Gyroscopic toy

CN224735729UActive Publication Date: 2026-09-11ALPHA GROUP CO LTD +2
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Patent Information

Application Number
CN202521868368.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-09-11
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

相关技术中,陀螺的功能较为单一,一经发射,只是单一的进行旋转,导致玩家的参与度较低,缺少一定的观赏性

Benefits of technology

[0003]本实用新型旨在至少在一定程度上解决相关技术中的技术问题之一。为此,本实用新型的一个目的在于提出一种具有变形组件和锁定组件的陀螺玩具,可以实现第一变形组件的自动解锁变形或陀螺玩具自动切换形态的效果,提升陀螺玩具的可玩性和观赏性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a gyro toy relates to the technical field of toys, the gyro toy includes: main part, first deformation subassembly and first locking assembly, first deformation subassembly is connected the main part and has the storage state and the unfolded state, first locking assembly is located the main part, first locking assembly is used for locking first deformation subassembly to the storage state, wherein, first locking assembly includes trigger end, the trigger end is located the circumference of main part, first locking assembly is configured to when the trigger end is triggered, the first deformation subassembly is unlocked, and the first deformation subassembly switches the unfolded state. According to the gyro toy of utility model embodiment, through setting the deformation subassembly that can be triggered and unlocked, can realize the automatic unlocking deformation of first deformation subassembly or the effect of gyro toy automatic switching mode in the process of playing, improves the playability and ornamentalness of gyro toy.
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Description

Technical Field

[0001] This utility model relates to the field of toy technology, and in particular to a spinning top toy. Background Technology

[0002] Spinning tops are a popular type of toy. However, in terms of technology, spinning tops have a relatively simple function; once launched, they simply rotate, resulting in low player engagement and a lack of visual appeal. Utility Model Content

[0003] This invention aims to at least partially solve one of the technical problems in related technologies. Therefore, one objective of this invention is to provide a spinning top toy with a transforming component and a locking component, which can achieve the effect of automatic unlocking and transformation of the first transforming component or automatic switching of the spinning top's form, thereby enhancing the playability and visual appeal of the spinning top toy.

[0004] A spinning top toy according to an embodiment of the present invention includes: a main body, a first transforming component, and a first locking component. The first transforming component is connected to the main body and has a stowed state and an unfolded state. The first locking component is disposed on the main body and is used to lock the first transforming component to the stowed state. The first locking component includes a trigger end disposed at the periphery of the main body. The first locking component is configured to unlock the first transforming component when the trigger end is triggered, and the first transforming component switches to the unfolded state.

[0005] According to the embodiments of the present invention, the spinning top toy, by setting a transforming component that can be triggered to unlock, can achieve the effect of automatic unlocking and transformation of the first transforming component or automatic switching of the spinning top toy during play, thereby improving the playability and visual appeal of the spinning top toy.

[0006] In addition, the spinning top toy according to the above embodiments of this utility model may also have the following additional technical features:

[0007] In some examples of this utility model, the trigger end protrudes from the outer peripheral surface of the main body.

[0008] In some examples of this invention, the trigger end is radially movable along the main body to unlock the first deformable component.

[0009] In some examples of this utility model, the first locking component includes a locking member and a first elastic member. The locking member has a first position and a second position. The locking member locks the first deformable component in the first position and unlocks the first deformable component in the second position. The first elastic member has an elastic force that elastically drives the locking member to the first position.

[0010] In some examples of this utility model, the main body has a groove extending radially along the main body, the locking member is slidable along the groove to switch between a first position and a second position, one end of the first elastic member abuts against the side wall of the groove, and the other end abuts against the locking member and has an elastic thrust that pushes the locking member outward toward the groove.

[0011] In some examples of this utility model, the locking member includes a transmission member and a trigger member. One end of the transmission member is connected to the trigger member, and the other end abuts against the first elastic member. The transmission member is disposed in the groove. The trigger member protrudes from the main body to form the trigger end. A groove is provided between the transmission member and the trigger member. The first deformable component is provided with a hook that cooperates with the groove.

