Assembled and combined type odd shrimp profiling toy

By using an assembly-type design and a hinged structure, the problem of insufficient realism and fun in Anomalocaris-shaped toys has been solved, achieving high realism and multi-dimensional mobility, and enhancing the technological feel and operational enjoyment of the toys.

CN224056639UActive Publication Date: 2026-03-31STEEL 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
Filing Date
2025-04-14
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing Anomalocaris-shaped toys lack realism and fun, have poor structural mobility and technological appeal, and are unable to meet the diverse needs of the market.

Method used

It adopts a modular design, connecting the head, body, tail, and tail fin body through hinges. It uses a combination of figure-eight holes and cross plates to achieve multi-angle rotation and movement. Combined with controllable colored lights and barbed structure, it enhances the realism and fun.

Benefits of technology

It enhances the realism and fun of Anomalocaris toys, improves their flexibility and range of motion, and enhances their technological feel and the enjoyment of playing with them.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembled and combined type odd shrimp profiling toy which comprises a head body, a body body, a tail body and a tail fin body which are sequentially hinged. The body comprises a base plate, a clamping plate and a dorsal fin plate. The number of the clamping plates is multiple, panels of the multiple clamping plates are arranged perpendicular to the panel of the base plate and connected with the base plate in an inserted mode, and 8-shaped holes are formed in the two sides, opposite to the base plate, of the clamping plates. The back fin plate comprises a plate body and a cross plate hinged to one end of the plate body. The back fin plate is arranged between the two opposite panels of every two clamping plates, and the two limbs of the cross plate are hinged into the two opposite 8-shaped holes of the two clamping plates respectively. According to the utility model, the head body, the body body, the tail body and the tail fin body are assembled in a splicing combination manner, so that the spliced combined type odd shrimp toy with stronger simulation and interestingness is formed, the flexibility of the toy is improved in a hinging manner, the action dimension is higher, and the interestingness is stronger.
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Description

Technical Field

[0001] This utility model relates to the field of toy technology, and more specifically to an assembly-type Anomalocaris-shaped toy. Background Technology

[0002] 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.

[0003] Anomalocaris, known as the "King of the Water," closely resembles a common shrimp in appearance, but it seems to lack a head, giving it a strange and unusual look, hence its name. Anomalocaris was the largest and most ferocious giant carnivore in the ocean more than 500 million years ago, a true "giant" of the sea. The largest Anomalocaris could reach lengths of over 2 meters, while other marine animals at the time were only a few millimeters to centimeters long. Anomalocaris possessed a pair of powerful, multi-segmented, spiny forelimbs for capturing prey, and a pair of large, stalked eyes on the upper front of its head. Below its head, in the center, was a circular mouthpart composed of 32 external labial poles, with a maximum diameter of 25 centimeters, capable of swallowing various giant animals and posing a serious threat even to animals with protective exoskeletons.

[0004] To showcase the appearance and structure of Anomalocaris, some modeling toys have appeared on the market. Existing patent 202120627077.7 discloses a multifunctional educational model of the Anomalocaris family, including a body, head, and tail fin. Several shells are provided on both sides of the body, several tail segments are provided at one end of the tail fin, several main fin plates are provided on the periphery of the shells, and several folding axes are provided inside the body. A central bone is provided between each pair of folding axes, and several supports are provided on the periphery of the folding axes. This invention, by setting multiple supports and folding axes that can rotate and cooperate with each other, simulates the skeleton of Anomalocaris. It allows students to understand the skeletal movement of Anomalocaris during assembly, improving teaching effectiveness and facilitating the dissemination of paleontological knowledge. The use of tension springs allows the shells to bend together, mimicking the curled-up posture of Anomalocaris, further enabling students to recognize the specific characteristics of paleontology. The use of extension blocks and auxiliary axes allows multiple main fin plates to be mounted on the supports, and the blue ocean background simulates the living environment of Anomalocaris.

[0005] The aforementioned patented technology is merely a simple assembly structure, and its realism and fun factor still need improvement. Furthermore, its overall structural mobility and technological feel are lacking. Additionally, if it is simply intended as a toy or decorative item, its functionality is insufficient and it is unlikely to meet the diverse needs of the market.

