Toy egg

By designing a combination of gravity-based components and elastic elements, the toy egg opens its shell and launches the doll when the bottom of the shell is hit, solving the problem of low fun and playability of existing egg-shaped blind box toys and achieving higher playability and visual impact.

CN120960798APending Publication Date: 2025-11-18GUANGZHOU LINGDONG CHUANGXIANG CULTURE & TECH
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Patent Information

Application Number
CN202511207682.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing egg-shaped blind box toys are simple to play with, but have low fun and playability.

Method used

Design a toy egg that opens by smashing the bottom of the shell. Utilize a combination of gravity-based components and elastic elements to open the shell and launch the toy, increasing the visual impact and fun during play.

Benefits of technology

It increases the visual impact and fun of playing with the toy egg, and the way to play is novel and interesting. There is no need to set a trigger switch on the outer wall of the shell. Users can open the shell and launch the doll by smashing the shell.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a toy egg which comprises a shell, a shell cover, a first twisting piece, a second twisting piece, a first gravity swing piece, a second gravity swing piece, a first elastic piece, a second elastic piece, a telescopic connecting block and a doll. The first twisting piece and the second twisting piece are arranged on the two sides of the inner wall of the shell in a twisting mode respectively, one end of the first twisting piece is connected with the inner wall of the shell cover, the other end of the first twisting piece abuts against one end of the telescopic connecting block, one end of the second twisting piece is connected with the shell cover in a clamped mode, and the first gravity swing piece is rotationally arranged in the shell. The first gravity swing piece abuts against the end, away from the shell cover, of the second twisting piece. An inserting column is arranged in the shell in the opening direction of the shell, the first elastic piece and the second elastic piece are arranged in the shell in a telescopic mode, one end of the first elastic piece abuts against one end of the telescopic connecting block, the other end of the first elastic piece movably stretches into the second elastic piece, and one end of the second elastic piece stretches out of the inserting column. The bottom of the doll is recessed to form an insertion sliding groove, an ejection part is telescopically arranged in the insertion sliding groove, the insertion sliding groove is movably inserted into the insertion column and clamped with the second elastic part, and the second gravity swing part is rotatably arranged in the shell and abuts against the second elastic part. The toy egg is ingenious in design, a user can open the shell cover by smashing the bottom of the shell, a doll can be ejected out by smashing the bottom of the shell again, and the visual impact and interestingness when the toy egg is played are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of toys, in particular to a toy egg. BACKGROUND

[0002] With the development of the toy industry, various styles and functions of toys not only bring a lot of fun to people's life, but also help people relax and decompress in daily life. Among them, the egg-shaped blind box toy generally has various different shaped toy pieces in the inside of the eggshell, and the user only needs to open the eggshell to know what the hidden toy inside is. The play method is simple, and the interest and playability are low. SUMMARY

[0003] Therefore, the purpose of the present application is to overcome the shortcomings of the prior art and provide a toy egg which is cleverly designed, and the user can open the shell cover by smashing the bottom of the shell body, and can make the doll pop out by smashing the bottom of the shell body again, thereby increasing the visual impact and interest of the toy egg when playing.

[0004] In order to achieve the above purpose, the technical scheme adopted by the present application is:

[0005] A toy egg, comprising a shell body, a shell cover, a first twist joint, a second twist joint, a first gravity pendulum, a second gravity pendulum, a first elastic member, a second elastic member, an extension connecting block, and a doll.

[0006] The shell body is a hollow structure with an open upper end, the first twist joint and the second twist joint are respectively twistably arranged on the inner walls of the shell body, the extension connecting block is slidably arranged on the inner wall of the shell body, one end of the first twist joint is connected to the inner wall of the shell cover, the other end of the first twist joint abuts one end of the extension connecting block, one end of the second twist joint is connected to the shell cover, and the shell cover is arranged on the open upper end of the shell body; the first gravity pendulum is rotatably arranged in the shell body, and the first gravity pendulum abuts the end of the second twist joint away from the shell cover.

