Top toy

By designing lockable and unlockable operating parts in the spinning top toy, the attack parts can be disassembled and replaced, solving the problem that the attack parts of existing spinning top toys cannot be replaced, thus enhancing the fun of playing and competition.

CN223944951UActive Publication Date: 2026-02-27ALPHA GROUP CO LTD +2
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Patent Information

Application Number
CN202423322053.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing spinning top toys cannot replace the attack parts according to actual needs, resulting in a lack of enjoyment when playing with them.

Method used

A spinning top toy has been designed. By manipulating the components, the attack component can be locked and unlocked, allowing it to rotate with the spinning top body or detach, thus enabling the disassembly and replacement of the attack component.

Benefits of technology

It enhances the fun of playing, meets diverse individual needs, allows for easy replacement of attack parts according to actual needs, and enhances the competitive enjoyment of playing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a spinning top toy which comprises a spinning top body and an attack component, the spinning top body is suitable for rotating and comprises an operation component, the operation component is suitable for being controlled by a user to be movable, the attack component is arranged on the spinning top body, and the operation component is suitable for locking and unlocking the attack component during movement. The attack part is suitable for being fixed to the gyroscope body when being locked by the operation part so as to rotate along with the gyroscope body, and the attack part is suitable for being separated from the gyroscope body when being unlocked by the operation part. Through cooperation of the operation part and the attack part, locking and unlocking of the attack part can be achieved, different attack parts can be replaced conveniently according to actual requirements, playing fun can be improved, and personalized requirements can be met.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of toys, in particular to a top toy. BACKGROUND

[0002] A top toy can rotate at high speed on a supporting surface, in particular, when there are multiple top toys in the same area, the multiple top toys can collide with each other when rotating at high speed, and provide certain competitive fun. Generally, a top toy has an attack component for collision, but the attack component of the current top toy cannot be replaced according to actual needs. CONTENT OF THE UTILITY MODEL

[0003] The present application aims to at least solve one of the technical problems in the related art to some extent. To this end, the present application provides a top toy.

[0004] To achieve the above-mentioned purpose, the present application discloses a top toy, which comprises:

[0005] a top body adapted to rotate, the top body comprising an operation component adapted to be controlled by a user to be movable; and

[0006] an attack component provided on the top body, the operation component being adapted to lock and unlock the attack component when movable, the attack component being adapted to be fixed to the top body to rotate with the top body when locked by the operation component, and the attack component being adapted to be separated from the top body when unlocked by the operation component.

[0007] In some embodiments of the present application, the operation component can rotate relative to the rest of the top body, and can be rotated to a first position and a second position, the operation component being adapted to lock the attack component when rotated to the first position, and being adapted to unlock the attack component when rotated to the second position.

[0008] In some embodiments of the present application, the operation component is provided with a lock tongue, and the attack component is provided with a lock catch, the lock tongue being adapted to be inserted into the lock catch when the operation component is rotated to the first position, to stop the lock catch in the direction of the attack component being separated from the top body, and being adapted to be separated from the lock catch when the operation component is rotated to the second position, to avoid the lock catch in the direction of the attack component being separated from the top body.

[0009] In some embodiments of the present application, the top body is provided with a slot, the slot being adapted to allow the lock catch to be inserted, the lock tongue being adapted to move into the slot to insert the lock catch when the operation component is rotated to the first position, and being adapted to move out of the slot to separate from the lock catch when the operation component is rotated to the second position.

[0010] In some embodiments of the application, a plurality of the slots are arranged along the circumference of the gyro body, and the number of the slots, the latches and the locking tongues are one-to-one corresponding.

[0011] In some embodiments of the application, the gyro body is provided with a first limiting slot and a second limiting slot in communication, and the operating component is provided with a limiting claw, the limiting claw is adapted to reciprocate in the first limiting slot and the second limiting slot when the operating component rotates, and is located in the first limiting slot when the operating component rotates to the first position, and is located in the second limiting slot when the operating component rotates to the second position.

[0012] In some embodiments of the application, the gyro body is further provided with a touch portion between the first limiting slot and the second limiting slot, the touch portion is adapted to stop the limiting claw, and at least one of the touch portion and the limiting claw is adapted to elastically deform so that the limiting claw can pass the touch portion.

[0013] In some embodiments of the application, the operating component is annular and surrounds the rotation axis of the gyro body.

[0014] In some embodiments of the application, the operating component comprises a first operating member and a second operating member connected, the first operating member is provided with a locking tongue, and the second operating member is provided with a limiting claw.

[0015] In some embodiments of the application, one of the first operating member and the second operating member is provided with a clamping groove, and the other is provided with a clamping convex, the clamping convex is adapted to be embedded in the clamping groove along the axial direction of the gyro body, and the clamping convex and the clamping groove are adapted to abut along the circumferential direction of the gyro body.

[0016] In some embodiments of the application, the gyro body further comprises:

[0017] A support shell, the operating component is rotatably arranged around the support shell;

[0018] A drive gear connected with the support shell;

[0019] A retaining shell connected with the structure formed by the support shell and the drive gear; and

[0020] A bearing provided between the retaining shell and the structure formed by the support shell and the drive gear.

