Inclined plane connecting structure of split ice skate

By adopting the fitting design between the beveled face and the beveled face in the beveled connection structure of the skate shoes, the cracking and ice and snow water entry problems of the skate shoes are solved, and stable connection and waterproof effects are achieved.

CN223144086UActive Publication Date: 2025-07-25东莞市优拓运动用品有限公司
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Patent Information

Application Number
CN202422694480.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-07-25
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The upper material of traditional ice skates is prone to cracking or wrinkling, and the melted ice and snow water can easily enter the inside of the shoe through the gap, affecting the user experience.

Method used

The inclined connection structure is adopted to prevent melted ice and snow water from entering the inside of the shoe body by fitting the first inclined face and enhancing the connection stability between the toe and the shoe body.

Benefits of technology

Effectively prevents ice and snow water from entering the shoe body, improving the connection stability and user experience between the toe and the shoe body.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an inclined plane connecting structure of a split type ice skate, which comprises a shoe body, and the shoe body comprises a toe cap, a shoe body and a sole which are arranged in a split mode. A first clamping part is formed on the toe cap; a first inclined surface part is formed in the direction, facing the shoe body, of the toe cap, the first inclined surface part comprises a first inner side wall obliquely extending in the direction of the inner side of the toe cap, a second inclined surface part is formed in the direction, facing the toe cap, of the shoe body, and the second inclined surface part comprises a second inner side wall obliquely extending in the direction of the outer side of the shoe body; an inclined plane groove used for inserting the first inclined plane part is formed between the first inner side wall and the first clamping part, and when the second inclined plane part is inserted into the inclined plane groove, the first inner side wall and the second inner side wall are tightly attached to each other. According to the utility model, the first inclined surface part is attached to the second inclined surface part, so that melted ice and snow water can be prevented from entering the inside of the shoe body from a gap between the first inclined surface part and the second inclined surface part.
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Description

Technical Field

[0001] The utility model relates to the technical field of ice skates, and specifically relates to an inclined surface connection structure of a split ice skate. Background Art

[0002] Ice skates are a common sports equipment. The upper of traditional ice skates is mainly made of fabric or leather. However, the upper made of fabric or leather is prone to cracking, wrinkling, etc. after long-term use, which will lead to damage to the shoes.

[0003] To solve the above problems, some existing ice skates usually use plastic materials as the upper materials of ice skates.

[0004] For example, the patent application No. 202323437896.3 discloses a split ice skate, including: a shoe body, the material of the shoe body is plastic; the shoe body includes a shoe head and a shoe body which are arranged separately, and a shoe sole integrally formed with the shoe body. After the shoe head extends towards the shoe body, a first clamping portion concave relative to the outer surface of the shoe head is formed at its end; after the shoe body extends towards the shoe head, a second clamping portion concave relative to the inner surface of the shoe body is formed at its end; the first clamping portion and the second clamping portion are clamped and fixed; the shoe head is fixed on the shoe sole by gluing; an ice blade, arranged at the bottom of the shoe sole; and an installation portion for connecting the shoe sole and the ice blade is arranged at the bottom of the shoe sole.

[0005] Although the above split ice skate is made of plastic material for the shoe body, which can prevent cracking or wrinkling on the surface of the shoe body, however, there are still some places that need to be improved. For example, after the first clamping portion and the second clamping portion are clamped and fixed, since the end faces of the first clamping portion and the second clamping portion are both flush end faces, the connection of the two end faces will form a gap relatively perpendicular to the surface of the shoe body on the surface of the shoe body, which means that when wearing the ice skate for sports, the melted snow and ice water is easy to enter the shoe body through this gap, thus affecting the use experience when wearing.

[0006] Therefore, further improvements need to be made to the existing technology. Utility Model Content

[0007] Aiming at the above problems of the existing technology, the purpose of the utility model is to provide an inclined surface connection structure of a split ice skate, which can prevent the melted snow and ice water from entering the shoe body through the gap between the first inclined surface portion and the second inclined surface portion by the fitting of the first inclined surface portion and the second inclined surface portion. In addition, the contact surface between the first inclined surface portion and the second inclined surface portion is relatively large, making the connection structure between the shoe head and the shoe body more stable.

