A toy globe

CN224762437UActive Publication Date: 2026-09-18林金成
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Patent Information

Application Number
CN202522053220.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-09-18
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

[0004]传统的地球仪或展示类玩具通常是静态的,孩子只能看,不能玩,但是设置成电动的气球仪只能简单地进行匀速圆周运动,并且许多玩具的壳体和内部结构连接不牢固,容易在玩耍中散架;传动地球仪在转动过程中容易打滑,导致外部部件不转或转动不同步;

Benefits of technology

[0016]Compared to existing technologies, this toy globe features a threaded connection between the first and second outer shells. This facilitates quick assembly and disassembly for children or parents while ensuring the airtightness and stability of the assembled shell, preventing the internal rotating components from being exposed or shifting. In terms of the rotational transmission design, the square and round plug-in posts at both ends of the rotating component are respectively matched with the second plug-in tube of the second shell and the first plug-in tube of the first shell. This ensures that the gear drive unit can drive the entire shell to rotate synchronously, resulting in high and stable transmission efficiency. Simultaneously, the eccentric counterweight column built into the rotating component creates an eccentric center-of-gravity trajectory when the rotating component drives the entire shell to rotate, causing the shell to rotate irregularly on the light-emitting base rather than in a single uniform circular motion, simulating a dynamic effect close to nature.

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Abstract

The utility model discloses a kind of toy globes, specifically related to the technical field of globe toy, including luminous pedestal and globe main body, the upper side of the luminous pedestal is connected with globe main body and rolls, the globe main body includes first shell, second shell, rotating component, first follow-up doll and second follow-up doll, the side of the first shell is screw-connected with second shell, rotating component is placed between the first shell and the second shell, the rotating component is connected with a group of first follow-up doll and two groups of second follow-up doll on the side of the first shell and the second shell adsorption, the rotating component includes magnetic attraction trigger component;While the counterweight eccentric column built-in in rotating component, when rotating component drives total shell to rotate, eccentric center of gravity track is formed, let total shell do irregular rotation on luminous pedestal, not single uniform circular motion, simulate close natural dynamic effect.
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Description

Technical Field

[0001] This utility model relates to the field of globe toy technology, and more specifically, to a toy globe. Background Technology

[0002] Globe toys are three-dimensional models of the Earth scaled down to a minimum, which help children learn about the world by visually displaying geographical elements;

[0003] The existing publication number (CN207966287U) discloses a globe toy, which includes a sphere and a support frame. The support frame has an arc-shaped portion for the sphere to rotate and a rod portion for supporting the arc-shaped portion. A roly-poly base is integrally connected to the lower end of the rod portion. In use, the globe toy is placed on a table, and the roly-poly base supports the entire toy. During learning, when the sphere rotates to a certain position, a horizontal yaw force is applied to the sphere, causing the globe to yaw at a certain angle, making it convenient for children to observe different positions on the sphere. When not used for learning, the globe toy can also be used as a roly-poly decoration. This increases the fun of the globe toy and can stimulate children's learning interest. The inventors discovered the following problems with the existing technology during the development of this utility model:

[0004] Traditional globes or display toys are usually static, meaning children can only look at them but not play with them. However, electric globes can only perform simple uniform circular motions, and many toys have loose connections between their shells and internal structures, making them prone to falling apart during play. Transmission globes are also prone to slipping during rotation, causing external parts to stop rotating or rotate out of sync.

[0005] Therefore, a toy globe is proposed to address the above problems. Utility Model Content

[0006] In order to overcome the above-mentioned defects of the prior art, the present invention provides a toy globe to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a toy globe, comprising a light-emitting base and a globe body, wherein the globe body is rotatably connected above the light-emitting base, and the globe body includes a first outer shell, a second outer shell, a rotating component, a first rotating doll, and a second rotating doll. The second outer shell is threadedly connected to the side of the first outer shell, and a rotating component is placed between the first and second outer shells. The rotating component is located on one side of the first and second outer shells and is magnetically connected to a set of first rotating dolls and two sets of second rotating dolls. The rotating component includes a magnetic trigger component.