[0007] The inside of the shell is provided with a plug-in column towards its opening direction, the first elastic member and the second elastic member are respectively telescopically arranged in the shell, one end of the first elastic member abuts against one end of the telescopic connecting block, the other end of the first elastic member telescopically extends into the second elastic member, and the first elastic member is in a compressed state; one end of the second elastic member extends out of the plug-in column, the bottom of the figurine is recessed to form a plug-in sliding groove, an elastic member is telescopically arranged in the plug-in sliding groove, the plug-in sliding groove is telescopically arranged on the plug-in column and is clamped with the second elastic member, and the elastic member is stored and abuts against the end of the plug-in column, the second gravity pendulum is rotatably arranged in the shell, and the second gravity pendulum abuts against the second elastic member.

[0008] Thus, the toy egg according to the present application, the shell cover is twistably arranged on the shell body through the first twist piece, and is clamped with the second twist piece to enable the shell cover to cover the open upper end of the shell body, the second twist piece is in abutment with the first gravity swing piece, so that when the user holds the side wall of the shell body and strikes the bottom of the shell body against the table top, the first gravity swing piece swings under the action of inertial force and drives the second twist piece to twist, and the second twist piece is unclamped with the shell cover, at this time the shell cover is opened by rotating relative to the shell body under the action of the twist of the first twist piece, and the doll in the interior of the shell body is exposed; in addition, after the first twist piece twists, the first twist piece no longer abuts on the telescopic connecting block, at this time the first elastic piece returns to the normal state and exits the second elastic piece, and the second elastic piece is no longer constrained by the first elastic piece, so that when the user holds the side wall of the shell body and strikes the bottom of the shell body against the table top again, the second gravity swing piece swings under the action of inertial force and drives the second elastic piece to slide to make the second elastic piece retract into the interior of the inserting column, and the unclamping between the second elastic piece and the inserting sliding groove is realized, so that the doll is rapidly ejected towards the opening direction of the shell body under the action of the elastic piece in the energy storage state; that is, the toy egg according to the present application can open the shell cover when it is struck against the table top for the first time, and can eject the doll when it is struck against the table top again, increasing the visual impact and interest when the toy egg is played. Before the shell cover is opened, the first twist piece abuts on the telescopic connecting block and makes the telescopic connecting block abut on the first elastic piece, and the first elastic piece is movably inserted into the second elastic piece, so that when the toy egg is struck for the first time, the first gravity swing piece swings under the action of inertial force, and the second gravity swing piece cannot swing due to the constraint of the second elastic piece, and the doll is not triggered to be ejected when the toy egg is struck for the first time, and only when the shell cover is opened, the first elastic piece exits the second elastic piece, and the second elastic piece and the second gravity swing piece are no longer constrained by the first elastic piece, and the doll can be ejected when the toy egg is struck again; that is, the toy egg according to the present application is ingeniously designed and has novel and interesting playing method, does not need to be provided with a trigger switch on the outer side wall of the shell body, uses the first gravity swing piece and the second gravity swing piece as hidden trigger switches, the user opens the shell cover through the egg-striking playing method, and the doll can be ejected through the egg-striking again after the shell cover is opened, greatly improving the interest and playability of the toy egg.

[0009] As an implementation form, the inner bottom of the shell is provided with a box body, the plug-in column is integrally formed in the middle of the top of the box body, the first elastic member and the second elastic member are respectively telescopically arranged in the box body, the telescopic direction of the first elastic member is perpendicular to the telescopic direction of the second elastic member, one end of the first elastic member extends out of the box body and abuts against the telescopic connecting block, the side wall of the plug-in column is provided with a notch, the upper end of the second elastic member extends into the interior of the plug-in column, and the upper end of the second elastic member is provided with a clamping block which extends out of the notch and is clamped with the plug-in sliding groove, the second elastic member is in a compressed state, and the second gravity swing member is rotatably arranged in the box body.