[0021] In some embodiments of the application, the support shell comprises an upper shell and a lower shell connected, and the upper shell and the lower shell clamp the operating component.

[0022] In some embodiments of the application, the support shell and the drive gear clamp the inner side of the bearing.

[0023] In some embodiments of the application, the retaining shell comprises an upper snap ring and a lower snap ring connected, the upper snap ring and the lower snap ring clamp the outer side of the bearing.

[0024] In some embodiments of the application, the toy top further comprises a top tip, the top tip and the top body are snap connected, the top body is adapted to be rotatably supported on a support surface by the top tip.

[0025] In some embodiments of the application, the projection of the attack component is larger than the projection of the top body along the axial direction of the toy top, and the projection of the top body is located within the projection of the attack component.

[0026] In some embodiments of the application, the attack component comprises a first attack piece and a second attack piece, the second attack piece is provided on the top body, the first attack piece is stacked above the second attack piece and is adapted to be locked and unlocked by the operation component to clamp the second attack piece with the top body.

[0027] In some embodiments of the application, the first attack piece and the second attack piece are annular, the attack component further comprises a sandwich piece, the sandwich piece is surrounded by the first attack piece and the second attack piece, and is clamped by the first attack piece and the second attack piece or by the first attack piece and the top body, the sandwich piece is exposed to the first attack piece.

[0028] In some embodiments of the application, the attack component comprises a first attack piece and a sandwich piece, the first attack piece is annular, the first attack piece is adapted to be locked and unlocked by the operation component, the sandwich piece is surrounded by the first attack piece, and is clamped by the first attack piece and the top body, the sandwich piece is exposed to the first attack piece.

[0029] In some embodiments of the application, a first attack piece is sleeved on the top body; and / or a second attack piece is sleeved on the top body.

[0030] Other advantages of the present application will be in part apparent and in part pointed out below. BRIEF DESCRIPTION OF DRAWINGS

[0031] In order to describe the technical solutions of the embodiments of the present application or the prior art more clearly, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the accompanying drawings in the following description only show some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of the drawings shown.

[0032] Figure 1 A schematic view of a toy top for some embodiments;

[0033] Figure 2 An exploded view of a toy top for some embodiments;

[0034] Figure 3 An exploded view of a toy top for some embodiments (different from the exploded view shown in Fig. 2); Figure 2

[0035] An exploded view of a toy top for some embodiments (different from the exploded view shown in Fig. 2); Figure 4 Figure 2 Figure 3 An exploded view of a toy top for some embodiments (different from the exploded view shown in Fig. 2);

[0036] Figure 5 A schematic view of a first attacking piece for some embodiments;

[0037] Figure 6 A schematic view of a top body in an unlocked state for some embodiments (the operating part is rotated to a second position);

[0038] Figure 7 A schematic view of a top body in an unlocked state for some embodiments (different from the view shown in Fig. 6); Figure 6

[0039] A schematic view of a top body in a locked state for some embodiments (the operating part is rotated to a first position); Figure 8

[0040] A schematic view of a top body in a locked state for some embodiments (different from the view shown in Fig. 7); Figure 9 Figure 8 A schematic view of an operating part for some embodiments;

[0041] Figure 10 An exploded view of an operating part for some embodiments;

[0042] Figure 11 A cross-sectional view of a toy top for some embodiments;

[0043] Figure 12 An exploded view of a top body for some embodiments;

[0044] Figure 13 An exploded view of a top body for some embodiments;​​​

[0045] Figure 14 Figure 8 is a cross-sectional view of a gyro body in some embodiments.

[0046] Figure 15 Figure 9 is a schematic view of an upper shell in some embodiments.

[0047] Brief Description of the Drawings:

[0048] Gyro body 1000, support shell 1100, upper shell 1110, slot 1111, positioning slot 1112, first limiting slot 1113, second limiting slot 1114, touch part 1115, lower shell 1120, operating part 1200, first operating piece 1210, lock tongue 1211, clamping groove 1212, second operating piece 1220, limiting clamping jaw 1221, clamping convex 1222, drive gear 1300, retaining shell 1400, upper clamping ring 1410, lower clamping ring 1420, bearing 1500, attack part 2000, first attack piece 2100, lock catch 2110, second attack piece 2200, positioning part 2210, sandwich piece 2300, tip 3000.

[0049] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0051] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.

[0052] In the present application, unless otherwise explicitly specified and limited, the terms "connection", "fixation" and the like should be understood in a broad sense, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be internal connection of two elements or interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0053] In addition, the descriptions such as "first", "second" and the like in the present application are only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the technical features indicated or implying the number of technical features indicated. Therefore, the features defined as "first", "second" can be explicitly or implicitly included at least one of the features. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor in the protection scope claimed in the present application.

