Movable metal assembly ant-shaped toy
By designing detachable body, leg, and head components, and utilizing ball joints and leg claw hinges, the design solves the problems of poor 3D display and unstable movement in existing metal assembly toys, achieving greater freedom of movement and realism.
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
- 2026-04-28
AI Technical Summary
Existing metal assembly toys lack three-dimensional display effects, are unstable in movement, inconvenient to use, and have low playability.
It adopts a detachable connection design for the body, legs, head, tail and back shell, and uses ball joints and leg claws for hinge structure. The connection of multiple components is achieved by screws and bolts to achieve stable assembly and enhance the freedom of movement.
It improves the three-dimensional display effect and realism of toys, enhances the freedom of movement and fun, has higher connection stability, and better display effect.
Smart Images

Figure CN224166884U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy technology, and more specifically to a movable metal assembly ant-shaped toy. Background Technology
[0002] Most toys are made of plastic or plush, but sometimes metal assembly is used to showcase the characteristics of toys in three dimensions.
[0003] Metal building blocks typically consist of electronic components and metal parts. The metal parts are assembled into various shapes using glue, screws, and bolts, such as cars, airplanes, or various animal and plant figures. The electronic components form circuits that can emit light, sound, and rotate.
[0004] However, existing metal puzzle toys are made of metal sheets, which are thin, lack depth, are small in size, and have a limited viewing angle. They are usually displayed from the side, resulting in low playability. Existing metal puzzle toys also have a single-piece structure, which makes them unstable to install. They are prone to loosening and deformation during support and movement, making them inconvenient to use.
[0005] Therefore, how to provide a new type of metal assembly toy with greater mobility, higher freedom of movement, and better three-dimensional display effect is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0006] In view of this, the present invention provides a movable metal assembly ant-shaped toy, which aims to solve the above-mentioned technical problems.
[0007] To achieve the above objectives, the present invention adopts the following technical solution:
[0008] A movable metal ant-shaped toy includes:
[0009] The body assembly includes a body body composed of multiple body shaping plates connected by screws, the body body having multiple sets that are hinged sequentially; the panels of the body shaping plates have multiple assembly slots.
[0010] A leg assembly, comprising a base frame, a ball joint, and a leg claw; the base frame has multiple joint gaps formed on both sides, and one end of the base frame is fixed with an assembly block that can be embedded in the assembly slot; the upper end of the ball joint is installed in the joint gap; the leg claw includes a thigh segment, a lower leg segment, and a hook segment that are sequentially hinged to the lower end of the ball joint;
[0011] A head assembly, which is detachably connected to the front end of the body body;
[0012] A tail assembly, which is detachably connected to the rear end of the body body;
[0013] A back shell, which is detachably attached to the top surface of the body assembly, head assembly, and tail assembly to form a contoured structure.
[0014] The beneficial effects of this utility model are that by assembling the head component, body component, tail component, and leg component through a combination method, a more realistic and interesting ant toy is formed, with a better three-dimensional display effect. Through the connection between the ball joint and the leg claws, the leg claws have more flexibility, higher movement dimensions, and greater fun.
[0015] Preferably, the base frame includes an upper base plate, a lower base plate, and a T-shaped plate arranged in parallel and spaced apart. The upper base plate and the lower base plate are connected by a locking member. An upper joint limiting hole is provided on the panel of the upper base plate, and a lower joint limiting hole corresponding to the upper joint limiting hole is provided on the panel of the lower base plate. The lower joint limiting hole and the upper joint limiting hole correspond to each other to form the joint gap.
[0016] The T-shaped plate includes a longitudinal plate and a transverse plate. The longitudinal plate is vertically fixed to one end of the upper base plate, and the two ends of the transverse plate are respectively embedded in the two opposite assembly slots of the two adjacent body shaping plates.
[0017] The beneficial effect of the above technical solution is that the ball joint utilizes the combination of the lower and upper base plates, so that the upper and lower joint limiting holes form the ball joint mounting gap. The connection between the leg assembly and the body assembly is achieved through the cooperation of the T-plate and the mounting groove on the body shaping plate.
[0018] Preferably, the ball joint includes an upper circular insert, a lower circular insert, and a shaft. The upper circular insert has an upper insertion port radially formed on its circumferential surface, and the lower circular insert has a lower insertion port radially formed on its circumferential surface that engages with the upper insertion port. The upper and lower circular inserts are interlocked and clamped between the corresponding upper and lower joint limiting holes. The shaft passes through the lower joint limiting hole, and its upper end is fixed to the circumferential surface of the lower circular insert away from the lower insertion port.
