Gyroscope toy gun
The sliding member drives the wave box to drive the gyro rotation, which solves the problem of easy wear and disconnection of the draw rope in the prior art, and achieves a longer service life and more stable operation of the gyro toy gun.
Patent Information
- Application Number
- CN202520820815.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2035-04-28
AI Technical Summary
Existing gyro toy guns rely on flexible pull ropes for power, which makes the pull rope easy to wear and break, shorten the service life, and the pull rope easy to wrap and affect normal use.
The sliding member is used to drive the wave box to drive the gyro rotation, and the gyro rotation and disengagement are achieved through elastic components and the clamping mechanism, avoiding the use of the pull rope.
It improves the service life of the toy gun, reduces the probability of failure caused by winding, smoother operation, and more stable and durable structure.
Smart Images

Figure CN222955913U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, and particularly relates to a gyro toy gun. Background Art
[0002] The existing gyro toy gun in the prior art includes a rotating member, a gun shell, a trigger, an ejection mechanism and a wire pulling gearbox. The rotating member is usually a gyro. The gun shell includes a gun body and a gun handle, and a wire pulling hole is provided at one end of the gun body connecting the gun handle. The wire pulling gearbox has a gearbox part, a wire rope and a pull ring. The gearbox part is arranged in the gun body, the pull ring is located outside the gun shell, and one end of the wire rope passes through the wire pulling hole and is connected to the pull ring. The wire pulling gearbox can be in transmission cooperation with the rotating member to drive the rotating member to rotate and store energy. The trigger can trigger the ejection mechanism to eject the rotating member with stored energy out of the gun shell. When playing with this gyro toy gun, only need to pull the pull ring by hand, draw out the wire rope, so as to drive the rotating member to rotate at a high speed and store energy. Pulling the trigger can trigger the ejection mechanism to eject the rotating member with stored energy out of the gun shell. Although this gyro toy gun has a simple structure and is convenient to operate, it relies on the wire rope to provide power. The wire rope is made of flexible material, and during the frequent pulling process, it bears a large tensile force and frictional force. Such continuous external force is likely to cause the wire rope to be worn, broken, etc. Once the wire rope is damaged, it cannot provide power normally, greatly shortening the service life of the toy gun. Moreover, during the pulling and retracting process of the wire rope, it is extremely easy to get entangled, which will not only affect the normal use of the toy gun, but also may cause damage to internal parts.
[0003] In view of this, the present utility model is specifically proposed. Content of the Utility Model
[0004] The utility model provides a gyro toy gun.
[0005] The present application provides the following technical solutions:
[0006] A gyro toy gun, comprising:
[0007] A gun shell;
[0008] A launch rack, the launch rack is slidably connected to the gun shell, and an elastic member is arranged between the launch rack and the gun shell;
[0009] A gearbox, the gearbox is arranged in the gun shell;
[0010] A clamping mechanism, the clamping mechanism is arranged in the gun shell, and the clamping mechanism is used for clamping or releasing the launch rack;
[0011] A sliding member, the sliding member is slidably connected to the gun shell, and the sliding member is in transmission connection with the gearbox;
[0012] The top can be installed on the launcher. The launcher can move towards the tail of the gun housing to be clamped to the clamping mechanism, so that the output gear on the gearbox meshes with the gear on the top, and the elastic member is in a compressed state;
[0013] The sliding member can slide along the gun housing to drive the gearbox to drive the top to rotate;
[0014] The clamping mechanism can release the launcher, and the elastic member resumes deformation, pushing the launcher to move towards the head of the gun housing, so that the top is separated from the gun housing;
[0015] Among them, the top toy gun further includes a transmission member. The gearbox has an input gear. One end of the transmission member is connected to the sliding member, and the other end of the transmission member is in transmission connection with the input gear. When the sliding member slides along the gun housing, it can drive the input gear to rotate through the transmission member, and the input gear drives the output gear to rotate;
[0016] The gearbox has a housing. The middle of the input gear is rotatably connected to the housing. An eccentric column is provided on one side of the input gear close to the edge. The transmission member is in transmission connection with the eccentric column, and the transmission member drives the eccentric column to move to drive the input gear to rotate.
[0017] Optionally, the gearbox has an intermediate gear;
[0018] The intermediate gear is located between the input gear and the output gear;
[0019] The housing has a sliding groove, and the rotating shaft of the intermediate gear is slidably connected to the sliding groove;
[0020] Both ends of the transmission member are provided with connecting cylinders. The eccentric column is rotatably inserted into one of the connecting cylinders, and the other connecting cylinder is rotatably connected to the sliding member;
[0021] In the state where the sliding member slides in the first direction, the input gear rotates forward and meshes with the intermediate gear, and the intermediate gear drives the output gear to rotate;
[0022] In the state where the sliding member slides in the second direction, the input gear rotates in the reverse direction, and the intermediate gear slides along the sliding groove to the side away from the input gear.