[0008] Preferably, the rotating assembly includes a housing, a magnetic end, a magnetic control end, and a magnetic triggering assembly. The outer diameter surface of the housing is provided with two sets of magnetic ends, a magnetic control end is provided between the two sets of magnetic ends, and a magnetic triggering assembly is installed between the magnetic control ends.

[0009] Preferably, the rotating assembly further includes a gear drive assembly, a counterweight eccentric column, a circuit board, and a speaker. The counterweight eccentric column is provided on one side of the gear drive assembly, and a circuit board is provided on the other side of the gear drive assembly. The speaker is placed inside the housing.

[0010] Preferably, the magnetic triggering assembly includes a magnetic lifting shell, a placement slot, a magnet, a push-to-lift corner, and a trigger switch. The magnetic lifting shell has a placement slot inside, and a magnet is placed inside the placement slot. The magnetic lifting shell has a push-to-lift corner on its side, and a trigger switch is placed at the trigger end of the push-to-lift corner.

[0011] Preferably, the rotating assembly is located on one side of the first outer shell and the second outer shell, and is attached to a first set of rotating dolls and two sets of second rotating dolls. The first outer shell is provided with a first insertion tube, and the second outer shell is provided with a second insertion tube.

[0012] Preferably, the rotating component is provided with a square plug and a round plug at both ends. The rotating component is connected to the second plug and the first plug of the second housing and the first housing through the square plug and the round plug. When the gear drive group drives the square plug to rotate, it drives the first housing and the second housing to rotate irregularly on the light-emitting base.

[0013] Preferably, the light-emitting base has a light-emitting planetary ball on its side, a placement seat on its top, and three sets of ball bearings are equidistantly arranged at the arc of the placement seat, with spotlights arranged between the three sets of ball bearings.

[0014] Preferably, the bottom of the light-emitting base is provided with a sealing cover, the top of the sealing cover is provided with a placement frame, and the ball bearing, the spotlight and the placement frame are fixedly connected.

[0015] The technical effects and advantages of this utility model are as follows:

[0016] Compared to existing technologies, this toy globe features a threaded connection between the first and second outer shells. This facilitates quick assembly and disassembly for children or parents while ensuring the airtightness and stability of the assembled shell, preventing the internal rotating components from being exposed or shifting. In terms of the rotational transmission design, the square and round plug-in posts at both ends of the rotating component are respectively matched with the second plug-in tube of the second shell and the first plug-in tube of the first shell. This ensures that the gear drive unit can drive the entire shell to rotate synchronously, resulting in high and stable transmission efficiency. Simultaneously, the eccentric counterweight column built into the rotating component creates an eccentric center-of-gravity trajectory when the rotating component drives the entire shell to rotate, causing the shell to rotate irregularly on the light-emitting base rather than in a single uniform circular motion, simulating a dynamic effect close to nature.

[0017] Compared with existing technologies, this toy globe works by having a first rotating doll adhere to the magnetic control end of the rotating component. The magnetic force of the doll causes the magnet in the slot inside the magnetic trigger component to move. The moving magnet touches the magnetic lifting shell, causing the magnetic lifting shell to move the side push-up corner towards the trigger switch. Finally, the trigger switch controls the circuit board to drive the gear drive group to operate. The entire triggering process does not require manually pressing the switch. It can be started by the interactive action of the doll adhering. The operation is intuitive and full of exploration, which is in line with children's love of hands-on interaction. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0019] Figure 2 This is a schematic diagram of the unfolded structure of the main body of the globe of this utility model.

[0020] Figure 3 This is a schematic diagram of the rotating component of this utility model.

[0021] Figure 4 This is a top view of the internal structure of the rotating component of this utility model.

[0022] Figure 5 This is a schematic diagram of the structure of the first housing of this utility model.

[0023] Figure 6 This is a schematic diagram of the unfolded structure of the magnetic triggering component of this utility model.