[0054] The present application discloses a gyro toy, combining Figures 1 to 10 As shown in the figure, in some embodiments, the gyro toy comprises a gyro body 1000 and an attack component 2000, the gyro body 1000 is suitable for rotation, and the gyro body 1000 comprises an operation component 1200, the operation component 1200 is suitable for being controlled by the user to be movable, the attack component 2000 is arranged on the gyro body 1000, the operation component 1200 is suitable for locking and unlocking the attack component 2000 when moving, the attack component 2000 is suitable for being fixed on the gyro body 1000 when being locked by the operation component 1200, and can rotate with the gyro body 1000, and the attack component 2000 is suitable for being separated from the gyro body 1000 when being unlocked by the operation component 1200.

[0055] By cooperating the operation component 1200 with the attack component 2000, the locking and unlocking of the attack component 2000 can be realized, which is convenient for replacing the attack component 2000 according to actual needs, helps to improve the playing fun, and meets the diversified individual needs.

[0056] Specifically, the gyro body 1000 can rotate when being driven, the gyro body 1000 comprises the operation component 1200, it can be understood that the operation component 1200 also rotates when the gyro body 1000 rotates, the operation component 1200 is configured to be movably arranged and is used for being controlled by the user, the user control means that the user applies force to the operation component 1200, so that the operation component 1200 presents corresponding movement, and the movement of the operation component 1200 can realize the locking and unlocking of the attack component 2000. That is, if the attack component 2000 is to be locked, the user needs to control the operation component 1200 to make the operation component 1200 present corresponding movement, so that the operation component 1200 locks the attack component 2000, if the attack component 2000 is to be unlocked, the user needs to control the operation component 1200 to make the operation component 1200 present corresponding movement, so that the operation component 1200 unlocks the attack component 2000.

[0057] When the operating component 1200 is used to lock the attack component 2000, the attack component 2000 is fixed with the gyro body 1000, so that the attack component 2000 can rotate with the gyro body 1000, and the gyro toy can collide with other objects (such as other gyro toys, walls, obstacles, etc.) through the attack component 2000. When the operating component 1200 is used to unlock the attack component 2000, the attack component 2000 and the gyro body 1000 can be separated from each other, so that a new or another attack component 2000 can be replaced according to the playing needs, and when the new or another attack component 2000 is reinstalled on the gyro body 1000, the attack component 2000 can be relocked through the operating component 1200. In this way, the attack component 2000 can be conveniently disassembled and replaced, and different specifications of attack components 2000 can be selected according to the playing needs or the individuality of the user, which helps to improve the playing fun.

[0058] The movable setting of the operating component 1200 is achieved in a rotating manner, which is convenient for locking and unlocking the attack component 2000 under the control of the user. Figures 6 to 9 As shown in FIG. 1, in some embodiments, the operating component 1200 can rotate relative to the rest of the gyro body 1000, and can be rotated to a first position and a second position. The operating component 1200 is adapted to lock the attack component 2000 when rotated to the first position, and is adapted to unlock the attack component 2000 when rotated to the second position.

[0059] Specifically, in addition to being able to rotate with the gyro body 1000, the operating component 1200 can also rotate relative to the rest of the gyro body 1000, i.e., the part other than the operating component 1200, such as the support shell 1100, the drive gear 1300, the retaining shell 1400, etc. mentioned below. When the user controls the operating component 1200, the operating component 1200 is used to lock and unlock the attack component 2000 in a rotating manner. The operating component 1200 can be rotated to a first position and a second position. When the operating component 1200 is rotated to the first position, the attack component 2000 can be locked, and when the operating component 1200 is rotated to the second position, the attack component 2000 can be unlocked. In this way, the user can manually control the operating component 1200 to achieve the manual disassembly and assembly of the attack component 2000, without the need to find a tool for disassembly and assembly, which is more convenient and efficient.

[0060] For example, the operation component 1200 is turned to the first position to lock the attack component 2000, and the operation component 1200 is turned to the second position to unlock the attack component 2000. Alternatively, the operation component 1200 is turned to the first position to lock the attack component 2000, and the operation component 1200 is continuously turned to the second position to unlock the attack component 2000. It can be understood that the operation component 1200 is configured to be reciprocally turned between the first position and the second position to lock and unlock the attack component 2000, which is beneficial to simplify the structure.

[0061] The operation component 1200 and the attack component 2000 are locked and unlocked by the cooperation of the lock tongue 1211 and the lock catch 2110, which improves the convenience and stability of disassembly. Figures 1 to 12 As shown in the drawings, in some embodiments, the operation component 1200 is provided with the lock tongue 1211, and the attack component 2000 is provided with the lock catch 2110. The lock tongue 1211 is adapted to be inserted into the lock catch 2110 when the operation component 1200 is turned to the first position, so as to stop the lock catch 2110 in the direction of the attack component 2000 being separated from the gyro body 1000, and adapted to be separated from the lock catch 2110 when the operation component 1200 is turned to the second position, so as to avoid the lock catch 2110 in the direction of the attack component 2000 being separated from the gyro body 1000.