[0023] Optionally, the input gear has a gear body, and the eccentric column is vertically connected to the gear body.
[0024] Optionally, the housing of the gearbox has a cavity and a telescopic port communicating with the cavity;
[0025] The input gear, the output gear, and the intermediate gear are all at least partially located within the cavity;
[0026] The transmission member extends into the cavity through the telescopic opening.
[0027] Optionally, avoidance openings are respectively provided on both sides of the housing of the gearbox;
[0028] Two of the avoidance openings are respectively protruded from both sides of the input gear.
[0029] Optionally, the gun housing is provided with a protruding avoidance convex shell corresponding to the input gear.
[0030] Optionally, the launcher includes a bracket body and clamping blocks;
[0031] The bracket body is slidably connected to the gun housing, and two support arms are provided at the end of the bracket body;
[0032] The two clamping blocks are respectively hinged to the corresponding support arms;
[0033] A pushing inclined surface is provided on the inner wall of the gun housing;
[0034] During the process that the launcher can move towards the tail of the gun housing, the pushing inclined surface pushes the clamping blocks so that the two clamping blocks approach each other to clamp the top.
[0035] Optionally, the top toy gun includes a trigger, the trigger is movably arranged on the gun housing, and the trigger is in transmission cooperation with the clamping mechanism;
[0036] The movement of the trigger can trigger the clamping mechanism to release the launcher.
[0037] By adopting the above technical solutions, the present application has the following beneficial effects:
[0038] The top toy gun of the present application can drive the top to rotate by sliding the sliding member, avoiding the problems of easy wear and disconnection of the flexible pull rope. Its operation is smoother, and the failure probability caused by winding is also reduced. The frequency of maintenance and component replacement is reduced, and its structure is more stable and durable, greatly extending the service life of the toy gun. Description of the Drawings
[0039] The drawings, as a part of the present application, are used to provide a further understanding of the present invention. The schematic embodiments and descriptions thereof of the present invention are used to explain the present invention, but do not constitute an improper limitation to the present invention. Obviously, the drawings in the following description are only some embodiments, and those of ordinary skill in the art can obtain other drawings based on these drawings without creative efforts.
[0040] Figure 1 Schematic diagram of the external structure of the gyro toy gun provided by the embodiment of the present utility model;
[0041] Figure 2 Top view of the gyro toy gun provided by the embodiment of the present utility model with the gyro removed;
[0042] Figure 3 Schematic diagram of the internal structure of the gyro toy gun provided by the embodiment of the present utility model;
[0043] Figure 4 Schematic diagram of the internal structure of the gyro toy gun provided by the embodiment of the present utility model with part of the gearbox housing removed;
[0044] Figure 5 Schematic diagram of the gearbox structure of the gyro toy gun provided by the embodiment of the present utility model;
[0045] Figure 6 Schematic diagram of the gearbox of the gyro toy gun provided by the embodiment of the present utility model with part of the housing structure removed;
[0046] Figure 7 Schematic diagram of the gearbox of the gyro toy gun provided by the embodiment of the present utility model with part of the housing and the intermediate gear removed;
[0047] Figure 8 Schematic diagram of the gyro of the gyro toy gun provided by the embodiment of the present utility model.
[0048] In the figure: gun shell 1, avoiding convex shell 11, pushing inclined surface 12, through groove 13, launching rack 2, bracket body 21, support arm 211, clamping block 22, clamping and matching part 23, gearbox 3, housing 31, sliding groove 311, avoiding opening 312, telescopic opening 313, input gear 32, eccentric column 321, gear body 322, intermediate gear 33, output gear 34, clamping mechanism 4, clamping protrusion 41, sliding part 5, elastic part 6, transmission part 7, connecting cylinder 71, trigger 8, first spring 9, second spring 10, gyro 20, matching gear 201. Detailed implementation manners
[0049] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. The following embodiments are used to illustrate the present utility model but not to limit the scope of the present utility model.
[0050] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by terms such as "upper", "lower", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.
