Arch-shaped oil-surface-simulated anti-skid shoe and shoelace-loosening-preventing casual shoe

By introducing an anti-slip arched sole and anti-loosening shoelaces into casual shoes, the problems of insufficient anti-slip performance and loosening shoelaces in the simulated natural arch design are solved, achieving stable grip on wet and slippery surfaces and a secure connection of shoelaces, thus improving the wearer's safety and comfort.

CN224250820UActive Publication Date: 2026-05-19YEARCON
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YEARCON
Filing Date
2025-07-17
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing casual shoes lack sufficient anti-slip performance in their design that simulates the natural arch of the foot, and the shoelaces are prone to coming loose, affecting stability and safety.

Method used

The shoes feature an anti-slip arched sole design, combined with anti-slip patterns, suction cup protrusions, and bottom-contact protrusions to enhance sole friction; flat shoelace anti-loosening parts and serrated interlocking parts enhance shoelace stability.

Benefits of technology

It significantly improves the grip of the sole on wet and slippery surfaces, prevents slipping, and ensures that the shoelaces do not come loose during strenuous exercise or long walks, enhancing the wearing experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a foot arch shape simulation oil surface antiskid shoe and shoelace anti-loosening casual shoe, which comprises an antiskid arch sole, a casual shoe upper, a shoe tongue and an anti-loosening shoelace, the casual shoe upper is sewed and bonded on the antiskid arch sole, the shoe tongue is sewed on the casual shoe upper, and the anti-loosening shoelace is sewn on the shoe tongue. The anti-loosening shoe belt is wound on the shoe tongue and the casual shoe upper; the anti-skidding arch-shaped sole simulates a natural arch, relieves fatigue, and reduces the risk of injury. The innovative anti-skid design is combined with the anti-skid grains, the sucker protrusions and the bottoming protrusions, so that the friction force between the sole and the ground is enhanced, and effective skid resistance is achieved. The anti-loosening shoe belt is of a flat structure, the wave-shaped friction increasing protrusions are sewn, the friction force between the anti-loosening shoe belt and a vamp is enhanced, and sliding is prevented. Due to the design of the sawtooth-shaped occlusion bodies and occlusion intervals, the occlusion strength between the shoelaces is enhanced, and the shoelaces are ensured to be stable and not to loosen during strenuous exercise or long-time walking.
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Description

Technical Field

[0001] This utility model belongs to the field of casual shoe technology, and in particular relates to a casual shoe with anti-slip shoelaces that simulates the arch shape of the foot and has anti-loosening features. Background Technology

[0002] In the field of casual shoe design, as consumers increasingly value comfort and functionality, customized designs tailored to specific usage scenarios and human anatomy have become a significant industry trend. Especially in outdoor activities and daily life, slip resistance on wet surfaces such as oily areas and the stability of shoelaces have become key concerns for consumers.

[0003] To ensure ultimate comfort in casual shoes, modern design has extensively incorporated ergonomic and biomechanical principles, precisely mimicking the shape and function of the natural arch of the foot. This design innovation not only significantly improves the shoe's support and cushioning but also effectively reduces foot fatigue and the risk of injury caused by prolonged wear. However, this design breakthrough also presents a challenge—the anti-slip performance of the sole may not be fully guaranteed in certain situations.

[0004] In addition, the design of shoelaces for casual shoes also faces certain problems. Traditional cylindrical smooth shoelaces often loosen easily after being knotted due to insufficient friction. This not only affects the overall stability of the shoe, but also brings inconvenience and safety hazards to the wearer.

[0005] Therefore, it is essential to invent a casual shoe with arch support that mimics the shape of an oil-based non-slip surface and prevents the laces from coming loose. Utility Model Content

[0006] To solve the above-mentioned technical problems, this utility model provides a casual shoe with anti-slip shoelaces that simulates the arch shape of the foot and has anti-loosening features, including an anti-slip arch-shaped sole, a casual upper, a tongue, and anti-loosening shoelaces. The casual upper is sewn and bonded to the anti-slip arch-shaped sole, the tongue is sewn onto the casual upper, and the anti-loosening shoelaces are wrapped around the tongue and the casual upper.

