Gyroscope transformation toy
By designing a spinning toy that combines transformation with spinning launch and rotation, the problem of limited gameplay in existing toys is solved. This achieves rich gameplay and a stable structure, satisfying children's diverse entertainment needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-13
- Publication Date
- 2026-03-27
AI Technical Summary
Existing transforming toys and spinning tops each have limited gameplay options and cannot meet children's needs for more diverse and multi-faceted entertainment experiences. There are no products that combine the transformation features of transforming toys with the launching and battling gameplay of spinning tops.
Design a spinning top transformation toy, comprising a main shell, rotating parts, elastic parts, spinning top parts, and limb-shaped components. Through the cooperation of a unidirectional limiting structure and elastic parts, it achieves shape transformation and energy storage, launch, and rotation of the spinning top parts, integrating transformation and spinning top launch and rotation gameplay.
It achieves toy shape transformation and gyroscope component energy storage, launch, and rotation, offering rich gameplay, convenient operation, and stable structure, meeting children's needs for a comprehensive entertainment experience.
Smart Images

Figure CN224039993U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a toy technical field, concretely relates to a gyroscopic toy. BACKGROUND
[0002] Both the transformation toy and the gyroscopic toy are classic toy categories that are widely loved by children and occupy an important position in the market. The existing transformation toy has a single play method and can only realize simple shape conversion, and is insufficient in interest. The gyroscopic toy is also designed around launching, rotation and battle, has no transformation function and has a single play method, and all of them cannot meet the needs of children for multiple play methods and compound entertainment experience of toys. At present, no product combining the shape conversion play method of the transformation toy with the launching and battle play method of the gyroscopic toy has appeared in the prior art, and the toys on the market only have one of the above two play methods, which cannot meet the needs of children for multiple play methods and compound entertainment experience of toys.
[0003] Therefore, the utility model is provided. UTILITY MODEL CONTENT
[0004] The utility model provides a gyroscopic transformation toy.
[0005] The application provides the following technical scheme:
[0006] A gyroscopic transformation toy comprises:
[0007] A modeling main shell has a cavity and an opening, a barrel shell is arranged on the modeling main shell, the barrel shell is at least partially located in the cavity, and the barrel shell is in communication with the cavity and the outside of the modeling main shell;
[0008] A rotating member is rotatably arranged in the barrel shell, part of the rotating member extends out of the cavity, and a one-way limiting structure is arranged on the outer surface of the modeling main shell and located on the lateral side of the rotating member;
[0009] An elastic member is located in the barrel shell and is in limiting cooperation with the barrel shell and the rotating member respectively;
[0010] A modeling gyro member can be in limiting cooperation with the rotating member and the one-way limiting structure respectively, rotating the modeling gyro member in a first direction can drive the rotating member to rotate, the deformation amount of the elastic member increases, the one-way limiting structure limits the modeling gyro member from rotating in a second direction, under the action of an external force, the rotating member slides along the barrel shell and abuts against the modeling gyro member, so that the modeling gyro member is separated from the one-way limiting structure, the elastic member restores the deformation and drives the rotating member to rotate the modeling gyro member;
[0011] A limb modeling assembly is connected to the modeling main shell;
[0012] The gyroscopic transformational toy has a first state and a second state, in the first state, the limb modeling component is contained in the cavity, in the second state, the limb modeling component is extended out of the modeling main shell through the opening.
[0013] Optionally, the modeling main shell has a bottom shell and a cover shell;
[0014] The cover shell has an upper cover shell and a lower cover shell;
[0015] The lower cover shell is connected to the bottom shell and seals the top opening of the bottom shell;
[0016] The upper cover shell is connected to the lower cover shell;
[0017] The barrel shell includes a first barrel shell part arranged on the upper cover shell;
[0018] The rotating member is rotatably arranged in the first barrel shell part;
[0019] The elastic member is sleeved on the rotating member and is limited in position with the rotating member and the first barrel shell part respectively.