[0051] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation" and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0052] See Figures 1 to 8 As shown, the embodiment of the present application provides a gyro toy gun, including: a gun housing 1, a launch rack 2, a gearbox 3, a clamping mechanism 4, and a sliding member 5. The launch rack 2 is slidably connected to the gun housing 1, and an elastic member 6 is provided between the launch rack 2 and the gun housing 1. The gearbox 3 is disposed in the gun housing 1. The clamping mechanism 4 is disposed in the gun housing 1, and the clamping mechanism 4 is used to clamp or release the launch rack 2. The sliding member 5 is slidably connected to the gun housing 1, and the sliding member 5 is in transmission connection with the gearbox 3. A gyro 20 can be installed on the launch rack 2. The launch rack 2 can move towards the tail of the gun housing 1 to be clamped by the clamping mechanism 4, so that the output gear on the gearbox 3 meshes with the gear on the gyro 20, and the elastic member 6 is in a compressed state. The sliding member 5 can slide along the gun housing 1 to drive the gearbox 3 to drive the gyro 20 to rotate. The gyro 20 is a common gyro in the field of gyro toys, and a mating gear 201 is provided on the gyro 20, and the mating gear 201 meshes with the output gear on the gearbox 3. The clamping mechanism 4 can release the launch rack 2, and the elastic member 6 restores its deformation, pushing the launch rack 2 to move towards the head of the gun housing 1, so that the gyro 20 is separated from the gun housing 1. The elastic member 6 can be a spring, one end of the elastic member 6 abuts against the inner wall of the gun housing 1, and the other end abuts against the launch rack 2. By sliding the sliding member 5 of the gyro toy gun of the present application, the gearbox 3 can drive the gyro 20 to rotate, avoiding the problems of easy wear and disconnection of the flexible pull rope. Its operation is smoother, and the probability of failure caused by winding is also reduced. The frequency of maintenance and replacement of components is reduced, and its structure is more stable and durable, greatly extending the service life of the toy gun.
[0053] As Figure 3 and Figure 4As shown, the gyro toy gun includes a transmission member 7. The gearbox 3 has an input gear 32. One end of the transmission member 7 is connected to the sliding member 5, and the other end of the transmission member 7 is in driving connection with the input gear 32. The sliding member 5 slides along the gun housing 1 and can drive the input gear 32 to rotate through the transmission member 7. The input gear 32 drives the output gear 34 to rotate. The gun housing 1 has a through groove 13 that extends along the length of the gun housing 1. The sliding member 5 can slide through the through groove 13. The sliding member 5 can slide within the through groove 13 to drive the transmission member 7 to move, transmit power to the input gear 32 of the gearbox 3, and finally drive the gyro 20 to rotate through the transmission cooperation of the gears within the gearbox 3.
[0054] In a possible implementation, as Figure 4 , Figure 6 and Figure 7 shown, the gearbox 3 has a housing 31. The middle of the input gear 32 is rotatably connected to the housing 31. An eccentric post 321 is provided on one side of the input gear 32 near the edge. The transmission member 7 is in driving connection with the eccentric post 321. The transmission member 7 drives the eccentric post 321 to move to drive the input gear 32 to rotate. The transmission member 7 can drive the eccentric post 321 to move and drive the input gear 32 to rotate a certain angle.
[0055] As Figure 4 , Figure 6 and Figure 7As shown, the gearbox 3 has an intermediate gear 33, the intermediate gear 33 is located between the input gear 32 and the output gear 34, the housing 31 of the gearbox has a sliding groove 311, and the rotating shaft of the intermediate gear 33 is slidably connected to the sliding groove 311. Both ends of the transmission member 7 are provided with connecting cylinders 71, the eccentric column 321 is rotatably inserted into one of the connecting cylinders 71, and the other connecting cylinder 71 is rotatably connected to the sliding member 5. In the state where the sliding member 5 slides in the first direction, the input gear 32 rotates forward and meshes with the intermediate gear 33, and the intermediate gear 33 drives the output gear 34 to rotate. In the state where the sliding member 5 slides in the second direction, the input gear 32 rotates in the reverse direction, and the intermediate gear 33 slides along the sliding groove 311 to the side away from the input gear 32. The first direction is the direction in which the sliding member 5 moves towards the tail end of the gun housing 1, and the second direction is the direction in which the sliding member 5 moves towards the end away from the tail of the gun housing 1. In the state where the sliding member 5 slides in the first direction, the transmission member 7 drives the input gear 32 to rotate by a certain angle, the input gear 32 drives the intermediate gear 33, and further drives the output gear 34 and the gyro 20 to rotate, providing power for the gyro 20. In the state where the sliding member 5 slides in the second direction, the transmission member 7 drives the input gear 32 to rotate in the reverse direction, pushing the intermediate gear 33 to move along the sliding groove 311, so that the intermediate gear 33 is away from the output gear 34, resulting in the power not being transmitted to the output gear 34 and the gyro 20. In this way, the unidirectional control of power transmission is realized, avoiding the reverse rotation of the gyro 20, so that the gyro 20 can only store energy and accelerate when the sliding member 5 slides in the first direction, and when the sliding member 5 slides in the second direction, the reverse power will not be transmitted to the gyro 20. In this way, during the process of repeatedly moving the sliding member 5, the gyro 20 repeatedly accelerates and stores energy. After leaving the gun housing 1, it will rotate at a higher speed and more persistently, making the playing experience better.
