Integrally-formed special work type protection shoe

By using a one-piece molded sole design, which combines an anti-slip layer, a deformation anti-slip zone, and a high-strength anti-slip zone, the problem of poor anti-slip performance in existing shoes in complex environments is solved, achieving high-strength anti-slip and rapid water drainage effects.

CN223614247UActive Publication Date: 2025-12-02QUANZHOU JUNYOU SHOES CO LTD
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Patent Information

Application Number
CN202520151963.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-12-02
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing protective shoes for special occupations have poor anti-slip performance in complex environments due to the lack of targeted anti-slip particle structures.

Method used

The sole features a one-piece molded structure, including an anti-slip layer, a deformation anti-slip zone, and a high-strength anti-slip zone. Combined with deformation strips and anti-slip modules, the deformation anti-slip zone maintains grip during bending, while the high-strength anti-slip zone works in conjunction with the arch of the foot. The columnar raised particles and mesh anti-slip grooves in the anti-slip module enhance the anti-slip performance.

Benefits of technology

It significantly improves anti-slip performance in complex environments, maintains high grip and anti-slip properties, and also has a rapid drainage function.

✦ Generated by Eureka AI based on patent content.

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Abstract

An integrally-formed special work type protection shoe structurally comprises a shoe sole. The vamp is arranged at the upper end of the sole; a positioning belt surrounds the outer side of the bottom of the vamp, a first wear-resistant area connected with the sole is arranged below the positioning belt, and a second wear-resistant area is arranged above the positioning belt; an anti-skid layer is fixedly embedded in the bottom face of the shoe sole, deformation anti-skid areas are arranged at the front sole and the rear sole of the anti-skid layer, and a high-strength anti-skid area is arranged in the middle of the anti-skid layer. The high-strength anti-skidding area in the middle of the anti-skidding layer is matched with the arch portion of the foot sole, the high-strength anti-skidding effect is achieved, the multiple sets of anti-skidding modules on the high-strength anti-skidding area are in compact fit, and the columnar protruding particles in the anti-skidding modules have the effect of preventing the anti-skidding particles from excessively deforming. And the anti-skid particles have the effects of quickly draining water and improving the anti-skid property through the net-shaped anti-skid grooves in the anti-skid particles.
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Description

Technical Field

[0001] This utility model is a one-piece molded special occupational protective shoe, belonging to the field of special occupational protective shoes. Background Technology

[0002] Specialized protective footwear, also known as safety shoes or work shoes, is a type of personal protective equipment (PPE) specifically designed for people engaged in specific occupational activities. These shoes are designed to provide foot protection for the wearer, preventing various hazards that may be encountered in the work environment.

[0003] Existing protective shoes for special occupations have anti-slip particle structures on the soles to maintain anti-slip performance in complex environments. However, in actual use, with frequent walking, the anti-slip particle structure without a targeted layout has poor anti-slip effect. Utility Model Content

[0004] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a one-piece molded protective shoe for special occupations. This addresses the problem that existing protective shoes for special occupations incorporate anti-slip particle structures on the sole to maintain anti-slip performance in complex environments. However, in actual use, with frequent walking, the anti-slip particle structures, without a targeted layout, provide poor anti-slip effect.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a special type of protective shoe with one-piece molding, the structure of which includes a sole;

[0006] The upper is located at the upper end of the sole;

[0007] The outer side of the bottom of the shoe upper is surrounded by a positioning band, a first abrasion-resistant area is provided below the positioning band and connected to the sole, and a second abrasion-resistant area is provided above the positioning band;

[0008] The sole is fixedly embedded with an anti-slip layer, and the anti-slip layer has deformation anti-slip zones at the forefoot and heel, and a high-strength anti-slip zone in the middle.

[0009] The deformation anti-slip zone includes several spaced deformation strips, with a deformation groove formed between every two deformation strips;

[0010] The high-strength anti-slip zone includes several sets of anti-slip modules. Each anti-slip module includes two rows of columnar protruding particles and multiple rows of anti-slip particles. The multiple rows of anti-slip particles are located between the two rows of columnar protruding particles. The columnar protruding particles are provided with cross-shaped positioning grooves, and the anti-slip particles are provided with mesh-like anti-slip grooves.

[0011] Furthermore, the sole and upper are integrally molded, and the upper has an anti-smashing steel plate in the interlayer at the toe.

[0012] Furthermore, the first wear-resistant area is filled with strip-shaped protrusions.

[0013] Furthermore, the second wear-resistant zone is filled with honeycomb-shaped protrusions.

[0014] Furthermore, the rear end of the second abrasion-resistant zone extends and wraps around the heel of the upper.

[0015] Furthermore, the anti-slip particles have a rhomboid structure.

[0016] Furthermore, the deformable strip has a structure that is either serrated or wavy.

[0017] Furthermore, the anti-slip layer is connected to the sole by one of the following methods: adhesive bonding or hot pressing.

[0018] Furthermore, the sole and upper are made of one of the following materials: leather, polyester, nylon, rubber, and PVC.

