Interesting spinning top toy
By designing gyro toys with fixed shells, movable arms, release pressure rods and clutch drive teeth sets, the problems of easy breakage and high operation difficulty are solved, and gyro toys with easy operation and long life are realized, which improves the fun.
Patent Information
- Application Number
- CN202422436698.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-09
AI Technical Summary
Existing gyro toys are prone to break when used for a long time, and are difficult to operate and require both hands to cooperate, so it is impossible to achieve continuous acceleration and rotation.
A driving body including a fixed shell, a movable arm, a release pressure rod, a re-arm spring and a clutch driving tooth set is designed to achieve power transmission, acceleration and release through one-hand operation, and the clutch driving tooth set and a return spring are used to achieve continuous rotation of the gyro body.
It realizes the gyro toys that are easy to operate, have a long life and are very interesting. One-hand operation can achieve continuous acceleration rotation and release of the gyro, reducing the difficulty of operation.
Smart Images

Figure CN223275875U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, in particular to an interesting spinning top toy. Background Art
[0002] A gyro toy usually includes a driving body and a gyro body. After the gyro body is installed on the driving body, the driving body drives the gyro body to rotate. When the gyro body rotates to a desired speed, the gyro body is released, thereby achieving the purpose of playing with the gyro.
[0003] For example, patent publication number CN218129924U, entitled "A Spinning Top Toy," discloses a gyroscope launcher and toy, comprising a launcher body and a rotational drive assembly for transmission connection with a rack. The rotational drive assembly is disposed within the launcher body, and the launcher body has an inlet and an outlet communicating with the interior of the launcher body. The rack is inserted into the launcher body through the inlet, transmission-connected to the rotational drive assembly, and exits through the outlet. While the gyroscope toy can be rotated by pulling the rack, repeated pulling of the rack does not accelerate the rotation of the gyroscope toy.
[0004] To address the above-mentioned issues, a utility model patent, such as publication number CN219272138U and titled "A Spinning Top Toy," discloses a spinning top toy comprising a launcher and a spinning top. The launcher comprises a housing, a drive mechanism, a clutch mechanism, and a driven mechanism. The drive mechanism comprises a drive gear, a pull cord, and a reset spring. A connection portion is provided above the drive gear, connected to the pull cord. The reset spring is disposed within the drive gear, with one end fixed to the drive gear and the other end fixed to the housing. Pulling the pull cord rotates the drive gear, causing the reset spring to contract. Release of the pull cord releases energy, driving the drive gear to rotate in the opposite direction, automatically winding the pull cord. While the spinning top can be continuously driven and accelerated by repeated pulling and releasing of the pull cord, the pull cord can break easily with long-term use. During the automatic rewinding process, the pull cord can also become stuck due to improper winding. Furthermore, the device requires two hands to operate, making it difficult to operate. Utility Model Content
[0005] In view of the above-mentioned shortcomings, the purpose of the present invention is to provide an interesting spinning top toy with reasonable structural design, easy operation and long service life.
[0006] In order to achieve the above purpose, the technical solution provided by the present utility model is:
[0007] The toy is provided with a driving body and a gyroscope body, wherein the driving body comprises a fixed shell, a movable arm, a release pressure rod, a return arm position spring, a return rod position spring and a clutch drive gear group, wherein the clutch drive gear group is located in the fixed shell, one end of the movable arm is hinged on the fixed shell and is connected to the power input end of the clutch drive gear group, the return arm position spring is located in the fixed shell and can push the movable arm to automatically return to its original position after swinging; the fixed shell is provided with a docking hole corresponding to the power output end of the clutch drive gear group, one end of the release pressure rod is exposed from the fixed shell to form a pressing portion, and the other end extends to the rear position of the docking hole and is provided with a clamping hole, the return rod position spring is located in the fixed shell and can push the release pressure rod to automatically return to its original position after being pressed, and the gyroscope body is provided with a docking head that can be inserted into the docking hole and connected to the power output end, and the docking head is provided with a clamping groove that is compatible with the clamping hole.
