Movable metal assembly wasp modeling toy

By designing a movable metal assembly wasp-shaped toy, utilizing a hinged structure and multiple functional components, the problem of insufficient assembly difficulty and fun in existing metal assembly toy models has been solved, achieving greater freedom of movement and a three-dimensional display effect.

CN224194086UActive Publication Date: 2026-05-05STEEL WARCRAFT (YUNNAN) MODEL ART CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
STEEL WARCRAFT (YUNNAN) MODEL ART CO LTD
Filing Date
2025-04-29
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing metal assembly toy models are inadequate in terms of assembly difficulty, functional features, and user experience. They lack fun and operability, and are mostly fixed, monolithic components, making it difficult to provide enjoyment and display value.

Method used

A movable metal assembly wasp-shaped toy was designed. Through the articulated head, body, waist, abdomen and tail structure, combined with a multi-claw chassis structure, controllable colored lights and magnetic lights, the movable and functional nature of various components is achieved, enhancing the simulation and fun.

Benefits of technology

The design improves the wasp toy's mobility and freedom of movement, enhances its 3D display effect and functionality, and increases its fun and realism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a movable metal assembly wasp modeling toy which comprises a head assembly, a body assembly, a waist assembly, an abdomen assembly, a tail assembly, a leg assembly and a back shell assembly. The head assembly, the body assembly, the waist assembly, the abdomen assembly and the tail assembly are hinged in sequence; a plurality of fin plates are hinged to the two sides of the body assembly; the leg assembly is of a multi-claw chassis structure, and a chassis of the leg assembly is fixed to the lower end of the body assembly. Leg claws of the leg components can be bent and deformed to form functional structures; the back shell assembly is screwed on the top surfaces of the head assembly, the body assembly and the abdomen assembly; a controllable colored lamp is arranged on the top face of the front end of the body assembly. And a magnetic control lamp is arranged at the front end of the head component and is buckled through the back shell component. The activity of the wasp toy is improved in a hinged mode, the activity freedom degree is higher, the three-dimensional display effect is good, the bendable leg structure endows the wasp toy with more functional effects, and interestingness and simulation performance are higher.
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Description

Technical Field

[0001] This utility model relates to the field of toy technology, and more specifically to a movable metal assembly wasp-shaped toy. Background Technology

[0002] Traditional toy models are mostly made of plastic, with relatively simple assembly methods, lacking fun and challenge. Furthermore, plastic toy models have limitations in durability and aesthetics. In recent years, with the development of metal processing technology, all-metal assembly toy models have gradually gained market attention. However, existing metal assembly toy models still need improvement in terms of assembly difficulty, functional features, and user experience.

[0003] Currently, most decorative items, whether used as ornaments, accessories, or pendants on keychains, mobile phones, backpacks, etc., are single pieces. Because they are not modular, cannot be assembled, lack operability, and are not fun, they fail to provide people, especially teenagers, with the enjoyment of manipulation and assembly, or the value of display, collection, or souvenirs.

[0004] Therefore, how to provide a wasp toy with a more movable, freer, and better three-dimensional display structure, while also giving it more functional effects, is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0005] In view of this, the present invention provides a movable metal assembly wasp-shaped toy, which aims to solve the above-mentioned technical problems.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A movable metal assembly wasp-shaped toy, including a head assembly, a body assembly, a waist assembly, an abdomen assembly, a tail assembly, a leg assembly, and a back shell assembly;

[0008] The head assembly, body assembly, waist assembly, abdomen assembly, and tail assembly are sequentially hinged together; multiple wing plates are hinged to both sides of the body assembly; the leg assembly has a multi-claw chassis structure, and the chassis of the leg assembly is fixed to the lower end of the body assembly; the leg claws of the leg assembly can be bent and deformed to form functional structures; the back shell assembly is screwed to the top surface of the head assembly, body assembly, and abdomen assembly; wherein, the front top surface of the body assembly is provided with a controllable colored light; the front end of the head assembly is provided with a magnetically controlled light and is fastened to the back shell assembly.

[0009] The beneficial effects of this utility model are that the articulation of the wasp toy is improved by the hinged head, body, waist, abdomen and tail structure, the leg components of the multi-claw chassis structure give the wasp toy some functional structures, and the fun of the wasp toy is improved by the controllable colored lights and magnetic lights; the wasp toy has stronger articulation, higher degree of freedom of movement, and better three-dimensional display effect.

