Odd shrimp toy ornament

By designing a rotatable base and multiple articulated body parts, the problems of poor simulation, fun, mobility and technology in the existing technology are solved, and the multi-angle display and high simulation of the auspicious shrimp toy ornaments are realized, meeting the market's requirements for diversified needs.

CN120094216APending Publication Date: 2025-06-06STEEL WARCRAFT (YUNNAN) MODEL ART CO LTD
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Patent Information

Application Number
CN202510461249.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing Qizhe toy ornaments have poor simulation, fun, mobility and technology, and it is difficult to meet the market's requirements for diversified needs.

Method used

A strange shrimp toy ornament is designed, using a rotatable base and multiple articulated body parts. Through the cooperation of the driving mechanism and the support piece, the strange shrimp can be displayed in multiple angles and in all aspects. At the same time, controllable color lights and multiple sets of dorsal fin bodies are used to improve the technological sense and simulation of the toy.

Benefits of technology

Through a rotatable base and multiple articulated body parts, the mobility and fun of the ornaments of the Qizhe toys are greatly improved, and the posture of the Qizhe can be displayed in multiple angles and all aspects, increasing the simulation and technological sense of the toys, and meeting the market's requirements for diversified needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention 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. The rotatable base is used for bearing the odd shrimps, the postures of the odd shrimps can be displayed in an omnibearing and multi-angle mode, and the mobility and interestingness are higher.
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Description

Technical Field

[0001] The present invention relates to the technical field of toys, and more particularly to an anomaly shrimp toy ornament. Background Art

[0002] At present, most of the pendants used as decorations or keychains, mobile phones, backpacks, etc. are integrated. Since they are immutable, cannot be assembled, are not operable, and are not interesting, it is difficult to provide people, especially young people, with the fun of operation and assembly, as well as the value of decoration, collection, and commemoration.

[0003] The Anomalocaris, known as the "king" of the water, has a very similar morphological feature to the common shrimp, but it seems to be missing a head, which makes it look strange, so it is called Anomalocaris. Anomalocaris was the largest and most ferocious giant carnivorous animal in the ocean more than 500 million years ago. It was known as the "giant" in the sea. The largest Anomalocaris can reach more than 2 meters in length, while the individuals of other animals in the ocean at that time were only a few millimeters to a few centimeters. In front of the head of the Anomalocaris is a pair of multi-segmented, thorny, powerful front appendages for catching food, and a pair of giant eyes with handles in the front upper part of the head; in the center below the head is a circular ring-shaped mouthpart composed of 32 outer lips, with a maximum diameter of 25 cm, which can swallow various giant animals and also pose a serious threat to animals with outer armor protection.

[0004] In order to show the appearance and structure of the Anomalocaris, some anomalocaris toys have appeared on the market. The existing patent technology 202120627077.7 discloses a multifunctional educational model of the Anomalocaris family, including a body, a head and a tail fin. Several shells are provided on both sides of the body, and several tails are provided at one end of the tail fin. Several main fins are provided on the sides of the shell, and several folding axes are provided inside the body. There are central bones between the folding axes, and several brackets are provided on the sides of the folding axes. The utility model simulates the skeleton of the Anomalocaris by setting multiple brackets and folding axes that can rotate with each other. It can enable students to understand the skeletal activity mode of the Anomalocaris during assembly, improve the teaching effect, and is conducive to the dissemination of paleontological knowledge. By setting a pulling spring, each shell can be bent to imitate the curled posture of the Anomalocaris, so that students can further understand the specific characteristics of paleontology. By setting extension blocks and auxiliary axes, multiple main fins can be installed on the bracket, and the living environment of the Anomalocaris can be simulated with the blue ocean background.

[0005] The above patented technology is only a simple assembly structure, and its simulation and fun still need to be improved. At the same time, its overall structure has poor mobility and sense of technology. In addition, if it is simply used as a toy or ornament, its functionality is insufficient and it is not easy to meet the diversified needs of the market.

[0006] Therefore, how to provide a toy figurine of the Anomalocaris that is more realistic, interesting, active, and technologically advanced is a problem that needs to be urgently solved by those skilled in the art. Summary of the invention

[0007] In view of this, the present invention provides a shrimp toy ornament, aiming to solve the above technical problems.