[0062] Specifically, the specific shapes of the lock tongue 1211 and the lock catch 2110 are not limited. When the operation component 1200 is turned, the lock tongue 1211 moves accordingly, so as to cooperate with the lock catch 2110. That is, when the operation component 1200 is turned to the first position, the lock tongue 1211 moves to the corresponding position and is inserted into the lock catch 2110. It can be understood that the insertion of the lock tongue 1211 into the lock catch 2110 means that the lock tongue 1211 and the lock catch 2110 are limited to each other, so that the lock tongue 1211 stops the lock catch 2110 in the direction of the attack component 2000 being separated from the gyro body 1000. At this time, the operation component 1200 locks the attack component 2000, and the attack component 2000 is fixed on the gyro body 1000 and cannot be separated from the gyro body 1000. When the operation component 1200 is turned to the second position, the lock tongue 1211 moves to the corresponding position and is separated from the lock catch 2110. It can be understood that the separation of the lock tongue 1211 from the lock catch 2110 means that the lock tongue 1211 and the lock catch 2110 are no longer limited to each other, so that the lock tongue 1211 avoids the lock catch 2110 in the direction of the attack component 2000 being separated from the gyro body 1000. At this time, the operation component 1200 unlocks the attack component 2000, and the attack component 2000 can be separated from the gyro body 1000.

[0063] In combination with the above description, Figures 3 to 9 and Figure 15As shown, in some embodiments, the gyro body 1000 is provided with a slot 1111 adapted for the insertion of the lock catch 2110, the lock tongue 1211 is adapted to move into the slot 1111 to insert the lock catch 2110 when the operating component 1200 is rotated to the first position, and is adapted to move out of the slot 1111 to disengage the lock catch 2110 when the operating component 1200 is rotated to the second position. When the attack component 2000 is installed to the gyro body 1000, the lock catch 2110 needs to be inserted into the slot 1111, so as to play a positioning role for the installation of the attack component 2000, thereby facilitating the cooperation of the lock tongue 1211 and the lock catch 2110.

[0064] Specifically, when the attack component 2000 is installed to the gyro body 1000, the lock catch 2110 is inserted into the slot 1111, the operating component 1200 is controlled to rotate to the first position, so that the lock tongue 1211 moves into the slot 1111 and is inserted into the lock catch 2110 in the process of moving into the slot 1111, so as to realize the locking of the attack component 2000. When the operating component 1200 is controlled to rotate to the second position, the lock tongue 1211 moves out of the slot 1111 and disengages the lock catch 2110 in the process of moving out of the slot 1111, so as to realize the unlocking of the attack component 2000. On the basis that the gyro body 1000 realizes the support of the attack component 2000, by providing the slot 1111, the cooperation of the lock catch 2110 and the lock tongue 1211 is provided with a clearance, thereby facilitating the cooperation of various components.

[0065] Alternatively, a plurality of slots 1111 are provided along the circumference of the gyro body 1000, the number of the slot 1111, the lock catch 2110 and the lock tongue 1211 are one-to-one correspondence, the plurality means two or more, by providing a plurality of slots 1111 along the circumference, so that the locking of the attack component 2000 can be realized along the circumference of the gyro body 1000, and the installation of the attack component 2000 is more firm.

[0066] As mentioned above, the operating component 1200 is configured to reciprocatingly rotate between the first position and the second position to realize the locking and unlocking of the attack component 2000, which will be more conducive to simplify the structure, in order to limit the stroke of the reciprocating rotation of the operating component 1200, in combination with Figures 6 to 9 As shown, in some embodiments, the gyro body 1000 is provided with a slot 1111 adapted for the insertion of the lock catch 2110, the lock tongue 1211 is adapted to move into the slot 1111 to insert the lock catch 2110 when the operating component 1200 is rotated to the first position, and is adapted to move out of the slot 1111 to disengage the lock catch 2110 when the operating component 1200 is rotated to the second position. When the attack component 2000 is installed to the gyro body 1000, the lock catch 2110 needs to be inserted into the slot 1111, so as to play a positioning role for the installation of the attack component 2000, thereby facilitating the cooperation of the lock tongue 1211 and the lock catch 2110.

[0067] Specifically, with the reciprocating rotation of the operating component 1200, the limiting pawl 1221 can reciprocate between the first limiting slot 1113 and the second limiting slot 1114. When the operating component 1200 rotates to the first position, the limiting pawl 1221 is located in the first limiting slot 1113. When the operating component 1200 rotates from the first position to the second position, the limiting pawl 1221 moves from the first limiting slot 1113 to the second limiting slot 1114. When the operating component 1200 rotates to the second position, the limiting pawl 1221 is located in the second limiting slot 1114. When the operating component 1200 rotates from the second position to the first position, the limiting pawl 1221 moves from the second limiting slot 1114 to the first limiting slot 1113. By setting the first limiting slot 1113 and the second limiting slot 1114, the reciprocating rotation stroke of the operating component 1200 is limited, and the over-rotation of the operating component 1200 is avoided.

[0068] It can be understood that the gyro body 1000 can rotate, and the operating component 1200 is configured to be rotatable relative to the rest of the gyro body 1000. To prevent the operating component 1200 from accidentally rotating from the first position to the second position when the gyro body 1000 rotates, in combination with Figures 6 to 9 As shown in some embodiments, the gyro body 1000 is further provided with a touching portion 1115 located between the first limiting slot 1113 and the second limiting slot 1114. The touching portion 1115 is adapted to stop the limiting pawl 1221, and at least one of the touching portion 1115 and the limiting pawl 1221 is adapted to elastically deform, so that the limiting pawl 1221 can pass over the touching portion 1115.