[0010] Preferably, the body assembly includes a longitudinal splicing plate, a main body plate, and a secondary body plate; the upper side of the longitudinal splicing plate has an interlocking groove, and the rear end extends with a first extension plate; there are multiple main body plates, and their lower ends are embedded in the interlocking groove; there are multiple secondary body plates, and their panels have through grooves, and the first extension plate is inserted into the through grooves; the wing plates are hinged to both sides of the multiple main body plates; the controllable colored light is fixed to one side of the main body plate located at the front end of the body assembly.

[0011] The beneficial effect of adopting the above technical solution is that the longitudinal splicing plate and the first extension plate form an integral body base plate, and the main body plate and the secondary body plate are connected by fitting and plugging, making the connection more firm and stable.

[0012] Preferably, the head assembly includes a main head plate, a secondary head plate, a mouthpart plate, an anchoring plate, and antennae; there are two secondary head plates, which are respectively bolted to the two side panels at the front end of the main head plate; the mouthpart plate corresponds to the main head plate and one end of it is hinged between the two secondary head plates; a hanging ring for hanging springs is fixed to one side of both the mouthpart plate and the main head plate; there are multiple anchoring plates, and their panels are vertically embedded in the rear panel of the main head plate; the antennae are screwed to the outermost anchoring plate;

[0013] The body assembly also includes a head and body guide plate. The main body plate has a slot on its panel. The head and body guide plate is inserted into the slot and its front end is bolted to the front end of the longitudinal splicing plate. Multiple anchor plates are hinged to the front end of the head and body guide plate via a head and body connecting plate.

[0014] The beneficial effect of adopting the above technical solution is that the mouthparts and antennae on the head assembly can improve the shape imitation ability of the wasp toy, and the reproduction of the wasp animal is more accurate and the three-dimensional effect is stronger.

[0015] Preferably, the waist assembly includes a main waist plate, a secondary waist plate, and a waist shaping plate; the upper end of the main waist plate has an upper insertion groove, and the lower end of the secondary waist plate has a lower insertion groove; the lower end of the waist shaping plate has a lower mating groove that engages with the upper insertion groove, and the upper end has an upper mating groove that engages with the lower insertion groove; the main waist plate and the secondary waist plate are fastened together by bolts, and the front end of the main waist plate is hinged to the rear end of the first extension plate.

[0016] The beneficial effect of adopting the above technical solution is that the waist component is used to connect the body component and the abdomen component, and the hinged connection between them improves the mobility of the wasp toy.

[0017] Preferably, the abdominal assembly includes a web plate, a connecting plate, and ribs; the connecting plate is bolted to the lower end of the web plate, and an assembly space is formed between the connecting plate and the web plate; there are multiple ribs connected by screws, and the multiple ribs are embedded in the assembly space; the front end of the web plate is hinged to the rear end of the main waist plate.

[0018] The beneficial effect of adopting the above technical solution is that the abdominal component fixes the rib plate by fitting, which is ingenious and makes the fixation more stable and reliable.

[0019] Preferably, the tail assembly includes a tail shaping plate, a side base plate, a ventral tail connecting plate, and a stinger; the tail shaping plate consists of multiple pieces connected by screws; one end of each tail shaping plate is fixed to the panel of the side base plate by a limiting plate to form a tail body, and the tail body has two sets; the ventral tail connecting plate passes through the multiple tail shaping plates, and two ventral tail connecting plates on the two sets of tail bodies are bolted together; the stinger is hinged to the two ventral tail connecting plates via a tail tip connecting plate; the ventral tail connecting plate is hinged to the front end of the abdominal plate.

[0020] The beneficial effects of adopting the above technical solution are that the tail assembly is hinged with a venomous barb, has a movable cavity, and has a high conformability.

[0021] Preferably, the body component further includes a leg connecting plate; a cross groove is provided on the panel at the rear end of the longitudinal splicing plate, and a second extension plate extends from the lower end of the longitudinal splicing plate corresponding to the cross groove, and the second extension plate is provided with a notch communicating with the cross groove;

[0022] The leg connecting plate is bolted to the panel of the longitudinal splicing plate; the panel of the leg connecting plate is provided with a cross assembly groove corresponding to the cross groove, and a nut is embedded in the cross assembly groove to be screwed to the chassis.

