A multi-play combination gyro toy car
By designing a multi-play combination gyro toy car, combining the toy car, robot body and gyro accelerator, the toy car is folded into a toy car shape in the initial state. When the gyro rotates, the impact of the touch switch is used to separate the toy car, exposing the robot model, solving the problem of single gameplay of the existing toy car and gyro, providing a multi-play combination and a better entertainment experience.
Patent Information
- Application Number
- CN201911270490.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-12-12
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2039-12-12
AI Technical Summary
The existing toy cars and gyros have a single gameplay, and no combination of multiple gameplays combined with the two is seen to achieve better playback effects.
A multi-play combination gyro toy car is designed, combining toy car, robot body, gyro accelerator and gyro. Through the installation and connection between the gyro accelerator and the robot body, the toy car can be folded into a toy car form in the initial state. The gyro is driven and rotated at the bottom, and the toy car is separated by impacting the touch switch, exposing the robot model, providing a multi-play combination.
It realizes the combination of multiple gameplays between toy cars and gyroscopes, enhances the play and entertainment effect, and the robot body can be removed separately as a gyroscope handle, increasing the fun and interactiveness of the toys.
Smart Images

Figure CN110882549B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a multi-playing combined gyro toy car. Background Art
[0002] Toys are important tools for children's intellectual development and entertainment. As people's living standards continue to improve, their pursuit of quality and function of toys is also getting higher and higher.
[0003] The existing toy cars and gyroscopes are both popular toy products. Among them, the toy car is a toy for children to play with, which is made by reducing the basic structure and appearance of the car to a certain proportion. The toy car is played by manually driving the car body to move in any direction, and the play method is simple. In addition, the existing gyroscope generally uses a driving rack to store energy in the gyroscope body, and then places it on a disc for rotation and collision. The play method is relatively simple.
[0004] Currently, the two toys are usually used separately for entertainment and play on the market, and there is no evidence that the two toys can be combined to achieve a better play effect. Summary of the Invention
[0005] In view of the defects of the above-mentioned prior art, the technical problem to be solved by the present invention is: to provide a way of playing that combines a gyroscope and a toy car, so as to achieve multiple play combinations and better play and entertainment effects.
[0006] A multi-play combination gyro toy car, comprising a toy body, the toy body comprising a body and wheels, a robot body, a gyro accelerator and a gyro;
[0007] The robot body is composed of a body and a connecting base that can be detachably connected to each other; the body is composed of an upper cover and a lower cover, and is formed with a cavity and a through-slot for a rack to pass through and be connected to the gyro accelerator; the gyro accelerator is disposed in the cavity, and the lower cover is provided with a through-hole communicating with the cavity, so that the connection portion between the gyro accelerator and the gyro extends through the through-hole to the outside;
[0008] The vehicle body is composed of a hood and a chassis, and a receiving cavity is formed. The chassis, the connecting seat and the hood are hinged in sequence and can rotate elastically relative to each other, so that when the hood and the chassis are covered, the robot body is relatively rotated and folded and placed in the receiving cavity; the chassis is provided with a through-hole, and the gyroscope passes through the through-hole to cooperate with the gyro accelerator transmission installation.
[0009] Furthermore, an elastic locking component is provided between the chassis and the hood; the elastic locking component includes a touch switch and a spring, and the touch switch consists of a movable block and a hook body; a movable groove is passed through one end of the hood, and the movable block is movably arranged in the movable groove, and the spring is arranged in the inner cavity of the hood, and one end thereof is abutted against the end of the movable block to enable the movable block to move toward the movable groove and extend to the outside of the hood; a slot is provided on the chassis corresponding to the hook body, so that the hook body is hooked in the slot when the chassis and the hood are closed.
[0010] Furthermore, a first torsion spring is connected to the hinge shaft between the chassis and the connecting seat, and a second torsion spring is connected to the hinge shaft between the connecting seat and the hood.
[0011] Furthermore, the gyroscope includes a face cover, a bottom cover and a gyroscope shaft arranged from top to bottom; the face cover and the bottom cover are connected and covered by screws, and a circular groove is formed on the outer wall thereof, and a circular iron sheet is embedded in the circular groove; an annular protrusion extends from the upper end surface of the face cover, and a plurality of first grooves are provided at intervals of the circumference of the upper end of the annular protrusion; the gyroscope shaft is arranged through the face cover and the bottom cover, and is arranged coaxially with the central axis of the face cover and the central axis of the bottom cover, and a gyroscope tip portion extends from its lower end.