[0010] As an implementation form, the clamping block is provided with a first slope which is inclined towards the top of the plug-in column, the side wall of the plug-in sliding groove is provided with a clamping groove, the elastic member comprises an elastic sliding block and an elastic spring, the elastic sliding block is slidably arranged in the plug-in sliding groove, and the elastic sliding block is connected with the inner top of the plug-in sliding groove through the elastic spring; when the doll member is inserted into the plug-in column through the plug-in sliding groove, the plug-in column pushes the elastic sliding block to slide in a direction of compressing the elastic spring, and the notch of the plug-in sliding groove passes through the first slope and pushes the clamping block to extend into the interior of the plug-in column, until the elastic sliding block slides through the clamping groove, the clamping block is clamped with the clamping groove.

[0011] As an implementation form, the first elastic member comprises a first sliding block and a first spring, the first sliding block is telescopically arranged in the box body through the first spring, the second elastic member comprises a second sliding block and a second spring, the second sliding block is provided with a limiting through hole, and the second sliding block is telescopically arranged in the box body through the second spring; when the shell cover is clamped with the first twist joint, one end of the first twist joint pushes the telescopic connecting block to move, and the telescopic connecting block pushes the first elastic member to move in a direction of compressing the first spring, and one end of the first elastic member is inserted into the limiting through hole of the second sliding block; when the first twist joint is disengaged from the shell cover, the first twist joint drives the shell cover to rotate and open, the first twist joint is separated from the telescopic connecting block, and the first sliding block exits the limiting through hole under the elastic force of the first spring.

[0012] As an implementation form, the inner wall of the shell is provided with a limiting channel for the telescopic connecting block to slide, the two ends of the telescopic connecting block are respectively inclined towards the middle and provided with a second slope, one end of the first twist joint abuts against one of the second slopes, and one end of the first sliding block abuts against the other second slope.

[0013] As an implementation form, the first torsion member comprises a first torsion rod and a first torsion spring, a middle part of the first torsion rod is torsionally arranged on an inner wall of the shell through the first torsion spring, one end of the first torsion rod is connected with the shell cover, and the other end of the first torsion rod is abutted with the telescopic connecting block.

[0014] As an implementation form, the second torsion member comprises a second torsion rod and a second torsion spring, a middle part of the second torsion rod is torsionally arranged on an inner wall of the shell through the second torsion spring, one end of the second torsion rod is provided with a first clamping hook, the shell cover is provided with a second clamping hook, the first clamping hook is matched and clamped with the second clamping hook, and a side wall of the other end of the second torsion rod is abutted with the first gravity pendulum member.

[0015] As an implementation form, the first gravity pendulum member comprises a first pendulum rod and a first counterweight, a middle part of the first pendulum rod is rotatably arranged on an inner wall of the shell, a side wall of one end of the first pendulum rod is abutted with a side wall of one end of the second torsion rod which is away from the second clamping hook, the other end of the first pendulum rod is connected with the first counterweight, and the first pendulum rod is obliquely arranged on the shell.

[0016] As an implementation form, the second gravity pendulum member comprises a second pendulum rod and a second counterweight, a middle part of the second pendulum rod is rotatably arranged on the box, a side wall of one end of the second pendulum rod is abutted with the second sliding block, the other end of the second pendulum rod is connected with the second counterweight, and the second pendulum rod is obliquely arranged in the box.

[0017] As an implementation form, a bottom of the shell is a plane structure; and the shell and the shell cover jointly enclose an egg-shaped structure.

[0018] In order to better understand and implement, the present application is described in detail below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structural schematic diagram of the toy egg of the present application;

[0020] Figure 2 It is an opening schematic diagram of the toy egg of the present application;

[0021] Figure 3 It is one of the exploded schematic diagrams of the toy egg of the present application;

[0022] Figure 4 It is the second exploded schematic diagram of the toy egg of the present application;

[0023] Figure 5 It is the third exploded schematic diagram of the toy egg of the present application;

[0024] Figure 6 Figure 4 is a fourth exploded view of the toy egg of the present application;

[0025] Figure 7 Figure 5 is a fifth exploded view of the toy egg of the present application.

