Ring spinning top toy

By introducing a ring wheel and an acceleration gear set into the ring gyroscope toy, the gyroscope can be rotated with one hand, which solves the problem that the existing ring gyroscope requires two hands to operate, improves the fun and entertainment of the toy, and provides a stress-relieving effect.

CN223404390UActive Publication Date: 2025-10-03GUANGZHOU LINGDONG CHUANGXIANG CULTURE & TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422574144.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-10-03
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

Existing finger ring spinning top toys require two hands to operate, have outdated playing methods, and lack of fun and entertainment.

Method used

A ring gyroscope toy is designed. By setting a ring wheel and an acceleration gear set on the toy base, the user can drive the gyroscope body to rotate by simply shaking his fingers. The acceleration gear set is used to achieve one-handed operation and drive the gyroscope body to rotate.

Benefits of technology

It frees your hands and makes the gameplay more novel and interesting. Users can also relieve stress while shaking their fingers, which increases the fun and entertainment of the ring gyroscope toy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223404390U_ABST
    Figure CN223404390U_ABST
Patent Text Reader

Abstract

The utility model relates to a ring gyro toy which comprises a toy base, a ring wheel disc, an acceleration gear set and a gyro body, the ring wheel disc is rotatably arranged on the toy base, a ring through hole for a finger to penetrate through is formed in the ring wheel disc in a penetrating mode, the acceleration gear set is rotatably arranged in the toy base, and the gyro body is arranged on the acceleration gear set. The acceleration gear set is arranged on the toy base and is in meshed connection with the ring wheel disc, the top body is rotatably arranged on the toy base, and the acceleration gear set is in transmission connection with the top body. According to the ring spinning top toy, the acceleration gear set can be driven to rotate only by shaking the fingers, then the spinning top body is driven to rotate through the acceleration gear set, the two hands are liberated, the playing method of the ring spinning top toy is more novel and interesting, and a user can play a decompression effect in the process of shaking the fingers; and the interestingness and entertainment of the ring spinning top toy are effectively improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of toys, in particular to a finger ring gyroscope toy. Background Art

[0002] With the development of the toy industry, a variety of toys with different styles and functions have not only brought a lot of fun to people's lives, but also helped people relax and relieve stress in their daily entertainment. Among them, ring spinning tops are deeply favored by users due to their simple and stress-relieving gameplay.

[0003] Common ring spinning tops typically consist of a bearing disc and a flywheel disc rotatably mounted on the bearing disc. Several flywheel discs extend radially from the outer circumference of the flywheel disc. To play, the user holds the bearing disc with one hand and moves one of the flywheel discs with the other hand to continuously rotate the flywheel disc. However, these types of ring spinning tops are outdated and lack novelty, and they typically require two hands to play, making them less interesting and entertaining. Utility Model Content

[0004] Based on this, the purpose of the present invention is to overcome the shortcomings of the existing technology and provide a ring gyroscope toy, which can drive the acceleration gear set to rotate by simply shaking the fingers, and then drive the gyroscope body to rotate through the acceleration gear set. It not only frees up both hands, but also makes the gameplay more novel and interesting. Users can also relieve stress in the process of shaking their fingers, effectively improving the fun and entertainment of the ring gyroscope toy.

[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0006] A finger ring gyroscope toy comprises a toy base, a finger ring wheel, an acceleration gear set, and a gyroscope body. The finger ring wheel is rotatably arranged on the toy base, and a finger ring through hole is formed through the finger ring wheel for a finger to pass through. The acceleration gear set is rotatably arranged in the toy base, and the acceleration gear set is meshedly connected to the finger ring wheel. The gyroscope body is rotatably arranged on the toy base, and the acceleration gear set is transmission-connected to the gyroscope body.

[0007] Therefore, the finger ring gyroscope toy of the embodiment of the present invention has a finger ring wheel rotatably provided on the toy base, and a finger ring through hole for the finger to pass through is opened on the finger ring wheel. In this way, the user can pass the finger through the finger ring through hole and clamp it with the finger ring wheel, and then shake the finger to rotate the entire toy base relative to the finger ring wheel. In this way, the acceleration gear set also rotates due to the meshing connection with the finger ring wheel, and then drives the gyroscope body to rotate through the acceleration gear set; that is, the user can drive the gyroscope body to rotate and play with just one finger, and can drive the acceleration gear set to rotate only by shaking the finger, and then drive the gyroscope body to rotate through the acceleration gear set. Not only does it free up both hands, but its gameplay is more novel and interesting. The user can also achieve a stress-relieving effect in the process of shaking the finger, which effectively improves the fun and entertainment of the finger ring gyroscope toy.