[0024] Figure 7 This is a schematic diagram of the internal structure of the rotating assembly of this utility model.

[0025] Figure 8 This is a schematic diagram of the counterweight eccentric column of this utility model.

[0026] Figure 9 This is a schematic diagram of the structure of the light-emitting base of this utility model.

[0027] Figure 10 This is a schematic diagram of the unfolded structure of the light-emitting base of this utility model.

[0028] Figure 11 This is a schematic diagram of the structure of the placement base of this utility model.

[0029] The attached diagram is labeled as follows: 1. Illuminated base; 2. Globe body; 3. Illuminated planetary sphere; 4. First rotating doll; 5. Second rotating doll; 6. First outer shell; 7. First insertion tube; 8. Second outer shell; 9. Second insertion tube; 10. Rotating assembly; 1001. Shell; 1002. Speaker; 11. Square insertion post; 12. Magnetic end; 13. Magnetic control end; 14. Gear drive assembly; 15. Counterweight eccentric post; 16. Magnetic trigger assembly; 17. Circuit board; 18. Magnetic lifting shell; 1801. Placement slot; 19. Magnet; 20. Push lifting corner; 21. Trigger switch; 22. Ball bearing; 23. Spotlight; 24. Placement rack; 25. Sealing cover; 26. Placement base. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] Example

[0032] As attached Figures 1 to 11 The toy globe shown includes a light-emitting base 1 and a globe body. The globe body 2 is slidably connected to the top of the light-emitting base 1. The globe body 2 includes a first outer shell 6, a second outer shell 8, a rotating component 10, a first rotating doll 4 and a second rotating doll 5. The second outer shell 8 is threaded to the side of the first outer shell 6. The rotating component 10 is placed between the first outer shell 6 and the second outer shell 8. The rotating component 10 is located on one side of the first outer shell 6 and the second outer shell 8 and is magnetically connected to a set of first rotating dolls 4 and two sets of second rotating dolls 5. The rotating component 10 includes a magnetic trigger component 16.

[0033] The globe body 2 is the core display part of the toy, mainly composed of a first outer shell 6, a second outer shell 8, a first rotating doll 4, a second rotating doll 5, and a rotating assembly 10. When using the toy, first place the globe body 2 on the light-emitting base, aligning the gaps between the first outer shell 6 and the second outer shell 8 with the placement seat 26 of the light-emitting base 1. Then, the second rotating doll 5 is attached to the magnetic end 12 of the rotating assembly 10, and the first rotating doll 4 is attached to the magnetic control end 13. The magnetic end 12 of the first rotating doll 4 then attracts the magnet 19 inside the magnetic trigger assembly 16. The attracted magnet 19 then touches the magnetic lifting shell 18, causing the magnetic lifting angle of the magnetic lifting shell 18 to move and push the trigger switch 21. At this time, the trigger switch 21 controls the circuit board 17 and drives the gear drive group 14. 4. The rotating assembly 10 rotates, causing the square plug-in post 11 to rotate as well. The square plug-in post 11 is connected to the second plug-in tube 9 of the second outer shell 8. As the rotating assembly 10 rotates, it also rotates the second outer shell 8. At this time, the total shell formed by the combination of the first outer shell 6 and the second outer shell 8 rotates on the light-emitting base 1 via the ball bearings 22. Due to the counterweight eccentric post 15 inside the rotating assembly 10, the total shell rotates irregularly on the light-emitting base 1 as the rotating assembly 10 rotates. When the total shell rotates along the light-emitting base 1, the first rotating doll 4 and the second rotating doll 5 are affected by gravity and magnetism, and rotate along the connected magnetic control end 13 and magnetic end 12. This causes the first rotating doll 4 and the second rotating doll 5 to rotate simultaneously when the total shell rotates.

