Odd shrimp toy ornament

By designing an Assemblable Anomalocaris toy figurine and utilizing a drive mechanism and controllable colored lights, the problem of insufficient realism and fun in existing Anomalocaris toys has been solved. This allows for multi-angle display and high realism, enhancing the toy's technological feel and fun.

CN224207367UActive Publication Date: 2026-05-08STEEL 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
2025-04-14
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing Anomalocaris toys lack realism, fun, and technological appeal, and their structure has poor mobility, making it difficult to meet the diverse needs of the market.

Method used

An Anomalocaris toy figurine was designed, including a base and the Anomalocaris. The base consists of a shell, a drive mechanism, and a support mechanism. The Anomalocaris consists of a head, a body, a tail, and a tail fin. The drive mechanism is connected by gear meshing and detachable support plates, allowing for multi-angle display of the Anomalocaris. Combined with controllable colored lights and an assembly structure, the figurativeness and fun are enhanced.

Benefits of technology

This allows for a multi-angle, all-around display of Anomalocaris toys, enhancing their fun and realism, and improving hands-on skills and technological appeal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an odd shrimp toy ornament. The odd shrimp toy ornament comprises a base and an odd shrimp, the base comprises a shell, a driving mechanism and a bearing mechanism; the two driving mechanisms are rotationally connected to one side wall and the top wall of the shell correspondingly, and gears of the two driving mechanisms are in meshing transmission. The lower end of the bearing mechanism is detachably connected to a rotating shaft of the driving mechanism located on the top wall of the shell, and a supporting piece is fixed to the upper end of the bearing mechanism. The odd shrimp comprises a head body, a body body, a tail body and a tail fin body which are hinged in sequence; and the abdomen of the body is clamped on the supporting sheet. According to the utility model, the rotatable base is used for bearing the odd shrimps, so that the postures of the odd shrimps can be displayed in an omnibearing and multi-angle manner, and the mobility and the interestingness are stronger.
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Description

Technical Field

[0001] This utility model relates to the field of toy technology, and more specifically to an Anomalocaris toy ornament. 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 that time were only a few millimeters to a few centimeters in size. Anomalocaris possessed a pair of powerful, multi-segmented, spiny forelimbs for capturing prey, and a pair of stalked, giant 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 Anomalocaris toy with greater realism, fun, mobility, and technological sophistication 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 Anomalocaris toy ornament, 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 Anomalocaris toy figurine, comprising a base and the Anomalocaris;

[0010] The base includes a housing, a drive mechanism, and a support mechanism; the drive mechanism has two sets and is rotatably connected to one side wall and the top wall of the housing, respectively, and the gears of the two sets of drive mechanisms mesh with each other for transmission; the lower end of the support mechanism is detachably connected to the rotating shaft of the drive mechanism located on the top wall of the housing, and the upper end is fixed with a support plate;

[0011] The Anomalocaris comprises a head body, a body body, a tail body, and a tail fin body that are hinged together in sequence; the abdomen of the body body is snapped onto the support plate.

[0012] The beneficial effect of this utility model is that the Anomalocaris is attached to the support mechanism by the support plate, and the two sets of drive mechanisms are driven by gear meshing. The drive mechanism can drive the Anomalocaris to rotate, which can display the posture of the Anomalocaris from multiple angles and all directions, making it more interesting.

[0013] Preferably, the body body includes a fixing plate, a dorsal fin body, and a pad. Multiple sets of dorsal fin bodies are provided, each set including two opposing clamping plates and a dorsal fin plate. A through groove is formed on the clamping plate. The faceplate of the fixing plate is perpendicular to the faceplate of the clamping plate and passes through the through groove. Figure-eight holes are formed on both sides of the two clamping plates opposite to the fixing plate. One end of the dorsal fin plate is located between the two clamping plates and rotatably connected within the figure-eight hole. The pad is clamped between two opposing clamping plates in two adjacent sets of dorsal fin bodies. The support plate is snapped into the bottom between two adjacent clamping plates. The dorsal fin plate is hinged within the figure-eight hole, which restricts the rotation angle of the dorsal fin plate relative to the clamping plate. Multiple dorsal fin units are separated by the pad, enhancing the realism and fun of the Anomalocaris.