[0008] In one embodiment, a gyro shaft is coaxially and rigidly connected to the gyro body, a gyro through-hole is provided on the toy base for the gyro shaft to pass through, and an annular groove is provided on the gyro shaft; a clamping member is retractably provided in the toy base, at least a portion of the clamping member extends into the gyro through-hole in an axial projection of the gyro through-hole, and the clamping member and the gyro through-hole are used to flexibly clamp the annular groove of the gyro shaft; and the acceleration gear set is in transmission connection with the portion of the gyro shaft that extends into the gyro through-hole. With this structural design, the gyro body can be inserted into the toy base through the gyro through-hole via the gyro shaft, and during the insertion, the clamping member is pushed open until the annular groove of the gyro shaft is inserted by the clamping member, thereby achieving the function of the clamping member and the edge of the gyro through-hole jointly flexibly clamping the gyro body, and allowing the gyro shaft to mesh with the acceleration gear set.

[0009] In one embodiment, a pusher is retractably provided on the toy base, at least partially extending outside the toy base and cooperating with the clamp. The pusher is used to push the clamp and cause the portion of the clamp that extends into the gyro hole to exit the gyro hole, thereby separating the clamp from the gyro shaft and allowing the gyro body to freely fall from the gyro hole. This structural design allows the pusher to drive the clamp to separate from the gyro shaft. As a result, when the gyro body is accelerated and energy is accumulated, it can freely fall from the gyro hole and land on the ground, a tabletop, a gyro plate, or other places to rotate, further enriching the playability and fun of the ring gyro toy.

[0010] In one embodiment, the acceleration gear assembly includes a gyro insert, which is a cylindrical structure with an open end. The cross-section of the gyro insert is polygonal, and the cross-section of the end of the gyro shaft matches the cross-section of the gyro insert. The end of the gyro shaft is movably inserted into the gyro insert; a sleeve gear is coaxially disposed at the end of the gyro insert away from the opening, and the sleeve gear is meshed with the finger ring wheel. With this structural design, when the gyro shaft is inserted into the gyro through-hole and movably clamped between the clamping member and the edge of the gyro through-hole, the end of the gyro shaft can be simultaneously inserted into the gyro insert. In this way, the gyro insert can drive the gyro shaft and the gyro body to rotate synchronously.

[0011] As an embodiment, one or more first transmission gears are meshedly connected between the insert gear and the finger ring wheel.

[0012] As an embodiment, the acceleration gear set further includes a driving gear and a clutch gear, the driving gear is rotatably arranged in the toy base, and the driving gear is meshed and connected with the ring wheel, the toy base is provided with an arc groove coaxial with the driving gear, the clutch gear is slidably arranged in the arc groove, and the clutch gear is meshed and connected with the driving gear; the clutch gear and the insert cylinder gear are clutchably connected, when the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc groove close to the insert cylinder gear, the clutch gear is meshed and connected with the insert cylinder gear, when the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc groove away from the insert cylinder gear, the clutch gear is separated from the insert cylinder gear.

[0013] As an embodiment, one or more second transmission gears are meshedly connected between the driving gear and the finger-ring wheel.

[0014] As an embodiment, the acceleration gear set also includes a passive gear, which is rotatably provided on the toy base, and the passive gear is meshed and connected with the insert sleeve gear; the passive gear is located between the insert sleeve gear and the clutch gear, and the clutch gear and the passive gear are clutchably connected, and when the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc-shaped groove close to the passive gear, the clutch gear is meshed and connected with the passive gear, and when the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc-shaped groove away from the passive gear, the clutch gear is separated from the passive gear.

[0015] As an embodiment, an annular tooth is provided on the outer circumference of the finger ring wheel, and the annular tooth is meshed and connected with the acceleration gear set; an elastic tooth ring is provided on the inner circumference of the finger ring through hole.

[0016] As an embodiment, an arc-shaped notch is provided through the toy base, an arc-shaped buckle is twistably provided at one end of the arc-shaped notch, the end of the arc-shaped buckle abuts against the other end of the arc-shaped notch, and the arc-shaped buckle can rotate toward the inside of the arc-shaped notch.

[0017] In order to better understand and implement the present invention, the present invention is described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is one of the overall structural diagrams of the ring spinning top toy of the utility model;

[0019] Figure 2 This is the second schematic diagram of the overall structure of the ring spinning top toy of the utility model;

[0020] Figure 3 This is one of the schematic diagrams of the internal structure of the ring spinning top toy of the utility model;

[0021] Figure 4 This is the second schematic diagram of the internal structure of the ring spinning top toy of the utility model;

[0022] Figure 5 This is a structural diagram of the toy base of the ring spinning top toy of the present invention;

[0023] Figure 6 This is a schematic structural diagram of the spinning top body of the ring spinning top toy of the present invention;

[0024] Figure 7 This is a reference diagram of the use state of the ring spinning top toy of the utility model.