[0019] The beneficial effect of the above technical solution is that by embedding the upper and lower circular inserts in the gap between the upper and lower substrates, and fixing the shaft to the upper and lower circular inserts, the connection between the leg claw and the body shaping plate is highly secure.
[0020] Preferably, the thigh segment includes a main thigh plate and a secondary thigh plate; the main thigh plate has thigh arc-shaped hooks arranged alternately at both ends; the secondary thigh plate has two pieces, and its faceplates respectively abut against the side faceplates of the main thigh plate; the lower end of the shaft is hinged to the upper ends of the two secondary thigh plates; the lower leg segment includes a lower leg plate, the upper end of which is hinged to the lower ends of the two secondary thigh plates; the hook segment includes a claw plate, the upper end of which is hinged to the lower end of the lower leg plate through two connecting plates.
[0021] The beneficial effect of the above technical solution is that the legs can be bent and deformed through segmented hinges, making them more interesting.
[0022] Preferably, it also includes a thigh wing plate, and corresponding connecting limiting grooves are provided on the panels of the thigh main plate and the thigh sub-plate. The thigh wing plate is inserted into the limiting groove, and limiting posts are bolted to the sides of the thigh wing plate relative to the two thigh sub-plates.
[0023] The beneficial effect of the above technical solution is that setting thigh wing plates can improve the shape-mimicking ability of ant toys, making them more realistic.
[0024] Preferably, the body assembly further includes inserts and body connecting plates, and the body body has three sets; slots are opened on the panels of the multiple body shaping plates; the inserts are inserted into the slots; the upper end of the body connecting plate has multiple lower engagement grooves; the lower end of the body shaping plate of the body body located in the middle has an upper engagement groove corresponding to the lower engagement grooves; the two ends of the body connecting plate are respectively hinged to the inserts of the body body located at both ends via hinge shafts.
[0025] The beneficial effect of the above technical solution is that multiple body parts are hinged to each other through body connecting plates, which makes the body components have a higher degree of freedom and strong mobility.
[0026] Preferably, the head assembly includes a head shaping plate, a mouthpart shaping plate, and an antenna shaping plate; the head shaping plate has a slot on its panel; one end of the mouthpart shaping plate is bolted to the bottom surface of one end of the head shaping plate; and the lower end of the antenna shaping plate is engaged in the slot.
[0027] The beneficial effect of the above technical solution is that the mouthpart shaping plate and antenna shaping plate can improve the shape imitation ability of ant toys.
[0028] Preferably, it further includes a pad, which is bolted to the bottom surface of the head shaping plate; the lower end of the antenna shaping plate has a groove, and a limiting block is fixed on the periphery of the antenna shaping plate above the groove; the lower end of the antenna shaping plate passes through the slot and one end of the pad is embedded in the groove; the limiting block abuts against the top surface of the head shaping plate opposite to the periphery of the slot.
[0029] The beneficial effect of the above technical solution is that the antennae shaping plate and the head shaping plate are inserted together, and the pad fixed on the bottom surface of the head shaping plate can be embedded in the groove of the antennae shaping plate, thus ensuring the firmness of the antennae shaping plate installation.
[0030] Preferably, it also includes a head-body connecting plate and a fastening plate; a through groove is provided on the panel of the head shaping plate at the end away from the mouthpiece shaping plate; the head-body connecting plate passes through the through groove and is locked to the head shaping plate by the two fastening plates.
[0031] The beneficial effects of the above technical solution are that by connecting the head and body modeling plate with the inserts on the main body, the hinge between the head component and the body component is realized, which is highly mobile, playable, and has a strong three-dimensional display effect.
[0032] Preferably, the tail assembly includes a tail styling plate, a side base plate, and a side support plate; the tail styling plate is multiple pieces and is connected by insert plates; the side base plate has a mounting cavity on its panel; multiple tail styling plates are embedded in the mounting cavity; the side support plate is two pieces and is respectively bolted to the top two sides of the tail styling plate.
[0033] The beneficial effect of the above technical solution is that the tail assembly is formed into an oval shape by using multiple tail shaping plates, resulting in a high degree of shape imitation.