[0020] Optionally, the elastic member is a spring;
[0021] The elastic member has extension arms at both ends respectively;
[0022] The rotating member is provided with a limiting hole, and the first barrel shell part is provided with a limiting hole;
[0023] The extension arms at both ends of the elastic member are respectively limited in position in the limiting holes on the rotating member and the first barrel shell part.
[0024] Optionally, the gyroscopic transformational toy includes a lower limb support;
[0025] The barrel shell includes a second barrel shell part arranged on the lower cover shell, and the second barrel shell part is sleeved on the outside of the first barrel shell part;
[0026] The rotating member is slidably arranged through the second barrel shell part;
[0027] The lower limb support is located in the cavity and is connected to the second barrel shell part, and the limb modeling component is connected to the lower limb support.
[0028] Optionally, the gyroscopic transformational toy includes a pressing block component;
[0029] The lower limb support has a through slot;
[0030] One end of the rotating member is contained in the through slot;
[0031] The pressing block assembly is slidably arranged in the through slot, and is at least partially located outside the lower limb support;
[0032] Under the action of an external force, the pressing block assembly can slide along the lower limb support to push the rotating member to move along the cylindrical shell.
[0033] Optionally, the pressing block assembly comprises a limiting member and an external pressing member;
[0034] An end portion is arranged at the end of the through slot on the lower limb support;
[0035] The limiting member comprises a thick diameter portion and a thin diameter portion, the thick diameter portion is located in the through slot, and the thin diameter portion extends out of the end portion;
[0036] The external pressing member is detachably connected to the thin diameter portion;
[0037] In the second state, the external pressing member can be disconnected from the thin diameter portion and connected to the limb shaping assembly.
[0038] Optionally, the external pressing member comprises a plug shaft and a disc;
[0039] The thin diameter portion has a first insertion hole;
[0040] The plug shaft is perpendicularly connected to the disc;
[0041] The plug shaft can be inserted into or extracted from the first insertion hole;
[0042] In the first state, the external pressing member is located outside the shaping main shell.
[0043] Optionally, the limb shaping assembly comprises an arm limb;
[0044] A second insertion hole is arranged at the end of the arm limb;
[0045] The plug shaft can be inserted into or extracted from the second insertion hole.
[0046] Optionally, the shaping gyroscope member has a limiting fitting slot and a fitting cylinder located inside the limiting fitting slot;
[0047] A plurality of limiting slots are arranged on the circumferential wall of the limiting fitting slot;
[0048] The one-way limiting structure of the shaping main shell comprises a plurality of arc-shaped clamping claws, each of the arc-shaped clamping claws is sequentially and spacedly arranged along the circumferential direction of the rotating member, and an inclined table is arranged at the end of the arc-shaped clamping claw;
[0049] In the state that the modeling gyroscope element is limitedly matched with the one-way limiting structure, the end of the rotating element is inserted into the matching cylinder, each inclined table is clamped into the corresponding limiting groove, and the limiting matching groove limits the modeling gyroscope element from rotating in the second direction.
[0050] By adopting the technical scheme, the application has the following beneficial effects:
[0051] The gyroscopic transformation toy of the application combines transformation and gyroscopic launching and rotating play methods, can realize shape transformation and energy storage launching and rotating of the gyroscopic element, is rich in play methods, convenient to operate, stable in structure, and meets the composite entertainment experience demand of children. BRIEF DESCRIPTION OF DRAWINGS
[0052] The accompanying drawings, which are part of the present application, serve to further understand the present application, and the illustrative embodiments of the present application and the description thereof serve to explain the present application but do not constitute improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.
[0053] Figure 1 A structure schematic view of the gyroscopic transformation toy in the first state is provided for the embodiments of the present application.
[0054] Figure 2 A structure schematic view of the gyroscopic transformation toy in the second state is provided for the embodiments of the present application.
[0055] Figure 3 A sectional view of the gyroscopic transformation toy in the first state is provided for the embodiments of the present application.