[0014] Preferably, the head body comprises a head body consisting of several splicing plates connected by bolts, with a forelimb detachably connected to the front end of the head body; a flexible, controllable colored light is provided at the top of the head body, and the rear end of the head body is hinged to one end of the fixing strip by a screw. The forelimb simulates the predatory limbs of Anomalocaris, and the controllable colored light simulates the eyes of Anomalocaris, enhancing the sense of technology.

[0015] Preferably, the tail body includes a plurality of support bodies, a first fastening plate, a fan-tail plate, and a second fastening plate; the plurality of support bodies are arranged in descending order of size, and the first fastening plate passes through the plurality of support bodies; the fan-tail plate is snapped into the middle of the plurality of support bodies; the second fastening plate is sleeved on the fan-tail plate and fastened to the first fastening plate by bolts; the first fastening plate and the second fastening plate are hinged to the end of the fixing strip away from the head body by screws.

[0016] Preferably, the caudal fin body comprises a caudal fin body formed by bolting several caudal fin plates together in sequence. One end of the caudal fin body is hinged to the end of the first fastening plate and the second fastening plate away from the fixing strip, and the other end is rotatably connected to a tail tip.

[0017] Preferably, the housing is a square housing formed by interlocking and fixing six panels together.

[0018] The beneficial effect of the above technical solution is that the Anomalocaris ornament can improve children's hands-on ability through its assembleability, and the assembleability ensures the fun of the Anomalocaris ornament.

[0019] Preferably, the drive mechanism includes a bearing and a support plate; the bearing is embedded in the middle of the top wall or side wall of the housing; the support plate is snapped into the inner ring of the bearing and one end of it extends into the housing; the gear is fixed to the end of the support plate that extends into the housing; the axes of the gears of the two sets of drive mechanisms are perpendicular. The gears of the two sets of mechanisms are arranged perpendicularly to each other, and the teeth and grooves of the two gears mesh with each other, enabling the two sets of drive mechanisms to be connected and transmitted to each other. The support plate is used as a drive shaft, which is a reasonable design and ingenious structure.

[0020] Preferably, multiple pads are snapped onto the end of the support plate away from the shell, and the panels of the multiple pads are arranged parallel to the top wall or side wall of the shell; the multiple pads are bolted together in sequence. The multiple pads improve the aesthetics of the Anomalocaris ornament.

[0021] Preferably, the support mechanism includes a support plate and a support frame. The lower end of the support plate is bolted to the end of the support plate located on the top wall of the shell, away from the gear. The support frame is screwed to the upper end of the support plate, and the support plate is fixed to the top surface of the support frame. The support frame can support Anomalocaris, the support plate is fixed to the support plate, and the rotation of the support plate can drive the Anomalocaris to rotate synchronously.

[0022] Preferably, a dorsal shell is screwed onto the back of the body. This improves the Anomalocaris figurine's ability to mimic its shape.

[0023] As can be seen from the above technical solution, compared with the prior art, the present invention discloses an Anomalocaris toy ornament, which supports Anomalocaris on a rotatable base, and can display Anomalocaris's posture from all directions and multiple angles, making it more active and fun. Attached Figure Description

[0024] 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.

[0025] Figure 1 A schematic diagram of the Anomalocaris toy ornament provided by this utility model;

[0026] Figure 2 A schematic diagram of the base structure provided by this utility model;

[0027] Figure 3 A schematic diagram of the drive mechanism structure provided by this utility model;

[0028] Figure 4 This is a schematic diagram of the support plate and bearing plate structure provided for this invention;

[0029] Figure 5 This is an exploded view of the top wall of the shell provided by this utility model;

[0030] Figure 6 An exploded view of the support mechanism provided by this utility model;

[0031] Figure 7 A schematic diagram of the Anomalocaris structure provided by this utility model;

[0032] Figure 8 This is an exploded view of the head body provided by the present invention;

[0033] Figure 9 A schematic diagram of the body structure provided by this utility model;

[0034] Figure 10 This is an exploded view of the dorsal fin body provided by the present invention;

[0035] Figure 11 This is an exploded view of the tail section of the present invention.

[0036] Figure 12 This is an exploded view of the caudal fin body provided by this utility model.

