Touch ejection toy

By using a modular assembly structure design and incorporating components such as launch platforms, launchers, and contact parts, the safety and stability issues of toy cars are resolved, while enhancing the fun and interactivity of the toys.

CN223969473UActive Publication Date: 2026-03-06SHANTOU CHAOBOLI TOYS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing toy cars have limited remote control movement and steering functions, lack interactive fun, and their small structural parts are prone to collisions, posing safety hazards. Furthermore, their launch mechanisms have low stability.

Method used

The modular assembly structure design uses components such as a catapult, catapult parts, contact parts, and push-off protrusions to achieve a stable connection between the catapult doll and the toy car, avoiding the exposure of small structures. Elastic parts and snap-fit ​​structures are used to ensure safety and stability.

Benefits of technology

It achieves a high level of safety, easy assembly, and good stability in toys through a touch-and-launch effect, enhancing the fun and interactivity of toys and avoiding the risk of bumps and knocks from small structures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a touch ejection toy which comprises a toy main body, an ejection doll is detachably connected to the toy main body, the toy main body comprises an upper shell and a lower shell which are spliced and matched, an ejection table is arranged on the upper shell, an ejection piece is slidably embedded in the ejection table, a touch piece is arranged on the side portion of the lower shell, and the ejection doll is detachably connected to the toy main body. The catapulting piece and the touch piece are detachably and elastically matched and clamped along one end of the opposite edge, a positioning sleeve cavity is formed in the bottom of the catapulting doll, a pushing and abutting protruding column is arranged at the bottom of the positioning sleeve cavity in an extending mode, and the catapulting doll is arranged on the catapulting table in a sleeved mode through the positioning sleeve cavity. The ejection piece and the touch piece are connected in an abutting mode through the pushing and abutting protruding column to achieve elastic clamping fit connection, but when the touch piece is collided, the ejection doll achieves ejection separation in the vertical direction of the toy body through the guiding and ejection effects between the pushing and abutting protruding column and the ejection piece, and the toy is rich in interestingness of interactive playing.
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Description

Technical Field

[0001] This application relates to the technical field of interactive toys, and more specifically, to a touch-launched toy. Background Technology

[0002] With the continuous progress of society, toys have become a common part of children's daily lives. Among them, toy cars are especially popular among children. However, the current limited remote control movement and steering functions of toy cars cannot better meet children's more urgent need for fun and interactive play. They lack other interesting interactive play functions and cannot fully stimulate children's greater interest and creativity.

[0003] For example, a bumper car disclosed in announcement number CN204147543U has a locking hole and an ejection hole on the top surface of the car body. A retractable locking tongue that can move left and right is installed on the side wall of the locking hole. The driver doll has a positioning hook on its buttocks. The top of the ejection rod extends through the ejection hole to the top of the car body. The toy bumper car can collide with other objects, and the driver doll may be ejected after a collision, thereby increasing the fun and playability of the toy car. However, its shortcomings are that the positioning hook and locking tongue structure protruding on the surface of the driver doll and the car body are prone to bumps and scratches to children, resulting in low safety during play. At the same time, the structural connection between the locking mechanism and the ejection mechanism is relatively complex and can easily constrain each other, resulting in low stability of the ejection action of the driver doll. Summary of the Invention

[0004] In view of the above-mentioned technical problems, the purpose of this application is to overcome the above-mentioned technical defects and provide a touch-launching toy that adopts a modular assembly structure design to avoid the exposure of small structural parts, thereby making the play safe and the launch structure connection between the launching doll and the toy car body highly stable.

[0005] Based on the above technical objectives, this application achieves its objectives through the following technical solutions:

[0006] A touch-launching toy includes a toy body, which comprises an upper shell and a lower shell that are joined together. The upper shell is provided with a launch platform, and a launcher is slidably embedded in the launch platform. The bottom of the launcher is connected to the end face of the lower shell through a first elastic element. A touch element is provided on the side of the lower shell, and the touch element is connected to the inner side of the lower shell through a second elastic element. The launcher and the touch element are detachably engaged and snapped together along one end.

[0007] The bottom of the ejector doll is provided with a positioning cavity, and a pushing protrusion extends from the bottom of the positioning cavity;

[0008] The ejector doll is positioned on the ejection platform by a positioning sleeve cavity, and the ejector and the contacting part are connected by a pusher protrusion to achieve an elastic snap-fit ​​connection.