[0034] As can be seen from the above technical solution, compared with the prior art, this utility model discloses a movable metal assembly ant-shaped toy. The ant-shaped toy is formed by assembly and combination, with high imitation degree and three-dimensional display effect. Moreover, the hinge method improves the freedom of the ant toy and makes it more mobile. Attached Figure Description
[0035] 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.
[0036] Figure 1 A schematic diagram of the ant toy structure provided by this utility model;
[0037] Figure 2 A schematic diagram of the head assembly structure provided by this utility model;
[0038] Figure 3 This is a schematic diagram of the exploded structure of the head assembly provided by this utility model;
[0039] Figure 4 This is an exploded view of the body components provided by this utility model;
[0040] Figure 5 This is a schematic diagram of the exploded structure of the main body provided by this utility model;
[0041] Figure 6 A schematic diagram of the leg component structure provided by this utility model;
[0042] Figure 7 This is an exploded view of the leg assembly provided by this utility model;
[0043] Figure 8 A schematic diagram of the tail assembly structure provided by this utility model;
[0044] Figure 9 This is an exploded view of the tail assembly provided by this utility model;
[0045] Figure 10 A schematic diagram of the tail styling plate structure provided by this utility model.
[0046] in,
[0047] 1-Head assembly; 11-Head shaping plate; 111-Slot; 112-Through groove; 12-Mouthpiece shaping plate; 13-Pad plate; 14-Tentacle shaping plate; 141-Tentacle main plate; 142-Tentacle secondary plate; 143-Tentacle connecting plate; 144-Limiting block; 145-Groove; 15-Head-body connecting plate; 151-Square groove; 16-Fastening plate; 161-Locking strip plate;
[0048] 2-Body assembly; 21-Body shaping plate; 211-Slot; 212-Upper engagement groove; 213-Assembly groove; 22-Insertion strip; 23-Body connecting plate; 231-Lower engagement groove;
[0049] 3-Tail assembly; 31-Tail shaping plate; 311-Upper notch; 312-Lower notch; 313-Base groove; 32-Insertion plate; 33-Side base plate; 331-Lower mating groove; 332-Cross groove; 34-Side support plate; 341-Upper mating groove; 342-Fixing groove;
[0050] 4-Leg assembly; 41-Base frame; 411-Upper base plate; 4111-Upper joint limiting hole; 412-Lower base plate; 4121-Lower joint limiting hole; 413-T-shaped plate; 42-Spherical joint; 421-Upper circular insert; 4211-Upper insertion port; 422-Lower circular insert; 4221-Lower insertion port; 423-Shaft; 43-Leg claw; 431-Thigh section; 4311-Thigh main plate; 4312-Thigh secondary plate; 4313-Limiting groove; 432-Lower leg section; 433-Hook claw section; 434-Connecting plate; 44-Thigh wing plate; 441-Limiting post. Detailed Implementation
[0051] 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.
[0052] See appendix Figure 1 This utility model discloses a movable metal assembly ant-shaped toy, comprising:
[0053] Body assembly 2, body assembly 2 includes a body body main body composed of multiple body shaping plates 21 connected by screws, the body body main body is provided with multiple sets and hinged in sequence; multiple assembly slots 213 are opened on the panel of the body shaping plate 21.
[0054] The leg assembly 4 includes a base frame 41, a ball joint 42, and a leg claw 43. The base frame 41 has multiple joint gaps formed on both sides, and one end of it is fixed with an assembly block that can be embedded in the assembly slot 213. The upper end of the ball joint 42 is installed in the joint gap. The leg claw 43 includes a thigh segment 431, a lower leg segment 432, and a hook segment 433 that are sequentially hinged to the lower end of the ball joint 42.
[0055] Head assembly 1, which is detachably connected to the front end of the body body;
[0056] Tail assembly 3, which is detachably connected to the rear end of the main body;
[0057] The back shell is detachably connected to the top surface of the body assembly 2, head assembly 1 and tail assembly 3 to form a contoured structure.
[0058] The back shell is fixed to the top of the toy with bolts. The back shell can be made of different colors such as black, white, yellow, red, and brown to imitate different types of ants.
[0059] To further optimize the above technical solution, the body assembly 2 also includes inserts 22 and body connecting plates 23. The body body has three sets of inserts 22 and body connecting plates 23. The panels of multiple body shaping plates 21 have slots 211. The inserts 22 are inserted into the slots 211. The upper end of the body connecting plate 23 has multiple lower engagement grooves 231. The lower end of the body shaping plate 21 of the body body in the middle has an upper engagement groove 212 corresponding to the lower engagement grooves 231. The two ends of the body connecting plate 23 are respectively hinged to the inserts 22 of the body body at both ends via hinge shafts.
