Rotary toy

By designing an automatically undulating turntable and undulation control plate in the rotating toy, the problem of cumbersome operation of undulating parts is solved, realizing automated operation and stable standing of undulating parts, and improving the user experience.

CN223788059UActive Publication Date: 2026-01-13TOMY CO LTD
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Patent Information

Application Number
CN202520328514.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-10-08
Filing Date
2025-02-26
Publication Date
2026-01-13
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

In existing rotating toys, the operation of raising the undulating parts is cumbersome, resulting in a poor user experience.

Method used

A rotating toy was designed. By setting a rotating platform and undulating components on the base unit, the undulating components can automatically rise and fall with the rotation of the rotating platform. The undulating action is realized by the linkage of the first and second undulating control plates, which simplifies the operation for users.

Benefits of technology

The undulating parts can automatically rise and fall with the rotation of the turntable, eliminating the need for manual operation by the user, thus increasing the fun and ease of use of the toy. At the same time, the undulating parts are highly stable when upright, enhancing the gaming experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a rotary toy, which is a shooting toy (1) and comprises a base unit (20), a shooting range unit (40) rotatably arranged on the base unit (20) and a fluctuating part (43) arranged on the shooting range unit (40) and formed in a fluctuating mode along with rotation of the shooting range unit (40). According to the utility model, the trouble of erecting the fluctuating part by a user can be saved.
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Description

Technical Field

[0001] This utility model relates to a rotating toy. Background Technology

[0002] Previously, there were known rotating toys in which the surrounding scenery changed as the rotating part rotated (for example, see Patent Document 1).

[0003] Patent Document 1: Japanese Patent Application Publication No. 2022-128809

[0004] Patent document 1 does not specifically describe a component that undulates by rotation.

[0005] The purpose of this invention is to provide a rotating toy that saves users the trouble of making the undulating parts stand up. Utility Model Content

[0006] The present invention provides a rotating toy comprising: a base and a rotating platform rotatably disposed on the base, and an undulating component disposed on the rotating platform and configured to undulate as the rotating platform rotates.

[0007] According to this invention, a rotating toy can be provided that saves the user the trouble of making the undulating parts stand up. Attached Figure Description

[0008] Figure 1 This is a 3D model of a shooting toy used in fire extinguishing training.

[0009] Figure 2 It is a 3D image of a shooting toy in fire station mode.

[0010] Figure 3 It is an exploded 3D diagram of a shooting toy.

[0011] Figure 4 This is an exploded 3D view of the base unit.

[0012] Figure 5 This is a diagram used to illustrate the movement of the first undulation control plate that accompanies the rotation of the rotating plate.

[0013] Figure 6 This is a diagram used to illustrate the movement of the first undulation control plate that accompanies the rotation of the rotating plate.

[0014] Figure 7 This is an exploded 3D view of the shooting range unit.

[0015] Figure 8 This is a diagram used to illustrate the support structure of the undulating component.

[0016] Figure 9This diagram illustrates the linkage between the first and second undulation control plates.

[0017] Figure 10 This diagram illustrates the linkage between the first and second undulation control plates.

[0018] Figure 11 This diagram illustrates the linkage between the second undulation control plate and the undulation components.

[0019] Figure 12 This diagram illustrates the linkage between the second undulation control plate and the undulation components.

[0020] Figure 13 This diagram illustrates the linkage between the second undulation control plate and the undulation components. Detailed Implementation

[0021] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0022] 1. Overall structure of shooting toys

[0023] Figure 1 and Figure 2 This is a perspective view of the shooting toy 1 according to this embodiment. Figure 1 This is a diagram illustrating the firefighting training model described later.

[0024] Figure 2 This is a diagram representing the fire station model described later. Figure 3 This is an exploded 3D view of shooting toy 1.

[0025] like Figures 1 to 3 As shown, the shooting toy 1 is capable of playing a shooting game that imitates the fire-extinguishing activity of the vehicle toy C. The shooting toy 1 is an example of the rotating toy of this invention.

