Spinning top and spinning top assembly
By introducing synchronous deformation parts into the gyro, the problem of single gameplay of existing gyro toys is solved, and the diversity and fun of gameplay is improved.
Patent Information
- Application Number
- CN202421625062.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing gyro toys have a single gameplay and lack fun.
Design a gyro that includes fixtures, main body parts and deformation parts. Through the setting of the deformation parts, the gyro has different shapes and increases the diversity of gameplay. The deformed member is composed of a first deformed part and a second deformed part, both of which can achieve synchronous deformation and enhance the fun of the gyroscope.
Through the design of the deformation parts, the gyro plays are enriched, and the fun is added, making the toys more interactive and visually attractive.
Smart Images

Figure CN223042128U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, and particularly relates to a top and a top assembly. Background Art
[0002] A top is a popular children's toy. Tops in the related art usually have a fixed structure and shape, and the gameplay is relatively single. Summary of the Utility Model
[0003] The utility model aims to solve at least one of the technical problems in the related art to some extent. For this purpose, an object of the utility model is to provide a top that can enrich the gameplay of the top and enhance the fun.
[0004] Another object of the utility model is to provide a top assembly including the aforementioned top.
[0005] The top according to an embodiment of the utility model includes: a fixing member, a main body member, and a deforming member. The main body member is rotatably connected to the fixing member; the deforming member includes a first deforming portion and a second deforming portion. The first deforming portion is movably connected to the main body member, the second deforming portion is movably connected to the first deforming portion, and the second deforming portion is in transmission connection with the first deforming portion.
[0006] The top according to an embodiment of the utility model has different forms by providing the deforming member, which enriches the gameplay of the top. The deforming member includes a first deforming portion and a second deforming portion, and the first deforming portion and the second deforming portion can be deformed synchronously, which enhances the fun of the top.
[0007] In addition, the top according to the above embodiment of the utility model may further have the following additional technical features:
[0008] In some embodiments, the top further includes a rotating member, the rotating member is rotatably connected to the main body member, and the rotating member is in transmission connection with the deforming member.
[0009] In some embodiments, the top further includes a first transmission member. The first deforming portion is provided with a first hinged portion and a second hinged portion. The first hinged portion is in transmission connection with the rotating member and slidably connected to the main body member. The first transmission member has a third hinged portion and a fourth hinged portion. The third hinged portion is rotatably connected to the main body member, and the fourth hinged portion is rotatably connected to the first deforming portion.
[0010] In some embodiments, the main body member is provided with a slide rail, the slide rail extends around the fixing member and is inclined away from the fixing member in the direction of extending around the fixing member, and the first hinged portion is slidably engaged with the slide rail.
[0011] In some embodiments, the second deformable part is slidably connected to the first deformable part. The second deformable part is provided with a rack, and the first transmission member is provided with a gear centered on the second hinge part. The gear is in transmission connection with the rack.
[0012] In some embodiments, it further includes a second transmission member. The second transmission member has a fifth hinge part and a sixth hinge part. The fifth hinge part is rotatably connected to the rotating member, and the sixth hinge part is rotatably connected to the first hinge part.
[0013] In some embodiments, the rotating member has a first state and a second state. The rotating member is relatively stationary with respect to the main body member in the first state and rotates relative to the main body member in the second state.
[0014] In some embodiments, the rotating member is provided with a mating part, and the main body member is provided with a suction part. In the first state, the mating part and the suction part are magnetically attracted to each other, and in the second state, the mating part and the suction part are separated.
[0015] In some embodiments, at least two of the mating parts are distributed around the fixed part, and the suction part is arranged between two adjacent mating parts; or, at least two of the suction parts are distributed around the fixed part, and the mating part is arranged between two adjacent suction parts.
[0016] In some embodiments, one of the rotating member and the main body member is provided with a sliding groove, and the other is provided with a sliding block. The sliding groove extends around the fixed part, and the sliding block is slidably arranged in the sliding groove around the fixed part.
[0017] In some embodiments, the number of the deformable parts is one; or, the number of the deformable parts is at least two. At least two deformable parts are arranged along the direction around the fixed part, and the rotating member is in transmission connection with the at least two deformable parts.
[0018] In some embodiments, the deformable part has a first form. In the first form, the first deformable part is arranged on the periphery of the main body member, and the second deformable part is received in the first deformable part; or, the deformable part has a second form. In the second form, the first deformable part is connected to the periphery of the main body member and is inclined away from the main body member in the direction around the fixed part, and the second deformable part extends out of the first deformable part.
[0019] In some embodiments, the gyroscope further includes a bearing, and the main body member surrounds the outside of the bearing; the fixing member includes a first fixing portion and a second fixing portion which are oppositely arranged, the first fixing portion and the second fixing portion are respectively inserted into the inner ring of the bearing from both ends of the bearing, and a stop step is provided on the outer peripheral walls of the first fixing portion and the second fixing portion, and the stop step abuts against the end of the bearing.
[0020] In some embodiments, the gyroscope further includes an end cap, the end cap is provided with a first mounting portion, and at least one end of the fixing member in the axial direction is provided with a second mounting portion, and the first mounting portion and the second mounting portion are detachably assembled.
