Anti-skid high elastic sports shoes

By designing adjustable claw plates and claw hook structures in anti-slip high-elastic sports shoes, the problem of slipping on wet or uneven surfaces in existing anti-slip sports shoes has been solved, achieving stable walking and high elasticity under different road conditions. In addition, the anti-slip components are replaceable, reducing the cost of use.

CN116584735BActive Publication Date: 2026-01-16QUANZHOU QUANYONG MACHINERY DEV
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Patent Information

Application Number
CN202310573283.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-22
Publication Date
2026-01-16
Estimated Expiration
2043-05-22

AI Technical Summary

Technical Problem

Existing anti-slip sports shoes are prone to slipping on wet or uneven surfaces, causing athletes to fall. Current technology is insufficient to effectively improve the grip and stability of the sole.

Method used

Design an adjustable, non-slip, high-elastic sports shoe with a hidden non-slip pad inside the sole. The position of the claw plate and claw hook can be adjusted through an adjustable structure to form a multi-point grip structure. The hook head of the claw hook is tilted downward to increase friction. The non-slip pad can be hidden or protruded as needed to adapt to different walking conditions.

Benefits of technology

It enables stable walking in rainy weather or on uphill and downhill sections, significantly improving the anti-slip effect, while maintaining high elasticity and comfort on flat surfaces. The anti-slip components are also replaceable, reducing the cost of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of sports shoes, and discloses an anti-skid high-elastic sports shoe, which comprises a vamp, a sole connected to the bottom of the vamp, a plurality of anti-skid pads arranged at intervals and hidden and stored in the bottom surface of the sole through an adjustable structure, each anti-skid pad comprising a claw plate arranged against the skidding direction of the sole, forming an upturn structure, a claw groove formed between the bottom portions, a plurality of claw hooks arranged at equal intervals on the inner wall of the claw groove, and a hook head provided on the head of the claw hook to cooperate with the hook heads at other positions to form a mesh structure for multi-point ground gripping and anti-skid. The anti-skid pads can be adjusted and stored in the sole, and the anti-skid pads can be adjusted to extend out of the bottom surface of the sole to expose the claw plates when anti-skid is required. The claw hooks with hook heads are arranged on the inner wall of the claw groove of the claw plate to grip the ground after stepping on the ground, forming a mesh multi-point ground gripping structure to resist skidding and meet the anti-skid requirements of wet and slippery roads or uphill and downhill sections, thereby stabilizing walking.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of anti-slip sports shoes, in particular to an anti-slip high-elastic sports shoe. BACKGROUND

[0002] The anti-slip sports shoe is a kind of shoe that can provide stability and firm support, and is usually made of anti-slip sole material to enhance friction and grip, so as to reduce the risk of slipping on wet or uneven surfaces. Such shoes are suitable for sports fields, outdoor adventures, running, etc. and are one of the first choices for sports enthusiasts. At present, the sole is generally integrally foamed, such as EVA, ETPA, etc. high-elastic sole material, and a rubber anti-slip pad is used at the bottom of the sole to increase friction and achieve the anti-slip high-elastic effect of the sports shoe.

[0003] However, during fitness exercises, it is inevitable to encounter rainy days or uphill roads. The sole of the existing mode is very easy to slip on asphalt roads in actual use, and the sole has insufficient grip and drifts, which easily causes the exerciser to fall and get injured, and the structure needs to be improved. SUMMARY

[0004] The purpose of the present application is to provide an adjustable anti-slip high-elastic sports shoe to solve the problems raised in the background.

[0005] To achieve the above purpose, the present application provides the following technical scheme: an anti-slip high-elastic sports shoe, comprising:

[0006] a vamp;

[0007] a sole connected to the bottom of the vamp;

[0008] a plurality of anti-slip pads arranged at intervals are hidden and stored through an adjustable structure on the bottom surface of the sole, each anti-slip pad comprises a claw plate arranged against the slipping direction of the sole, forming an upturn structure, and a claw groove is formed between the bottoms, a plurality of claw hooks are arranged at equal intervals on the inner wall of the claw groove, the head of the claw hook is provided with a hook head for hooking the ground, and the hook heads at each position of the bottom surface of the sole are matched to form a mesh structure for multi-point ground hooking and anti-slip;

[0009] and the sum of the bottom areas of all the claw hooks arranged towards the ground is less than the remaining bottom area of the sole, leaving a stable elastic sole surface for daily walking.

