An outdoor sports shoe

By incorporating zigzag anti-slip strips and serpentine convex strips into outdoor sports shoes, combined with open grooves and zoned shock-absorbing grooves, the problem of insufficient anti-slip performance in complex terrain is solved, achieving omnidirectional anti-slip and water/mud drainage effects, thus improving sports comfort and safety.

CN224670942UActive Publication Date: 2026-08-25XIAMEN DALAI IMPORT & EXPORT CO LTD
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Patent Information

Application Number
CN202522280626.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-08-25
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

Existing outdoor sports shoes lack sufficient anti-slip performance, especially in complex terrain where they struggle to provide all-around grip, and their poor mud and sand resistance leads to a rapid decline in anti-slip performance.

Method used

It adopts a zigzag anti-slip strip and serpentine convex strip design, combined with open grooves and zoned shock-absorbing grooves to form a multi-directional anti-slip, drainage and mud removal system, and embeds nano anti-slip particles on the surface of the anti-slip block to enhance friction.

Benefits of technology

It achieves omnidirectional anti-slip, keeps the sole clean, improves grip stability and safety in complex terrain, reduces the risk of strain during exercise, and maintains anti-slip capability for a long time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an outdoor sports shoes, the front section of instep area and the rear section of heel area all are provided with along several groups of the fold line shape antiskid strip of setting of shoe sole length direction, form the fold line shape groove between two adjacent groups of the fold line shape antiskid strip of up and down, and the both ends of fold line shape groove extend through the lateral wall of shoe sole, the rear section of instep area along the width direction of shoe sole setting several snakelike convex stripe, and set up the snakelike groove between two adjacent groups of the snakelike convex stripe of left and right, the top surface of snakelike convex stripe is equipped with several front shock absorption groove along its length direction, and the left and right ends of each front shock absorption groove are through the left and right side lateral wall of snakelike convex stripe and with snakelike groove intercommunication, front shock absorption groove will snakelike convex stripe divide into several front antiskid block, the front section of heel area is provided with several rear antiskid block, and is equipped with rear shock absorption groove between two adjacent rear antiskid blocks, and each rear shock absorption groove is interconnected.
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Description

Technical Field

[0001] This utility model relates to the field of outdoor products technology, specifically to an outdoor sports shoe. Background Technology

[0002] Outdoor sports, such as hiking, trail running, and mountaineering, are becoming increasingly popular. These sports involve complex and varied environments, often including slippery rocks, muddy dirt roads, and sloping terrain, thus placing extremely high demands on the anti-slip performance of athletic shoes.

[0003] While existing outdoor sports shoe sole tread designs take slip resistance into account to some extent, they still have many shortcomings. First, many soles have a single-directional slip resistance pattern, which is insufficient to provide effective traction in complex terrain with multiple slopes and rocks, easily leading to slippage. Second, traditional slip resistance patterns (such as simple serrated or striped patterns) are prone to clogging with mud or gravel under stress, quickly losing their drainage and mud-repelling capabilities, resulting in poor mud and sand resistance and a sharp decline in slip resistance. Utility Model Content

[0004] The purpose of this invention is to provide an outdoor sports shoe that comprehensively improves anti-slip performance and effectively drains mud and water to solve the above-mentioned problems.

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

[0006] An outdoor sports shoe includes an upper and a sole. The sole's bottom surface is provided with a forefoot area, an arch area, and a heel area from front to back. The forefoot area's front section and the heel area's rear section each have several sets of zigzag anti-slip strips arranged along the length of the sole. A zigzag groove is formed between adjacent sets of these anti-slip strips, and both ends of the zigzag groove extend through the sidewalls of the sole. The rear section of the forefoot area has several serpentine convex strips arranged along the width of the sole. A serpentine groove is provided between two adjacent sets of serpentine ridges. The top surface of the serpentine ridges is provided with several front shock-absorbing grooves along its length. The left and right ends of each set of front shock-absorbing grooves penetrate the left and right sidewalls of the serpentine ridges and are connected to the serpentine grooves. The front shock-absorbing grooves divide the serpentine ridges into several front anti-slip blocks. Several rear anti-slip blocks are provided in the front section of the heel area. A rear shock-absorbing groove is provided between two adjacent rear anti-slip blocks, and each rear shock-absorbing groove is interconnected.

[0007] Preferably, a marking area is provided in the middle of the arch area, and several irregularly shaped shock-absorbing blocks are provided on both sides of the marking area. The height of the top surface of the shock-absorbing blocks is lower than the height of the top surface of the front anti-slip block and the rear anti-slip block.

[0008] Preferably, the top side of the zigzag anti-slip strip, the front anti-slip block, and the rear anti-slip block located at the edge of the sole has a rounded corner structure.

[0009] Preferably, both the front and rear anti-blocking blocks are frustum-shaped anti-blocking blocks that are narrower at the top and wider at the bottom, and their top surfaces are irregular polygonal structures.