[0021] The gyroscope assembly according to the embodiment of the present invention includes: a connecting member and at least two of the foregoing gyroscopes, third mounting portions are respectively provided at opposite ends of the connecting member, a fourth mounting portion is provided on the main body member, and the third mounting portion and the fourth mounting portion are detachably assembled, and the connecting member is used for connecting a plurality of the main body members.
[0022] The additional aspects and advantages of the present invention will be partly given in the following description, partly will become obvious from the following description, or be understood through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a schematic diagram of the gyroscope according to the embodiment of the present invention (the deformable member is in the first form).
[0024] Figure 2 is a schematic diagram of the gyroscope according to the embodiment of the present invention (the deformable member is in the second form).
[0025] Figure 3 is another perspective schematic diagram of the gyroscope according to the embodiment of the present invention (the deformable member is in the first form).
[0026] Figure 4 is another perspective schematic diagram of the gyroscope according to the embodiment of the present invention (the deformable member is in the second form).
[0027] Figure 5 is a schematic diagram of the gyroscope according to the embodiment of the present invention, in which part of the main body member is hidden (the deformable member is in the first form).
[0028] Figure 6 is a schematic diagram of the gyroscope according to the embodiment of the present invention, in which part of the main body member is hidden (the deformable member is in the second form).
[0029] Figure 7 is a cross-sectional schematic diagram of the gyroscope according to the embodiment of the present invention.
[0030] Figure 8 is a cross-sectional schematic diagram of the gyroscope according to the embodiment of the present invention.
[0031] Figure 9 is Figure 8 An enlarged schematic view of the position of the middle circle A.
[0032] Figure 10 It is an exploded view of the gyroscope according to an embodiment of the present utility model, in which some of the main components are hidden (the deformable part is in the second form).
[0033] Figure 11 It is an exploded view of the main component and the rotating part of the gyroscope according to an embodiment of the present utility model.
[0034] Figure 12 It is a cross-sectional schematic view of the gyroscope according to an embodiment of the utility model.
[0035] Figure 13 It is an exploded view of the fixing part and the bearing of the gyroscope according to an embodiment of the present utility model.
[0036] Figure 14 It is a schematic view of the gyroscope according to another embodiment of the present utility model.
[0037] Figure 15 is Figure 14 The exploded view of
[0038] Figure 16 It is a schematic view of the gyroscope assembly according to an embodiment of the present utility model.
[0039] Figure 17 It is an exploded view of the gyroscope assembly according to an embodiment of the present utility model.
[0040] Reference numerals:
[0041] Gyroscope 100,
[0042] Fixing part 10, first fixing part 11, second fixing part 12, second mounting part 13, stop step 111,
[0043] Main body part 20, slide rail 21, suction part 22, slider 23, fourth mounting part 24, first locking plate 20a, second locking plate 20b,
[0044] Deformable part 30, first deformation part 31, first hinge part 311, second hinge part 312, guide groove 313, second deformation part 32, rack 321, guide block 322,
[0045] Rotating part 40, mating part 41, chute 42,
[0046] First transmission part 51, third hinge part 511, fourth hinge part 512, gear 513, second transmission part 52, fifth hinge part 521, sixth hinge part 522,
[0047] Bearing 60,
[0048] End cover 70, first mounting portion 71,
[0049] Connecting member 200, third mounting portion 210. Detailed implementation manner
[0050] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the 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 drawings are exemplary and are intended to explain the present utility model and should not be construed as limiting the present utility model.
[0051] Combined with Figure 1 and Figure 2 , the gyroscope 100 according to an embodiment of the present utility model includes a fixing member 10 and a main body member 20. The main body member 20 is rotatably connected to the fixing member 10. Among them, the fixing member 10 can be relatively fixed, and the main body member 20 can rotate relative to the fixing member 10. Exemplarily, when operating the gyroscope 100, the fixing member 10 can be pinched by hand, and the main body member 20 can be toggled to rotate the main body member 20.
[0052] The gyroscope 100 may further include a deformable member 30. The deformable member 30 includes a first deformation portion 31 and a second deformation portion 32. The first deformation portion 31 is movably connected to the main body member 20, the second deformation portion 32 is movably connected to the first deformation portion 31, and the second deformation portion 32 is in transmission connection with the first deformation portion 31. Specifically, the deformable member 30 can move relative to the main body member 20 so that the gyroscope 100 has different forms. The first deformation portion 31 is connected to the main body member 20, the second deformation portion 32 is connected to the first deformation portion 31, and when the first deformation portion 31 moves relative to the main body member 20, the second deformation portion 32 can move synchronously.
[0053] The gyroscope 100 according to an embodiment of the present utility model has different forms by providing the deformable member 30, enriching the playing methods of the gyroscope 100. The deformable member 30 includes a first deformation portion 31 and a second deformation portion 32, and the first deformation portion 31 and the second deformation portion 32 can achieve synchronous deformation, enhancing the interest of the gyroscope 100.
[0054] Among them, the first deformation portion 31 and the second deformation portion 32 are in transmission connection, which can be through gear transmission, rack and pinion transmission, worm and worm gear transmission, etc. When the first deformation portion 31 moves, the second deformation portion 32 is driven to move synchronously through the transmission structure, making the form switching of the deformable member 30 more convenient.