[0025] Description of reference numerals:

[0026] 10. Toy base; 11. Gyro through hole; 12. Arc groove; 13. Arc notch; 14. Arc buckle; 20. Ring wheel; 21. Annular gear; 22. Ring through hole; 23. Elastic gear ring; 30. Acceleration gear set; 31. Driving gear; 32. Clutch gear; 33. Passive gear; 34. Third transmission gear; 35. Gyro insert; 36. Insert gear; 40. Gyro body; 41. Gyro shaft; 42. Annular groove; 50. Clamping member; 51. Return spring; 60. Pushing member; 61. Pushing spring; 62. Pressing part. DETAILED DESCRIPTION

[0027] To further illustrate various embodiments, this utility model is provided with accompanying drawings. These drawings form part of the disclosure of this utility model and are primarily used to illustrate the embodiments and, in conjunction with the relevant description in the specification, to explain the operating principles of the embodiments. By referring to these drawings, those skilled in the art will be able to understand other possible implementations and the advantages of this utility model.

[0028] Common ring spinning tops typically consist of a bearing disc and a flywheel disc rotatably mounted on the bearing disc. Several flywheel discs extend radially from the outer circumference of the flywheel disc. To play, the user holds the bearing disc with one hand and moves one of the flywheel discs with the other hand to continuously rotate the flywheel disc. However, these types of ring spinning tops are outdated and lack novelty, and they typically require two hands to play, making them less interesting and entertaining.

[0029] In view of this, the present invention provides a finger ring gyroscope toy. According to the finger ring gyroscope toy of the embodiment of the present invention, the acceleration gear set 30 can be driven to rotate by simply shaking the fingers, and then the gyroscope body 40 can be driven to rotate by the acceleration gear set 30. This not only frees up both hands, but also makes the gameplay more novel and interesting. The user can also relieve stress in the process of shaking the fingers, which effectively improves the fun and entertainment of the finger ring gyroscope toy.

[0030] See also Figures 1 to 6 The embodiment of the present invention provides a finger ring gyroscope toy, including a toy base 10, a finger ring wheel 20, an acceleration gear set 30, and a gyroscope body 40. The finger ring wheel 20 is rotatably arranged on the toy base 10, and the finger ring wheel 20 is penetrated by a finger ring through hole 22 for a finger to pass through. The acceleration gear set 30 is rotatably arranged in the toy base 10, and the acceleration gear set 30 is meshed with the finger ring wheel 20. The gyroscope body 40 is rotatably arranged on the toy base 10, and the acceleration gear set 30 is transmission-connected to the gyroscope body 40.

[0031] Therefore, the finger ring spinning top toy of the embodiment of the present invention is provided with a finger ring wheel 20 rotatably on the toy base 10, and a finger ring through hole 22 for the finger to pass through is opened on the finger ring wheel 20. In this way, the user can pass the finger through the finger ring through hole 22 and clamp it with the finger ring wheel 20, and then shake the finger to rotate the entire toy base 10 relative to the finger ring wheel 20. In this way, the acceleration gear set 30 is also rotated due to the meshing connection with the finger ring wheel 20, and then the gyroscope body 40 is driven to rotate through the acceleration gear set 30; that is, the user can drive the gyroscope body 40 to rotate and play with it with just one finger. By simply shaking the finger, the acceleration gear set 30 can be driven to rotate, and then the gyroscope body 40 is driven to rotate through the acceleration gear set 30, which not only frees both hands and makes the playing method more novel and interesting, but also relieves stress when the user shakes the finger, thereby effectively improving the fun and entertainment of the finger ring spinning top toy.

[0032] In some embodiments of the present invention, a gyro shaft 41 is coaxially and rigidly connected to the gyro body 40, a gyro through-hole 11 for the gyro shaft 41 to pass through is provided on the toy base 10, and an annular groove 42 is provided on the gyro shaft 41; a clamping member 50 is retractably provided in the toy base 10, and the clamping member 50 at least partially extends into the gyro through-hole 11 in the axial projection of the gyro through-hole 11, and the clamping member 50 and the gyro through-hole 11 are used together to movably clamp the annular groove 42 of the gyro shaft 41; the acceleration gear set 30 is transmission-connected to the portion of the gyro shaft 41 that extends into the gyro through-hole 11. With such a structural design, the gyro body 40 can be inserted into the interior of the toy base 10 from the gyro through-hole 11 through the gyro shaft 41, and during the insertion process, the clamping member 50 is pushed open until the annular groove 42 of the gyro shaft 41 is inserted by the clamping member 50, thereby realizing the function of the clamping member 50 and the edge of the gyro through-hole 11 to jointly clamp the gyro body 40, and making the gyro shaft 41 meshingly connected with the acceleration gear set 30.