[0026] Specifically, the shooting toy 1 includes a base unit 20, a shooting range unit 40 disposed on the base unit 20, and a launching device 60. The shooting range unit 40 and the launching device 60 are positioned on the base unit 20 around a central axis Ax in the vertical direction (see reference). Figure 4 ) rotate. Thus, the shooting toy 1 is configured to achieve a fire-fighting training mode M1 (where the launching device 60 is located on the front side of the base unit 20). Figure 1 The fire station mode M2 ​​(with the launching device 60 located on the rear side of the base unit 20) and the firing device 60 are located on the rear side of the base unit 20. Figure 2Furthermore, in the following description, the directions of front, back, left, right, up, and down for the shooting toy 1 refer to the directions shown in the respective figures. Since the shooting range unit 40 and the launching device 60 are directional structures as described above, the state under fire extinguishing training mode M1 will be described unless otherwise specified. Additionally, in the shooting range unit 40, the open side of the shooting range unit 40 in the plane perpendicular to the up and down direction is referred to as the "front side F," and its opposite side is referred to as the "back side B." The front side F corresponds to the front side in fire extinguishing training mode M1, and the back side B corresponds to the rear side in fire extinguishing training mode M1.

[0027] In addition, in the following explanation, the direction perpendicular to the central axis Ax will be called "radial", and the direction of rotation centered on the central axis Ax will be called "circumferential".

[0028] 2. Configuration of base unit

[0029] Figure 4 This is an exploded perspective view of base unit 20.

[0030] like Figure 3 and Figure 4 As shown, the base unit 20 is formed in a generally flat plate shape and rotatably supports the firing range unit 40 and the launching device 60. The base unit 20 is an example of the base of this utility model.

[0031] Specifically, the base unit 20 includes a base plate 21, a rotating gear 30, a rotating plate 22, and a first undulation control plate 23.

[0032] The substrate 21 is formed in a generally flat shape and has an upwardly opening recess 211 in the generally central part. The recess 211 is formed in a circle centered on the central axis Ax when viewed from above.

[0033] A ramp 212 sloping downwards is formed on the front side of the recess 211 in the base plate 21. As will be described later, the ramp 212 forms the path for the toy vehicle C to slide out of the parking platform 25.

[0034] An operating handle 213 is provided at the right end of the ramp 212 in the base plate 21, which is operated when the user (operator) rotates the firing range unit 40. A protrusion formed on the opposite side (left side) of the operating handle 213 in the base plate 21 relative to the ramp 212 is a pressing handle 21a for pressing down on the base unit 20 when the user rotates the operating handle 213.

[0035] In addition, the base plate 21 is equipped with a power switch 214 for switching the power on / off, a battery storage section 215 for storing batteries, and a speaker 216 for outputting sound. It also includes a control circuit for driving the shooting toy 1 and a control board (not shown) on which electronic components are installed.

[0036] The rotating gear 30 is formed in the shape of an annular plate and is housed in the recess 211 with the central axis Ax as the center and in a state orthogonal to the vertical direction. The rotating gear 30 is supported by a plurality of wheels 31 rotatably about the central axis Ax. The rotating gear 30 engages with the operating handle 213 via a connecting gear (not shown) and rotates about the central axis Ax as the operating handle 213 rotates.

[0037] The circumferential position (rotational position) of the rotating gear 30 is detected by two detection switches (contact switches) 35. The two detection switches 35 are positioned below the rotating gear 30 and respectively detect two protrusions (not shown) formed on the back (bottom) of the rotating gear 30. The two protrusions are located at different radial positions and have different circumferential extension ranges. Therefore, the circumferential position of the rotating gear 30 is detected based on the combination of the detection results from the two detection switches 35.