[0055] The deformable member 30 may have different shapes, and the deformable member 30 may switch between different shapes. When the deformable member 30 switches between different shapes, the first deformable portion 31 and the second deformable portion 32 may be linked, thereby increasing the fun of the gyroscope 100 .
[0056] The shape switching of the deformable member 30 can be achieved in different ways. For example, when the gyroscope 100 is turned, the deformable member 30 can move relative to the main member 20 under the action of centrifugal force to achieve shape switching; or, the shape switching can be achieved by manually driving the deformable member 30, that is, when the main member 20 is not turned, the deformable member 30 can be manually pulled to move the deformable member 30 relative to the main member 20. The deformable member 30 in different shapes makes the gyroscope 100 have different shapes, enriching the gameplay of the gyroscope 100 and improving the fun.
[0057] The number of the deformable members 30 may be one, two, three, four, etc., and may be adjusted according to specific needs. The present application does not limit the number of the deformable members 30.
[0058] Combination Figure 3 and Figure 4 In some embodiments of the present invention, the deformable member 30 may have a first form, in which the first deformable portion 31 is disposed at the periphery of the main member 20, and the second deformable portion 32 is received in the first deformable portion 31; or, the deformable member 30 may have a second form, in which the first deformable portion 31 is connected to the periphery of the main member 20, and is inclined in a direction away from the main member 20 in a direction around the fixing member 10, and the second deformable portion 32 extends out of the first deformable portion 31. Thus, the deformable portion may have different forms. In the first form, the deformable member 30 may be closed at the periphery of the main member 20, and the second deformable portion 32 is received in the first deformable portion 31. That is to say, in the first form, the second deformable portion 32 is hidden, making the overall structure of the gyroscope 100 compact; in the second form, the first deformable portion 31 may be unfolded toward the outside of the main body, and simultaneously drive the second deformable portion 32 to extend out of the first deformable portion 31, increasing the fun and visual experience of the gyroscope 100 when rotating.
[0059] Among them, the deformable member 30 can be switched from the first form to the second form, or from the second form to the first form. Exemplarily, when the top 100 is toggled, the deformable member 30 can move relative to the main body member 20 under the action of centrifugal force, realizing the switching of the deformable member 30 from the first form to the second form; or, the switching from the first form to the second form is achieved by manually driving the deformable member 30, that is, when the main body member 20 is not toggled, the deformable member 30 can be first manually pulled to drive the deformable member 30 to unfold from the main body member 20. When the deformable member 30 is in the second form, the first deformable portion 31 can be pushed toward the direction of the main body member 20, and the second deformable portion 32 is synchronously received into the first deformable portion 31, and the deformable member 30 is switched from the second form to the first form, realizing the folding of the deformable member 30.
[0060] Combined with Figure 5 and Figure 6 , in some embodiments of the present invention, the top 100 further includes a rotating member 40, the rotating member 40 is rotatably connected to the main body member 20, and the rotating member 40 is in transmission connection with the deformable member 30. Specifically, when the deformable member 30 rotates, the rotating member 40 is synchronously driven to rotate; or when the rotating member 40 rotates, the deformable member 30 can be synchronously driven to rotate, and the rotating member 40 and the main body member 20 can rotate relative to each other.
[0061] Exemplarily, the top 100 can include at least two deformable members 30. When any one of the deformable members 30 moves relative to the main body member 20, the rotating member 40 can simultaneously drive the other deformable members 30 to rotate synchronously. By providing the rotating member 40, the linkage of multiple deformable members 30 can be realized.
[0062] Combined with the foregoing, the deformable member 30 can have a first form and a second form. When switching from the first form to the second form, any one of the deformable members 30 can be manually pulled to move relative to the main body member 20, and the rotating member 40 can synchronously drive the other deformable members 30 to switch from the first form to the second form, realizing the unfolding of the deformable member 30. When switching from the second form to the first form, any one of the deformable members 30 can be pushed toward the direction of the main body member 20, and the rotating member 40 can synchronously drive the other deformable members 30 to switch from the second form to the first form, realizing the folding of the deformable member 30. By providing the rotating member 40, the stability of the movement of the deformable member 30 is improved, and multiple deformable members 30 can be synchronously linked, facilitating the operation of the user.
[0063] In addition, the rotating member 40 is rotatably connected to the main body member 20, that is to say, the rotating member 40 and the main body member 20 can rotate relative to each other, and the rotating member 40 and the main body member 20 can rotate relative to each other under certain conditions. Exemplarily, there may be a force of mutual interaction between the rotating member 40 and the main body member 20, such as magnetic attraction force, damping force, friction force, etc. When the gyroscope 100 is toggled to rotate the gyroscope 100, the deformable member 30 may have a centrifugal force. When the centrifugal force is greater than the mutual interaction force between the rotating member 40 and the main body member 20, the rotating member 40 and the main body member 20 undergo relative movement, and the deformable member 30 moves relative to the main body member 20 and realizes the shape change; when the centrifugal force of the deformable member 30 is less than the mutual interaction force between the rotating member 40 and the main body member 20, the main body member 20 and the rotating member 40 do not rotate relative to each other, and the deformable member 30 does not move relative to the main body member 20, that is to say, the deformable member 30 does not deform.