[0033] Furthermore, in the above-described embodiments, a pusher 60 is retractably provided on the toy base 10. At least a portion of the pusher 60 extends outside the toy base 10 and engages with the clamping member 50. The pusher 60 is used to push the clamping member 50 and cause the portion of the clamping member 50 that extends into the gyro hole 11 to exit the gyro hole 11, thereby separating the clamping member 50 from the gyro shaft 41 and allowing the gyro body 40 to freely fall from the gyro hole 11. This structural design enables the pusher 60 to drive the clamping member 50 away from the gyro shaft 41. As a result, when the gyro body 40 is accelerated and energy is accumulated, it can freely fall from the gyro hole 11 and land on the ground, a tabletop, a gyro plate, or other surfaces, where it rotates, further enriching the playability and fun of the ring gyro toy.

[0034] Among them, the pushing member 60 is telescopically arranged in the toy base 10 through the pushing spring 61, and the part of the pushing member 60 extending out of the toy base 10 is the pressing portion 62, and the part of the pushing member 60 abutting against the clamping member 50 is the pushing portion; accordingly, the clamping member 50 is telescopically arranged in the toy base 10 through the return spring 51, and the compression direction of the return spring 51 is parallel to the movement direction of the pushing portion, and a wedge block can be provided on the clamping member 50, and the wedge block portion is toward the gyro through hole 11. The axial projection extends inward to partially block the axial projection of the gyro through hole 11. In this way, when the gyro shaft 41 is inserted from the gyro through hole 11, the wedge block of the clamping member 50 can be pushed to make the wedge block temporarily leave the axial projection of the gyro through hole 11 until the annular groove 42 on the gyro shaft 41 cooperates with the wedge block. Then, the wedge block is inserted into the annular groove 42 under the action of the return spring 51, and the annular groove 42 of the gyro shaft 41 is movably abutted against the gyro through hole 11 and the wedge block.

[0035] In some embodiments of the present invention, the acceleration gear assembly 30 includes a gyro insert 35, which is a cylindrical structure with an open end. The cross-section of the gyro insert 35 is polygonal. The cross-section of the distal end of the gyro shaft 41 matches the cross-section of the gyro insert 35, and the distal end of the gyro shaft 41 is movably inserted into the gyro insert 35. A sleeve gear 36 is coaxially disposed on the distal end of the gyro insert 35, which is meshed with the finger ring wheel 20. This structural design allows the distal end of the gyro shaft 41 to be inserted into the gyro through hole 11 and movably clamped between the clamping member 50 and the edge of the gyro through hole 11, thereby simultaneously inserting the distal end of the gyro shaft 41 into the gyro insert 35. As a result, the gyro insert 35 can drive the gyro shaft 41 and the gyro body 40 to rotate synchronously.

[0036] Furthermore, in the above embodiments, one or more first transmission gears are meshed and connected between the inserting sleeve gear 36 and the finger-ring wheel 20. It can be understood that the inserting sleeve gear 36 can be directly meshed with the finger-ring wheel 20, or one or more first transmission gears can be provided between the inserting sleeve gear 36 and the finger-ring wheel 20, so as to make the layout of the inserting sleeve gear 36 and the finger-ring wheel 20 more flexible.

[0037] In some embodiments of the present invention, the acceleration gear set 30 also includes a driving gear 31 and a clutch gear 32. The driving gear 31 is rotatably disposed in the toy base 10, and the driving gear 31 is meshed and connected with the ring wheel 20. The toy base 10 is provided with an arc-shaped groove 12 coaxial with the driving gear 31. The clutch gear 32 is slidably disposed in the arc-shaped groove 12, and the clutch gear 32 is meshed and connected with the driving gear 31; the clutch gear 32 is clutchably connected with the inserting sleeve gear 36. When the driving gear 31 drives the clutch gear 32 to rotate and causes the clutch gear 32 to slide to the end of the arc-shaped groove 12 close to the inserting sleeve gear 36, the clutch gear 32 is meshed and connected with the inserting sleeve gear 36. When the driving gear 31 drives the clutch gear 32 to rotate and causes the clutch gear 32 to slide to the end of the arc-shaped groove 12 away from the inserting sleeve gear 36, the clutch gear 32 is separated from the inserting sleeve gear 36. It can be understood that the acceleration gear set 30 of the present invention can not only be a gear set structure that meshes in sequence, but also a gear set structure with a clutch function. In these embodiments, through the ingenious design of the clutch gear 32, when the finger-ring wheel 20 drives the driving gear 31 to rotate in one direction, the driving gear 31 can not only drive the clutch gear 32 to rotate, but also drive the clutch gear 32 to slide to the end of the arc-shaped slot 12 near the inserted sleeve gear 36 and mesh with the inserted sleeve gear 36 to drive the gyro body 40 to rotate in one direction. When the finger-ring wheel 20 drives the driving gear 31 to rotate in the opposite direction, the driving gear 31 can drive the clutch gear 32 to slide to the other end of the arc-shaped slot 12 and separate from the inserted sleeve gear 36, thereby avoiding generating a force in the opposite direction on the gyro body 40.