[0069] During the rotation of the gyro body 1000, if the operating component 1200 is intended to rotate from the first position to the second position, i.e., the limiting pawl 1221 is intended to move from the first limiting slot 1113 to the second limiting slot 1114, the limiting pawl 1221 will contact the touching portion 1115 and be stopped by the touching portion 1115. The touching portion 1115 forms a certain resistance to the limiting pawl 1221, which prevents the limiting pawl 1221 from moving from the first limiting slot 1113 to the second limiting slot 1114 and accidentally unlocking the attacking component 2000 during the rotation of the gyro body 1000.

[0070] When the attack component 2000 needs to be unlocked, the user controls the operation component 1200 to rotate from the first position to the second position, so that the limiting clamping jaw 1221 moves from the first limiting slot 1113 to the second limiting slot 1114, and in the process of moving from the first limiting slot 1113 to the second limiting slot 1114, the limiting clamping jaw 1221 contacts the touching portion 1115 and is stopped by the touching portion 1115. The user needs to continue to exert a rotating force on the operation component 1200, and the force exerted by the user overcomes the stopping effect of the touching portion 1115, so that at least one of the limiting clamping jaw 1221 and the touching portion 1115 is elastically deformed, so that the limiting clamping jaw 1221 can pass through the touching portion 1115 and move from the first limiting slot 1113 to the second limiting slot 1114, so as to achieve the unlocking of the attack component 2000.

[0071] In combination Figures 1 to 10 As shown in the drawings, in some embodiments, the operation component 1200 is annular and surrounds the rotation axis of the gyro body 1000, and the user can control the operation component 1200 to rotate around the rotation axis of the gyro body 1000, which is more convenient for the user to control. Figure 2 In some embodiments, the operation component 1200 is exposed on the peripheral surface of the gyro body 1000, so that the user can easily touch and control the operation component 1200 to rotate.

[0072] In combination Figures 6 to 11 As shown in the drawings, the operation component 1200 includes a first operation piece 1210 and a second operation piece 1220 connected together, the first operation piece 1210 is provided with a lock tongue 1211, and the second operation piece 1220 is provided with a limiting clamping jaw 1221, which facilitates the production of the operation component 1200. In the drawings, the first operation component 1200 is annular, and the second operation component 1200 is also annular, and the first operation piece 1210 and the second operation piece 1220 are arranged in a stacked manner along the axial direction of the gyro body 1000. Since the operation component 1200 needs to be rotated, i.e., the first operation piece 1210 and the second operation piece 1220 need to be rotated, and optionally, the first operation piece 1210 and the second operation piece 1220 are cooperated in this way, one of the first operation piece 1210 and the second operation piece 1220 is provided with a clamping groove 1212 and the other is provided with a clamping protrusion 1222, the clamping protrusion 1222 is adapted to be embedded in the clamping groove 1212 along the axial direction of the gyro body 1000, and the clamping protrusion 1222 and the clamping groove 1212 are adapted to abut along the circumferential direction of the gyro body 1000. Through the cooperation of the clamping protrusion 1222 and the clamping groove 1212, when any one of the first operation piece 1210 and the second operation piece 1220 is controlled to rotate, the other one can be driven to rotate.

[0073] For example, when the second operating member 1220 is rotated, the first operating member 1210 rotates accordingly through the cooperation of the latching protrusion 1222 and the latching groove 1212, thus controlling the engagement of the locking tongue 1211 and the latch 2110. Optionally, the outer peripheral surface of the second operating member 1220 can be patterned to increase friction, making it easier for the user to rotate the second operating member 1220.

[0074] As mentioned above, the operating component 1200 can rotate relative to the rest of the gyroscope body 1000. The following section provides further explanation of the remaining parts of the gyroscope body 1000. (Combined with...) Figures 1 to 4 as well as Figure 13 and Figure 14 As shown, in some embodiments, the gyroscope body 1000 further includes a support shell 1100, a drive gear 1300, a retaining shell 1400, and a bearing 1500. The operating component 1200 is rotatably arranged around the support shell 1100. The drive gear 1300 is connected to the support shell 1100. The retaining shell 1400 surrounds the structure formed by the connection between the support shell 1100 and the drive gear 1300. The bearing 1500 is disposed between the retaining shell 1400 and the structure formed by the connection between the support shell 1100 and the drive gear 1300.