[0008] In order to achieve the above object, the present invention adopts the following technical solution:

[0009] A toy ornament of anomalocaris, comprising a base and the anomalocaris;

[0010] The base includes a shell, a driving mechanism and a supporting mechanism; the driving mechanism is provided with two groups and is rotatably connected to a side wall and a top wall of the shell respectively, and the gears of the two groups of the driving mechanisms are meshed with each other for transmission; the lower end of the supporting mechanism is detachably connected to the rotating shaft of the driving mechanism located on the top wall of the shell, and a supporting sheet is fixed to the upper end;

[0011] The anomalocaris comprises a head body, a body body, a tail body and a tail fin body which are hinged in sequence; the abdomen of the body body is clamped on the supporting sheet.

[0012] The beneficial effect of the technical solution of the present invention is that the Anomalocaris is connected to the supporting mechanism through the support plate, and the two sets of driving mechanisms are mutually engaged and transmitted through gears. The driving mechanism can drive the Anomalocaris to rotate, and the posture of the Anomalocaris can be displayed from multiple angles and in all directions, which is more interesting.

[0013] Preferably, the body includes a fixed strip, a dorsal fin body and a pad. The dorsal fin body is provided with multiple groups, and each of the multiple groups of dorsal fin bodies includes two oppositely arranged splints and a dorsal fin plate, and a through slot is provided on the splint; the panel of the fixed strip is arranged perpendicular to the panel of the splint and passes through the through slot; the two splints are provided with 8-shaped holes on both sides relative to the fixed strip; one end of the dorsal fin plate is located between the two splints and is rotatably connected in the 8-shaped hole; the pad is clamped between the two opposite splints in two adjacent groups of the dorsal fin bodies; and the support sheet is clamped at the bottom between the two adjacent splints. The dorsal fin plate is hinged in the 8-shaped hole, and the rotation angle of the dorsal fin plate relative to the splint can be limited by the 8-shaped hole. The multiple dorsal fin units are separated by pads, which makes the simulation and interest of the shrimp higher.

[0014] Preferably, the head body comprises a head body composed of several splicing plates connected by bolts, the front end of the head body is detachably connected with a front appendage; the top of the head body is provided with a flexible controllable colored light, and the rear end of the head body is hinged to one end of the fixed strip through a screw. The front appendage simulates the predatory limbs of the Anomalocaris, and the controllable colored light simulates the eyes of the Anomalocaris, which has a stronger sense of technology.

[0015] Preferably, the tail body includes a plurality of support bodies, a first fastening plate, a fantail plate, and a second fastening plate; the plurality of support bodies are arranged in sequence from large to small, and the first fastening plate passes through the plurality of support bodies; the fantail plate is clamped in the middle of the plurality of support bodies; the second fastening plate is sleeved on the fantail 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 fixed strip away from the head body by a screw.

[0016] Preferably, the tail fin body includes a tail fin main body formed by a plurality of tail fin plates bolted in sequence, one end of the tail fin main body is hinged to one end of the first fastening plate and the second fastening plate away from the fixed strip, and the other end is rotatably connected to the tail tip.

[0017] Preferably, the shell is a square shell formed by six panels being fixed to each other.

[0018] The beneficial effect of the above technical solution is that the Strange Shrimp ornament can improve friends' hands-on ability through the assembly method, and the assembly combination ensures the fun of the Strange Shrimp ornament.

[0019] Preferably, the driving mechanism includes a bearing and a support plate; the bearing is embedded in the middle of the top wall or side wall of the shell; the support plate is clamped on the inner ring of the bearing and one end of the support plate extends into the shell, and the gear is fixed on the end of the support plate that penetrates into the shell; the axes of the gears of the two groups of driving mechanisms are perpendicular. The gears of the two groups of mechanisms are arranged perpendicular to each other, and the teeth and tooth grooves in the two gears are engaged with each other so that the two groups of driving mechanisms can be connected to each other through transmission, and the support plate is used as a driving shaft, which is reasonable in conception and ingenious in structure.

[0020] Preferably, the end of the support plate away from the shell is clamped with multiple pads, 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 and fastened in sequence. The multiple pads improve the aesthetics of the shrimp ornament.

