Slingshot type fighting toy car
By designing a slingshot-style combat toy car, the toy car is tipped over using a combination of a slingshot arm and a pusher. The magnetic armor detaches to provide a clear determination of victory or defeat, solving the problems of insufficient fun and vehicle damage in existing technologies, and improving the fun of the battle and the protection of the vehicle.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANTOU OURUI TOYS IND CO LTD
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-17
AI Technical Summary
Existing battle toy cars lack clear criteria for determining victory or defeat during battles, resulting in insufficient fun, easy damage to the vehicles, and unclear outcomes when there are significant differences in power.
Design a slingshot-style combat toy car that uses a combination of a slingshot arm and a pusher as weapons. The slingshot arm's claws insert into the bottom of the opponent's car and quickly spring up, causing the toy car to tip over. The magnetic armor detaches when subjected to sufficient impact, providing a clear determination of victory or defeat.
It increases the fun of battles and makes the outcome clearer, reduces vehicle damage, and extends the lifespan of toy cars.
Smart Images

Figure CN224126547U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of toy technology, specifically relating to a slingshot-style combat toy vehicle. Background Technology
[0002] Currently, most battle car games on the market involve two cars colliding head-on. These collisions can occur in several ways: First, if both cars have similar power, neither can knock the other away or make it move backward; in this case, the cars will stop at the point of impact or move slightly back and forth. Second, if one car has more power than the other, the stronger car will usually push the other backward or knock it aside so they can move on their own. This doesn't result in a clear victory, making it less fun and less enjoyable for children. It can also lead to disagreements and arguments. Only in rare cases, when the power difference is significant or the impact force is large enough, can one car knock the other away. However, in such cases, the damage to both cars is considerable, easily resulting in damage to either car or the other's car. Summary of the Invention
[0003] To address the aforementioned shortcomings, the purpose of this utility model is to provide a slingshot-style battle toy car with a reasonable structural design, which can clearly distinguish the winner and loser in battle and has a high level of fun.
[0004] To achieve the above objectives, the technical solution provided by this utility model is as follows:
[0005] A slingshot-style combat toy car includes a pusher, a car body, a slingshot arm, a slingshot triggering device, and magnetic armor. The pusher is located at the rear end of the car body, and the rear end of the slingshot arm is hinged to the rear of the car body. The front end of the slingshot arm extends to the front end of the car body to form a pry bar. The slingshot triggering device is located on the car body at a position below the front part of the slingshot arm and can push the slingshot arm to spring upwards quickly. The magnetic armor is magnetically attached to the outer wall of the car body.
[0006] As a preferred embodiment of this utility model, the slingshot triggering device includes a housing, a slingshot arm, a torsion spring, a pulling gear, a transmission gear set, a slingshot motor, and a touch switch. One end of the slingshot arm is mounted on the housing via a rotating shaft and has a driving tooth. The other end extends obliquely upward and abuts against the bottom surface of the slingshot arm, and has a trigger part at its end. The touch switch is mounted on the vehicle body at a position below the trigger part. The circular spring portion of the torsion spring is sleeved on the rotating shaft, with one end abutting against the housing and the other end abutting against the slingshot arm. The pulling gear is mounted inside the housing at a position corresponding to the driving tooth. One side of the pulling gear has an arc notch with the center and a pulling tooth section protruding from the arc notch and adapted to the driving tooth. The slingshot motor is mounted inside the housing and drives the pulling gear to rotate via the transmission gear set.
[0007] As a preferred embodiment of this utility model, the transmission gear set includes a worm gear, a first transmission gear, a second transmission gear, and a third transmission gear. The worm gear is mounted on the drive shaft of the slingshot motor, and the worm gear, the first transmission gear, the second transmission gear, the third transmission gear, and the pulling gear mesh with each other in sequence.
[0008] As a preferred embodiment of this utility model, the front end of the pry bar is tilted downward, which makes it easier to insert into the bottom of the other party's toy car.