[0012] In some examples of this utility model, the first deformable component includes a deformable ring and a second elastic member. The upper end of the main body is provided with a connecting member. The deformable ring is rotatably connected to the connecting member. The second elastic member is disposed between the deformable ring and the connecting member and drives the deformable ring to rotate from a retracted state to an unfolded state.

[0013] In some examples of this utility model, the spinning toy further includes a second deformation component and a second locking component, the first deformation component and the second deformation component are radially opposite to each other along the main body, the first locking component and the second locking component are radially opposite to each other along the main body, the first locking component locks the first deformation component, and the second locking component locks the second deformation component.

[0014] In some examples of this utility model, the locking component further includes a linkage member, which is ring-shaped and rotatably connected between the first locking component and the second locking component.

[0015] In some examples of this utility model, the spinning toy further includes a central axis and a spinning tip, the main body is connected to the upper end of the central axis, the spinning tip is connected to the lower end of the central axis, and a light assembly that can be separated and connected between the central axis and the main body. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of a spinning top toy in some embodiments of the present invention (showing the first and second transforming components in a stowed state);

[0017] Figure 2 This is a schematic diagram of the structure of a spinning top toy in some embodiments of the present invention (showing the first and second transforming components in the unfolded state).

[0018] Figure 3This is an assembly diagram of a spinning top toy in some embodiments of this utility model (showing the state when the deformation ring and decorative parts are separated from the main body);

[0019] Figure 4 This is a partial structural schematic diagram of the spinning top toy in some embodiments of this utility model;

[0020] Figure 5 This is an assembly diagram of a spinning top toy in some embodiments of this utility model.

[0021] Figure label:

[0022] 100. Spinning top toy; 10. Main body; 101. Slide groove; 11. Outer shell; 111. Connector; 12. Inner shell; 21. First transformation component; 210. Fixed shaft; 211. Transformation ring; 212. Second elastic element; 213. Hook; 22. Second transformation component; 31. First locking component; 310. Trigger end; 311. First elastic element; 312. Locking element; 3121. Transmission component; 3122. Trigger element; 313. Protrusion; 32. Second locking component; 33. Linkage component; 301. Limiting rib; 302. Groove; 40. Central shaft; 50. Spinning tip; 60. Lighting component; 70. Decorative part. Detailed Implementation

[0023] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0024] Combination Figures 1 to 5 According to an embodiment of the present invention, a spinning top toy 100 includes: a main body 10, a first transforming component 21, and a first locking component 31. The first transforming component 21 is connected to the main body 10 and has a stowed state and an unfolded state. The first locking component 31 is disposed on the main body 10 and is used to lock the first transforming component 21 to the stowed state. The first locking component 31 includes a trigger end 310, which is disposed on the periphery of the main body 10. The first locking component 31 is configured to unlock the first transforming component 21 when the trigger end 310 is triggered, and the first transforming component 21 switches to the unfolded state.

[0025] Specifically, the first transformation component 21 allows the spinning top to have two different forms, enhancing its fun and visual appeal. The first locking component 31 can lock or unlock the first transformation component 21, enabling the switching of its state and further improving the playability of the spinning top toy 100. More specifically, the first transformation component 21 can be unlocked when triggered by the trigger end 310, allowing for automatic transformation and further enhancing the fun and interactivity during play.

[0026] For example, a user can manually lock the first transformation component 21 to the first locking component 31, placing it in a stowed state to enhance player engagement. This stowed state also facilitates storage and display. During play, the user can manually trigger the trigger end 310 to unlock the first transformation component 21, changing it from a stowed to an unfolded state. The user can then drive the spinning top 100 to rotate, allowing the first transformation component 21 to rotate in its unfolded state. Alternatively, the user can manually lock the first transformation component 21 to the first locking component 31, placing it in a stowed state. When the user drives the spinning top 100 to rotate, the trigger end 310 is activated upon impact, automatically unlocking the first transformation component 21 and allowing it to switch from a stowed to an unfolded state. This allows for automatic unlocking and transformation of the first transformation component 21 or automatic form switching of the spinning top 100 during play, enhancing its playability.