[0064] Further, in combination with Figure 7 and Figure 10 , the first deformation portion 31 is provided with a first hinge portion 311 and a second hinge portion 312. The first hinge portion 311 is drivingly connected to the rotating member 40 and slidably connected to the main body member 20. The first hinge portion 311 can slide relative to the main body member 20, and when the first hinge portion 311 slides relative to the main body member 20, the rotating member 40 can rotate synchronously. In addition, by providing two hinge portions, the movement stability of the first deformation portion 31 is improved.
[0065] In combination with Figure 8 and Figure 9 , the gyroscope 100 further includes a first transmission member 51. The first transmission member 51 has a third hinge portion 511 and a fourth hinge portion 512. The third hinge portion 511 is rotatably connected to the main body member 20. In other words, the first transmission member 51 can rotate relative to the main body member 20 around the third hinge portion 511. The fourth hinge portion 512 is rotatably connected to the first deformation portion 31. When the first deformation portion 31 rotates, the first transmission member 51 can be driven to rotate through the fourth hinge portion 512.
[0066] Exemplarily, when the first deformation portion 31 slides relative to the main body member 20, it drives the rotating member 40 to rotate and simultaneously drives the first transmission member 51 to rotate; or, when the rotating member 40 rotates relative to the main body member 20, it drives the first deformation portion 31 to slide relative to the main body member 20, and the first deformation portion 31 simultaneously drives the first transmission member 51 to rotate.
[0067] Combined with Figure 7, in some embodiments of the present utility model, the main body member 20 is provided with a slide rail 21. The slide rail 21 extends around the fixing member 10 and is inclined away from the fixing member 10 in the direction of extending around the fixing member 10. The first hinge portion 311 is slidably engaged with the slide rail 21. That is to say, the first hinge portion 311 can slide within the slide rail 21. The slide rail 21 can guide and limit the movement of the first deformation portion 31 to ensure that the first deformation portion 31 moves along a predetermined direction, improving the structural stability and movement stability of the first deformation portion 31.
[0068] Combined with Figure 7 , in some embodiments of the present utility model, the second deformation portion 32 is slidably connected to the first deformation portion 31. When the first deformation portion 31 moves relative to the main body member 20, the second deformation portion 32 can slide relative to the first deformation portion 31. Exemplarily, the second deformation portion 32 may be provided with a guide groove 313, and the first deformation portion 31 may be provided with a guide block 322; or, the second deformation portion 32 is provided with a guide block 322, and the first deformation portion 31 is provided with a guide groove 313. The guide block 322 is slidably disposed in the guide groove 313, improving the smoothness and stability of the form switching of the deformable member 30.
[0069] Combined with Figure 8 , Figure 9 and Figure 10 , wherein, the second deformation portion 32 is provided with a rack 321, and the first transmission member 51 is provided as a gear 513 centered on the second hinge portion 312. The gear 513 is in transmission connection with the rack 321. In other words, the projections of the fourth hinge portion 512 of the first transmission member 51 and the second hinge portion 312 of the first deformation portion 31 in the axial direction may overlap, making the transmission structure compact and highly stable, improving the reliability of the gyroscope 100. Specifically, when the first deformation portion 31 slides relative to the main body member 20, the first deformation portion 31 drives the first transmission member 51 to rotate through the second hinge portion 312. The gear 513 of the first transmission member 51 meshes with the rack 321 of the second deformation portion 32 to drive the second deformation portion 32 to slide relative to the first deformation portion 31, realizing the linkage of the first deformation portion 31 and the second deformation portion 32. In addition, the first transmission member 51 is rotatably connected to the main body member 20 through the third hinge portion 511, improving the structural stability of the first transmission member 51.
[0070] Optionally, the first deformation portion 31 may include a connected first half shell and a second half shell. The second deformation portion 32 is clamped between the first half shell and the second half shell. The first half shell and the second half shell can be fixed to the connecting shaft through glue columns, facilitating the processing and forming of the first deformation portion 31. And guide grooves 313 are provided on the inner sides of both the first half shell and the second half shell. Guide blocks 322 are provided at both the upper and lower ends of the second deformation portion 32. The guide blocks 322 are slidably disposed in the guide grooves 313, improving the movement stability of the second deformation portion 32.
[0071] Optionally, the first transmission member 51 and the second deformation part 32 are alloy parts, which increase the strength of the gear 513 and, at the same time, serve as a counterweight for the gyroscope 100 to improve the feel when the gyroscope 100 rotates.
[0072] Combined Figure 8 with Figure 10 In some embodiments of the present utility model, the gyroscope 100 further includes a second transmission member 52. The second transmission member 52 has a fifth hinge portion 521 and a sixth hinge portion 522. The fifth hinge portion 521 is rotatably connected to the rotating member 40, and the sixth hinge portion 522 is rotatably connected to the first hinge portion 311. Specifically, the first hinge portion 311 is slidably connected to the main body member 20. When the first deformation portion 31 slides relative to the main body member 20, it can drive the rotating member 40 to rotate through the second transmission member 52.
[0073] In some specific embodiments of the present utility model, the gyroscope 100 may have two sets of transmission mechanisms. The following combines Figures 5 to 10 to describe the transmission mechanisms of the embodiments of the present utility model.
