Rail toy driving device and rail toy
By introducing a pneumatic or wireless remote-controlled drive device into the track toys, the conveyor belt moves the toy dolls and the arms and legs of the toy dolls are swung, solving the problems of insufficient fun and interactiveness of the existing track toys and enhancing the racing experience.
Patent Information
- Application Number
- CN202422044458.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-22
AI Technical Summary
Existing track toys lack fun and interactivity, especially the ability to drive toy dolls to achieve swings of arms and legs, and the motor drive lacks racing fun.
A track toy driving device is designed, including a driving tooth box, a trigger device and a power output component, which triggers the driving tooth box to work through pneumatic or wireless remote control, drives the conveyor belt to move the toy doll, and realizes the swing of the arms and legs of the toy doll on the track.
It realizes the coordinated swing of the arms and legs during the movement of the toy doll on the track, enhancing the interaction and fun of racing, and meeting the competitive experience of multiple people when playing.
Smart Images

Figure CN223082257U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of children's toys, in particular to a track toy driving device and a track toy adopting the driving device. Background Art
[0002] For existing track toys, some realize the active movement of toy dolls on the track by arranging a driving device inside the toy dolls, and some realize the passive movement of toy dolls on the track by arranging a driving device on the game table of the track toy and arranging a driving member for driving the toy dolls at the track. However, the existing driving devices arranged on the game table of the track toy can only drive the toy dolls to move on the track, and cannot drive the toy dolls to swing their arms and legs. Moreover, they are directly driven continuously by a motor, lacking the fun of interaction and racing. Summary of the Utility Model
[0003] The purpose of the utility model is to provide a track toy driving device and a track toy adopting the driving device in view of the deficiencies of the prior art, so as to solve the problems of low interest and lack of interaction of existing track toys.
[0004] The technical solution adopted by the utility model to achieve the above purpose is as follows:
[0005] A track toy driving device includes at least one driving gearbox, a triggering device electrically connected to the driving gearbox, and a power output assembly mechanically connected to the driving gearbox. Among them, the power output assembly includes a power output shaft connected to the driving gearbox and a conveyor belt driving gear meshing with the power output end of the power output shaft. A conveyor belt is connected to the conveyor belt driving gear. By triggering the driving gearbox to work with power through the triggering device, the conveyor belt is driven to move through the power output shaft and the conveyor belt driving gear, and further the movement of the track toy is realized.
[0006] A driving motor, a first driving gear meshing with the driving motor, a second driving gear meshing with the first driving gear, and a power output shaft driving gear coaxially connected to the second driving gear and rotating coaxially with the second driving gear are arranged in the driving gearbox. The power output shaft driving gear is arranged outside the driving gearbox and meshes with one end of the power output shaft.
[0007] The triggering device is a pneumatic triggering device, which includes a triggering switch electrically connected to the driving gearbox, a triggering telescopic assembly arranged at an interval from the triggering switch, and an inflation device connected to the triggering telescopic assembly through an air pipe. The triggering telescopic assembly includes a telescopic air cylinder, a triggering piston arranged in the telescopic air cylinder, and a first air pipe connection port and an air inlet arranged at the rear end of the telescopic air cylinder.
[0008] The inflating device includes a handheld housing. A second air tube connection port is provided at the front end of the handheld housing. A shaking inflation assembly communicating with the air tube is provided inside the handheld housing. The shaking inflation assembly includes an inflation cylinder. An air pump is provided at the rear end of the inflation cylinder. An inflation rod is connected to the rear end of the air pump. A flexible film is provided inside the air pump. The inflation rod is connected to the flexible film. The flexible film is in a conical structure, and an air chamber is formed between the flexible film and the inner wall of the front end of the air pump.