[0023] The beneficial effect of adopting the above technical solution is that the body component and the chassis of the leg component are connected by nuts, resulting in a simple and ingenious structure.

[0024] Preferably, the fin plate includes two spaced-apart fin skeletons, with a fin-shaped plate embedded between the two fin skeletons.

[0025] The beneficial effect of adopting the above technical solution is that the wing's conforming ability can be improved by using the fin conforming plate.

[0026] Preferably, the functional structure is a support structure or a bracket structure.

[0027] The beneficial effect of adopting the above technical solution is that the bent legs can be used as a mobile phone holder or microphone holder, making it more functional.

[0028] As can be seen from the above technical solution, compared with the prior art, this utility model discloses a movable metal assembly wasp-shaped toy. The hinged joint improves the mobility of the wasp toy, giving it a higher degree of freedom of movement, a better three-dimensional display effect, and the bendable leg structure gives the wasp toy more functional effects, making it more fun and realistic. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0030] Figure 1 A schematic diagram of the wasp toy structure provided by this utility model;

[0031] Figure 2 A schematic diagram of the wasp toy provided by this utility model after removing the back shell assembly;

[0032] Figure 3 A schematic diagram of the head assembly structure provided by this utility model;

[0033] Figure 4 This is a schematic diagram of the exploded structure of the head assembly provided by this utility model;

[0034] Figure 5 A schematic diagram of the body component structure provided by this utility model;

[0035] Figure 6 This is a schematic diagram of the exploded structure of the body components provided by this utility model;

[0036] Figure 7 This is a schematic diagram of the body splicing panel structure provided by this utility model;

[0037] Figure 8 A schematic diagram of the waist component structure provided by this utility model;

[0038] Figure 9 This is an exploded view of the waist component provided by this utility model;

[0039] Figure 10 A schematic diagram of the abdominal component structure provided by this utility model;

[0040] Figure 11This is a schematic diagram of the exploded structure of the abdominal component provided by this utility model;

[0041] Figure 12 A schematic diagram of the tail assembly structure provided by this utility model;

[0042] Figure 13 This is an exploded view of the tail assembly provided by this utility model;

[0043] Figure 14 for Figure 13 Enlarged diagram of part A in the diagram;

[0044] Figure 15 A schematic diagram of the leg component structure provided by this utility model;

[0045] Figure 16 A schematic diagram of the chassis structure provided by this utility model;

[0046] Figure 17 A schematic diagram of the leg claw structure provided by this utility model;

[0047] Figure 18 A schematic diagram of the ball joint structure provided by this utility model;

[0048] Figure 19 A schematic diagram of the finned plate structure provided by this utility model.

[0049] in,

[0050] 100-Head assembly; 110-Magnetic control lamp; 120-Antetraoculum; 130-Main head plate; 140-Secondary head plate; 150-Mouthpiece plate; 160-First anchor plate; 170-Second anchor plate; 180-Third anchor plate; 190-Head-body connecting plate;

[0051] 200-Body component; 210-Controllable colored light; 220-Fin plate; 2201-Fin skeleton; 2202-Skeleton connecting plate; 2203-Clamping plate; 2204-Fin-body connecting plate; 230-Head-body guide plate; 240-Main body plate; 250-Longitudinal splicing plate; 2501-Interlocking groove; 2502-First extension plate; 2503-Cross groove; 2504-Second extension plate; 2505-Notch; 260-Leg-body connecting plate; 2601-Cross assembly groove; 2602-Third extension plate; 270-Secondary body plate; 280-Pad plate;

[0052] 300 - Waist assembly; 310 - Main waist plate; 3101 - Upper insertion slot; 320 - Secondary waist plate; 3201 - Lower insertion slot; 330 - Waist shaping plate; 3301 - Upper mating slot; 3302 - Lower mating slot;

[0053] 400 - Abdominal component; 410 - Abdominal plate; 420 - Abdominal connecting plate; 430 - Rib plate; 440 - Auxiliary plate;

[0054] 500 - Tail assembly; 510 - Tail styling plate; 520 - Stinger; 5201 - Sleeve plate; 5202 - Mounting plate; 5203 - Mounting plate; 5204 - Tail pin; 5205 - Tail pin spring; 530 - Side base plate; 540 - Belly tail connecting plate; 550 - Limiting plate; 560 - Tail tip connecting plate;

