Ice skates

By adopting a non-circular locking mechanism on the roller skates, the positioning problem of the protective shell during wear is solved, enabling convenient adjustment and positioning of the protective shell, simplifying the structure, and improving the smoothness and comfort of putting on and taking off the skates.

CN224207345UActive Publication Date: 2026-05-08吴方瑜
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
吴方瑜
Filing Date
2025-04-24
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The protective shell of existing roller skates cannot be positioned properly when worn, resulting in difficulty and complexity in putting on and taking off the skates.

Method used

The pivot mechanism, which employs a non-circular locking structure, allows the protective shell to switch between a locked position and a released position, enabling the positioning and swing adjustment of the protective shell. Through the engagement or disengagement of the non-circular locking structure with the first and second non-circular structures, the stability and free rotation of the protective shell are achieved.

Benefits of technology

It enables easy on and off of the protective case, improves user comfort, simplifies the structure, and avoids the need for additional straps.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224207345U_ABST
    Figure CN224207345U_ABST
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Abstract

The utility model relates to an ice skate which comprises a skate body and a protective shell, the skate body comprises two first connecting parts, the two first connecting parts are located on the two opposite sides of the skate body, at least one first connecting part comprises a first non-circular structure, and the protective shell comprises two second connecting parts, at least one second connecting part comprises a second non-circular structure; the sliding component is arranged on one bottom side of the shoe body; and two pivoting mechanisms, each pivoting mechanism comprises a pivoting piece, each pivoting piece is inserted into one first connecting part and one second connecting part, the pivoting piece of at least one pivoting mechanism comprises a non-circular clamping structure, and the non-circular clamping structure can move between a locking position and a releasing position. According to the ice skates provided by the utility model, the protective shells can be swung, adjusted and positioned, the ice skates are convenient to put on and take off, the structure is simple, and extra bridles are not needed for auxiliary limiting.
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Description

Technical Field

[0001] This utility model relates to a sports device, and more particularly to an ice skate. Background Technology

[0002] Ice skating is a popular and widespread sport and recreational activity. Ice skates are required for ice skating. The cuff of a conventional ice skate is usually rotatably attached to the skate body, requiring a strap to tighten and hold the cuff in place. However, when putting it on, the strap must first be released to allow the cuff to swing outwards, creating a larger opening for the foot to enter the skate. Then, the strap must be tightened to secure the skate to the foot. Before the strap is tightened, the cuff cannot be positioned and will swing freely. Therefore, conventional ice skates are not easy, convenient, comfortable, or easy to put on and take off, and their structure is relatively complex.

[0003] Therefore, it is necessary to provide a novel and progressive roller skate to solve the above problems. Utility Model Content

[0004] The main purpose of this utility model is to provide an ice skate whose shell can be adjusted and positioned by swinging, making it easy to put on and take off, and whose simple structure does not require additional straps for restraint.

[0005] To achieve the above objectives, this utility model provides an ice skate, comprising: a shoe body including a shoe upper and a protective shell, the shoe upper including two first connecting portions located on opposite sides of the shoe upper, at least one of the first connecting portions including a first non-circular structure; the protective shell including two second connecting portions, at least one of the second connecting portions including a second non-circular structure; a gliding member disposed on a bottom side of the shoe body; and two pivoting mechanisms, each pivoting mechanism including a pivot member inserted into a first connecting portion and a second connecting portion, wherein at least one of the pivoting mechanisms pivots... The component includes a non-circular locking structure movable between a locked position and a released position; wherein, when the non-circular locking structure is in the locked position, the non-circular locking structure engages simultaneously with both the first non-circular structure and the second non-circular structure without relative rotation, thereby positioning the protective shell and preventing it from rotating relative to the shoe body; wherein, when the non-circular locking structure is in the released position, the non-circular locking structure disengages from at least one of the first non-circular structure and the second non-circular structure, thereby releasing the protective shell and allowing it to rotate relative to the shoe body.

[0006] Preferably, the non-circular locking structure can be fitted with the first non-circular structure and the second non-circular structure.

[0007] Preferably, the first non-circular structure includes a first non-circular hole, the second non-circular structure includes a second non-circular hole, and the non-circular locking structure includes a non-circular rod segment.

[0008] Preferably, at least one of the pivoting mechanisms further includes an actuating rod and a locking block connected to the actuating rod, the actuating rod passing through the first non-circular structure and the second non-circular structure, and the locking block including the non-circular rod segment.

[0009] Preferably, the first non-circular structure further includes a non-circular end groove, and the locking block further includes a non-circular flange extending radially from the non-circular rod segment. When the non-circular locking structure is in the locked position, the non-circular flange is engaged in the non-circular end groove without relative rotation.

[0010] Preferably, the actuating rod includes an outer retaining edge and a shoulder, and the retaining block is sleeved on the actuating rod and limited to the outer retaining edge and the shoulder.