[0012] Furthermore, the gyro accelerator includes a driving member and an acceleration gear set; the acceleration gear set includes a first gear and a second gear that are meshed with each other and rotatably installed in the cavity through a rotating shaft, and the diameter of the first gear is larger than the diameter of the second gear; the lower end of the driving member is provided with a protrusion that is corresponding to the first groove through a through hole, and a special-shaped block is provided on one side of the second gear. The upper end of the driving member is provided with a second groove that is engaged with the special-shaped block, and a first magnet is embedded in the second groove. The face cover or the gyro shaft is a metal material for the first magnet to be magnetically attracted.
[0013] Furthermore, a second magnet is embedded in the inner wall of the end of the hood close to the touch switch.
[0014] Preferably, the outer end surface of the vehicle cover close to the movable block is a concave arc surface.
[0015] Furthermore, the vehicle body is penetrated by a through hole corresponding to the through groove.
[0016] Preferably, the upper portion of the toy vehicle body is detachably connected to a decorative top.
[0017] In summary, the present invention has the following beneficial effects compared to the prior art:
[0018] The present invention has a simple structure, and combines a toy car, a robot body, a gyro accelerator and a gyro, wherein the gyro accelerator is installed and connected to the robot body; in an initial state, the robot body is accommodated in the accommodating cavity of the toy car by folding and deforming, so that its appearance becomes a toy car for moving and playing; at the same time, the gyro is installed at the bottom of the toy car, forming a driving connection between the gyro accelerator with an appearance of a toy car model and the gyro, and pulling a driving rack provided on the toy car to drive the gyro to rotate; and when the gyro rotates, the toy car can be pushed to move in the direction of the gyro, so that the touch switch on the toy car is pressed and moved by the collision with the gyro, so that the connection between the chassis and the car cover on the toy car is loosened, and through the action of the torsion spring, the chassis, the robot body and the car cover rotate and bounce open, revealing the robot body model, achieving multiple play combinations and better play and entertainment effects; and the body of the robot body can be removed separately to serve as a gyro handle, which is connected to the drive of the gyro. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A schematic diagram of the three-dimensional structure of a multi-play combination gyro toy car in a folded state according to an embodiment of the present invention;
[0020] Figure 2 A schematic cross-sectional view of a folded state of a multi-play combination gyro toy car according to an embodiment of the present invention;
[0021] Figure 3 In one embodiment of the present invention Figure 2 A magnified schematic diagram of point A;
[0022] Figure 4 This is a schematic diagram of the three-dimensional structure of a multi-play combination gyro toy car in an expanded state according to one embodiment of the present invention;
[0023] Figure 5 A schematic cross-sectional view of a multi-play combination gyro toy car in an expanded state according to an embodiment of the present invention;
[0024] Figure 6 This is a schematic diagram of the three-dimensional structure of the robot body in one embodiment of the present invention;
[0025] Figure 7 This is a schematic diagram of the explosion structure of the robot body in one embodiment of the present invention;
[0026] Figure 8 FIG. 1 is a cross-sectional schematic diagram of a gyroscope according to an embodiment of the present invention. DETAILED DESCRIPTION
[0027] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0028] like Figures 1 to 8As shown, the embodiment of the present invention preferably provides a multi-play combination gyro toy car, including a toy body 1, the toy body 1 including a body and wheels 11, and also including a robot body 2, a gyro accelerator 4 and a gyro 3;
[0029] The robot body 2 comprises a body and a connection base 26 that are detachably connected to each other. The body is formed by an upper cover 21 and a lower cover 22, and is provided with a cavity 23 and a slot 27 for a rack to pass through for transmission connection with the gyro accelerator 4. The gyro accelerator 4 is disposed within the cavity 23. The lower cover 22 is provided with a through hole 25 that communicates with the cavity 23, so that the connection portion between the gyro accelerator 4 and the gyro 3 extends through the through hole 25 to the outside.
[0030] The vehicle body is composed of a hood 12 and a chassis 13, and a receiving cavity 14 is formed. The chassis 13, the connecting seat 26 and the hood 12 are hinged in sequence and can rotate elastically relative to each other, so that when the hood 12 and the chassis 13 are covered, the robot body 2 is relatively rotated and folded and placed in the receiving cavity 14; a through hole 15 is provided on the chassis 13, and the gyroscope 3 passes through the through hole 15 and is transmission-mounted with the gyro accelerator 4. By combining the toy car body 1, the robot body 2, the gyro accelerator 4 and the gyro 3, the gyro accelerator 4 is installed and connected to the robot body 2; in the initial state, the robot body 2 is accommodated in the accommodating cavity 14 of the toy car body 1 by folding and deforming, so that its appearance becomes a toy car body 1 for moving and playing; at the same time, the gyro 3 is installed at the bottom of the toy car body 1, forming a drive connection between the gyro accelerator 4 with the appearance of a toy car model and the gyro 3, pulling the drive rack provided on the toy car body 1 to drive the gyro 3 to rotate, achieving a multi-play combination; and the robot body 2 is composed of a body and a connecting seat 26 that are mutually snap-connected, and the robot body installed and connected to the gyro accelerator 4 can be removed separately to serve as a gyro handle, which is connected to the drive of the gyro 3.