[0055] 600 - Leg assembly; 610 - Chassis; 6101 - Upper base plate; 6102 - Lower base plate; 6103 - Upper joint limiting hole; 6104 - Lower joint limiting hole; 620 - Joint body; 6201 - Upper circular insert; 6202 - Lower circular insert; 6203 - Upper insertion port; 6204 - Lower insertion port; 630 - Leg claw; 640 - Torsion spring;

[0056] 700-Back cover assembly. Detailed Implementation

[0057] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0058] like Figure 1 and 2 As shown in the figure, this utility model embodiment discloses a movable metal assembly wasp-shaped toy, including a head component 100, a body component 200, a waist component 300, an abdomen component 400, a tail component 500, a leg component 600, and a back shell component 700.

[0059] The head assembly 100, body assembly 200, waist assembly 300, abdomen assembly 400, and tail assembly 500 are hinged together in sequence. Multiple fin plates 220 are hinged to both sides of the body assembly 200. The leg assembly 600 has a multi-claw chassis structure, and the chassis 610 of the leg assembly 600 is fixed to the lower end of the body assembly 200. The leg claws 630 of the leg assembly 600 can be bent and deformed to form a functional structure. The back shell assembly 700 is screwed to the top surface of the head assembly 100, body assembly 200, and abdomen assembly 400. Among them, the front top surface of the body assembly 200 is provided with a controllable colored light 210. The front end of the head assembly 100 is provided with a magnetically controlled light 110, which is fastened to the back shell assembly 700.

[0060] This embodiment improves the mobility of the wasp toy through its hinged design. The back shell assembly can be selected in an orange-yellow color similar to that of a wasp to enhance its realism. The controllable colored light has a screw-on contact structure and contains a button battery. Its principle is the same as that of a traditional flashlight: when it is loose, poor contact will prevent it from lighting up, and when it is tightened, good contact will make it light up. The magnetic light uses the principle of magnetism. When a magnet is brought near the back shell assembly located on the head, the magnetic light will light up; when no magnet is near, it will not light up. The controllable colored light and magnetic light enhance the fun of the wasp toy.

[0061] To further optimize the above technical solution, the body component 200 includes a longitudinal splicing plate 250, a main body plate 240, and a secondary body plate 270; the upper end of the longitudinal splicing plate 250 is provided with an interlocking groove 2501, and the rear end extends with a first extension plate 2502; there are multiple main body plates 240, and their lower ends are embedded in the interlocking groove 2501; there are multiple secondary body plates 270, and their panels are provided with through grooves, and the first extension plate 2502 is inserted into the through grooves; the wing plates 220 are hinged to both sides of the multiple main body plates 240; the controllable colored light 210 is fixed to one side of the main body plate 240 located at the front end of the body component 200.

[0062] like Figure 5 and 6 As shown, the lower end of the main body plate has a groove corresponding to the interlocking groove, and the main body plate and the longitudinal splicing plate are connected by interlocking with each other; the longitudinal splicing plate and the sub-body plate are connected by plugging; in order to ensure the stability of the connection, there are two longitudinal splicing plates arranged symmetrically, which ensures the stability of the body component assembly.

[0063] To further optimize the above technical solution, a pad 280 is embedded between two adjacent sub-body plates 270. The panel of the pad 280 has a slot corresponding to the through groove, and the first extension plate is inserted into the through groove and the slot in sequence.

[0064] In other specific embodiments, the fin plate 220 includes a fin skeleton 2201, a skeleton connecting plate 2202, a clamping plate 2203, and a fin body connecting plate 2204; such as Figure 19As shown, there are two fin skeletons 2201 arranged at intervals, and a fin-shaped plate (not shown in the figure) is embedded between the two fin skeletons 2201; the skeleton connecting plate 2202 is inserted into one end of the two fin skeletons 2201, and the two fin skeletons 2201 and the skeleton connecting plate 2202 are fastened with bolts, so that the fin skeletons 2201 and the skeleton connecting plate 2202 form a fixed structure; there are two clamping plates 2203, which are respectively clamped to one end of the skeleton connecting plate 2202, and the clamping plates 2203 and the skeleton connecting plate 2202 are connected with bolts, so that the skeleton connecting plate 2202... The fin-body connecting plate 2204 is fixed to the clamping plate 2203. One end of the clamping plate 2203 has a protrusion, and the end of the clamping plate 2203 away from the frame connecting plate 2202 has a round hole. The fin-body connecting plate 2204 is arranged perpendicular to the fin connecting plate 2203 and inserted between the two clamping plates 2203. The protrusion is rotatably connected within the round hole, allowing the fin frame 2201 to move back and forth along the fin-body connecting plate 2204. The other end of the fin-body connecting plate 2204 has a screw hole and is fitted onto the screw that passes through the main body plate 240, enabling the fin frame 2201 to move up and down relative to the main body plate 240. This method allows for up-and-down and back-and-forth movement of the fins, enhancing the simulation and entertainment value.

