Shoe button assembly with anti-skid structure

By introducing a threaded connection structure of silicone connecting strap and positioning column into the shoe button assembly, combined with the limit design of the hook and hanger, the problem of shoe button sliding is solved, and the effect of stabilizing the shoe tie is achieved.

CN223081198UActive Publication Date: 2025-07-11DONGGUAN SPIN SYST INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422184332.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-11
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

The existing shoe button assembly is prone to slide in the shoe lace hole during use, resulting in the deflection of the end position of the shoe button and making it difficult to operate by young children.

Method used

The silicone connecting belt and positioning column structure is adopted. Through the design of threaded connection and spherical positioning column, the silicone connecting belt prevents sliding in the shoe lace hole, and the stable connection of the shoe button is achieved through the limit structure of the hook and hanger.

Benefits of technology

Effectively prevent the shoe buttons from sliding in the lace holes, simplify the operation process of young children, and ensure that the shoes can be tied stably.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of shoe button assemblies, and particularly relates to a shoe button assembly with an antiskid structure, which comprises a silica gel connecting band, a first shoe button end and a second shoe button end, one end of the silica gel connecting band is connected with the first shoe button end, and the other end of the silica gel connecting band is connected with the second shoe button end. A fixing hole is formed in the surface of the silica gel connecting belt, a threaded column is connected to the inner surface of the silica gel connecting belt, the surface of the threaded column is sleeved with a positioning column, and a first threaded hole is formed in the bottom of the positioning column close to the threaded column. According to the shoe button, after the second end of the shoe button penetrates through the two shoelace holes, the silica gel connecting belt drives the fixing hole to move to the top of the positioning column and press downwards, the silica gel connecting belt is made of silica gel, the fixing hole can be expanded after being extruded, and when the silica gel connecting belt drives the fixing hole to be connected to the surface of the positioning column in a sleeving mode, deformation is recovered; therefore, the silica gel connecting bands can be fixed on the shoelace holes, so that the silica gel connecting bands can be prevented from sliding in the shoelace holes.
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Description

Technical Field

[0001] The utility model belongs to the technical field of shoe button assemblies, and particularly relates to a shoe button assembly with an anti-slip structure. Background Art

[0002] Shoe button assemblies are an important part of shoe design. They not only play a role in connection and fixation but also often serve as decorative elements to enhance the overall aesthetics of shoes. There are various types of shoe button assemblies, which can be divided into multiple types according to different materials, structures, and uses. Common materials include metals, plastics, nylons, etc.; in terms of structure, they are divided into flat-button buttons, sealed-button buttons, and modern technological products such as automatic rotating shoe buckles.

[0003] Shoe button assemblies are widely used in various types of shoes, including sports shoes, casual shoes, leather shoes, and children's shoes. Different styles and uses of shoes will adopt different button assemblies to meet their specific needs and styles;

[0004] When the shoe button assembly involved in the technical solution of this application is in use, the second end of the shoe button is passed through the inside of the shoelace hole, and then the first end of the shoe button is connected to the second end of the shoe button, so that it is not necessary to tie shoelaces, which is convenient for young children to use.

[0005] During the use of the existing shoe button assembly, it is easy to slide inside the shoelace hole, which causes the positions of the first end and the second end of the shoe button to deflect, thus making it inconvenient for young children to operate. Summary of the Utility Model

[0006] The purpose of the utility model is to provide a shoe button assembly with an anti-slip structure, aiming to solve the problem that in the prior art, the existing shoe button assembly is prone to sliding inside the shoelace hole during use, which causes the positions of the first end and the second end of the shoe button to deflect, thus making it inconvenient for young children to operate.

[0007] To achieve the above purpose, the utility model provides the following technical solution: A shoe button assembly with an anti-slip structure includes a silicone connecting band, a first end of the shoe button, and a second end of the shoe button. One end of the silicone connecting band is connected to the first end of the shoe button, and the other end of the silicone connecting band is connected to the second end of the shoe button. Fixed holes are formed on the surface of the silicone connecting band, a threaded column is connected to the inner surface of the silicone connecting band, a positioning column is sleeved on the surface of the threaded column, and a first threaded hole is formed at the bottom of the positioning column close to the threaded column.

[0008] To achieve the anti-slip effect, as a preferred embodiment of the shoe button assembly with an anti-slip structure of the utility model, the top of the positioning column is spherical, and the diameter of the positioning column is slightly larger than the diameter of the fixed hole.