[0034] In a preferred embodiment, the first outer shell 6 and the second outer shell 8 are joined together by a threaded connection. The threaded connection design facilitates the assembly and disassembly of both shells and ensures the sealing and stability of the assembled shell. The two shells together form a total shell simulating the shape of the Earth. In the internal space between the first outer shell 6 and the second outer shell 8, the rotating component 10 is the core component that drives the rotation of the globe body 2. Its position corresponds to the central area of ​​the shell, ensuring that the rotation can drive the entire total shell to move synchronously. The rotating component 10 includes a shell 1001, a magnetic end 12, a magnetic control end 13, and a magnetic trigger component 16. Two sets of magnetic trigger components are provided on the outer diameter surface of the shell 1001. The magnetic end 12 is provided with a magnetic control end 13 between the two sets of magnetic ends 12. A magnetic triggering component 16 is installed between the magnetic control ends 13. The housing 1001 of the rotating component 10 provides a space for accommodating and protecting all internal parts. The outer diameter surface of the housing 1001 is provided with two sets of magnetic ends 12. The two sets of magnetic ends 12 are symmetrically or at a specific interval and are used to attract the second rotating doll 5. Between the two sets of magnetic ends 12, there is a magnetic control end 13. The magnetic control end 13 is specifically used to attract the first rotating doll 4. The magnetic triggering component 16 is installed in the internal area of ​​the magnetic control end 13 to ensure that the first rotating doll 4 can directly act on the magnetic triggering component 16 when it is attracted.

[0035] In a preferred embodiment, the rotating assembly 10 further includes a gear drive assembly 14, a counterweight eccentric column 15, a circuit board 17, and a speaker 1002. The counterweight eccentric column 15 is provided on one side of the gear drive assembly 14, and the circuit board 17 is provided on the other side of the gear drive assembly 14. The speaker 1002 is placed inside the housing 1001.

[0036] In a preferred embodiment, the magnetic trigger assembly 16 includes a magnetic lifting shell 18, a placement groove 1801, a magnet 19, a push-up corner 20, and a trigger switch 21. The magnetic lifting shell 18 has a placement groove 1801 inside, and the magnet 19 is placed inside the placement groove 1801. The push-up corner 20 is provided on the side of the magnetic lifting shell 18, and the trigger end of the push-up corner 20 is placed with the trigger switch 21. The magnetic lifting shell 18 has a specific movable structure, with a placement groove 1801 inside, and the magnet 19 is placed in the placement groove 1801. The magnet 19 can move slightly within the placement groove 1801. The push-up corner 20 extends from the side of the magnetic lifting shell 18, and the end of the push-up corner 20 corresponds to the trigger end of the trigger switch 21. When the first rotating doll 4 is attached to the magnetic control end 13, the magnetic force of the doll will drive the magnet 19 in the placement slot 1801 to move. The moving magnet 19 will touch the magnetic lifting shell 18, causing the magnetic lifting shell 18 to undergo slight deformation or displacement, which in turn drives the push lifting corner 20 to move towards the trigger switch 21. Finally, the push lifting corner 20 touches and triggers the switch 21, realizing the trigger chain for function activation.

[0037] In a preferred embodiment, the rotating component 10 is attached to one side of the first outer shell 6 and the second outer shell 8 with a set of first rotating dolls 4 and two sets of second rotating dolls 5. The first outer shell 6 is provided with a first insertion tube 7 and the second outer shell 8 is provided with a second insertion tube 9. The two insertion tubes are respectively adapted to the insertion structures at both ends of the rotating component 10, providing an interface for the connection between the rotating component 10 and the outer shell, and ensuring that the rotating component 10 can effectively drive the outer shell to move synchronously when it rotates.