[0006] Therefore, how to provide an Astronomical and highly engaging Anomalocaris toy is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0007] In view of this, the present invention provides an assembly-type Anomalocaris-shaped toy, which aims to solve the above-mentioned technical problems.

[0008] To achieve the above objectives, the present invention adopts the following technical solution:

[0009] An assembly-type Anomalocaris-shaped toy includes a head body, a body body, a tail body, and a tail fin body that are hinged together in sequence.

[0010] The body body includes a base plate, clamping plates, and a dorsal fin plate; there are multiple clamping plates, the panels of which are arranged perpendicular to the panel of the base plate and interlocked with the base plate, and the clamping plates have figure-eight shaped holes on both sides opposite to the base plate; the dorsal fin plate includes a plate body and a cross plate hinged to one end of the plate body; the dorsal fin plate is placed between the two opposite panels of every two clamping plates, and the two limbs of the cross plate are respectively hinged in the two opposite figure-eight shaped holes of the two clamping plates.

[0011] The beneficial effects of this utility model are that, through the hinge, the head, body, tail and tail fin of Anomalocaris can be rotated at multiple angles, and the overall structure has strong mobility; the dorsal fin can move back and forth through the plate and the cross plate, and the two limbs of the cross plate are hinged in the figure-eight hole and can move up and down. The figure-eight hole can limit the opening and closing angle of the dorsal fin's up and down movement, making it more interesting.

[0012] Preferably, the substrate is a T-shaped plate, which has a longitudinal plate and a transverse plate. A slot is formed on the face of the clamping plate, and the transverse plate is inserted into the slot. Every two clamping plates and two dorsal fin plates form a dorsal fin unit. Multiple sets of dorsal fin units are provided, and a spacer is provided between adjacent sets of dorsal fin units. The multiple sets of dorsal fin units are separated by the spacers, which does not affect the installation and forward / backward movement of the dorsal fin.

[0013] Preferably, it also includes a mounting base and a back shell. The mounting base is bolted between the two clamping plates of the dorsal fin unit located in the middle. A nut is snapped into the top of the mounting base. The back shell is fastened to the top surface of the plurality of dorsal fin units and secured to the nut by a screw. By using the mounting base to snap into the nut and the back shell to be secured to the nut by the screw, the installation of the back shell is completed. The structure is ingenious and has a higher degree of conformity.

[0014] Preferably, the head body comprises a head body formed by connecting multiple assembled pieces with bolts. The front end of the head body is detachably connected to forelimbs and controllable colored lights; the rear end of the head body is hinged to the longitudinal plate by screws. The forelimbs are designed to enhance the realism, technological sophistication, and fun of the Anomalocaris toy.

[0015] Preferably, the head body includes a main assembly piece, a first sub-assembly piece, a second sub-assembly piece, and a third sub-assembly piece. Each of the first, second, and third sub-assembly pieces has two parts, which are sequentially bolted to both sides of the main assembly piece. One end of the forelimb is bolted between the first and second sub-assembly pieces. The structure is simple and easy to assemble.

[0016] Preferably, the anterior appendage includes an arc-shaped primary appendage plate and a secondary appendage plate, with two secondary appendage plates attached to both sides of the primary appendage plate; the inner arc surfaces of the two secondary appendage plates are fixed with multiple barbs. The barb structure can improve the shape-contrasting effect of the Anomalocaris toy.

[0017] Preferably, the tail body includes a support body, a fastening plate, and a fan tail; there are multiple support bodies, and the multiple support bodies are connected through the fastening plate; the fan tail is snapped onto the fastening plate.

[0018] Preferably, the caudal fin body includes a first caudal fin plate, a second caudal fin plate, and a third caudal fin plate, which are sequentially fastened together by bolts.

[0019] Preferably, it further includes an upper connecting plate, a lower connecting plate, and a tail tip. The lower connecting plate is bolted to the first tail fin, and the panel of the lower connecting plate has a joint gap. One end of the tail tip is a ball joint, and the other end is a pointed tip. The ball joint is rotatably connected within the joint gap. The upper connecting plate is bolted to the lower connecting plate.