[0038] The rotating plate 22 is formed in the shape of a circular plate and is arranged to close the opening on the upper surface of the recess 211. The rotating plate 22 supports the cylindrical central portion 221 on the base plate 21 in a rotatable manner and is fixed to the rotating gear 30, rotating integrally with the rotating gear 30 around the central axis Ax. A plurality of pressure plates 223 are arranged on the periphery of the rotating plate 22 to prevent the rotating plate 22 from floating (falling upwards) and are fixed to the base plate 21.

[0039] The rotating plate 22 is locked in a predetermined circumferential position (rotation position) corresponding to the fire station mode M2 ​​and the fire training mode M1 by a locking component (not shown) held on the base plate 21.

[0040] A flat parking platform 25 is disposed on approximately the rear half of the upper surface of the rotating plate 22. Multiple (three in this embodiment) toy vehicles C can be arranged side-by-side on the upper surface of the parking platform 25. The parking platform 25 has support protrusions 251 protruding from the left and right sides of the rear end, allowing it to be rotatably supported on the rotating plate 22. A standing rod 252 protrudes from the left side of the parking platform 25. When the user operates the standing rod 252 to pull it rearward (rear side B), the parking platform 25 rotates around the support protrusions 251, causing the front side (front side F) to rise and stand up (tilt).

[0041] The first undulation control plate 23 is used to cause the undulation component 43 of the shooting range unit 40 (described later) to undulate, and it is an example of the first movable component of this utility model. The first undulation control plate 23 is formed in a generally flat plate shape and is disposed in the recess 211 in a state orthogonal to the vertical direction, approximately at the center when viewed from above.

[0042] Specifically, such as Figure 4 and Figure 5As shown, the first undulation control plate 23 has a plurality of elongated guide holes 231 extending in the front-rear direction. In each guide hole 231, a cylindrical guide portion 225 erected on the lower surface of the rotating plate 22 is inserted from above in a manner that allows it to move along the guide hole 231. In addition, an elongated insertion hole 232 is formed at approximately the center of the first undulation control plate 23, through which the center portion 221 of the rotating plate 22 is inserted from above.

[0043] On the lower surface of the first undulation control plate 23, a roller support portion 233 for supporting a cylindrical roller 26 is erected at the front end (see reference). Figure 9 (etc.). Roller 26 is slidably (or rollably) fitted into guide channel 217 formed on base plate 21. Guide channel 217 is formed as a top circular track eccentric from central axis Ax, with its center P located in front of central axis Ax.

[0044] According to this structure, the first undulation control plate 23 rotates and translates relative to the rotating plate 22 as the rotating plate 22 rotates.

[0045] Specifically, when the rotating plate 22 rotates about the central axis Ax, a rotational force in the same direction is applied to the first undulation control plate 23 through the guide portion 225 of the rotating plate 22. At this time, since the rotation of the first undulation control plate 23 is restricted within the guide channel 217 of the base plate 21 by the roller 26, it rotates about the center P of the guide channel 217. As a result, the first undulation control plate 23 rotates along with the rotating plate 22, rotating off-center from the rotation center of the rotating plate 22, and translates relative to the rotating plate 22. In this embodiment, as... Figure 5 and Figure 6 As shown, as the transition from fire training mode M1 to fire station mode M2 ​​occurs, the first undulation control panel 23 moves horizontally to the rear side B of the firing range unit 40 at a distance corresponding to the eccentricity.

[0046] Additionally, two connecting protrusions 234 are vertically arranged side-by-side in the left-right direction on the upper surface of the first undulation control plate 23. The connecting protrusions 234 protrude through the through hole 226 of the rotating plate 22 and extend above the rotating plate 22 (see reference). Figure 3 The connecting member 46 of the firing range unit 40, described later, is connected to the connecting protrusion 234. An opening 235, shaped like a U in side view (from left to right), is formed at the front end (upper end) of the connecting protrusion 234. The connecting member 46 (connecting shaft 461) of the firing range unit 40, described later, is movably fitted into the opening 235 in the vertical direction (see reference). Figure 9 , Figure 10 ).

[0047] The undulating motion of the undulating component 43, which accompanies the movement of the first undulating control plate 23, will be described later.