[0075] Specifically, the attack component 2000 can be disposed on the support housing 1100, which may be provided with the aforementioned slot 1111, first limiting groove 1113, second limiting groove 1114, and contact part 1115. The connection between the drive gear 1300 and the support housing 1100 means that the drive gear 1300 and the support housing 1100 are connected and fixed so that they can rotate synchronously. The connection between the drive gear 1300 and the support housing 1100 can be achieved by using screws. The retaining shell 1400 surrounds the structure formed by the connection between the supporting shell 1100 and the drive gear 1300, and the bearing 1500 is located between the retaining shell 1400 and the structure formed by the connection between the supporting shell 1100 and the drive gear 1300. This allows the retaining shell 1400 to rotate relative to the structure formed by the connection between the supporting shell 1100 and the drive gear 1300. For example, when playing, the spinning top can be placed on the launcher. The launcher can fix the retaining shell 1400 to achieve the installation and positioning of the spinning top. Then, by driving the drive gear 1300 to rotate, the supporting shell 1100 can be rotated synchronously. At this time, the spinning top body 1000 is in a rotating state, which also makes the attacking part 2000 rotate synchronously.

[0076] Optionally, combined Figure 13 and Figure 14As shown, the support shell 1100 comprises an upper shell 1110 and a lower shell 1120 connected, the upper shell 1110 and the lower shell 1120 clamping the operation component 1200, the upper shell 1110 can be provided with the slot 1111, the first limiting slot 1113, the second limiting slot 1114 and the touch part 1115 as described above. Clamping here means forming axial positioning on the operation component 1200, so that the operation component 1200 can rotate around the support shell 1100. The upper shell 1110 and the lower shell 1120 can be connected by screwing. Through the arrangement of the upper shell 1110 and the lower shell 1120, the cooperation of the support shell 1100 and the operation component 1200 is facilitated.

[0077] Optionally, in combination with Figure 13 and Figure 14 As shown, the support shell 1100 and the drive gear 1300 clamp the inner side of the bearing 1500, specifically the lower shell 1120 and the drive gear 1300 clamp the inner side of the bearing 1500. For example, the bearing 1500 is sleeved at the connection of the lower shell 1120 and the drive gear 1300, and is clamped on the inner side by the lower shell 1120 and the drive gear 1300. Clamping here means forming axial positioning on the bearing 1500, so that the drive gear 1300 and the support shell 1100 can rotate relative to the retaining shell 1400 through the bearing 1500.

[0078] Optionally, in combination with Figure 13 and Figure 14 As shown, the retaining shell 1400 comprises an upper clamping ring 1410 and a lower clamping ring 1420 connected, the upper clamping ring 1410 and the lower clamping ring 1420 are connected by screwing, and the upper clamping ring 1410 and the lower clamping ring 1420 clamping the outer side of the bearing 1500. Through the arrangement of the upper clamping ring 1410 and the lower clamping ring 1420, the bearing 1500 and the retaining shell 1400 are facilitated to cooperate with each other, and the upper clamping ring 1410 and the lower clamping ring 1420 clamping the outer side of the bearing 1500. Clamping here means forming axial positioning on the bearing 1500, so that the retaining shell 1400 and the structure formed by the connection of the drive gear 1300 and the support shell 1100 can rotate relative to each other.

[0079] In combination with Figure 1 and Figure 2 As shown, in some embodiments, the gyro toy further comprises a top 3000, and the gyro body 1000 is rotatably supported on a support surface through the top 3000. By providing the top 3000, the contact area with the support surface is reduced, which is more helpful for the rotation of the gyro body 1000 on the support surface. Optionally, the top 3000 and the gyro body 1000 are snap-connected (the drive gear 1300 of the top 3000 and the gyro body 1000 is snap-connected), so that the user can disassemble and replace the top 3000 according to the actual situation.

[0080] In combination withFigure 1 and Figure 2 As shown in FIG. 20, in some embodiments, the projection of the attack component 2000 along the axial direction of the gyro toy is larger than the projection of the gyro body 1000, and the projection of the gyro body 1000 is located within the projection range of the attack component 2000. By such arrangement, when the gyro toy rotates, it is more conducive to the attack component 2000 colliding with other objects, and the competitive fun is improved.

[0081] In combination with Figures 1 to 5 As shown in FIG. 21, in some embodiments, the attack component 2000 includes a first attack piece 2100 and a second attack piece 2200, the second attack piece 2200 is arranged on the gyro body 1000, and the first attack piece 2100 is stacked above the second attack piece 2200 and is adapted to be locked and unlocked by the operating component 1200 to clamp the second attack piece 2200 with the gyro body 1000. The first attack piece 2100 and the second attack piece 2200 are separate components that cooperate with each other after being installed on the gyro body 1000. By designing the first attack piece 2100 and the second attack piece 2200, it is helpful to design more or more complex shapes of the attack component 2000, and it is more conducive to production and manufacturing. It can be understood that the attack component 2000 is used to collide with other objects, so the first attack piece 2100 and the second attack piece 2200 need to have high structural strength, for example, the first attack piece 2100 and the second attack piece 2200 are made of metal materials such as aluminum alloy. When the first attack piece 2100 and the second attack piece 2200 are installed on the gyro body 1000, the second attack piece 2200 is first installed on the gyro body 1000 (specifically installed on the upper shell 1110), and then the first attack piece 2100 is installed on the gyro body 1000 (specifically installed on the upper shell 1110), and the operating component 1200 locks the first attack piece 2100, so that the first attack piece 2100 and the gyro body 1000 clamp the second attack piece 2200, that is, the operating component 1200 locks the attack component 2000. It can be understood that the operating component 1200 locks the first attack piece 2100, that is, the first attack piece 2100 is provided with the above-mentioned lock 2110.