[0037] in,

[0038] 1-Base;

[0039] 11-Shell;

[0040] 12-Drive mechanism;

[0041] 121-First pad; 122-Second pad; 123-Fastening plate; 124-Washer; 125-Bearing; 126-Gear; 127-Support plate; 128-Rock arm; 129-Limiting plate;

[0042] 13-The supporting institution;

[0043] 131-Support plate; 132-First support plate; 133-Second support plate; 134-Support piece; 135-Third support plate; 136-U-shaped groove;

[0044] 14-Fixing plate;

[0045] 15- Circular guard plate;

[0046] 2-Anomalocaris;

[0047] 21-Head Body

[0048] 211-Head body; 2111-Main splicing plate; 2112-First secondary splicing plate; 2113-Second secondary splicing plate; 2114-Third secondary splicing plate; 2115-Dumbbell-shaped pad; 212-Forelimbs; 2121-Main limb plate; 2122-Secondary limb plate; 213-Controllable colored lights;

[0049] 22-Body body;

[0050] 221-Back shell; 222-Fixing strip; 223-Clamping plate; 224-Dorsal fin plate; 2241-Plate body; 2242-Cross plate; 2243-Fishbone plate; 225-Figure-8 hole; 226-Fixing base; 227-Padded block; 228-Nut;

[0051] 23-Tail section;

[0052] 231-Support body; 232-First fastening plate; 233-Second fastening plate; 234-Fan tail plate;

[0053] 24-Caudal fin body;

[0054] 241-First caudal fin plate; 242-Second caudal fin plate; 243-Third caudal fin plate; 244-Lower connecting plate; 245-Upper connecting plate; 246-Tail tip; 247-Auxiliary connecting plate. Detailed Implementation

[0055] 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.

[0056] This utility model embodiment discloses an Anomalocaris toy ornament, including a base 1 and an Anomalocaris 2;

[0057] The base 1 includes a housing 11, a drive mechanism 12, and a support mechanism 13. The drive mechanism 12 is provided in two sets and is rotatably connected to one side wall and the top wall of the housing 11, respectively. The gears 126 of the two sets of drive mechanisms 12 mesh with each other for transmission. The lower end of the support mechanism 13 is detachably connected to the rotating shaft of the drive mechanism 12 located on the top wall of the housing 11, and the upper end is fixed with a support plate 134.

[0058] Anomalocaris 2 includes a head body 21, a body body 22, a tail body 23 and a tail fin body 24 that are hinged together in sequence; the abdomen of the body body 22 is attached to the support plate 134.

[0059] like Figure 1 As shown, two sets of drive mechanisms are arranged perpendicularly to each other and are connected by gear transmission. The abdomen of Anomalocaris is clamped onto the support plate of the base. The rotation of the two sets of drive mechanisms can realize the rotation of Anomalocaris. The clamping method can adjust the placement posture of Anomalocaris from multiple angles, and can display the posture of Anomalocaris from multiple angles and all directions, which is full of fun and activity.

[0060] To further optimize the above technical solution, the body body 22 includes a fixing plate 222, a dorsal fin body, and a pad 227. The dorsal fin body is provided in multiple sets, and each set of dorsal fin bodies includes two opposing clamping plates 223 and a dorsal fin plate 224. The clamping plates 223 have through slots. The panel of the fixing plate 222 is arranged perpendicular to the panel of the clamping plate 223 and passes through the through slots. The two clamping plates 223 have figure-eight holes 225 on both sides opposite to the fixing plate 222. One end of the dorsal fin plate 224 is located between the two clamping plates 223 and is rotatably connected in the figure-eight hole 225. The pad 227 is clamped between two opposing clamping plates 223 in two adjacent sets of dorsal fin bodies. The support plate 134 is snapped into the bottom between two adjacent clamping plates 223.

[0061] like Figure 9 and 10As shown, the clamps are arranged in pairs, with the fixing plate being a T-shaped plate having a vertical plate and a horizontal plate. The horizontal plate passes through the through slot of the clamp. The two clamps are fastened together by screws. To ensure that the two clamps do not move relative to each other, a dot ring is fitted on the screw fixing the clamp, creating a certain gap between the two clamps. This ensures that the installation and rotation of the dorsal fin plates between multiple dorsal fin bodies are not affected. The figure-eight holes on the clamps can limit the rotation angle of the dorsal fin plates, and the rotation angle can simulate the underwater movement posture of Anomalocaris with a high degree of simulation.