[0007] The anti-slip arch-shaped sole includes a sole, anti-slip patterns, suction cup protrusions, and bottom-touching protrusions. The casual shoe upper is sewn and bonded to the sole. The sole is provided with a plurality of the anti-slip patterns, suction cup protrusions, and bottom-touching protrusions, with the suction cup protrusions and bottom-touching protrusions located between the anti-slip patterns.

[0008] The anti-loosening shoelace includes a shoelace tightening part, a shoelace anti-loosening part, a friction-enhancing protrusion, and a locking body. The shoelace tightening part is wrapped around the shoe tongue and casual shoe upper. The two ends of the shoelace tightening part are respectively sewn together with the shoelace anti-loosening part. The shoelace anti-loosening part is provided with a friction-enhancing protrusion and a locking body.

[0009] Preferably, the anti-slip pattern on the sole is a wave pattern, with wave grooves between the anti-slip patterns, and the suction cup protrusion and the bottom-touching protrusion are located at the wave grooves.

[0010] Preferably, the suction cup protrusions are suction cup-shaped structures, the number of suction cup protrusions on the sole of the foot is greater than the number of the sole protrusions on the heel, the suction cup protrusions are located between the bottom-touching protrusions, and the bottom-touching protrusions are square structures.

[0011] Preferably, the anti-loosening part of the shoelace has a flat shape, and the outer surface of the anti-loosening part is sewn with multi-wave-shaped friction-increasing protrusions.

[0012] Preferably, the biting body is located on both sides of the anti-loosening part of the shoelace, the biting body has a serrated structure, and a biting gap is formed between the biting bodies.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] This novel anti-slip arch-shaped sole ingeniously incorporates ergonomic and biomechanical principles, aiming to simulate the precise shape and function of the natural arch of the foot. This reduces foot fatigue and the risk of injury while providing the wearer with a superior wearing experience. More notably, this design cleverly incorporates an innovative anti-slip structure. Through the ingenious combination of anti-slip patterns, suction cup protrusions, and bottom-contact protrusions, it significantly increases the contact points and friction between the sole and the ground, providing the wearer with additional grip and effectively preventing slippage on oily or other slippery surfaces.

[0015] Furthermore, the anti-loosening part of the shoelaces features a flat structure with wavy, friction-enhancing protrusions sewn onto the outer surface. These unique protrusions significantly increase the friction between the shoelaces and the tongue and upper, effectively preventing the shoelaces from slipping during walking or exercise. Simultaneously, the interlocking mechanism is designed with a serrated structure and cleverly positioned interlocking spacing, further enhancing the gripping force between the shoelaces and ensuring that the shoelaces remain secure and do not loosen even during vigorous exercise or prolonged walking. Attached Figure Description

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

[0017] Figure 2 This is a schematic diagram of the anti-slip arch-shaped shoe sole of this utility model.

[0018] Figure 3 This is a structural schematic diagram of the anti-loosening shoelace of this utility model.

[0019] In the picture:

[0020] 1. Anti-slip arched sole; 11. Sole; 12. Anti-slip pattern; 13. Suction cup protrusion; 14. Bottom contact protrusion; 2. Casual upper; 3. Tongue; 4. Anti-loosening shoelaces; 41. Shoelace tightening part; 42. Anti-loosening shoelace part; 43. Friction-increasing protrusion; 44. Engagement body. Detailed Implementation

[0021] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.

[0022] In the description of the embodiments, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the present invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In the description of the utility model, it should be noted that unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in the present utility model based on the specific circumstances.

[0023] As attached Figure 1 To be continued Figure 3 As shown:

[0024] This utility model provides a non-slip casual shoe with anti-loosening laces that simulates the arch shape of the foot. It includes a non-slip arch-shaped sole 1, a casual upper 2, a tongue 3, and anti-loosening laces 4. The casual upper 2 is sewn and bonded to the non-slip arch-shaped sole 1, and the tongue 3 is sewn onto the casual upper 2. The anti-loosening laces 4 are wrapped around the tongue 3 and the casual upper 2.