[0056] Figure 4 A structure schematic view of the lower cover shell of the gyroscopic transformation toy is provided for the embodiments of the present application.
[0057] Figure 5 A structure schematic view of the upper cover shell of the gyroscopic transformation toy is provided for the embodiments of the present application.
[0058] Figure 6 A structure schematic view of the modeling gyroscope element of the gyroscopic transformation toy is provided for the embodiments of the present application.
[0059] Figure 7 A structure schematic view of the elastic element of the gyroscopic transformation toy is provided for the embodiments of the present application.
[0060] Figure 8 A structure schematic view of the rotating element of the gyroscopic transformation toy is provided for the embodiments of the present application.
[0061] Figure 9The structure schematic view of the lower limb support of the gyro deformation toy is provided in the embodiment of the utility model.
[0062] Figure 10 The structure schematic view of the limiting piece of the gyro deformation toy is provided in the embodiment of the utility model.
[0063] Figure 11 The structure schematic view of the arm limb of the gyro deformation toy is provided in the embodiment of the utility model.
[0064] In the drawing: modeling main shell 1, bottom shell 11, cover shell 12, upper cover shell 121, first cylinder shell part 1211, second limiting hole 1211a, one-way limiting structure 1212, inclined table 1212a, lower cover shell 122, second cylinder shell part 1221, sliding groove 1221a, plug-in hole 1222, rotating piece 2, first limiting hole 21, elastic piece 3, extension arm 31, modeling gyro piece 4, limiting matching groove 41, limiting groove 411, matching cylinder 42, limb modeling assembly 5, arm limb 51, connecting piece 511, ball head 5111, arm main body 512, large arm piece 5121, ball groove 5121a, forearm piece 5122, hand piece 5123, second plug-in hole 5123a, lower limb assembly 52, lower limb support 6, main cylinder 61, clamping jaw 611, connecting body 62, pressing block assembly 7, limiting piece 71, coarse diameter part 711, fine diameter part 712, first plug-in hole 7121, outer pressing piece 72, plug-in shaft 721, disc 722. DETAILED DESCRIPTION
[0065] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model clearer, the technical scheme in the embodiment will be clearly and completely described below in combination with the drawings in the embodiment of the utility model, and the following embodiments are used to illustrate the utility model, but not to limit the scope of the utility model.
[0066] In the description of the utility model, it should be pointed out that the position or location relationship indicated by the terms "upper", "lower", "inner", "outer" and the like is based on the position or location relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model.
[0067] In the description of the utility model, it should be pointed out that, unless otherwise explicitly specified and limited, the terms "mounting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0068] Referring to Figures 1 to 11 As shown in the drawings, the embodiment of the present application provides a gyro deformation toy, comprising a modeling main shell 1, a rotating part 2, an elastic part 3, a modeling gyro part 4 and a limb modeling assembly 5. The modeling main shell 1 has a cavity and an opening, a barrel shell is arranged on the modeling main shell 1, the barrel shell is at least partially located in the cavity, and the barrel shell communicates the cavity and the outside of the modeling main shell 1. The rotating part 2 is rotatably arranged in the barrel shell, and the rotating part 2 partially extends out of the cavity. A unidirectional limiting structure 1212 is arranged on the outer surface of the modeling main shell 1 and located on the side of the rotating part 2. The elastic part 3 is located in the barrel shell and is limitedly matched with the barrel shell and the rotating part 2 respectively. The modeling gyro part 4 is limitedly matched with the rotating part 2 and the unidirectional limiting structure 1212 respectively. Rotating the modeling gyro part 4 around a first direction can drive the rotating part 2 to rotate, the deformation amount of the elastic part 3 is increased, the unidirectional limiting structure 1212 limits the modeling gyro part 4 from rotating around a second direction, under the action of an external force, the rotating part 2 slides along the barrel shell and abuts against the modeling gyro part 4, so that the modeling gyro part is separated from the unidirectional limiting structure 1212, the elastic part 3 restores the deformation and drives the rotating part 2 to rotate the modeling gyro part. The limb modeling assembly 5 is connected to the modeling main shell 1. The limb modeling assembly 5 comprises a lower limb assembly 52, and the lower limb assembly 52 is connected to the modeling main shell 1. The gyro deformation toy has a first state and a second state. In the first state, the limb modeling assembly 5 is accommodated in the cavity, and in the second state, the limb modeling assembly 5 extends out of the modeling main shell 1 through the opening. The gyro deformation toy of the present application combines deformation and gyro launching and rotating play methods, can realize morphological deformation and energy storage launching and rotation of the gyro part, is rich in play methods, convenient to operate, stable in structure and meets the needs of children for complex entertainment experience.