[0027] According to the present invention, the spinning top toy 100 can be equipped with a transformation component that can be triggered to unlock, so that the first transformation component 21 can be automatically unlocked and transformed or the spinning top toy 100 can automatically switch forms during play, thereby improving the playability and visual appeal of the spinning top toy 100.

[0028] Combination Figure 1 In some embodiments of this utility model, the trigger end 310 protrudes from the outer peripheral surface of the main body 10. Therefore, when the spinning top toy 100 rotates circumferentially and its outer peripheral surface collides, the trigger end 310 is easily triggered, unlocking the first deformation component 21 and thus switching the state of the first deformation component 21. For example, when the outer peripheral surface of the spinning top toy 100 collides with the surrounding environment, such as a wall, the trigger end 310 can be triggered. Alternatively, when two or more spinning top toys 100 are playing together or battling, the trigger end 310 is easily triggered when the spinning top toy 100 collides with other spinning top toys, thereby deforming the spinning top toy 100 and increasing the fun of playing.

[0029] Optionally, the trigger end 310 can be configured to extend circumferentially along the outer periphery of the gyroscope toy 100, which can increase the area of ​​the trigger end 310. When the gyroscope toy 100 collides, the outer periphery of the main body 10 will also collide, making it easier to collide with the trigger end 310, which is beneficial for switching the state of the first deformation component 21.

[0030] Combination Figure 4 In some embodiments of this utility model, the trigger end 310 is radially movable along the main body 10 to unlock the first deformable component 21. Specifically, when the trigger end 310 is impacted, the trigger end 310 will move inward. The direction of movement of the trigger end 310 is the same as the direction of force, which can improve the reliability of triggering and thus ensure the unlocking effect of the trigger end 310.

[0031] Combination Figure 1 and Figure 2 In some embodiments of this utility model, the first locking component 31 has a first state of locking the first transforming component 21 and a second state of unlocking the first transforming component 21. The first locking component 31 is configured to be constantly in the first state, thereby ensuring that the first locking component 31 can be stably maintained in the first state, improving the locking effect of the first locking component 31, and allowing the first transforming component 21 to be stably maintained in the stored state, which facilitates the storage of the spinning top toy 100, and ensures that the first transforming component 21 is only unlocked when triggered. That is to say, when the first locking component 31 is in the first state, it can lock the first transforming component 21 in the stored state and keep the first transforming component 21 in the stored state; when the first locking component 31 is in the second state, it can unlock the first transforming component 21, so that the first transforming component 21 switches from the stored state to the unfolded state.

[0032] Combination Figure 3 In some embodiments of this utility model, the first locking component 31 includes a locking member 312 and a first elastic member 311. The locking member 312 has a first position and a second position. The locking member 312 locks the first deformable component 21 in the first position and unlocks the first deformable component 21 in the second position. The first elastic member 311 has an elastic force that elastically drives the locking member 312 to the first position. Specifically, when the locking member 312 is in the first position, it locks the first deformable component 21, and the first elastic member 311 has a force that drives the locking member 312 to the first position. Thus, the locking member 312 can be stably held in the first position, thereby keeping the first deformable component 21 in a retracted state. When the locking member 312 is in the second position, it unlocks the first deformable component 21, and the first deformable component 21 changes from the retracted state to the unfolded state. When the trigger end 310 is triggered, the trigger end 310 experiences a force greater than the elastic force of the first elastic member 311. The trigger end 310 moves and drives the locking member 312 from the first position to the second position, thereby unlocking the first deformable component 21.

[0033] Furthermore, combined Figure 3 In some embodiments of this utility model, the main body 10 has a groove 101 extending radially along the main body, and the locking member 312 can slide along the groove 101 to switch between a first position and a second position. The groove 101 can define the path of the locking member 312 moving radially, which helps to improve the stability of the locking member 312 when moving between the first position and the second position. Specifically, one end of the first elastic member 311 abuts against the side wall of the slide groove 101, and the other end abuts against the locking member 312 and has an elastic thrust that pushes the locking member 312 outward from the slide groove 101, thereby pushing the locking member 312 outward in a radial direction. The locking member 312 is both pushed by the first elastic member 311 and limited by the slide groove 101, so that the locking member 312 can be stably held in the first position. When the locking member 312 is triggered to unlock by an external force, the locking member 312 can move radially within the slide groove 101 to unlock. After unlocking, the elastic thrust of the first elastic member 311 can push the locking member back to the first position, thereby making it convenient for the user to lock the first deformable component 21 again.