[0026] BRIEF DESCRIPTION OF DRAWINGS

[0027] 10, shell; 11, box; 12, plug-in post; 13, notch; 20, shell cover; 21, second clamping hook; 30, first torsion piece; 31, first torsion rod; 32, rotating shaft; 40, second torsion piece; 41, second torsion rod; 42, second torsion spring; 43, first clamping hook; 50, first gravity pendulum piece; 51, first pendulum rod; 52, first counterweight; 60, second gravity pendulum piece; 70, telescopic connecting block; 80, figurine; 90, first elastic piece; 100, second elastic piece; 101, clamping block. DETAILED DESCRIPTION

[0028] To further illustrate the embodiments, the present application provides accompanying drawings. These drawings are part of the disclosure of the present application, which mainly serve to illustrate the embodiments, and can be used to explain the operating principle of the embodiments in conjunction with the related description of the specification. With reference to these contents, those of ordinary skill in the art should be able to understand other possible implementations and advantages of the present application.

[0029] With the development of the toy industry, various toys of different styles and functions not only bring a lot of fun to people's life, but also help people relax and relax in their daily entertainment. Among them, the egg-shaped blind box toy generally has various toy pieces of different shapes inside the eggshell. The user only needs to open the eggshell to know what the hidden toy inside is. The play is simple, and the interest and playability are low.

[0030] In view of this, the present application provides a toy egg. The toy egg according to the embodiments of the present application is designed ingeniously. The user can open the shell cover by smashing the bottom of the shell body, and can make the figurine pop out by smashing the bottom of the shell body again, thereby increasing the visual impact and interest when playing with the toy egg.

[0031] Please refer to Figures 1 to 7The embodiment of the present application provides a toy egg, which comprises a shell 10, a shell cover 20, a first torsion piece 30, a second torsion piece 40, a first gravity pendulum piece 50, a second gravity pendulum piece 60, a first elastic piece 90, a second elastic piece 100, an expansion joint 70 and a figurine 80; the shell 10 is a hollow structure with an open upper end, the first torsion piece 30 and the second torsion piece 40 are respectively arranged on the two sides of the inner wall of the shell 10 in a twistable manner, the expansion joint 70 is arranged on the inner wall of the shell 10 in a slidable manner, one end of the first torsion piece 30 is connected with the inner wall of the shell cover 20, the other end of the first torsion piece 30 abuts against one end of the expansion joint 70, one end of the second torsion piece 40 is clamped with the shell cover 20, and the shell cover 20 is arranged on the open upper end of the shell 10; the first gravity pendulum piece 50 is arranged in the shell 10 in a rotatable manner, and the first gravity pendulum piece 50 abuts against the end of the second torsion piece 40 away from the shell cover 20; the inside of the shell 10 is provided with a plug-in column 12 towards the opening direction thereof, the first elastic piece 90 and the second elastic piece 100 are respectively arranged in the shell 10 in an extendable and retractable manner, one end of the first elastic piece 90 abuts against one end of the expansion joint 70, the other end of the first elastic piece 90 extends into the second elastic piece 100 in a movable manner, and the first elastic piece 90 is in a compressed state; one end of the second elastic piece 100 extends out of the plug-in column 12, the bottom of the figurine 80 is recessed to form a plug-in sliding groove, a spring member is arranged in the plug-in sliding groove in an extendable and retractable manner, the plug-in sliding groove is movably plugged into the plug-in column 12 and clamped with the second elastic piece 100, and the spring member is stored and abuts against the end of the plug-in column 12, and the second gravity pendulum piece 60 is arranged in the shell 10 in a rotatable manner and abuts against the second elastic piece 100.

[0032] In the embodiment of the present application, the bottom of the shell 10 is a planar structure, so that when the bottom of the shell 10 is hit against a table top or a ground or the like, the damage to the bottom of the shell 10 is reduced. In some embodiments, the shell 10 and the shell cover 20 jointly form an egg-shaped structure. It should be understood that the shell 10 and the shell cover 20 of the present application can be designed as an egg-shaped structure, but also can be designed as a box body or other shapes, and are not limited to the egg-shaped structure in the embodiment of the present application.