[0056] As Figure 6 and Figure 7 shown, the input gear 32 has a gear body 322, and the eccentric column 321 is vertically connected to the gear body 322. The eccentric column 321 is located on one side of the gear body 322 in the thickness direction.
[0057] As Figure 5 shown, the housing 31 of the gearbox 3 has a cavity and a telescopic port 313 communicating with the cavity. The input gear 32, the output gear 34 and the intermediate gear 33 are all at least partially located in the cavity, and the transmission member 7 extends into the cavity from the telescopic port 313. The telescopic port 313 facilitates the transmission member 7 to extend into and connect to the gearbox 3.
[0058] In one possible embodiment, Figure 5 As shown, the housing 31 of the gearbox 3 is provided with avoidance openings 312 on both sides, and two avoidance openings 312 extend from both sides of the input gear 32. The input gear 32 has a relatively large diameter, and the two avoidance openings 312 extend partially from both sides of the input gear 32, which is conducive to reducing the housing 31 of the gearbox 3 and facilitating the gearbox 3 to be installed in the cavity.
[0059] like Figure 1 and Figure 2 As shown, the gun housing 1 is provided with an outwardly convex avoidance convex shell 11 corresponding to the input gear 32. The avoidance convex shell 11 is conducive to reducing the volume of the gun housing and allowing the normal rotation of the input gear 32.
[0060] like Figure 2 , Figure 3 and Figure 4 As shown, the launcher 2 includes a support body 21 and a clamping block 22, the support body 21 is slidably connected to the gun housing 1, the end of the support body 21 has two support arms 211, the two clamping blocks 22 are respectively hinged on the corresponding support arms 211, and the inner wall of the gun housing 1 is provided with a push-up inclined surface 12. In the process of the launcher 2 moving toward the rear of the gun housing 1, the push-up inclined surface 12 pushes the clamping block 22 so that the two clamping blocks 22 are close to clamp the gyroscope 20. A clamping space for the gyroscope 20 is formed between the two clamping blocks 22 and the two support arms 211. When the gyroscope 20 is located in the clamping space, the gyroscope 20 can rotate but will not leave the clamping space. Two push-up inclined surfaces 12 are provided on the inner wall of the gun housing 1, and the two push-up inclined surfaces 12 are respectively located on the outer sides of the two support arms 211 along the width direction. The two push-up inclined surfaces 12 approach each other in the direction toward the rear of the gun housing 1. When the gyroscope 20 rotates and accumulates force to a certain speed, the clamping mechanism 4 can release the launching frame 2, and the elastic component 6 restores its deformation to push the launching frame 2 to move toward the head of the gun housing 1, so that the two clamping blocks 22 move away from each other under the action of the two pushing inclined surfaces 12 to increase the clamping space, thereby releasing the gyroscope 20, and the gyroscope 20 detaches from the gun housing 1 under the action of inertia.
[0061] In one possible embodiment, Figure 1 , Figure 3 and Figure 4As shown, the gyro toy gun includes a trigger 8 which is movably arranged on the gun housing 1. The trigger 8 is in transmission cooperation with the clamping mechanism 4. The movement of the trigger 8 can trigger the clamping mechanism 4 to release the launching rack 2. The clamping mechanism 4 is hinged to the gun housing 1. A clamping projection 41 is arranged on the clamping mechanism 4, and a clamping cooperation portion 23 is arranged on the launching rack 2. A first spring 9 is arranged between the clamping mechanism 4 and the gun housing 1, and a second spring 10 is arranged between the trigger 8 and the gun housing 1. When the gyro 20 is installed on the launching rack 2, the gyro 20 drives the launching rack 2 to move towards the tail of the gun housing 1, so that the clamping projection 41 is clamped in the clamping cooperation portion 23, and the output gear 34 on the gearbox 3 and the cooperation gear 201 on the gyro 20 are engaged with each other. The elastic member 6 is in a compressed state. Under the action of an external force, when the trigger 8 is pressed, the trigger 8 can drive the clamping mechanism 4 to rotate by a certain angle, so that the clamping projection 41 disengages from the clamping cooperation portion 23, and the clamping mechanism 4 releases the launching rack 2. The elastic member 6 restores its deformation and pushes the launching rack 2 to move towards the head of the gun housing 1, so that the gyro 20 disengages from the gun housing 1. During this process, the first spring 9 and the second spring 10 are compressed. When the external force is withdrawn, the first spring 9 and the second spring 10 restore their deformation and push the trigger 8 and the clamping mechanism 4 to reset.
