Turntable for toy

By incorporating an eccentric small-diameter turntable and a planetary gear mechanism into the toy turntable, combined with motor control, the rotation of the first turntable and the revolution of the second turntable are realized. This solves the problem of the monotonous motion of existing toy turntables and enhances the fun and complexity of the toy's movements.

CN223930669UActive Publication Date: 2026-02-24TOMY CO LTD
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Patent Information

Application Number
CN202520328424.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-10-10
Filing Date
2025-02-26
Publication Date
2026-02-24
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

The existing toy turntables only rotate independently, lacking an organic combination of movements, resulting in insufficient fun.

Method used

By setting an eccentric small-diameter turntable inside a large-diameter turntable and using a planetary gear mechanism and electric motor control, the two turntables can rotate in combination at different time points, realizing the rotation of the first turntable and the revolution of the second turntable. Combined with the locking part and spray function, the complexity of the toy's movements is enhanced.

Benefits of technology

It enables diverse movement and actions of the toys, enhancing the fun, including cornering, drifting, and spraying effects for the toy cars, providing an unprecedented and novel action experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a rotary table for a toy, which enables the carried toy to move and comprises a first rotary table, a second rotary table, a third rotary table and a fourth rotary table, and a second turntable provided on the inside of the first turntable and configured to be rotatable about a second axis. As a result, it is possible to obtain an organic motion (or a result of the motion) of the toy when the second turntable revolves around the first axis of the first turntable, and it is possible to achieve a toy turntable with high interestingness.
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Description

Technical Field

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

[0002] Previously, as a toy turntable, there are known turntables in which a small-diameter turntable (small-diameter turntable) is arranged concentrically within a large-diameter turntable (large-diameter turntable) (for example, see Patent Document 1).

[0003] Patent Document 1: Japanese Patent Application Publication No. 2018-157946

[0004] However, the movement (or the result of movement) of the first toy and the second toy in the prior art is merely a combination of the movement (or the result of movement) of the first toy when the large-diameter turntable (first turntable) loaded with the first toy rotates independently and the movement (or the result of movement) of the second toy when the small-diameter turntable (second turntable) loaded with the second toy rotates independently.

[0005] This utility model was made in view of the above situation, and its purpose is to provide a toy turntable that enables the toys on it to move organically through the rotation of the first turntable and the second turntable. Utility Model Content

[0006] The first type of toy turntable provided by this utility model is a toy turntable for moving a loaded toy, comprising: a first turntable configured to rotate about a first axis; and a second turntable disposed on an eccentric portion inside the first turntable, configured to rotate about a second axis.

[0007] The second toy turntable provided by this utility model is based on the first toy turntable, and includes an action device for rotating the first turntable and the second turntable. The action device causes the first turntable and the second turntable to rotate at independent time points.

[0008] The third type of toy turntable provided by this utility model is based on the second type of toy turntable. The actuation device includes: a motor capable of rotating the first turntable and the second turntable in both directions; and a control unit for controlling the rotation of the motor in both directions. The actuation device causes the first turntable to rotate in one direction independently of the rotation of the motor, and stops rotating when switching between forward and reverse rotation. When switching between forward and reverse rotation of the motor, the second turntable rotates within a specified range in the direction corresponding to the switching mode of forward and reverse rotation.

[0009] The fourth type of toy turntable provided by this utility model is based on the third type of toy turntable, and includes a power transmission mechanism that transmits the power of the electric motor to the first turntable and the second turntable. It includes a rotation switching mechanism containing a planetary gear mechanism. The first turntable rotates in one direction independently of the forward and reverse rotation of the electric motor through the rotation switching mechanism. The second turntable is fixed on the rotation shaft of the planetary carrier of the planetary gear mechanism and rotates within a specified range when switching the forward and reverse rotation of the electric motor as the planetary carrier rotates.

[0010] The fifth toy turntable provided by this utility model is based on the fourth toy turntable, with a locking part for locking the toy provided on the second turntable.

[0011] The sixth type of toy turntable provided by this utility model is based on the fifth type of toy turntable, with an upward-opening U-shaped cut formed in the locking part.