[0033] In the embodiment of the present application, the inner bottom of the shell 10 is provided with a box body 11, the plug-in column 12 is integrally formed in the middle of the top of the box body 11, the first elastic member 90 and the second elastic member 100 are respectively and telescopically arranged in the box body 11, the telescopic direction of the first elastic member 90 is perpendicular to the telescopic direction of the second elastic member 100, one end of the first elastic member 90 extends out of the box body 11 and abuts against the telescopic connecting block 70, the side wall of the plug-in column 12 is provided with a notch 13, the upper end of the second elastic member 100 extends into the interior of the plug-in column 12, and the upper end of the second elastic member 100 is provided with a clamping block 101, the clamping block 101 extends out of the notch 13 and is clamped with the plug-in sliding groove, the second elastic member 100 is in a compressed state, and the second gravity swing member 60 is rotatably arranged in the box body 11. That is to say, the plug-in column 12 is a hollow column structure, the bottom of which is connected with the interior of the box body 11, so as to facilitate the upper end of the second elastic member 100 to be inserted into the interior of the plug-in column 12.

[0034] Further, the clamping block 101 is obliquely provided with a first slope towards the top of the plug-in column 12, the side wall of the plug-in sliding groove is provided with a clamping groove, the ejecting member includes an ejecting sliding block and an ejecting spring, the ejecting sliding block is slidably arranged in the plug-in sliding groove, and the ejecting sliding block is connected with the inner top of the plug-in sliding groove through the ejecting spring; when the doll 80 is inserted into the plug-in column 12 through the plug-in sliding groove, the plug-in column 12 pushes the ejecting sliding block to slide in the direction of compressing the ejecting spring, and the notch of the plug-in sliding groove passes through the first slope and pushes the clamping block 101 to extend into the interior of the plug-in column 12, until the clamping block 101 is clamped with the clamping groove after the ejecting sliding block slides through the clamping groove. In order to facilitate the cooperation between the clamping block 101 and the plug-in sliding groove, in the embodiment of the present application, the plug-in column 12 is a square column structure, the plug-in sliding groove is a square groove structure, the ejecting sliding block is a square column structure, and the bottom of the ejecting sliding block is flush with the notch of the plug-in sliding groove, so that the ejecting sliding block does not protrude from the bottom of the doll 80, when the doll 80 is inserted into the plug-in column 12, the notch of the plug-in sliding groove of the doll 80 is aligned with the plug-in column 12 and pressed down, the ejecting sliding block moves in the direction of compressing the ejecting spring under the pushing action of the plug-in column 12, so that the plug-in sliding groove can be inserted into the plug-in column 12, and the cooperation between the first slope of the upper end of the clamping block 101 and the plug-in sliding groove enables the plug-in sliding groove to push the clamping block 101 back into the interior of the plug-in column 12 through the notch edge, until the clamping groove of the plug-in sliding groove corresponds to the clamping block 101, the clamping block 101 extends out of the plug-in column 12 and is clamped in the clamping groove, thereby clamping the doll 80 on the plug-in column 12, and the ejecting spring is in a compressed and stored state. When the clamping block 101 is separated from the clamping groove, the ejecting sliding block can quickly reset under the action of the ejecting spring and drive the doll 80 to quickly eject in the direction of the opening of the shell 10.

[0035] In the embodiment of the present application, the first elastic member 90 comprises a first sliding block and a first spring, the first sliding block is telescopically arranged in the box body 11 through the first spring, the second elastic member 100 comprises a second sliding block and a second spring, the second sliding block is provided with a limiting through hole, the second sliding block is telescopically arranged in the box body 11 through the second spring; when the shell cover 20 is clamped with the first torsion member 30, one end of the first torsion member 30 pushes the telescopic connecting block 70 to move, and the telescopic connecting block 70 pushes the first elastic member 90 to move in the direction of compressing the first spring, and one end of the first elastic member 90 is inserted into the limiting through hole of the second sliding block; when the first torsion member 30 is unclamped with the shell cover 20, the first torsion member 30 drives the shell cover 20 to rotate and open, and the first torsion member 30 is separated from the telescopic connecting block 70, and the first sliding block exits the limiting through hole under the elastic force of the first spring. Wherein, the inner wall of the shell body 10 is provided with a limiting channel for the telescopic connecting block 70 to slide, the two ends of the telescopic connecting block 70 are respectively provided with a second slope towards the middle, one end of the first torsion member 30 abuts against one of the second slopes, and one end of the first sliding block abuts against the other second slope. That is to say, the telescopic connecting block 70 of the embodiment of the present application cooperates with the first elastic member 90 and the first torsion member 30, when the first torsion member 30 drives the shell cover 20 to twist and open, the first torsion member 30 no longer exerts pressure on the telescopic connecting block 70, so that the first sliding block can exit the second sliding block under the elastic force of the first spring, thereby realizing the unlocking of the second sliding block, so that the second sliding block can be unclamped with the plug-in sliding groove.