[0009] The triggering device is a wireless triggering device, which includes a PCB control circuit board electrically connected to the driving gearbox. A power switch, an LED indicator light, a wireless signal receiving circuit, and a driving gearbox control circuit electrically connected to the wireless signal receiving circuit are provided on the PCB control circuit board. It further includes a remote controller wirelessly communicating with the PCB control circuit board.
[0010] The remote controller includes a wearable body. Wristbands are provided at both ends of the wearable body. A remote control PCB circuit board is provided inside the wearable body. A wireless signal transmitting circuit for communicating with the wireless signal receiving circuit and a signal source generating circuit electrically connected to the wireless signal transmitting circuit are provided on the remote control PCB circuit board. The signal source generating circuit is a shaking generating circuit.
[0011] A second transmission tooth meshing with the conveyor belt driving gear is provided on the inner side wall or the outer side wall of the conveyor belt.
[0012] It further includes a power switch, a circuit board, a speaker, and a battery box.
[0013] A track toy adopting the driving device includes a game table. At least one track is provided on the game table. A first transmission tooth matching with the toy doll and capable of driving the legs and arms of the toy doll to swing cooperatively is provided on the track. A driving device cooperating with the game table and driving the toy doll to move on the track, and the driving device is connected to the toy doll through a conveyor belt.
[0014] The conveyor belt is arranged at the track, and a toy doll fixing seat is fixedly provided on the conveyor belt. By installing the toy doll on the toy doll fixing seat, the toy doll is driven to move on the track by the conveyor belt.
[0015] The beneficial effects of the present utility model are as follows:
[0016] 1. For the track toy driving device of the present utility model, by providing a triggering device for indirectly triggering the driving gearbox to work, and the triggering device is to trigger the driving gearbox to work by continuously shaking the handle inflating device or the remote controller, and then drive the toy doll fixed on the conveyor belt to move on the track. The present utility model adopts two triggering methods, pneumatic triggering and wireless remote control triggering, to meet different playing needs.
[0017] 2. A first transmission gear that matches the arm and leg drive gears of the toy doll is provided on the track. Thus, when the toy doll moves on the track, the arm and leg drive gears of the toy doll will mesh with the first transmission gear, causing the arm and leg drive gears of the toy doll to rotate, and further driving the legs and arms of the toy doll to swing during the movement.
[0018] 3. The track toy driving device of the present utility model can only drive the toy doll to move by continuously shaking the handle. Therefore, interaction can be achieved, and when multiple people play, competitiveness can be demonstrated. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Schematic diagram of the driving part structure for Embodiment 1;
[0020] Figure 2 For Figure 1 Schematic diagram of the internal structure;
[0021] Figure 3 For Figure 2 Schematic diagram of the structure from another perspective;
[0022] Figure 4 Schematic diagram of the conveyor belt cooperating with the driving part;
[0023] Figure 5 Schematic diagram of the internal structure of the driving gearbox of the present utility model;
[0024] Figure 6 Schematic diagram of the inflation device structure of the present utility model;
[0025] Figure 7 For Figure 6 Schematic diagram of the internal structure;
[0026] Figure 8 Cross-sectional view of the rocking inflation assembly;
[0027] Figure 9 Schematic diagram of the overall structure of the present utility model;
[0028] Figure 10 Schematic diagram of the toy doll cooperating with the track toy driving device;
[0029] Figure 11 For Figure 10 Enlarged view of part A in
[0030] Figure 12 Schematic diagram of the use state;
[0031] Figure 13 Schematic diagram of the internal structure of the driving part for Embodiment 2;
[0032] Figure 14Schematic diagram of the overall structure of the remote control in Embodiment 2
[0033] Figure 15 is Figure 14 Schematic diagram of the internal structure.