[0008] To achieve the above object, the technical solution of the present utility model is as follows:

[0009] An inclined surface connection structure of a split ice skate, comprising a shoe body, the shoe body includes a shoe head, a shoe body and a sole which are arranged separately; a first clamping portion is formed on the shoe head; a second clamping portion which is clamped with the first clamping portion is formed on the shoe body; an ice skate is further arranged at the bottom of the sole; a first inclined surface portion is formed in the direction of the shoe head towards the shoe body, the first inclined surface portion includes a first inner side wall which extends obliquely towards the inner side direction of the shoe head, a second inclined surface portion is formed in the direction of the shoe body towards the shoe head, the second inclined surface portion includes a second outer side wall which is inclined towards the outer side direction of the shoe body; an inclined surface groove for inserting the first inclined surface portion is formed between the first inner side wall and the first clamping portion, when the second inclined surface portion is inserted into the inclined surface groove, the first inner side wall and the second outer side wall are tightly attached to each other, so as to prevent the melted snow and ice water from entering the interior of the shoe body through the gap between the first inclined surface portion and the second inclined surface portion.

[0010] Further, the first clamping portion extends obliquely upwards relative to the first inclined surface portion, so that after the melted snow and ice water contacts the upper surface of the first clamping portion, it can flow smoothly out of the shoe body along the upper surface of the first clamping portion.

[0011] Further, the first inclined surface portion further includes a first outer side wall arranged on the outer side surface of the shoe head; when the first inner side wall and the second outer side wall are attached to each other, a smooth transition is formed between the first outer side wall and the second outer side wall.

[0012] Further, the first inclined surface portion extends from the bottom of one side of the shoe head to the bottom of the other side, and the first inclined surface portion and the shoe head are of an integral structure.

[0013] Further, the second inclined surface portion further includes a second inner side wall arranged on the inner side surface of the shoe body, when the first inner side wall and the second outer side wall are attached to each other, the second inner side wall and the first clamping portion are in mutual abutment.

[0014] Further, the second inclined surface portion extends from the bottom of one side of the shoe body to the bottom of the other side, and the second inclined surface portion and the shoe body are of an integral structure.

[0015] Further, the first clamping portion extends towards the shoe body, and the extended length thereof is greater than the extended length of the first inclined surface portion, so that after the second inclined surface portion is inserted into the inclined surface groove, the first clamping portion can provide a larger supporting area for the second inclined surface portion.

[0016] Furthermore, the toe cap is arranged on the sole by means of adhesive pasting.

[0017] Furthermore, a mounting seat for fixing the ice skate blade is also provided at the lower end of the sole, and the mounting seat is fixedly connected to the sole by rivets.

[0018] The beneficial effects of the present utility model are as follows:

[0019] By fitting the first inclined surface portion and the second inclined surface portion, the present utility model can prevent the melted snow and ice water from entering the interior of the shoe body through the gap between the first inclined surface portion and the second inclined surface portion. In addition, the contact surface between the first inclined surface portion and the second inclined surface portion is relatively large, making the connection structure between the toe cap and the shoe body more stable. Description of the Drawings

[0020] Figure 1 is the overall structural schematic diagram of the present utility model;

[0021] Figure 2 is the exploded structural schematic diagram of the present utility model;

[0022] Figure 3 is the cross-sectional structural schematic diagram of the present utility model;

[0023] Figure 4 is Figure 3 the enlarged view of point A in

[0024] Figure 5 is Figure 4 the exploded schematic diagram of the first inclined surface portion and the second inclined surface portion in

[0025] Reference Signs

[0026] 1, shoe body;

[0027] 2, toe cap; 21, first clamping portion;

[0028] 3, shoe body; 31, second clamping portion;

[0029] 4, sole;

[0030] 5, ice skate blade;

[0031] 6, mounting seat;

[0032] 7, first inclined surface portion; 71, first inner wall; 72, first outer wall;

[0033] 8, second inclined surface portion; 81, second inner wall; 82, second outer wall;

[0034] 9, inclined surface groove. Detailed Embodiments

[0035] The following further elaborates on the utility model in conjunction with the accompanying drawings and specific embodiments. The following description is merely exemplary and does not limit the protection scope of the utility model.