[0062] To further optimize the above technical solution, the dorsal fin plate 224 includes a plate body 2241, a cross plate 2242, and a fishbone plate 2243. The plate body 2241 is willow-leaf shaped, and one end of the cross plate 2242 is hinged to the wider end of the plate body 2241. A copper screw serves as the hinge axis between the cross plate 2242 and the plate body 2241, and the two limbs of the cross plate 2242 are hinged in the figure-eight holes 225. The fishbone plate 2243 is bolted to the two side panels of the plate body 2241. The plate body can move up and down via the cross plate, and the main body can move back and forth around the hinge axis. The hinged connection ensures multi-dimensional movement of the plate body, improving the activity and fun of Anomalocaris. The fishbone plate enhances the realism of Anomalocaris.

[0063] In other specific embodiments, to enhance the Anomalocaris's ability to mimic shapes, a dorsal shell 221 is screwed onto the back of the body body 22.

[0064] Each fixed plate 222 is provided with no less than three sets of dorsal fin bodies. Adjacent sets of dorsal fin bodies are separated by a pad 227. A fixing seat 226 is bolted between the two clamping plates 223 of the middle dorsal fin body. The top surface of the fixing seat 226 is provided with a slot. A nut 228 is engaged in the slot. The back shell 221 is fastened to the back of the body body 22. The installation of the back shell 221 is completed by screwing the screw and the nut 228 together.

[0065] In other specific embodiments, the body body is provided in two sets, and the fixing plates between the two sets of body bodies are hinged together end to end. For example... Figure 9 The first body body has two fixing plates, which are parallel to each other, and a clamping plate passes through the two fixing plates. The pad has an I-shaped cross section, and the two fixing plates pass through the openings on both sides of the pad. The two ends of the fixing plates are locked with bolts to lock the multiple sets of dorsal fin bodies and the pad, preventing the multiple sets of dorsal fin bodies from moving relative to each other. The second body body has one fixing plate, and the pad is a rectangular block with a slot for the fixing plate to pass through. The other fixing methods are the same as the first group. The end of the fixing plate of the second body body can be inserted into the gap between the two fixing plates of the first body body and hinged with bolts. The two body bodies can form a flexible movable body by hinge, which improves the toy's shape-contrasting effect.

[0066] In this embodiment, the head body 21 includes a head body 211 connected by bolts to a plurality of splicing plates. The front end of the head body 211 is detachably connected to a front appendage 212. The top end of the head body 211 is provided with a flexible and controllable colored light 213. The rear end of the head body 211 is hinged to one end of a fixing strip 222 by a screw.

[0067] like Figure 8 As shown, the head body 211 includes a main splicing plate 2111, a first secondary splicing plate 2112, a second secondary splicing plate 2113, and a third secondary splicing plate 2114; the first secondary splicing plate 2112, the second secondary splicing plate 2113, and the third secondary splicing plate 2114 are each in pairs and are symmetrically arranged on both sides of the main splicing plate 2111. The main splicing plate 2111, the first secondary splicing plate 2112, the second secondary splicing plate 2113, and the third secondary splicing plate 2114 are fastened together with bolts to form the head body 211.

[0068] The first splicing plate 2112 has a slot, the second splicing plate 2113 has a through hole corresponding to the slot, and the third splicing plate 2114 has a slot with a hanging plate inside the slot. The outer wall of the controllable colored light 213 is fixed with a spring, one end of which is hooked onto the hanging plate. At the same time, the spring passes through the through hole and the slot, which makes the controllable colored light 213 more flexible and more interesting.

[0069] In some other specific embodiments, the lower ends of the main assembly plate 2111 and the first sub-assembly plate 2112 are provided with circular grooves that penetrate through their lower end surfaces, forming the lips of Anomalocaris after being assembled.

[0070] To further optimize the above technical solution, the controllable colored light features a screw-on contact structure with an internal button battery. This screw-on contact structure allows for convenient electrical connection control, is simple and reliable, and operates on the same principle as a traditional flashlight: when loosened, poor contact results in no light; when tightened, good contact results in light. The exact principle will not be elaborated further here. The controllable colored light enhances the technological feel and maneuverability of the Anomalocaris toy, thus ensuring enjoyment during play.