[0034] In the figure: 1. Game table 2. Track 3. First transmission gear 4. Driving gearbox
[0035] 5. Trigger switch 6. Air pipe 7. Inflating device 8. Conveyor belt
[0036] 9. Telescopic air cylinder 10. Trigger piston 11. First air pipe connection port
[0037] 12. Air inlet 13. Second air pipe connection port 14. Inflating cylinder 15. Inflating pump
[0038] 16. Inflating rod 17. Flexible film 18. Air chamber 19. Air outlet
[0039] 20. Power output shaft 21. Conveyor belt drive gear 22. Second transmission gear
[0040] 23. Power switch 24. Speaker 25. Battery box 26. Driving motor
[0041] 27. First driving gear 28. Second driving gear
[0042] 29. Power output shaft drive gear 30. PCB control circuit board
[0043] 31. LED indicator light 32. Remote control PCB circuit board 33. Wristband
[0044] 34. Switch button 35. Light display part 36. Battery slot. Specific implementation manner
[0045] Embodiment 1: Refer to Figures 1 to 12 , this embodiment provides a track toy driving device, which includes at least one driving gearbox 4, a triggering device electrically connected to the driving gearbox 4, and a power output component mechanically connected to the driving gearbox 4; wherein, the power output component includes a power output shaft 20 connected to the driving gearbox 4, and a conveyor belt driving gear 21 meshing with the power output end of the power output shaft 20, and a conveyor belt 8 is connected to the conveyor belt driving gear 21. The driving gearbox is triggered to work electrically through the triggering device, so that the conveyor belt is driven to move through the power output shaft and the conveyor belt driving gear, thereby realizing the movement of the track toy.
[0046] The triggering device is a pneumatic triggering device, which includes a trigger switch 5, a trigger telescopic component arranged at an interval from the trigger switch 5, and an inflating device 7 connected to the trigger telescopic component through an air pipe 6.
[0047] The triggering telescopic component includes a telescopic air cylinder 9, a triggering piston 10 is arranged inside the telescopic air cylinder 9, and a first air pipe connection port 11 and an air inlet 12 are arranged at the rear end of the telescopic air cylinder 9.
[0048] The rear end of the triggering piston 10 is a flexible part that can expand and contract.
[0049] The inflation device 7 includes a handheld housing, a second air pipe connection port 13 is arranged at the front end of the handheld housing, and a shaking inflation component communicated with the air pipe is arranged inside the handheld housing.
[0050] The shaking inflation component includes an inflation cylinder 14, an inflation pump 15 is arranged at the rear end of the inflation cylinder 14, and an inflation rod 16 is connected to the rear end of the inflation pump 15.
[0051] A flexible membrane 17 is arranged inside the inflation pump 15, the inflation rod 16 is connected to the flexible membrane 17, the flexible membrane 17 is in a conical structure, and an air chamber 18 is formed between the flexible membrane 17 and the inner wall of the front end of the inflation pump 15. An air outlet 19 is arranged at the front end of the inflation cylinder 14.
[0052] A second transmission tooth 22 meshing with the conveyor belt drive gear 21 is arranged on the inner side wall or the outer side wall of the conveyor belt 8.
[0053] It further includes a power switch 23, a circuit board, a speaker 24 and a battery box 25.
[0054] A drive motor 26 is arranged inside the drive gear box 4, a first drive gear 27 meshing with the drive motor 26, a second drive gear 28 meshing with the first drive gear 27, and a power output shaft drive gear 29 coaxially connected with the second drive gear 28 and coaxially rotating with the second drive gear 28. The power output shaft drive gear 29 is arranged outside the drive gear box 4 and meshes with one end of the power output shaft 20.
[0055] A track toy adopting the drive device includes a game table 1, at least one track 2 is arranged on the game table 1, a first transmission tooth 3 that cooperates with a toy doll and can drive the legs and arms of the toy doll to swing in coordination is arranged on the track 2; a drive device that cooperates with the game table 1 and drives the toy doll to move on the track, and the drive device is connected with the toy doll through a conveyor belt 8.
[0056] The conveyor belt 8 is arranged at the track 2, and a toy doll fixing seat is fixedly arranged on the conveyor belt 8. By installing the toy doll on the toy doll fixing seat, the toy doll is driven to move on the track through the conveyor belt.