[0038] Furthermore, in the above embodiments, the acceleration gear set 30 also includes a driven gear 33, which is rotatably mounted on the toy base 10 and meshes with the insert gear 36. The driven gear 33 is positioned between the insert gear 36 and the clutch gear 32, and the clutch gear 32 is clutchably connected to the driven gear 33. When the driving gear 31 rotates the clutch gear 32 and causes the clutch gear 32 to slide to the end of the arcuate slot 12 closer to the driven gear 33, the clutch gear 32 meshes with the driven gear 33. When the driving gear 31 rotates the clutch gear 32 and causes the clutch gear 32 to slide to the end of the arcuate slot 12 farther from the driven gear 33, the clutch gear 32 and the driven gear 33 are separated. Furthermore, one or more second transmission gears are meshed between the driving gear 31 and the finger ring wheel 20. It should be understood that these second transmission gears facilitate a flexible layout between the acceleration gear set 30 and the finger ring wheel 20 and are not limited to a specific number.

[0039] In some embodiments of the present invention, an annular tooth 21 is provided on the outer circumference of the finger ring wheel 20, which meshes with the acceleration gear set 30. Furthermore, an elastic tooth ring 23 is provided on the inner circumference of the finger ring through-hole 22. This elastic tooth ring 23 can be made of soft or hard rubber. By utilizing the elastic structural properties of the elastic gear, a user's finger can be more tightly locked with the elastic gear when inserted into the elastic tooth ring 23, while also facilitating the removal of the user's finger, thereby preventing the user's finger from being too tightly stuck and unable to be removed.

[0040] In some embodiments of the present invention, an arc-shaped notch 13 is provided through the toy base 10. A curved buckle 14 is twistably provided at one end of the arc-shaped notch 13. The distal end of the curved buckle 14 abuts against the other end of the arc-shaped notch 13, and the curved buckle 14 can rotate toward the inside of the arc-shaped notch 13. It can be understood that the curved buckle 14 and the arc-shaped notch 13 together form a resilient keychain structure. Utilizing the ability of the curved buckle 14 to rotate toward the inside of the arc-shaped notch 13, the entire ring spinning toy can be hung on other objects, making it easier to store and carry the ring spinning toy.

[0041] In addition, in the above embodiments, the gyroscope through hole 11 is located in the middle of the toy base 10, and the annular structure formed by the arc buckle 14 and the arc notch 13 is roughly the same size as the ring wheel 20. The two are symmetrically designed compared to the gyroscope through hole 11 and are respectively placed on both sides of the toy base 10. In this way, the overall appearance of the ring gyroscope toy is more symmetrical and beautiful.

[0042] Reference below Figures 1 to 7 A ring rotating toy according to an optional embodiment of the present invention is described in detail. It is worth noting that the following description is merely illustrative and should not be construed as limiting the present invention.

[0043] The ring gyroscope toy of this embodiment includes a toy base 10, a ring wheel 20, an acceleration gear set 30, and a gyroscope body 40. The ring wheel 20 is rotatably disposed on the toy base 10, and a ring through hole 22 is formed through the ring wheel 20 for a finger to pass through. The acceleration gear set 30 is rotatably disposed in the toy base 10, and the acceleration gear set 30 is meshedly connected to the ring wheel 20. The gyroscope body 40 is rotatably disposed on the toy base 10, and the acceleration gear set 30 is transmission-connected to the gyroscope body 40.