[0010] As an optional solution of the anti-slip high-elastic sports shoe, the sole is made of EVA or EYPA foamed plastic, the anti-slip pad is made of wear-resistant rubber pad, and the friction coefficient of the anti-slip pad is greater than that of the sole.

[0011] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0012] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0013] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0014] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0015] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0016] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0017] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0018] As an optional scheme of the anti-skid high-elastic sports shoes, the claw plates are arranged symmetrically along the front-rear axis direction of the instep, and two claw slots in trapezoidal shape with the bottom wider than the top are formed in the two claw plates.

[0019] Compared with the prior art, the anti-skid high-elastic sports shoes have the following beneficial effects:

[0020] 1. The anti-skid high-elastic sports shoes, the anti-skid pads can be adjusted to be accommodated in the multiple points in the shoe sole, the anti-skid pads can be adjusted to extend out of the shoe sole surface when the anti-skid demand occurs, the claw plates are exposed and open outwardly, the claw hooks with hooks are arranged on the inner wall of the claw slots of the claw plates, the ground can be gripped after stepping on the ground, the ground gripping structure with a meshed multiple points is formed, the skidding can be resisted, the anti-skid demand of the wet and slippery or uphill and downhill sections in rainy days can be met, and walking is stable.

[0021] 2. The anti-skid high-elastic sports shoes, the anti-skid pads can be hidden in the shoe sole without protruding, so that the shoes can be used for daily walking, and the anti-skid pads can be appropriately adjusted to protrude from the shoe sole surface for anti-skid use, and the adjustment operation is convenient. Meanwhile, the bottom area of the anti-skid pad is designed to be smaller than the remaining area of the shoe sole surface, so that the shoe sole surface is large enough to meet the high-elastic demand of the shoe sole surface when walking.

[0022] 3. The anti-skid high-elastic sports shoes, the anti-skid pads and other anti-skid components can be disassembled, replaced and maintained on the shoe sole, the continuous and stable adjustment work is ensured, the anti-skid performance of the shoes is efficient and stable, the anti-skid components of the shoes can be disassembled and replaced, and the use cost of the shoes is saved. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a schematic view of the bottom structure of the shoe sole in the embodiment 1 of the application.

[0024] Figure 2 It is a schematic view of the partial cross-sectional structure of the connection relationship at the shoe sole in the embodiment 1 of the application.

[0025] Figure 3 It is a schematic view of the cross-sectional structure of the shoe sole in the embodiment 1 of the application.

[0026] Figure 4 It is a schematic view of the front view structure of the connection relationship at the anti-skid pad in the embodiment 1 of the application.

[0027] Figure 5 It is a schematic view of the partial cross-sectional structure of the connection relationship at the anti-skid pad in the embodiment 1 of the application.

[0028] Figure 6 It is an exploded schematic view of the partial cross-sectional structure of the connection relationship at the anti-skid pad in the embodiment 1 of the application.

[0029] Figure 7 It is a schematic view of the front view structure of the anti-skid pad in the embodiment 2 of the application.

[0030] Figure 8 It is an exploded structure schematic view of one of the connection relationships at the connecting head in the embodiment 3 of the application.

[0031] Figure 9 It is a schematic view of the front view structure of the application.

[0032] In the figure: 1, vamp; 2, sole; 201, hidden groove; 2011, middle groove; 2012, pad groove; 2013, installation adjustment groove; 3, non-slip pad; 301, claw plate; 3011, claw groove; 302, sliding hole; 303, clamping plate; 304, sliding groove; 4, claw hook; 401, hook head; 402, hook groove; 5, reinforcing rope; 6, plastic sleeve; 7, adjusting nut; 8, clasp; 9, elastic rope; 10, air bag block; 11, connecting head; 1101, fixing plate; 1102, mounting plate; 1103, screw head; 1104, mounting groove. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0034] Embodiment 1

[0035] Please refer to Figures 1-6 and Figure 9 The present application provides a technical solution: a non-slip high-elastic sports shoe, comprising:

[0036] a vamp;

[0037] a sole 2 connected to the bottom of the vamp 1;

[0038] Among them, the sole 2 is made of EVA or EYPA foamed plastic, the non-slip pad 3 is made of wear-resistant rubber pad, and the friction coefficient of the non-slip pad 3 is greater than that of the sole 2, so that the non-slip pad 3 itself has stronger ground friction than the sole 2, and is used for multi-point ground gripping and non-slip.