[0071] To further optimize the above technical solution, the forelimb 212 includes an arc-shaped main limb plate 2121 and a secondary limb plate 2122. There are two secondary limb plates 2122, which are bolted to both sides of the main limb plate 2121. Multiple barbs are fixed on the inner arc surface of the two secondary limb plates 2122.

[0072] 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.

[0073] In this embodiment, the tail body 23 includes several support bodies 231, a first fastening plate 232, a fan tail plate 234, and a second fastening plate 233; the several support bodies 231 are arranged in descending order of size, and the first fastening plate 232 passes through the several support bodies 231; the fan tail plate 234 is snapped into the middle of the several support bodies 231; the second fastening plate 233 is sleeved on the fan tail plate 234 and fastened to the first fastening plate 232 by bolts; the first fastening plate 232 and the second fastening plate 233 are hinged to the end of the fixing strip 222 away from the head body 211 by screws.

[0074] like Figure 11 As shown, the support body has an I-shaped cross-section with semi-circular holes at both ends and two perpendicular protrusions in the middle, forming a snap-fit ​​gap between them. The first fastening plate has multiple slots on its panel that fit the protrusions. The first fastening plate is located in the middle of the support body and connects multiple support bodies through these slots. There are two first fastening plates, which are fastened together with bolts. The fan tail plate's panel is snapped into the snap-fit ​​gap between the multiple support bodies. The second fastening plate has a long groove that fits the fan tail plate. There are two second fastening plates, each attached to one of the two first fastening plates. The two second fastening plates are fastened to the two first fastening plates with bolts. At the same time, the gap between the two first fastening plates is used to insert a fixing strip. The two first fastening plates and the fixing strip are hinged together with bolts, creating a movable connection between the body and the tail body.

[0075] To further optimize the above technical solution, the tail fin body 24 includes a tail fin body formed by bolting several tail fin plates in sequence. One end of the tail fin body is hinged to the end of the first fastening plate 232 and the second fastening plate 233 away from the fixed strip 222, and the other end is rotatably connected to the tail tip 246.

[0076] like Figure 12 As shown, the main body of the caudal fin includes a first caudal fin plate 241, a second caudal fin plate 242, and a third caudal fin plate 243. Each of the first, second, and third caudal fin plates 241, 242, and 243 includes a panel and caudal fins fixed to both sides of the panel. The first, second, and third caudal fin plates 241, 242, and 243 are sequentially stacked and bolted together to form the main body of the caudal fin. A lower connecting plate 244 is bolted to the panel of the first caudal fin plate 241. A rotating hole is provided on the surface of the lower connecting plate 244, and a portion of the tail tip 246... One end is a pointed end, and the other end is fixed with a ball joint, which is rotatably connected in a rotating hole; the top surfaces of the upper connecting plate 245 and the lower connecting plate 244 abut against each other; the upper connecting plate 245 and the lower connecting plate 244 are bolted to the panel of the tail fin body; vertical grooves are opened on the panels of the first tail fin plate 241 and the second tail fin plate 242, one end of the auxiliary connecting plate 247 is inserted into the vertical groove, and the other end is located in the gap between the two first fastening plates 232 and is hinged by bolts, so that the tail fin body and the tail body form a movable connection.

[0077] To further optimize the above technical solution, the housing 11 is a square housing formed by six panels interlocking and fixing together. For example... Figure 2 As shown, the shell has a hexahedral structure, with the top, side, and bottom walls of the shell interlocking and fastened together. Multiple snap-fit ​​pieces are fixed to the upper and lower ends of the side walls, while the top and bottom walls are circumferentially fixed with corresponding insert pieces that snap into each snap-fit ​​piece.

[0078] In some other specific embodiments, a fixing plate 14 is also included. The fixing plate 14 is fastened to the upper and lower ends of the side wall of the housing by bolts, and a plug block that engages with the plug-in is fixed on the fixing plate 14.

[0079] To further optimize the above technical solution and ensure the assembly and combination connection of the housing, the upper end of the side wall of the housing relative to the drive mechanism is fastened to the plug-in component by bolts.

[0080] In this embodiment, the drive mechanism 12 includes a bearing 125 and a support plate 127; the bearing 125 is embedded in the middle of the top wall or side wall of the housing 11; the support plate 127 is snapped into the inner ring of the bearing 125 and one end of it extends into the housing 11; the gear 126 is fixed to the end of the support plate 127 that extends into the housing 11; the axes of the gears 126 of the two sets of drive mechanisms 12 are perpendicular.