[0036] Specifically, the first torsion member 30 comprises a first torsion rod 31 and a first torsion spring, the middle part of the first torsion rod 31 is torsionally arranged on the inner wall of the shell 10 through the first torsion spring, one end of the first torsion rod 31 is connected with the shell cover 20, and the other end of the first torsion rod 31 abuts against the telescopic connecting block 70. Wherein, the middle part of the first torsion rod 31 is rotatably arranged on the inner wall of the shell 10 through the rotating shaft 32, the first torsion spring is movably sleeved on the rotating shaft 32, one end of the first torsion spring is connected with the first torsion rod 31, and the other end of the first torsion spring is connected with the inner wall of the shell 10. In addition, the second torsion member 40 comprises a second torsion rod 41 and a second torsion spring 42, the middle part of the second torsion rod 41 is torsionally arranged on the inner wall of the shell 10 through the second torsion spring 42, one end of the second torsion rod 41 is provided with a first clamping hook 43, the shell cover 20 is provided with a second clamping hook 21, the first clamping hook 43 is clamped and connected with the second clamping hook 21 in cooperation, and the side wall of the other end of the second torsion rod 41 abuts against the first gravity pendulum member 50. Wherein, the inner wall of the shell 10 is respectively provided with convex columns for movably sleeving the second torsion rod 41 and the first gravity pendulum member 50, the first gravity pendulum member 50 comprises a first pendulum rod 51 and a first counterweight 52, the middle part of the first pendulum rod 51 is rotatably arranged on the inner wall of the shell 10, the side wall of one end of the first pendulum rod 51 abuts against the side wall of the end of the second torsion rod 41 away from the second clamping hook 21, the other end of the first pendulum rod 51 is connected with the first counterweight 52, and the first pendulum rod 51 is obliquely arranged on the shell 10. In this way, when the user plays the egg-breaking game, the bottom of the toy egg contacts the table surface or other ground, and the first pendulum rod 51 swings under the action of gravity inertia, at this time, the first pendulum rod 51 pushes the second torsion rod 41 to twist, so that the second torsion rod 41 is uncoupled from the shell cover 20, thereby realizing the unlocking of the shell cover 20, so as to facilitate the rotation of the shell cover 20 driven by the first torsion member.

[0037] Further, the second gravity pendulum member 60 comprises a second pendulum rod and a second counterweight, the middle part of the second pendulum rod is rotatably arranged on the box body 11, the side wall of one end of the second pendulum rod abuts against the second sliding block, the other end of the second pendulum rod is connected with the second counterweight, and the second pendulum rod is obliquely arranged in the box body 11. That is, when the first sliding block exits the second sliding block, the second sliding block is no longer constrained by the first sliding block, at this time, when the user breaks the egg again, the second pendulum rod swings under the action of gravity inertia, thereby driving the second sliding block to move in the direction of compressing the second spring and making the clamping block 101 of the second sliding block uncoupled from the clamping groove of the insertion sliding groove, so as to realize the unlocking of the doll 80.