[0069] As Figure 1 , Figure 3 , Figure 4 and Figure 5As shown, the modeling main shell 1 has a bottom shell 11 and a cover shell 12, the cover shell 12 has an upper cover shell 121 and a lower cover shell 122, the lower cover shell 122 is connected to the bottom shell 11 and seals the top opening of the bottom shell 11, the upper cover shell 121 is connected to the lower cover shell 122, the barrel shell includes a first barrel shell part 1211 arranged on the upper cover shell 121, the rotating part 2 is rotatably arranged in the first barrel shell part 1211, the elastic part 3 is sleeved on the rotating part 2 and is limited with the rotating part 2 and the first barrel shell part 1211 respectively. Such structure not only realizes the modular assembly of each component and convenient assembly, but also can accurately position the gyro launching, guarantee the structural stability of the gyro energy storage and launching rotation, and at the same time, the split shell also provides reasonable space layout for the storage and extension of the limb modeling assembly 5, adapts to the realization of deformation function, the overall structure design is compact and reasonable, and the assembly efficiency and use reliability of the toy are improved.
[0070] In a possible implementation, as shown in Figure 3 , Figure 5 , Figure 7 and Figure 8 , the elastic part 3 is a spring, the elastic part 3 has an extension arm 31 at both ends respectively, the rotating part 2 is provided with a limiting hole, the first barrel shell part 1211 is provided with a limiting hole, and the extension arms 31 at both ends of the elastic part 3 are respectively limited in the limiting holes on the rotating part 2 and the first barrel shell part 1211. The limiting hole on the rotating part 2 is a first limiting hole 21, the limiting hole on the first barrel shell part 1211 is a second limiting hole 1211a, the extension arm 31 at one end of the elastic part 3 is limited in the first limiting hole 21 on the rotating part 2, and the extension arm 31 at the other end of the elastic part 3 is limited in the second limiting hole 1211a on the first barrel shell part 1211. The limiting mode of the elastic part 3 is simple and reliable, which can accurately realize the energy storage and reset of the elastic part 3 and guarantee the power stability of the launching rotation of the modeling gyro part 4.
[0071] In a possible implementation, as shown in Figure 3 , Figure 4 and Figure 9As shown, the gyro deformation toy comprises a lower limb support 6, the barrel shell comprises a second barrel shell part 1221 arranged on the lower cover shell 122, the second barrel shell part 1221 is sleeved on the outside of the first barrel shell part 1211, the rotating part 2 is slidably arranged through the second barrel shell part 1221, the lower limb support 6 is located in the cavity and connected to the second barrel shell part 1221, and the limb modeling assembly 5 is connected to the lower limb support 6. The lower limb assembly 52 is connected to the lower limb support 6, and the lower support provides a stable mounting basis for the lower limb assembly 52. Pressing the rotating part 2 can link the lower limb assembly 52 to complete the unfolding action. The structure has strong linkage, which not only guarantees the smoothness of the gyro launching, but also makes the deformation and unfolding of the lower limb assembly 52 more accurate and stable. The overall structure layout is compact, the cooperation of each functional part is more coordinated, and the operation fluency of the product deformation and gyro play is further improved.