[0044] In this embodiment, a gyro shaft 41 is coaxially and rigidly connected to the gyro body 40, a gyro through-hole 11 for the gyro shaft 41 to pass through is provided on the toy base 10, and an annular groove 42 is provided on the gyro shaft 41; a clamping member 50 is retractably provided in the toy base 10, and the clamping member 50 at least partially extends into the gyro through-hole 11 in the axial projection of the gyro through-hole 11, and the clamping member 50 and the gyro through-hole 11 are used together to movably clamp the annular groove 42 of the gyro shaft 41; in this way, the gyro body 40 can be inserted into the interior of the toy base 10 from the gyro through-hole 11 through the gyro shaft 41, and during the insertion process, the clamping member 50 is pushed open until the annular groove 42 of the gyro shaft 41 is inserted by the clamping member 50, thereby allowing the clamping member 50 and the edge of the gyro through-hole 11 to movably clamp the gyro body 40 together.

[0045] Furthermore, an annular tooth 21 is provided on the outer circumference of the finger ring wheel 20 of this embodiment, and an elastic tooth ring 23 is provided on the inner circumference of the finger ring through hole 22; the acceleration gear group 30 includes a gyro insert 35 and several first transmission gears. The gyro insert 35 is a cylindrical structure with an open end. The cross-section of the gyro insert 35 is polygonal. The cross-section of the end of the gyro shaft 41 is adapted to the cross-section of the gyro insert 35 so that the end of the gyro shaft 41 can be movably inserted into the gyro insert 35; an insert gear 36 is coaxially provided on the end of the gyro insert 35 away from its opening, and the insert gear 36 is meshed and connected with the several first transmission gears and the annular tooth 21 of the finger ring wheel 20 in sequence.

[0046] Furthermore, a pushing member 60 is retractably provided on the toy base 10, and at least a portion of the pushing member 60 extends out of the toy base 10, and the pushing member 60 cooperates and abuts against the clamping member 50. The pushing member 60 is used to push the clamping member 50 and make the portion of the clamping member 50 extending into the gyro through hole 11 withdraw from the gyro through hole 11, so that the clamping member 50 and the gyro shaft 41 are separated from each other, and the gyro body 40 can fall freely from the gyro through hole 11.

[0047] like Figure 7 As shown, the user inserts a finger into the finger ring through-hole 22, with the tip of the top body 40 pointing vertically downward. Then, by shaking their finger, the toy base 10 as a whole rotates relative to the finger ring wheel 20. The first transmission gears and the insert gear 36 also rotate, driving the top body 40 on the top insert 35. When the shaking reaches a certain level and the top body 40 rotates at a high speed, the clamping member 50 unlocks the top shaft 41 by pressing the push member 60, allowing the top body 40 to fall freely. After falling, the top body 40 can continue to rotate freely on the ground where it fell.

[0048] Of course, the user can also insert a finger into the elastic tooth ring 23 of the finger ring through hole 22 and make the top of the gyro body 40 face vertically upwards for playing. When the gyro body 40 needs to be released, the user only needs to flip the entire finger ring gyro toy 180° and then press the push piece 60 to make the gyro body 40 fall freely.

[0049] Reference below Figures 1 to 7 A ring rotating toy according to an optional embodiment of the present invention is described in detail. It is worth noting that the following description is merely illustrative and should not be construed as limiting the present invention.

[0050] The ring gyroscope toy of this embodiment includes a toy base 10, a ring wheel 20, an acceleration gear set 30, and a gyroscope body 40. The ring wheel 20 is rotatably disposed on the toy base 10, and a ring through hole 22 is formed through the ring wheel 20 for a finger to pass through. The acceleration gear set 30 is rotatably disposed in the toy base 10, and the acceleration gear set 30 is meshedly connected to the ring wheel 20. The gyroscope body 40 is rotatably disposed on the toy base 10, and the acceleration gear set 30 is transmission-connected to the gyroscope body 40.

[0051] In this embodiment, a gyro shaft 41 is coaxially and rigidly connected to the gyro body 40, a gyro through-hole 11 for the gyro shaft 41 to pass through is provided on the toy base 10, and an annular groove 42 is provided on the gyro shaft 41; a clamping member 50 is retractably provided in the toy base 10, and the clamping member 50 at least partially extends into the gyro through-hole 11 in the axial projection of the gyro through-hole 11, and the clamping member 50 and the gyro through-hole 11 are used together to movably clamp the annular groove 42 of the gyro shaft 41; in this way, the gyro body 40 can be inserted into the interior of the toy base 10 from the gyro through-hole 11 through the gyro shaft 41, and during the insertion process, the clamping member 50 is pushed open until the annular groove 42 of the gyro shaft 41 is inserted by the clamping member 50, thereby allowing the clamping member 50 and the edge of the gyro through-hole 11 to movably clamp the gyro body 40 together.