[0060] like Figure 4 and 5 As shown, each body assembly comprises four body shaping plates and two inserts. The four body shaping plates are fastened together by screws. Washers are fitted on the screws between adjacent body shaping plates, ensuring a gap between each pair of plates and improving the aesthetics of the body assembly. The first and third body assemblies are arranged in a mirror image. In the second body assembly, the four body shaping plates interlock with the body connecting plate, and the two inserts abut against the side panels of the body connecting plate and are fastened with bolts. The two inserts on the first and third body assemblies are clamped to the sides of the body connecting plate. Corresponding through holes are provided on both the inserts and the body connecting plate, allowing the three body assemblies to be hinged together using screws and nuts (hinging is achieved by adjusting the screws on the nuts). Leg components are fixed to both sides of each body assembly. The structure is ingenious and highly mobile.
[0061] In this embodiment, the base frame 41 includes an upper base plate 411, a lower base plate 412, and a T-shaped plate 413 arranged in parallel and spaced apart. The upper base plate 411 and the lower base plate 412 are connected by a locking member. The upper base plate 411 has an upper joint limiting hole 4111 on its panel, and the lower base plate 412 has a lower joint limiting hole 4121 corresponding to the upper joint limiting hole 4111 on its panel. The lower joint limiting hole 4121 and the upper joint limiting hole 4111 form a joint gap.
[0062] The T-shaped plate 413 includes a longitudinal plate and a transverse plate. The longitudinal plate is vertically fixed to one end of the upper base plate 411, and the two ends of the transverse plate are respectively embedded in two opposite mounting slots 213 of two adjacent body shaping plates 21.
[0063] like Figure 6 and 7 As shown, a T-shaped plate is used as an assembly block. The two ends of the horizontal plate of the T-shaped plate are inserted into the two opposite assembly slots of the two body shaping plates in the middle of each body body. The connection between the upper base plate and the body shaping plate is achieved by the cooperation of the T-shaped plate and the assembly slots, and the connection is reliable and stable.
[0064] To further optimize the above technical solution, the ball joint 42 includes an upper circular insert 421, a lower circular insert 422, and a shaft 423. The upper circular insert 421 has an upper insertion port 4211 radially opened on its circumferential surface, and the lower circular insert 422 has a lower insertion port 4221 radially opened on its circumferential surface that engages with the upper insertion port 4211. After the upper circular insert 421 and the lower circular insert 422 are interlocked, they are clamped between the corresponding upper joint limiting hole 4111 and the lower joint limiting hole 4121. The shaft 423 passes through the lower joint limiting hole 4121, and its upper end is fixed to the circumferential surface of the lower circular insert 422 away from the lower insertion port 4221.
[0065] The lower circular insert and the shaft are integrated into one structure. The upper and lower circular inserts are inserted into each other and clamped between the upper and lower base plates. The arc surface at the top of the upper circular insert rotates and abuts against the peripheral wall of the upper joint limiting hole; the arc surface at the bottom of the lower circular insert rotates and abuts against the peripheral wall of the lower joint limiting hole, which enables the leg claw to swing back and forth relative to the body component.
[0066] To further optimize the above technical solution, the thigh section 431 includes a thigh main plate 4312 and a thigh secondary plate 4311. The thigh main plate 4312 has thigh arc-shaped hooks arranged vertically and vertically fixed at both ends. The thigh secondary plate 4311 has two pieces, and its face panel abuts against the two side panels of the thigh main plate 4312 respectively. The lower end of the shaft 423 is hinged to the upper end of the two thigh secondary plates 4311. The lower leg section 432 includes a lower leg plate, and the upper end of the lower leg plate is hinged to the lower end of the two thigh secondary plates 4311. The hook claw section 433 includes a claw plate, and the upper end of the claw plate is hinged to the lower end of the lower leg plate through two connecting plates 434.
[0067] The length of the thigh auxiliary plate is greater than the length of the thigh main plate. The panels of the two thigh auxiliary plates abut against the panels of the thigh main plate, and their ends extend beyond the thigh main plate, so that the two thigh auxiliary plates clamp the thigh main plate. The exposed parts of the two thigh auxiliary plates can be inserted into the lower end of the shaft at one end and into the lower leg plate at the other end. The two thigh auxiliary plates are provided with hinge holes corresponding to the shaft and the lower leg plate. The screw passes through the hinge holes and is fastened by the nut. The tightness of the nut can be adjusted to fix or hinge the thigh section and the lower leg section.