[0082] Optionally, in combination with Figures 1 to 5As shown, the first attack member 2100 and the second attack member 2200 are annular, the attack component 2000 further comprises a sandwich member 2300, the sandwich member 2300 is surrounded by the first attack member 2100 and the second attack member 2200, and is clamped by the first attack member 2100 and the second attack member 2200 or by the first attack member 2100 and the gyro body 1000, the sandwich member 2300 is exposed to the first attack member 2100, by designing the sandwich member 2300, after the attack component 2000 is installed to the gyro body 1000, the sandwich member 2300 is exposed, more personalized requirements are met, for example, the sandwich member 2300 can be transparent or be provided with different printing effects.

[0083] In other embodiments, the second attack member 2200 can be cancelled while the first attack member 2100 and the sandwich member 2300 are retained, the first attack member 2100 is annular, the first attack member 2100 is adapted to be locked and unlocked by the operating component 1200, the sandwich member 2300 is surrounded by the first attack member 2100, and is clamped by the first attack member 2100 and the gyro body 1000, the sandwich member 2300 is exposed to the first attack member 2100, so that the fixation of the sandwich member 2300 is also realized, while diversified personalized requirements are met.

[0084] In combination Figures 1 to 5 And Figure 12 As shown, in some embodiments, the second attack member 2200 is sleeved on the gyro body 1000, and is sleeved on the upper shell 1110 of the gyro body 1000 in particular, so that the second attack member 2200 is limited in the radial direction, and the installation of the second attack member 2200 is more beneficial. Optionally, the upper shell 1110 has a positioning groove 1112, and the second attack member 2200 has a positioning portion 2210, when the second attack member 2200 is sleeved on the gyro body 1000, the positioning portion 2210 is inserted into the positioning groove 1112, and the cooperation of the positioning portion 2210 and the positioning groove 1112 can also play a circumferential positioning role for the second attack member 2200. Since the second attack member 2200 is annular, the positioning portion 2210 can be arranged on the inner side of the second attack member 2200, and the positioning portion 2210 can be hidden after the second attack member 2200 is installed to the gyro body 1000.

[0085] Similarly, in some embodiments, the first attack piece 2100 is sleeved on the gyroscope body 1000, and specifically on the upper shell 1110 of the gyroscope body 1000, so that the first attack piece 2100 is limited in the radial direction, and the installation of the first attack piece 2100 is more conducive. In particular, the first attack piece 2100 is provided with a lock catch 2110, and the upper shell 1110 can be provided with a slot 1111, so that when the first attack piece 2100 is sleeved on the gyroscope body 1000, the lock catch 2110 is inserted into the slot 1111, and the cooperation of the lock catch 2110 and the slot 1111 can also play a circumferential positioning role on the first attack piece 2100. Since the first attack piece 2100 is annular, the lock catch 2110 can be arranged on the inner side of the first attack piece 2100, and the lock catch 2110 can be hidden after the first attack piece 2100 is installed on the gyroscope body 1000.

[0086] The above description is only the preferred embodiments of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation, direct / indirect application in other related technical fields based on the concept of the present application, and the contents of the present application and the drawings are included in the patent protection scope of the present application.

Claims

1. A gyro toy characterized by comprising: include: A gyroscope body (1000) adapted to rotate, the gyroscope body (1000) including an operating component (1200) adapted to be movable by a user control; as well as An attack component (2000) is disposed on the gyroscope body (1000). The operating component (1200) is adapted to lock and unlock the attack component (2000) during operation. When locked by the operating component (1200), the attack component (2000) is fixed to the gyroscope body (1000) so as to rotate with the gyroscope body (1000). When unlocked by the operating component (1200), the attack component (2000) is adapted to detach from the gyroscope body (1000).

2. The gyroscopic toy of claim 1, wherein The operating component (1200) is rotatable relative to the rest of the gyroscope body (1000) and is rotatable to a first position and a second position. The operating component (1200) is adapted to lock the attack component (2000) when rotated to the first position and to unlock the attack component (2000) when rotated to the second position.

3. The gyroscopic toy of claim 2, wherein The operating component (1200) is provided with a locking tongue (1211), and the attacking component (2000) is provided with a latch (2110). The locking tongue (1211) is adapted to insert the latch (2110) when the operating component (1200) rotates to the first position, so as to stop the latch (2110) in the direction in which the attacking component (2000) disengages from the gyroscope body (1000), and is adapted to disengage the latch (2110) when the operating component (1200) rotates to the second position, so as to avoid the latch (2110) in the direction in which the attacking component (2000) disengages from the gyroscope body (1000).

4. The gyroscopic toy of claim 3, wherein The gyroscope body (1000) is provided with a slot (1111) adapted for the insertion of the latch (2110), and the latch (1211) adapted to move into the slot (1111) to insert the latch (2110) when the operating member (1200) is rotated to the first position, and adapted to move out of the slot (1111) to disengage the latch (2110) when the operating member (1200) is rotated to the second position.