[0021] Preferably, the supporting mechanism comprises a supporting plate and a bearing frame, wherein the lower end of the supporting plate is bolted to an end of the supporting plate located on the top wall of the housing and away from the gear; the bearing frame is screwed to the upper end of the supporting plate, and the supporting sheet is fixed to the top surface of the bearing frame. The bearing frame can support the Anomalocaris, the supporting plate is fixed to the supporting plate, and the rotation of the supporting plate can drive the Anomalocaris to rotate synchronously.

[0022] Preferably, a back shell is screwed onto the back of the body, thereby improving the profiling ability of the Anomalocaris ornament.

[0023] It can be seen from the above technical solutions that, compared with the prior art, the present invention discloses a toy ornament of the Anomalocaris, which is supported by a rotatable base and can display the posture of the Anomalocaris in all directions and at multiple angles, and is more active and interesting. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying creative work.

[0025] Figure 1 A schematic diagram of the structure of the Anomalocaris toy ornament provided by the present invention;

[0026] Figure 2 A schematic diagram of the base structure provided by the present invention;

[0027] Figure 3 A schematic diagram of the driving mechanism structure provided by the present invention;

[0028] Figure 4 A schematic diagram of the support plate and the supporting plate structure provided by the invention;

[0029] Figure 5 A schematic diagram of an exploded top wall of a housing provided by the present invention;

[0030] Figure 6 An exploded schematic diagram of the supporting mechanism provided by the present invention;

[0031] Figure 7 A schematic diagram of the structure of the Anomalocaris provided by the present invention;

[0032] Figure 8 A schematic diagram of the head body provided by the present invention;

[0033] Fig. 9 A schematic diagram of the body structure provided by the present invention;

[0034] Fig.10 A schematic diagram of the dorsal fin main body provided by the present invention;

[0035] Fig.11 A schematic diagram of the decomposition of the tail body provided by the present invention;

[0036] Fig.12 This is a schematic diagram of the decomposition of the tail fin body provided by the present invention.

[0037] in,

[0038] 1- Base;

[0039] 11- housing;

[0040] 12- driving mechanism;

[0041] 121-first pad; 122-second pad; 123-fastening plate; 124-washer; 125-bearing; 126-gear; 127-support plate; 128-rocker; 129-limiting plate;

[0042] 13- Supporting organization;

[0043] 131-supporting plate; 132-first bearing plate; 133-second bearing plate; 134-supporting sheet; 135-third bearing plate; 136-U-shaped groove;

[0044] 14-fixed plate;

[0045] 15- annular 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-front appendage; 2121-main limb plate; 2122-secondary limb plate; 213-controllable colored lights;

[0049] 22-body;

[0050] 221-back shell; 222-fixing strip; 223-plywood; 224-dorsal fin plate; 2241-plate body; 2242-cross plate; 2243-fishbone plate; 225-8-shaped hole; 226-fixing seat; 227-pad; 228-nut;

[0051] 23- tail body;

[0052] 231-support body; 232-first fastening plate; 233-second fastening plate; 234-fantail plate;

[0053] 24- caudal fin body;

[0054] 241 - first tail fin plate; 242 - second tail fin plate; 243 - third tail fin plate; 244 - lower connecting plate; 245 - upper connecting plate; 246 - tail tip; 247 - auxiliary connecting plate. DETAILED DESCRIPTION

[0055] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0056] The embodiment of the present invention discloses a toy ornament of anomalocaris, comprising a base 1 and anomalocaris 2;

[0057] The base 1 includes a housing 11, a driving mechanism 12 and a supporting mechanism 13; the driving mechanism 12 is provided with two groups and is rotatably connected to a side wall and a top wall of the housing 11 respectively, and the gears 126 of the two groups of driving mechanisms 12 are meshed and transmitted with each other; the lower end of the supporting mechanism 13 is detachably connected to the rotating shaft of the driving mechanism 12 located on the top wall of the housing 11, and a supporting sheet 134 is fixed to the upper end;

[0058] The anomalocaris 2 comprises a head body 21 , a body body 22 , a tail body 23 and a tail fin body 24 which are hinged in sequence; the abdomen of the body body 22 is clamped on the support sheet 134 .