[0012] The seventh toy turntable provided by this utility model is based on the sixth toy turntable, wherein the toy is a wheel-driven toy, and is locked in place by inserting the axle into the U-shaped cut.

[0013] The eighth toy turntable provided by this utility model is based on any one of the first to seventh toy turntables, and includes a sprayer, with a mist spraying hole formed on the first turntable, from which mist is sprayed onto the first turntable.

[0014] The ninth toy turntable provided by this utility model is based on the eighth toy turntable, with the mist spray outlet of the sprayer formed in the lower center of the first turntable, the mist spray hole formed at the eccentric position of the first turntable, and a mist passage provided on the first turntable to guide the mist from the mist spray outlet into the mist spray hole.

[0015] The tenth toy turntable provided by this utility model is based on the ninth toy turntable, wherein the mist spray outlet is divided by a cylinder, and an annular water receiving part is formed around the cylinder. The mist passage is configured such that water droplets or water flowing down through the mist passage are separated from the mist flowing through the mist passage and flow to the water receiving part.

[0016] The eleventh toy turntable provided by this utility model is based on the tenth toy turntable, with a water passage hole formed in the water receiving part, and a water passage pipe communicating with the water passage hole provided on the lower surface of the water receiving part. The water passage pipe is inserted into the water injection hole of the water tank of the sprayer, and the water injected from the mist spray hole flows to the water tank through the water receiving part and the water passage pipe.

[0017] According to this invention, for example, it is possible to obtain an organic action (or result) in which the motion (or result) of the first toy is compounded in the motion (or result) of the second toy when the second turntable revolves around the first axis of the first turntable, in addition to the motion (or result) of the first toy when the first turntable carrying the first toy rotates, and the motion (or result) of the second toy when the second turntable carrying the second toy rotates. This enables the creation of a toy turntable with high entertainment value. Attached Figure Description

[0018] Figure 1 This is a perspective view of a toy turntable according to an embodiment.

[0019] Figure 2 This is a top view of a toy turntable in use.

[0020] Figure 3 It is a three-dimensional diagram of a toy turntable, showing a portion of its components.

[0021] Figure 4 This is a 3D view of the workbench unit with the top plate separated.

[0022] Figure 5 It is a 3D view of the lower frame showing the state of the assembled peripheral components.

[0023] Figure 6 This is a 3D view of the rotation switching function below.

[0024] Figure 7 This is a 3D view of the bottom of the middle plate.

[0025] Figure 8 It is a 3D view of the bottom of the top panel.

[0026] Figure 9 This is an exploded 3D view of the sprayer.

[0027] Figure 10 It is a cross-sectional view showing the installation structure of the sprayer and its surrounding components.

[0028] Figure 11 It is a three-dimensional diagram used to illustrate the arrangement structure of piezoelectric elements.

[0029] Figure 12 It is a 3D diagram of a water-receiving container.

[0030] Figure 13 This is a 3D view of the bottom of the water container.

[0031] Figure 14 It is a three-dimensional diagram showing the components that make up the power unit and the cylindrical gear body. Detailed Implementation

[0032] (Appearance)

[0033] Figure 1 This is a perspective view of the toy turntable 100 according to this embodiment. Figure 2 This is a top view of the toy turntable 100 in its usage state.

[0034] The toy turntable 100 has a short cylindrical body 10.

[0035] The main body 10 is provided with a large-diameter turntable (first turntable) 11 and a small-diameter turntable (second turntable) 12 located in the eccentric part of the large-diameter turntable 11.

[0036] A locking part 12a is formed on the small-diameter turntable 12. A U-shaped cutout 12b is formed on the locking part 12a, which locks the front wheel axle of the toy car 50 and keeps the toy car 50 in a predetermined direction. At this time, the rear wheel of the toy car 50 rides on the large-diameter turntable 11.

[0037] The first turntable 11 rotates counterclockwise when viewed from above. The first turntable 11 rotates in one direction, but sometimes stops rotating and then rotates in the same direction again. During the rotation of the first turntable 11, the second turntable 12 revolves around it instead of rotating on its own axis. The front end of the toy car 50 faces forward in the direction of rotation of the first turntable 11. This creates the appearance of the toy car 50 bending and turning as the first turntable 11 rotates.