[0072] In a possible implementation, as shown in Figure 3 As shown, the gyro deformation toy comprises a pressing block assembly 7, the lower limb support 6 has a through groove, one end of the rotating part 2 is accommodated in the through groove, the pressing block assembly 7 is slidably arranged in the through groove, and the pressing block assembly 7 is at least partially located outside the lower limb support 6. Under the action of external force, the pressing block assembly 7 can slide along the lower limb support 6 and push the rotating part 2 to move along the barrel shell. Under the action of external force, pressing can push the rotating part 2 to slide along the barrel shell, realize the unlocking and launching of the gyro part, and link the lower limb assembly 52 to unfold. The pressing operation directly transmits power, the transmission path is short and accurate, the linkage triggering of the gyro launching and deformation unfolding is more convenient and smooth, the exposed design of the pressing block assembly 7 also meets the operation habit of children, improves the playing experience, the components are compactly matched, and the linkage and operation practicability of the overall structure are further optimized.
[0073] In a possible implementation, as shown in Figure 1 , Figure 3 and Figure 10As shown, the pressing block assembly 7 includes a limiting piece 71 and an outer pressing piece 72, the lower limb support 6 is provided with an end closing at the end of the through groove, the limiting piece 71 includes a thick diameter part 711 and a thin diameter part 712, the thick diameter part 711 is located in the through groove, the thin diameter part 712 extends out of the end closing, and the outer pressing piece 72 is detachably connected to the thin diameter part 712. In the second state, the outer pressing piece 72 can be connected to the limb shaping assembly 5 by being separated from the thin diameter part 712. The pressing block assembly 7 cooperates with the end closing to achieve sliding limiting of the limiting piece 71, avoiding disengagement, the outer pressing piece 72 is detachable for convenient assembly and maintenance, and through cooperation of the thin diameter part 712 and the lower limb assembly 52, the pressing trigger gyro launching and limb deformation linkage are more accurate, the structure design is exquisite, the stability of pressing transmission and the convenience of operation are ensured, the deformation unfolding action is smoother, and the structural reliability and playing experience of the toy are improved as a whole.
[0074] As shown in Figure 1 and Figure 3 , the outer pressing piece 72 includes a plug shaft 721 and a disc 722, the thin diameter part 712 has a first insertion hole 7121, the plug shaft 721 is connected to the disc 722 vertically, and the plug shaft 721 can be inserted into or extracted from the first insertion hole 7121. In the first state, the outer pressing piece 72 is located outside the shaping main shell 1. This structure has a simple and reliable plug-in cooperation mode, convenient assembly and disassembly, the position of the outer pressing piece 72 is adapted to the structural layout of different states of the toy, the pressing force stability of the pressing operation is ensured, and the unfolding action of the limb shaping assembly 5 is not interfered, the overall structural design has strong adaptability, the coordination of the pressing trigger and the shape deformation of the toy is further improved, and the operation is more in line with the usage habit of children.
[0075] In a possible implementation, as shown in Figure 2 , Figure 11 and , the limb shaping assembly includes an arm limb 51, the arm limb 51 is provided with a second insertion hole 5123a at the end, and the plug shaft 721 can be inserted into or extracted from the second insertion hole 5123a. The outer pressing piece 72 is exposed and arranged to adapt to the pressing operation requirement, without needing to exert force into the inside of the shaping main shell 1, the pressing operation is convenient, and the plug shaft 721 serves as a trigger for gyro launching, can be inserted into the second insertion hole 5123a of the arm limb 51 after being separated from the thin neck segment, becomes a mech defense shield, and the outer pressing piece 72 has the functions of triggering and shaping decoration, enriches the deformation shaping and playing interest of the toy, has a clever structure design and one object with multiple uses, and further improves the playing variety and shaping aesthetics of the product.