[0048] 3. Configuration of the shooting range unit

[0049] Figure 7 This is an exploded 3D view of shooting range unit 40.

[0050] like Figure 7 As shown, the firing range unit 40 includes a support housing 41, a firing ramp 42, a second undulation control plate 45, and a connecting component 46. The firing range unit 40 is an example of the rotary table of this utility model, which is rotatably arranged on the base unit 20.

[0051] The support housing 41 supports the firing ramp 42 and houses the second undulation control plate 45 and the connecting member 46. The lower part of the support housing 41 is shaped to correspond to the rotating plate 22 of the base unit 20 and is fixed to the upper surface of the rotating plate 22. However, the rear part of the support housing 41 is configured to open the garage space 25S on the parking platform 25 of the base unit 20 to the rear (rear side B) (see reference). Figure 2 ).

[0052] The firing ramp 42 is disposed on the upper side of the support housing 41 and fixed to the support housing 41. The firing ramp 42 is formed as a ramp sloping forward and downward, having a ground surface 42a that is inclined relative to the vertical direction. The lower front end of the firing ramp 42 opens forward, and the surrounding area except for the lower end is covered by a wall.

[0053] On the ground 42a of the shooting ramp 42, there are multiple undulating parts 43 of different sizes and shapes that serve as targets for the shooting game.

[0054] Figure 8 This is a diagram used to illustrate the support structure of the undulating component 43.

[0055] Each undulating component 43 is formed in a roughly flat, flame-like shape and is supported by the firing ramp 42 in an undulating manner. Specifically, as... Figure 8 As shown, each undulating component 43 has two support shafts 431, a front foot 432, and a rear foot 433.

[0056] Two support shafts 431 are coaxially arranged on the left and right sides of the lower end of the undulating member 43. Each support shaft 431 is formed as a cylinder in the left-right direction and is rotatably supported on the bearing portion 421 of the firing ramp 42. A recess 42b corresponding to the shape of the undulating member 43 is formed on the ground 42a of the firing ramp 42, and bearing portions 421 are formed on the left and right sides of the lower end of the recess 42b. The upper opening of the bearing portion 421 is designed to allow the insertion of the support shaft 431, and an anti-dislodgement member is formed to prevent the support shaft 431 from falling off. A first locking portion 421a in the shape of a protrusion is formed on the bottom surface of either bearing portion 421 to lock the undulating member 43.

[0057] In the two support shafts 431, a second locking part 431a is formed on the side corresponding to the bearing part 421 having the first locking part 421a, which locks into the first locking part 421a of the bearing part 421. The first locking part 421a and the second locking part 431a are specifically designed to lock into each other to maintain the upright state of the undulating member 43 when transitioning from the fire training mode M1 to the fire station mode M2.

[0058] The undulating member 43 is configured to achieve two states: an upright state in which it undulates around the support shaft 431 and stands in a forward tilted posture relative to the vertical direction, and a collapsed state in which it lies on the ground 42a (inside the recess 42b) with its front end positioned on the height side of the ground 42a.

[0059] The front foot portion 432 is formed into a generally flat plate shape, protruding approximately vertically forward from the lower center of the undulating member 43. When the undulating member 43 is in the upright state, the front foot portion 432 abuts against the firing ramp 42, holding the undulating member 43 in the upright state. In addition, when in the upright state, the front foot portion 432 is disposed in the front recess 42c formed in the ground 42a of the firing ramp 42, for example, its upper surface is approximately flush with the ground 42a.

[0060] The rear foot 433 is formed in a generally flat shape and protrudes approximately vertically from the lower center of the undulating member 43 to the rear. The rear foot 433 is an example of the third locking part of this utility model. As described later, it is pressed when erected and locks with the second undulating control plate 45 (locking rib 453 described later) in the fire extinguishing training mode M1 to keep the undulating member 43 in an erected state.