[0057] The conveyor belt 8 is sleeved at the bottom of the track 2.
[0058] Embodiment 2: Refer to Figures 13 to 15 , this embodiment provides a track toy driving device, whose structure is basically the same as that of Embodiment 1, and the difference lies in that:
[0059] The triggering device is a wireless triggering device, which includes a PCB control circuit board 30 electrically connected to the driving gearbox 4. A power switch 23, an LED indicator light 31, a wireless signal receiving circuit, and a driving gearbox control circuit electrically connected to the wireless signal receiving circuit are provided on the PCB control circuit board 30. It also includes a remote controller that communicates wirelessly with the PCB control circuit board.
[0060] The remote controller includes a wearable body. Wristbands 33 are provided at both ends of the wearable body. A remote control PCB circuit board 32 is provided inside the wearable body. A wireless signal transmitting circuit for communicating with the wireless signal receiving circuit, and a signal source generating circuit electrically connected to the wireless signal transmitting circuit are provided on the remote control PCB circuit board 32. The signal source generating circuit is a shaking generating circuit. A switch button 34 and a light display part 35 are also provided on the wearable body. A battery slot 36 is also provided inside the wearable body.
[0061] By continuously shaking the remote controller, the signal source generating circuit sends a control signal to the wireless signal transmitting circuit, and then the wireless signal receiving circuit receives the control signal and transmits the control signal to the driving gearbox control circuit. Then, the driving gearbox control circuit sends a high level to make the driving gearbox work energized.
[0062] Embodiment 3: This embodiment provides a track toy, whose structure is basically the same as that of Embodiments 1 and 2, and the difference lies in that:
[0063] Two tracks are provided on the game table. Two driving gearboxes, a triggering device electrically connected to the driving gearboxes, and a power output component mechanically connected to the driving gearboxes are provided inside the game table.
[0064] For the conveyor belts, the second transmission teeth of one of them are provided on the inner side wall of the conveyor belt, and the second transmission teeth of the other conveyor belt are provided on the outer side wall of the conveyor belt.
[0065] The working principle of this embodiment is:
[0066] When using a pneumatic trigger device, by vigorously shaking the inflation device, the inflation rod 16 makes a piston movement back and forth axially within the handheld housing, thereby driving the flexible membrane 17 to move back and forth. By squeezing the air in the air chamber 18, the air enters the telescopic air cylinder 9 through the air pipe 6. When the air pressure in the telescopic air cylinder 9 is sufficient, the rear end of the trigger piston 10 expands, pushing out the trigger piston 10, so that the trigger piston 10 pushes the trigger switch 5 to close. At this time, the drive gearbox 4 is powered on to work, driving the conveyor belt 8 to rotate, and then driving the toy doll to move on the track 2. When stopping shaking the inflation device, the inflation device stops supplying air, the air pressure in the telescopic air cylinder 9 decreases, the rear end of the trigger piston 10 contracts and resets, the trigger switch 5 disconnects, and the drive gearbox 4 stops working, causing the toy doll to stop moving.
[0067] When using a wireless trigger device, by continuously shaking the remote control, the signal source generating circuit sends a control signal to the wireless signal transmitting circuit, and then the wireless signal receiving circuit receives the control signal and transmits the control signal to the drive gearbox control circuit. Then, the drive gearbox control circuit sends a high level to power on the drive gearbox to work, driving the conveyor belt 8 to rotate, and then driving the toy doll to move on the track 2. When stopping shaking the remote control, the remote control does not send a remote control signal, the wireless signal receiving circuit cannot receive the control signal, the drive gearbox control circuit sends a low level, and the drive gearbox 4 stops working, causing the toy doll to stop moving.
[0068] However, the above is only a preferred and feasible embodiment of the present invention, and is not intended to limit the patent scope of the present invention. Therefore, all other embodiments described in the present invention and equivalent changes made are included in the protection scope of the present invention.