[0038] In a preferred embodiment, the rotating assembly 10 has a square plug-in post 11 and a round plug-in post at both ends. The rotating assembly 10 is connected to the second housing 8 and the first housing 6 via the square plug-in post 11 and the round plug-in post, respectively. When the gear drive group 14 drives the square plug-in post 11 to rotate, it also drives the first housing 6 and the second housing 8 to rotate irregularly on the light-emitting base 1. The square plug-in post 11 is adapted to the second plug-in post 9 inside the second housing 8, and the round plug-in post is adapted to the first plug-in post 7 inside the first housing 6. After the two sets of plug-in posts are inserted into the corresponding plug-in posts, the rotating assembly 10 is connected to the first housing 6 and the second housing 8. When the gear drive group 14 drives the square plug-in post 11 to rotate, it also drives the first housing 6 and the second housing 8 to rotate irregularly. When group 14 starts operating under the control of circuit board 17, it directly drives the square plug post 11 to rotate. The square plug post 11, through its connection with the second plug tube 9, drives the second outer shell 8 to rotate. At the same time, the second outer shell 8 drives the first outer shell 6 through a threaded connection. Finally, the total shell composed of the first outer shell 6 and the second outer shell 8 rotates synchronously. In addition, due to the presence of the counterweight eccentric column 15, the rotating component 10 will form an eccentric center of gravity trajectory during rotation. This eccentric design will cause the rotating component 10 to drive the total shell to rotate on the placement seat 26 of the light-emitting base 1, producing an irregular rotation trajectory, rather than a single uniform circular motion, simulating a more natural dynamic effect and increasing the fun of the toy.

[0039] In a preferred embodiment, the luminous base 1 serves as the support and auxiliary functional carrier for the entire toy. Its structural design revolves around supporting the globe body 2 and creating visual effects. The luminous planet spheres 3 visually echo the globe body 2, simulating a celestial environment and enriching the overall visual presentation. The luminous planet spheres 3 are provided on the side of the luminous base 1. The placement seat 26 has an overall arc-shaped design, which perfectly matches the shape of the globe body 2, ensuring that the globe body 2 can be placed on it. The top of the luminous base 1 is provided with the placement seat 26. Three sets of ball bearings 22 are equidistantly arranged on the arc of the placement seat 26. The ball bearings 22 provide support for the rotation of the globe body 2, reduce friction between the globe body 2 and the placement seat 26, and make the rotation process smoother. Spotlights 23 are provided between the three sets of ball bearings 22. The direction of the spotlights 23 is towards the globe body 2, which can provide light and shadow effects for the globe body 2 when it rotates, enhancing the visual experience.

[0040] In a preferred embodiment, a sealing cover 25 is provided at the bottom of the light-emitting base 1. The sealing cover 25 and the bottom of the light-emitting base 1 form a closed structure, which can protect the internal components and ensure the integrity of the base as a whole. A placement frame 24 is provided at the top of the sealing cover 25. The ball bearing 22 and the spotlight 23 are fixedly connected to the placement frame 24. The structure of the placement frame 24 matches the position of the ball bearing 22 and the spotlight 23. The ball bearing 22 and the spotlight 23 are directly fixed on the placement frame 24. The connection with the sealing cover 25 is achieved through the placement frame 24, thereby ensuring that the ball bearing 22 and the spotlight 23 are not displaced during use.

[0041] In this embodiment, the gear drive assembly 14 and circuit board 17 are commercially available devices known to those skilled in the art. They can be customized or selected according to actual needs. Here, we are only using them without making any structural or functional improvements, and we will not go into detail here.

[0042] The working process of this utility model is as follows: First, when using the toy, the main shell of the globe 2 is placed on the placement seat 26 of the light-emitting base 1. At this time, the gap at the connection between the first shell 6 and the second shell 8 should be aligned with a specific position of the placement seat 26 to ensure that the main shell can accurately fall on the arc area and the ball bearing 22 of the placement seat 26, in preparation for subsequent rotation. Then, the two sets of second rotating dolls 5 are respectively attached to the two sets of magnetic ends 12 of the rotating component 10, and the first rotating doll 4 is attached to the magnetic control end 13. After the first rotating doll 4 is attached, it immediately drives the magnet 19 in the magnetic trigger component 16 to move through the magnetic attraction, thereby triggering the push corner 20 to touch the trigger switch 21.

