A puzzle rock-paper-scissors toy

By combining the rock-paper-scissors game with a candy reward system in a rock-paper-scissors toy, and utilizing a random plug-in design and an instant feedback mechanism, the problem of reduced randomness in existing rock-paper-scissors toys is solved, enhancing the game's fun and sense of accomplishment, making it suitable for children.

CN224573195UActive Publication Date: 2026-07-31RAOPING HUIXIN TOYS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
RAOPING HUIXIN TOYS CO LTD
Filing Date
2025-07-14
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing rock-paper-scissors game toys, after repeated play, allow children to easily grasp the pattern of their punches, reducing the randomness of the game, diminishing its fun, and affecting the overall experience.

Method used

Design an educational rock-paper-scissors toy that combines the rock-paper-scissors game with a candy reward system. Through the random insertion slot design of the rock-paper-scissors pressing bracket, the candy is released only when the operation is correct and restricted when the operation is incorrect, forming instant feedback and increasing the challenge and sense of accomplishment.

Benefits of technology

By incorporating randomness and providing instant feedback, the game enhances player engagement and a sense of accomplishment, maintains interest, is suitable for children to develop their reaction skills, and improves their gaming experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an educational rock-paper-scissors toy, specifically relating to the field of rock-paper-scissors toy technology. It includes a game toy box, a rock-paper-scissors actuation component, and a rock-paper-scissors pressing bracket. The game toy box has a rock-paper-scissors button on its side, a display cover above the button, an actuation component on its side, a candy box on top, a candy dispensing channel on the side of the button, and a positioning display piece inside the display cover. This design creates an instant feedback mechanism; the feeling of limitation during incorrect operation contrasts with the candy reward after correct operation, increasing the challenge of the game and reinforcing the player's sense of accomplishment through material rewards. This keeps players interested through repeated interaction, making it especially suitable for children to develop their reaction skills while enjoying a pleasurable experience.
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Description

Technical Field

[0001] This utility model relates to the field of rock-paper-scissors toys, and more specifically, to an educational rock-paper-scissors toy. Background Technology

[0002] Rock-Paper-Scissors toys are interactive toys designed around the traditional game of rock-paper-scissors. They use physical devices to enable randomized or fair competition based on hand gestures, combining entertainment and stress relief.

[0003] For example, CN110399038A discloses a gesture recognition glove, a gesture recognition method, and a rock-paper-scissors toy, comprising a power supply, a processor, and several finger rings. Each finger ring has a conductive layer on its outer surface. The finger rings are connected to the processor via wires, and the power supply powers the processor. Each finger ring is worn on one finger, and the processor identifies the state of contact or separation between the conductive layers of the finger rings. This device has a simple structure and low cost, making it particularly suitable for use in simple scenarios such as children's toys. It can train children to master the rock-paper-scissors game and gain a basic understanding of human-computer interaction, making it a good educational and entertaining tool.

[0004] Existing rock-paper-scissors game toys have structural problems in their design, making their inherent randomness manipulable. After repeated play, children can easily grasp the pattern of their punches, eventually causing the game's fun to gradually dissipate. This controllable randomness creates a vicious cycle as the number of playtimes accumulates. Once the pattern is mastered, each game becomes a deterministic one, negatively impacting the child's experience.

[0005] Therefore, an educational rock-paper-scissors toy is proposed to address the above problems. Utility Model Content

[0006] In order to overcome the above-mentioned defects of the prior art, the present invention provides an educational rock-paper-scissors toy to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution: an educational rock-paper-scissors toy, comprising a toy box, a rock-paper-scissors actuation component, and a rock-paper-scissors pressing bracket. A rock-paper-scissors button is provided on the side of the toy box, a display cover is provided above the button, the actuation component is provided on the side of the toy box, a candy container is provided above the box, a candy dispensing channel is provided on the side of the button, a positioning display piece is provided inside the display cover, the positioning display piece is connected to the pressing bracket, and a drive positioning component is provided on the side of the pressing bracket.

[0008] Preferably, the rock-paper-scissors pressing bracket includes a first pressing bracket, a second pressing bracket is provided on the side of the first pressing bracket, a third pressing bracket is provided on the side of the second pressing bracket, and a plug-in bracket is provided at the top edge of the first pressing bracket, the second pressing bracket and the third pressing bracket.