[0010] Preferably, the surfaces of the front and rear anti-slip blocks are provided with a wear-resistant rubber layer, and nano anti-slip particles are embedded in the surface of the wear-resistant rubber layer.

[0011] Preferably, the front shock-absorbing groove located in the middle area of ​​the foot area is a straight groove, the front shock-absorbing groove located on the left and right sides of the foot area is a V-shaped groove, and the rear shock-absorbing groove is a straight groove.

[0012] By adopting the above technical solution, this utility model has the following advantages compared with the prior art:

[0013] 1. This utility model provides an outdoor sports shoe with zigzag anti-slip strips and zigzag grooves set in the front part of the forefoot area and the rear part of the heel area. This zigzag structure forms multiple anti-slip edges in different directions on the sole surface, so that forces from the front, back or sides can effectively cut into the ground through the edges, thereby achieving omnidirectional adaptive anti-slip and greatly improving grip stability and safety on complex slopes.

[0014] 2. This utility model provides an outdoor sports shoe. The two ends of the zigzag groove extend through the sidewalls of the sole, making the groove an open channel rather than a closed pit. When the sole is pressed against mud or water, the squeezed mud and water can be quickly discharged laterally from both ends of the groove. Together with the serpentine groove between the serpentine ridges at the rear of the foot, it forms a multi-directional, continuous, and non-linear groove network. This makes it difficult for mud and water to remain in the grooves, allowing them to be quickly squeezed out or discharged under pressure. This effectively prevents the grooves from becoming clogged, keeping the sole-ground contact surface clean and thus maintaining strong anti-slip capability for a long time.

[0015] 3. This utility model provides an outdoor sports shoe. The front shock-absorbing grooves on the serpentine ridges in the forefoot area not only divide the ridges into independent front anti-slip blocks, enhancing the deformation capacity of the blocks and effectively absorbing the local impact force when the foot pushes off the ground, but also the interconnected rear shock-absorbing groove network in the heel area provides ample deformation space for the rear anti-slip blocks, buffering the impact when landing. This forms a full-range, zoned optimized shock absorption system from the forefoot to the heel, improving sports comfort and reducing the risk of foot strain. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the structure of this utility model from another angle. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0019] It should be noted that in this utility model, the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", and "outer" are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element of this utility model must have a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0020] Example

[0021] Please refer to Figures 1 to 2 As shown, this utility model discloses an outdoor sports shoe, which mainly includes a sole 1 and an upper 2. The sole 1 and the upper 2 are fixedly connected by conventional adhesive or sewing processes. The bottom surface of the sole 1 is divided into the ball of the foot 11, the arch area 12 and the heel area 13 from front to back according to the structure of the human foot.

[0022] Both the front section of the foot area 11 and the rear section of the heel area 13 are provided with several sets of zigzag anti-slip strips 3 arranged along the length direction (i.e., the front-to-back direction) of the sole 1. A zigzag groove 31 is formed between two adjacent sets of zigzag anti-slip strips 3. The two ends of the zigzag groove 31 extend through the side wall of the sole 1, forming an open channel. When the sole is stepped on mud or water, the mud and water can be squeezed out and quickly discharged from the two ends of the groove to the side of the shoe, effectively preventing blockage and keeping the sole clean and continuously anti-slip. At the same time, the zigzag pattern forms multi-directional anti-slip edges in the width direction of the sole, ensuring all-round grip in the front, back and sides.

[0023] Several serpentine ridges 4 extending along the width direction (i.e., left-right direction) of the sole 1 are provided in the rear section of the foot area 11. Serpentine grooves 41 are formed between two adjacent serpentine ridges 4. On the top surface of each serpentine ridge 4, multiple front shock-absorbing grooves 42 are formed along its length. The left and right ends of each front shock-absorbing groove 42 penetrate the left and right side walls of the serpentine ridge 4 and are directly connected to the adjacent serpentine grooves 41. These front shock-absorbing grooves 42 divide the continuous serpentine ridges 3 into multiple independent front anti-slip blocks 5.

[0024] The front shock-absorbing groove 42 located in the middle area of ​​the foot zone 11 adopts a straight groove to provide stable vertical cushioning, while the front shock-absorbing groove 42 located on the left and right sides of the foot zone 11 adopts a V-shaped groove, which can better adapt to and cushion lateral compression and deformation. This zoned design allows the cushioning needs of different parts of the foot to be met in a targeted manner.

[0025] Several independent rear anti-slip blocks 6 are provided at the front section of the heel area 13. A rear shock-absorbing groove 61 is provided between two adjacent rear anti-slip blocks 6, and all the rear shock-absorbing grooves 61 are interconnected to form a continuous buffer network to absorb the impact force when the heel lands. In this embodiment, the rear shock-absorbing groove 61 is a straight groove.