[0076] Figure 3 , Figure 5 and Figure 6As shown, the modeling gyroscope piece 4 has a limiting fitting groove 41 and a fitting cylinder 42 inside the limiting fitting groove 41, a plurality of limiting grooves 411 are arranged on the peripheral wall of the limiting fitting groove 41, the one-way limiting structure 1212 of the modeling main shell 1 includes a plurality of arc-shaped clamping claws 611, each of the arc-shaped clamping claws 611 is arranged in sequence and spaced apart in the circumferential direction of the rotating piece 2, and the end of the arc-shaped clamping claw 611 is provided with an inclined table 1212a. In the state that the modeling gyroscope piece 4 is limited and fitted with the one-way limiting structure 1212, the end of the rotating piece 2 is inserted into the fitting cylinder 42, each of the inclined tables 1212a is clamped into the corresponding limiting groove 411, and the limiting fitting groove 41 limits the rotation of the modeling gyroscope piece 4 in the second direction. The one-way limiting structure 1212 is arranged on the side of the upper cover shell 121 away from the first cylinder shell part 1211. The modeling gyroscope piece 4 is precisely fitted with the arc-shaped clamping claw 611 through the limiting fitting groove 41, the fitting cylinder 42 and the circumferential limiting groove 411, in the limited and fitted state, the end of the rotating piece 2 is inserted into the fitting cylinder 42, and the inclined table 1212a is clamped into the corresponding limiting groove 411 one by one. Whether the modeling gyroscope piece 4 is in a rotating state or not, the rotation of the modeling gyroscope piece 4 in the second direction can be stably limited, and only the rotation in the first direction is allowed to complete the gyroscope force storage. The structure is reliable in limiting and close in fitting, can effectively avoid the energy storage failure caused by the reverse reverse of the gyroscope piece during the force storage process, the plug-in connection of the fitting cylinder 42 and the rotating piece 2 ensures the coaxiality of rotation, the fitting and clamping of the inclined table 1212a and the limiting groove 411 are smooth, which not only improves the stability and reliability of the gyroscope force storage, but also ensures the smoothness of the subsequent launch rotation, further optimizes the use experience of the gyroscope play.
[0077] As shown in Figure 3 and Figure 4 As shown, the lower cover shell 122 is provided with a plug-in hole 1222, and the plug-in hole 1222 communicates with the cavity. The arm limb 51 includes a plurality of connecting pieces 511 and an arm body 512, the connecting pieces 511 are rotatably plugged into the plug-in hole 1222, the arm body 512 is movably connected to the connecting pieces 511, and the arm body 512 and the connecting pieces 511 are detachably connected.
[0078] As shown in Figure 2 and Figure 11As shown, the arm body 512 includes a large arm member 5121, a forearm member 5122 and a hand member 5123. The large arm member 5121 has a ball groove 5121a, the connecting member 511 is provided with a ball head 5111, the ball head 5111 is movably connected to the ball groove 5121a, the forearm member 5122 is movably connected to the large arm member 5121, and the hand member 5123 is movably connected to the forearm member 5122. This structure makes the large arm member 5121 flexible in multiple dimensions, and the forearm member 5122 and the hand member 5123 are movably connected to the large arm member 5121 and the forearm member 5122 respectively, and the hand member 5123 can rotate relative to the forearm member 5122, realizing multi-directional and multi-angle bending and rotation. In the stretched state, various shapes can be flexibly arranged, greatly improving the modeling richness and playing interest of the toy. When stored, the upper limb structure can be conveniently stored in the cavity through multi-angle flexible adjustment, and the storage operation is simple and smooth, improving the convenience of use.