[0068] After the upper end of the claw plate is aligned with the lower end of the leg plate, the connecting plate is clamped on both sides of the joint. The connecting plate, the leg plate, and the claw plate have corresponding round holes. The screw passes through the round holes and is tightened by the nut to connect the leg plate and the claw plate. By adjusting the tightness of the nut, the leg plate can be fixed or hinged relative to the claw plate.
[0069] The leg claws provided by this utility model can have a higher degree of freedom and strong mobility through hinge; they can also be fixed in position when performing three-dimensional displays, resulting in a better display effect.
[0070] To further optimize the above technical solution and improve the conformity of the leg claw, a thigh wing plate 44 is also included. Corresponding and communicating limiting grooves 4313 are formed on the panels of the thigh main plate 4312 and thigh secondary plate 4311. The thigh wing plate 44 is inserted into the limiting groove 4313, and limiting posts 441 are bolted to the sides of the thigh wing plate 44 relative to the two thigh secondary plates 4311. After the thigh wing plate is inserted into the limiting groove, the limiting posts are bolted to both sides of the thigh segment, ensuring the stability of the thigh wing plate within the limiting groove and providing a stable and reliable connection.
[0071] In this embodiment, the head assembly 1 includes a head shaping plate 11, a mouthpart shaping plate 12, and an antenna shaping plate 14; a slot 111 is provided on the panel of the head shaping plate 11; one end of the mouthpart shaping plate 12 is attached to the bottom surface of one end of the head shaping plate 11; and the lower end of the antenna shaping plate 14 is engaged in the slot 111.
[0072] like Figure 2 and 3 As shown, the head assembly, through the head shaping plate, mouthpart shaping plate, and antennae shaping plate, can better mimic the shape of an ant's head, making it more realistic.
[0073] To further optimize the above technical solution, a pad 13 is also included, which is bolted to the bottom surface of the head shaping plate 11; a groove 145 is provided at the lower end of the antenna shaping plate 14, and a limiting block 144 is fixed on the periphery of the antenna shaping plate 14 above the groove 145; the lower end of the antenna shaping plate 14 passes through the slot 111 and one end of the pad 13 is embedded in the groove 145; the limiting block 144 abuts against the top surface of the head shaping plate 11 on the periphery of the slot 111.
[0074] like Figure 3 As shown, the antennae shaping plate 14 includes an antennae main plate 141, an antennae sub-plate 142, and an antennae connecting plate 143. The lower end of the antennae main plate 141 and the upper end of the antennae sub-plate 142 are arranged opposite each other. Two antennae connecting plates 143 are provided and are respectively clamped on both sides of the connection between the antennae main plate 141 and the antennae sub-plate 142. Both antennae connecting plates 143 are fastened to the antennae main plate 141 and the antennae sub-plate 142 by bolts. The lower end of the plate 142 is provided with a groove 145. The upper circumferential surface of the antenna subplate 142 relative to the groove 145 is fixed with a limiting block 144. The pad 13 is bolted to the bottom surface of the head shaping plate 11. The lower end of the antenna subplate 142 is inserted into the slot 111 and the groove 145 on it hooks the pad 13. The cooperation of the pad 13 and the limiting block 144 locks the lower end of the antenna subplate 142 into the slot, thereby realizing the installation of the antenna shaping plate 14.
[0075] To further optimize the above technical solution, a head-body connecting plate 15 and a fastening plate 16 are also included; a through groove 112 is provided on the panel of the head shaping plate 11 at the end away from the mouthpiece shaping plate 12; the head-body connecting plate 15 passes through the through groove 112 and is locked to the head shaping plate 11 by two fastening plates 16.
[0076] The head-body connecting plate 15 is arranged perpendicularly to the head shaping plate 11. The head-body connecting plate 15 is inserted into the through groove 112. Square grooves 151 are provided on the panels on both sides of the head shaping plate 11. The fastening plate 161 has an opening on its panel. A locking strip 161 is fixed to the inner wall of the opening. The head-body connecting plate 15 is inserted into the opening and the locking strip 161 is inserted into the square groove 151. The fastening plate 161 abuts against the two side panels of the head shaping plate 11 and is fastened with bolts. The head-body connecting plate 15 is snapped onto the head shaping plate 11 by the fastening plate 16. The lower end of the head-body connecting plate 15 is inserted between the two inserts 22 on the first body body and connected by bolts and nuts. By adjusting the tightness of the nuts, the head assembly can be hinged or fixed relative to the body assembly.