[0008] As a preferred solution of the present utility model, the clutch drive gear group includes a gear housing, a floating gear, a transmission gear, an output gear, a sliding shaft and an output shaft. The output gear is arranged in the gear housing through the output shaft. One end of the output shaft extends out of the gear housing and is provided with a docking sleeve to form the power output end. The transmission gear is located in the gear housing and is meshed with the output gear. The gear housing is provided with an arc-shaped groove on one side corresponding to the transmission gear. The floating gear is movably arranged on the arc-shaped groove through the sliding shaft to form the power input end, and the sliding shaft can engage or disengage with the transmission gear when sliding in the arc-shaped groove.
[0009] As a preferred solution of the present invention, a sector gear meshing with the floating gear is provided on one end of the movable arm, which has a good matching effect.
[0010] As a preferred solution of the present invention, the cross section of the sleeve hole of the docking sleeve is a regular hexagon, which has a good socketing effect.
[0011] As a preferred solution of the present invention, a guide slide column is provided on the release lever, and a guide slide hole adapted to the guide slide column is provided in the fixed shell, to ensure that the release lever can move stably and smoothly during pressing and resetting.
[0012] As a preferred solution of the present invention, the hole width at one end of the clamping hole is larger than the outer dimensions of the docking joint, and the hole width at the other end is smaller than the outer dimensions of the docking joint and is adapted to the clamping groove.
[0013] As a preferred solution of the present invention, the arm restoring spring is a tension spring, one end of which is buckled on the movable arm, and the other end is buckled on the fixed shell, ensuring that the movable arm can automatically reset after swinging.
[0014] As a preferred solution of the present invention, the reset rod spring is a cylindrical spring, one end of the cylindrical spring abuts against the release rod, and the other end abuts against the fixed housing or the gear housing, ensuring that the release rod can be quickly and stably reset after being pressed.
[0015] As a preferred solution of the present invention, a fixed arm symmetrical to the movable arm is provided on the other side of the fixed shell relative to the movable arm, which is overall coordinated, beautiful in appearance, and in the shape of a doll.
[0016] The beneficial effects of the utility model are as follows: the utility model has a reasonable structural design. When the movable arm is pressed, power is transmitted to the docking head of the gyroscope through the clutch drive gear group, so that the gyroscope starts to rotate; when it is necessary to further accelerate the rotation, the movable arm is released, and the arm position spring speed pushes the movable arm to reset to facilitate the next round of pressing; by repeatedly pressing and releasing the movable arm, the gyroscope can be continuously accelerated to rotate to the required speed; then the release lever is pressed to disengage the clamping hole from the clamping groove on the docking head of the gyroscope, and the gyroscope is thus released to the required position for rotation and play. It only needs to be operated with one hand, which effectively reduces the difficulty of operation, is simple and convenient to operate, and effectively improves the fun of the toy.
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a three-dimensional structural diagram of the utility model.
[0019] Figure 2 It is a schematic diagram of the exploded structure of the present utility model.
[0020] Figure 3 This is a schematic diagram of the decomposition structure of the driving body in the utility model Figure 1
[0021] Figure 4 This is a schematic diagram of the decomposition structure of the driving body in the utility model Figure 2 .
[0022] Figure 5 It is a schematic diagram of the internal structure of the driving body in the utility model.
[0023] Figure 6 It is a schematic diagram of the exploded structure of the clutch drive gear set in the utility model. DETAILED DESCRIPTION
[0024] See also Figures 1 to 6 The present embodiment provides an interesting gyroscope toy, which includes a driving body and a gyroscope body 1. The driving body includes a fixed shell 2, a movable arm 3, a release pressure rod 4, a return arm position spring 5, a return rod position spring 6 and a clutch drive gear set 7.