[0034] More specifically, combined Figure 3 In some embodiments of this utility model, the locking member 312 includes a transmission member 3121 and a trigger member 3122. The transmission member 3121 and the trigger member 3122 are connected radially. One end of the transmission member 3121 is connected to the trigger member 3122, and the other end abuts against the first elastic member 311. The transmission member 3121 is disposed in the slide groove 101. The trigger member 3122 protrudes from the main body 10 to form a trigger end 310. A groove 302 is provided between the transmission member 3121 and the trigger member 3122. The first deformation component 21 is provided with a hook 213 that cooperates with the groove 302. Thus, the first elastic member 311 can drive the trigger member 3122 to protrude outward. At this time, the locking member 312 is in the first position, the hook 213 is hooked in the groove 302 and remains in this state to lock the first deformable component 21. When the trigger member 3122 is triggered, the trigger member 3122 moves radially into the main body 10, the transmission member 3121 moves radially in the slide groove 101, the first elastic member 311 is compressed, the groove 302 of the locking member 312 moves radially inward or contracts, so that the groove 302 releases the hook 213, the hook 213 is released, thereby unlocking the first deformable component 21, and the first deformable component 21 changes from the retracted state to the unfolded state.

[0035] Optionally, the first elastic element 311 can be a spring.

[0036] Combination Figure 3In some embodiments of this utility model, the first deformable component 21 includes a deformable ring 211 and a second elastic member 212. A connecting member 111 is provided at the upper end of the main body 10. The deformable ring 211 is rotatably connected to the connecting member 111. The second elastic member 212 is disposed between the deformable ring 211 and the connecting member 111, and drives the deformable ring 211 to rotate from a retracted state to an unfolded state. Specifically, the first deformable component 21 is rotatably connected to the connecting member 111 at the upper end of the main body 10. The first deformable component 21 can be located at the upper end of the spinning top toy 100, which facilitates user viewing and enhances the aesthetics of the spinning top toy 100.

[0037] Furthermore, the first transforming component 21 is rotatably connected to the upper end of the main body 10. That is, in the stored state, the first transforming component 21 or the transforming ring 211 can be laid flat on the main body of the spinning top toy 100, which helps to improve the aesthetics. In the unfolded state, the first transforming component 21 or the transforming ring 211 can rotate upward. Since the first transforming component 21 is located at the upper end of the main body, there is no space restriction when rotating upward, and the state switching of the first transforming component 21 is easy for the user to see, which can enhance the fun during play. When the first transforming component 21 switches from the stored state to the unlocked state, the transforming ring 211 can rotate upward and flip from the form of being laid flat on the main body 10 to the unfolded state.

[0038] Specifically, in combination Figure 2 and Figure 3 The connector 111 and the deformable ring 211 have mounting holes. The fixed shaft 210 passes through the mounting holes of the connector 111 and the deformable ring 211 to achieve a rotatable connection between the deformable ring 211 and the connector 111. The second elastic member 212 is wrapped around the outer periphery of the fixed shaft 210 and can drive the deformable ring 211 to rotate along the rotation center axis of the fixed shaft 210. When the first locking component 31 is triggered to unlock, the second elastic member 212 can automatically drive the deformable ring 211 to flip upward. The connector 111 can be located on the periphery of the upper end of the main body 10. The opposite ends of the deformable ring 211 are respectively connected to the connector 111. The deformable ring 211 can extend circumferentially along the main body 10, which can adapt to the shape of the spinning top, improve the aesthetics of the spinning top toy 100, and increase the extension range of the deformable ring 211, making the deformation action of the deformable ring 211 more obvious and improving playability.