[0079] As shown in Figure 3 , Figure 4 and Figure 9 , the second barrel part 1221 has a barrel cavity and a sliding groove 1221a communicating with the barrel cavity, the lower limb support 6 has a main barrel 61 and a connecting body 62, the main barrel 61 is provided with a clamping jaw 611 at the top, and the main barrel 61 has the through groove. The main barrel 61 is slidably arranged in the barrel cavity, the clamping jaw 611 is slidably limited in the sliding groove 1221a, and the lower limb assembly 52 is movably connected to the connecting body 62, which provides precise sliding guidance and displacement limiting for the lower limb support, avoids deviation and loosening during sliding, and ensures the structural stability and operation smoothness of the lower limb assembly 52 sliding. When stored, the lower limb assembly 52 can be folded and stored first, and then placed into the cavity through the bottom, and then the lower limb support can be pushed upward to smoothly move the lower limb assembly 52 into the cavity, realizing synchronous fitting of the arm and the lower limb assembly 52. The storage operation is one-step and convenient and efficient. When unfolded for use, the lower limb support is pulled downward, the clamping jaw 611 is precisely guided and slid along the sliding groove 1221a, the lower limb assembly 52 is driven to extend synchronously, and the lower limb assembly 52 and the connecting body 62 are movably connected, which can flexibly unfold the lower limb shape. The deformation operation is smooth and not jammed, the structure of pulling and bending makes the operation logic of the toy deformation and storage simpler, and the convenience of use of the toy of the application is greatly improved.
[0080] As shown in Figure 2 and Figure 3As shown, the lower limb assembly 52 comprises a plurality of structural members, each of which is sequentially arranged, and two adjacent structural members are movably connected, and the structural member at one end is movably connected with the connecting body 62. Such multi-section movable connection enables the lower limb assembly 52 to realize multi-dimensional bending and swinging, and can flexibly shape various lower limb shapes, enrich the overall deformation shape of the toy and the playing interest. Moreover, the multi-section movable structure can be bent and folded as needed, greatly reducing the lower limb storage volume, and can be more closely slid into the cavity with the lower limb support to complete storage, further improving the compactness and regularity of the overall storage, and the linkage operation of bending and folding and pulling and storage is smooth, and the modeling versatility and storage convenience are taken into account.
[0081] The modeling top 4 can be provided with a light-emitting assembly, which can trigger the light-emitting assembly to emit light when the top rotates, and the light-emitting assembly is in an extinguished state when the top does not rotate. The light-emitting assembly can include a battery, an LED lamp and a switching circuit, and the core principle can be to trigger the switching circuit to be connected by rotation, so that the LED lamp emits light, mainly having two triggering mechanisms:
[0082] The first one is centrifugal triggering, which mainly includes a built-in button cell, an LED lamp, an elastic conductive part (such as a spring, a metal pendulum piece) or a centrifugal block. When the modeling top 4 rotates at high speed, the centrifugal force makes the elastic conductive part / centrifugal block move outward, contacts the power supply, and the LED lights up. When the speed decreases, the centrifugal force decreases, the conductive part resets, the contact is disconnected, and the lamp is extinguished. The specific structure is simple and low in cost, and only emits light at high speed.
[0083] The second one is inertia / contact triggering, and the switch can be a swingable metal sheet or a conductive column, cooperating with a fixed electrode. The inertia of the modeling top 4 during rotation makes the movable conductive part contact the fixed electrode, forming a loop; after stopping rotating, the conductive part resets, and the loop is disconnected.
[0084] It should be noted that the principle of the light-emitting top is disclosed in many prior arts, and the light-emitting assembly in the modeling top 4 of the present application can directly adopt the prior art.
[0085] The preferred embodiments disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details and limit the application to the specific embodiments described. Obviously, many modifications and changes can be made according to the content of the present application. The embodiments are selected and described in detail in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited by the claims and their entire scope and equivalents.
Claims
1. A gyroscopic transformation toy characterized by, The application relates to a toy, and particularly relates to a toy with a body shaping function. The toy comprises a main body shell, a rotating member, an elastic member, a body shaping component and a gyro deformation toy. The main body shell has a cavity and an opening, and a barrel shell is arranged on the main body shell and at least partially located in the cavity. The rotating member is rotatably arranged in the barrel shell and partially extends out of the cavity. The outer surface of the main body shell is provided with a one-way limiting structure on the circumferential side of the rotating member. The elastic member is located in the barrel shell and is in limiting cooperation with the barrel shell and the rotating member. The gyro deformation toy is in limiting cooperation with the rotating member and the one-way limiting structure.