[0009] Preferably, the edges of the first pressing bracket, the second pressing bracket, and the third pressing bracket are all provided with snap rings, and a pressing rod is installed below the first pressing bracket, the second pressing bracket, and the third pressing bracket. A pressing return spring is connected inside each snap ring.

[0010] Preferably, the drive positioning assembly includes a first locking housing, a second locking housing, and a gear shaft, wherein the second locking housing is inserted into the side of the first locking housing, and the gear shaft is provided on the side of the second locking housing.

[0011] Preferably, the outer diameter surface of the first locking housing is respectively provided with a first insertion groove, a second insertion groove and a third insertion groove, and the grooves between the first insertion groove, the second insertion groove and the third insertion groove are arranged in a grooved manner. The insertion frames of the first pressing bracket, the second pressing bracket and the third pressing bracket are arranged along the center position. Since the driving positioning component is located directly below the insertion frame, and the corresponding insertion frame moves downward and randomly inserts into any groove in the first locking housing, the delivery of the sugar pill is controlled by different grooves. An arc-shaped groove is provided through the center of the second pressing bracket.

[0012] Preferably, a fixing plate is provided on the side of the drive positioning component, a sugar inlet channel is provided on the side of the fixing plate, a sugar outlet channel is provided on the side of the sugar inlet channel, and a rotating sugar clamping paddle is rotatably connected to the side of the sugar outlet channel.

[0013] Preferably, the rock-paper-scissors actuation assembly includes a reset actuation bracket, wherein the toothed plate of the reset actuation bracket is meshed with a toothed shaft.

[0014] Preferably, a connecting spring is provided below the reset toggle bracket, a closing plate is connected below the connecting spring, and a contact protrusion is provided at the top of the inner wall of the closing plate.

[0015] The technical effects and advantages of this utility model are as follows:

[0016] Compared to existing technologies, this educational rock-paper-scissors toy cleverly combines the game mechanism with a candy reward system. The structural design enhances player engagement. Three pressing supports on the rock-paper-scissors press bracket correspond to different rock-paper-scissors options. The insertion slots of the driving positioning component randomly change as the reset toggle bracket rotates. During the pressing process, the candy will only flow out along the candy dispensing channel when the insertion bracket is precisely inserted into the corresponding slot. If the insertion is incorrect, the pressing rod's movement is restricted, the closing plate cannot open, and the candy cannot flow out. This design creates an instant feedback mechanism. The feeling of restriction during incorrect operation contrasts with the candy reward after correct operation, increasing the challenge of the game and reinforcing the player's sense of accomplishment through material rewards. This keeps players interested through repeated interaction, making it especially suitable for children to develop their reaction skills while enjoying a pleasurable experience. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0018] Figure 2 This is an exploded structural diagram of the toy box of this utility model.

[0019] Figure 3 This is a schematic diagram of the rock-paper-scissors pressing support structure of this utility model.

[0020] Figure 4 This is a schematic diagram of the rock-paper-scissors button structure of this utility model.

[0021] Figure 5 This is a schematic diagram of the second pressing bracket structure of this utility model.

[0022] Figure 6 This is a schematic diagram of the third pressing bracket structure of this utility model.

[0023] Figure 7 This is a schematic diagram of the fixing plate structure of this utility model.

[0024] Figure 8 This is a schematic diagram of the plug-in bracket structure of this utility model.

[0025] Figure 9 This is a schematic diagram of the first locking shell structure of this utility model.

[0026] Figure 10 This is an exploded structural diagram of the drive positioning component of this utility model.

[0027] Figure 11 This is a schematic diagram of the third insertion slot structure of this utility model.

[0028] Figure 12 This is a schematic diagram of the reset toggle bracket structure of this utility model.

[0029] Figure 13 This is a schematic diagram of the rock-paper-scissors toggle component of this utility model.

[0030] Figure 14 This is a schematic diagram of the drive positioning component structure of this utility model.