[0059] like Figure 1 As shown, the two sets of driving mechanisms are arranged perpendicular to each other and are driven by gears, so that the abdomen of the Anomalocaris is clamped on the supporting plate of the base. The rotation of the two sets of driving mechanisms can realize the rotation of the Anomalocaris, and the clamping method can adjust the placement of the Anomalocaris at multiple angles, so that the posture of the Anomalocaris can be displayed from multiple angles and in all directions, which is full of fun and activity.

[0060] In order to further optimize the above technical scheme, the body main body 22 includes a fixed strip 222, a dorsal fin body and a pad 227. The dorsal fin body is provided with multiple groups, and the multiple groups of dorsal fin bodies each include two oppositely arranged splints 223 and a dorsal fin plate 224, and a through groove is provided on the splint 223; the panel of the fixed strip 222 is arranged perpendicular to the panel of the splint 223 and passes through the through groove; the two splints 223 are provided with 8-shaped holes 225 on both sides relative to the fixed strip 222; one end of the dorsal fin plate 224 is located between the two splints 223 and is rotatably connected in the 8-shaped hole 225; the pad 227 is clamped between the two opposite splints 223 in two adjacent groups of dorsal fin bodies; the support sheet 134 is clamped at the bottom between the two adjacent splints 223.

[0061] like Fig. 9 and 10As shown, the splints are arranged in pairs, the fixed strips are T-shaped plates, which have vertical plates and horizontal plates, the horizontal plates pass through the through slots of the splints, and the two splints are fastened by screws. In order to ensure that the two splints do not move relative to each other, a dot ring is set on the screw of the fixed splint, so that there is a certain gap between the two splints, ensuring that the installation and rotation of the dorsal fin plates between multiple dorsal fin bodies are not affected. The 8-shaped hole on the splint can limit the rotation angle of the dorsal fin plate, and its rotation angle can simulate the underwater movement posture of the shrimp, with a high degree of simulation.

[0062] In order 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 is used as a 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 8-shaped hole 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 through the cross plate, and the main body can move forward and backward around the hinge axis. The multi-dimensional movement of the plate body is guaranteed by the hinged method, which improves the activity and interest of the anomalocaris; the setting of the fishbone plate can improve the simulation of the anomalocaris.

[0063] In other specific embodiments, in order to improve the imitation ability of the Anomalocaris, a dorsal shell 221 is screwed onto the back of the body 22 .

[0064] No less than three groups of dorsal fin bodies are provided on each fixed strip 222, and two adjacent groups of dorsal fin bodies are separated by a gasket 227. A fixing seat 226 is bolted between the two clamping plates 223 of the dorsal fin body in the middle, and a slot is provided on the top surface of the fixing seat 226. The nut 228 is snapped into the slot, and the back shell 221 is buckled on the back of the body 22, and the installation of the back shell 221 is completed by screwing the screw and the nut 228.

[0065] In some other specific embodiments, the body body is provided with two groups, and the fixing strips between the two groups of body bodies are hinged to each other end to end. Fig. 9 The first group of body bodies is provided with two fixed strips, the two fixed strips are parallel to each other, and the splint is passed through the two fixed strips; the cross-section of the pad is I-shaped, and the two fixed strips pass through the openings on both sides of the pad, and the two ends of the fixed strips are locked by bolts to lock the multiple groups of dorsal fin bodies and the pad to prevent the multiple groups of dorsal fin bodies from moving relative to each other; the second group of body bodies is provided with a fixed strip, and the pad is a rectangular block with a slot for the fixed strip to pass through, and the rest of the fixing method is the same as the first group; the end of the fixed strip of the second group of body bodies can be inserted into the gap at one end of the two fixed strips of the first group of body bodies and hinged by bolts, and the two groups of body bodies can form a flexible movable body by hinged connection, thereby improving the toy's contouring effect.