[0009] To achieve the installation of the positioning post, as an optimization of a shoe button assembly with an anti-slip structure according to the present utility model, the positioning post forms a threaded connection with the threaded post through the first threaded hole.

[0010] As an optimization of a shoe button assembly with an anti-slip structure according to the present utility model, a hanging rack is connected to the upper surface of the first end of the shoe button, a hook is inserted into the bottom side of the second end of the shoe button, a second threaded hole is provided inside the hook, a threaded rod is inserted into the second threaded hole, and a bearing is installed between the threaded rod and the second end of the shoe button.

[0011] As an optimization of a shoe button assembly with an anti-slip structure according to the present utility model, the inner wall size of the hanging rack matches the width of the hook, five hanging racks are provided, and a limiting structure is formed between the hook and the second end of the shoe button.

[0012] To achieve the connection between the first end and the second end of the shoe button, as an optimization of a shoe button assembly with an anti-slip structure according to the present utility model, the threaded rod forms a rotating structure with the second end of the shoe button through the bearing, and the threaded rod is in threaded connection with the second threaded hole.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] In the present utility model, after the second end of the shoe button passes through two shoelace holes, the silicone connecting band drives the fixing hole to move to the top of the positioning post and press downwards. Since the silicone connecting band is made of silicone, the fixing hole will expand when being squeezed. When the silicone connecting band drives the fixing hole to be sleeved on the surface of the positioning post, it resumes deformation, so that the silicone connecting band can be fixed on the shoelace hole, thereby preventing the silicone connecting band from sliding inside the shoelace hole.

[0015] In the present utility model, when fixing, the second end of the shoe button drives the hook to be sleeved on the surface of the hanging rack at a suitable position. Then, the threaded rod can be rotated. When the threaded rod rotates, it can drive the hook to move upwards through the second threaded hole. When the hook moves upwards, it can connect the first end and the second end of the shoe button through the hanging connection with the hanging rack, so that the shoelace can be tightened by driving the silicone connecting band, and the adjustment of the slope tightness can be realized by connecting with the hanging racks at different positions. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings are used to provide further understanding of the present utility model, and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model, and do not constitute a limitation to the present utility model. In the drawings:

[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0018] Figure 2 This is an exploded view of the positioning post connection structure of the present utility model;

[0019] Figure 3 This is a schematic diagram of the first end of the shoe button and the hanger structure of the present utility model;

[0020] Figure 4 This is a cross-sectional view of the connection structure between the second end of the shoe button and the hook of the present utility model;

[0021] Figure 5 This is a cross-sectional view of the connection structure between the first end of the shoe button and the second end of the shoe button of the present utility model.

[0022] In the figure: 1. Silicone connection belt; 2. First end of the shoe button; 3. Second end of the shoe button; 4. Fixed hole; 5. Threaded post; 6. Positioning post; 7. First threaded hole; 8. Hanger; 9. Hook; 10. Second threaded hole; 11. Threaded rod; 12. Bearing. Specific embodiments

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0024] Please refer to Figures 1 - 5 , the present utility model provides the following technical solutions: A shoe button assembly with an anti-slip structure includes a silicone connection belt 1, a first end 2 of the shoe button, and a second end 3 of the shoe button. One end of the silicone connection belt 1 is connected to the first end 2 of the shoe button, and the other end of the silicone connection belt 1 is connected to the second end 3 of the shoe button. A fixed hole 4 is provided on the surface of the silicone connection belt 1, a threaded post 5 is connected to the inner surface of the silicone connection belt 1, a positioning post 6 is sleeved on the surface of the threaded post 5, and a first threaded hole 7 is provided at the bottom of the positioning post 6 near the threaded post 5.

[0025] Preferably: The top of the positioning post 6 is spherical, and the diameter of the positioning post 6 is slightly larger than the diameter of the fixed hole 4.

[0026] During specific use, the silicone connection belt 1 drives the fixed hole 4 to move to the top of the positioning post 6 and press down. At this time, the fixed hole 4 will expand under extrusion. When the silicone connection belt 1 drives the fixed hole 4 to be sleeved on the surface of the positioning post 6, it will return to its original shape, so that the silicone connection belt 1 can be fixed on the shoelace hole.

[0027] Preferably: The positioning post 6 is threadedly connected to the threaded post 5 through the first threaded hole 7.

[0028] During specific use, the positioning post 6 drives the first threaded hole 7 to move to the top of the threaded post 5 and rotates the positioning post 6. While the positioning post 6 is rotating, it can move downward through the threaded connection relationship, so that the position of the positioning post 6 can be fixed.

