Mouse hitting toy
By designing two interlaced imitation gopher pieces and touch recording system in the toy of gopher, the problem of single gameplay of existing toys is solved, multi-player interaction and competition is achieved, and the fun and exercise effect of the game is enhanced.
Patent Information
- Application Number
- CN202421337079.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-06-13
AI Technical Summary
Among the existing toys toys for gopher, a single imitation gopher head piece appears randomly, with a single gameplay, lacking interactivity and participation, and being unable to compete with your family.
A imitation gopher piece containing two interlaced settings was designed. The number of hits was recorded through the touch mechanism, and the driving module controlled the adjustment board movement was realized to adjust the position of the imitation gopher piece, and reward players through the issuing mechanism to enhance interaction and competitiveness.
It improves the interactivity and participation of the toys, exercises the ability to respond and hand-eye coordination, and family members can participate in the game together, which increases the fun and sense of competition.
Smart Images

Figure CN223196545U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, in particular to a whack-a-mole toy. Background Art
[0002] Toys generally refer to items for children to play, entertain, and learn. From traditional wooden toys to modern electronic toys, there are a wide variety of options on the market to suit children of different ages and interests. The types of toys are very wide, including but not limited to dolls, building blocks, educational toys, toy vehicles, toy animals, etc.
[0003] Whack-a-Mole toys are a common children's game. This game typically involves a simulated mole emerging from various holes, and the child must quickly hit it back with a hammer or other tool. This game not only develops children's reaction speed and hand coordination, but also provides fun and excitement.
[0004] Most of the existing whack-a-mole toys on the market, such as the Chinese patent with publication number CN2573677U, disclose a whack-a-mole toy device, including a main unit and a rubber hammer. The main unit shell is provided with a plurality of holes. The main unit is provided with imitation hamster heads arranged one-to-one corresponding to the holes and a controller for controlling the imitation hamster heads to protrude from the holes. The rubber hammer includes a hammer handle and a hammer head for hammering the imitation hamster head. The hammering surface of the hammer head is concave inward to form a hammering cavity. When the imitation hamster head protruding from the head is hammered, the imitation hamster head is inserted into the hammering cavity. However, the above technical solution and most toys on the market are that a single simulated hamster head randomly emerges from multiple holes. The gameplay is monotonous and repetitive, which makes it easy to lose interest after playing for a while. In addition, a single imitation hamster head cannot be used for competition with family members or multiple people, and the game interactivity and participation are low. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides a whack-a-mole toy with a single hamster head piece that pops out randomly, which is different from the existing multi-hole toy.
[0006] The technical solution of the utility model is: a whack-a-mole toy, comprising a toy base, a protective shell provided on the toy base, a control mainboard provided in the inner cavity of the toy base, a ticket dispensing mechanism provided on the top of the protective shell, a display screen capable of displaying the number of hits provided on the protective shell, a partition plate provided in the inner cavity of the toy base, an integral target assembly provided in the inner cavity of the toy base and below the partition plate, and a drive mechanism for driving the integral target assembly provided above the partition plate;
[0007] The integrating target assembly includes a first adjustment plate provided on the lower surface of the partition plate and a second adjustment plate provided on the lower surface of the partition plate and located below the first adjustment plate, wherein both ends of the second adjustment plate are provided with a first gopher-like member, and both ends of the first adjustment plate are provided with a second gopher-like member, and the two first gopher-like members and the two second gopher-like members are both located on the upper surface of the toy base and are arranged alternately with each other;
[0008] The integrating target assembly further includes a connecting assembly, wherein the second adjusting plate is connected to the first adjusting plate via the connecting assembly, and the connecting assembly is used to drive the second adjusting plate to move in the opposite direction when the driving mechanism drives the first adjusting plate to move;
[0009] The inner cavities of the first gopher-like component and the second gopher-like component are both provided with a touch mechanism, and the lower surface of the partition plate is further provided with a guide mounting shell for limiting the sliding direction of the first adjustment plate and the second adjustment plate.