[0038] Therefore, the toy egg according to the present application, the shell cover 20 is twistably arranged on the shell body 10 through the first twist piece 30 and is clamped with the second twist piece 40 so that the shell cover 20 can be arranged on the open upper end of the shell body 10, the second twist piece 40 is abutted with the first gravity swing piece 50, in this way, when the user holds the side wall of the shell body 10 and hits the bottom of the shell body 10 to the table, the first gravity swing piece 50 is swung by the inertial force and drives the second twist piece 40 to twist and makes the second twist piece 40 be unclamped with the shell cover 20, at this time, the shell cover 20 is opened by rotating compared with the shell body 10 under the action of the twist of the first twist piece 30, and then the doll 80 in the inside of the shell body 10 is exposed, in addition, after the first twist piece 30 is twisted, the first twist piece 30 no longer abuts on the telescopic connecting block 70, at this time, the first elastic piece 90 returns to the normal state and exits the second elastic piece 100, and then the second elastic piece 100 is no longer constrained by the first elastic piece 90, when the user holds the side wall of the shell body 10 and hits the bottom of the shell body 10 to the table again, the second gravity swing piece 60 is swung by the inertial force and drives the second elastic piece 100 to slide to make the second elastic piece 100 retract into the inside of the plug-in column 12, and then the unclamping between the second elastic piece 100 and the plug-in sliding groove is realized, in this way, the doll 80 is quickly ejected to the opening direction of the shell body 10 under the action of the elastic piece in the energy storage state, that is to say, the toy egg according to the present application can open the shell cover 20 when hitting the table for the first time, and can eject the doll 80 when hitting the table again, which increases the visual impact and interestingness when playing the toy egg, wherein, before opening the shell cover 20, the first twist piece 30 abuts on the telescopic connecting block 70 and makes the telescopic connecting block 70 abut on the first elastic piece 90, and then the first elastic piece 90 is movably inserted into the second elastic piece 100, in this way, when hitting the toy egg for the first time, the first gravity swing piece 50 is swung by the inertial force, and the second gravity swing piece 60 cannot be swung due to being constrained by the second elastic piece 100, and then it is ensured that the doll 80 will not be triggered to be ejected when hitting the toy egg for the first time, only when the shell cover 20 is opened, the first elastic piece 90 exits the second elastic piece 100, and then the second elastic piece 100 and the second gravity swing piece 60 are no longer constrained by the first elastic piece 90, and the doll 80 can be ejected when hitting the toy egg again, that is to say, the toy egg according to the present application is ingeniously designed and has novel and interesting playing method, without needing to arrange the trigger switch on the outside wall of the shell body 10, the first gravity swing piece 50 and the second gravity swing piece 60 are used as hidden trigger switches, the user opens the shell cover 20 by hitting the egg, and the doll 80 can be ejected by hitting the egg again after the shell cover 20 is opened, which greatly improves the interestingness and playability of the toy egg.

[0039] In the description of the application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "left", "right", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the application.

[0040] The above examples only express several embodiments of the application, and the description is more specific and detailed, but it cannot be understood as limiting the scope of the application toy egg. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the application, a number of modifications and improvements can be made, which are within the scope of the application.

Claims

1. A toy egg, characterized in that: Includes a shell, a shell cover, a first twisted connector, a second twisted connector, a first gravity pendant, a second gravity pendant, a first elastic component, a second elastic component, a telescopic connecting block, and a doll; The housing is a hollow structure with an open top. The first and second twisting members are respectively rotatably disposed on both sides of the inner wall of the housing. The telescopic connecting block is slidably disposed on the inner wall of the housing. One end of the first twisting member is connected to the inner wall of the shell cover, and the other end of the first twisting member abuts against one end of the telescopic connecting block. One end of the second twisting member is engaged with the shell cover. The shell cover is disposed on the upper part of the opening of the housing. The first gravity pendulum is rotatably disposed in the housing, and the first gravity pendulum abuts against the end of the second twisting member away from the shell cover. The housing has a plug-in post inside facing its opening. The first elastic member and the second elastic member are telescopically disposed in the housing. One end of the first elastic member abuts against one end of the telescopic connecting block, and the other end of the first elastic member extends movably into the second elastic member, and the first elastic member is in a compressed state. One end of the second elastic member extends out of the plug-in post. The bottom of the doll is recessed to form a plug-in groove. A catapult is telescopically disposed in the plug-in groove. The plug-in groove is movably inserted into the plug-in post and engages with the second elastic member. The catapult stores energy and abuts against the end of the plug-in post. The second gravity pendulum is rotatably disposed in the housing, and the second gravity pendulum abuts against the second elastic member.

