and shock absorption, and short service life of skateboard soles.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A skateboard sole with a support plate includes a sole body, the sole body including a midsole and an outsole, the midsole having at least one mounting groove, the mounting groove having a support plate installed therein, at least one support plate being located in the middle of the midsole, the bottom of the midsole having a first cushioning groove connected to the mounting groove, and the midsole having a second cushioning groove on one or both sides, the second cushioning groove being connected to the mounting groove.

[0007] Further:

[0008] The area of ​​the lowermost part of the first buffer groove is greater than the area of ​​the uppermost part.

[0009] The bottom of the base is provided with an opening corresponding to the first buffer groove, and the support plate can be seen from the outside through the opening and the first buffer groove.

[0010] The top of the insole is provided with at least one buffer hole, which is connected to the mounting groove.

[0011] The first buffer groove and the second buffer groove are rectangular, triangular, trapezoidal, circular or elliptical structures, and the length of the first buffer groove and the second buffer groove is not less than 2cm.

[0012] The support plate is a carbon fiber plate, and the midsole is a popcorn-shaped sole.

[0013] The bottom of the outsole is provided with at least two elongated first bending grooves, which extend from the left edge to the right edge and are located at the forefoot and middle of the outsole.

[0014] The bottom of the outsole is provided with multiple elongated second bending grooves, which extend from the outer edge of the outsole to the bottom of the outsole and have an L-shaped structure.

[0015] The bottom of the outsole is provided with two first anti-slip zones, which extend from the left side to the right side of the outsole. Each first anti-slip zone is provided with a plurality of inwardly recessed first anti-slip grooves. The first anti-slip grooves are D-shaped or triangular in structure, and some of the first anti-slip grooves are arranged opposite to the other part of the first anti-slip grooves.

[0016] The bottom of the outsole is provided with a third buffer groove, and the first buffer groove is connected to the third buffer groove. The first buffer groove is located at the third buffer groove. The third buffer groove is provided with an anti-slip protrusion at the heel. The anti-slip protrusion is provided with multiple anti-slip bumps. The outer edge of the third buffer groove is surrounded by a second anti-slip area. The second anti-slip area is provided with multiple second anti-slip grooves. The second anti-slip grooves are D-shaped or triangular structures.

[0017] By adopting the aforementioned technical solution, the beneficial effects of this utility model are:

[0018] This invention features a support plate integrated into the midsole. Compared to traditional composite sole structures, this support plate offers higher strength and is less prone to damage. It provides excellent support for the entire sole, making it less susceptible to damage even under significant forces. Furthermore, when the support plate is under stress, the first cushioning groove deforms, providing shock absorption below the plate, while the second cushioning groove deforms, providing shock absorption on both sides. This increases support without compromising shock absorption. The support plate is visible through the first and second cushioning grooves, enhancing the sole's aesthetics and allowing consumers to see the internal structure, thus increasing consumer trust and purchase desire. The presence of second cushioning grooves on both sides ensures symmetry, more even force distribution, and better cushioning. Additionally, the lowermost groove of the first cushioning groove has a larger area than the uppermost groove, increasing its strength and enhancing its resilience after deformation. It is also not easily damaged; furthermore, the buffer holes can improve the shock absorption effect of the top of the carbon plate. When the midsole is molded, the mold can fix the carbon plate through the first buffer groove, the second buffer groove, and the buffer holes, improving the fixing effect and preventing the carbon plate from shifting; furthermore, the support plate is made of carbon plate, which has the characteristics of high strength and light weight, reducing the weight of the midsole. The carbon plate also has a certain degree of resilience, which can reduce energy loss and improve speed and explosiveness; the midsole is a popcorn outsole, which has the characteristics of being lightweight, shock-absorbing, wear-resistant, environmentally friendly, breathable, slip-resistant, and improving comfort; furthermore, the first bending groove allows the outsole to bend appropriately for shock absorption, and the support plate can limit the degree of bending of the outsole; the second bending groove gives the side edge of the outsole a certain bending shock absorption effect; after the outsole is stressed, it has a good shock absorption effect and prevents the outsole from cracking; furthermore, the first anti-slip groove can enhance the grip and shock absorption effect of the outsole; furthermore, the anti-slip protrusions and the second anti-slip groove can further improve the grip and shock absorption effect of the outsole. Attached Figure Description

[0019] Figure 1 This is a structural schematic diagram of the main body of the shoe sole of this utility model.

[0020] Figure 2 This is a structural diagram of the main body of the shoe sole from another angle.

[0021] Figure 3 This is a bottom view of the main body of the shoe sole.

[0022] Figure 4 This is the front view of the main body of the shoe sole.

[0023] Figure 5 This is a simplified cross-sectional diagram of the midsole.