[0019] Furthermore, the outer side of the shoe sole is provided with several anti-slip grooves at intervals.

[0020] The beneficial effects of this utility model are as follows: Special work protective shoes, by setting a targeted anti-slip layer on the sole, maintain grip during deformation and bending by the deformation anti-slip zones at the front and back of the anti-slip layer, and the high-strength anti-slip zone in the middle of the anti-slip layer, in conjunction with the arch of the foot, provides a high-strength anti-slip effect. Several sets of anti-slip modules on the high-strength anti-slip zone work together compactly, and the columnar protruding particles in the anti-slip modules prevent excessive deformation of the anti-slip particles, while the anti-slip particles have the function of rapid drainage and improved anti-slip performance through the mesh anti-slip grooves on them. Attached Figure Description

[0021] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0022] Figure 1 This is a three-dimensional structural diagram of a one-piece molded protective shoe for special occupations according to this utility model;

[0023] Figure 2 This is a top view structural diagram of a one-piece molded protective shoe for special occupations according to this utility model;

[0024] Figure 3 A detailed structural diagram of the deformation anti-slip zone;

[0025] Figure 4 This is a detailed structural diagram of the high-strength anti-slip zone;

[0026] Figure 5 This is a schematic diagram of the cross-sectional structure of the toe area of ​​the shoe upper. Detailed Implementation

[0027] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0028] Example 1

[0029] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 This utility model provides a special work protective shoe solution with one-piece molding: its structure includes a sole 1;

[0030] Upper 2 is located at the upper end of the sole 1;

[0031] The outer bottom of the shoe upper 2 is surrounded by a positioning band 21. Below the positioning band 21 is a first abrasion-resistant area 22 that connects with the sole 1. Above the positioning band 21 is a second abrasion-resistant area 23.

[0032] The sole 1 is fixedly embedded with an anti-slip layer 11. The anti-slip layer 11 has deformation anti-slip areas 12 at the forefoot and heel, and a high-strength anti-slip area 13 in the middle.

[0033] The deformation anti-slip zone 12 includes a plurality of spaced deformation strips 121, with a deformation groove 122 formed between every two deformation strips 121.

[0034] The high-strength anti-slip zone 13 includes several sets of anti-slip modules. Each anti-slip module includes two rows of columnar protruding particles 131 and multiple rows of anti-slip particles 133. The multiple rows of anti-slip particles 133 are located between the two rows of columnar protruding particles 131. The columnar protruding particles 131 are provided with cross-shaped positioning grooves 132, and the anti-slip particles 133 are provided with mesh-like anti-slip grooves 134.

[0035] like Figure 5 As shown, in order to improve the pressure resistance and protection effect, the sole 1 and the upper 2 are integrally formed, and the upper 2 is provided with an anti-smashing steel plate 24 in the interlayer at the toe.

[0036] To improve the strength of the upper 2, the first abrasion-resistant area 22 is filled with strip-shaped protrusions.

[0037] To prevent the upper 2 from being punctured, the second abrasion-resistant area 23 is filled with honeycomb-shaped protrusions, and the rear end of the second abrasion-resistant area 23 extends and wraps around the heel of the upper 2.

[0038] To improve the anti-slip effect, the anti-slip particles 133 have a rhomboid structure.

[0039] In order to facilitate the bending and deformation of the entire shoe while maintaining grip, the deformation strip 121 has a structure of either serrated or wavy.

[0040] To improve the strength of the connection, the anti-slip layer 11 is connected to the sole 1 by heat pressing.

[0041] To improve durability, the sole 1 and upper 2 are made of one of the following materials: leather, polyester, nylon, rubber, and PVC.

[0042] To provide peripheral anti-slip, the outer side of the shoe sole 1 is provided with several anti-slip grooves 14 at intervals.

[0043] Special work protective shoes feature a targeted anti-slip layer 11 on the sole 1. The deformation anti-slip zones 12 at the front and back of the anti-slip layer 11 maintain grip during deformation and bending. The high-strength anti-slip zone 13 in the middle of the anti-slip layer 11 works in conjunction with the arch of the foot to provide high-strength anti-slip. Several sets of anti-slip modules on the high-strength anti-slip zone 13 work together tightly. The columnar protruding particles 131 in the anti-slip modules prevent excessive deformation of the anti-slip particles 133, while the anti-slip particles 133 have a mesh anti-slip groove 134 that allows for rapid drainage and improves anti-slip properties.

[0044] Example 2

[0045] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 This utility model provides a special work protective shoe solution with one-piece molding: its structure includes a sole 1;

[0046] Upper 2 is located at the upper end of the sole 1;

[0047] The outer bottom of the shoe upper 2 is surrounded by a positioning band 21. Below the positioning band 21 is a first abrasion-resistant area 22 that connects with the sole 1. Above the positioning band 21 is a second abrasion-resistant area 23.

[0048] The sole 1 is fixedly embedded with an anti-slip layer 11. The anti-slip layer 11 has deformation anti-slip areas 12 at the forefoot and heel, and a high-strength anti-slip area 13 in the middle.