[0031] The attached diagram is labeled as follows: 1. Game toy box; 2. Rock-paper-scissors button; 3. Rock-paper-scissors display cover; 4. Rock-paper-scissors toggle assembly; 5. Candy container; 6. Candy dispensing channel; 7. Candy filling channel; 8. Rotating candy-clamping lever; 9. Positioning display piece; 10. Rock-paper-scissors pressing bracket; 11. First pressing bracket; 12. Second pressing bracket; 13. Third pressing bracket; 14. Press return spring; 15. Drive positioning assembly; 16. Fixing plate; 17. Candy inlet channel; 18. Pressing rod; 19. Arc groove; 20. Closing plate; 21. Plug-in bracket; 22. First locking shell; 23. Second locking shell; 24. Gear shaft; 25. First plug-in slot; 26. Second plug-in slot; 27. Third plug-in slot; 28. Reset toggle bracket; 29. ​​Connecting spring; 30. Contact protrusion; 31. Snap ring. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0033] Example

[0034] As attached Figures 1 to 14The illustrated puzzle rock-paper-scissors toy includes a toy box 1, a rock-paper-scissors actuation component 4, and a rock-paper-scissors pressing bracket 10. A rock-paper-scissors button 2 is located on the side of the toy box 1, and a display cover 3 is located above the button 2. The rock-paper-scissors actuation component 4 is located on the side of the toy box 1, and a candy container 5 is located above the box. A candy dispensing channel 6 is located on the side of the button 2. A positioning display piece 9 is located inside the display cover 3, and the positioning display piece 9 is connected to the pressing bracket 10. A drive positioning component 15 is located on the side of the pressing bracket 10. The toy box 1 rotates by swinging the toothed plate of the reset actuation bracket 28 connected to its actuation component, causing the drive positioning component 15 to rotate. Pressing any one of the pressing brackets in the pressing bracket 10 causes the corresponding pressing bracket's connected connector 21 to insert into the drive positioning component 15 from top to bottom. At any of the first insertion slots 25, second insertion slots 26, or third insertion slots 27 in the first locking housing 22, when the corresponding insertion bracket 21 cannot be inserted into the corresponding insertion slot, the downward movement distance of the insertion bracket 21 is limited. Therefore, the corresponding moving pressing bracket cannot move through the limited distance, so that when the pressing rod 18 below the corresponding pressing bracket presses the contact protrusion 30 on the closing plate 20, it cannot press the closing plate 20 downward and fully unfold its tilt angle to a gap suitable for the sugar pill to flow out. When the corresponding pressing bracket inserts the insertion bracket 21 into the corresponding insertion slot, the pressing rod 18 moves downward without restriction, and the pressing rod 18 moves downward and re-presses the pressing protrusion of the closing plate 20, so that the separation of the closing plate 20 from the box is greater than the distance of the sugar pill, thereby causing the sugar pill to move along the sugar dispensing channel 6 and flow out.

[0035] In a preferred embodiment, the rock-paper-scissors pressing bracket 10 includes a first pressing bracket 11, a second pressing bracket 12 disposed on the side of the first pressing bracket 11, and a third pressing bracket 13 disposed on the side of the second pressing bracket 12. Insertion frames 21 are disposed at the top edges of the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13. The insertion frames 21 of the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 are arranged along the center. Because the drive positioning component 15 is located directly below the insertion frame 21, and the insertion frame 21 moves downward accordingly, it randomly inserts into any slot in the first locking housing 22. Different slots are used to control the delivery of the candy pills. An arc-shaped groove 19 is provided through the center of the second pressing bracket 12. The insertion frames 21 on the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 are arranged in a circular pattern. The plug-in brackets 21 are located on the side of the second pressing bracket 12 and are arranged so that the plug-in brackets 21 of the first pressing bracket 11, the second pressing bracket 12 and the third pressing bracket 13 correspond one-to-one with the first plug-in slots 25, the second plug-in slots 26 and the third plug-in slots 27 on the first locking shell 22 in the drive positioning assembly 15. Therefore, when any pressing bracket is pressed, the plug-in bracket 21 of the pressing bracket corresponds to any plug-in slot during the rotation process. If it cannot correspond to the correct plug-in slot, the closing plate 20 cannot be opened. When the plug enters the correct plug-in slot, the closing plate 20 opens, thereby completing the control of the rock-paper-scissors process. The rock-paper-scissors process is confirmed by the first plug-in slots 25, the second plug-in slots 26 and the third plug-in slots 27 during the rotation process of the drive positioning assembly 15, making the rock-paper-scissors process random.

[0036] In a preferred embodiment, each of the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 is provided with a snap ring 31 at its edge. Each of the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 is provided with a pressing rod 18 below it. Each snap ring 31 is connected to a pressing return spring 14. The snap ring 31 provided on the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 is used to connect with the spring, so that the pressing bracket can be reset after pressing. The pressing plate provided at its bottom is used to press the closing plate 20 when moving downward to control the flow of the sugar pill.