[0020] Preferably, the body body is provided in two sets, and the two sets of body bodies are hinged together by screws.

[0021] As can be seen from the above technical solution, compared with the prior art, this utility model discloses a modular Anomalocaris toy, which uses a modular assembly method to assemble the head body, body body, tail body and tail fin body to form a modular Anomalocaris toy with stronger simulation and fun. The hinge method improves the flexibility of the toy, with higher movement dimensions and stronger fun. Attached Figure Description

[0022] 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.

[0023] Figure 1 A schematic diagram of the Anomalocaris structure provided by this utility model;

[0024] Figure 2 A schematic diagram of the structure of Anomalocaris after removing its shell, as provided in this utility model;

[0025] Figure 3 This is an exploded view of the head body provided by the present invention;

[0026] Figure 4 A schematic diagram of the body structure provided for this utility model;

[0027] Figure 5 This is an exploded view of the body body provided by this utility model;

[0028] Figure 6 This is an exploded view of the tail section of the present invention.

[0029] Figure 7 A schematic diagram of the tail fin body structure is provided for this utility model.

[0030] in,

[0031] 10-Head body;

[0032] 101-Head body; 1011-Main assembly piece; 1012-First assembly piece; 1013-Second assembly piece; 1014-Third assembly piece; 1015-Dumbbell-shaped pad;

[0033] 102-Anterior appendage; 1021-Major limb plate; 1022-Accessory limb plate;

[0034] 103 - Controllable colored lights;

[0035] 20 - Body Main Body;

[0036] 201-Back shell; 202-Base plate; 203-Clamping plate; 204-Dorsal fin plate; 2041-Plate body; 2042-Cross plate; 2043-Fishbone plate; 205-Figure-8 hole; 206-Fixing base; 207-Padded block; 208-Nut;

[0037] 30 - Tail section;

[0038] 301 - Support body; 302 - First fastening plate; 303 - Second fastening plate; 304 - Fan tail;

[0039] 40 - Main body of the caudal fin;

[0040] 401 - Third caudal fin; 402 - Second caudal fin; 403 - First caudal fin; 404 - Lower connecting plate; 405 - Middle connecting plate; 406 - Upper connecting plate; 407 - Tail tip. Detailed Implementation

[0041] 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.

[0042] like Figure 1 and 2 As shown in the figure, this utility model embodiment discloses an assembled Anomalocaris-shaped toy, which includes a head body 10, a body body 20, a tail body 30 and a tail fin body 40 that are hinged together in sequence.

[0043] The body body 20 includes a base plate 202, clamping plates 203, and a dorsal fin plate 204. There are multiple clamping plates 203, and the panels of the multiple clamping plates 203 are arranged perpendicular to the panels of the base plate 202 and are interlocked with the base plate 202. The clamping plates 203 have figure-eight holes 205 on both sides opposite to the base plate 202. The dorsal fin plate 204 includes a plate body 2041 and a cross plate 2042 hinged to one end of the plate body 2041. The dorsal fin plate 204 is placed between the two opposite panels of every two clamping plates 203, and the two limbs of the cross plate 2042 are respectively hinged in the two opposite figure-eight holes 205 of the two clamping plates 203.

[0044] The dorsal fin plate is hinged to the cross plate by a screw. The two limbs of the cross plate are hinged in the figure-eight hole. The plate can move back and forth around the cross plate, and the plate can move up and down relative to the clamp plate through the cross plate. This gives the dorsal fin plate a multi-dimensional way of movement. The unique structure of the figure-eight hole limits the amount of displacement of the dorsal fin plate, which can simulate the underwater movement of Anomalocaris, making it more imitative and interesting.

[0045] To further optimize the above technical solution, the substrate 202 is a T-shaped plate with a longitudinal plate and a transverse plate. The panel of the clamping plate 203 has a slot, and the transverse plate is inserted into the slot. Every two clamping plates 203 and two dorsal fin plates 204 form a dorsal fin unit. There are multiple sets of dorsal fin units, and a pad 207 is provided between two adjacent sets of dorsal fin units.