[0039] In actual use, when the spinning top 100 is spinning, the trigger end 310 on its outer circumference is triggered by an impact, causing the transformation ring 211 to rotate upwards, which enhances the visual appeal of the spinning top 100 during play. Furthermore, after the transformation ring 211 flips upwards, the connecting piece 111 is exposed at the upper periphery of the spinning top 100. When the spinning top 100 battles with other spinning tops, the exposed or protruding connecting piece 111 can provide a certain degree of aggression upon impact, further enhancing the playability of the spinning top 100.

[0040] Optionally, the second elastic element 212 can be a torsion spring.

[0041] According to some embodiments of the present invention, the spinning toy 100 has a first locking component 31 located below the first deformable component 21. The first deformable component 21 is located inside the main body 10 for easy arrangement. The first deformable component 21 is located at the upper end of the main body 10 for easy viewing by the user. The deformable ring 211 has a hook 213 that extends into the groove 302 of the first locking component 31. The first elastic member 311 of the first locking component 31 drives the locking member 312 to remain in the locked state. When the locking member 312 is impacted or pressed, it is triggered and moves radially inward. The locking member 312 releases the hook 213 of the deformable ring 211. The second elastic member 212 automatically drives the deformable ring 211 to rotate upward, thereby deforming the first deformable component 21. When locking or resetting, the first deformable component 21 can be manually pressed down. Since the first elastic element 311 will drive the locking element 312 to remain in the first position, the hook 213 can hook onto the groove 302 to lock the first deformable component 21.

[0042] Furthermore, combined Figure 2 and Figure 3 The main body 10 includes an inner shell 12 and an outer shell 11. The outer shell 11 surrounds the outer periphery of the inner shell 12. The inner shell 12 forms a sliding groove 101. The outer shell 11 surrounds the outer periphery of the main body 10. The connecting member 111 is provided with the outer shell 11. A first locking component 31 is provided on the inner shell 12, and a first deformable component 21 is connected to the outer shell 11.

[0043] Furthermore, combining Figure 3 The outer periphery of the outer shell 11 may be provided with protruding structures. These protruding structures can be of different shapes and can be arranged at intervals along the circumference of the outer shell 11. This not only enhances the aesthetic appeal of the spinning top toy 100 but also serves as an attacking effect during battles, thereby increasing its playability. In other words, the outer periphery of the spinning top toy 100 is provided with both a trigger end 310 and protruding structures. When the spinning top toy 100 is impacted at different locations, it can deform or serve as an attacking effect.

[0044] Combination Figure 1 and Figure 2 In some embodiments of this utility model, the spinning top toy 100 further includes a second deformation component 22 and a second locking component 32. The first deformation component 21 and the second deformation component 22 are radially opposite to each other along the main body portion 10, and the first locking component 31 and the second locking component 32 are radially opposite to each other along the main body portion 10. The first locking component 31 locks the first deformation component 21, and the second locking component 32 locks the second deformation component 22, which can further enhance the fun of playing with the spinning top toy 100 and the overall aesthetics or appearance consistency of the spinning top toy 100. Specifically, when the trigger end 310 of the first locking component 31 is triggered, the first deformation component 21 can deform, and when the trigger end 310 of the second locking component 32 is triggered, the second deformation component 22 can deform, which can improve the playability of the spinning top toy 100.

[0045] The first deformation component 21 and the second deformation component 22 are symmetrically arranged and have the same structure, and the first locking component 31 and the second locking component 32 are symmetrically arranged and have the same structure, which will not be described in detail here.

[0046] Combination Figure 1 In some embodiments of this utility model, the first deformable component 21 is configured as an arc extending circumferentially along the main body 10, and the second deformable component 22 is configured as an arc extending circumferentially along the main body 10. The first deformable component 21 and the second deformable component 22 form a ring structure at the upper end of the main body 10 in the stored state. Thus, the combination of the first deformable component 21 and the second deformable component 22 can extend circumferentially along the main body 10, which helps to improve the consistency of the appearance of the spinning top toy 100.

[0047] In some embodiments of this utility model, the spinning top toy 100 also includes a decorative element 70, which is disposed within the annular structure, thereby decorating the upper surface of the spinning top and improving its aesthetics.