[0074] Among them, in the first set of transmission mechanisms, it includes a first transmission member 51. The first transmission member 51 is rotatably connected to the first deformation portion 31 of the main body member 20. The first deformation portion 31 is slidably connected to the main body member 20, and the gear 513 provided on the first transmission member 51 meshes with the rack 321 provided on the second deformation portion 32. The first deformation portion 31 and the second deformation portion 32 are slidably matched. Thus, the main body member 20, the first deformation portion 31, the second deformation portion 32, and the first transmission member 51 cooperate to form the first set of transmission mechanisms. When the first deformation portion 31 slides relative to the main body member 20, it drives the first transmission member 51 to rotate. The first transmission member 51 drives the second deformation portion 32 to slide through the gear 513, realizing the linkage between the first deformation portion 31 and the second deformation portion 32.
[0075] In the second set of transmission structures, it includes a second transmission member 52. The second transmission member 52 is rotatably connected to the rotating member 40 and the first deformation portion 31. The main body member 20 is provided with a slide rail 21, and the first deformation portion 31 is slidably matched with the slide rail 21. Thus, the main body member 20, the rotating member 40, and the first deformation portion 31 cooperate to form the second set of transmission mechanisms. The first deformation portion 31 slides in the slide rail 21, driving the second transmission member 52 to move and driving the rotating member 40 to rotate.
[0076] Combined Figure 5 with Figure 6In some embodiments of the present invention, the rotating member 40 has a first state and a second state. The rotating member 40 is relatively stationary with the main member 20 in the first state, and rotates relative to the main member 20 in the second state. Specifically, in the first state, the rotating member 40 rotates synchronously with the main member 20, and the deformable member 30 also rotates synchronously with the main member 20, that is, in the first state, the deformable member 30 does not change in shape; in the second state, the rotating member 40 rotates relatively with the main member 20, and the deformable member 30 moves relative to the main member 20, so that the deformable member 30 changes in shape.
[0077] The rotating member 40 can rotate relative to the main member 20 when certain conditions are met. For example, when the rotational acceleration of the main member 20 reaches a certain predetermined value, the main member 20 can rotate relative to the rotating member 40; or, when the external force applied to the rotating member 40 reaches a certain value, the main member 20 can rotate relative to the rotating member 40. For example, there can be an interaction force between the rotating member 40 and the main member 20, such as magnetic attraction, damping force, friction force, etc. When the external force applied to the rotating member 40 is greater than the action force between the main member 20 and the rotating member 40, the rotating member 40 and the main member 20 can rotate relative to each other. By presetting certain conditions, the rotating member 40 and the main member 20 can rotate relative to each other, and the deformable member 30 can change its shape, thereby increasing the fun of the gyroscope 100. The external force can be a manually applied external force, or a centrifugal force when the gyroscope 100 rotates.
[0078] For example, when the gyroscope 100 is moved with a relatively small force, the rotating member 40 may not rotate relative to the main member 20, that is, the deformable member 30 does not switch its state. When the gyroscope 100 is moved with a relatively large force, the centrifugal force of the deformable member 30 is greater than the force between the rotating member 40 and the main member 20, so that the rotating member 40 and the main member 20 rotate relative to each other, and the deformable member 30 switches its state during the rotation process. Therefore, when different forces are applied to the deformable member 30, the gyroscope 100 has different shapes, which increases the fun of the gyroscope 100.
[0079] In addition, the deformable member 30 can be deformed manually, for example, the deformable member 30 can be manually pulled to unfold from the main member 20, or the deformable member 30 can be manually folded in the unfolded state. During the process of manually driving the deformable member 30 to deform, the rotating member 40 is in the second state.
[0080] Combination Figure 11In some embodiments of the utility model, the rotating member 40 is provided with a matching portion 41, and the main body 20 is provided with a suction portion 22. In the first state, the matching portion 41 and the suction portion 22 are magnetically attracted to each other, and in the second state, the matching portion 41 and the suction portion 22 are separated. Specifically, the rotating member 40 is connected to the deformable member 30 in a transmission manner. When the deformable member 30 moves relative to the main body 20, that is, when the deformable member 30 switches its form, it drives the rotating member 40 to rotate synchronously, and the rotating member 40 switches from the first state to the second state. At this time, the rotating member 40 needs to overcome the magnetic attraction of the matching portion 41 and the suction portion 22. By providing the matching portion 41 and the suction portion 22, when the deformable member 30 is manually moved, the hand feel can be increased, and the interactive feeling of using the gyroscope 100 can be improved.
[0081] Specifically, the deformable member 30 may have a first form and a second form. In the first form, the second deformable portion 32 may be stored in the first deformable portion 31, and the first deformable portion 31 is disposed at the periphery of the main member 20. In the second form, the first deformable portion 31 is connected to the periphery of the main member 20 and is inclined in a direction away from the main member 20 around the direction of the fixing member 10, and the second deformable portion 32 extends out of the first deformable portion 31. When the form of the deformable member 30 is manually switched, from the first form to the second form, that is, when the deformable member 30 is manually moved to unfold the deformable member 30, it is necessary to overcome the magnetic attraction between the matching portion 41 and the suction portion 22, so as to increase the hand feeling of manually unfolding the deformable portion and increase the experience; when the deformable member 30 is manually folded from the second form to the first form, that is, when the deformable member 30 is manually folded to fold the deformable member 30, the magnetic attraction between the matching portion 41 and the suction portion 22 can make the folding of the deformable member 30 smoother and more decompressed, and there is a magnetic suction hand feeling and sound when folding, which enhances the interactive feeling of using the gyroscope 100.