[0077] In this embodiment, the tail assembly 3 includes a tail styling plate 31, a side base plate 33, and a side support plate 34; there are multiple tail styling plates 31 connected by insert plates 32; the side base plate 33 has a mounting cavity on its panel; multiple tail styling plates 31 are embedded in the mounting cavity; there are two side support plates 34, which are respectively bolted to the top two sides of the tail styling plate 31.
[0078] like Figure 8 and 9 As shown, the upper end of the side base plate 33 is an arc-shaped plate, and the lower end is a horizontal plate. The arc-shaped plate and the horizontal plate are connected at one end and disconnected at the other end. Multiple lower mating grooves 331 are provided on the upper side of the horizontal plate. The lower side of the tail shaping plate 31 is provided with a lower notch 312 that is inserted into the lower mating grooves 331. Multiple tail shaping plates 31 are inserted into the multiple lower mating grooves 331 in a corresponding manner.
[0079] In this embodiment, the tail styling plate 31 has eight pieces, and every four tail styling plates 31 are connected by two insert plates 32.
[0080] like Figure 9 and 10As shown, the tail styling plate 31 has a base groove 313 on its panel that connects to the lower notch 312, and the insert plate 32 is inserted into the base groove 313; the side support plate 34 has two pieces that abut against the panels on both sides of the side base plate 33 and are locked with bolts; the lower end of the side support plate 34 has an upper mating groove 341, and the upper end of the tail styling plate 31 has an upper notch 311 that is inserted into the upper mating groove 341; the six tail styling plates 31 in the middle are correspondingly engaged with the side support plates 34, and the engagement of the tail styling plates 31 is achieved through the unique structure of the side support plate 34 and the side base plate 33.
[0081] To further optimize the above technical solution, a cross groove 332 is provided on the arc-shaped plate of the side base plate 33; a corresponding retaining groove 342 is provided on the panel of the side support plate 34, and a connecting nut is embedded in the cross groove 332 and the retaining groove 342, and the tail back shell is installed on the top surface of the tail assembly 3 by means of a screw. Similarly, the upper ends of the two body shaping plates 21 located in the middle are provided with flat grooves for engaging the connecting nut, and the body back shell is installed on the top surface of the body assembly 2 by means of a screw; the head back shell is screwed to the head shaping plate 11 by bolts and fastened together.
[0082] 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 it corresponds to the method disclosed in the embodiments, the description is relatively simple; relevant parts can be referred to in the method section.
[0083] 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 ant-shaped toy, characterized in that, include: Body assembly (2), the body assembly (2) includes a body body body connected by multiple body shaping plates (21) by screws, the body body body body is provided with multiple sets and is hinged in sequence; the panel of the body shaping plate (21) is provided with multiple assembly slots (213). The leg assembly (4) includes a base frame (41), a ball joint (42), and a leg claw (43). The base frame (41) has multiple joint gaps on both sides, and one end of it is fixed with an assembly block that can be embedded in the assembly slot (213). The upper end of the ball joint (42) is installed in the joint gap. The leg claw (43) includes a thigh segment (431), a lower leg segment (432), and a hook segment (433) that are sequentially hinged to the lower end of the ball joint (42). Head assembly (1), which is detachably connected to the front end of the body body; Tail assembly (3), which is detachably connected to the rear end of the body body; A back shell, which is detachably connected to the top surface of the body assembly (2), head assembly (1) and tail assembly (3) to form a contoured structure.
2. The movable metal ant-shaped toy according to claim 1, characterized in that, The base frame (41) includes an upper base plate (411), a lower base plate (412), and a T-shaped plate (413) arranged in parallel and spaced apart. The upper base plate (411) and the lower base plate (412) are connected by a locking member. The upper base plate (411) has an upper joint limiting hole (4111) on its panel, and the lower base plate (412) has a lower joint limiting hole (4121) corresponding to the upper joint limiting hole (4111) on its panel. The lower joint limiting hole (4121) and the upper joint limiting hole (4111) correspond to form the joint gap. The T-shaped plate (413) includes a longitudinal plate and a transverse plate. The longitudinal plate is vertically fixed to one end of the upper base plate (411), and the two ends of the transverse plate are respectively embedded in the two opposite mounting slots (213) of the two adjacent body shaping plates (21).