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

[0067] like Figure 8 As shown, the head body 211 includes a main splicing plate 2111, a first sub-splicing plate 2112, a second sub-splicing plate 2113 and a third sub-splicing plate 2114; the first sub-splicing plate 2112, the second sub-splicing plate 2113 and the third sub-splicing plate 2114 are two in number and are respectively and symmetrically arranged on both sides of the main splicing plate 2111, and the main splicing plate 2111, the first sub-splicing plate 2112, the second sub-splicing plate 2113 and the third sub-splicing plate 2114 are fastened by bolts to form the head body 211;

[0068] The first sub-splicing plate 2112 is provided with a bayonet, the second sub-splicing plate 2113 is provided with a through hole corresponding to the bayonet, the third sub-splicing plate 2114 is provided with a slot, and a hanging plate is provided in the bayonet; a spring is fixed to the outer wall of the controllable colored lamp 213, one end of the spring is hooked on the hanging plate, and the spring passes through the through hole and the slot, so that the controllable colored lamp 213 has a certain flexibility and is more interesting.

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

[0070] In order to further optimize the above technical solution, the controllable colored lights are of a screw-contact structure with a button battery inside. The screw-contact structure can conveniently control the electrical connection, and the structure is simple and reliable. Its principle is consistent with the principle of a traditional flashlight. When it is loosened, the contact is poor and the light does not light up. When it is tightened, the contact is intact and the light lights up. The principle is not repeated here. The controllable colored lights can enhance the technological sense and controllability of the shrimp toy ornaments, thereby ensuring the fun of playing.

[0071] In order to further optimize the above technical solution, the front appendage 212 includes an arc-shaped main limb plate 2121 and an auxiliary limb plate 2122. There are two auxiliary limb plates 2122 and they are bolted to both sides of the main limb plate 2121. Multiple barbs are fixed on the inner arc surfaces of the two auxiliary limb plates 2122.

[0072] The front appendage is formed by bolting a main limb plate and an auxiliary limb plate, one end of which is bolted between a first assembly piece and a second assembly piece, and the contour-matching ability thereof can be improved by means of an arc-shaped plate and barbs.

[0073] In this embodiment, the tail body 23 includes a plurality of support bodies 231, a first fastening plate 232, a fantail plate 234 and a second fastening plate 233; the plurality of support bodies 231 are arranged in order from large to small, and the first fastening plate 232 penetrates the plurality of support bodies 231; the fantail plate 234 is clamped in the middle of the plurality of support bodies 231; the second fastening plate 233 is sleeved with the fantail plate 234 and is 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 a screw.

[0074] like Fig.11 As shown, the cross-section of the support body is an I-shaped structure, with semicircular holes at the upper and lower ends, and two mutually perpendicular protrusions in the middle, with a clamping gap formed between the two protrusions; a plurality of notches matching the protrusions are provided on the panel of the first fastening plate, and the first fastening plate is located in the middle of the support body and connects the plurality of support bodies through the plurality of notches, and the first fastening plates are two pieces and fastened by bolts; the panel of the fantail plate is clamped in the clamping gap of the plurality of support bodies, and a long groove is provided on the second fastening plate, and the fantail plate is sleeved in the long groove, and the second fastening plates are two pieces and are respectively arranged to fit the two first fastening plates, and the two second fastening plates are fastened to the two first fastening plates by bolts; at the same time, the gap between the two first fastening plates is used to insert the fixing strip plate, and the two first fastening plates are hinged to the fixing strip plate by bolts, so that a movable connection is formed between the body body and the tail body.

[0075] In order to further optimize the above technical solution, the tail fin body 24 includes a tail fin body formed by a plurality of tail fin plates bolted in sequence, one end of the tail fin body is hinged to one 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 Fig.12 As shown, the tail fin body includes a first tail fin plate 241, a second tail fin plate 242 and a third tail fin plate 243. The first tail fin plate 241, the second tail fin plate 242 and the third tail fin plate 243 all include panels and tail fins fixed on both sides of the panels. The first tail fin plate 241, the second tail fin plate 242 and the third tail fin plate 243 are stacked and bolted in sequence to form the tail fin body; the lower connecting plate 244 is bolted to the panel of the first tail fin plate 241, and a rotating hole is opened on the plate surface of the lower connecting plate 244. A portion of the tail tip 246 is The first end is a pointed tip, and the other end is fixed with a ball joint, which is rotatably connected in the rotating hole; the upper connecting plate 245 abuts against the top surface of the lower connecting plate 244; 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 in 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 a movable connection is formed between the tail fin body and the tail body.