[0029] Preferably: A hanging rack 8 is connected to the upper surface of the first end portion 2 of the shoe button, a hook 9 is inserted into the bottom side of the second end portion 3 of the shoe button, a second threaded hole 10 is opened inside the hook 9, a threaded rod 11 is inserted into the second threaded hole 10, and a bearing 12 is installed between the threaded rod 11 and the second end portion 3 of the shoe button.

[0030] Preferably: The inner wall size of the hanging rack 8 matches the width of the hook 9, there are five hanging racks 8, and a limiting structure is formed between the hook 9 and the second end portion 3 of the shoe button.

[0031] Preferably: The threaded rod 11 forms a rotating structure with the second end portion 3 of the shoe button through the bearing 12, and the threaded rod 11 is in threaded connection with the second threaded hole 10.

[0032] During specific use, after the hook 9 is sleeved on the surface of the hanging rack 8, the threaded rod 11 is rotated. The rotation of the threaded rod 11 can drive the hook 9 to move upward. When the hook 9 moves upward, the first end portion 2 and the second end portion 3 of the shoe button can be connected by hanging with the hanging rack 8.

[0033] Working principle of implementation: When using the shoe button assembly with an anti-slip structure, first pass the second end portion 3 of the shoe button through two shoelace holes, and then drive the first threaded hole 7 to move to the top of the threaded post 5 by the positioning post 6 according to the use requirement and rotate the positioning post 6. While the positioning post 6 is rotating, it can move downward through the threaded connection relationship, so that the position of the positioning post 6 can be fixed. Then, the silicone connecting band 1 drives the fixing hole 4 to move to the top of the positioning post 6 and press downward. Since the silicone connecting band 1 is made of silicone, the fixing hole 4 will expand when being squeezed. When the silicone connecting band 1 drives the fixing hole 4 to be sleeved on the surface of the positioning post 6, it restores its deformation, so that the silicone connecting band 1 can be fixed on the shoelace hole, thereby preventing the silicone connecting band 1 from sliding inside the shoelace hole;

[0034] When fixing, the second end portion 3 of the shoe button drives the hook 9 to be sleeved on the surface of the hanging rack 8 at a suitable position, and then the threaded rod 11 can be rotated. When the threaded rod 11 rotates, it can drive the hook 9 to move upward through the second threaded hole 10. When the hook 9 moves upward, the first end portion 2 and the second end portion 3 of the shoe button can be connected by hanging with the hanging rack 8, so that the shoelace can be tightened by driving the silicone connecting band 1.

[0035] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A shoe button assembly with an anti-slip structure, comprising a silicone connecting band (1), a first end portion (2) of the shoe button, and a second end portion (3) of the shoe button, characterized in that: One end of the silica gel connecting band (1) is connected to the first end portion (2) of the shoe button, and the other end of the silica gel connecting band (1) is connected to the second end portion (3) of the shoe button. Fixing holes (4) are formed on the surface of the silica gel connecting band (1), and threaded posts (5) are connected to the inner surface of the silica gel connecting band (1). A positioning post (6) is sleeved on the surface of the threaded post (5), and a first threaded hole (7) is formed at the bottom of the positioning post (6) close to the threaded post (5).

2. The shoe button assembly with an anti-slip structure according to claim 1, wherein: The top of the positioning post (6) is spherical, and the diameter of the positioning post (6) is slightly larger than the diameter of the fixing hole (4).

3. The shoe button assembly with an anti-slip structure according to claim 2, wherein: The positioning post (6) is threadedly connected to the threaded post (5) through the first threaded hole (7).

4. The shoe button assembly with an anti-slip structure according to claim 1, characterized in that: A hanging rack (8) is connected to the upper surface of the first end portion (2) of the shoe button. A hook (9) is inserted into the bottom side of the second end portion (3) of the shoe button. A second threaded hole (10) is formed inside the hook (9), and a threaded rod (11) is inserted into the second threaded hole (10). A bearing (12) is installed between the threaded rod (11) and the second end portion (3) of the shoe button.

5. A shoe button assembly with an anti-slip structure according to claim 4, characterized in that: The inner wall size of the hanging rack (8) matches the width of the hook (9). Five hanging racks (8) are provided, and a limiting structure is formed between the hook (9) and the second end portion (3) of the shoe button.

6. The shoe button assembly with an anti-slip structure according to claim 5, characterized in that: The threaded rod (11) forms a rotating structure with the second end portion (3) of the shoe button through the bearing (12), and the threaded rod (11) is threadedly connected to the second threaded hole (10).