[0052] Furthermore, an annular tooth 21 is provided on the outer circumference of the ring wheel 20 of this embodiment, and an elastic tooth ring 23 is provided on the inner circumference of the ring through hole 22; the acceleration gear set 30 includes a gyro insert 35, a driving gear 31, a clutch gear 32, and a driven gear 33. The gyro insert 35 is a cylindrical structure with an opening at one end. The cross-section of the gyro insert 35 is polygonal. The cross-section of the end of the gyro shaft 41 is adapted to the cross-section of the gyro insert 35 so that the end of the gyro shaft 41 can be movably inserted into the gyro insert 35; an insert gear 36 is coaxially provided at the end of the gyro insert 35 away from its opening; the driving gear 31 is rotatably arranged in the toy base 10, and the driving gear 31 is meshed with the annular tooth 21 of the ring wheel 20. The toy base 10 is provided with an arc groove 12 coaxial with the driving gear 31, and the clutch gear 32 is provided with a meshing groove 12 coaxial with the driving gear 31. It is slidably arranged in the arc groove 12, and the clutch gear 32 is meshed with the driving gear 31; the driven gear 33 is rotatably arranged on the toy base 10, and the driven gear 33 is meshed with the inserting sleeve gear 36; the driven gear 33 is located between the inserting sleeve gear 36 and the clutch gear 32, and the clutch gear 32 and the driven gear 33 are clutchably connected. When the driving gear 31 drives the clutch gear 32 to rotate and causes the clutch gear 32 to slide to the end of the arc groove 12 close to the driven gear 33, the clutch gear 32 is meshed with the driven gear 33. When the driving gear 31 drives the clutch gear 32 to rotate and causes the clutch gear 32 to slide to the end of the arc groove 12 away from the driven gear 33, the clutch gear 32 is separated from the driven gear 33; in addition, two third transmission gears 34 are meshed in sequence between the driven gear 33 and the inserting sleeve gear 36.

[0053] Furthermore, a pushing member 60 is retractably provided on the toy base 10, and at least a portion of the pushing member 60 extends out of the toy base 10, and the pushing member 60 cooperates and abuts against the clamping member 50. The pushing member 60 is used to push the clamping member 50 and make the portion of the clamping member 50 extending into the gyro through hole 11 withdraw from the gyro through hole 11, so that the clamping member 50 and the gyro shaft 41 are separated from each other, and the gyro body 40 can fall freely from the gyro through hole 11.

[0054] In addition, an elastic tooth ring 23 is provided on the inner circumference of the finger ring through hole 22 of this embodiment; an arc-shaped notch 13 is provided through the toy base 10, and an arc-shaped buckle 14 is twistably provided at one end of the arc-shaped notch 13, and the end of the arc-shaped buckle 14 abuts against the other end of the arc-shaped notch 13, and the arc-shaped buckle 14 can rotate toward the inside of the arc-shaped notch 13.

[0055] like Figure 7As shown, the user inserts his finger into the elastic tooth ring 23 of the finger ring through hole 22, and makes the top of the gyro body 40 face vertically downward, and then shakes the finger in one direction to rotate the toy base 10 as a whole relative to the finger ring wheel 20, and the driving gear 31, the clutch gear 32, the driven gear 33, the two third transmission gears 34, and the insert cylinder gear 36 are engaged and rotated in sequence, so that the gyro body 40 on the gyro insert cylinder 35 can be driven to rotate; when it is shaken to a certain extent and the rotation state of the gyro body 40 is at high speed, the clamping member 50 can be unlocked from the gyro shaft 41 by pressing the push member 60, so that the gyro body 40 can fall freely, and the gyro body 40 after falling can continue to rotate freely on the falling field. If the user shakes their finger in the opposite direction, although the toy base 10 as a whole rotates relative to the finger ring wheel 20, the clutch gear 32 separates from the driven gear 33, and the two are separated from each other. As a result, only the driving gear 31 and the clutch gear 32 are driven to rotate, while the driven gear 33, the two third transmission gears 34, and the insert gear 36 are not driven to rotate by the clutch gear 32. In other words, the clever design of the clutch function of the acceleration gear set 30 ensures that the gyro body 40 can only rotate in one direction and cannot rotate in the opposite direction. This effectively prevents the user from suddenly shaking their finger in the opposite direction during play, which would generate a reverse force on the rotating gyro body 40 and cause damage to the gyro body 40.

[0056] Of course, the user can also insert a finger into the elastic tooth ring 23 of the finger ring through hole 22 and make the top of the gyro body 40 face vertically upwards for playing. When the gyro body 40 needs to be released, the user only needs to flip the entire finger ring gyro toy 180° and then press the push piece 60 to make the gyro body 40 fall freely.