[0009] Optionally, the bottom of the ejector is provided with a locking buckle, the end face of the lower housing is provided with a retaining through hole, and the end of the contact member near the retaining through hole is provided with a locking groove. The locking buckle can pass through the retaining through hole and detachably engage with the locking groove.

[0010] Optionally, the lower housing end face is provided with a positioning post corresponding to the bottom of the ejector, and the ejector is provided with a cylindrical cavity along the bottom. The first elastic element is abutted and connected between the positioning post and the cylindrical cavity, and the positioning post can be inserted through the cylindrical cavity.

[0011] Optionally, a push rod extends from the inner side of the contact member, and two contact members are provided, which are respectively provided on opposite sides of the lower housing. One of the push rods is provided with the locking groove, and a linkage member is tractably connected between the two push rods. The contact members are tractably linked to each other through the linkage member.

[0012] Optionally, the inner side of the contact member is provided with a positioning sleeve, the inner side of the lower housing end face is provided with an abutting block, and the second elastic member is abuttingly connected between the positioning sleeve and the abutting block.

[0013] Optionally, the inner side of the launch platform is formed with a launch channel and a limiting channel. The elastic element is slidably connected to the limiting channel along the bottom side and slidably connected between the opposite ends of the launch channel along the top side. The launch doll is inserted into the launch channel by pushing against the protrusion.

[0014] Optionally, the limiting channel is provided with a limiting groove on its side, and the ejector is provided with a corresponding limiting slider on its side, the limiting slider being slidably engaged with the limiting groove.

[0015] Optionally, the ejector doll includes a body shell and two head shells that are spliced ​​together. The positioning cavity and the pushing protrusion are vertically located at the bottom of the body base, and the two head shells are horizontally spliced ​​and connected to the top of the body base.

[0016] Optionally, the lower housing has a connecting recess at the top and an inner cavity at the bottom, and the upper housing is positioned and spliced ​​onto the end face of the connecting recess.

[0017] Optionally, the upper housing includes a front housing and a driver housing, the front housing and the driver housing are respectively positioned and spliced ​​on the end face of the connecting recess along the front-rear direction, and the ejection platform is located on the top of the driver housing.

[0018] Optionally, it also includes a vehicle chassis, with the lower housing covering the top of the vehicle chassis along the bottom. The top of the vehicle chassis is provided with a steering wheel assembly and a directional wheel assembly in the front-rear direction, and the steering wheel assembly and the directional wheel assembly are electrically connected to each other through a control panel.

[0019] Through the above technical solution, this application can achieve the following beneficial effects:

[0020] (1) The ejector doll is positioned and connected to the ejector platform of the upper shell through the positioning cavity at the bottom, so that the position is fixed and it is not easy to fall. The ejector part inside the ejector platform slides through the push protrusion and is elastically engaged with one end of the contact part on the inner side of the lower shell end face. When the end of the contact part located on the side of the lower shell is hit by an external force, the connection between the ejector part and the contact part is released. The ejector part slides upward through the elastic extension of the first elastic element and is guided by the push protrusion to achieve ejection and separation of the ejector doll in the vertical direction.

[0021] (2) The main body of the toy adopts a modular assembly structure design. The main body of the toy is mainly composed of three parts: the upper shell, the lower shell, and the chassis, which are connected together. The catapult is connected to the inside of the upper shell, the contact part is connected to the inside of the lower shell, and the steering, directional wheel set and related electrical connection parts are installed on the top side of the chassis. All structural connection parts are located inside the main body of the toy, avoiding the exposure of small structural connection parts, which ensures high safety for children to play with; at the same time, it also achieves high connection stability of each structure, making assembly and disassembly convenient.

[0022] (3) The catapult doll consists of a body shell and two head shells. The positioning cavity and the pushing protrusion are integrated at the bottom of the body shell in the vertical direction. The two head shells are detachably connected to the top of the body shell in the horizontal direction. During the play, you can interact and play by replacing the head shells with different images. Attached Figure Description

[0023] Figure 1 This is a three-dimensional structural diagram of the toy body according to a specific embodiment of this application;

[0024] Figure 2 This is another three-dimensional structural diagram of the toy body according to a specific embodiment of this application.

[0025] Figure 3 This is a schematic cross-sectional view of the toy body in both directions according to a specific embodiment of this application.

[0026] Figure 4 This is a schematic cross-sectional view of the toy body in the front-back direction according to a specific embodiment of this application.