[0024] Figure label:

[0025] 1. Midsole; 10. Mounting groove; 11. First cushioning groove; 12. Second cushioning groove; 13. Cushioning hole; 2. Outsole; 20. Through opening; 21. First bending groove; 22. Second bending groove; 23. First anti-slip zone; 230. First anti-slip groove; 24. Second anti-slip zone; 240. Second anti-slip groove; 25. Third cushioning groove; 26. Anti-slip protrusion; 260. Anti-slip protrusion; 3. Support plate. Detailed Implementation

[0026] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments.

[0027] refer to Figures 1 to 5 This embodiment provides a skateboard sole with a support plate, including a sole body comprising a midsole 1 and an outsole 2. The midsole 1 has a mounting groove 10, within which a support plate 3 is mounted. The support plate 3 is located in the center of the midsole 1. A first cushioning groove 11 is located at the bottom of the midsole 1, communicating with the mounting groove 10. Second cushioning grooves 12 are located on both sides of the midsole 1, communicating with the mounting groove 10. The support plate 3 is a carbon fiber plate, and the midsole 1 is a popcorn-style sole.

[0028] The number of the aforementioned mounting slots 10 can be one, two, or even more, depending on the specific circumstances.

[0029] The first buffer groove 11 and the second buffer groove 12 mentioned above can be rectangular, triangular, trapezoidal, circular, elliptical or other structures.

[0030] The length of the first buffer groove 11 and the second buffer groove 12 is usually not less than 2cm, but can be 3cm, 5cm, 6cm or other lengths, depending on the specific situation.

[0031] The aforementioned support plate 3 can also be an aluminum plate, a composite plate, or other plate with a supporting function. The hardness of the support plate 3 is greater than that of the midsole 1.

[0032] The aforementioned popcorn-shaped sole is a well-known sole material, and will not be described in detail here.

[0033] The aforementioned midsole 1 can also be made of EVA, silicone, or other materials, depending on the specific circumstances.

[0034] The aforementioned second buffer groove 12 may also be provided only on one side of the middle bottom 1, depending on the specific situation.

[0035] refer to Figure 5In one embodiment, the area of ​​the lowermost groove of the first buffer groove 11 is greater than the area of ​​the uppermost groove. This structure can enhance the strength of the first buffer groove 11 and make it less prone to wear. In another embodiment, the side edge of the first buffer groove 11 can also be set as an inclined structure or a stepped structure. In yet another embodiment, the area of ​​the lowermost groove of the first buffer groove 11 can also be equal to or less than the area of ​​the uppermost groove.

[0036] refer to Figure 1 In one embodiment, the bottom of the base 2 is provided with an opening 20 corresponding to the first buffer groove 11, allowing the support plate 3 to be seen from the outside through the opening 20 and the first buffer groove 11. In another embodiment, the opening 20 may not be provided, so the support plate 3 is not visible from the outside.

[0037] refer to Figure 2 In one embodiment, the top of the midsole 1 is provided with a plurality of buffer holes 13, which are connected to the mounting groove 10. In another embodiment, the buffer holes 13 may not be provided.

[0038] refer to Figure 3 In one embodiment, the bottom of the outsole 2 is provided with a long strip-shaped first bending groove 21, which extends from the left edge to the right edge. The first bending groove 21 is located at the forefoot and middle of the outsole 2.

[0039] The number of the first bending groove 21 can be one, two, three or even more, or the first bending groove 21 can be omitted, depending on the specific situation.

[0040] refer to Figure 3 In one embodiment, the bottom of the outsole 2 is provided with a plurality of elongated second bending grooves 22, which extend from the outer edge of the outsole 2 to the bottom of the outsole 2, and the second bending grooves 22 have an L-shaped structure.

[0041] The second bending groove 22 mentioned above may also be omitted, depending on the specific circumstances.

[0042] refer to Figure 3 In one embodiment, the bottom of the outsole 2 is provided with two first anti-slip areas 23. The first anti-slip areas 23 extend from the left side to the right side of the outsole 2. The first anti-slip areas 23 are provided with a plurality of inwardly recessed first anti-slip grooves 230. The first anti-slip grooves 230 are D-shaped, and some of the first anti-slip grooves 230 are arranged opposite to other parts of the first anti-slip grooves 230.

[0043] The sole body of this invention is not limited to two layers, but can also have three, four, or even more layers. In one embodiment, one, two, or even more layers of sole can be laminated between the midsole 1 and the outsole 2; in another embodiment, one, two, or even more layers of sole can be laminated to the top of the midsole 1; in yet another embodiment, the sole body can also be a single layer, i.e., the midsole 1 and the outsole 2 are integrally formed, and the midsole 1 and the outsole 2 can also be made of the same material.

[0044] The aforementioned first anti-slip zone 23 is usually located in the upper half of the outsole 2, and adjacent first anti-slip zones 23 are separated by a first bending groove 21.

[0045] The first anti-slip zone 23 mentioned above may not be set; the specific setting depends on the situation.

[0046] The first anti-slip groove 230 mentioned above can also be replaced by a triangle, trapezoid, rhombus, circle or other shapes. The first anti-slip groove 230 may also be omitted, depending on the specific situation.