[0025] The clutch drive gear group 7 is located in the fixed shell 2, one end of the movable arm 3 is hinged on the fixed shell 2 and is connected to the power input end of the clutch drive gear group 7, the return arm position spring 5 is located in the fixed shell 2, and can push the movable arm 3 to automatically reset after swinging; the return arm position spring 5 is preferably a tension spring, one end of the tension spring is snapped onto the movable arm 3, and the other end is snapped onto the fixed shell 2, ensuring that the movable arm 3 can automatically reset after swinging.
[0026] The fixed shell 2 is provided with a docking hole 21 at the power output end corresponding to the clutch drive gear set 7. One end of the release rod 4 is exposed from the fixed shell 2 to form a pressing portion 41, and the other end extends to the rear position of the docking hole 21 and is provided with a clamping hole 42. The reset rod position spring 6 is located in the fixed shell 2 and can push the release rod 4 to automatically reset after being pressed. The reset rod position spring 6 is preferably a cylindrical spring, one end of the cylindrical spring abuts on the release rod 4, and the other end abuts on the fixed shell 2 or the gear housing, ensuring that the release rod 4 can be quickly and stably reset after being pressed. At the same time, in order to ensure that the release rod 4 can move stably and smoothly during the pressing and resetting process, a guide slide 43 is provided on the release rod 4, and a guide slide hole adapted to the guide slide 43 is provided in the fixed shell 2.
[0027] The gyroscope body 1 is provided with a docking joint 11 that can be inserted into the docking hole 21 and connected to the power output end. The docking joint 11 is provided with a clamping groove 12 that is compatible with the clamping hole 42. Specifically, the upper end hole width of the clamping hole 42 is larger than the outer dimensions of the docking joint 11, and the lower end hole width is smaller than the outer dimensions of the docking joint 11 and is compatible with the clamping groove 12. When the release lever 4 is pressed, the lower end of the clamping hole 42 moves downward and then separates from the clamping groove 12, so that the upper end of the clamping hole 42 is aligned with the docking joint 11. Since the upper end hole width of the clamping hole 42 is larger than the outer dimensions of the docking joint 11, at this time, the docking joint 11 can be withdrawn from the docking hole 21 to achieve the purpose of releasing the gyroscope body 1.
[0028] For details, see Figure 5 and Figure 6The clutch drive gear set 7 includes a gear housing 71, a floating gear 72, a transmission gear 73, an output gear 74, a sliding shaft 75, and an output shaft 76. The output gear 74 is disposed within the gear housing 71 via the output shaft 76. One end of the output shaft 76 extends out of the gear housing 71 and is provided with a docking sleeve 77 to form the power output end. Preferably, the cross-section of the sleeve hole of the docking sleeve 77 is a regular hexagon, which provides a good socketing effect. The cross-sectional shape of the docking joint 11 is also a regular hexagon. In other embodiments, the cross-sectional shape of the sleeve hole of the docking sleeve 77 can also be other non-circular closed shapes, and the cross-sectional shape of the docking joint 11 can correspond thereto.
[0029] The transmission gear 73 is located in the gear housing 71 and meshes with the output gear 74. The gear housing 71 is provided with an arcuate slot 711 on one side corresponding to the transmission gear 73. The floating gear 72 is movably arranged on the arcuate slot 711 via a sliding shaft 75 to form the power input end. Preferably, a sector gear 31 meshing with the floating gear 72 is provided on one end of the movable arm 3 to achieve a good coordination effect. When the sliding shaft 75 slides in the arcuate slot 711, the floating gear 72 can move toward or away from the transmission gear 73, thereby meshing with or separating from the transmission gear 73 accordingly.
[0030] For overall coordination, a fixed arm 8 symmetrical to the movable arm 3 can be provided on the other side of the fixed shell 2 relative to the movable arm 3 , with a beautiful appearance and a doll-like shape as a whole.