[0011] Preferably, an elastic element is provided between the pivot and the shoe body, and the elastic element applies force to the pivot so that the non-circular locking structure can automatically reset to the locked position.

[0012] Preferably, the two first connecting portions each include the first non-circular structure, the two second connecting portions each include the second non-circular structure, and the pivot members of the two pivoting mechanisms each include the non-circular locking structure.

[0013] Preferably, each of the two first connecting portions further includes an annular protrusion, and each of the two second connecting portions further includes a groove, with the annular protrusion inserted into the groove.

[0014] Preferably, the shoe body further includes a base, a wearing part and a screw, the wearing part being movably connected to the base and including a tooth, the screw being rotatably inserted into the base and engaging with the tooth, and the rotation of the screw can drive the wearing part to move.

[0015] The advantages of this utility model are:

[0016] The roller skates provided by this utility model have a shell that can be adjusted and positioned by swinging, making them easy to put on and take off. They also have a simple structure that does not require additional straps for restraint. Attached Figure Description

[0017] Figure 1 This is a perspective view of an embodiment of the present utility model.

[0018] Figure 2 This is an exploded view of an embodiment of the present invention.

[0019] Figures 3 to 4 This is a schematic diagram illustrating the operation of an embodiment of the present invention.

[0020] Figure 5 This is a schematic diagram illustrating the operation of an embodiment of the present invention.

[0021] Figure 6 This is a partial cross-sectional view of an embodiment of the present invention. Detailed Implementation

[0022] The following examples illustrate possible implementations of the present invention, but are not intended to limit the scope of protection of the present invention.

[0023] Please refer to Figures 1 to 6 This shows an embodiment of the present invention. The ice skate 1 of the present invention includes a shoe body 10, a gliding component 20 and two pivoting mechanisms 30.

[0024] The shoe body 10 includes a shoe upper 11 and a protective shell 12. The shoe upper 11 includes two first connecting portions 111 located on opposite sides of the shoe upper 11. At least one of the first connecting portions 111 includes a first non-circular structure 112. The protective shell 12 includes two second connecting portions 121, and at least one of the second connecting portions 121 includes a second non-circular structure 122. The gliding component 20 is disposed on a bottom side of the shoe body 10. The gliding component 20 is, for example, a single-row roller, a double-row roller, or an ice skate. Each pivoting mechanism 30 includes a pivot member 31, which is inserted into a first connecting portion 111 and a second connecting portion 121. At least one pivot member 31 of the pivoting mechanism 30 includes a non-circular locking structure 311, which is movable to a locked position. Figure 3 ) and a release position ( Figure 4 When the non-circular locking structure 311 is in the locked position, it engages simultaneously with both the first non-circular structure 112 and the second non-circular structure 122 without relative rotation, thus positioning the shell 12 and preventing it from rotating relative to the shoe body 11. When the non-circular locking structure 311 is in the released position, it disengages from at least one of the first non-circular structure 112 and the second non-circular structure 122, releasing the shell 12 and allowing it to rotate relative to the shoe body 11. Thus, with a simple operation (e.g., pressing) of the pivot mechanism 30, the shell 12 can be adjusted and positioned, making putting on and taking off the skates 1 extremely smooth, easy, convenient, and comfortable (especially for children), and the simple structure eliminates the need for additional straps for restraint.

[0025] The non-circular locking structure 311 can be sleeved with the first non-circular structure 112 and the second non-circular structure 122. For example, the non-circular locking structure 311 can be inserted into the first non-circular structure 112 and the second non-circular structure 122, or the first non-circular structure and the second non-circular structure can be inserted into the non-circular locking structure. Specifically, the first non-circular structure 112 includes a first non-circular hole, the second non-circular structure 122 includes a second non-circular hole, and the non-circular locking structure 311 includes a non-circular rod segment 312. The first non-circular structure 112, the second non-circular structure 122, and the non-circular locking structure 311 can be polygonal structures (e.g., triangular, quadrangular, pentagonal, or other structures), thereby allowing the protective shell 12 to be adjusted and positioned at multiple angles.

[0026] Furthermore, at least one of the pivot members 31 of the pivot mechanism 30 includes an actuating rod 313 and a locking block 314 connected to the actuating rod 313. The actuating rod 313 passes through the first non-circular structure 112 and the second non-circular structure 122. The locking block 314 includes the non-circular rod segment 312. The actuating rod 313 includes an outer retaining edge 315 and a shoulder 316. The locking block 314 is sleeved on the actuating rod 313 and confined between the outer retaining edge 315 and the shoulder 316. Thus, the manufacturing and assembly of the pivot member 31 is quick and easy. By operating the actuating rod 313, the non-circular locking structure 311 can be moved to the release position.