[0027] Figure 5 This is an exploded view of the toy body structure according to a specific embodiment of this application:

[0028] Figure 6 This is a schematic diagram of the structural connection between the inner sides of the upper and lower shells in a specific embodiment of this application;

[0029] Figure 7 This is an exploded view of the shell structure according to a specific embodiment of this application;

[0030] Figure 8 This is an exploded view of the shell structure according to a specific embodiment of this application;

[0031] Figure 9 This is an exploded view of the structure of the catapult doll according to a specific embodiment of this application;

[0032] Figure 10 This is an exploded view of the vehicle chassis structure according to a specific embodiment of this application;

[0033] Reference numerals: 1. Toy body; 2. Launching doll; 11. Upper shell; 12. Lower shell; 13. Chassis; 14. Launching component; 15. Contact component; 16. First elastic component; 17. Second elastic component; 110. Launching platform; 20. Positioning cavity; 201. Pushing protrusion; 141. Locking buckle; 121. Holding through hole; 150. Push rod; 151. Locking groove; 122. Positioning post; 142. Cylinder cavity; 152. Positioning sleeve; 153. Linkage component; 123. Abutment block; 111. Launching channel; 112. Limiting channel; 143. Limiting slider; 113. Limiting groove; 21. Body housing; 22. Head housing; 120. Connecting recess; 101. Head housing; 102. Seat housing; 131. Steering wheel assembly; 132. Directional wheel assembly; 133. Control panel; 134. Battery compartment; 135. Control switch; 1311. Lateral swing arm; 1312. Steering swing arm; 1313. Steering motor; 1321. Drive shaft; 1322. Transmission gear set; 1323. Drive motor. Detailed Implementation

[0034] The present invention will be further described in detail below with reference to the accompanying drawings, so that those skilled in the art can better understand and implement the present invention. However, the embodiments described are not intended to limit the present invention.

[0035] Combined with appendix Figure 1-10As shown, this application provides a touch-launching toy, including a toy body 1, on which a launcher doll 2 is detachably connected. The toy body 1 includes an upper shell 11 and a lower shell 12 that are interlocked and connected in the vertical direction. The upper shell 11 is provided with a launch platform 110. A launcher 14 is slidably and limitedly embedded in the launch platform 110. The launcher 14 is elastically abutted and connected to the end face of the lower shell 12 along its bottom through a first elastic member 16. A touch member 15 is provided on the side of the lower shell 12. The touch member 15 passes through the inner side of a second elastic member 17 at one end and is elastically slidably connected to the inner side of the lower shell 12 through the second elastic member 17. The launcher 14 passes through the end face of the lower shell 12 along its bottom side and is detachably and elastically snapped and connected to the touch member 15 along one end. In this embodiment, the first elastic member 16 and the second elastic member 17 are preferably springs.

[0036] The bottom of the ejector doll 2 has a positioning cavity 20. A pusher protrusion 201 extends vertically from the bottom end face of the positioning cavity 20. The ejector doll 2 can be fixedly positioned on the ejector platform 110 by fitting it into the positioning cavity 20. The inner side of the positioning cavity 20 is adapted to the outer side of the ejector platform 110. The pusher protrusion 201 is inserted into the inner side of the ejector platform 110 to achieve an elastic snap-fit ​​connection between the ejector component 14 and the contact component 15.

[0037] Furthermore, a locking buckle 141 is provided on one side of the bottom of the ejector 14 in a vertical direction, and a corresponding retaining through hole 121 is provided on the end face of the lower housing 12. A push rod 150 is provided on the inner side of the contact member 15. One end of the push rod 150 is connected to the contact member 15, and a locking groove 151 is provided on the side of the other end. The locking buckle 141 can pass through the retaining through hole 121 and be detachably and elastically engaged with the locking groove 151.

[0038] In actual use, the bottom of the ejector doll 2 is positioned and connected to the ejector table 110 through the positioning cavity 20. The pushing protrusion 201 abuts against the ejector component 14 and slides to the end face of the lower housing 12. The locking buckle 141 passes through the locking through hole 121 and the locking groove 151 and is elastically engaged with each other, so that the first elastic element 16 retracts and stores force. When the contact element 15 located on the side of the lower housing 12 is hit by an external force, the locking buckle 141 and the locking groove 151 are disconnected. The ejector component 14 slides upward through the extension of the first elastic element 16. The ejector doll 2 is ejected and separated in the vertical direction by the guiding action of the pushing protrusion 201.