[0061] like Figure 7As shown, the second undulation control plate 45 is used to undulate the undulation member 43, and it is an example of the second movable member of this utility model. The second undulation control plate 45 is formed into a flat plate shape and is held on the lower side of the firing ramp 42 in a state parallel to the firing ramp 42 (i.e., tilted forward and downward). A plurality of elongated support holes 451 with a longitudinal length are formed on the second undulation control plate 45. In each support hole 451, a cylindrical support shaft erected on the lower surface of the firing ramp 42 is inserted from the upper side in a manner that allows it to move along the support hole 451 (see reference). Figure 11 wait).

[0062] Multiple pressing recesses 452 corresponding to multiple undulation components 43 are formed on the upper surface of the second undulation control plate 45. The pressing recesses 452 are used to press the rear foot 433 of the undulation component 43 to make the undulation component 43 stand up. Specifically, the pressing recesses 452 are formed at the position corresponding to the rear foot 433 of the corresponding undulation component 43, at the left and right center position of the front side of the recess 42b of the firing ramp 42, and are connected to the inside of the recess 42b through a through hole 42d formed on the bottom surface of the recess 42b (see reference). Figure 8 When the second undulation control plate 45 is located on the front side F, and the undulation member 43 collapses, the rear foot 433 of the undulation member 43 is accommodated in the pressing recess 452 (see reference). Figure 11 ).

[0063] Within the left and right center of the rear side of the pressing recess 452, there is a roughly flat locking rib 453 orthogonal to the left and right directions. The locking rib 453 locks the rear foot 433 of the undulating component 43. The locking rib 453 and the rear foot 433 lock each other in the fire extinguishing training mode M1 to keep the undulating component 43 in an upright state (see reference). Figure 13 ).

[0064] The connecting component 46 connects the second undulation control plate 45 to the first undulation control plate 23 of the base unit 20, enabling them to move in tandem. The connecting component 46 is positioned at the lower center of the second undulation control plate 45 and is fixed to it. The connecting component 46 has a connecting shaft 461 at its lower part extending in the left-right direction (see reference). Figure 10 (etc.). The connecting shaft 461 is connected to two connecting protrusions 234 of the first undulation control plate 23 of the base unit 20. Specifically, the connecting shaft 461 is movably fitted into the openings 235 of the two connecting protrusions 234 in the vertical direction.

[0065] 4. Structure of the launching device

[0066] like Figure 1 and Figure 3As shown, the launching device 60 is located at the lower end of the front side F of the firing range unit 40, and launches the vehicle toy C on the firing ramp 42.

[0067] Specifically, the launching device 60 is detachably mounted on the rotating plate 22 of the base unit 20 and is supported so as to rotate left and right (shake) within a specified range. The launching device 60 has a pair of left and right walking plates 63 and a launching part 65.

[0068] A pair of walking plates 63 are the firing channels for the vehicle toy C, which serves as the ejector, and correspond to the left and right wheels of the vehicle toy C. The pair of walking plates 63 are inclined approximately along the firing ramp 42 in a manner that is positioned upwards as it faces backwards.

[0069] An ejection section 65 is mounted on a pair of walking plates 63, ejecting a toy vehicle C mounted on the walking plates 63 along the walking plates 63. The rear end face B of the ejection section 65 supports the rear end face of the toy vehicle C mounted on the walking plates 63. The ejection section 65 is forced in the ejection direction along the walking plates 63 by a force-applying member (not shown). The user ejects the toy vehicle C by pulling the operating lever 652 formed at the front end of the ejection section 65 forward against the force of the force-applying member and then releasing it.

[0070] 5. The undulating motion of the undulating components

[0071] The undulating motion of the undulating component 43 that accompanies the rotation of the firing range unit 40 will be explained. Figure 9 and Figure 10 This diagram illustrates the linkage between the first undulation control plate 23 and the second undulation control plate 45. Figures 11 to 13 This is a diagram used to illustrate the linkage between the second undulation control plate 45 and the undulation component 43.