[0082] Furthermore, the mating parts 41 include at least two distributed in the direction around the fixing part 10, the suction part 22 is arranged between two adjacent mating parts 41, the rotating part 40 is in the first state, the suction part 22 can be magnetically adsorbed to one of the mating parts 41, the rotating part 40 switches from the first state to the second state, the suction part 22 is disengaged from one of the mating parts 41, and is magnetically adsorbed to the other mating part 41, the two mating parts 41 can limit the rotation of the rotating part 40, that is, the rotating part 40 can rotate relative to the main part 20 between the two mating parts 41, thereby limiting the extension and retraction range of the deformable part 30.
[0083] Alternatively, the suction part 22 includes at least two parts distributed around the direction of the fixed part 10, the matching part 41 is arranged between two adjacent suction parts 22, the rotating part 40 is in the first state, the matching part 41 can be magnetically adsorbed to one of the suction parts 22, the rotating part 40 switches from the first state to the second state, the matching part 41 is disengaged from one of the suction parts 22, and is magnetically adsorbed to the other suction part 22, the two suction parts 22 can limit the rotation of the rotating part 40, that is, the rotating part 40 can rotate relative to the main part 20 between the two suction parts 22, thereby limiting the extension and retraction range of the deformable part 30.
[0084] The above-mentioned matching part 41 and the suction part 22 may be provided in a group, wherein one group refers to: two suction parts 22 and a matching part 41 disposed between the two suction parts 22; or, two matching parts 41 and a suction part 22 disposed between the two matching parts 41. Of course, the matching parts 41 and the suction parts 22 may be provided in at least two groups, and each group of matching parts 41 and the suction parts 22 are evenly spaced around the fixed part 10, which can improve the feel of using the gyroscope 100 and the limiting effect of the rotating part 40.
[0085] One of the matching part 41 and the suction part 22 can be an iron block, and the other can be a magnet. Exemplarily, the matching part 41 is an iron block and the suction part 22 is a magnet; or, the matching part 41 is a magnet and the suction part 22 is an iron block. The rotating part 40 can be provided with a positioning groove for positioning the matching part 41, and the main part 20 can be provided with a positioning groove for positioning the suction part 22, so as to improve the structural stability of the suction part 22 and the matching part 41.
[0086] Combination Figure 10 and Figure 11 In some embodiments of the present invention, one of the rotating member 40 and the main member 20 is provided with a slide groove 42, and the other is provided with a slider 23, the slide groove 42 extends around the fixed member 10, and the slider 23 is slidably arranged in the slide groove 42 around the fixed member 10. The slide groove 42 and the slider 23 cooperate to guide and limit the movement of the rotating member 40, thereby improving the movement stability of the rotating member 40.
[0087] In some embodiments of the present invention, the number of the deformable member 30 may be one.
[0088] Alternatively, the number of the deformable members 30 may be at least two, and at least two deformable members 30 are arranged in a direction around the fixed member 10, and the rotating member 40 is transmission-connected to the at least two deformable members 30. By setting the rotating member 40, when the deformable members 30 are manually driven to deform, when any one of the deformable members 30 moves relative to the main member 20, the rotating member 40 can simultaneously drive the other deformable members 30 to rotate synchronously, thereby realizing the linkage of multiple deformable members 30 and improving the convenience of using the gyroscope 100.
[0089] Combined Figure 11 Optionally, the main body member 20 may include a first locking plate 20a and a second locking plate 20b arranged in a stacked manner. The rotating member 40 may be clamped between the first locking plate 20a and the second locking plate 20b, and the first locking plate 20a and the second locking plate 20b are fixed by screws. The cooperation of the first locking plate 20a and the second locking plate 20b can improve the structural stability of the rotating member 40. The first locking plate 20a and the second locking plate 20b may be fixed by fixing members.
[0090] Combined Figure 12 and Figure 13 In some embodiments of the present utility model, the gyroscope 100 further includes a bearing 60. The main body member 20 surrounds the outside of the bearing 60. The bearing 60 can reduce the friction between the main body member 20 and the fixing member 10, and improve the smoothness and stability of the rotation of the main body member 20. Wherein, the fixing member 10 includes a first fixing portion 11 and a second fixing portion 12 arranged oppositely. The first fixing portion 11 and the second fixing portion 12 are respectively inserted into the inner ring of the bearing 60 from both ends of the bearing 60. A stop step 111 is provided on the outer peripheral wall of the first fixing portion 11 and the second fixing portion 12, and the stop step 111 abuts against the end of the bearing 60. Specifically, the first fixing portion 11 and the second fixing portion 12 respectively press the inner ring of the bearing 60 from the up and down directions, improving the structural stability of the bearing 60, and further improving the reliability of the gyroscope 100.
[0091] Optionally, the first fixing portion 11 and the second fixing portion 12 may be inserted and matched, and fixed by fixing members. The structural strength of the fixing member 10 is improved to stably support the rotation of the main body member 20. In addition, the first fixing portion 11 and the second fixing portion 12 may be key-connected to improve the structural stability of the fixing member 10. Wherein, the fixing member may be a screw or the like.