[0039] Furthermore, the lower housing 12 end face is provided with a positioning post 122 corresponding to the bottom of the ejector 14. The ejector 14 has a cylindrical cavity 142 opened along the bottom. One end of the first elastic member 16 is fixedly sleeved on the positioning post 122, and the other end abuts against the inner end face of the cylindrical cavity 142. When the ejector 14 and the contact member 15 are elastically engaged, the positioning post 122 and the first elastic member 16 are both located between the inner sides of the cylindrical cavity 142 of the ejector 14.

[0040] Furthermore, two contact members 15 are provided, respectively located on opposite sides of the lower housing 12. A locking groove 151 is formed on the push rod 150 of one of the contact members 15. A linkage member 153 is tractably connected between the push rods 150 of the two contact members 15. The linkage member 153 is rotatably positioned and connected to the inner side of the end face of the lower housing 12. Linkage arms extend from opposite sides of the linkage member 153. The linkage member 153 is tractably connected to the ends and / or sides of the two push rods 150 via the linkage arms. The components 15 are interconnected and can be driven by the linkage component 153. The inner side of the contact component 15 is also provided with a positioning sleeve 152. The positioning sleeve 152 extends in the same direction as the two ends of the push rod 150. The inner side of the end face of the lower housing 12 is provided with an abutment block 123. One end of the second elastic component 17 passes through the positioning sleeve 152 and abuts against the inner end face of the positioning sleeve 152. The other end is abutted against the abutment block 123, so that the contact component 15 can be elastically reset and connected to the side of the lower housing 12.

[0041] Furthermore, the top end face of the ejection platform 110 is provided with an ejection port, and an ejection channel 111 and a limiting channel 112 are sequentially formed along the vertical direction on the inner side of the ejection platform 110. The ejector component 14 is slidably engaged with the limiting channel 112 along its bottom. Specifically, the limiting channel 112 is provided with limiting grooves 113 on opposite sides, and the bottom of the ejector component 14 is provided with limiting sliders 143 on opposite sides. The limiting sliders 143 are slidably engaged with the limiting grooves 113. The ejector component 14 is slidably engaged with the opposite ends of the ejection channel 111 along its top. The ejector doll 2 can be inserted through the ejection port and connected to the ejection channel 111 by pushing the protrusion 201. The ejector component 14 can be positioned and connected to the limiting channel 112 by elastic engagement with the locking buckle 141 and the locking groove 151.

[0042] Furthermore, the ejector doll 2 includes a body shell 21 and two head shells 22 that are interlocked. The bottom of the body shell 21 has an opening. The positioning cavity 20 and the pushing protrusion 201 are integrally provided on the inner side of the bottom of the body shell 21. The two head shells 22 are interlocked and connected to the top of the body shell 21 in a horizontal direction. The two head shells 22 are interlocked and connected to each other in a pin and socket structure along their inner sides. Specifically, a tongue is provided on the top of the body shell 21 in a horizontal direction, and a corresponding slot is provided on the bottom inner side of the head shell. The tongue and the slot are interlocked and connected in a horizontal direction, so that the head shells 22 and the body shell 21 are interlocked and connected as one unit.

[0043] Furthermore, the upper housing 11 includes a front housing 101 and a driver housing 102. The lower housing 12 has a connecting recess 120 along the top and an inner cavity along the bottom. The front housing 101 and the driver housing 102 are sequentially positioned and spliced ​​on the end face of the connecting recess 120 in the front-rear direction. The driver housing 102 has a backrest and a seat. The seat is recessed between the backrest and the front housing 101. The ejection platform 110 protrudes from the seat. The vertical height of the ejection platform 110 is lower than the height of the front housing 101 or the backrest, making it less prone to collision damage.

[0044] Furthermore, it also includes a vehicle chassis 13, with a lower housing 12 covering the top of the vehicle chassis 13 along the bottom inner cavity. The top of the vehicle chassis 13 is provided with a steering wheel assembly 131, a directional wheel assembly 132, and a control panel 133 in the front-rear direction. The control panel 133 is provided with a remote control signal receiving unit. The bottom of the vehicle chassis 13 is provided with a battery compartment 134 and a control switch 135 module. The steering wheel assembly 131, the directional wheel assembly 132, the battery compartment 134, and the control switch 135 are electrically connected to each other through the control panel 133.