2. The toy egg according to claim 1, characterized in that: The inner bottom of the housing is provided with a box body, and the plug-in post is integrally formed in the middle of the top of the box body. The first elastic member and the second elastic member are respectively telescopically disposed in the box body, and the telescopic direction of the first elastic member is perpendicular to the telescopic direction of the second elastic member. One end of the first elastic member extends out of the box body and abuts against the telescopic connecting block. The side wall of the plug-in post is provided with a notch. The upper end of the second elastic member extends into the interior of the plug-in post, and the upper end of the second elastic member is provided with a locking block. The locking block extends out of the notch and engages with the plug-in sliding groove. The second elastic member is in a compressed state, and the second gravity pendulum is rotatably disposed in the box body.

3. The toy egg according to claim 2, characterized in that: The locking block is inclined with a first ramp towards the top of the insertion post, and a slot is provided on the side wall of the insertion slide. The ejector includes an ejector slider and an ejector spring. The ejector slider is slidably disposed in the insertion slide and is connected to the inner top of the insertion slide through the ejector spring. When the doll is inserted into the insertion post through the insertion slide, the insertion post pushes the ejector slider to slide in the direction of compressing the ejector spring, and the opening of the insertion slide passes through the first ramp and pushes the locking block into the interior of the insertion post until the ejector slider slides past the slot, at which point the locking block engages with the slot.

4. The toy egg according to claim 2, characterized in that: The first elastic element includes a first slider and a first spring. The first slider is telescopically disposed in the housing via the first spring. The second elastic element includes a second slider and a second spring. The second slider is provided with a limiting through hole and is telescopically disposed in the housing via the second spring. When the cover is engaged with the first twisting member, one end of the first twisting member pushes the telescopic connecting block to move, and the telescopic connecting block pushes the first elastic element to move in the direction of compressing the first spring, so that one end of the first elastic element is inserted into the limiting through hole of the second slider. When the first twisting member is disengaged from the cover, the first twisting member drives the cover to rotate and open, and the first twisting member separates from the telescopic connecting block. The first slider exits the limiting through hole under the elastic force of the first spring.

5. The toy egg according to claim 4, characterized in that: The inner wall of the housing is provided with a limiting channel for the telescopic connecting block to slide. The two ends of the telescopic connecting block are respectively provided with a second slope inclined towards the middle. One end of the first twisting member abuts against one of the second slopes, and one end of the first slider abuts against the other second slope.

6. The toy egg according to claim 1, characterized in that: The first torsion joint includes a first torsion rod and a first torsion spring. The middle part of the first torsion rod is torsionally disposed on the inner wall of the housing through the first torsion spring. One end of the first torsion rod is connected to the housing cover, and the other end of the first torsion rod abuts against the telescopic connecting block.

7. The toy egg according to claim 1, characterized in that: The second torsion member includes a second torsion rod and a second torsion spring. The middle part of the second torsion rod is rotatably disposed on the inner wall of the housing through the second torsion spring. A first hook is provided at one end of the second torsion rod, and a second hook is provided on the housing cover. The first hook and the second hook are engaged and locked together. The side wall of the other end of the second torsion rod abuts against the first gravity pendulum.

8. The toy egg according to claim 7, characterized in that: The first gravity pendulum includes a first pendulum rod and a first counterweight. The middle part of the first pendulum rod is rotatably disposed on the inner wall of the housing. The side wall of one end of the first pendulum rod abuts against the side wall of the end of the second torsion rod away from the second hook. The other end of the first pendulum rod is connected to the first counterweight, and the first pendulum rod is inclinedly disposed on the housing.

9. The toy egg according to claim 4, characterized in that: The second gravity pendulum includes a second pendulum rod and a second counterweight. The middle part of the second pendulum rod is rotatably mounted on the box body. The side wall of one end of the second pendulum rod abuts against the second slider. The other end of the second pendulum rod is connected to the second counterweight, and the second pendulum rod is inclinedly mounted in the box body.

10. The toy egg according to claim 1, characterized in that: The bottom of the shell is a planar structure; the shell and the cover together form an egg-shaped structure.