[0065] To further optimize the above technical solution, the head assembly 100 includes a main head plate 130, a secondary head plate 140, a mouthpart plate 150, an anchoring plate, and an antenna 120; there are two secondary head plates 140, which are respectively bolted to the two side panels at the front end of the main head plate 130; the mouthpart plate 150 corresponds to the main head plate 130 and one end of it is hinged between the two secondary head plates 140; a hanging ring for hanging springs is fixed on one side of both the mouthpart plate 150 and the main head plate 130; there are multiple anchoring plates, and their panels are vertically embedded in the rear panel of the main head plate 130; the antenna 120 is screwed to the outermost anchoring plate;

[0066] The body assembly 200 also includes a head and body guide plate 230. The main body plate 240 has a slot on its panel. The head and body guide plate 230 is inserted into the slot and its front end is bolted to the front end of the longitudinal splicing plate 250. Multiple anchor plates are hinged to the front end of the head and body guide plate 230 through a head and body connecting plate 190.

[0067] like Figure 3 and 4As shown, the mouthpiece plate 150 is arranged corresponding to the main head plate 130. Two auxiliary head plates 140 are located on the upper and lower sides of the main head plate 130. The two auxiliary head plates 140 have a receiving gap relative to the front end of the main head plate 130. The main head plate 130 and the auxiliary head plates 140 are bolted together. One end of the mouthpiece plate 150 is inserted into the receiving gap and bolted to the auxiliary head plate 140. An assembly groove is provided on the panel at the rear end of the main head plate 130. A cross plate is fixed to the bottom wall of the assembly groove relative to the main head plate 130. The anchoring plates include a first anchoring plate 160, a second anchoring plate 170, and a third anchoring plate 180. The first anchor plate 160 has two pieces with square grooves at its upper end. The two first anchor plates 160 are inserted into the self-assembly grooves and the two square grooves are respectively fitted onto the two limbs of the cross plate. The second anchor plate 170 has two pieces with self-assembly grooves inserted and abutting against the panel of the first anchor plate 160. The third anchor plate 180 has two pieces with self-assembly grooves inserted and abutting against the panel of the second anchor plate 170. The first anchor plate 160, the second anchor plate 170 and the third anchor plate 180 are fastened by screws. The antenna 120 is bolted to one side panel of the third anchor plate 180.

[0068] like Figure 6 As shown, the head and body guide plate is inserted into the slot of the main body plate, which can ensure that the main body plate and the longitudinal splicing plate are tightly interlocked; one end of the head and body connecting plate is fixed between the two first anchor plates by bolts, and the other end is hinged to the head and body guide plate by a hinge shaft, so as to realize the movement of the head relative to the body.

[0069] In other specific embodiments, in order to ensure the stability of the connection, there are two head and body connecting plates, which are located on opposite sides of the two longitudinal splicing plates. The two head and body connecting plates are clamped on both sides of the head and body connecting plate and connected by a hinge.

[0070] To further optimize the above technical solution, the waist component 300 includes a main waist plate 310, a secondary waist plate 320, and a waist shaping plate 330; the upper end of the main waist plate 310 is provided with an upper insertion groove 3101, and the lower end of the secondary waist plate 320 is provided with a lower insertion groove 3201; the lower end of the waist shaping plate 330 is provided with a lower mating groove 3302 that engages with the upper insertion groove 3101, and the upper end is provided with an upper mating groove 3301 that engages with the lower insertion groove 3201; the main waist plate 310 and the secondary waist plate 320 are fastened by bolts, and the front end of the main waist plate 310 is hinged to the rear end of the first extension plate 2502.