[0010] Furthermore, the driving mechanism includes a rotating ring rotatably provided on the partition plate and having a lower surface passing through the partition plate, and a driving module provided on the partition plate for driving the rotating ring to rotate;
[0011] Furthermore, a fixed gear is provided at the top of the rotating ring, and the driving module includes a mounting shell provided on the partition plate and a gear set provided in the inner cavity of the mounting shell. The driving end of the mounting shell is provided with a worm engaged with the gear set, and the gear set is engaged with the fixed gear.
[0012] Furthermore, the connecting assembly includes a first connecting groove opened on the surface of the first adjustment plate, the lower surface of the rotating ring is provided with a driving rod extending into the inner cavity of the first connecting groove, and the lower surface of the partition plate is provided with an auxiliary mechanism for transmitting the movement of the second adjustment plate when the first adjustment plate moves and a limiting mechanism for assisting the sliding of the second adjustment plate.
[0013] Furthermore, the auxiliary mechanism is rotatably provided on the transmission plate on the lower surface of the partition plate and located below the first adjustment plate and the second adjustment plate, a second connecting groove is horizontally opened at one end of the transmission plate and a third connecting groove is opened at the other end, a first sliding rod extending to the inner cavity of the second connecting groove is provided on the lower surface of the second adjustment plate, and a second sliding rod extending to the inner cavity of the third connecting groove is provided on the lower surface of the first adjustment plate.
[0014] Furthermore, the limiting mechanism includes connecting plates provided at both ends of the second adjustment plate, the two connecting plates are located between the two first imitation hamster parts, and vertical grooves are provided on the surface of the connecting plates, and the lower surface of the partition plate is provided with two positioning rods extending to the corresponding inner cavities of the vertical grooves.
[0015] Furthermore, the touch mechanism includes a sensing module for determining a touch or tap response and a wireless module for sending a control signal, and the wireless module is signal-connected to the control mainboard.
[0016] Furthermore, the surfaces of the partition plate and the toy base are both provided with a plurality of through slots for limiting the movement directions of the first and second simulated hamster pieces, and the number of the through slots corresponds to the number of the two first and second simulated hamster pieces.
[0017] Furthermore, the ticket dispensing mechanism is connected to the control main board for controlling the ticket dispensing through the control main board. The ticket dispensing mechanism includes a ticket dispensing shell provided on the top of the protective shell, a rotating shaft rotatably provided in the inner cavity of the ticket dispensing shell, a bill tube detachably provided on the rotating shaft, a transmission cylinder for transporting the bill tube to dispense tickets, a paper pressing roller rotatably provided in the inner cavity of the ticket dispensing shell and a driving member for driving the transmission roller to rotate. The transmission roller and the paper pressing roller are both located above the rotating shaft, and the surface of the paper pressing roller is in contact with the surface of the bill tube.
[0018] Furthermore, auxiliary grooves are provided at both ends of the surface of the first adjustment plate, and a connecting rod extending to the corresponding inner cavity of the auxiliary groove is provided on the lower surface of the partition plate.