[0037] In a preferred embodiment, the drive positioning assembly 15 includes a first locking housing 22, a second locking housing 23, and a gear shaft 24. The second locking housing 23 is inserted into the side of the first locking housing 22, and the gear shaft 24 is provided on the side of the second locking housing 23. A first insertion groove 25, a second insertion groove 26, and a third insertion groove 27 are respectively provided on the outer diameter surface of the first locking housing 22, and the grooves between the first insertion groove 25, the second insertion groove 26, and the third insertion groove 27 are arranged in a grooved pattern. The first locking housing 22 is used to set corresponding positions. The first insertion slot 25, the second insertion slot 26, and the third insertion slot 27 are provided. The second locking housing 23 is used to connect with the first locking housing 22 and to seal the insertion slots on its side to prevent displacement after insertion. The gear shaft 24 connected to the second locking housing 23 is used to connect with the reset toggle bracket 28. When the paddle of the rock-paper-scissors toggle assembly 4 is pressed, the gear shaft 24 on the toothed plate on the reset toggle bracket 28 will rotate and be reset by the spring. During the reset process, the toothed plate drives the gear shaft 24 to rotate, thereby causing the drive positioning assembly 15 to rotate.

[0038] In a preferred embodiment, a fixing plate 16 is provided on the side of the drive positioning component 15, a candy inlet channel 17 is provided on the side of the fixing plate 16, a candy outlet channel 7 is provided on the side of the candy inlet channel 17, and a rotating candy clamping lever 8 is rotatably connected to the side of the candy outlet channel 7. The fixing plate 16 is the skeleton structure of the game toy shell, and the candy inlet channel 17 provided on its upper part is used to place candy balls. The candy balls are replenished by rotating the candy clamping lever 8. After the lever is rotated to open the clamp, the candy balls enter, and after resetting the rotation, the candy balls are sent into the candy inlet channel 17.

[0039] In a preferred embodiment, the rock-paper-scissors actuation assembly 4 includes a reset actuation bracket 28. The toothed plate of the reset actuation bracket 28 is meshed with the toothed shaft 24. A connecting spring 29 is provided below the reset actuation bracket 28. A closing plate 20 is connected below the connecting spring 29. A contact protrusion 30 is provided at the top of the inner wall of the closing plate 20. When the closing plate 20 is pressed by the pressing rod 18, the connecting spring 29 drives the closing plate 20 to reset at the same time as the pressing rod 18 resets.

[0040] The working process of this utility model is as follows: The game toy box 1 of this application rotates the drive positioning component 15 by the toothed plate of the reset lever bracket 28 connected to the swing assembly. When any one of the rock-paper-scissors pressing brackets 10 is pressed, the corresponding pressing bracket's connected insertion bracket 21 inserts from top to bottom into any one of the first insertion slots 25, second insertion slots 26, or third insertion slots 27 in the first locking shell 22 of the drive positioning component 15. When the corresponding insertion bracket 21 cannot be inserted into the corresponding insertion slot, the downward movement distance of the insertion bracket 21 is limited. Therefore, the... The movable pressing bracket cannot move within a limited distance, so that when the pressing rod 18 below the corresponding pressing bracket presses the contact protrusion 30 on the closing plate 20, it cannot press the closing plate 20 downward and fully open the angle of its closure to a gap suitable for the sugar pill to flow out. When the corresponding pressing bracket inserts the plug-in bracket 21 into the corresponding plug-in slot, the pressing rod 18 moves downward without restriction, and the pressing rod 18 moves downward and re-presses the pressing protrusion of the closing plate 20, so that the separation of the closing plate 20 from the box is greater than the distance of the sugar pill, thereby causing the sugar pill to move along the sugar dispensing channel 6 and flow out.

[0041] The connectors 21 on the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 are located on the side of the second pressing bracket 12 and arranged in such a way that the connectors 21 on the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 correspond one-to-one with the first insertion slot 25, the second insertion slot 26, and the third insertion slot 27 on the first locking housing 22 in the drive positioning assembly 15. Therefore, when any pressing bracket is pressed, the connector 21 of that pressing bracket corresponds to any insertion slot during the rotation process. If the correct insertion slot cannot be matched, the mechanism closes. The closing plate 20 cannot be opened. When the plug is inserted into the correct plug slot, the closing plate 20 opens, thereby completing the control of the rock-paper-scissors process. The rock-paper-scissors process is confirmed by the first plug slot 25, the second plug slot 26, and the third plug slot 27 during the rotation of its drive positioning component 15, making the rock-paper-scissors process random. The snap rings 31 provided on the first pressing bracket 11, the second pressing bracket 12, and the third pressing bracket 13 are used to connect with the spring, so that the pressing bracket can be reset after pressing. The pressing plate provided at the bottom is used to press the closing plate 20 when moving downward to control the flow of the sugar pill.