[0031] An elastic locking member is provided between the chassis 13 and the hood 12; the elastic locking member includes a touch switch 31 and a spring 32, and the touch switch 31 is composed of a movable block 33 and a hook body 34; a movable groove 35 is passed through one end of the hood 12, and the movable block 33 is movably arranged in the movable groove 35. The spring 32 is arranged in the inner cavity of the hood 12, and one end thereof abuts against the end of the movable block 33 to move the movable block 33 toward the movable groove 35 and extend to the outside of the hood 12; a slot 36 is provided on the chassis 13 corresponding to the hook body 34, so that the hook body 34 is hooked in the slot 36 when the chassis 13 and the hood 12 are closed.
[0032] A first torsion spring 61 is connected to the hinge axis between the chassis 13 and the connecting seat 26, and a second torsion spring 62 is connected to the hinge axis between the robot body 2 and the hood 12. When the gyro 3 is rotating or stationary, the toy car body 1 can be pushed toward the gyro 3, causing the contact switch 31 on the toy car body 1 to move due to the impact and pressure of the gyro 3. This releases the connection between the chassis 13 and the hood 12 on the toy car body 1. The torsion spring then rotates and springs open the chassis 13, the robot body 2, and the hood 12, revealing the robot body model. This allows for multiple play options and enhanced entertainment.
[0033] The gyroscope 3 includes a top cover 41, a bottom cover 42 and a gyroscope shaft 43 arranged from top to bottom; the top cover 41 and the bottom cover 42 are connected and covered by screws, and a circular groove 50 is formed on the outer wall thereof, and a circular iron sheet 45 is embedded in the circular groove 50. An annular protrusion 44 extends from the upper end surface of the top cover 41, and a plurality of first grooves 92 are spaced apart at intervals around the upper end of the annular protrusion 44; the gyroscope shaft 43 is provided through the top cover 41 and the bottom cover 42, and is coaxial with the central axis of the top cover 41 and the central axis of the bottom cover 42, and a gyroscope tip portion 48 extends from its lower end.
[0034] The gyro accelerator 4 includes a driving member 54 and an acceleration gear set; the acceleration gear set includes a first gear 51 and a second gear 52 that are meshed with each other and rotatably mounted in the cavity 23 through a rotating shaft, and the diameter of the first gear 51 is larger than the diameter of the second gear 52; the lower end of the driving member 54 is provided with a protrusion 57 that is corresponding to the first groove 92 through the through hole 25, and a special-shaped block 55 is provided on one side of the second gear 52. The upper end of the driving member 54 is provided with a second groove 57 that is engaged with the special-shaped block 55, and a first magnet 56 is embedded in the second groove 57. The cover 41 or the gyro shaft 4 3 is a metal material for magnetic attraction of the first magnet 56, which realizes the connection and installation between the gyro 3 and the driving member 54 on the gyro accelerator 4. By pulling the driving rack, the first gear 51 rotates, thereby driving the second gear 52 to rotate. The first gear 51 and the second gear 52 are engaged with each other at different transmission ratios to realize the accelerated driving rotation of the driving member 54. The protrusion 57 at the lower end of the driving member 54 is engaged with the first groove 92 on the annular protrusion 44, thereby driving the gyro 3 to accelerate rotation. At the same time as the accelerated rotation, the gyro 3 is separated from the first magnet by centrifugal force, and the gyro 3 is thrown out to rotate.
[0035] The inner wall of the end of the car cover 12 located near the touch switch 31 is embedded with a second magnet 49. When the toy car body 1 is pushed to move toward the gyroscope 3, the second magnet 49 is attracted by the magnetic force of the circular iron sheet 45 on the gyroscope 3, so that the toy car body 1 is affected by the magnetic force, and the end of the toy car body 1 located near the touch switch 31 accurately collides with and presses against the gyroscope 3 to move.