[0047] refer to Figure 3 In one embodiment, the bottom of the outsole 2 is provided with a third buffer groove 25, and a first buffer groove 11 is connected to the third buffer groove 25. The first buffer groove 11 is located at the third buffer groove 25. An anti-slip protrusion 26 is provided on the third buffer groove 25 at the heel. The anti-slip protrusion 26 is provided with a plurality of anti-slip protrusions 260. A second anti-slip area 24 is surrounded by the outer edge of the third buffer groove 25. A plurality of second anti-slip grooves 240 are provided in the second anti-slip area 24. The second anti-slip grooves 240 have a D-shaped structure.

[0048] The third buffer slot 25 mentioned above may also be omitted, depending on the specific circumstances.

[0049] The aforementioned anti-slip protrusion 260 may be omitted, depending on the specific circumstances.

[0050] The aforementioned anti-slip protrusions 26 may be omitted, depending on the specific circumstances.

[0051] The second anti-slip zone 24 mentioned above may not be set; the specific setting depends on the situation.

[0052] The aforementioned second anti-slip groove 240 can also be replaced by a triangle, trapezoid, rhombus, circle or other shapes. The aforementioned second anti-slip groove 240 may also be omitted, depending on the specific circumstances.

[0053] The sole body of this invention is mainly used in skateboard shoes, but can also be used in running shoes, ski shoes or other shoes.

[0054] The working principle of this utility model is as follows:

[0055] The skateboard shoes utilize the sole body of this invention. When worn by the user, the support plate 3 provides excellent support for the entire sole body during actions such as dolphin jumps, reverse foot gliding, board derailment, rear wheel gliding, board swinging, and kicking spins. The first buffer groove 11 and the second buffer groove 12 can also deform, providing shock absorption to the bottom and sides of the support plate 3. While increasing support, the entire sole body does not reduce its shock absorption effect. The first bending groove 21 and the second bending groove 22 at the bottom of the outsole 2 provide excellent bending and shock absorption. The first anti-slip groove 230, the second anti-slip groove 240, and the anti-slip protrusion 26 further enhance the grip and shock absorption of the outsole 2, greatly improving the shock absorption and support effect of the entire sole body.

[0056] Although the present invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail may be made to the present invention without departing from the spirit and scope of the present invention as defined in the appended claims, and all such changes shall be within the scope of protection of the present invention.

Claims

1. A skateboard sole with a support plate, characterized in that: The shoe includes a sole body, which includes a midsole and an outsole. The midsole has at least one mounting groove, and a support plate is installed in the mounting groove. At least one support plate is located in the middle of the midsole. The bottom of the midsole has a first cushioning groove that is connected to the mounting groove. The midsole has a second cushioning groove on one or both sides that is connected to the mounting groove.

2. The skateboard sole with a support plate according to claim 1, characterized in that: The area of ​​the lowermost part of the first buffer groove is greater than the area of ​​the uppermost part.

3. The skateboard sole with a support plate according to claim 1, characterized in that: The bottom of the base is provided with an opening corresponding to the first buffer groove, and the support plate can be seen from the outside through the opening and the first buffer groove.

4. The skateboard sole with a support plate according to claim 1, characterized in that: The top of the insole is provided with at least one buffer hole, which is connected to the mounting groove.

5. A skateboard sole with a support plate according to claim 1, characterized in that: The first buffer groove and the second buffer groove are rectangular, triangular, trapezoidal, circular or elliptical structures, and the length of the first buffer groove and the second buffer groove is not less than 2cm.

6. A skateboard sole with a support plate according to claim 1, characterized in that: The support plate is a carbon fiber plate, and the midsole is a popcorn-shaped sole.

7. A skateboard sole with a support plate according to any one of claims 1 to 6, characterized in that: The bottom of the outsole is provided with at least two elongated first bending grooves, which extend from the left edge to the right edge and are located at the forefoot and middle of the outsole.

8. A skateboard sole with a support plate according to claim 7, characterized in that: The bottom of the outsole is provided with multiple elongated second bending grooves, which extend from the outer edge of the outsole to the bottom of the outsole and have an L-shaped structure.

9. A skateboard sole with a support plate according to claim 7, characterized in that: The bottom of the outsole is provided with two first anti-slip zones, which extend from the left side to the right side of the outsole. Each first anti-slip zone is provided with a plurality of inwardly recessed first anti-slip grooves. The first anti-slip grooves are D-shaped or triangular in structure, and some of the first anti-slip grooves are arranged opposite to the other part of the first anti-slip grooves.

10. A skateboard sole with a support plate according to claim 9, characterized in that: The bottom of the outsole is provided with a third buffer groove, and the first buffer groove is connected to the third buffer groove. The first buffer groove is located at the third buffer groove. The third buffer groove is provided with an anti-slip protrusion at the heel. The anti-slip protrusion is provided with multiple anti-slip bumps. The outer edge of the third buffer groove is surrounded by a second anti-slip area. The second anti-slip area is provided with multiple second anti-slip grooves. The second anti-slip grooves are D-shaped or triangular structures.