[0027] Preferably, the first non-circular structure 112 further includes a non-circular end groove 113, and the locking block 314 further includes a non-circular flange 317 extending radially from the non-circular rod segment 312. When the non-circular locking structure 311 is in the locked position, the non-circular flange 317 is locked into the non-circular end groove 113 without relative rotation, thereby improving the locking strength and stability.

[0028] In this embodiment, the two first connecting portions 111 each include a first non-circular structure 112, the two second connecting portions 121 each include a second non-circular structure 122, and the pivot members 31 of the two pivoting mechanisms 30 each include a non-circular locking structure 311. This allows for the simultaneous adjustment and positioning of the protective shell 12 on both opposite sides of the shoe body 10, while also providing good structural strength. Preferably, an elastic member 40 is further provided between the pivot member 31 and the shoe body 10. The elastic member 40 applies force to the pivot member 31, causing the non-circular locking structure 311 to automatically reset to the locked position, providing good convenience and reliable positioning. The two first connecting portions 111 each also include an annular protrusion 114, and the two second connecting portions 121 each include a groove 123. The annular protrusion 114 is placed in the groove 123, preventing the protective shell 12 from shifting arbitrarily, ensuring stable swing, and reducing the force on the pivoting mechanism 30.

[0029] Preferably, the shoe body 11 further includes a base 115, a wearing part 116 and a screw 117. The wearing part 116 is movably connected to the base 115 and includes a tooth 118. The screw 117 is rotatably inserted into the base 115 and engages with the tooth 118. The rotation of the screw 117 can drive the wearing part 116 to move, thereby adjusting the size of the shoe body to suit different foot sizes.

[0030] The above description is a preferred embodiment of the present utility model and the technical principles applied thereto. For those skilled in the art, any obvious changes such as equivalent transformations or simple substitutions based on the technical solution of the present utility model without departing from the spirit and scope of the present utility model shall fall within the protection scope of the present utility model.

Claims

1. A type of roller skate, characterized in that, include: A shoe body includes a shoe upper and a protective shell. The shoe upper includes two first connecting portions located on opposite sides of the shoe upper. At least one of the first connecting portions includes a first non-circular structure. The protective shell includes two second connecting portions. At least one of the second connecting portions includes a second non-circular structure. A sliding component is provided on one bottom side of the shoe body; and Two pivoting mechanisms, each of which includes a pivot member, each of which is inserted into a first connecting portion and a second connecting portion, wherein at least one of the pivoting mechanisms includes a non-circular locking structure that is movable between a locked position and a released position. When the non-circular latching structure is in the locked position, the non-circular latching structure engages with both the first non-circular structure and the second non-circular structure without relative rotation, so that the protective shell is positioned and cannot rotate relative to the shoe body. When the non-circular locking structure is in the released position, the non-circular locking structure disengages from at least one of the first non-circular structure and the second non-circular structure, thereby releasing the protective shell so that it can rotate relative to the shoe body.

2. The roller skates as described in claim 1, characterized in that, The non-circular locking structure can be fitted with the first non-circular structure and the second non-circular structure.

3. The roller skates as described in claim 2, characterized in that, The first non-circular structure includes a first non-circular hole, the second non-circular structure includes a second non-circular hole, and the non-circular locking structure includes a non-circular rod segment.

4. The roller skates as described in claim 3, characterized in that, At least one of the pivoting mechanisms further includes an actuating rod and a locking block connected to the actuating rod, the actuating rod passing through the first non-circular structure and the second non-circular structure, and the locking block including the non-circular rod segment.

5. The roller skates as described in claim 4, characterized in that, The first non-circular structure further includes a non-circular end groove, and the locking block further includes a non-circular flange extending radially from the non-circular rod segment. When the non-circular locking structure is in the locked position, the non-circular flange is engaged with the non-circular end groove without relative rotation.

6. The roller skates as described in claim 5, characterized in that, The actuator includes an outer flange and a shoulder, and the locking block is sleeved on the actuator and limited to the outer flange and the shoulder.

7. The roller skates as described in any one of claims 1 to 6, characterized in that, An elastic element is provided between the pivot and the shoe body. The elastic element applies force to the pivot so that the non-circular locking structure can automatically reset to the locked position.

8. The roller skates as described in any one of claims 1 to 6, characterized in that, The two first connecting parts each include the first non-circular structure, the two second connecting parts each include the second non-circular structure, and the pivot members of the two pivoting mechanisms each include the non-circular locking structure.

9. The roller skates as described in any one of claims 1 to 6, characterized in that, The two first connecting portions each include an annular protrusion, and the two second connecting portions each include a groove, with the annular protrusion inserted into the groove.

10. The roller skates as described in any one of claims 1 to 6, characterized in that, The shoe body also includes a base, a wearable part and a screw. The wearable part is movably connected to the base and includes a tooth. The screw is rotatably inserted into the base and engages with the tooth. Rotation of the screw can drive the wearable part to move.