[0038] Furthermore, the second turntable 12 rotates clockwise or counterclockwise within the range described later, for example, only during the period when the first turntable 11 stops rotating. At this time, the rear wheels of the toy car 50 riding on the first turntable 11 slide relative to the first turntable 11. The direction of rotation of the second turntable 12 changes as the first turntable 11 stops rotating. This rotation of the second turntable 12 creates the appearance of the toy car 50 drifting.

[0039] Furthermore, a mist ejection hole 11a is formed on the first turntable 11. At the point when the first turntable 11 stops, mist is ejected from the mist ejection hole 11a for a predetermined time. As a result, the toy car 50 produces white smoke due to tire friction or stirs up dust due to tire drift.

[0040] The following is a detailed description of the toy turntable 100.

[0041] Appearance Composition

[0042] like Figure 1 As shown, an operation panel 13, configured as a short cylindrical shape, with a rectangular inclined surface that slopes forward near the front, is attached to the main body 10. A power switch 14 and a start switch 15 are provided on the operation panel 13.

[0043] In addition, the upper surface of the main body 10 is flat, and a first turntable 11 and a second turntable 12 are provided thereon. The second turntable 12 is located at an eccentric part within the first turntable 11.

[0044] Internal Composition

[0045] Figure 3 This is a three-dimensional diagram of a toy turntable 100, showing a portion of its components.

[0046] As shown in the figure, the toy turntable 100 is assembled on the main body 10 with a workbench unit 20, a cylindrical gear body 21, a water tank 31 for a sprayer, and an annular water receiving container 23.

[0047] (Workbench Unit 20)

[0048] The worktable unit 20 is an integrated unit consisting of the first turntable 11, the second turntable 12 and their surrounding components.

[0049] Figure 4 This is a perspective view of the worktable unit 20 in the state of having its top plate 20a separated. Figure 5 The lower frame 20b is a perspective view showing the state of the assembled peripheral components.

[0050] The worktable unit 20 has a top plate 20a constituting the first turntable 11, a lower frame 20b and a middle plate 20c that fix the peripheral components of the first turntables 11 and 12.

[0051] (Bottom box 20b)

[0052] A circular opening 22a is formed in the center of the lower frame 20b. The edge of the opening 22a is surrounded by an annular protrusion 22b. The annular protrusion 22b is hollow, and its lower side is an annular recess (not shown). The upper part of the cylindrical gear body 21, on which the annular gears 21a and 21b are formed, enters the annular recess. Moreover, a portion of the annular gear 21a on the upper side of the cylindrical gear body 21 is exposed through a cut 22c formed on the outer wall of the annular protrusion 22b.

[0053] (Fog passage 24)

[0054] Additionally, a lower passage portion 24a constituting the lower half of the mist passage 24 is formed in the lower frame 20b. This lower passage portion 24a extends outward from the inside of the annular protrusion 22b, and its bottom slopes downward from the outside of the annular protrusion 22b inward. A drain hole 24c is formed on the bottom of this lower passage portion 24a, inside the annular protrusion 22b. The drain hole 24c is located above the water receiving portion 23b, which will be described later.

[0055] (Rotary switching mechanism 25)

[0056] Figure 6 This is a three-dimensional view of the lower part of the rotary switching mechanism 25.

[0057] A rotary switching mechanism 25 is provided between the lower frame 20b and the middle plate 20c, on the outer side of the annular protrusion 22b. The rotary switching mechanism 25 is composed of a planetary gear mechanism. The planetary gear mechanism includes a sun gear 25a, two planetary gears 25b and 25c revolving around the sun gear 25a, and a planet carrier 25d connecting the sun gear 25a and the planetary gears 25b and 25c.

[0058] The sun gear 25a meshes with the ring gear 21a on the upper side of the cylindrical gear body 21. The sun gear 25a is mounted on the rotating shaft 25e with free rotation. The upper end of the rotating shaft 25e is a fitting portion 25f with a regular hexagonal cross-section. The fitting portion 25f fixes the second turntable 12 on the rotating shaft 25e by fitting with a recess (not shown) under the second turntable 12.