[0071] like Figure 8 and 9 As shown, there is one main waist plate and two secondary waist plates, which are symmetrically located on both sides of the main waist plate. The main waist plate and the two secondary waist plates are interlocked with multiple waist shaping plates and connected by bolts. The front end of the main waist plate is hinged to the rear end of the first extension plate through a hinge shaft, so as to realize the movement of the body component relative to the waist component.

[0072] To further optimize the above technical solution, the abdominal assembly 400 includes a web plate 410, a web connecting plate 420, and ribs 430; the web connecting plate 420 is bolted to the lower end of the web plate 410, and an assembly space is formed between the web connecting plate 420 and the web plate 410; there are multiple ribs 430 connected by screws, and the multiple ribs 430 are embedded in the assembly space; the front end of the web plate 410 is hinged to the rear end of the main waist plate 310.

[0073] like Figure 10 and 11 As shown, the ribs are connected by screws, and washers are fitted on the screws between two adjacent ribs to form the main body of the abdomen; there are slots at the upper and lower ends of the ribs, the abdomen is embedded in the slot at the upper end, and the abdomen connecting plate is embedded in the slot at the lower end. The abdomen and the abdomen connecting plate are connected by bolts, and the front end of the abdomen is hinged to the rear end of the main waist to realize the movement of the waist assembly relative to the abdomen assembly.

[0074] In other specific embodiments, the structural dimensions of the multiple ribs 430 are different, and the dimensions increase sequentially from front to back; the first and last ribs 430 are integral plates with slots at their upper and lower ends, and the middle rib 430 is cut open relative to the centerline of the first and last ribs 430; the upper end of the web plate 410 has a slot, and auxiliary plates 440 are attached to both sides of the web plate 410; nuts are embedded in the slots of the web plate 410 for screwing into the back shell assembly 700; the auxiliary plates 440 are embedded in the slots at the upper end, and the side ends of the middle ribs 430 abut against the panel of the auxiliary plates 440; the connecting plate 420 is embedded in the slot at the lower end, and the side ends of the middle ribs 430 abut against the panel of the connecting plate 420. The different types of ribs reduce the difficulty of assembly and minimize material waste.

[0075] To further optimize the above technical solution, the tail assembly 500 includes a tail shaping plate 510, a side base plate 530, a ventral tail connecting plate 540, and a stinger 520. The tail shaping plate 510 consists of multiple pieces connected by screws. One end of each tail shaping plate 510 is fixed to the panel of the side base plate 530 by a limiting plate 550 to form the tail body. The tail body has two sets. The ventral tail connecting plate 540 passes through the multiple tail shaping plates 510, and the two ventral tail connecting plates 540 on the two sets of tail bodies are bolted together. The stinger 520 is hinged to the two ventral tail connecting plates 540 through a tail tip connecting plate 560. The ventral tail connecting plate 540 is hinged to the front end of the belly plate 410.

[0076] like Figure 12 and 13As shown, there are two side base plates arranged opposite each other. The tail shaping plates have different structural dimensions and are connected by screws from front to back in descending order of size. The tail shaping plates are located on opposite sides of the two side base plates 530. The abdomen-tail connecting plate is a T-shaped plate with a vertical plate and a horizontal plate. The horizontal plate is inserted into the slot on the tail shaping plate and abuts against the panel of the side base plate. The vertical plate is hinged to the abdomen plate through a hinge shaft, which enables the movement of the abdomen component relative to the tail component. The tail tip connecting plate is hinged between the two side base plates through a hinge shaft, which greatly improves the fun, realism and mobility of the wasp toy.

[0077] In other specific embodiments, such as Figure 14 As shown, the stinger 520 includes a tail needle 5204, one end of which is a pointed tip, and the other end is fixed to the end of the tail tip connecting plate 560 by a fastener. A hanging plate 5202 is fitted on the tail needle 5204, and three tail plates 5203 are hooked in an array on the hanging plate 5202. There is a gap between the three tail plates 5203 and the tail needle 5204. The top of the tail plate 5203 has an insert, and a sleeve plate 5201 is fitted on the tail needle 5204. The sleeve plate 5201 has an insertion port for fitting the insert. A tail needle spring 5205 is fitted on the tail needle 5204 between the sleeve plate 5201 and the fastener, so that the sleeve plate 5201 can slide up and down along the tail needle 5204, which increases the fun.