[0009] As a preferred embodiment of this utility model, the two sides of the vehicle body are symmetrically provided with mounting positions adapted to the magnetic armor, the mounting positions are provided with mounting magnets or mounting iron blocks, and the magnetic armor is provided with armor iron blocks or armor magnets that are magnetically attracted to the mounting magnets or mounting iron blocks.
[0010] As a preferred embodiment of this utility model, the vehicle body includes a chassis, a body shell, front wheels, rear wheels, a drive unit, a battery, and a remote control circuit board. The two front wheels are rotatably mounted at the front of the chassis, the two drive units are arranged side by side at the rear of the chassis, and the two rear wheels are correspondingly mounted on the output shafts of their respective drive units. The battery and the remote control circuit board are located on the chassis, and the remote control circuit board is connected to the battery and the drive unit respectively. The body shell covers the chassis.
[0011] As a preferred embodiment of this utility model, the driving device includes a drive motor, a power gear, a first reduction gear, a second reduction gear, a third reduction gear, and an output shaft. The power gear is mounted on the drive shaft of the drive motor. The power gear, the first reduction gear, the second reduction gear, and the third reduction gear mesh sequentially. One end of the output shaft is fixedly connected to the third reduction gear, and the other end is fixedly connected to the rear wheel.
[0012] In a preferred embodiment of this invention, the pusher is magnetically attached to the rear end of the vehicle body. Alternatively, the pusher is disposed at the rear end of the vehicle body via a plug-in structure.
[0013] The beneficial effects of this utility model are as follows: The utility model has a reasonable structural design, and can form a combat weapon by combining the slingshot arm and the pusher. For example, when the slingshot arm's claw is inserted into the bottom of other combat toy cars, it can quickly spring upward to achieve the purpose of flipping over other combat toy cars. The pusher can directly hit other toy cars, thereby achieving the purpose of combat competition. When the magnetic armor is hit with sufficient force, it can trigger the magnetic armor detachment mechanism, providing an intuitive and clear standard for judging the victory or defeat in the battle, effectively improving the joy of playing and the passion of the battle, and it is not easy to damage the opponent's or one's own toy cars, effectively improving the service life of the toy cars.
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 This is a schematic diagram of the structure when the magnetic armor falls off in this utility model.
[0017] Figure 3 This is an exploded structural diagram of the present invention. Figure 1 .
[0018] Figure 4 This is an exploded structural diagram of the present invention. Figure 2 .
[0019] Figure 5 This is a schematic diagram of the slingshot triggering device in this utility model. Detailed Implementation
[0020] Example: See Figures 1 to 5 This embodiment provides a slingshot-type combat toy vehicle, which includes a vehicle body 1, a push shovel 2, a slingshot arm 3, a slingshot triggering device 4, and a magnetic armor 5.
[0021] The vehicle body 1 includes a chassis 11, a body shell 12, front wheels 13, rear wheels 14, a drive unit 15, a battery 16, and a remote control circuit board 17. The two front wheels 13 are rotatably mounted at the front of the chassis 11, and the two drive units 15 are arranged side by side at the rear of the chassis 11. The two rear wheels 14 are correspondingly mounted on the output shafts of their respective drive units 15. Specifically, the drive unit 15 includes a drive motor 151, a power gear 152, a first reduction gear 153, a second reduction gear 154, a third reduction gear 155, and an output shaft. The power gear 152 is mounted on the drive shaft of the drive motor 151. The power gear 152, the first reduction gear 153, the second reduction gear 154, and the third reduction gear 155 mesh sequentially. One end of the output shaft is fixedly connected to the third reduction gear 155, and the other end is fixedly connected to the rear wheels 14. When the two drive units 15 drive synchronously, the vehicle body 1 travels straight; when one of the drive units 15 decelerates or stops, the vehicle body 1 turns to the corresponding side to achieve the purpose of turning.
[0022] The battery 16 and the remote control circuit board 17 are located on the chassis 11. The remote control circuit board 17 is connected to the battery 16, the drive device 15, and the slingshot triggering device 4, respectively. The vehicle body 12 covers the chassis 11. The battery 16 is preferably a rechargeable lithium battery.