[0036] As Figure 1 - Figure 2 shown, an inclined surface connection structure of a split ice skate includes a shoe body 1, and the shoe body 1 includes a shoe head 2, a shoe body 3, and a shoe sole 4 that are separately arranged; specifically, the shoe body 3 is arranged on the shoe sole 4 by means of adhesive pasting. Among them, the shoe head 2, the shoe body 3, and the shoe sole 4 are all made of plastic materials.

[0037] As Figure 2 shown, a first clamping portion 21 is formed on the shoe head 2, and a second clamping portion 31 that is clamped with the first clamping portion 21 is formed on the shoe body 3; specifically, after the shoe head 2 extends towards the shoe body 3, a first clamping portion 21 that is concave relative to the outer surface of the shoe head 2 is formed at its end; after the shoe body 3 extends towards the shoe head 2, a second clamping portion 31 that is concave relative to the inner surface of the shoe body 3 is formed at its end; the first clamping portion 21 and the second clamping portion 31 are clamped and fixed; in this embodiment, the shoe head 2, the shoe body 3, and the shoe sole 4 are all made of plastic materials. By setting the shoe head 2 and the shoe body 3 separately, it is convenient to mold and inject during production. Among them, the setting of the first clamping portion 21 and the second clamping portion 31 facilitates the formation of a clamping fit when the shoe head 2 and the shoe body 3 are connected and fixed, thereby making the fixation of the shoe head 2 and the shoe body 3 more firm.

[0038] As Figure 2 shown, in this embodiment, an ice skate 5 is further arranged at the bottom of the shoe sole 4, so that the above-mentioned separately arranged shoe head 2 and shoe body 3 structure can be applied to an ice skate. Specifically, a mounting seat 6 for fixing the ice skate 5 is further provided at the lower end of the shoe sole 4, and the mounting seat 6 is fixedly connected to the shoe sole 4 by rivets. Through the above setting, the ice skate 5 can be firmly installed on the shoe sole 4.

[0039] As Figure 3 - Figure 5 shown, a first inclined surface portion 7 is formed in the direction of the shoe head 2 towards the shoe body 3. The first inclined surface portion 7 includes a first inner wall 71 that extends obliquely towards the inner side direction of the shoe head 2. A second inclined surface portion 8 is formed in the direction of the shoe body 3 towards the shoe head 2. The second inclined surface portion 8 includes a second outer wall 82 that is inclined towards the outer side direction of the shoe body 3; in this embodiment, the first inner wall 71 and the second outer wall 82 can be completely matched and attached.

[0040] As Figure 5As shown in the figure, a bevel groove 9 for the insertion of the first bevel surface 7 is formed between the first inner wall 71 and the first clamping portion 21. When the second bevel surface 8 is inserted into the bevel groove 9, the first inner wall 71 and the second outer wall 82 are closely attached to each other, thereby preventing the melted snow and ice water from entering the interior of the shoe body 1 through the gap between the first bevel surface 7 and the second bevel surface 8. In addition, after the first bevel surface 7 and the second bevel surface 8 which are arranged in a bevel shape are attached to each other, the formed contact surface has a larger contact area compared with the traditional flush contact surface (the contact surface is relatively perpendicular to the shoe body 1), so that after the two are abutted against each other, the connection structure between the shoe head 2 and the shoe body 3 is more stable.

[0041] As Figure 2 shown, the first clamping portion 21 extends obliquely upward relative to the first bevel surface 7, so that after the melted snow and ice water contacts the upper surface of the first clamping portion 21, it can smoothly flow out to the outside of the shoe body 1 along the upper surface of the first clamping portion 21.

[0042] As Figure 4 shown, the first bevel surface 7 further includes a first outer wall 72 provided on the outer side surface of the shoe head 2; when the first inner wall 71 and the second outer wall 82 are closely attached to each other, a smooth transition is formed between the first outer wall 72 and the second outer wall 82. Through the above settings, after the first bevel surface 7 and the second bevel surface 8 are matched with each other, the surface of the shoe body 2 is smooth and flat.