[0025] The anti-slip arch-shaped sole 1 includes a sole 11, anti-slip patterns 12, suction cup protrusions 13, and bottom-contact protrusions 14. The casual shoe upper 2 is sewn and bonded to the sole 11. The sole 11 has a plurality of anti-slip patterns 12, suction cup protrusions 13, and bottom-contact protrusions 14, with the suction cup protrusions 13 and bottom-contact protrusions 14 located between the anti-slip patterns 12. The anti-slip arch-shaped sole 1 not only significantly increases the contact points and friction between the sole and the ground, but also provides the wearer with additional grip, effectively preventing slipping on oily or other slippery surfaces.

[0026] The anti-loosening shoelace 4 includes a shoelace tightening part 41, a shoelace anti-loosening part 42, a friction-enhancing protrusion 43, and a locking body 44. The shoelace tightening part 41 is wrapped around the shoe tongue 3 and the casual shoe upper 2. The two ends of the shoelace tightening part 41 are respectively sewn to the shoelace anti-loosening part 42. The shoelace anti-loosening part 42 is provided with the friction-enhancing protrusion 43 and the locking body 44. The anti-loosening shoelace 4 ensures that the shoelace remains secure and does not come loose even during strenuous exercise or long-term walking. Example

[0027] Specifically, the anti-slip treads 12 on the sole 11 are wavy, which not only enhance the visual appeal of the sole, but more importantly, they play a crucial anti-slip role in actual use. The wavy grooves formed between the anti-slip treads 12 provide more contact points and friction surfaces between the sole and the ground, thereby significantly increasing the grip and stability of the sole. The suction cup protrusions 13 and the bottom-touching protrusions 14 are located at the wavy grooves.

[0028] Specifically, the suction cup protrusions 13 have a suction cup-shaped structure, which can generate additional adhesion on wet or oily surfaces, greatly enhancing the anti-slip performance of the sole. The number of suction cup protrusions 13 on the forefoot area of ​​the sole 11 is significantly greater than that on the heel area. This is because the forefoot bears the main support and propulsion role during walking and running; therefore, more suction cup protrusions 13 can more effectively prevent slipping and improve the wearer's walking safety. The suction cup protrusions 13 are located between the bottom-contact protrusions 14, which have a square structure. This not only makes the sole look more aesthetically pleasing but also increases its stability. The square structure of the bottom-contact protrusions 14 provides more even support, reducing foot fatigue caused by prolonged walking or standing.

[0029] Specifically, the anti-loosening part 42 of the shoelaces has a flat shape, which not only increases the stability of the shoelaces but also increases the contact area between them and the tongue and upper. Even more impressively, the outer surface of the anti-loosening part 42 is carefully sewn with numerous wavy friction-enhancing protrusions 43.

[0030] Specifically, the interlocking bodies 44 are located on both sides of the anti-loosening part 42 of the shoelace. The interlocking bodies 44 have a serrated structure. The serrated design not only increases the aesthetics, but more importantly, it greatly enhances the interlocking force between the shoelaces. The interlocking bodies 44 form an interlocking gap, ensuring that when the shoelaces are tightened, the interlocking bodies on both sides can tightly interlock with each other to form a stable connection. This design can maintain the stability of the shoelaces and prevent them from accidentally loosening, even during strenuous exercise or long-term walking. Example

[0031] The outsole 11 of the anti-slip arch-shaped sole 1 adopts an anti-slip arch design to simulate the shape and function of the natural arch of the foot, providing ideal support and cushioning for the foot. Multiple wave-shaped anti-slip patterns 12 are set on the surface of the sole. The wave grooves formed between these anti-slip patterns 12 not only increase the aesthetics of the outsole 11, but also provide more contact points and friction surfaces between the outsole 11 and the ground, thereby significantly improving the grip and stability of the outsole 11.

[0032] Suction cup protrusions 13 and square-structured bottom-contact protrusions 14 are cleverly arranged in the wavy grooves between the anti-slip patterns 12. The suction cup protrusions 13 adopt a suction cup-type structure design, which can generate additional adhesion on wet or oily surfaces, effectively preventing slippage. The number of suction cup protrusions 13 on the forefoot area of ​​the sole is significantly greater than that on the heel area. This is because the forefoot bears the main support and propulsion role during walking and running, and more suction cup protrusions can more effectively prevent slippage.