[0048] Optionally, the first transforming component 21 and the second transforming component 22 may be provided with raised structures or patterns to enhance the appearance of the spinning top toy 100. The decorative part 70 may also be provided with patterns and raised structures to enhance the appearance of the spinning top toy 100. The shapes of the decorative part 70, the first transforming component 21 and the second transforming component 22 may echo each other to enhance the aesthetics of the spinning top toy 100.

[0049] Combination Figure 3 and Figure 4In some embodiments of this utility model, the locking component further includes a linkage 33, which is connected to the first locking component 31 and the second locking component 32 in a transmission manner, so that the first locking component 31 and the second locking component 32 can be unlocked in conjunction, thereby enabling the first transforming component 21 and the second transforming component 22 to switch states synchronously, which helps to improve the balance of the transformed spinning top toy 100 and the fun of playing with it. Specifically, when one of the first locking component 31 and the second locking component 32 is triggered to unlock, the force can be transferred to the other, thereby triggering the other transforming component to unlock, so as to achieve simultaneous transformation of the first transforming component 21 and the second transforming component 22.

[0050] More specifically, the linkage 33 is ring-shaped and rotatably connected between the first locking component 31 and the second locking component 32. In this way, when the first locking component 31 moves radially, it can drive the linkage 33 to rotate, and the linkage 33 can drive the second locking component 32, which is radially opposite to the first locking component 31, to move radially, so that the first locking component 31 and the second locking component 32 are triggered simultaneously.

[0051] Combination Figure 4 When the first locking component 31 is triggered, it drives the linkage 33 to rotate counterclockwise. The opposing sides of the linkage 33 move in opposite directions radially, thus triggering the second locking component 32, which is radially opposite to the first locking component 31. When the second locking component 32 is triggered, it drives the linkage 33 to rotate clockwise. The opposing sides of the linkage 33 move in opposite directions radially, thus triggering the first locking component 31, which is radially opposite to the second locking component 32.

[0052] More specifically, combined Figure 4 The first locking component 31 and the second locking component 32 are provided with limiting ribs 301. The limiting ribs 301 extend in an arc shape. When the locking components are triggered to move radially inward, the limiting ribs 301 can stop the annular linkage 33, thereby improving the transmission effect and the stability during movement, which is conducive to improving the reliability of operation.

[0053] Furthermore, the locking member 312 or the transmission member 3121 of the first locking component 31 and the second locking component 32 are both provided with a protrusion 313, and the protrusion 313 is embedded in the linkage member 33 to realize the transmission connection.

[0054] Combination Figure 2 and Figure 3 According to the embodiment of the present utility model, the spinning toy 100 has two connecting members 111 that are radially opposite to each other at the upper end of the main body 10, and the opposite ends of the first deformation component 21 and the second deformation component 22 are respectively rotatably connected to the two connecting members 111.

[0055] Combination Figure 5 In some embodiments of this utility model, the spinning top toy 100 also includes a central axis portion 40 and a spinning tip 50. The main body portion 10 is connected to the upper end of the central axis portion 40, and the spinning tip 50 is connected to the lower end of the central axis portion 40. A light assembly 60 that can be separated and connected between the central axis portion 40 and the main body portion 10 can enhance the functionality of the spinning top toy 100.

[0056] Specifically, both the main body 10 and the central shaft 40 may be provided with positioning posts. A fastener passes through the positioning posts to fix the main body 10 and the central shaft 40 together. A receiving groove may be provided within the main body 10 or the central shaft 40, or a receiving groove may be constructed between the main body 10 and the central shaft 40. The lighting assembly 60 may be disposed in the receiving groove. More specifically, the lighting assembly 60 may be provided with a clearance groove, which cooperates with the positioning posts to achieve the positioning of the lighting assembly 60. For example, multiple positioning posts may be correspondingly provided with multiple clearance grooves.

[0057] For example, upon impact or rotational vibration, the vibration switch will be triggered, turning on the light component 60, which will then automatically turn off after a period of time.

[0058] Optionally, the lighting component 60 may be partially exposed on the outer surface of the spinning top toy 100, thereby facilitating the user's observation of the lighting effect of the spinning top toy 100. Alternatively, at least a portion of the main body 10 or the central shaft 40 may be a light-transmitting component, so that the user can observe the lighting effect of the lighting component 60.