[0043] As Figure 2 shown, the first bevel surface 7 extends from the bottom on one side of the shoe head 2 to the bottom on the other side, and the first bevel surface 7 and the shoe head 2 are of an integral structure.

[0044] As Figure 4 shown, the second bevel surface 8 further includes a second inner wall 81 provided on the inner side surface of the shoe body 3. When the first inner wall 71 and the second outer wall 82 are closely attached to each other, the second inner wall 81 and the first clamping portion 21 are abutted against each other.

[0045] As Figure 2 shown, the first clamping portion 21 extends towards the shoe body 3, and the extended length thereof is greater than the extended length of the first bevel surface 7, so that after the second bevel surface 8 is inserted into the bevel groove 9, the first clamping portion 21 can provide a larger supporting area for the second bevel surface 8.

[0046] In order to make the shoe body 1 more beautiful, leather can be arranged on the surface of the shoe body 3 by sewing.

[0047] The present utility model is not limited to the above-described embodiments. If various modifications or variations to the present utility model do not depart from the spirit and scope of the present utility model, and provided that these modifications and variations fall within the scope of the claims of the present utility model and equivalent technical scope, then the present utility model also intends to encompass these modifications and variations.

Claims

1. The inclined surface connection structure of a split ice skate, comprising a shoe body, the shoe body including a shoe head, a shoe body and a shoe sole which are arranged in a split manner; a first clamping portion is formed on the shoe head; a second clamping portion which is clamped with the first clamping portion is formed on the shoe body; an ice skate is further arranged at the bottom of the shoe sole; and it is characterized in that: A first inclined surface portion is formed in the direction of the shoe head towards the shoe body, the first inclined surface portion including a first inner side wall which extends obliquely towards the inner side direction of the shoe head, A second inclined surface portion is formed in the direction of the shoe body towards the shoe head, the second inclined surface portion including a second outer side wall which is inclined towards the outer side direction of the shoe body; An inclined surface groove for inserting the first inclined surface portion is formed between the first inner side wall and the first clamping portion. When the second inclined surface portion is inserted into the inclined surface groove, the first inner side wall and the second outer side wall are tightly attached to each other, so that the melted ice and snow water can be prevented from entering the interior of the shoe body from the gap between the first inclined surface portion and the second inclined surface portion.

2. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The first clamping portion extends obliquely upwards relative to the first inclined surface portion, so that after the melted ice and snow water contacts the upper surface of the first clamping portion, it can smoothly flow out to the outside of the shoe body along the upper surface of the first clamping portion.

3. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The first inclined surface portion further includes a first outer side wall arranged on the outer side surface of the shoe head; after the first inner side wall and the second outer side wall are attached to each other, the first outer side wall and the second outer side wall are smoothly transitioned.

4. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The first inclined surface portion extends from the bottom of one side of the shoe head to the bottom of the other side thereof, and the first inclined surface portion and the shoe head are of an integral structure.

5. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The second inclined surface portion further includes a second inner side wall arranged on the inner side surface of the shoe body. After the first inner side wall and the second outer side wall are attached to each other, the second inner side wall and the first clamping portion are abutted against each other.

6. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The second inclined surface portion extends from the bottom of one side of the shoe body to the bottom of the other side thereof, and the second inclined surface portion and the shoe body are of an integral structure.

7. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The first clamping portion extends towards the shoe body, and the extended length thereof is greater than the extended length of the first inclined surface portion, so that after the second inclined surface portion is inserted into the inclined surface groove, the first clamping portion can provide a larger supporting area for the second inclined surface portion.

8. The inclined surface connection structure of the split ice skate according to claim 1, wherein: The shoe body is arranged on the shoe sole by means of glue pasting.

9. The inclined surface connection structure of the split ice skate according to claim 1, wherein: A mounting seat for fixing the ice skate is further provided at the lower end of the sole, and the mounting seat and the sole are fixedly connected by rivets.

10. The inclined surface connection structure of the split ice skate according to claim 1, wherein: Leather is provided on the surface of the shoe body by sewing.

Citation Information

Patent Citations

  • Split type ice skate blade shoes

    CN221307398U