[0033] The anti-loosening shoelace 4 consists of four parts: a shoelace tightening part 11, a shoelace anti-loosening part 12, a friction-enhancing protrusion 13, and a locking body 14. The shoelace tightening part 11 is used to adjust the tightness of the shoelace, while the shoelace anti-loosening part 12 adopts a flat shape structure, which increases the contact area between the shoelace and the shoe tongue 3 and the casual shoe upper 2, thereby improving stability.

[0034] The outer surface of the anti-loosening part 12 is meticulously sewn with numerous wavy friction-enhancing protrusions 13. These protrusions increase the friction between the shoelaces and the tongue 3 and the casual upper 2, preventing the shoelaces from slipping. Furthermore, serrated interlocking bodies 14 are provided on both sides of the anti-loosening part 12, forming an interlocking gap between them. When the shoelaces are tightened, the interlocking bodies 14 on both sides can tightly interlock with each other, forming a stable connection, ensuring the shoelaces remain secure and do not loosen even during vigorous exercise or prolonged walking.

[0035] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solution described in this utility model, or by designing a similar technical solution inspired by the technical solution described in this utility model, falls within the protection scope of this utility model.

Claims

1. A type of casual shoe with arch support, mimicking an oil-based non-slip surface and featuring anti-loosening laces, characterized in that... The shoe includes an anti-slip arched sole (1), a casual upper (2), a tongue (3), and anti-loosening shoelaces (4). The casual upper (2) is sewn and bonded to the anti-slip arched sole (1), the tongue (3) is sewn onto the casual upper (2), and the anti-loosening shoelaces (4) are wrapped around the tongue (3) and the casual upper (2). The anti-slip arch-shaped sole (1) includes a sole (11), anti-slip patterns (12), suction cup protrusions (13) and bottom-touching protrusions (14). The casual shoe upper (2) is sewn and bonded onto the sole (11). The sole (11) is provided with a plurality of anti-slip patterns (12), suction cup protrusions (13) and bottom-touching protrusions (14). The suction cup protrusions (13) and bottom-touching protrusions (14) are located between the anti-slip patterns (12). The anti-loosening shoelace (4) includes a shoelace tightening part (41), a shoelace anti-loosening part (42), a friction-enhancing protrusion (43), and a locking body (44). The shoelace tightening part (41) is wrapped around the shoe tongue (3) and the casual shoe upper (2). The two ends of the shoelace tightening part (41) are respectively sewn together with the shoelace anti-loosening part (42). The shoelace anti-loosening part (42) is provided with a friction-enhancing protrusion (43) and a locking body (44).

2. The arch-shaped simulated oil-slip non-slip shoe and anti-loosening casual shoe with shoelaces as described in claim 1, characterized in that: The anti-slip pattern (12) provided on the sole (11) is a wave pattern, and there are wave grooves between the anti-slip patterns (12). The suction cup protrusion (13) and the bottom-touching protrusion (14) are located at the wave groove position.

3. The arch-shaped simulated oil-slip non-slip shoe and anti-loosening casual shoe with shoelaces as described in claim 1, characterized in that: The suction cup protrusion (13) is a suction cup structure. The number of suction cup protrusions (13) set at the foot position of the sole (11) is greater than the number of the sole (11) set at the heel position. The suction cup protrusions (13) are located between the bottom-touching protrusions (14), and the bottom-touching protrusions (14) are square structures.

4. The arch-shaped simulated oil-slip non-slip shoe with anti-loosening laces as described in claim 1, characterized in that: The anti-loosening part (42) of the shoelace has a flat shape structure, and the outer surface of the anti-loosening part (42) is sewn with multi-wave-shaped friction-increasing protrusions (43).

5. The arch-shaped simulated oil-slip non-slip shoe and anti-loosening casual shoe with shoelaces as described in claim 1, characterized in that: The bite body (44) is located on both sides of the anti-loosening part (42) of the shoelace. The bite body (44) has a serrated structure and a bite gap is formed between the bite bodies (44).