Inertia rapid sliding device
By installing ice skates and sliding supports on an inertial high-speed glider, and using a joystick and hinge system to achieve the movement of the skateboard, the problem of bicycles not being able to fully attach to the ice surface for riding and gliding off the ice surface is solved, realizing an efficient transition from riding to gliding, and improving speed and entertainment.
Patent Information
- Application Number
- CN202511496512.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-13
- Publication Date
- 2026-01-23
AI Technical Summary
Existing ice sports equipment cannot achieve the transition from cycling with the bicycle wheels fully attached to the ice surface to gliding off the ice surface, resulting in slow cycling and gliding speeds and a lack of entertainment and excitement.
Ice skates are installed at the front of the inertial high-speed skateboard, and a sliding support is installed below the rear lower fork. The S-shaped skateboard slides between the tracks inside the sliding support. The horizontal and vertical movement of the skateboard is achieved through the control lever and hinge system. Combined with the arc bending and limit stop, the riding and gliding modes can be switched.
It enables efficient switching between riding and gliding modes on bicycles, improves riding acceleration and gliding speed, enhances the excitement of entertainment and sports, allows for long gliding distances, and features a simple structure, low cost, and safe and reliable operation.
Smart Images

Figure CN121376017A_ABST
Abstract
Description
I. TECHNICAL FIELD
[0001] The present application belongs to the field of ice sports and entertainment, and is an apparatus for ice sports and entertainment. II. BACKGROUND
[0002] The present application provides an ice inertia fast slider powered by rear wheels and capable of converting between riding and sliding. The problem to be solved is that current sports and entertainment ice bicycles, as shown in Figure 1 , have replaced the front end with skates and kept the rear wheels as driving wheels without leaving the ice surface. When the bicycle slides, the rear wheels also rotate, and it is still a bicycle, not a real ice slider. Another type of ice bicycle, as shown in Figure 2 , has added skates near the rear wheels, but it is difficult for the bicycle rear wheels to completely leave the ice surface when riding or sliding, and it is not a real ice slider when sliding. At the same time, the skates added near the bicycle rear wheels and the bicycle rear wheels are attached to the ice surface at the same time, reducing the pressure of the bicycle rear wheels on the ice surface, reducing the friction of the rear wheels on the ice surface when riding, and reducing the acceleration efficiency of riding. The conversion from riding a bicycle to an ice slider is not completely realized, and whether riding or sliding is always a bicycle moving on the ice. The riding speed is slow, the sliding speed is small, the sliding distance is short, and it does not reach a real ice slider, lacking the stimulation and pleasure of entertainment and sports. III. SUMMARY
[0003] In view of the deficiencies of the prior art, the present application aims to provide an ice sports and entertainment apparatus that can solve the above deficiencies. The technical problem to be solved is to overcome the inability of the prior art to completely attach the bicycle wheels to the ice surface for riding and to completely detach the bicycle wheels from the ice surface for sliding, and to realize the mutual conversion from efficient riding to high-speed sliding. The present application is achieved as follows: Referring to Figure 3 , skates (1) (2) are installed at the front end of the inertia fast slider, and a sliding bracket (19) is installed below the rear lower fork (11), as shown in Figure 5 , the sliding bracket (19) has tracks (18) (20), and the S-shaped sliding plate (14) passes between the tracks (18) (20) in the sliding bracket (19). The surface (26) (27) on the S-shaped sliding plate (14) can slide between the tracks (18) (20) in the sliding bracket (19), as shown in Figure 4, S-type slide plate (14) is connected with connecting rod (22) through hinge (21), connecting rod (22) is connected with operating lever (6) through hinge (23), inertia quick slider lower beam (24) is fixedly arranged on the lower edge of fixed plate (3), operating lever (6) is hingedly connected with shaft (25) on fixed plate (3), manual handle (7) or foot-operated handle (4) (8) is used to make operating lever (6) rotate forward and backward around shaft (25), and hinge (23) on the lower part of operating lever (6) drives connecting rod (22) and hinge (21), so that S-type slide plate (14) moves forward and backward and up and down between tracks (18) (20) in sliding support (19), S-type slide plate (14) is provided with two arc-shaped bends (17) (15), arc-shaped bend (17) is conducive to the smooth mutual conversion of horizontal movement and vertical movement of S-type slide plate (14), and arc-shaped bend (15) is conducive to the smooth sliding of S-type slide plate (14), S-type slide plate (14) is divided into three surfaces (26) (27) (28), surface (27) is an inclined surface, surface (26) is parallel to surface (28), surface (26) is a sliding surface for the horizontal movement of S-type slide plate (14) between tracks (18) (20) in sliding support (19), surface (27) is a height adjustment surface of S-type slide plate (14), and surface (28) is a sliding surface for the sliding of rear wheel (12) of S-type slide plate (14) on ice surface, and a limiting stop (16) is arranged on S-type slide plate (14) to limit the maximum stroke of the forward movement of S-type slide plate (14), since hinge (23) is an arc-shaped movement, the effect of connecting rod (22) and hinge (21) is to ensure that S-type slide plate (14) freely adjusts the running track according to its own shape, hinge (21) has a self-limiting rotation function, and a tension spring (9) is arranged between the upper part of operating lever (6) and inertia quick slider vertical pipe (10).
[0004] The positive effects of the present application are: the present application uses a traditional bicycle frame, has simple structure, is convenient to manufacture, has low cost, is easy to operate, is safe and reliable, realizes the mutual conversion of the riding acceleration mode and the complete inertia quick sliding mode of the inertia quick slider, improves the inertia quick slider riding acceleration efficiency, the inertia quick slider has high sliding speed and long sliding distance, improves the stimulation and happy feeling of entertainment and sports, the inertia quick slider can also be used on snow surface by replacing the front end ice blade (1) (2) with a slide plate, two very low forward sliding rails can also be arranged on the surface (28) of the S-type slide plate (14) to further reduce the friction between the S-type slide plate (14) and the ice surface, and the structure is also in the protection content of the present patent, and the inertia quick slider can also be manufactured into an electric vehicle inertia quick slider. Four, brief description of drawings
[0005] Figure 1 It is a schematic view of the original background ice bicycle 1.