[0059] Furthermore, an L-shaped planetary carrier 25d is fixedly mounted on the rotating shaft 25e. As the planetary gears 25b and 25c revolve around the sun gear 25a, the planetary carrier 25d rotates around the rotating shaft 25e, causing the second turntable 12 to rotate in a direction corresponding to the rotation direction of the planetary carrier 25d. In other words, the second turntable 12 moves within the revolution range of the planetary gears 25b and 25c (the rotation range of the planetary carrier 25d) in a direction corresponding to the rotation direction of the planetary carrier 25d. The revolution range of the planetary gears 25b and 25b is the range of the slots 25j and 25k where the planetary gears 25b and 25b engage, and the second turntable rotates within this range.

[0060] Additionally, the rotary switching mechanism 25 includes: a first output gear 25g capable of meshing with planetary gear 25b, an intermediate gear 25h capable of meshing with planetary gear 25c, and a second output gear 25i that always meshes with the intermediate gear 25h. The first output gear 25g and the second output gear 25i protrude from the cutout 22d portion of the lower frame 20b and engage with internal teeth 26a formed on the inner surface of the annular fixed wall 26 surrounding the worktable unit 20. Figure 3 ) meshing.

[0061] (Action of the rotary switching mechanism 25)

[0062] A. First Turntable 11

[0063] When the sun gear 25a rotates clockwise when viewed from above, the planet gear 25b meshes with the first output gear 25g, which rotates clockwise when viewed from above, rotating on the internal gear 26a. As a result, the first turntable 11 rotates counterclockwise when viewed from above.

[0064] On the other hand, when the sun gear 25a rotates counterclockwise in view from above, the planet gear 25c meshes with the intermediate gear 25h, and the second output gear 25i rotates clockwise in view from above, rotating on the internal gear 26a. As a result, the first turntable 11 rotates counterclockwise in view from above.

[0065] B. Second Turntable 12

[0066] Since the star gear 25a can idle on the rotating shaft 25e, the second turntable 12, which is fixed on the rotating shaft 25e, will not rotate even if the star gear 25a rotates. The second turntable 12 rotates only because the rotating shaft 25e, which fixes the second turntable 12, rotates.

[0067] Since the rotating shaft 25e is fixed on the planetary gear carrier 25d, it rotates only when the planetary gear carrier 25d rotates.

[0068] That is, the rotating shaft 25e rotates only when the planetary gears 25b and 25c change their meshing relationship and the planetary carrier 25d rotates.

[0069] Specifically, when the sun gear 25a changes its direction of rotation, the rotation axis 25e rotates only during the period when the planet gears 25b and 25c revolve around the sun gear 25a. The rotation direction of the second turntable 12 is the same as the rotation direction of the sun gear 25a.

[0070] (Other components)

[0071] On the lower frame 20b, a gear 27 is provided at a position opposite to the rotary switching mechanism 25 across the center. A portion of the gear 27 protrudes from the cutout 22e in the lower frame 20b. This gear 27 is connected to the annular fixed wall 26 ( Figure 3 The gear 27 engages with the internal teeth 26a of the first output gear 25g and the second output gear 25i. By engaging with the internal teeth 26a simultaneously with the first output gear 25g and the second output gear 25i, the gear 27 enables the lower frame 20b and even the worktable unit 20 to rotate stably around a predetermined axis.

[0072] In addition, such as Figure 5 As shown, three rollers 28a, 28b, and 28c are equally spaced along the circumference on the lower frame 20b. These three rollers 28a, 28b, and 28c pass through the base plate 10b below the worktable unit 20. Figure 3 The table rotates on the table, thus allowing the worktable unit 20 to rotate smoothly.

[0073] (Medium plate 20c)

[0074] Figure 7 This is a 3D view of the bottom of the 20c mid-plate.

[0075] The middle plate 20c serves to fix the surrounding components together with the lower frame 20b.