[0046] like Figure 4 and 5 As shown, the two clamping plates are fastened together by bolts; the two limbs of the cross plate in the two dorsal fin plates are respectively hinged in the two figure-eight holes opposite to the two clamping plates. The two clamping plates and the two dorsal fin plates form a dorsal fin unit. The horizontal plate of the base plate is inserted into the slot on the clamping plate; each set of dorsal fin units is separated by a pad to prevent relative movement between the dorsal fin units.

[0047] To further optimize the above technical solution and prevent relative displacement between the two clamping plates, washers are fitted on the bolt shanks between the two clamping plates.

[0048] In some other specific embodiments, a mounting base 206 and a back shell 201 are also included. The mounting base 206 is bolted between two clamping plates 203 of the dorsal fin unit located in the middle. A nut 208 is snapped onto the top of the mounting base 206. The back shell 201 is fastened to the top surface of the multiple dorsal fin units and is secured to the nut 208 by a screw.

[0049] See appendix Figure 5 The mounting base is snapped onto the upper end of the horizontal plate, and the two sides of the mounting base are fastened to the two clamping plates in the dorsal fin unit with bolts. The top of the mounting base has a slot to hold the nut. The back shell is fastened to the top surface of multiple dorsal fin units, and the screw can pass through the back shell and be fastened to the nut to complete the installation of the back shell. The mounting base in the middle dorsal fin unit can replace the washer to prevent relative movement between the two clamping plates.

[0050] In some other specific embodiments, the body body 20 is provided in two sets, and the two sets of body bodies 20 are hinged together by screws.

[0051] like Figure 4 and 5 As shown, the body body is provided in two sets. In the first set of body bodies, there are two base plates. The two base plates are arranged in parallel and spaced apart. The pad is composed of multiple I-shaped plates. The web plate of the I-shaped plate is attached to the cross plate. That is, the base plate is inserted between the upper and lower flange plates of the I-shaped plate to achieve the snap-fit ​​of the pad. In the other two sets of dorsal fin units, the two opposite clamping plates are pressed and engaged with the pad to fix the I-shaped pad.

[0052] In the second body body, a base plate is provided, and the pad is a rectangular pad with a through groove in the middle. The horizontal plate is inserted into the through groove and pressed by two opposing clamping plates in the two sets of dorsal fin units.

[0053] In this embodiment, each body body is provided with three sets of dorsal fin units. The two clamping plates of the middle dorsal fin unit are connected to the fixing seat by bolts. In the first body body, the horizontal plates of the two base plates clamp the vertical plates of the base plates in the second body body and are connected by screws. The two body bodies can rotate relative to the screws, which improves the fun of assembling and playing with Anomalocaris toys.

[0054] In other specific embodiments, the contouring effect of the dorsal fin plate is improved by screwing fishbone plates 2043 onto both sides of the plate 2041, ensuring the aesthetic appeal of the toy.

[0055] In this embodiment, the head body 10 includes a head body 101 formed by connecting multiple assembled pieces with bolts. The front end of the head body 101 is detachably connected to a front appendage 102 and a controllable colored light 103. The rear end of the head body 101 is hinged to the longitudinal plate by a screw.

[0056] The controllable colored light has a screw-on contact structure and contains a button battery. The screw-on contact structure allows for convenient electrical connection control. The structure is simple and reliable, and its principle is the same as that of a traditional flashlight. When the screw is loose, poor contact will prevent the light from lighting up, and when it is tightened, good contact will ensure the light is on. The principle will not be elaborated here.

[0057] To further optimize the above technical solution, the head body 101 includes a main assembly piece 1011, a first auxiliary assembly piece 1012, a second auxiliary assembly piece 1013, and a third auxiliary assembly piece 1014. The first auxiliary assembly piece 1012, the second auxiliary assembly piece 1013, and the third auxiliary assembly piece 1014 are each provided in pairs and are respectively bolted to both sides of the main assembly piece 1011. One end of the forelimb 102 is bolted between the first auxiliary assembly piece 1012 and the second auxiliary assembly piece 1013.