[0078] In some other specific embodiments, the body component 200 also includes a leg connecting plate 260; a cross groove 2503 is provided on the panel at the rear end of the longitudinal splicing plate 250, and a second extension plate 2504 extends from the lower end of the longitudinal splicing plate 250 corresponding to the cross groove 2503, and a notch 2505 communicating with the cross groove 2503 is provided on the second extension plate 2504.

[0079] The leg connecting plate 260 is bolted to the panel of the longitudinal splicing plate 250; the panel of the leg connecting plate 260 is provided with a cross assembly groove 2601 corresponding to the cross groove 2503, and a nut is embedded in the cross assembly groove 2601 to be screwed to the chassis 610.

[0080] like Figure 7 As shown, the leg connecting plate 260 is located between two longitudinal splicing plates 250 and its panel abuts against the opposite side panels of the two longitudinal splicing plates; a third extension plate 2602 extends from one side of the leg connecting plate 260, and the third extension plate 2602 is fastened to the longitudinal splicing plate 250 by bolts; the connection between the body component 200 and the chassis 610 can be achieved by embedding nuts in the cross mounting groove 2601 of the leg connecting plate 260.

[0081] like Figure 16As shown, the chassis 610 includes a lower base plate 6102 and an upper base plate 6101 arranged in rows and spaced apart. The lower base plate 6102 and the upper base plate 6101 are connected by a locking member. The lower base plate 6102 is provided with a lower joint limiting hole 6104, and the upper base plate 6101 is provided with an upper joint limiting hole 6103 corresponding to the lower joint limiting hole 6104. The panels of the upper base plate 6101 and the lower base plate 6102 are provided with anchoring holes for the insertion of the second extension plate 2504. Bolts are inserted from the bottom of the lower base plate 6102 and tightened with nuts to realize the connection between the chassis 610 and the body assembly 200.

[0082] like Figure 17 and 18 As shown, the leg assembly 600 also includes a joint body 620 and a leg claw 630. The joint body 620 includes an upper circular insert 6201 and a lower circular insert 6202. The upper circular insert 6201 is clamped between the corresponding upper joint limiting circular hole 6103 and lower joint limiting circular hole 6104. An upper insertion opening 6203 is radially opened on the circumferential surface of the upper circular insert 6201, and a lower insertion opening 6204 is radially opened on the circumferential surface of the lower circular insert 6202 to engage with the upper insertion opening 6203. The lower circular insert 6202 passes through the lower joint limiting circular hole 6104 and is inserted into and fixed to the upper circular insert 6201. A torsion spring 640 is sleeved on the outer periphery of the lower circular insert 6202.

[0083] The leg claw 630 includes a thigh segment 6301, a middle segment 6302, a lower leg segment 6303 and a hook segment 6304 that are hinged together in sequence. The leg claw forms a functional structure by bending and deforming.

[0084] In other specific embodiments, the functional structure is a support structure or a bracket structure.

[0085] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For the apparatus disclosed in the embodiments, since they correspond to the methods disclosed in the embodiments, the description is relatively simple; relevant parts can be referred to the method section.

[0086] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A movable metal assembly wasp-shaped toy, characterized in that, It includes a head assembly (100), a body assembly (200), a waist assembly (300), an abdomen assembly (400), a tail assembly (500), a leg assembly (600), and a back shell assembly (700); The head assembly (100), body assembly (200), waist assembly (300), abdomen assembly (400), and tail assembly (500) are hinged in sequence; multiple wing plates (220) are hinged to both sides of the body assembly (200); the leg assembly (600) has a multi-claw chassis structure, and the chassis (610) of the leg assembly (600) is fixed to the lower end of the body assembly (200); the leg claws (630) of the leg assembly (600) can be bent and deformed to form a functional structure; the back shell assembly (700) is screwed to the top surface of the head assembly (100), body assembly (200), and abdomen assembly (400); wherein, the front top surface of the body assembly (200) is provided with a controllable colored light (210); the front end of the head assembly (100) is provided with a magnetically controlled light (110) and is fastened to the back shell assembly (700).

2. The movable metal assembly wasp-shaped toy according to claim 1, characterized in that, The body assembly (200) includes a longitudinal splicing plate (250), a main body plate (240), and a secondary body plate (270); the upper end of the longitudinal splicing plate (250) is provided with an interlocking groove (2501), and a first extension plate (2502) extends from the rear end; there are multiple main body plates (240), and their lower ends are embedded in the interlocking groove (2501); there are multiple secondary body plates (270), and their panels are provided with through grooves, and the first extension plate (2502) is inserted into the through grooves; the wing plate (220) is hinged to both sides of the multiple main body plates (240); the controllable colored light (210) is fixed on one side of the main body plate (240) located at the front end of the body assembly (200).