[0042] The first locking housing 22 is used to set the first insertion slot 25, the second insertion slot 26 and the third insertion slot 27 corresponding to different positions. The second locking housing 23 is used to connect with the first locking housing 22 and to seal the insertion slots on its side to prevent displacement after insertion. The gear shaft 24 connected to the second locking housing 23 is used to connect with the reset toggle bracket 28. When the paddle of the rock-paper-scissors toggle component 4 is pressed, the gear shaft 24 on the toothed plate on the reset toggle bracket 28 will rotate and be reset by the spring. During the reset process, the toothed plate drives the gear shaft 24 to rotate, thereby causing the drive positioning component 15 to rotate.

[0043] The closing plate 20 connected to the connecting spring 29 is used to drive the closing plate 20 to reset when the closing plate 20 is squeezed by the pressing rod 18.

Claims

1. A wisdom guessing game toy, comprising a game toy box (1), a guessing game pulling assembly (4) and a guessing game pressing support (10), characterized in that: The game toy box (1) has a rock-paper-scissors button (2) on its side, a rock-paper-scissors display cover (3) above the button (2), a rock-paper-scissors toggle component (4) on its side, a candy box (5) above the box (1), a candy dispensing channel (6) on the side of the button (2), a positioning display piece (9) inside the display cover (3), a rock-paper-scissors pressing bracket (10) connected to the positioning display piece (9), and a drive positioning component (15) on the side of the pressing bracket (10).

2. The educational guessing game toy according to claim 1, wherein: The rock-paper-scissors pressing bracket (10) includes a first pressing bracket (11), a second pressing bracket (12) is provided on the side of the first pressing bracket (11), a third pressing bracket (13) is provided on the side of the second pressing bracket (12), and a plug-in bracket (21) is provided at the top edge of the first pressing bracket (11), the second pressing bracket (12) and the third pressing bracket (13).

3. The educational guessing game toy according to claim 2, wherein: The first pressing bracket (11), the second pressing bracket (12) and the third pressing bracket (13) are all provided with snap ring buckles (31) at their edges. A pressing rod (18) is installed below the first pressing bracket (11), the second pressing bracket (12) and the third pressing bracket (13). A pressing return spring (14) is connected inside each snap ring buckle (31).

4. The educational guessing game toy according to claim 2, wherein: The drive positioning assembly (15) includes a first locking housing (22), a second locking housing (23) and a gear shaft (24). The second locking housing (23) is inserted into the side of the first locking housing (22), and the gear shaft (24) is provided on the side of the second locking housing (23).

5. The educational guessing game toy according to claim 4, wherein: The outer diameter surface of the first locking housing (22) is provided with a first insertion groove (25), a second insertion groove (26) and a third insertion groove (27), and the grooves between the first insertion groove (25), the second insertion groove (26) and the third insertion groove (27) are arranged in a groove. The insertion brackets (21) of the first pressing bracket (11), the second pressing bracket (12) and the third pressing bracket (13) are arranged along the center position. Since the driving positioning component (15) is located directly below the insertion bracket (21), and the corresponding insertion bracket (21) moves downward and is randomly inserted into any groove in the first locking housing (22), the delivery of the sugar pill is controlled through different grooves. An arc-shaped groove (19) is provided through the center of the second pressing bracket (12).

6. The educational guessing game toy according to claim 1, wherein: The drive positioning component (15) is provided with a fixing plate (16) on its side, the fixing plate (16) is provided with a sugar inlet channel (17) on its side, the sugar inlet channel (17) is provided with a sugar outlet channel (7) on its side, and the sugar outlet channel (7) is rotatably connected to a rotating sugar clamping paddle (8).

7. The educational guessing game toy according to claim 1, wherein: The rock-paper-scissors actuation assembly (4) includes a reset actuation bracket (28), the toothed plate of which is meshed with the toothed shaft (24).

8. The educational rock-paper-scissors toy according to claim 7, characterized in that: A connecting spring (29) is provided below the reset toggle bracket (28), and a closing plate (20) is connected below the connecting spring (29). A contact protrusion (30) is provided at the top of the inner wall of the closing plate (20).