[0072] As described above, when the rotating plate 22 of the base unit 20 rotates about the central axis Ax, since the center of rotation is eccentric from the central axis Ax, the first undulation control plate 23 also rotates while translating along the front-back direction of the firing range unit 40 (see reference). Figure 5 , Figure 6 When switching from fire training mode M1 to fire station mode M2, the first undulation control panel 23 moves to the rear side B.

[0073] At this time, as Figure 9 and Figure 10As shown, the first undulation control plate 23 is connected to the second undulation control plate 45 via a connecting member 46. The connecting shaft 461 of the connecting member 46 is movably fitted onto the connecting protrusion 234 of the first undulation control plate 23. Therefore, as the first undulation control plate 23 moves toward the rear side B, the connecting member 46 moves obliquely upward along the inclination of the firing ramp 42, while simultaneously causing the second undulation control plate 45 to move toward the rear side B.

[0074] Here, as Figure 11 As shown, in the fire extinguishing training mode M1, when the undulating component 43 collapses, as the transition to the fire station mode M2 ​​occurs, the second undulating control panel 45 moves towards the rear side B, resulting in the following... Figure 12 As shown, the wall surface of the pressing recess 452 of the second undulation control plate 45 pushes the rear foot 433 of the undulation member 43 towards the rear side B. As a result, the undulation member 43 rotates around the support shaft 431 at its lower end and stands upright. In this upright state, the undulation member 43 stands on the ground 42a in a forward-leaning posture relative to the vertical direction, even if its front end is tilted to a side further away from the ground 42a than vertically above.

[0075] During the transition to the upright position, the undulating member 43 rotates within the bearing portion 421 of the firing ramp 42 along with the support shaft 431. The second locking portion 431a of the support shaft 431 passes over the first locking portion 421a of the bearing portion 421 and locks onto the first locking portion 421a. As a result, the undulating member 43 remains upright without relying on the support of the second undulation control plate 45, thus suppressing its tendency to collapse towards the rear side B.

[0076] In this state, if the system switches back to fire-fighting training mode M1, the second undulation control panel 45 moves to the front side F, then... Figure 13 As shown, the locking rib 453 of the second undulation control plate 45 is located on the lower side of the front end of the rear foot 433 of the undulation component 43.

[0077] Thus, the rear foot 433 of the undulating component 43 is locked onto the locking rib 453 of the second undulating control plate 45. Through the locking rib 453 and the rear foot 433, the undulating component 43 is kept in an upright state in the fire extinguishing training mode M1, so that the collapse towards the rear side B is suppressed.

[0078] 6. How to play with shooting toys

[0079] An example of how to play with the shooting toy 1 is explained.

[0080] In addition, here we assume that the shooting toy 1 is in fire station mode M2, and the vehicle toy C is placed on the parking platform 25, with all the undulating parts 43 in an upright state.

[0081] In the shooting toy 1 of the fire station mode M2, when the user (operator) turns on the power switch 214, for example, a sound urging to switch to the fire extinguishing training mode M1 is output from the speaker 216, such as "An emergency has occurred, please go to the training station".

[0082] The user operates the lifting lever 252 of the parking platform 25 to make the parking platform 25 stand up (tilt), causing the toy vehicle C to move. The toy vehicle C on the parking platform 25 travels and slides forward on the ramp 212 of the parking platform 25 and the base plate 21.

[0083] Next, when the user rotates the operating handle 213 of the base plate 21 in the specified direction, the rotating gear 30, which meshes with the operating handle 213, rotates around the central axis Ax. Consequently, the rotating plate 22, fixed to the rotating gear 30, also rotates, and the firing range unit 40 and firing device 60 on the rotating plate 22 rotate, transitioning to the fire extinguishing training mode M1. During the transition, dedicated music is output from the speaker 216. The completion of the transition to the fire extinguishing training mode M1 is detected by detecting the circumferential position of the rotating gear 30 via the detection switch 35.