[0081] like Figure 3 and 5 As shown, the bearing 125 is embedded in the middle of the top wall or one side wall of the housing 11; the support plate 127 has a first protruding edge and a second protruding edge located on both sides of the first protruding edge, the first protruding edge penetrates into the inner ring of the bearing and abuts against the inner wall of the bearing; there are two mounting plates 123, which abut against the two end faces of the inner ring of the bearing respectively; the two mounting plates 123 are snapped onto the second protruding edge and fastened with bolts, and the support plate 127 and the bearing 125 are matched through the protruding edge, so that the support plate 127 can be used as a rotating shaft to drive the inner ring of the bearing 125 to rotate.

[0082] To further optimize the above technical solution, a washer 124 is also included. The washer 124 is bolted to the top wall and side wall of the housing 11 and abuts against the end face of the outer ring of the bearing 125. Meanwhile, the mounting plate 123 is located in the annular cavity of the washer 124, which can increase the aesthetics of the housing.

[0083] To further optimize the above technical solution, an annular protective plate 15 is bolted to the top surface of the housing 11, and the washer 124 located on the top wall is located in the annular cavity of the annular protective plate 15, which further improves the aesthetics of the housing.

[0084] To further optimize the above technical solution, multiple pads are snapped onto the end of the support plate 127 away from the housing 11. The panels of the multiple pads are arranged parallel to the top or side wall of the housing 11; the multiple pads are bolted together in sequence. Figure 3As shown, the pad is circular and includes a first pad 121 and a second pad 122. There are multiple second pads 122, and the multiple second pads 122 have the same diameter. The diameter of the first pad 121 is larger than that of the second pad 122.

[0085] A limiting plate 129 is also fixed to the end of the support plate 127 away from the housing 11, and the limiting plate 129 abuts against the first pad 121. The limiting plate secures the pad to the support plate and prevents the pads from moving relative to each other.

[0086] In other specific embodiments, to ensure the aesthetics of the housing, the first pad is a gear plate, and the second pad is an alternating arrangement of gear plates and circular plates.

[0087] In some other embodiments, to enhance the playability of the Anomalocaris toy figurine, a rocker arm 128 is attached to the first pad 121 located on the side wall. The Anomalocaris can be rotated by rotating the rocker arm on the side wall of the base.

[0088] To further optimize the above technical solution, the support mechanism 13 includes a support plate 131 and a support frame. The lower end of the support plate 131 is bolted to the end of the support plate 127 located on the top wall of the housing 11 away from the gear 126. The support frame is screwed to the upper end of the support plate 131, and the support piece 134 is fixed to the top surface of the support frame.

[0089] like Figure 6 As shown, a U-shaped groove 136 is provided at the lower end of the support plate 131. The U-shaped groove 136 is sleeved on the top of the support plate 127, and limit plates 129 are bolted to both sides of it. The bolting between the support plate 131 and the support plate 127 is achieved through the limit plates 129.

[0090] The support frame includes a first support plate 132, a second support plate 133, and a third support plate 135; an arc-shaped plate is fixed to the upper end of the support plate 131; the first support plate 132, the second support plate 133, and the third support plate 135 are also arc-shaped plates, and there are two of each; the first support plate 132, the second support plate 133, and the third support plate 135 are sequentially bolted to both sides of the arc-shaped plate at the top of the support plate 131; a support piece 134 is fixed to the top surface of the second support plate 133.

[0091] In some other specific embodiments, two sets of second support plates 132 are provided, with the two sets of second support plates 132 symmetrically arranged on both sides of the third support plate 133. Multiple support plates are mounted on a grooved support frame, with support plates on the support frame engaging between the two clamping plates of the Anomalocaris's body. The Anomalocaris's head, body, tail, and caudal fin are all hinged structures. By adjusting different engagement positions and the postures of different body parts, the Anomalocaris's posture can be adjusted. The rotation of the base drive mechanism allows the Anomalocaris to rotate, enabling multi-angle and all-around display of its posture, enhancing its fun, realism, technological feel, and sense of movement.

[0092] 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.