[0039] A plurality of non-slip pads 3 are hidden and stored in the bottom surface of the sole 2 through an adjustable structure, each non-slip pad 3 includes a claw plate 301 arranged against the slipping direction of the sole 2, forming an upturn structure, and a claw groove 3011 is formed between the bottoms;

[0040] In this embodiment, the claw plate 301 is symmetrically arranged along the front-rear axis direction of the foot palm, and the two claw plates 301 form a trapezoidal claw groove 3011 with the bottom wider than the top, so that the two claw plates 301 can be pressed open to touch the ground when stepping on the ground, providing friction resistance in the forward or backward direction, and avoiding slipping of the foot in the forward or backward direction.

[0041] Please refer to Figure 7In another embodiment, referring to the partial structure of Embodiment 1, another arrangement of the claw plate 301 is adopted in Embodiment 2, in which the claw plate 301 is trumpet-shaped and downwardly open, and four of them are arranged at equal intervals in the front, back, left and right directions around the periphery, forming trumpet-shaped claw grooves 3011.

[0042] That is, the claw plate 301 in Embodiment 2 provides frictional resistance in the left and right side directions of the sole 2, avoiding slipping of the foot in any direction.

[0043] A plurality of claw hooks 4 are arranged at equal intervals on the inner wall of the claw groove 3011, and the head of the claw hook 4 is provided with a hook head 401 for hooking the ground, which cooperates with the hook head 401 at each position on the bottom surface of the sole 2 to form a mesh structure for multi-point ground hooking and anti-slip;

[0044] Among them, the claw hook 4 is arranged in a strip structure, one end of which is integrally connected to the inner wall of the claw groove 3011, and the other end of the claw hook 4 forms a downwardly protruding hook head 401, and the hook head 401 part forms a hook groove 402 for hooking the ground, and each hook head 401 is arranged to be inclined downward, so that when the foot contacts the ground, the hook head 401 can hook the ground to improve the anti-slip force, and when the foot is lifted, it can deform back, so that the flexible claw hook 4 can adapt to uneven ground with many stones and other uneven ground, and the ground hooking effect is strong.

[0045] It should be noted that the hidden groove 201 corresponding to each anti-slip pad 3 is provided in the sole 2, and the hidden groove 201 sequentially includes the installation and adjustment groove 2013, the middle groove 2011 and the pad groove 2012 which are connected in sequence from top to bottom. The anti-slip pad 3 is installed in the installation and adjustment groove 2013 through the connecting head 11, the adjustable structure is located at the middle groove 2011 to operate and lift the anti-slip pad 3, and the pad groove 2012 is used to store the claw plate 301 after stepping on the ground.

[0046] That is, the position of the anti-slip pad 3 can be adjusted by manually operating the adjustable structure in the middle groove 2011, so that the anti-slip pad 3 can be hidden and folded in the middle groove 2011, or the bottom claw plate 301 can be protruded, which is convenient for ground hooking and anti-slip when walking.

[0047] It should be noted that the middle groove 2011 is inlaid with the shape of the anti-slip pad 3, and the pad groove 2012 is arranged as a rectangular groove on the sole surface to store the claw plate 301 after stepping on the ground, and the depth of the pad groove 2012 is less than the thickness of the claw plate 301, so that the bottom surface of the claw plate 301 can protrude from the sole surface to hook the ground.

[0048] The adjustable structure comprises a reinforcing rope 5 fixedly connected to the connecting head 11, a flexible plastic sleeve 6 externally fixedly sleeved on the reinforcing rope 5, a sliding hole 302 opened at the top of the anti-skid pad 3 through which the bottom end of the plastic sleeve 6 is slid, an adjusting nut 7 threadedly connected to one end of the claw groove 3011, the adjusting nut 7 being slidably connected to the sliding groove 304 of the clamping plate 303 through the circular clamping ring 8 connected to the top of the adjusting nut 7, and the clamping plate 303 being arranged to be connected to the top of the anti-skid pad 3.