[0076] A mist outlet 23a, which is described later, is formed in the center of the middle plate 20c. Figure 10 The canopy 29 is located above the fog. The canopy 29 is formed in a generally semi-domed shape. The canopy 29 is designed to be generally semi-domed so that when the fog on the canopy 29 forms water droplets, the water droplets drip down along the canopy 29 and are collected by an annular water collection container 23. Therefore, the lower edge of the curved canopy 29 is located above the annular water collection container 23.

[0077] Additionally, on the middle plate 20c, there is an upper passage portion 24b that forms the upper half of the fog passage 24 that connects to the ceiling 29. The upper passage portion 24b and the aforementioned lower passage portion 24a combine to form the fog passage 24.

[0078] (Top plate 20a)

[0079] Figure 8 This is a three-dimensional view of the lower part of the top plate 20a.

[0080] The top plate 20a forms the first turntable 11. The edges of the top plate 20a are chamfered and slightly drooping. The top plate 20a is joined to the lower frame 20b by screws (not shown).

[0081] A pipe 20d is formed on the lower surface of the top plate 20a, which is connected to the fog passage 24 and delivers fog to the aforementioned fog outlet 11a.

[0082] (Sprayer 30)

[0083] Figure 9 This is an exploded perspective view of sprayer 30.

[0084] A sprayer 30 that generates mist through ultrasonic vibration is provided on the main body 10. The sprayer 30 has a water tank 31 for storing water that serves as the mist source. A circular hole 31c is formed on the upper cover 31a of the water tank 31, through which the upper part of a cylindrical water absorber 31b is inserted from below. Furthermore, an arc-shaped water injection hole 31d for injecting water is formed on the upper cover 31a. On the other hand, a cylindrical water absorber 31b and a spring 31e that applies upward force to the water absorber 31b are provided inside the container 31. The spring 31e serves to bring the upper end of the water absorber 31b into contact with the piezoelectric element 32, which will be described later.

[0085] like Figure 10 As shown, the water tank 31 is configured to be detachable from a recess 10c provided on the lower surface of the main body 10.

[0086] Figure 11 This is a perspective view illustrating the arrangement structure of the piezoelectric element 32.

[0087] The sprayer 30 has a piezoelectric element 32 that is separate from the water tank 31. The piezoelectric element 32 is fixed to the base plate 10d of the canopy that forms the recess 10c. When the tank 31 is installed on the recess 10c, the upper end of the water-absorbing body 31b abuts against the lower surface of the piezoelectric element 32 through the hole 10e in the canopy.

[0088] (Water receiving container 23)

[0089] Figure 12 This is a 3D view of water receiving container 23. Figure 13 This is a three-dimensional view of the lower part of the water receiving container 23.

[0090] An annular water-receiving container 23 is fixed to the piezoelectric element 32. The water-receiving portion 23b of the water-receiving container 23 is horizontally divided by a cylindrical outer wall and an inner wall. The cylindrical inner wall forms a spray nozzle 23a. The spray nozzle 23a prevents the diffusion of the mist formed by the sprayer 30 and guides the mist to the ceiling.

[0091] A water passage hole 23c is formed on the bottom plate of the water receiving part 23b, and a water passage pipe 23d communicating with the water passage hole 23c is attached to the lower surface of the bottom plate. Water accumulated in the water receiving part 23b is recycled into the water tank 31 through the water passage pipe 23d.

[0092] (Cylindrical gear body 21)

[0093] A cylindrical gear body 21 is provided on the outside of the water receiving container 23 in a manner that surrounds the water receiving container 23. The cylindrical gear body 21 serves to mediate the power from the power unit 40 (described later) to the worktable unit 20.

[0094] Ring gears 21a and 21b with external teeth are formed on the upper and lower periphery of the cylindrical gear body 21. Moreover, the lower ring gear 21b meshes with the output gear 42i of the power unit 40. On the other hand, as described above, the sun gear 25a meshes with the upper ring gear 21a.

[0095] (Power unit 40)

[0096] Figure 14 This is a perspective view showing the components constituting the power unit 40 and the cylindrical gear body 21.