2. The gyroscopic transformation toy according to claim 1, characterized in that Rotating the gyro deformation toy in a first direction can drive the rotating member to rotate, and the deformation amount of the elastic member is increased. The one-way limiting structure limits the gyro deformation toy from rotating in a second direction. Under the action of an external force, the rotating member slides along the barrel shell and pushes against the gyro deformation toy to make the gyro deformation toy separate from the one-way limiting structure. The elastic member restores the deformation and drives the rotating member to rotate the gyro deformation toy. The main body shell has a bottom shell and a cover shell. The cover shell has an upper cover shell and a lower cover shell. The lower cover shell is connected to the bottom shell and seals the top opening of the bottom shell.
3. The gyroscopic transformation toy according to claim 2, wherein The upper cover shell is connected to the lower cover shell. The barrel shell comprises a first barrel shell part arranged on the upper cover shell. The rotating member is rotatably arranged in the first barrel shell part. The elastic member is sleeved on the rotating member and is in limiting cooperation with the rotating member and the first barrel shell part.
4. The gyroscopic transformation toy according to claim 3, wherein The elastic member is a spring. The elastic member has extension arms at two ends. The rotating member is provided with limiting holes. The extension arms at the two ends of the elastic member are respectively limited in the limiting holes on the rotating member and the first barrel shell part.
5. The gyroscopic transformation toy according to claim 4, wherein The toy comprises a lower limb support. The barrel shell comprises a second barrel shell part arranged on the lower cover shell. The second barrel shell part is sleeved on the outer side of the first barrel shell part. The rotating member is slidably arranged in the second barrel shell part. The lower limb support is located in the cavity and is connected to the second barrel shell part.
6. The gyro-transforming toy of claim 5, wherein, The body shaping component is connected to the lower limb support. The toy comprises a pressing block component. The lower limb support has a through groove. One end of the rotating member is arranged in the through groove. The pressing block component is slidably arranged in the through groove and at least partially located on the outer side of the lower limb support. Under the action of an external force, the pressing block component can slide along the lower limb support and push the rotating member to move along the barrel shell. The pressing block component comprises a limiting member and an external pressing member. The end of the through groove on the lower limb support is provided with an end closing part. The limiting member comprises a thick diameter part and a thin diameter part. The thick diameter part is located in the through groove and the thin diameter part extends out of the end closing part. The external pressing member is detachably connected to the thin diameter part. In the second state, the outer pressing member is connected to the limb shaping assembly through the thin diameter part.
7. The gyroscopic transformation toy according to claim 6, wherein The outer pressing member comprises a shaft and a disc; The thin diameter part has a first insertion hole; The shaft is vertically connected to the disc; The shaft can be inserted into or extracted from the first insertion hole; In the first state, the outer pressing member is located outside the shaping main shell.
8. The gyroscopic transformation toy according to claim 7, wherein The limb shaping assembly comprises an arm limb; The arm limb has a second insertion hole at the end thereof; The shaft can be inserted into or extracted from the second insertion hole.
9. The gyroscopic transformation toy according to claim 8, wherein The shaping gyroscope member has a limiting fitting groove and a fitting cylinder inside the limiting fitting groove; The circumferential wall of the limiting fitting groove is provided with a plurality of limiting grooves; The one-way limiting structure of the shaping main shell comprises a plurality of arc-shaped clamping claws, each of which is sequentially and spacedly arranged along the circumference of the rotating member, and the end of each arc-shaped clamping claw is provided with an inclined platform; In the state that the shaping gyroscope member is limited by the one-way limiting structure, the end of the rotating member is inserted into the fitting cylinder, each inclined platform is clamped into the corresponding limiting groove, and the limiting fitting groove limits the rotation of the shaping gyroscope member in the second direction.