[0092] Combined Figure 14 and Figure 15 In some embodiments of the utility model, the gyroscope 100 may further include an end cap 70. The end cap 70 may be connected to the fixing member 10. By providing the end cap 70, it is convenient for the user to hold the gyroscope 100.
[0093] Wherein, a first installation portion 71 may be provided on the end cap 70. At least one end of the fixing member 10 along the axial direction may be provided with a second installation portion 13. The first installation portion 71 and the second installation portion 13 may be detachably assembled, that is to say, the end cap 70 and the fixing member 10 are detachably connected. Exemplarily, the gyroscope 100 may be equipped with different end caps 70, and different end caps 70 may be replaced according to different usage environments, or the end cap 70 may be replaced with other components to enrich the playing methods of the gyroscope 100.
[0094] Exemplarily, the first mounting portion 71 may be a snap fastener, and the second mounting portion 13 may be a slot; or, the first mounting portion 71 may be a slot, and the second mounting portion 13 may be a snap fastener. This makes the structures of the first mounting portion 71 and the second mounting portion 13 simple, facilitating the disassembly and assembly of the end cap 70 and the mounting portion.
[0095] The end cap 70 may include one, that is to say, one end of the fixing member 10 in the axial direction may be connected to one end cap 70; or the end cap 70 may be provided with that, that is to say, both ends of the fixing member 10 in the axial direction are provided with end caps 70. In an embodiment with two end caps 70, both end caps 70 are detachably connected to the fixing member 10, and the two end caps 70 can be arbitrarily replaced; or, one of the end caps 70 is detachable.
[0096] Combined Figure 16 and Figure 17 According to an embodiment of the present invention, the gyro assembly may include a connecting member 200 and at least two of the foregoing gyros 100. The opposite ends of the connecting member 200 are respectively provided with a third mounting portion 210, and the main body member 20 is provided with a fourth mounting portion 24. The third mounting portion 210 and the fourth mounting portion 24 are detachably assembled, and the connecting member 200 is used to connect a plurality of main body members 20. By providing the connecting member 200 to connect a plurality of gyros 100, the playing methods of the gyros 100 are enriched.
[0097] In addition, the connecting member 200 is used to connect a plurality of main body members 20. When one of the main body members 20 is toggled to rotate, it can drive the other main body members 20 to rotate synchronously. That is to say, the plurality of gyros 100 connected by the connecting member 200 can rotate synchronously. By providing the connecting member 200, the synchronous rotation of a plurality of gyros 100 that do not have a strong correlation can be realized, and the deformation members 30 on the plurality of gyros 100 can be switched in form synchronously, enriching the playing methods of the gyros 100 and enhancing the interest.
[0098] Among them, the third mounting portion 210 may be a snap fastener, and the fourth mounting portion 24 may be a slot; or, the third mounting portion 210 is a slot, and the fourth mounting portion 24 is a snap fastener. Taking the third mounting portion 210 as a snap fastener and the fourth mounting portion 24 as a slot as an example, the slot may include a first part and a second part. Among them, the dimension of the first part in the radial direction is larger than that of the second part in the radial direction. The snap fastener can be snapped into the slot from the first part, and then the gyro 100 is rotated, and the snap fastener can be snapped into the second part to realize the locking of the connecting portion and the main body member 20, making the disassembly of the connecting member 200 and the main body member 20 convenient, and the structure stable after connection.
[0099] In the embodiment in which the foregoing gyro 100 includes an end cap 70, the end cap 70 can be first detached from the fixing member 10, and then the third mounting portion 210 of the connecting member 200 is aligned with the fourth mounting portion 24 of the main body member 20 for assembly.
[0100] In addition, an escape space may be provided on one side of the connecting member 200 facing the main member 20. After the connecting member 200 is assembled with the main member 20, no interference or friction is generated with the fixing members 10 of the upper and lower gyroscopes 100, so that the upper and lower gyroscopes 100 can rotate synchronously and smoothly.
[0101] Exemplarily, the gyro assembly may include a connector 200, and the two ends of the connector 200 are respectively connected to a gyro 100; or, the gyro assembly may include two connectors 200 and three gyro 100, wherein the two ends of the middle gyro 100 are respectively connected to a connector 200; of course, the gyro assembly of the present application may also have other combinations, which are not listed one by one in the present application, and those skilled in the art can easily obtain other combinations of the gyro assembly of the present application based on the above description. By setting the connector 200, multiple gyro 100s can be stacked for combination, enriching the gameplay of the gyro 100.
[0102] The various embodiments / implementations of the present invention can be combined with each other without causing any contradiction.
[0103] In the description of the present invention, it is necessary to understand that the orientations or positional relationships indicated by “upper”, “lower”, “inside”, “outside”, “clockwise”, “counterclockwise”, “axial”, “radial”, “circumferential”, etc. are based on the orientations or positional relationships 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, and therefore cannot be understood as a limitation on the present invention.
[0104] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present utility model, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0105] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0106] In the present utility model, unless otherwise clearly defined and limited, the first feature being "on" or "under" the second feature may mean that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "below" and "beneath" the second feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the horizontal height of the first feature is less than that of the second feature.
[0107] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0108] Although the embodiments of the present utility model have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present utility model. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present utility model.