[0097] The power unit 40 has an electric motor 41 capable of rotating in both directions and a power transmission mechanism 42 for transmitting the power of the electric motor 41. The power transmission mechanism 42, as a rotating element, has a small pulley 42a, a belt 42b, a large pulley 42c, and gears 42d-42i attached to the electric motor.

[0098] Small pulley 42a, belt 42b, and large pulley 42c constitute a winding transmission mechanism. Gear 42d is an integral part of the large pulley 42c, and gear 42e is a crown gear that meshes with gear 42d and changes its rotation direction. Gear 42f is an integral part of gear 42e, and gear 42g meshes with gear 42f. Additionally, gear 42h is a gear coaxially mounted with gear 42g via a sliding clutch mechanism (not shown) and meshes with output gear 42i.

[0099] In addition, the power unit 40, the cylindrical gear body 21 and the rotary switching mechanism 25 constitute the actuation device.

[0100] Functional Composition

[0101] The toy turntable 100, as its main functional structure, has a storage section and a control section.

[0102] The storage unit has a storage device such as flash memory that can write and read data. This storage unit stores the program for operating the toy turntable 100 and the data required to execute the program.

[0103] In addition, the control unit comprises a microcontroller unit and peripheral circuitry. The control unit reads programs from the storage unit and executes processing and control according to each program.

[0104] Furthermore, the toy turntable 100 may include, for example, a detection unit that detects the operation of a start switch or mode switch mounted on the main body 10. Signals from these detection units are sent to a control unit, which controls the operation of the motor 41 and the piezoelectric element 32 based on these signals. The control of the motor 41 includes controlling the forward and reverse rotation of the motor 41, controlling the rotation time, controlling the switching point of forward and reverse rotation, and controlling the switching speed of forward and reverse rotation. For example, PWM (Pulse Width Modulation) control is used for these controls. Additionally, the control of the piezoelectric element 32 includes controlling the spray timing and controlling the spray duration.

[0105] (Effects of the implementation method)

[0106] The toy turntable 100 constructed as described above can achieve the following effects.

[0107] First, because the second turntable 12, which has a smaller diameter, is located at an eccentric part within the first turntable 11 with a larger diameter, toys placed on the second turntable 12 can be moved in various ways. That is, since not only the rotation of the second turntable 12 can be utilized, but also its revolution, a toy turntable with complex movements and high entertainment value can be realized.

[0108] Furthermore, since the second turntable 12 rotates at a different time point than the first turntable 11, it is possible to make the toy perform unexpected actions, for example, when a toy is placed on the second turntable 12.

[0109] In addition, the first turntable 11 rotates in one direction without being restricted to the forward or reverse rotation of the motor 41, and stops rotating when switching between forward and reverse rotation. The second turntable 12 rotates within a specified range in the direction corresponding to the switching mode when switching between forward and reverse rotation of the motor 41, thus enabling the toy to perform unprecedented new actions.

[0110] Furthermore, in the rotary switching mechanism 25 including the planetary gear mechanism and the electric motor 41, a novel mechanism can be provided to the public, which causes the first turntable 11 to rotate in one direction unaffected by the forward and reverse rotation of the electric motor 41, and causes the first turntable 11 to stop rotating when switching between forward and reverse rotation, and causes the second turntable 12 to rotate within a specified range in the direction corresponding to the switching mode when switching between forward and reverse rotation of the electric motor 41.

[0111] Because a locking part for locking the toy is provided on the second turntable 12, the toy can be stably held on the second turntable 12.

[0112] Since a U-shaped cutout 12b opening upwards is formed on the locking part 12a, toys with a locking part corresponding to the U-shaped cutout can be easily locked.

[0113] As a toy, since it uses a toy car 50 which is a wheeled toy, it is possible to create the appearance of the toy car 50 driving and drifting.

[0114] In addition, since the sprayer 30 is provided, a mist spraying hole 11a is formed on the first turntable 11, and mist is sprayed from the mist spraying hole 11a onto the first turntable 11, so that the appearance of the car toy 50 stirring up sand and dust can be created.