[0023] The pusher 2 is disposed at the rear end of the chassis 11 of the vehicle body 1. In this embodiment, a post 111 is provided at the rear end of the chassis 11, and a socket 21 adapted to the post 111 is provided on the pusher 2. The post 111 and the socket 21 form a plug-in structure. During assembly, the post 111 is inserted into the socket 21 to realize the pusher 2 being disposed at the rear end of the chassis 11. In other embodiments, the pusher 2 can also be magnetically attached to the rear end of the vehicle body 1.
[0024] A hinge seat 121 is provided at the rear of the shell 12 of the vehicle body 1. The tail end of the slingshot arm 3 is hinged to the hinge seat 121 through the hinge shaft 31. The front end of the slingshot arm 3 extends to the front end of the vehicle body 1 to form a pry bar 21. Preferably, the front end of the pry bar 21 is inclined downward, which is more conducive to inserting into the bottom of the other party's toy car.
[0025] The slingshot triggering device 4 is positioned on the vehicle body 1 below the front part of the slingshot arm 3, and can push the slingshot arm 3 to spring upwards quickly. The magnetic armor 5 is magnetically attached to the outer wall of the vehicle body 1. Specifically, the slingshot triggering device 4 includes a housing 41, a slingshot arm 42, a torsion spring 43, a pulling gear 44, a transmission gear set 45, a slingshot motor 46, and a touch switch 47. One end of the slingshot arm 42 is mounted on the housing 41 via a rotating shaft and is provided with a driving tooth 421. The other end extends obliquely upwards and abuts against the bottom surface of the slingshot arm 3, and is provided with a trigger part 422 at its end. The touch switch 47 is positioned on the vehicle body 1 below the trigger part 422. The torsion spring 43... A spring is sleeved on the rotating shaft, with one end abutting against the outer casing 41 and the other end abutting against the spring arm 42. The actuating gear 44 is positioned inside the outer casing 41 corresponding to the position of the driving gear 421. One side of the actuating gear 44 has a concentric arc notch 441 and a tooth-pulling section 442 protruding from the arc notch 441 and adapted to the driving gear 421. In this embodiment, there are two tooth-pulling sections 442, which allows the spring arm 42 to spring up more times per unit time. The slingshot motor 46 is located inside the outer casing 41 and drives the actuating gear 44 to rotate through a transmission gear set 45. Specifically, the transmission gear set 45 includes a worm gear, a first transmission gear, a second transmission gear, and a third transmission gear. The worm gear is located on the drive shaft of the slingshot motor 46, and the worm gear, the first transmission gear, the second transmission gear, the third transmission gear, and the actuating gear 44 mesh sequentially.
[0026] On both sides of the body shell 12 of the vehicle body 1, there are symmetrical mounting positions 122 adapted to the magnetic armor 5. The mounting positions 122 are equipped with mounting magnets 123 or mounting iron blocks, and the magnetic armor 5 is equipped with armor iron blocks or armor magnets that are magnetically attracted to the mounting magnets 123 or mounting iron blocks. The magnetic force generated by the combination of mounting magnets 123 and armor iron blocks or armor magnets, or by the combination of mounting iron blocks and armor magnets, positions the magnetic armor 5 on both sides of the body shell 12.
[0027] During gameplay, the slingshot arm 2 can be used to knock down other similar toy cars, causing their magnetic armor 5 to fall off. Alternatively, the slingshot arm 3 can be used to insert its claw 21 into the bottom of another toy car or the magnetic armor 5, forcing the slingshot arm 3 to push the slingshot arm 42 downward. In response, the trigger part 422 on the slingshot arm 42 will trigger the switch 47, activating the slingshot motor 46. Through the transmission of the worm gear, the first transmission gear, the second transmission gear, and the third transmission gear, the pulling gear 44 will be driven to rotate. When the pulling gear 442 rotates to the position of the driving tooth 421 and engages with the driving tooth 421, the slingshot arm 3 will be driven to rotate downward, thereby compressing the torsion spring 43 to store energy. When the gear 44 is continuously rotated to a predetermined angle, the tooth-pulling section 442 separates from the drive tooth 421, that is, the arc notch 441 rotates to the position of the drive tooth 421. Since the arc notch 441 is relatively short, it does not obstruct the drive tooth 421. At this time, the elastic force of the torsion spring 43 is released instantaneously, driving the slingshot arm 3 to quickly spring upward, thereby pushing the slingshot arm 3 to make a rapid upward movement, so as to achieve the purpose of flipping over other toy cars or removing their magnetic armor 5, thereby achieving the purpose of competitive battle.