[0059] The tip 50 can be detachably connected to the central shaft 40 by a snap-fit ​​mechanism, which facilitates the replacement and maintenance of the spinning top toy 100, allowing the spinning top toy 100 to be changed into different shapes, and enabling users to experience the fun of assembly while playing.

[0060] Optionally, the tip 50 may include a housing and a pivot ball, with the pivot ball located inside the housing. The pivot ball may be made of metal to improve durability, while the housing may be made of plastic to achieve a lightweight design for the spinning toy 100.

[0061] In the description of this utility model, it should be understood that the terms "center", "upper", "lower", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0062] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0063] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0064] In this utility model, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0065] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0066] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A gyro toy (100) characterized by, include: Main body (10), The first deformable component (21) is connected to the main body (10) and has a stowed state and an unfolded state; A first locking component (31) is disposed on the main body (10) and is used to lock the first deformable component (21) to the stowed state. The first locking component (31) includes a trigger end (310) located at the periphery of the main body (10). The first locking component (31) is configured to unlock the first deformable component (21) when the trigger end (310) is triggered, and the first deformable component (21) switches to the unfolded state.

2. The gyro toy (100) according to claim 1, characterized in that The trigger end (310) protrudes from the outer peripheral surface of the main body (10).

3. The gyro toy (100) according to claim 2, characterized in that The trigger end (310) is radially movable along the main body (10) to unlock the first deformable component (21).

4. The gyro toy (100) according to claim 1, characterized in that The first locking component (31) includes a locking member (312) and a first elastic member (311). The locking member (312) has a first position and a second position. The locking member (312) locks the first deformable component (21) in the first position and unlocks the first deformable component (21) in the second position. The first elastic member (311) has an elastic force that elastically drives the locking member (312) to the first position.

5. The gyro toy (100) according to claim 4, characterized in that The main body has a groove (101) extending radially along the main body, and a locking member (312) is slidable along the groove (101) to switch between a first position and a second position. One end of the first elastic member (311) abuts against the side wall of the groove (101), and the other end abuts against the locking member (312) and has an elastic thrust that pushes the locking member (312) outward toward the groove (101).

6. The gyro toy (100) according to claim 5, characterized in that The locking member (312) includes a transmission member (3121) and a trigger member (3122). One end of the transmission member (3121) is connected to the trigger member (3122), and the other end abuts against the first elastic member (311). The transmission member (3121) is disposed in the slide groove (101). The trigger member (3122) protrudes from the main body (10) to form the trigger end (310). A groove (302) is provided between the transmission member (3121) and the trigger member (3122). The first deformation component (21) is provided with a hook (213) that cooperates with the groove (302).

7. The gyro toy (100) according to claim 1, characterized in that The first deformable component (21) includes a deformable ring (211) and a second elastic element (212). The upper end of the main body (10) is provided with a connector (111). The deformable ring (211) is rotatably connected to the connector (111). The second elastic element (212) is located between the deformable ring (211) and the connector (111) and drives the deformable ring (211) to rotate from the stored state to the unfolded state.

8. The gyro toy (100) according to claim 1, characterized in that It also includes a second deformable component (22) and a second locking component (32), wherein the first deformable component (21) and the second deformable component (22) are radially opposite to each other along the main body portion (10), and the first locking component (31) and the second locking component (32) are radially opposite to each other along the main body portion (10), wherein the first locking component (31) locks the first deformable component (21), and the second locking component (32) locks the second deformable component (22).

9. The gyro toy (100) according to claim 8, characterized in that The locking assembly further includes a linkage (33), which is ring-shaped and rotatably connected between the first locking assembly (31) and the second locking assembly (32).

10. The gyro toy (100) according to any one of claims 1-9, characterized in that, It also includes a central axis (40) and a gyroscope tip (50), the main body (10) is connected to the upper end of the central axis (40), the gyroscope tip (50) is connected to the lower end of the central axis (40), and a light assembly (60) that is separable from and connectable to the central axis (40) and the main body (10).