[0062] The preferred embodiments of the present application disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details in detail, nor do they limit the application to the specific embodiments described. Obviously, many modifications and changes can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principle and practical application of the present application, so that those skilled in the art can understand and utilize the present application well. The present application is only limited by the claims and their full scope and equivalents.
Claims
1. A gyro toy gun, characterized in that: include: Gun shells; A launching frame, the launching frame is slidably connected to the gun housing, and an elastic component is provided between the launching frame and the gun housing; A gearbox, the gearbox being arranged on the gun housing; A clamping mechanism, the clamping mechanism is arranged on the gun housing, and the clamping mechanism is used to clamp or release the launching frame; A sliding member, the sliding member is slidably connected to the gun housing, and the sliding member is transmission-connected to the gearbox; The gyroscope can be installed on the launcher, and the launcher can move toward the rear of the gun housing to be engaged with the engaging mechanism, so that the output gear on the gearbox and the gear on the gyroscope are engaged, and the elastic component is in a compressed state; The sliding member can slide along the gun housing to drive the gear box to drive the gyroscope to rotate; The clamping mechanism can release the launching frame, and the elastic component restores its deformation, pushing the launching frame to move toward the head of the gun shell, so that the gyroscope is separated from the gun shell; The gyro toy gun further comprises a transmission member, the gearbox has an input gear, one end of the transmission member is connected to the sliding member, the other end of the transmission member is in transmission connection with the input gear, the sliding member slides along the gun housing and can drive the input gear to rotate through the transmission member, and the input gear drives the output gear to rotate; The gearbox has a housing, the middle portion of the input gear is rotatably connected to the housing, an eccentric column is arranged on a side of the input gear close to the edge, the transmission member is in transmission connection with the eccentric column, and the transmission member drives the eccentric column to move and drives the input gear to rotate.
2. The gyro toy gun according to claim 1, characterized in that: The gearbox has an intermediate gear; The intermediate gear is located between the input gear and the output gear; The housing has a slide groove, and the rotating shaft of the intermediate gear is slidably connected to the slide groove; Connecting cylinders are arranged at both ends of the transmission member, the eccentric column is rotatably plugged into one of the connecting cylinders, and the other connecting cylinder is rotatably connected to the sliding member; When the sliding member slides in the first direction, the input gear rotates in the positive direction and meshes with the intermediate gear, and the intermediate gear drives the output gear to rotate; When the sliding member slides in the second direction, the input gear rotates in the opposite direction, and the intermediate gear slides along the sliding groove toward a side away from the input gear.
3. The gyro toy gun according to claim 1, characterized in that: The input gear has a gear body, and the eccentric column is vertically connected to the gear body.
4. The gyro toy gun according to claim 1, characterized in that: The housing of the gearbox has a cavity and a telescopic opening communicating with the cavity; The input gear, the output gear and the intermediate gear are at least partially located in the cavity; The transmission member extends into the cavity through the telescopic opening.
5. The gyro toy gun according to claim 4, characterized in that: The two sides of the housing of the gearbox are respectively provided with avoidance openings; Two avoidance openings extend from both sides of the input gear respectively.
6. The gyro toy gun according to claim 5, characterized in that: The gun housing is provided with an outwardly convex avoidance convex shell corresponding to the input gear.
7. The gyro toy gun according to claim 1, characterized in that: The launching frame comprises a support body and a clamping block; The support body is slidably connected to the gun housing, and the end of the support body has two support arms; The two clamping blocks are respectively hinged on the corresponding supporting arms; The inner wall of the gun housing is provided with a push-up inclined surface; When the launching frame is able to move toward the rear of the gun housing, the pushing inclined surface pushes the clamping block so that the two clamping blocks come together to clamp the gyroscope.
8. The gyro toy gun according to any one of claims 1 to 7, characterized in that: It includes a trigger, which is movably arranged on the gun housing, and the trigger is in transmission cooperation with the clamping mechanism; The movement of the trigger can trigger the latching mechanism to release the launching rack.