[0115] A mist outlet 23a of the sprayer 30 is formed at the lower center of the first turntable 11, and a mist outlet 11a is formed at the eccentric part of the first turntable 11. Furthermore, a mist passage 24 is provided on the first turntable 11 to guide the mist from the mist outlet 23a into the mist outlet 11a. Therefore, even if the first turntable 11 is rotated, mist can be sprayed from the mist outlet 11a at any position.

[0116] A ring-shaped water receiving portion 23b is formed around the spray nozzle 30a. The mist passage 24 is configured such that water droplets or water flowing down through the mist passage 24 are separated from the mist flowing in the mist passage 24 and flow to the water receiving portion 23b. Therefore, water droplets or water can be recovered without hindering the formation of mist by the piezoelectric element 32.

[0117] Furthermore, since a water pipe 23d is provided on the lower surface of the water receiving part 23b, which communicates with the water passage hole 23c formed on the bottom plate of the water receiving part 23b, and the water pipe 23d is inserted into the water injection hole 31d of the tank 31 of the sprayer 30, water configured to be injected from the mist outlet 11a flows to the water tank 31 through the water receiving part 23b and the water pipe 23d, so water can be replenished from the mist outlet 11a without disassembling the water tank 31.

[0118] Variation Example

[0119] In the toy turntable 100 described in the above embodiment, a toy car 50 is listed as an example of a toy, but it can also be a doll toy, a furniture toy, or other toys. If it is a doll toy, the arrangement, orientation, and distance between the dolls on the stage can be greatly changed; if it is a furniture toy, the arrangement, orientation, and distance between the furniture can be greatly changed. Furthermore, the toys placed on the first turntable 11 and the second turntable 12 are not limited to one type.

[0120] In addition, in the toy turntable 100 of the above embodiment, the first turntable 11 and the second turntable 12 are configured to be rotated electrically, but they can also be rotated manually or by hand.

[0121] Furthermore, in the toy turntable 100 of the above embodiment, although the first turntable 11 and the second turntable 12 are configured to rotate both by electric power, one of them can also be rotated manually.

[0122] Furthermore, in the toy turntable 100 of the above embodiment, the surfaces of the first turntable 11 and the second turntable 12 are on the same plane, but the surfaces of the first turntable 11 and the second turntable 12 may also have steps. Alternatively, the second turntable 12 may be configured to be axially movable relative to the rotation axis 25e, and vertical movement may be applied by a cam.

[0123] Furthermore, in the toy turntable 100 of the above embodiment, the axis of the first turntable 11 is parallel to the axis of the second turntable 12, but a bevel gear or the like can be provided in the gear connected to the rotation axis 25e to change the direction of the axis of the first turntable 11 and the axis of the second turntable 12.

[0124] In addition, in the toy turntable 100 of the above embodiment, the locking part 12a has a U-shaped cutout 12b, but the locking part 12a can be a recess for fitting the toy, or a magnet or other structure that uses magnetic force to fix the toy.

[0125] Furthermore, in the toy turntable 100 of the above embodiment, the second turntable 12 is rotated at the moment the first turntable 11 stops rotating by the actuation device. However, it is also possible to install, for example, a toothed gear in the actuation device, so that the first turntable 11 and the second turntable 12 rotate at different times. Alternatively, motors can be provided for the first turntable 11 and the second turntable 12 respectively, so that they rotate independently.

[0126] Figure Labels

[0127] 10 main bodies

[0128] 10b base plate

[0129] 10c concave part

[0130] 10D base plate

[0131] 10e hole

[0132] 11 large-diameter turntable (first turntable)

[0133] 11a mist nozzle

[0134] 12-path turntable (second turntable)