[0036] The outer end surface of the hood 12 near the movable block 33 is a concave arc surface. When the end of the toy car body 1 collides with the gyroscope 3, the gyroscope 3 is embedded in the concave arc surface, increasing the contact area between the gyroscope 3 and the end of the toy car body 1, thereby ensuring that when the gyroscope 3 collides with the toy car body 1, it drives the movable block 33 to be pressed.
[0037] The body has a through hole corresponding to the through slot 27, so that when the robot body 2 is folded and deformed to be accommodated in the accommodating cavity 14 of the toy body 1, its appearance becomes a toy body 1 for moving and playing, and the rack connected to the gyro accelerator 4 is directly extended from the outside for driving.
[0038] The upper part of the toy car body 1 is detachably connected to a decorative spinning top base 91 , which serves as a decoration. The decorative spinning top base 91 can be removed and replaced with the bottom of the spinning top 3 to raise the top tip and increase the competitiveness of the spinning top 3 .
[0039] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-play combination gyro toy car, comprising a toy body, the toy body comprising a body and wheels, characterized in that: It also includes a robot body, a gyro accelerator and a gyroscope; The robot body is composed of a body and a connecting base that can be detachably connected to each other; the body is composed of an upper cover and a lower cover, and is formed with a cavity and a through-slot for a rack to pass through and be connected to the gyro accelerator; the gyro accelerator is disposed in the cavity, and the lower cover is provided with a through-hole communicating with the cavity, so that the connection portion between the gyro accelerator and the gyro extends through the through-hole to the outside; The vehicle body is composed of a hood and a chassis, and a receiving cavity is formed. The chassis, the connecting seat and the hood are hinged in sequence and can rotate elastically relative to each other, so that when the hood and the chassis are closed, the robot body rotates and folds relative to each other and is placed in the receiving cavity. The chassis is provided with a through-hole, and the gyroscope passes through the through-hole and is installed in conjunction with the gyro accelerator. An elastic locking component is provided between the chassis and the hood; the elastic locking component includes a touch switch and a spring, and the touch switch consists of a movable block and a hook body; a movable groove is passed through one end of the hood, and the movable block is movably arranged in the movable groove, and the spring is arranged in the inner cavity of the hood, and one end thereof abuts against the end of the movable block to enable the movable block to move toward the movable groove and extend to the outside of the hood; a slot is provided on the chassis corresponding to the hook body, so that the hook body is hooked in the slot when the chassis and the hood are closed.
2. A multi-play combination gyro toy car according to claim 1, characterized in that: A first torsion spring is connected to the hinge shaft between the chassis and the connecting seat, and a second torsion spring is connected to the hinge shaft between the connecting seat and the hood.
3. The multi-play combination gyro toy car according to claim 1, characterized in that: The gyroscope includes a face cover, a bottom cover and a gyroscope shaft arranged from top to bottom; the face cover and the bottom cover are connected and covered by screws, and a circular groove is formed on the outer wall thereof, and a circular iron sheet is embedded in the circular groove; an annular protrusion extends from the upper end surface of the face cover, and a plurality of first grooves are provided at intervals around the upper end of the annular protrusion; the gyroscope shaft is provided through the face cover and the bottom cover, and is coaxial with the central axis of the face cover and the central axis of the bottom cover, and a gyroscope tip portion extends from the lower end thereof.
4. The multi-play combination gyro toy car according to claim 3, characterized in that: The gyro accelerator includes a driving member and an acceleration gear set; the acceleration gear set includes a first gear and a second gear that are meshed with each other and rotatably installed in a cavity through a rotating shaft, and the diameter of the first gear is larger than the diameter of the second gear; the lower end of the driving member is provided with a protrusion that is corresponding to the first groove through a through hole, and a special-shaped block is provided on one side of the second gear. The upper end of the driving member is provided with a second groove that is engaged with the special-shaped block, and a first magnet is embedded in the second groove. The surface cover or the gyro shaft is a metal material for the first magnet to be magnetically attracted.
5. The multi-play combination gyro toy car according to claim 1, characterized in that: The inner wall of the vehicle cover at one end close to the touch switch is inlaid with a second magnet.
6. The multi-play combination gyro toy car according to claim 1, characterized in that: The outer end surface of the vehicle cover close to the movable block is an inwardly concave arc surface.
7. The multi-play combination gyro toy car according to claim 1, characterized in that: The vehicle body has a through hole passing through the corresponding through groove.
8. The multi-play combination gyro toy car according to claim 1, characterized in that: The upper part of the toy car body is detachably connected with a decorative toe bottom.
Citation Information
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