3. The movable metal assembly ant-shaped toy according to claim 2, characterized in that, The ball joint (42) includes an upper circular insert (421), a lower circular insert (422), and a shaft (423). The upper circular insert (421) has an upper insertion port (4211) radially opened on its circumferential surface, and the lower circular insert (422) has a lower insertion port (4221) radially opened on its circumferential surface that engages with the upper insertion port (4211). The upper circular insert (421) and the lower circular insert (422) are interlocked and clamped between the corresponding upper joint limiting hole (4111) and the lower joint limiting hole (4121). The shaft (423) passes through the lower joint limiting hole (4121), and its upper end is fixed to the circumferential surface of the lower circular insert (422) away from the lower insertion port (4221).
4. A movable metal ant-shaped toy according to claim 3, characterized in that, The thigh segment (431) includes a main thigh plate (4312) and a secondary thigh plate (4311); the main thigh plate (4312) has thigh arc hooks arranged alternately at both ends; the secondary thigh plate (4311) has two plates and its panels abut against the side panels of the main thigh plate (4312); the lower end of the shaft (423) is hinged to the upper ends of the two secondary thigh plates (4311); the lower leg segment (432) includes a lower leg plate, the upper end of which is hinged to the lower ends of the two secondary thigh plates (4311); the claw segment (433) includes a claw plate, the upper end of which is hinged to the lower end of the lower leg plate through two connecting plates (434).
5. A movable metal ant-shaped toy according to claim 4, characterized in that, It also includes a thigh wing plate (44), and corresponding connecting limiting grooves (4313) are provided on the panels of the thigh main plate (4312) and the thigh secondary plate (4311). The thigh wing plate (44) is inserted into the limiting groove (4313), and limiting posts (441) are bolted to the two sides of the thigh secondary plates (4311) relative to the thigh wing plate (44).
6. A movable metal ant-shaped toy according to claim 1, characterized in that, The body assembly (2) also includes inserts (22) and body connecting plates (23). The body body has three sets. The panels of the multiple body shaping plates (21) are provided with slots (211). The inserts (22) are inserted into the slots (211). The upper end of the body connecting plate (23) is provided with multiple lower engagement grooves (231). The lower end of the body shaping plate (21) of the body body located in the middle is provided with an upper engagement groove (212) corresponding to the lower engagement grooves (231). The two ends of the body connecting plate (23) are respectively hinged to the inserts (22) of the body body located at both ends through hinge shafts.
7. A movable metal ant-shaped toy according to claim 1, characterized in that, The head assembly (1) includes a head shaping plate (11), a mouthpart shaping plate (12), and an antenna shaping plate (14); a slot (111) is provided on the panel of the head shaping plate (11); one end of the mouthpart shaping plate (12) is attached to the bottom surface of one end of the head shaping plate (11); the lower end of the antenna shaping plate (14) is attached to the slot (111).
8. A movable metal ant-shaped toy according to claim 7, characterized in that, It also includes a pad (13), which is bolted to the bottom surface of the head shaping plate (11); the lower end of the antenna shaping plate (14) is provided with a groove (145), and a limiting block (144) is fixed on the periphery of the antenna shaping plate (14) above the groove (145); the lower end of the antenna shaping plate (14) passes through the slot (111) and one end of the pad (13) is embedded in the groove (145); the limiting block (144) abuts against the top surface of the head shaping plate (11) relative to the periphery of the slot (111).
9. A movable metal ant-shaped toy according to claim 8, characterized in that, It also includes a head-body connecting plate (15) and a fastening plate (16); a through groove (112) is provided on the panel of the head shaping plate (11) at the end away from the mouthpiece shaping plate (12); the head-body connecting plate (15) passes through the through groove (112) and is locked to the head shaping plate (11) by the two fastening plates (16).
10. A movable metal ant-shaped toy according to claim 1, characterized in that, The tail assembly (3) includes a tail styling plate (31), a side base plate (33), and a side support plate (34); the tail styling plate (31) consists of multiple pieces and is connected by insert plates (32); the side base plate (33) has an installation cavity on its panel; multiple tail styling plates (31) are embedded in the installation cavity; the side support plate (34) consists of two pieces and is respectively bolted to the top two sides of the tail styling plate (31).