[0077] In order to further optimize the above technical solution, the housing 11 is a square housing formed by six panels being fixedly connected to each other. Figure 2 As shown, the housing is a hexahedral structure, and the top wall, side wall and bottom wall of the housing are mutually clamped and fastened. Multiple clamping parts are fixed to the upper and lower ends of the side wall of the housing, and plug-in parts corresponding to the clamping parts are fixed to the circumference of the top wall and the bottom wall.

[0078] In some other specific embodiments, a fixing plate 14 is further included. The fixing plate 14 is located at the upper and lower ends of the side wall of the shell and is fastened by bolts. An insert block that is engaged with the connector is fixed on the fixing plate 14.

[0079] In order to further optimize the above technical solution and ensure the assembled and combined connection of the shell, the upper end of a side wall of the shell opposite to the driving mechanism is fastened to the connector 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 shell 11; the support plate 127 is clamped on the inner ring of the bearing 125 and one end of it extends into the shell 11, and the gear 126 is fixed to the end of the support plate 127 that extends deep into the shell 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 shell 11; the support plate 127 is circumferentially provided with a first convex edge and a second convex edge located on both sides of the first convex edge, and the first convex edge penetrates into the inner ring of the bearing and abuts against the inner wall of the bearing; the assembly plate 123 is divided into two pieces and abuts against the two end surfaces of the inner ring of the bearing respectively; the two assembly plates 123 are clamped on the second convex edge and fastened by bolts, and the support plate 127 and the bearing 125 are matched through the convex edge, and then the support plate 127 is used as a rotating shaft to drive the inner ring of the bearing 125 to rotate.

[0082] In order to further optimize the above technical solution, it also includes a gasket 124, which is bolted to the top wall and the side wall of the shell 11 and abuts against the end face of the outer ring of the bearing 125. At the same time, the assembly plate 123 is located in the annular cavity of the gasket 124, which can increase the aesthetics of the shell.

[0083] In order to further optimize the above technical solution, an annular guard plate 15 is bolted to the top surface of the shell 11, and the gasket 124 located on the top wall is located in the annular cavity of the annular guard plate 15, further improving the aesthetics of the shell.

[0084] In order to further optimize the above technical solution, the end of the support plate 127 away from the shell 11 is clamped with multiple pads, and the panels of the multiple pads are arranged parallel to the top wall or side wall of the shell 11; the multiple pads are bolted and fastened 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 greater than that of the second pad 122 .

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

[0086] In some other specific embodiments, to ensure the aesthetics of the shell, the first pad is a gear plate, and the second pad is a gear plate and a circular plate arranged alternately.

[0087] In other specific embodiments, in order to improve the fun of playing with the anomalocaris toy ornament, a rocker 128 is bolted to the first pad 121 located on the side wall. The anomalocaris can be rotated by rotating the rocker on the side wall of the base.

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

[0089] like Figure 6 As shown, a U-shaped groove 136 is provided at the lower end of the supporting plate 131 , the U-shaped groove 136 is sleeved on the top of the supporting plate 127 , and the limiting plates 129 are bolted on both sides thereof, and the bolt connection between the supporting plate 131 and the supporting plate 127 is achieved through the limiting plates 129 .

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

[0091] In other specific embodiments, two groups of second bearing plates 132 are provided, and the two groups of second bearing plates 132 are symmetrically arranged on both sides of the third bearing plate 133. Through multiple bearing plate-shaped slot bearing frames, the support sheets on the bearing frames are clamped between the two clamping plates of the body of the anomalocaris, and the head, body, tail and tail fin of the anomalocaris are all hinged structures. The posture of the anomalocaris can be adjusted by adjusting different clamping positions and the postures of different body parts of the anomalocaris, and the rotation of the base driving mechanism can make the anomalocaris rotate, so that the posture of the anomalocaris can be displayed from multiple angles and in all directions, and the fun, simulation, sense of technology and sense of activity are stronger.

[0092] In this specification, each embodiment is described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the embodiments can be referred to each other. For the device disclosed in the embodiment, since it corresponds to the method disclosed in the embodiment, the description is relatively simple, and the relevant parts can be referred to the method part.