[0049] The deformation anti-slip zone 12 includes a plurality of spaced deformation strips 121, with a deformation groove 122 formed between every two deformation strips 121.

[0050] The high-strength anti-slip zone 13 includes several sets of anti-slip modules. Each anti-slip module includes two rows of columnar protruding particles 131 and multiple rows of anti-slip particles 133. The multiple rows of anti-slip particles 133 are located between the two rows of columnar protruding particles 131. The columnar protruding particles 131 are provided with cross-shaped positioning grooves 132, and the anti-slip particles 133 are provided with mesh-like anti-slip grooves 134.

[0051] like Figure 5 As shown, in order to improve the pressure resistance and protection effect, the sole 1 and the upper 2 are integrally formed, and the upper 2 is provided with an anti-smashing steel plate 24 in the interlayer at the toe.

[0052] To improve the strength of the upper 2, the first abrasion-resistant area 22 is filled with strip-shaped protrusions.

[0053] To prevent the upper 2 from being punctured, the second abrasion-resistant area 23 is filled with honeycomb-shaped protrusions, and the rear end of the second abrasion-resistant area 23 extends and wraps around the heel of the upper 2.

[0054] To improve the anti-slip effect, the anti-slip particles 133 have a rhomboid structure.

[0055] In order to facilitate the bending and deformation of the entire shoe while maintaining grip, the deformation strip 121 has a structure of either serrated or wavy.

[0056] To improve the strength of the connection, the anti-slip layer 11 is connected to the sole 1 by adhesive bonding.

[0057] To improve durability, the sole 1 and upper 2 are made of one of the following materials: leather, polyester, nylon, rubber, and PVC.

[0058] To provide peripheral anti-slip, the outer side of the shoe sole 1 is provided with several anti-slip grooves 14 at intervals.

[0059] Special work protective shoes feature a targeted anti-slip layer 11 on the sole 1. The deformation anti-slip zones 12 at the front and back of the anti-slip layer 11 maintain grip during deformation and bending. The high-strength anti-slip zone 13 in the middle of the anti-slip layer 11 works in conjunction with the arch of the foot to provide high-strength anti-slip. Several sets of anti-slip modules on the high-strength anti-slip zone 13 work together tightly. The columnar protruding particles 131 in the anti-slip modules prevent excessive deformation of the anti-slip particles 133, while the anti-slip particles 133 have a mesh anti-slip groove 134 that allows for rapid drainage and improves anti-slip properties.

[0060] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0061] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A special type of protective shoe for specific occupations, characterized in that: Its structure includes the sole (1); The upper (2) is located at the upper end of the sole (1); The shoe upper (2) has a positioning band (21) around the bottom outer side, a first wear-resistant area (22) connected to the sole (1) is provided below the positioning band (21), and a second wear-resistant area (23) is provided above the positioning band (21). The sole (1) has an anti-slip layer (11) fixedly embedded on the bottom surface. The anti-slip layer (11) has a deformation anti-slip area (12) at the forefoot and heel, and a high-strength anti-slip area (13) in the middle. The deformation anti-slip zone (12) includes a number of spaced deformation strips (121), and a deformation groove (122) is formed between every two deformation strips (121). The high-strength anti-slip zone (13) includes several anti-slip modules. Each anti-slip module includes two rows of columnar protruding particles (131) and multiple rows of anti-slip particles (133). The multiple rows of anti-slip particles (133) are located between the two rows of columnar protruding particles (131). The columnar protruding particles (131) are provided with cross-shaped positioning grooves (132), and the anti-slip particles (133) are provided with mesh anti-slip grooves (134).

2. The one-piece molded special work protective shoe according to claim 1, characterized in that: The sole (1) and the upper (2) are integrally formed, and the upper (2) has an anti-smashing steel plate (24) in the interlayer at the toe.

3. The one-piece molded special work protective shoe according to claim 1, characterized in that: The first wear-resistant area (22) is filled with strip-shaped protrusions.

4. The one-piece molded special work protective shoe according to claim 1, characterized in that: The second wear-resistant zone (23) is filled with honeycomb protrusions.

5. The one-piece molded special work protective shoe according to claim 4, characterized in that: The second abrasion zone (23) extends to the rear end and wraps around the heel of the upper (2).

6. The one-piece molded special work protective shoe according to claim 1, characterized in that: The anti-slip particles (133) have a rhomboid structure.

7. The one-piece molded special work protective shoe according to claim 1, characterized in that: The deformable strip (121) is a structure of either serrated or wavy shape.

8. The one-piece molded special work protective shoe according to claim 1, characterized in that: The anti-slip layer (11) is connected to the sole (1) by one of the following methods: adhesive bonding or hot pressing.

9. The one-piece molded special work protective shoe according to claim 2, characterized in that: The sole (1) and upper (2) are made of one of the following materials: leather, polyester, nylon, rubber, or PVC.

10. A one-piece molded special work protective shoe according to claim 1, characterized in that: The outer side of the sole (1) is provided with several anti-slip grooves (14) at intervals.