Claims
1. A gyroscope (100), characterized in that: include: A fixing member (10); A main body (20), wherein the main body (20) is rotatably connected to the fixing member (10); A deformation member (30), the deformation member (30) comprising a first deformation portion (31) and a second deformation portion (32), the first deformation portion (31) being movably connected to the main body (20), the second deformation portion (32) being movably connected to the first deformation portion (31), and the second deformation portion (32) being transmission-connected to the first deformation portion (31).
2. The gyroscope (100) according to claim 1, characterized in that: It also comprises a rotating member (40), wherein the rotating member (40) is rotatably connected to the main body member (20), and the rotating member (40) is transmission-connected to the deformation member (30).
3. The gyroscope (100) according to claim 2, characterized in that: The invention also comprises a first transmission member (51), wherein the first deformation part (31) is provided with a first hinge part (311) and a second hinge part (312), wherein the first hinge part (311) is transmission-connected to the rotating member (40) and slidably connected to the main body (20), and the first transmission member (51) has a third hinge part (511) and a fourth hinge part (512), wherein the third hinge part (511) is rotationally connected to the main body (20), and the fourth hinge part (512) is rotationally connected to the first deformation part (31).
4. The gyroscope (100) according to claim 3, characterized in that: The main body (20) is provided with a slide rail (21), the slide rail (21) extends around the fixing member (10) and is inclined in a direction away from the fixing member (10) in the direction of extending around the fixing member (10), and the first hinged portion (311) is slidably matched with the slide rail (21).
5. The gyroscope (100) according to claim 3, characterized in that: The second deformation part (32) is slidably connected to the first deformation part (31), the second deformation part (32) is provided with a rack (321), the first transmission member (51) is provided with a gear (513) centered on the second hinged part (312), and the gear (513) is transmission-connected to the rack (321).
6. The gyroscope (100) according to claim 3, characterized in that: It also includes a second transmission member (52), the second transmission member (52) having a fifth hinged portion (521) and a sixth hinged portion (522), the fifth hinged portion (521) being rotationally connected to the rotating member (40), and the sixth hinged portion (522) being rotationally connected to the first hinged portion (311).
7. The gyroscope (100) according to claim 2, characterized in that: The rotating member (40) has a first state and a second state. In the first state, the rotating member (40) is relatively stationary with respect to the main member (20), and in the second state, the rotating member (40) rotates relative to the main member (20).
8. The gyroscope (100) according to claim 7, characterized in that: The rotating member (40) is provided with a matching portion (41), and the main body (20) is provided with a suction portion (22). In the first state, the matching portion (41) and the suction portion (22) are magnetically attracted to each other, and in the second state, the matching portion (41) and the suction portion (22) are separated.
9. The gyroscope (100) according to claim 8, characterized in that: The matching parts (41) include at least two parts distributed in a direction around the fixing member (10), and the suction part (22) is arranged between two adjacent matching parts (41); Alternatively, the suction portions (22) include at least two suction portions (22) distributed around the direction of the fixing member (10), and the matching portion (41) is arranged between two adjacent suction portions (22).
10. The gyroscope (100) according to claim 2, characterized in that: One of the rotating member (40) and the main member (20) is provided with a slide groove (42), and the other is provided with a slider (23), the slide groove (42) extends around the fixed member (10), and the slider (23) is slidably arranged in the slide groove (42) around the fixed member (10).
11. The gyroscope (100) according to claim 2, characterized in that: The number of the deformable member (30) is one; Alternatively, the number of the deformable members (30) is at least two, at least two of the deformable members (30) are arranged in a direction around the fixed member (10), and the rotating member (40) is transmission-connected to the at least two deformable members (30).
12. The gyroscope (100) according to claim 1, characterized in that: The deformable member (30) has a first form, in which the first deformable portion (31) is arranged on the periphery of the main member (20), and the second deformable portion (32) is accommodated in the first deformable portion (31); or, the deformable member (30) has a second form, in which the first deformable portion (31) is connected to the periphery of the main member (20) and is inclined in a direction away from the main member (20) in a direction around the fixing member (10), and the second deformable portion (32) extends out of the first deformable portion (31).
13. The gyroscope (100) according to claim 1, characterized in that: Also includes: A bearing (60), wherein the main body (20) is disposed around the outer side of the bearing (60); The fixing member (10) comprises a first fixing portion (11) and a second fixing portion (12) which are arranged opposite to each other. The first fixing portion (11) and the second fixing portion (12) are respectively inserted into the inner ring of the bearing (60) from both ends of the bearing (60). A stop step (111) is provided on the outer peripheral wall of the first fixing portion (11) and the second fixing portion (12). The stop step (111) abuts against the end of the bearing (60).
14. The gyroscope (100) according to claim 1, characterized in that: It also includes an end cover (70), the end cover (70) is provided with a first mounting portion (71), at least one end of the fixing member (10) along the axial direction is provided with a second mounting portion (13), and the first mounting portion (71) and the second mounting portion (13) are detachably assembled.
15. A gyro assembly, characterized in that: include: A connecting member (200), wherein the connecting member (200) has third mounting portions (210) respectively disposed at two opposite ends thereof, At least two gyroscopes (100) according to any one of claims 1 to 14, wherein the main body (20) is provided with a fourth mounting portion (24), the third mounting portion (210) and the fourth mounting portion (24) are detachably assembled, and the connecting member (200) is used to connect a plurality of the main body members (20).