[0058] like Figure 2 As shown, the main assembly piece 1011, the first auxiliary assembly piece 1012, the second auxiliary assembly piece 1013, and the third auxiliary assembly piece 1014 are fastened together by bolts. A dumbbell-shaped gasket is provided between the main assembly piece 1011 and the first auxiliary assembly piece 1012. One end of the front auxiliary limb 102 is bolted between the first auxiliary assembly piece 1012 and the second auxiliary assembly piece 1013. The second auxiliary assembly piece 1013 and the third auxiliary assembly piece 1014 are arranged in close contact.

[0059] In some other specific embodiments, the lower ends of the main assembly piece 1011 and the first sub-assembly piece 1012 are provided with circular grooves that penetrate through their lower end faces, forming the lips of Anomalocaris after being assembled.

[0060] In some other specific embodiments, a spring is fixed to the controllable colored light. A slot is opened on the first assembly piece, and one end of the spring is engaged in the slot. A through hole is opened on the second assembly piece for the spring to pass through, and a through groove is opened on the third assembly piece for the spring to pass through. The spring is fixed by the first assembly piece, so that the controllable colored light has elastic contact, which enhances the sense of technology and fun.

[0061] To further optimize the above technical solution, the forelimb 102 includes an arc-shaped main limb plate 1021 and a secondary limb plate 1022. There are two secondary limb plates 1022, which are bolted to both sides of the main limb plate 1021. Multiple barbs are fixed on the inner arc surface of the two secondary limb plates 1022.

[0062] The forelimb is formed by bolting together the main limb plate and the auxiliary limb plate. One end of the forelimb is bolted between the first and second assembly pieces. The curved plate and barbs enhance its conformation ability.

[0063] To further optimize the above technical solution, the tail body 30 includes a support body 301, a fastening plate, and a fan tail 304; there are multiple support bodies 301, and the multiple support bodies 301 are connected through the fastening plate; the fan tail 304 is snapped onto the fastening plate.

[0064] like Figure 6 As shown, the support body 301 has slots at both ends and a locking block fixed to its side wall. The structural dimensions of the support body 301 are arranged in descending order. The fastening plate includes a first fastening plate 302 and a second fastening plate 303. The panel of the first fastening plate 302 has multiple slots that fit the locking block. There are two first fastening plates 302, which are located on both sides of multiple support bodies 301 respectively. Multiple support bodies 301 are connected by two first fastening plates 302. The second fastening plate 303 is arranged to fit against the first fastening plate 301, and the fan tail 304 is engaged with the slot in the middle of the second fastening plate 303. The two first fastening plates 302 are fastened together by bolts, and the two second fastening plates 303 and the two first fastening plates 302 are fastened together by bolts.

[0065] In this embodiment, multiple supports 301 are connected by a first fastening plate 302, and the fan tail 304 is snapped into place by a second fastening plate 303. The structure is ingenious and enhances the enjoyment of assembly.

[0066] To further optimize the above technical solution, the caudal fin body 40 includes a first caudal fin plate 403, a second caudal fin plate 402 and a third caudal fin plate 401, which are sequentially fastened by bolts.

[0067] It also includes an upper connecting plate 406, a lower connecting plate 404, and a tail tip 407. The lower connecting plate 404 is bolted to the first tail fin 403, and the panel of the lower connecting plate 404 has a joint gap. One end of the tail tip 407 is a ball joint, and the other end is a pointed tip. The ball joint is rotatably connected in the joint gap. The upper connecting plate 406 is bolted to the lower connecting plate 404.

[0068] like Figure 7As shown, the first caudal fin 403, the second caudal fin 402, and the third caudal fin 401 abut against each other and are fastened together with bolts to form the caudal fin portion of Anomalocaris. The lower connecting plate 404 abuts against the first caudal fin 403. The first caudal fin 403 and the second caudal fin 402 are provided with slots. One end of the middle connecting plate 405 is fixed with a protrusion embedded in the slot. The other end of the middle connecting plate 405 can be bolted to the horizontal plate of the base plate 202. The upper connecting plate 406 abuts against the lower connecting plate 404. The upper connecting plate 406, the lower connecting plate 404, the first caudal fin 403, the second caudal fin 402, and the first caudal fin 401 are sequentially connected and fastened together with bolts.

[0069] 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.