[0084] At this time, as the transition to fire extinguishing training mode M1 occurs, the second undulation control plate 45 moves towards the front side F, and as described above, the rear foot 433 of the undulation component 43 is locked onto the locking rib 453 of the second undulation control plate 45. Figure 13 ).

[0085] When the transition to fire extinguishing training mode M1 is detected as complete, the music during the transition stops, and a broadcast sound announcing the start of fire extinguishing training is output from speaker 216.

[0086] In fire extinguishing training mode M1, the user places a toy vehicle C on the walking board 63 of the launching device 60, causing the launching device 60 to rotate and aim at the undulating part 43 that simulates flames. Then, by pulling the operating lever 652 to the front and then releasing it, the toy vehicle C is fired at the undulating part 43.

[0087] When the toy vehicle C hits the undulating component 43, and the force at this point is stronger than the locking force that keeps the undulating component 43 upright, the undulating component 43 will fall over. The locking force that keeps the undulating component 43 upright includes not only the locking force of the rear foot 433 of the undulating component 43 and the locking rib 453 of the second undulating control plate 45, but also the locking force of the first locking part 421a of the shooting ramp 42 and the second locking part 431a of the undulating component 43.

[0088] When the user finishes fire training, a voice prompting the transition to fire station mode M2 ​​is output from speaker 216, such as "Thank you for your hard work, please return to the fire station." Therefore, when the user rotates the operating handle 213, the firing range unit 40 and the firing device 60 on the rotating plate 22 rotate to transition to fire station mode M2, just as when transitioning to fire training mode M1.

[0089] At this time, as the transition to fire station mode M2 ​​occurs, the second undulation control panel 45 moves towards the rear side B, and as described above, all undulation components 43 stand up. During the transition to this standing state, the second locking portion 431a of the undulation component 43 passes over the first locking portion 421a of the jet ramp 42 and locks onto the first locking portion 421a, and the undulation component 43 remains in the standing state. Figure 12 ).

[0090] When the transition to fire station mode M2 ​​is detected as complete, a sound such as "Please put the vehicle in the garage" is output from speaker 216. The user places the vehicle toy C on the parking platform 25, ending the shooting game on the shooting toy 1.

[0091] 7. Technical effects of this embodiment

[0092] As described above, according to this embodiment, the undulating member 43 is configured to undulate as the firing range unit (rotating platform) 40 rotates on the base unit (base platform) 20.

[0093] Therefore, by simply rotating the shooting range unit 40, the undulating component 43 automatically stands up, allowing the user to enjoy the shooting game without having to manually set it up. In other words, it eliminates the hassle of manually setting up the undulating component 43. Furthermore, since the undulating component 43 automatically rises and falls with the rotation of the shooting range unit 40, the user can easily understand the gameplay.

[0094] Furthermore, according to this embodiment, the first undulation control plate (first movable member) 23 rotates along an eccentric track from the central axis Ax of its rotation center as the shooting range unit 40 rotates, and translates relative to the shooting range unit 40. The second undulation control plate (second movable member) 45 is linked with the first undulation control plate 23 to cause the undulation member 43 to undulate.

[0095] Therefore, rotational motion can be converted into translational motion with a relatively simple structure, thereby realizing the undulation of the undulating component 43.

[0096] Furthermore, according to this embodiment, the undulating member 43 in the upright state is tilted on the ground 42a that is inclined relative to the vertical direction, with its front end tilted further away from the ground 42a than vertically upward.

[0097] Therefore, the undulating member 43 stands in a forward-leaning posture, applying its own weight on the side opposite to the direction of falling, making it difficult to fall in the direction of falling. Thus, for example, it is possible to prevent the undulating member 43 from falling due to unintentional impacts or malfunctions.

[0098] Furthermore, according to this embodiment, the shooting range unit 40 has a first locking part 421a that locks the undulating member 43 and maintains the undulating member 43 in an upright state.

[0099] Therefore, the undulating member 43 can be kept upright solely by the firing range unit 40. Thus, the second undulating control plate 45, which raises the undulating member 43, can be moved while maintaining the upright position of the undulating member 43.