[0045] Specifically, the steering wheel assembly 131 includes a front wheel, a steering swing arm 1312, a lateral swing arm 1311, and a steering motor 1313. The steering motor 1313 is electrically connected to the control panel 133 via wires. The power output end of the steering motor 1313 is connected to the middle part of the lateral swing arm 1311 via a gear and rack structure. The steering swing arm 1312 is rotatably positioned at both ends of the lateral swing arm 1311. One end of the steering swing arm 1312 is driven to rotate by the lateral swing arm 1311. The front wheel is rotatably positioned at the other end of the steering swing arm 1312 away from the lateral swing arm 1311.

[0046] Specifically, the directional wheel assembly 132 includes a rear wheel, a drive shaft 1321, a transmission gear set 1322, and a drive motor 1323. The drive motor 1323 is electrically connected to the control panel 133 via wires. The power output end of the drive motor 1323 and the drive shaft 1321 are mutually meshed and driven through the transmission gear set 1322.

[0047] This specific embodiment is a preferred embodiment of the present utility model, and is not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape and principle of the present utility model should be included within the scope of protection of the present utility model.

Claims

1. A touch and shoot toy, comprising a toy body, and a shooting doll detachably connected to the toy body, characterized in that: the toy body comprises an upper shell and a lower shell which are detachably connected, the upper shell is provided with a shooting platform, the shooting platform is slidably embedded with a shooting member, the bottom of the shooting member is connected to the end face of the lower shell through a first elastic member, the side of the lower shell is provided with a touch member, the touch member is connected to the inner side of the lower shell through a second elastic member, the shooting member and the touch member are detachably connected along one end; the bottom of the shooting doll is provided with a positioning sleeve cavity, the bottom of the positioning sleeve cavity is extended to form a pushing protruding column; wherein the shooting doll is positioned in the shooting platform through the positioning sleeve cavity, and the pushing protruding column is in elastic connection with the shooting member and the touch member. The bottom of the shooting member is extended to form a clamping buckle, the end face of the lower shell is provided with a clamping through hole, one end of the touch member near the clamping through hole is provided with a clamping groove, and the clamping buckle is detachably connected to the clamping groove through the clamping through hole. The end face of the lower shell is provided with a positioning column corresponding to the bottom of the shooting member, the bottom of the shooting member is provided with a barrel cavity, the first elastic member is connected between the positioning column and the barrel cavity, and the positioning column can be inserted into the barrel cavity. The inner side of the touch member is extended to form a push rod, the touch member is provided with two push rods which are arranged on opposite sides of the lower shell, one of the push rods is provided with the clamping groove, and the two push rods are drivingly connected with a linkage member, and the touch members are drivingly connected with each other through the linkage member.

2. A bump-shoot toy according to claim 1, wherein: The inner side of the shooting platform is formed with a shooting channel and a limiting channel, the elastic member is slidably connected between the limiting channel and the limiting channel, and the elastic member is slidably connected between the two ends of the shooting channel.

3. A touch and shoot toy according to claim 1 or 2, wherein The side of the limiting channel is provided with a limiting sliding groove, and the side of the shooting member is provided with a limiting sliding block which is slidably connected between the limiting sliding grooves.

4. A touch and shoot toy according to claim 2, wherein The shooting doll comprises a body shell and two head shells which are detachably connected, the positioning sleeve cavity and the pushing protruding column are arranged on the bottom of the body shell in the vertical direction, and the two head shells are detachably connected to the top of the body shell in the horizontal direction.

5. The touch and shoot toy of claim 1, wherein: The lower shell is formed with a connecting recess on the top and an inner cavity on the bottom, and the upper shell is positioned and connected to the end face of the connecting recess.

6. A bump-shoot toy according to claim 5, wherein: The upper shell comprises a car head shell and a seat shell, the car head shell and the seat shell are positioned and connected to the end face of the connecting recess in the front-rear direction, and the shooting platform is arranged on the seat shell.

7. The touch and shoot toy of claim 1, wherein: Further comprising a car chassis, the lower shell is arranged on the top of the car chassis, the car chassis is provided with a steering wheel group and a directional wheel group in the front-rear direction, and the steering wheel group and the directional wheel group are electrically connected through a control panel.

8. The touch and shoot toy of claim 1, wherein, ​ 9. A bump-shoot toy according to claim 8, wherein ​ 10. A touch and shoot toy according to claim 1 or 8, wherein: ​

Citation Information

Patent Citations

  • Toy bumper car

    CN204147543U