[0057] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "left", "right", "top", "bottom", "inside", "outside", "axial", "radial", "circumferential", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limiting the present invention.

[0058] The above embodiments represent only a few implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention's ring-shaped spinning top toy. It should be noted that those skilled in the art will readily appreciate that variations and improvements can be made without departing from the present invention, and all such variations and improvements fall within the scope of protection of the present invention.

Claims

1. A ring spinning top toy, characterized by: The toy comprises a toy base, a finger ring wheel, an acceleration gear set, and a gyroscope body. The finger ring wheel is rotatably arranged on the toy base, and a finger ring through hole is formed through the finger ring wheel for a finger to pass through. The acceleration gear set is rotatably arranged in the toy base, and the acceleration gear set is meshed with the finger ring wheel. The gyroscope body is rotatably arranged on the toy base, and the acceleration gear set is in transmission connection with the gyroscope body.

2. The ring spinning top toy according to claim 1, characterized in that: A gyroscope shaft is coaxially and rigidly connected to the gyroscope body, a gyroscope through-hole for the gyroscope shaft to pass through is provided on the toy base, and an annular groove is provided on the gyroscope shaft; a clamping member is telescopically provided in the toy base, and at least a portion of the clamping member extends into the gyroscope through-hole in an axial projection of the gyroscope through-hole, and the clamping member and the gyroscope through-hole are used together to movably clamp the annular groove of the gyroscope shaft; the acceleration gear set is in transmission connection with the portion of the gyroscope shaft extending into the gyroscope through-hole.

3. The ring spinning top toy according to claim 2, characterized in that: A pushing piece is retractably provided on the toy base, wherein at least a portion of the pushing piece extends out of the toy base, and the pushing piece cooperates with and abuts against the clamping piece. The pushing piece is used to push the clamping piece and make the portion of the clamping piece extending into the gyro through hole withdraw from the gyro through hole, so that the clamping piece and the gyro shaft are separated from each other, and the gyro body can fall freely from the gyro through hole.

4. The ring spinning top toy according to claim 2, characterized in that: The acceleration gear set includes a gyro insert, which is a cylindrical structure with an open end. The cross-section of the gyro insert is polygonal. The cross-section of the end of the gyro shaft is adapted to the cross-section of the gyro insert, and the end of the gyro shaft is movably inserted into the gyro insert; an insert gear is coaxially provided at the end of the gyro insert away from the opening, and the insert gear is meshed with the ring wheel.

5. The ring spinning top toy according to claim 4, characterized in that: One or more first transmission gears are meshedly connected between the insert gear and the finger ring wheel.

6. The ring spinning top toy according to claim 4, characterized in that: The acceleration gear set also includes a driving gear and a clutch gear. The driving gear is rotatably arranged in the toy base, and the driving gear is meshed and connected with the ring wheel. The toy base is provided with an arc groove coaxial with the driving gear. The clutch gear is slidably arranged in the arc groove, and the clutch gear is meshed and connected with the driving gear; the clutch gear is clutchably connected with the insert sleeve gear. When the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc groove close to the insert sleeve gear, the clutch gear is meshed and connected with the insert sleeve gear. When the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc groove away from the insert sleeve gear, the clutch gear is separated from the insert sleeve gear.

7. The ring spinning top toy according to claim 6, characterized in that: One or more second transmission gears are meshed and connected between the driving gear and the finger-ring wheel.

8. The ring spinning top toy according to claim 6, characterized in that: The acceleration gear set further includes a passive gear, which is rotatably disposed on the toy base and is meshed with the inserting gear; The driven gear is located between the insert gear and the clutch gear, and the clutch gear and the driven gear are clutchably connected. When the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc-shaped slot close to the driven gear, the clutch gear and the driven gear are meshed and connected. When the driving gear drives the clutch gear to rotate and causes the clutch gear to slide to the end of the arc-shaped slot away from the driven gear, the clutch gear and the driven gear are separated.

9. The ring spinning top toy according to claim 1, characterized in that: An annular tooth is provided on the outer periphery of the finger ring wheel, and the annular tooth is meshed and connected with the acceleration gear set; an elastic tooth ring is provided on the inner periphery of the finger ring through hole.

10. The ring spinning top toy according to claim 1, characterized in that: The toy base is provided with an arc-shaped notch, one end of the arc-shaped notch is provided with an arc-shaped buckle which can be twisted, the end of the arc-shaped buckle abuts against the other end of the arc-shaped notch, and the arc-shaped buckle can be rotated toward the inside of the arc-shaped notch.