[0031] When playing, press the movable arm 3 to transmit power to the docking head 11 of the gyro body 1 through the clutch drive gear set 7, so that the gyro body 1 starts to rotate; release the movable arm 3, and the arm position spring 5 quickly pushes the movable arm 3 to reset; by repeatedly pressing and releasing the movable arm 3, the gyro body 1 is continuously accelerated to rotate to the required speed; at this time, the release pressure rod 4 can be pressed to force the lower end of the clamping hole 42 to move downward and then separate from the clamping groove 12, so that the upper end of the clamping hole 42 is aligned with the docking head 11. Since the upper end hole width of the clamping hole 42 is larger than the outer size of the docking head 11, the docking head 11 can be withdrawn from the docking hole 21 to achieve the purpose of releasing the gyro body 1. The gyro body 1 is therefore released to the desired position for rotation and play. It only needs to be operated with one hand, and the operation difficulty is low.
[0032] Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and modifications and variations of the present invention should also fall within the scope of protection of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are for convenience of description only and do not constitute any limitation to the present invention. Other toys that are the same or similar to the above toys are also within the scope of protection of the present invention.
Claims
1. A fun gyro toy, comprising a driving body and a gyro body, characterized in that: The driving body includes a fixed shell, a movable arm, a release pressure rod, a return arm position spring, a return arm position spring and a clutch drive gear group. The clutch drive gear group is located in the fixed shell, and one end of the movable arm is hinged on the fixed shell and connected to the power input end of the clutch drive gear group. The return arm position spring is located in the fixed shell and can push the movable arm to automatically reset after swinging; the fixed shell is provided with a docking hole corresponding to the power output end of the clutch drive gear group, one end of the release pressure rod is exposed from the fixed shell to form a pressing part, and the other end extends to the rear position of the docking hole and is provided with a clamping hole, the return rod position spring is located in the fixed shell and can push the release pressure rod to automatically reset after pressing, and the gyroscope body is provided with a docking head that can be inserted into the docking hole and connected to the power output end, and the docking head is provided with a clamping groove adapted to the clamping hole.
2. The interesting spinning top toy according to claim 1, characterized in that: The clutch drive gear group includes a gear housing, a floating gear, a transmission gear, an output gear, a sliding shaft and an output shaft. The output gear is arranged in the gear housing through the output shaft. One end of the output shaft extends out of the gear housing and is provided with a docking sleeve to form the power output end. The transmission gear is located in the gear housing and is meshed with the output gear. An arc-shaped groove is provided on one side of the gear housing corresponding to the transmission gear. The floating gear is movably arranged on the arc-shaped groove through the sliding shaft to form the power input end, and the sliding shaft can mesh or disengage with the transmission gear when sliding in the arc-shaped groove.
3. The interesting spinning top toy according to claim 2, characterized in that: One end of the movable arm is provided with a sector gear meshing with the floating gear.
4. The interesting spinning top toy according to claim 2, characterized in that: The cross section of the sleeve hole of the docking sleeve is a regular hexagon.
5. The interesting spinning top toy according to claim 1, characterized in that: A guide slide post is provided on the release pressure rod, and a guide slide hole adapted to the guide slide post is provided in the fixed shell.
6. The interesting spinning top toy according to claim 1, characterized in that: A guide slide post is provided on the release pressure rod, and a guide slide hole adapted to the guide slide post is provided in the fixed shell.
7. The interesting spinning top toy according to claim 1, characterized in that: The hole width at one end of the clamping hole is larger than the outer dimensions of the butt joint, and the hole width at the other end is smaller than the outer dimensions of the butt joint and is matched with the clamping groove.
8. The interesting spinning top toy according to claim 1, characterized in that: The arm-restoring position spring is a tension spring, one end of which is buckled on the movable arm, and the other end is buckled on the fixed shell.
9. The interesting spinning top toy according to claim 2, characterized in that: The reset rod position spring is a cylindrical spring, one end of which abuts against the release pressure rod, and the other end abuts against the fixed housing or the gear housing.
10. The interesting spinning top toy according to any one of claims 1 to 9, characterized in that: A fixed arm symmetrical to the movable arm is provided at the other side of the fixed shell relative to the movable arm.
Citation Information
Patent Citations
Gyro launcher and gyro toy
CN218129924U
Top toy
CN219272138U