[0049] That is, the adjusting nut 7 is threadedly rotated on the plastic sleeve 6 to change the height position of the adjusting nut 7. At this time, the adjusting nut 7 is slidably rotated on the sliding groove 304 of the clamping plate 303 through the clamping ring 8, and the clamping ring 8 and the clamping plate 303 are hooked to enable the adjusting nut 7 to drive the anti-skid pad 3 to move through the clamping plate 303 when the adjusting nut 7 is rotated, so as to adjust the position of the anti-skid pad 3 to be hidden or protrude from the bottom to perform the anti-skid work.

[0050] It is declared that the adjusting nut 7 does not contact the clamping plate 303 when being rotated to avoid the twisting resistance, and the clamping plate 303 is made of rubber, and the sliding is assisted to avoid the rapid rotation of the adjusting nut 7 under the vibration to spontaneously change the position of the anti-skid pad 3.

[0051] Further, the adjustable structure further comprises a elastic rope 9 fixedly connected between the connecting head 11 and the anti-skid pad 3, and an air bag block 10 externally sleeved on the elastic rope 9, the air bag block 10 being arranged to be fixedly connected in the mounting adjusting groove 2013, and the top surface of the anti-skid pad 3 contacting the bottom surface of the air bag block 10.

[0052] It is to be noted that the reinforcing rope 5 is arranged as a steel wire rope, is arranged to be curved in the mounting adjusting groove 2013, and leaves a rope section for the position change of the anti-skid pad 3, the elastic rope 9 is arranged as a rubber band rope, and has elasticity. When the claw plate 301 at the bottom of the anti-skid pad 3 touches the ground, the claw plate 301 will be subjected to a pulling force in the process of walking on the ground, and the elastic rope 9 is used to assist the claw plate 301 to have a certain displacement to reduce the direct damage of the pulling force, and the elastic rope 9 is used to return to the original position when lifting the steps, and the air bag block 10 is used to limit and hinder, and the reinforcing rope 5 is used to protect to avoid being broken off under the strong anti-skid pulling.

[0053] That is, the adjustable structure can stably and quickly adjust the position of the anti-skid pad 3 to meet the walking demand of daily or strong anti-skid, and can also guarantee the use quality of the anti-skid pad 3 and the stability of the anti-skid effect.

[0054] Further, the anti-skid pad 3 can be taken out after the adjusting nut 7 is removed, and a new anti-skid pad 3 can be replaced to guarantee the anti-skid effect of the shoes.

[0055] In this embodiment, the connecting head 11 comprises a fixed plate 1101 fixedly embedded in the top of the installation adjusting groove 2013, the bottom of the fixed plate 1101 protrudes, and the bottom surface is fixedly connected with the reinforcing rope 5 and the elastic rope 9.

[0056] The fixed plate 1101 is made of a hard plastic block or a stainless steel block, so as to stably connect the reinforcing rope 5 and the elastic rope 9 on the fixed plate 1101 and provide support force.

[0057] Please refer to Figure 8 In another embodiment, compared with the above embodiment, in the embodiment 3, another arrangement of the connecting head 11 is adopted, in which the top of the reinforcing rope 5 and the elastic rope 9 is jointly connected with an installation plate 1102, the top of the installation plate 1102 is connected with a screw head 1103, the bottom surface of the fixed plate 1101 fixedly embedded in the top of the installation adjusting groove 2013 is provided with an installation groove 1104, and the screw head 1103 is threadedly connected, so that the bottom rope body can be disassembled, maintained and replaced, the continuous stability of the adjusting work is ensured, the anti-skid performance of the shoes is efficiently and stably ensured, the anti-skid part of the shoes can be disassembled and replaced, and the user can save the use cost of the shoes.

[0058] It should be noted that the sum of the bottom areas of all the claws 4 arranged towards the ground is less than the free bottom area of the shoe sole 2, so as to leave a stable elastic shoe sole surface to touch the ground and walk daily.