5. The gyroscopic toy of claim 4, wherein, A plurality of slots (1111) are provided along the circumference of the gyroscope body (1000), and the number of slots (1111), the latch (2110) and the bolt (1211) correspond one-to-one.

6. The gyroscopic toy of claim 2, wherein, The gyro body (1000) is provided with a first limiting groove (1113) and a second limiting groove (1114) in communication, the operating component (1200) is provided with a limiting clamping jaw (1221), the limiting clamping jaw (1221) is adapted to reciprocate in the first limiting groove (1113) and the second limiting groove (1114) when the operating component (1200) rotates, and is located in the first limiting groove (1113) when the operating component (1200) rotates to the first position, and is located in the second limiting groove (1114) when the operating component (1200) rotates to the second position.

7. The gyroscopic toy of claim 6, wherein, The gyro body (1000) is further provided with a touch portion (1115) located between the first limiting groove (1113) and the second limiting groove (1114), the touch portion (1115) is adapted to stop the limiting clamping jaw (1221), and at least one of the touch portion (1115) and the limiting clamping jaw (1221) is adapted to elastically deform so that the limiting clamping jaw (1221) can pass the touch portion (1115).

8. A gyro toy according to any one of claims 2 to 7, wherein The operating component (1200) is annular and surrounds the rotation axis of the gyro body (1000).

9. The gyroscopic toy of claim 8, wherein, The operating component (1200) comprises a first operating member (1210) and a second operating member (1220) connected, the first operating member (1210) is provided with a lock tongue (1211), and the second operating member (1220) is provided with a limiting clamping jaw (1221).

10. The gyroscopic toy of claim 9, wherein, One of the first operating member (1210) and the second operating member (1220) is provided with a clamping groove (1212), and the other is provided with a clamping convex (1222), the clamping convex (1222) is adapted to be embedded in the clamping groove (1212) along the axial direction of the gyro body (1000), and the clamping convex (1222) and the clamping groove (1212) are adapted to abut along the circumferential direction of the gyro body (1000).

11. The gyroscopic toy of claim 8, wherein, The gyro body (1000) further comprises: a support shell (1100), the operating component (1200) surrounds the support shell (1100) and is rotatably arranged; a drive gear (1300) connected with the support shell (1100); a retaining shell (1400) surrounding the structure formed by the support shell (1100) and the structure formed by the connection of the drive gear (1300); and a bearing (1500) arranged between the retaining shell (1400) and the structure formed by the support shell (1100) and the structure formed by the connection of the drive gear (1300).

12. The gyroscopic toy of claim 11, wherein, The support shell (1100) comprises an upper shell (1110) and a lower shell (1120) connected, the upper shell (1110) and the lower shell (1120) clamp the operating component (1200); and / or, the support shell (1100) and the drive gear (1300) clamp the inner side of the bearing (1500). And / or, the retaining shell (1400) comprises an upper snap ring (1410) and a lower snap ring (1420) connected to each other, the upper snap ring (1410) and the lower snap ring (1420) clamping the outer side of the bearing (1500).

13. The gyroscopic toy of claim 1, wherein, The toy top further comprises a top tip (3000), the top tip (3000) and the toy top body (1000) are snap connected, and the toy top body (1000) is adapted to be rotatably supported on a support surface by the top tip (3000).

14. The gyroscopic toy of claim 1, wherein, In the axial projection of the toy top, the projection of the attack component (2000) is greater than the projection of the toy top body (1000), and the projection of the toy top body (1000) is located within the projection range of the attack component (2000).

15. The gyroscopic toy of claim 1, wherein, The attack component (2000) comprises a first attack piece (2100) and a second attack piece (2200), the second attack piece (2200) is arranged on the toy top body (1000), the first attack piece (2100) is stacked above the second attack piece (2200) and is adapted to be locked and unlocked by the operation component (1200) to clamp the second attack piece (2200) with the toy top body (1000).

16. The gyroscopic toy of claim 15, wherein, The first attack piece (2100) and the second attack piece (2200) are annular, the attack component (2000) further comprises a sandwich piece (2300), the sandwich piece (2300) is surrounded by the first attack piece (2100) and the second attack piece (2200) and is clamped by the first attack piece (2100) and the second attack piece (2200) or by the first attack piece (2100) and the toy top body (1000), and the sandwich piece (2300) is exposed to the first attack piece (2100).

17. The gyroscopic toy of claim 1, wherein, The attack component (2000) comprises a first attack piece (2100) and a sandwich piece (2300), the first attack piece (2100) is annular, the first attack piece (2100) is adapted to be locked and unlocked by the operation component (1200), the sandwich piece (2300) is surrounded by the first attack piece (2100) and is clamped by the first attack piece (2100) and the toy top body (1000), and the sandwich piece (2300) is exposed to the first attack piece (2100).

18. The gyroscopic toy of claim 15 or 17, wherein, The first attack piece (2100) is sleeved on the toy top body (1000); and / or the second attack piece (2200) is sleeved on the toy top body (1000).