Claims
1. An orbital toy drive device, characterized in that, It includes at least one driving gearbox, a triggering device electrically connected to the driving gearbox, and a power output component mechanically connected to the driving gearbox; wherein, the power output component includes a power output shaft connected to the driving gearbox, and a conveyor belt driving gear meshing with the power output end of the power output shaft. A conveyor belt is connected to the conveyor belt driving gear. The driving gearbox is triggered to work electrically through the triggering device, so that the conveyor belt is driven to move through the power output shaft and the conveyor belt driving gear, thereby realizing the movement of the track toy.
2. The track toy driving device according to claim 1, characterized in that, A driving motor is provided in the driving gearbox, a first driving gear meshing with the driving motor, a second driving gear meshing with the first driving gear, and a power output shaft driving gear coaxially connected to the second driving gear and rotating coaxially with the second driving gear; the power output shaft driving gear is provided outside the driving gearbox and meshes with one end of the power output shaft.
3. The track toy drive device according to claim 1, characterized in that, The triggering device is a pneumatic triggering device, which includes a triggering switch electrically connected to the driving gearbox, a triggering telescopic component arranged at an interval from the triggering switch, and an inflation device connected to the triggering telescopic component through an air pipe; the triggering telescopic component includes a telescopic air cylinder, a triggering piston is arranged in the telescopic air cylinder, and a first air pipe connection port and an air inlet are arranged at the rear end of the telescopic air cylinder.
4. The track toy driving device according to claim 3, wherein The inflation device includes a handheld housing, a second air pipe connection port is arranged at the front end of the handheld housing, and a shaking inflation component communicated with the air pipe is arranged in the handheld housing; the shaking inflation component includes an inflation cylinder, an air pump is arranged at the rear end of the inflation cylinder, and an inflation rod is connected to the rear end of the air pump; a flexible film is arranged inside the air pump, the inflation rod is connected to the flexible film, the flexible film is in a conical structure, and an air chamber is formed between the flexible film and the inner wall of the front end of the air pump.
5. The track toy driving device according to claim 1, characterized in that, The triggering device is a wireless triggering device, which includes a PCB control circuit board electrically connected to the driving gearbox, a power switch, an LED indicator light, a wireless signal receiving circuit are arranged on the PCB control circuit board, and a driving gearbox control circuit electrically connected to the wireless signal receiving circuit. It also includes a remote controller wirelessly communicating with the PCB control circuit board.
6. The track toy driving device according to claim 5, wherein The remote controller includes a wearable body, wristbands are arranged at both ends of the wearable body, a remote control PCB circuit board is arranged inside the wearable body, a wireless signal transmitting circuit for communicating with the wireless signal receiving circuit is arranged on the remote control PCB circuit board, and a signal source generating circuit electrically connected to the wireless signal transmitting circuit. The signal source generating circuit is a shaking generating circuit.
7. The track toy driving device according to claim 1, wherein, A second transmission tooth meshing with the conveyor belt driving gear is arranged on the inner side wall or the outer side wall of the conveyor belt.
8. The track toy driving device according to claim 1, characterized in that, It also includes a power switch, a circuit board, a speaker and a battery box.
9. A track toy using the drive device according to any one of claims 1 to 8, characterized in that, It includes a game table, at least one track is arranged on the game table, a first transmission tooth matching with the toy doll and capable of driving the legs and arms of the toy doll to swing cooperatively is arranged on the track; a driving device matching with the game table and driving the toy doll to move on the track, and the driving device is connected to the toy doll through a conveyor belt.
10. The track toy according to claim 9, wherein The conveyor belt is arranged at the track, and a toy doll fixing seat is fixedly arranged on the conveyor belt. By installing the toy doll on the toy doll fixing seat, the toy doll is driven by the conveyor belt to move on the track.