[0093] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one 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 will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A toy ornament of anomalocaris, characterized in that: It comprises a base (1) and anomalocaris (2); The base (1) comprises a shell (11), a driving mechanism (12) and a supporting mechanism (13); the driving mechanism (12) is provided with two groups and is rotatably connected to a side wall and a top wall of the shell (11), respectively, and the gears (126) of the two groups of the driving mechanism (12) are meshed with each other for transmission; the lower end of the supporting mechanism (13) is detachably connected to the rotating shaft of the driving mechanism (12) located on the top wall of the shell (11), and a supporting sheet (134) is fixed to the upper end; The anomalocaris (2) comprises a head body (21), a body body (22), a tail body (23) and a tail fin body (24) which are hinged in sequence; the abdomen of the body body (22) is clamped on the support sheet (134).

2. The toy ornament of the anomalocaris according to claim 1, characterized in that: The body (22) includes a fixed strip (222), a dorsal fin body and a cushion block (227). The dorsal fin body is provided with multiple groups, and the multiple groups of dorsal fin bodies each include two oppositely arranged splints (223) and a dorsal fin plate (224), and a through groove is provided on the splint (223); the panel of the fixed strip (222) is arranged perpendicular to the panel of the splint (223) and passes through the through groove; the two splints (223) are provided with 8-shaped holes (225) on both sides relative to the fixed strip (222); one end of the dorsal fin plate (224) is located between the two splints (223) and is rotatably connected in the 8-shaped hole (225); the cushion block (227) is clamped between the two opposite splints (223) in two adjacent groups of dorsal fin bodies; the support sheet (134) is clamped at the bottom between the two adjacent splints (223).

3. The toy ornament of the anomalocaris according to claim 2, characterized in that: The head body (21) comprises a head body (211) to which a plurality of splicing plates are connected by bolts, and the front end of the head body (211) is detachably connected to a front appendage (212); a flexible controllable colored light (213) is provided at the top of the head body (211), and the rear end of the head body (211) is hinged to one end of the fixed strip (222) by a screw.

4. The toy ornament of the anomalocaris according to claim 3, characterized in that: The tail body (23) comprises a plurality of support bodies (231), a first fastening plate (232), a fantail plate (234) and a second fastening plate (233); the plurality of support bodies (231) are arranged in order from large to small, and the first fastening plate (232) penetrates the plurality of support bodies (231); the fantail plate (234) is clamped in the middle of the plurality of support bodies (231); the second fastening plate (233) is sleeved on the fantail 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 one end of the fixing strip (222) away from the head body (211) by screws.

5. The toy ornament of the anomalocaris according to claim 4, characterized in that: The tail fin body (24) comprises a tail fin main body formed by a plurality of tail fin plates being bolted in sequence, one end of the tail fin main body being hinged to the first fastening plate (232) and the second fastening plate (233) away from the fixed strip (222), and the other end being rotatably connected to a 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 clamped and fixed to each other.

7. The anomalocaris toy ornament according to claim 1, characterized in that: The driving mechanism (12) comprises a bearing (125) and a support plate (127); the bearing (125) is embedded in the middle of the top wall or the side wall of the housing (11); the support plate (127) is clamped on the inner ring of the bearing (125) and one end of the support plate (127) extends into the housing (11); the gear (126) is fixed to the end of the support plate (127) that extends deep into the housing (11); the axes of the gears (126) of the two groups of the driving mechanism (12) are perpendicular.

8. The toy ornament of the anomalocaris according to claim 7, characterized in that: A plurality of pads are clamped on one end of the support plate (127) away from the shell (11), and the panels of the plurality of pads are arranged parallel to the top wall or the side wall of the shell (11); and the plurality of pads are bolted and fastened in sequence.

9. The anomalocaris toy ornament according to claim 7, characterized in that: The supporting mechanism (13) comprises a supporting plate (131) and a supporting frame, wherein the lower end of the supporting plate (131) is bolted to an end of the supporting plate (127) located on the top wall of the shell (11) away from the gear (126); the supporting frame is screwed to the upper end of the supporting plate (131), and the supporting sheet (134) is fixed to the top surface of the supporting frame.

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

Citation Information

Patent Citations

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