3. The movable metal assembly wasp-shaped toy according to claim 2, characterized in that, The head assembly (100) includes a main head plate (130), a secondary head plate (140), a mouthpart plate (150), an anchor plate, and an antenna (120). There are two secondary head plates (140), each bolted to one of the two side panels at the front end of the main head plate (130). The mouthpart plate (150) corresponds to the main head plate (130), with one end hinged between the two secondary head plates (140). A hanging ring for attaching a spring is fixed to one side of both the mouthpart plate (150) and the main head plate (130). Multiple anchor plates are present, their panels vertically embedded in the rear end panel of the main head plate (130). The antenna (120) is screwed onto the outermost anchor plate. The body assembly (200) also includes a head-body guide plate (230), and a slot is provided on the panel of the main body plate (240). The head-body guide plate (230) is inserted into the slot and its front end is bolted to the front end of the longitudinal splicing plate (250). Multiple anchor plates are hinged to the front end of the head-body guide plate (230) through a head-body connecting plate (190).

4. A movable metal assembly wasp-shaped toy according to claim 2, characterized in that, The waist assembly (300) includes a main waist plate (310), a secondary waist plate (320), and a waist shaping plate (330); the upper end of the main waist plate (310) is provided with an upper insertion groove (3101), and the lower end of the secondary waist plate (320) is provided with a lower insertion groove (3201); the lower end of the waist shaping plate (330) is provided with a lower mating groove (3302) that engages with the upper insertion groove (3101), and the upper end is provided with an upper mating groove (3301) that engages with the lower insertion groove (3201); the main waist plate (310) and the secondary waist plate (320) are fastened together by bolts, and the front end of the main waist plate (310) is hinged to the rear end of the first extension plate (2502).

5. A movable metal assembly wasp-shaped toy according to claim 4, characterized in that, The abdominal assembly (400) includes a web plate (410), a connecting plate (420), and ribs (430); the connecting plate (420) is bolted to the lower end of the web plate (410), and an assembly space is formed between the connecting plate (420) and the web plate (410); there are multiple ribs (430) connected by screws, and multiple ribs (430) are embedded in the assembly space; the front end of the web plate (410) is hinged to the rear end of the main waist plate (310).

6. A movable metal assembly wasp-shaped toy according to claim 5, characterized in that, The tail assembly (500) includes a tail shaping plate (510), a side base plate (530), a ventral tail connecting plate (540), and a stinger (520). The tail shaping plate (510) consists of multiple pieces connected by screws. One end of each tail shaping plate (510) is fixed to the panel of the side base plate (530) by a limiting plate (550) to form a tail body. The tail body has two sets. The ventral tail connecting plate (540) passes through the multiple tail shaping plates (510), and the two ventral tail connecting plates (540) on the two sets of tail bodies are bolted together. The stinger (520) is hinged to the two ventral tail connecting plates (540) through a tail tip connecting plate (560). The ventral tail connecting plate (540) is hinged to the front end of the abdominal plate (410).

7. A movable metal assembly wasp-shaped toy according to claim 3, characterized in that, The body component (200) also includes a leg connecting plate (260); a cross groove (2503) is provided on the panel at the rear end of the longitudinal splicing plate (250), and a second extension plate (2504) extends from the lower end of the longitudinal splicing plate (250) corresponding to the cross groove (2503), and a notch (2505) communicating with the cross groove (2503) is provided on the second extension plate (2504); The leg connecting plate (260) is bolted to the panel of the longitudinal splicing plate (250); the panel of the leg connecting plate (260) is provided with a cross assembly groove (2601) corresponding to the cross groove (2503), and a nut is embedded in the cross assembly groove (2601) to be screwed to the chassis (610).

8. A movable metal assembly wasp-shaped toy according to claim 1, characterized in that, The fin plate (220) includes two spaced-apart fin skeletons (2201), and a fin-shaped plate is embedded between the two fin skeletons (2201).

9. A movable metal assembly wasp-shaped toy according to any one of claims 1 to 8, characterized in that, The functional structure is a support structure or a bracket structure.