[0135] 12a Caliper

[0136] 12b U-shaped incision

[0137] 13 operating panels

[0138] 14 Power Switch

[0139] 15 Start Switch

[0140] 20 workbench units

[0141] 20a top plate

[0142] 20b bottom frame

[0143] 20c mid plate

[0144] 21 Cylindrical gear body

[0145] 21a, 21b ring gears

[0146] 22a opening

[0147] 22b Annular protrusion

[0148] 22c, 22d, 22e incisions

[0149] 23 Water receiving container

[0150] 23a mist outlet

[0151] 23b Water inlet

[0152] 23c vent

[0153] 23d water pipe

[0154] 24-hour fog passage

[0155] 24a Lower Channel Section

[0156] 24b upper pathway section

[0157] 24c drain hole

[0158] 25 Rotary switching mechanism

[0159] 25a Solar Gear

[0160] Planetary gears 25b and 25c

[0161] 25d planetary support

[0162] 25e rotating shaft

[0163] 25f Fitting Part

[0164] 25g first output gear

[0165] 25h intermediate gear

[0166] 25i Second Output Gear

[0167] 26 Annular Fixed Wall

[0168] 26a internal teeth

[0169] 27 gears

[0170] 28a, 28b, 28c rollers

[0171] 29 canopies

[0172] 30 sprayers

[0173] 31 water tanks

[0174] 31a top cover

[0175] 31b absorbent

[0176] 31c round hole

[0177] 31d water injection hole

[0178] 31e spring

[0179] 32 piezoelectric elements

[0180] 40 power units

[0181] 41 Electric Motor

[0182] 42 Power Transmission Mechanism

[0183] 42a small pulley

[0184] 42b belt

[0185] 42c large pulley

[0186] 42d-42i gears

[0187] 50 Car Toys

[0188] 100 Toy Spinner

Claims

1. A toy turntable for moving a loaded toy, characterized in that, include: The first turntable is configured to rotate about a first axis. and The second turntable is located at the eccentric part inside the first turntable and is configured to rotate about the second axis.

2. The toy turntable as described in claim 1, characterized in that, The device includes an actuation mechanism that rotates the first turntable and the second turntable at independent time points.

3. The toy turntable as described in claim 2, characterized in that, The actuation device includes: an electric motor capable of rotating the first turntable and the second turntable in both directions, and a control unit for controlling the rotation of the electric motor in both directions; The actuation device causes the first turntable to rotate in one direction independently of the forward and reverse rotation of the motor, and stops the rotation of the first turntable when switching between forward and reverse rotation. When the forward and reverse rotating motor switches between forward and reverse rotation, the second turntable rotates within a specified range in the direction corresponding to the switching mode.

4. The toy turntable as described in claim 3, characterized in that, The power transmission mechanism that transmits the electric motor power to the first turntable and the second turntable includes a rotation switching mechanism containing a planetary gear mechanism. The first turntable rotates in one direction independently of the forward and reverse rotation of the electric motor through the rotation switching mechanism. The second turntable is fixed on the rotation shaft of the planet carrier of the planetary gear mechanism and rotates within a specified range when the forward and reverse rotation of the electric motor is switched as the planet carrier rotates.

5. The toy turntable as described in claim 4, characterized in that, The second turntable is provided with a locking part for locking the toy.

6. The toy turntable as described in claim 5, characterized in that, A U-shaped cut that opens upwards is formed in the locking part.

7. The toy turntable as described in claim 6, characterized in that, The toy is a wheeled toy that is locked in place by inserting the axle into the U-shaped cut.

8. The toy turntable as claimed in any one of claims 1 to 7, characterized in that, It is equipped with a sprayer, and a mist spraying hole is formed on the first turntable, from which mist is sprayed onto the first turntable.

9. The toy turntable as described in claim 8, characterized in that, The spray outlet of the sprayer is formed below the center of the first turntable, the spray hole is formed at an off-center position of the first turntable, and a mist passage is provided on the first turntable to guide the mist from the spray outlet into the spray hole.

10. The toy turntable as described in claim 9, characterized in that, The mist outlet is divided by a cylinder, and an annular water receiving part is formed around the cylinder. The mist passage is configured such that water droplets or water flowing down through the mist passage separate from the mist flowing through the mist passage and flow to the water receiving part.

11. The toy turntable as described in claim 10, characterized in that, A water passage hole is formed in the water receiving part, and a water passage pipe communicating with the water passage hole is provided on the lower surface of the water receiving part. The water passage pipe is inserted into the water injection hole of the water tank of the sprayer. Water injected from the mist nozzle flows through the water receiving part and the water pipe to the water tank.

Citation Information

Patent Citations

  • Table for toy

    JP2018157946A