[0100] Furthermore, the undulating component 43 has a second locking part 431a, which is locked onto the first locking part 421a of the firing range unit 40 and maintains the undulating component 43 in an upright state.

[0101] Therefore, the undulating component 43 can be more firmly maintained in an upright state solely through the firing range unit 40.

[0102] Furthermore, according to this embodiment, the undulating member 43 has a rear foot 433 (third locking part) that is locked to the second undulating control plate 45 and maintains the undulating member 43 in an upright state.

[0103] Therefore, by using the second undulation control plate 45, while the undulation component 43 is raised, the undulation component 43 can be kept in an upright state by using the desired locking force.

[0104] Furthermore, according to this embodiment, the undulating member 43 is provided on the opposite side of the folding direction of the undulating member 43, and has a front foot 432 that maintains the upright state of the undulating member 43.

[0105] Therefore, when the undulating component 43 falls backward, the front foot 432 stands up. That is, after the undulating component 43 falls, its front foot 432 becomes a cover for the shooting range. Therefore, as the number of fallen undulating components 43 increases, the amount of cover increases, thus appropriately increasing the difficulty of the shooting game.

[0106] 8. Other

[0107] The embodiments of this utility model have been described above, but this utility model is not limited to the above embodiments.

[0108] For example, in the above embodiments, a shooting toy targeting the undulating component was described as an example of a rotating toy of the present invention. However, the present invention only requires that the undulating component undulate as the rotating platform rotates, and there is no particular limitation on the way the undulating component is used.

[0109] Furthermore, the details shown in the above embodiments may be appropriately modified without departing from the spirit of the utility model.

[0110] Explanation of reference numerals in the attached figures

[0111] 1. Shooting toy (spinning toy)

[0112] 20 base units (base)

[0113] 23 First undulation control plate (first movable component)

[0114] 40 Shooting Range Units (Rotating Platform)

[0115] 42 firing ramp

[0116] 421a First Caliper Section

[0117] 42a ground

[0118] 43 undulating components

[0119] 431a Second Caliper

[0120] 432 Front leg (leg)

[0121] 433 Rear leg (third locking point)

[0122] 45 Second undulation control plate (second movable part)

[0123] Ax central axis (center of rotation)

[0124] M1 Firefighting Training Mode

[0125] M2 fire station mode

[0126] P Center

Claims

1. A rotating toy, characterized in that, have: base, and A rotary table rotatably mounted on the base, and An undulating component is disposed on the rotating platform and configured to undulate as the rotating platform rotates.

2. The rotating toy as described in claim 1, characterized in that, It also has: The first movable component, as the rotary table rotates, rotates along an eccentric track from the rotation center of the rotary table, and translates relative to the rotary table; and The second movable component is linked to the first movable component, causing the undulating component to undulate.

3. The rotating toy as described in claim 1, characterized in that, The rotary table has a ground inclined relative to the vertical direction; The undulating component, in its upright state, is positioned so that its front end is tilted further away from the ground than vertically upwards; in its prone state, it lies prone on the ground with its front end positioned at the height of the ground.

4. The rotating toy as described in claim 1, characterized in that, The rotary table has a first locking part that locks the undulating component and keeps the undulating component in an upright state.

5. The rotating toy as described in claim 4, characterized in that, The undulating component has a second locking part that locks with the first locking part of the rotary table and maintains the undulating component in an upright state.

6. The rotating toy as described in claim 2, characterized in that, The undulating component has a third locking part that is locked to the second movable component and keeps the undulating component in an upright state.

7. The rotating toy as described in claim 1, characterized in that, Multiple undulating components are arranged on the rotary table.

8. The rotating toy as described in claim 1, characterized in that, The undulating member has a foot located on the opposite side of the undulating member's falling direction and which keeps the undulating member upright.

Citation Information

Patent Citations

  • Launching toy

    JP2022128809A