[0026] A labeling area 7 is located in the center of the arch area 12, which can be used to display brand logos, sizes, and other required markings. On both sides of the labeling area 7, there are several irregularly shaped shock-absorbing blocks 8. The top surface of the shock-absorbing block 8 is lower than the top surface of the front anti-slip block 5 in front of it and the rear anti-slip block 6 behind it. This allows the arch area 12 to provide necessary support while also participating in shock absorption, and avoids unnecessary protrusions that could affect the stability and comfort of walking.

[0027] All the zigzag anti-slip strips 3, front anti-slip strips 5, and rear anti-slip strips 6 located on the edge of the sole 1 have their top surfaces intersecting with the side walls processed into rounded corner structures 9, avoiding the risk of right-angled edges tearing due to stress concentration in harsh terrain and improving the durability of the sole edge structure.

[0028] The front anti-slip block 5 and the rear anti-slip block 6 are designed in a frustum shape, narrower at the top and wider at the bottom, meaning their cross-sectional area gradually increases from top to bottom. This makes the connection between the anti-slip block and the sole body more solid, greatly enhancing its structural stability under multi-directional forces and making it less prone to detachment. At the same time, the top surfaces of the front anti-slip block 5 and the rear anti-slip block 6 have an irregular polygonal structure, increasing effective contact with the ground and friction angles.

[0029] The surfaces of the front anti-slip block 5 and the rear anti-slip block 6 are provided with a layer of wear-resistant rubber, and nano anti-slip particles (not shown in the figure) are also embedded on the surface of the wear-resistant rubber layer. Based on the macro anti-slip texture, the friction at the micro level is increased, so that the sole 1 can also exhibit excellent anti-slip performance on smooth wet surfaces (such as wet stone slabs).

[0030] The working process of this embodiment is as follows:

[0031] When the wearer moves on complex terrain, the zigzag anti-slip strips 3 in the ball and heel areas provide multi-directional anti-slip, and the through-type zigzag grooves 31 ensure efficient drainage of mud and water. When force is applied, the front anti-slip blocks 5 and rear anti-slip blocks 6 on the ball and heel provide deformation space to absorb impact with their front shock-absorbing grooves 42 and 61. The different shapes of the shock-absorbing grooves achieve zoned optimized cushioning. At the same time, when the front anti-slip blocks 5 and 6 deform, they squeeze out the mud in the front shock-absorbing grooves 42 and 61. In addition, the rounded corner structure and frustum-shaped structure of this embodiment ensure the durability of the edges and blocks, while the nanoparticles on the surface provide a final anti-slip guarantee at the microscopic level.

[0032] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. An outdoor sports shoe, comprising an upper and a sole, characterized in that: The sole has a foot area, an arch area, and a heel area arranged sequentially from front to back. The front section of the foot area and the rear section of the heel area each have several sets of zigzag anti-slip strips arranged along the length of the sole. Zigzag grooves are formed between adjacent sets of these strips, and both ends of the grooves extend through the sidewalls of the sole. The rear section of the foot area has several serpentine ridges arranged along the width of the sole, and serpentine grooves are formed between adjacent sets of these ridges. The top surface of each serpentine ridge has several front shock-absorbing grooves along its length, and both ends of each groove penetrate the left and right sidewalls of the serpentine ridge and communicate with the serpentine grooves. These grooves divide the serpentine ridges into several front anti-slip blocks. The front section of the heel area has several rear anti-slip blocks, and a rear shock-absorbing groove is formed between adjacent rear anti-slip blocks, with all rear shock-absorbing grooves interconnected.

2. An outdoor sports shoe as described in claim 1, characterized in that: A marking area is provided in the middle of the arch area, and several irregularly shaped shock-absorbing blocks are provided on both sides of the marking area. The height of the top surface of the shock-absorbing blocks is lower than the height of the top surface of the front anti-slip block and the rear anti-slip block.

3. An outdoor sports shoe as described in claim 1, characterized in that: The top side of the zigzag anti-slip strip, the front anti-slip block, and the rear anti-slip block located at the edge of the sole has a rounded corner structure.

4. An outdoor sports shoe as described in claim 3, characterized in that: Both the front and rear anti-blocking blocks are frustum-shaped anti-blocking blocks that are narrower at the top and wider at the bottom, and their top surfaces are irregular polygonal structures.

5. An outdoor sports shoe as described in claim 1, characterized in that: The surfaces of the front and rear anti-slip blocks are provided with a wear-resistant rubber layer, and nano anti-slip particles are embedded in the surface of the wear-resistant rubber layer.

6. An outdoor sports shoe as described in claim 1, characterized in that: The front shock-absorbing groove located in the middle area of ​​the foot area is a straight groove, the front shock-absorbing groove located on the left and right sides of the foot area is a V-shaped groove, and the rear shock-absorbing groove is a straight groove.