[0006] Figure 2Fig. 2 is a schematic view of the original background ice bicycle 2.
[0007] Figure 3 Fig. 4 is a schematic view of the inertial quick slider of the present application
[0008] Figure 4 Fig. 5 is a schematic view of the inertial quick slider of the present application
[0009] Figure 5 Fig. 6 is a schematic view of the inertial quick slider of the present application Five, specific embodiments
[0010] The specific implementation steps of the inertial quick slider of the present application are as follows: Figure 3 ,
[0011] In the state of no one riding and placing or riding, the tension spring (9) is in the state of minimum tension, the limiting stop (16) contacts with the sliding support (19), and the S-shaped sliding plate (14) is in the state of maximum height from the ice surface. When the inertia fast slider is accelerated to a certain speed, the hand handle (7) is pushed forward or the foot handle (4) is stepped on, or the hand and foot are operated simultaneously, so that the operating rod (6) rotates around the shaft (25), the hinge (23) at the lower part of the operating rod (6) moves backward, the hinge (23) drives the connecting rod (22), the hinge (21) and the S-shaped sliding plate (14) to move backward, the surface (27) and (26) on the S-shaped sliding plate (14) slide backward between the tracks (18) and (20) in the sliding support (19). Due to the effect of the inclined surface (27) on the S-shaped sliding plate (14), the height of the S-shaped sliding plate (14) starts to drop until the surface (28) on the S-shaped sliding plate (14) contacts with the ice surface. The S-shaped sliding plate (14) continues to slide backward along the ice surface. When the tail (13) of the S-shaped sliding plate (14) contacts with the rear wheel (12), the tail (13) of the S-shaped sliding plate (14) is rolled into the rear wheel (12) due to the rotation of the rear wheel (12) forward. Then the rear wheel (12) immediately rolls on the surface (28), and the rear wheel (12) stops rotating due to the block of the inclined surface (27). The inertia fast slider is separated from the ice surface and starts to slide at high speed. The inertia fast slider is converted from the riding mode to the sliding mode. At this time, the tension spring (9) is pulled to the maximum tension. When the sliding speed of the inertia fast slider gradually slows down, the hand handle (7) of the operating rod (6) is pulled backward or the foot handle (8) is stepped down, or the hand and foot are operated simultaneously. The tension spring (9) pulls the operating rod (6) backward. The hinge (23) at the lower part of the operating rod (6) moves forward around the shaft (25). The hinge (23) at the lower part of the operating rod (6) drives the connecting rod (22), the hinge (21) and the S-shaped sliding plate (14) to move forward. The S-shaped sliding plate (14) is pulled out of the rear wheel (12) along the ice surface. Due to the free backward rotation of the rear wheel (12) and the small friction coefficient of the ice surface, the sliding surface (28) of the S-shaped sliding plate (14) is easily pulled out of the rear wheel (12). When the arc-shaped bending (17) of the S-shaped sliding plate (14) reaches the sliding tracks (18) and (20) in the sliding support (19), the height of the S-shaped sliding plate (14) starts to be lifted due to the inclined surface (27). The surface (28) on the S-shaped sliding plate (14) starts to separate from the ice surface. When the S-shaped sliding plate (14) moves forward to the position where the limiting stop (16) contacts with the sliding support (19), the S-shaped sliding plate (14) stops moving forward. The S-shaped sliding plate (14) is lifted to the highest position. The tension spring (9) returns to the state of minimum tension. The S-shaped sliding plate (14) cannot move backward freely. The inertia fast slider is converted to the riding acceleration mode. As described above, the inertia fast slider realizes the mutual conversion between the riding and sliding functions. The inertia fast slider has the advantages of simple structure, low cost, easy operation, safety and reliability, and high riding acceleration efficiency.Inertial quick skater skates fast, skates far. Improves the stimulation and pleasure of entertainment and sports.
Claims
1. Inertial fast skater, which is the replacement of the front wheel of the bicycle with ice skates (1) (2) and installation of S-shaped slide (14), the lower edge of the rear fork (11) of the inertial fast skater is installed with sliding bracket (19), the sliding bracket (19) is installed with track (18) (20), the S-shaped slide (14) passes between the track (18) (20) in the sliding bracket (19), the S-shaped slide (14) is connected with connecting rod (22) through hinge (21), the connecting rod (22) is connected with the lower part of the operating rod (6) through hinge (23), the lower beam (24) of the inertial fast skater is installed with fixed plate (3), the operating rod (6) is hingedly connected with the shaft (25) on the fixed plate (3).
2. The S-shaped skateboard (14) according to claim 1, characterized in that Folded into S shape.
3. The S-shaped slide (14) according to claim 2, wherein the S-shaped slide (14) is folded into an S-shape, characterized in that The S-shaped slide (14) is divided into three faces, face (26), face (27) and face (28).
4. The S-shaped slide plate (14) according to claim 3, divided into three faces, face (26), face (27), face (28), characterized in that The face (27) is an inclined plane, and the face (26) and the face (28) are parallel.
5. The inertial quick slide of claim 1 wherein: The operating rod (6) is provided with a hand handle (7) and a foot handle (4) (8).
6. The inertial quick slide of claim 1 wherein: A tension spring (9) is arranged between the upper part of the operating rod (6) and the vertical pipe (10).