[0059] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A non-slip high elastic sports shoe, characterized in that, Include: Vamp; Sole (2) connected at the bottom of the vamp (1); The bottom surface of the sole (2) is hidden by an adjustable structure and contains several spaced anti-skid pads (3), each anti-skid pad (3) includes a claw plate (301) arranged against the direction of the sole (2) slip, forming an up structure, and a claw groove (3011) is formed between the bottom, the inner wall of the claw groove (3011) is arranged with several claw hooks (4) at equal intervals, the head of the claw hook (4) is provided with a hook head (401) for catching the ground, and the hook head (401) is matched with each position of the bottom surface of the sole (2), forming a mesh structure to catch the ground and prevent slipping; And the sum of the bottom area of all claw hooks (4) arranged towards the ground is less than the remaining bottom area of the sole (2), leaving a stable elastic sole surface for daily walking; The adjustable structure includes a reinforcing rope (5) fixedly connected to the connecting head (11), a flexible plastic sleeve (6) fixedly sleeved outside the reinforcing rope (5), one end of the bottom surface slidingly passes through the sliding hole (302) opened at the top of the anti-skid pad (3), and the other end of the bottom surface extends to one end of the claw groove (3011) and is threadedly connected with the adjusting nut (7), the adjusting nut (7) is slidingly connected in the sliding groove (304) of the clamping plate (303) through the circular clamping ring (8) connected to the top of the outer side, and the clamping plate (303) is connected to the anti-skid pad (3) at the top. The adjustable structure further includes a elastic rope (9) fixedly connected between the connecting head (11) and the anti-skid pad (3), and a gas bag block (10) sleeved outside the elastic rope (9), the gas bag block (10) is fixedly connected in the installation adjusting groove (2013), and the top surface of the anti-skid pad (3) contacts the bottom surface of the gas bag block (10).

2. The anti-slip high-elastic sports shoe according to claim 1, characterized in that: The sole (2) is made of EVA or EYPA foamed plastic, the anti-skid pad (3) is made of wear-resistant rubber pad, and the friction coefficient of the anti-skid pad (3) is greater than that of the sole (2).

3. The non-slip high elastic sports shoe according to claim 2, characterized in that: The claw plate (301) is symmetrically arranged along the front and rear axis direction of the foot, and two claw plates (301) are formed inside the claw plate (301) to form a trapezoidal claw groove (3011) with a bottom wider than an upper.

4. The anti-slip high-elastic sports shoe according to claim 3, characterized in that: The claw plate (301) is trumpet-shaped and opens downward, and four are arranged at equal intervals along the four directions of front, rear, left and right to form a trumpet-shaped claw groove (3011).

5. The non-slip high elastic sports shoe according to claim 3, wherein: The claw hook (4) is provided in a strip structure, one end of which is integrally connected to the inner wall of the claw groove (3011), the other end of the claw hook (4) forms a hook head (401) protruding downward, the hook head (401) forms a hook groove (402) for catching the ground, and each hook head (401) is inclined downward.

6. The anti-slip high-elastic sports shoe according to claim 4 or 5, characterized in that: The sole (2) has a hidden groove (201) corresponding to each anti-skid pad (3), the hidden groove (201) includes an installation adjusting groove (2013), an intermediate groove (2011) and a pad groove (2012) connected in sequence from top to bottom, the anti-skid pad (3) is installed in the installation adjusting groove (2013) through the connecting head (11), the adjustable structure is operated to lift and lower the anti-skid pad (3) at the intermediate groove (2011), and the pad groove (2012) accommodates the claw plate (301) after stepping on the ground.

7. The non-slip high-elastic sports shoe according to claim 6, characterized in that: The connecting head (11) comprises a fixed plate (1101) fixedly embedded in the top of the installation adjusting groove (2013), the bottom of the fixed plate (1101) is protruding, and the bottom surface is fixedly connected with the reinforcing rope (5) and the elastic rope (9).

8. The non-slip high elastic sports shoe according to claim 6, wherein: The top of the reinforcing rope (5) and the elastic rope (9) are jointly connected with an installation plate (1102), the top of the installation plate (1102) is connected with a screw head (1103), and the bottom surface of the fixed plate (1101) fixedly embedded in the top of the installation adjusting groove (2013) is provided with an installation groove (1104) matched with the screw head (1103) for threaded connection.

Citation Information

Patent Citations

  • Antiskid high-elastic sports shoes

    CN220236185U