[0070] 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 puzzle combination octopus imitation shape toy, characterized in that, The head body (10), the body body (20), the tail body (30) and the tail fin body (40) are sequentially hinged; The body body (20) comprises a base plate (202), a plurality of clamping plates (203) and a dorsal fin plate (204); the clamping plates (203) are arranged perpendicularly to the base plate (202) and are mutually inserted with the base plate (202); the clamping plates (203) are provided with 8-shaped holes (205) on both sides of the base plate (202); the dorsal fin plate (204) comprises a plate body (2041) and a cross plate (2042) hinged to one end of the plate body (2041); the dorsal fin plate (204) is arranged between the opposite panels of every two clamping plates (203), and the two limbs of the cross plate (2042) are respectively hinged in the two 8-shaped holes (205) of the two clamping plates (203).

2. The assembled combination odd-shaped shrimp figurine toy according to claim 1, characterized in that, The base plate (202) is a T-shaped plate having a longitudinal plate and a transverse plate; the clamping plate (203) is provided with a clamping groove, and the transverse plate is inserted into the clamping groove; every two clamping plates (203) and two dorsal fin plates (204) form a dorsal fin unit, and a plurality of groups of the dorsal fin units are arranged, and a spacer (207) is arranged between adjacent two groups of the dorsal fin units.

3. The snap-together octopus figurine toy of claim 2, wherein: Further comprising a fixing seat (206) and a back shell (201); the fixing seat (206) is bolted between the two clamping plates (203) of the dorsal fin unit in the middle part; the top of the fixing seat (206) is clamped with a nut (208); and the back shell (201) is buckled on the top surface of the plurality of dorsal fin units and is fastened with the nut (208) through a screw rod.

4. The assembled combination toy of claim 2, wherein, The head body (10) comprises a plurality of assembly pieces combined to form a head main body (101); the front end of the head main body (101) is detachably connected with a front appendage (102) and a controllable color lamp (103); and the rear end of the head main body (101) is hinged with the longitudinal plate through a screw rod.

5. The snap-together octopus figurine toy of claim 4, wherein, The head main body (101) comprises a main assembly piece (1011), a first auxiliary assembly piece (1012), a second auxiliary assembly piece (1013) and a third auxiliary assembly piece (1014); the first auxiliary assembly piece (1012), the second auxiliary assembly piece (1013) and the third auxiliary assembly piece (1014) are each provided with two pieces and are sequentially bolted on both sides of the main assembly piece (1011); and one end of the front appendage (102) is bolted between the first auxiliary assembly piece (1012) and the second auxiliary assembly piece (1013).

6. The snap-together octopus figurine toy of claim 5, wherein, The front appendage (102) comprises an arc-shaped main limb plate (1021) and an auxiliary limb plate (1022); the auxiliary limb plate (1022) is provided with two pieces and is bolted on both sides of the main limb plate (1021); and a plurality of barbs are fixed on the inner arc surface of the auxiliary limb plate (1022).

7. The assembled combination toy of claim 1, wherein, The tail body (30) comprises a support body (301), a fastening plate and a fan tail (304); the support body (301) is in plurality, and the plurality of support bodies (301) are connected through the fastening plate; the fan tail (304) is clamped on the fastening plate.

8. The puzzle combination toy of claim 1, wherein the toy is a toy shrimp. The tail fin body (40) comprises a first tail fin piece (403), a second tail fin piece (402) and a third tail fin piece (401), and the first tail fin piece (403), the second tail fin piece (402) and the third tail fin piece (401) are sequentially fastened by bolts.

9. The snap-together octopus figurine toy of claim 8, wherein, Further comprising an upper connecting plate (406), a lower connecting plate (404) and a tail tip (407), the lower connecting plate (404) is bolted on the first tail fin piece (403), and a panel of the lower connecting plate (404) is provided with a joint gap; one end of the tail tip (407) is a spherical hinge, and the other end is a pointed end, and the spherical hinge is rotationally connected in the joint gap; the upper connecting plate (406) is bolted on the lower connecting plate (404).

10. The assembled combination toy of claim 1, wherein, The body body (20) is provided in two groups, and the two groups of body bodies (20) are hingedly connected through a screw rod.

Citation Information

Patent Citations

  • Multifunctional intelligence development model for kirilow shrimp family

    CN214475933U