[0028] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model. As described in the above embodiments of this utility model, other toys obtained using the same or similar structures are all within the protection scope of this utility model.
Claims
1. A slingshot battle toy vehicle comprising a push shovel and a vehicle body, characterized by, It also includes a slingshot arm, a slingshot triggering device, and magnetic armor. The pusher is located at the rear end of the vehicle body, the rear end of the slingshot arm is hinged to the rear of the vehicle body, and the front end of the slingshot arm extends to the front end of the vehicle body to form a pry bar. The slingshot triggering device is located on the vehicle body at the lower front position of the slingshot arm and can push the slingshot arm to spring upwards quickly. The magnetic armor is magnetically attached to the outer wall of the vehicle body.
2. The slingshot battle toy vehicle according to claim 1, characterized in that, The slingshot triggering device includes a housing, a slingshot arm, a torsion spring, a pulling gear, a transmission gear set, a slingshot motor, and a touch switch. One end of the slingshot arm is mounted on the housing via a rotating shaft and has a driving tooth. The other end extends obliquely upward and abuts against the bottom surface of the slingshot arm, and has a trigger part at its end. The touch switch is mounted on the vehicle body below the trigger part. The circular spring portion of the torsion spring is sleeved on the rotating shaft, with one end abutting against the housing and the other end abutting against the slingshot arm. The pulling gear is mounted inside the housing corresponding to the position of the driving tooth. One side of the pulling gear has an arc notch with the center and a tooth-pulling section protruding from the arc notch and adapted to the driving tooth. The slingshot motor is mounted inside the housing and drives the pulling gear to rotate via the transmission gear set.
3. The slingshot battle toy vehicle according to claim 2, wherein The transmission gear set includes a worm gear, a first transmission gear, a second transmission gear, and a third transmission gear. The worm gear is mounted on the drive shaft of the slingshot motor, and the worm gear, the first transmission gear, the second transmission gear, the third transmission gear, and the pulling gear mesh with each other in sequence.
4. The slingshot battle toy vehicle of claim 1, wherein, The front end of the pry bar is tilted downwards.
5. The slingshot battle toy vehicle of claim 1, wherein, The vehicle body has symmetrical mounting positions on both sides that are adapted to the magnetic armor. The mounting positions are equipped with mounting magnets or mounting iron blocks, and the magnetic armor is equipped with armor iron blocks or armor magnets that are magnetically attracted to the mounting magnets or mounting iron blocks.
6. The slingshot battle toy vehicle according to any one of claims 1 to 5, characterized in that, The vehicle body includes a chassis, a body shell, front wheels, rear wheels, a drive unit, a battery, and a remote control circuit board. The two front wheels are rotatably mounted at the front of the chassis, and the two drive units are arranged side by side at the rear of the chassis. The two rear wheels are respectively mounted on the output shafts of their corresponding drive units. The battery and the remote control circuit board are located on the chassis, and the remote control circuit board is connected to the battery and the drive unit respectively. The body shell covers the chassis.
7. The slingshot battle toy vehicle of claim 6, wherein, The drive device includes a drive motor, a power gear, a first reduction gear, a second reduction gear, a third reduction gear, and an output shaft. The power gear is mounted on the drive shaft of the drive motor. The power gear, the first reduction gear, the second reduction gear, and the third reduction gear mesh sequentially. One end of the output shaft is fixedly connected to the third reduction gear, and the other end is fixedly connected to the rear wheel.
8. The slingshot battle toy vehicle according to any one of claims 1 to 5, characterized in that, The pusher is magnetically attached to the rear end of the vehicle body.
9. The slingshot-type combat toy car according to any one of claims 1-5, characterized in that, The pusher is mounted at the rear end of the vehicle body via a plug-in structure.