[0093] 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. An Anomalocaris toy figurine, characterized in that, Includes a base (1) and anomalocaris (2); The base (1) includes a housing (11), a drive mechanism (12), and a support mechanism (13); the drive mechanism (12) has two sets and is rotatably connected to one side wall and the top wall of the housing (11), and the gears (126) of the two sets of drive mechanisms (12) mesh with each other for transmission; the lower end of the support mechanism (13) is detachably connected to the rotating shaft of the drive mechanism (12) located on the top wall of the housing (11), and the upper end is fixed with a support plate (134); The Anomalocaris (2) comprises a head body (21), a body body (22), a tail body (23), and a tail fin body (24) that are hinged together in sequence; the abdomen of the body body (22) is engaged with the support plate (134).

2. The Anomalocaris toy ornament according to claim 1, characterized in that, The body body (22) includes a fixing plate (222), a dorsal fin body, and a pad (227). The dorsal fin body is provided in multiple sets, and each set of the dorsal fin body includes two opposing clamping plates (223) and a dorsal fin plate (224). The clamping plates (223) are provided with through grooves. The panel of the fixing plate (222) is arranged perpendicular to the panel of the clamping plate (223) and passes through the through groove. The two clamping plates (223) are provided with figure-eight holes (225) on both sides opposite to the fixing plate (222). One end of the dorsal fin plate (224) is located between the two clamping plates (223) and is rotatably connected in the figure-eight hole (225). The pad (227) is clamped between the two opposing clamping plates (223) in two adjacent sets of the dorsal fin body. The support plate (134) is snapped into the bottom between the two adjacent clamping plates (223).

3. The Anomalocaris toy ornament according to claim 2, characterized in that, The head body (21) includes a head body (211) consisting of several splicing plates connected by bolts. The front end of the head body (211) is detachably connected to a front appendage (212). The top of the head body (211) is provided with a flexible and controllable colored light (213). The rear end of the head body (211) is hinged to one end of the fixing strip (222) by a screw.

4. The Anomalocaris toy ornament according to claim 3, characterized in that, The tail body (23) includes several support bodies (231), a first fastening plate (232), a fan tail plate (234), and a second fastening plate (233); the several support bodies (231) are arranged in descending order of size, and the first fastening plate (232) passes through several support bodies (231); the fan tail plate (234) is snapped into the middle of several support bodies (231); the second fastening plate (233) is sleeved on the fan tail plate (234) and fastened to the first fastening plate (232) by bolts; the first fastening plate (232) and the second fastening plate (233) are hinged to the end of the fixing strip (222) away from the head body (211) by screws.

5. The Anomalocaris toy ornament according to claim 4, characterized in that, The caudal fin body (24) includes a caudal fin body formed by bolting several caudal fin plates together in sequence. One end of the caudal fin body is hinged to the end of the first fastening plate (232) and the second fastening plate (233) away from the fixed strip (222), and the other end is rotatably connected to the tail tip (246).

6. The Anomalocaris toy ornament according to claim 1, characterized in that, The housing (11) is a square housing formed by six panels being interlocked and fixed together.

7. The Anomalocaris toy ornament according to claim 1, characterized in that, The drive mechanism (12) includes a bearing (125) and a support plate (127); the bearing (125) is embedded in the middle of the top wall or side wall of the housing (11); the support plate (127) is engaged with the inner ring of the bearing (125) and one end of it extends into the housing (11); the gear (126) is fixed at the end of the support plate (127) that extends into the housing (11); the axes of the gears (126) of the two sets of drive mechanisms (12) are perpendicular.

8. The Anomalocaris toy ornament according to claim 7, characterized in that, The support plate (127) is attached to a plurality of pads at one end away from the housing (11), and the panels of the plurality of pads are arranged parallel to the top wall or side wall of the housing (11); the plurality of pads are bolted together in sequence.

9. The Anomalocaris toy ornament according to claim 7, characterized in that, The support mechanism (13) includes a support plate (131) and a support frame. The lower end of the support plate (131) is bolted to the end of the support plate (127) located on the top wall of the housing (11) away from the gear (126). The support frame is screwed to the upper end of the support plate (131), and the support piece (134) is fixed to the top surface of the support frame.

10. The Anomalocaris toy ornament according to claim 1, characterized in that, The back shell (221) is screwed to the back of the body body (22).

Citation Information

Patent Citations

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