[0043] After the trigger switch 21 is triggered, it transmits a signal to the circuit board 17. The circuit board 17 then controls the gear drive assembly 14 to start running and simultaneously turns on the speaker 1002. When the gear drive assembly 14 is running, it drives the square plug 11 connected to it to rotate. The square plug 11 drives the second outer shell 8 through the connection with the second plug tube 9. The second outer shell 8 then drives the first outer shell 6 through the threaded connection, causing the main shell to start rotating. At the same time, due to the eccentric effect of the counterweight eccentric column 15 in the rotating assembly 10, the main shell rotates on the placement seat 26 along an irregular trajectory under the support of the ball bearing 22. During this process, the spotlight 23 on the light-emitting base 1 continuously illuminates the main shell, and the light-emitting planetary ball 3 on the side lights up synchronously. Combined with the sound emitted by the speaker 1002, it forms a comprehensive user experience of "dynamic rotation + light and shadow + sound effects". The above is the working principle of this toy globe.

Claims

1. A toy globe, comprising a light-emitting base (1) and a globe body (2), characterized in that: A globe body (2) is slidably connected above the luminous base (1). The globe body (2) includes a first outer shell (6), a second outer shell (8), a rotating component (10), a first rotating doll (4), and a second rotating doll (5). The second outer shell (8) is threadedly connected to the side of the first outer shell (6). The rotating component (10) is placed between the first outer shell (6) and the second outer shell (8). The rotating component (10) includes a magnetic trigger component (16).

2. A toy globe according to claim 1, characterized in that: The rotating assembly (10) includes a housing (1001), a magnetic end (12), a magnetic control end (13), and a magnetic trigger assembly (16). The outer diameter surface of the housing (1001) is provided with two sets of magnetic ends (12), and a magnetic control end (13) is provided between the two sets of magnetic ends (12). A magnetic trigger assembly (16) is installed between the magnetic control ends (13).

3. A toy globe according to claim 2, characterized in that: The rotating assembly (10) also includes a gear drive assembly (14), a counterweight eccentric column (15), a circuit board (17), and a speaker (1002). The counterweight eccentric column (15) is provided on the side of the gear drive assembly (14), and the circuit board (17) is provided on the other side of the gear drive assembly (14). The speaker (1002) is placed inside the housing (1001).

4. A toy globe according to claim 1, characterized in that: The magnetic trigger assembly (16) includes a magnetic lifting shell (18), a placement slot (1801), a magnet (19), a push-to-lift corner (20), and a trigger switch (21). The magnetic lifting shell (18) has a placement slot (1801) inside, and the magnet (19) is placed inside the placement slot (1801). The push-to-lift corner (20) is provided on the side of the magnetic lifting shell (18), and the trigger end of the push-to-lift corner (20) has a trigger switch (21) placed thereon.

5. A toy globe according to claim 1, characterized in that: The rotating assembly (10) is attached to one side of the first shell (6) and the second shell (8) with a first set of rotating dolls (4) and two sets of second rotating dolls (5). The first shell (6) is provided with a first insertion tube (7), and the second shell (8) is provided with a second insertion tube (9).

6. A toy globe according to claim 1, characterized in that: The rotating assembly (10) is provided with a square plug post (11) and a round plug post at both ends. The rotating assembly (10) is connected to the second plug post (9) and the first plug post (7) of the second housing (1001) and the first housing (1001) through the square plug post (11) and the round plug post. When the gear drive group (14) drives the square plug post (11) to rotate, it drives the first housing (6) and the second housing (8) to rotate irregularly on the light-emitting base (1).

7. A toy globe according to claim 1, characterized in that: The light-emitting base (1) has a light-emitting planetary ball (3) on its side and a placement seat (26) on its top. Three sets of ball bearings (22) are equidistantly arranged at the arc of the placement seat (26), and spotlights (23) are respectively arranged between the three sets of ball bearings (22).

8. A toy globe according to claim 7, characterized in that: The bottom of the light-emitting base (1) is provided with a sealing cover (25), and the top of the sealing cover (25) is provided with a placement rack (24). The ball (22), the spotlight (23), and the placement rack (24) are fixedly connected.

Citation Information

Patent Citations

  • Globe toy

    CN207966287U