[0019] The beneficial technical effects of the utility model are:
[0020] The second hamster-like part is located outside the protective shell, and the first hamster-like part is located inside the protective shell. When in use, by touching or hitting the second hamster-like part located outside, the number of hits is sent to the control main board for counting through the touch mechanism, and the driving module rotates the rotating ring clockwise, and the first adjustment plate is driven to move backward through the driving rod and the first connecting groove. The second adjustment plate is driven forward by the auxiliary mechanism when the first adjustment plate moves backward. The positions of the first and second hamster-like parts can be quickly adjusted, while avoiding the single playability of existing Whack-a-Ham toys. In addition, the reaction and hand-eye coordination abilities can be better trained during the movement of the first and second hamster-like parts. Similarly, since there are two first and second hamster-like parts, family members can also participate in the game and compete to determine who hits faster through the luminous prompts of the second hamster-like part. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic front view of the structure of the whack-a-mole toy;
[0022] Figure 2 This is a schematic diagram of the ticket issuing mechanism structure of the whack-a-mole toy with the ticket issuing shell cut open;
[0023] Figure 3 This is a schematic structural diagram of the partition plate, the first hamster-like part, and the second hamster-like part of the whack-a-mole toy;
[0024] Figure 4 This is a schematic diagram of the structure of the partition plate, first adjustment plate, second adjustment plate and transmission plate of the whack-a-mole toy from a bottom view. Figure 1 ;
[0025] Figure 5 This is a schematic diagram of the structure of the partition plate, first adjustment plate, second adjustment plate and motor of the whack-a-mole toy Figure 2 ;
[0026] Figure 6 This is a schematic diagram of the structure of the partition plate, first adjustment plate, second adjustment plate and transmission plate of the whack-a-mole toy Figure 3 ;
[0027] Figure 7 This is a bottom view of the partition plate and guide mounting shell structure of the whack-a-mole toy;
[0028] Figure 8 It's a whack-a-mole toy. Figure 3 A magnified schematic diagram of the structure in the middle.
[0029] 1. Toy base; 2. Protective shell; 3. Ticket shell; 4. Partition plate; 5. Control main board; 6. Placement slot; 7. Through slot; 8. First imitation hamster part; 9. Second imitation hamster part; 10. Mounting shell; 11. Motor; 12. Worm; 13. Gear set; 14. Rotating ring; 15. First adjustment plate; 16. Second adjustment plate; 17. First connecting slot; 18. Drive rod; 19. Transmission plate; 20. Second connecting slot; 21. First sliding rod; 22. Connecting plate; 23. Vertical slot; 24. Positioning rod; 25. Auxiliary slot; 26. Connecting rod; 27. Third connecting slot; 28. Second sliding rod; 29. Rotating rod; 30. Rotating shaft; 31. Drive member; 32. Transmission cylinder; 33. Display screen; 34. Paper pressing roller; 35. Wireless module; 36. Sensing module; 37. Guide mounting shell; 38. Fixed gear. DETAILED DESCRIPTION
[0030] In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the specific implementation methods of the present invention are further described in detail below in conjunction with the drawings and examples. The following examples are used to illustrate the present invention but are not used to limit the scope of the present invention.
[0031] Please refer to Figures 1 to 8As shown, a whack-a-hamster toy of this embodiment includes a toy base 1, a protective shell 2 with an open front side is fixedly connected to the toy base 1, a battery compartment is provided on the lower surface of the toy base 1, and a battery for providing power support can be installed inside (not shown in the figure), and a control motherboard 5 is fixedly connected to the inner cavity of the toy base 1. The control motherboard 5 can control the start and shutdown of all electrical components in the whack-a-hamster toy and can also be used to receive and transmit wireless control signals. The control motherboard 5 is a mature existing technology and is therefore not specifically limited or described. A ticket dispensing mechanism is fixedly connected to the top of the protective shell 2, and the ticket dispensing mechanism is connected to the control motherboard 5 to pass The control main board 5 controls the ticket issuing mechanism to issue tickets. The control main board 5 is provided with a control device to control the ticket issuing mechanism to issue tickets when the number of hits is detected to be 50 times and 100 times. The protective shell 2 is provided with a display screen 33 that can display the number of hits. The display screen 33 is a mature existing technology and is controlled by the control main board 5 to display numbers. The inner cavity of the toy base 1 is detachably provided with a partition plate 4, and the partition plate 4 can be installed in the inner cavity of the toy base 1 by bolt connection or card-embedded connection. The specific installation method is not limited. The inner cavity of the toy base 1 is provided with an integral target assembly below the partition plate 4, and the upper surface of the partition plate 4 is provided with a driving mechanism for driving the integral target assembly to reciprocate.
[0032] The integrating target assembly includes a first adjustment plate 15 slidably connected to the lower surface of the partition plate 4, the lower surface of the rotating ring 14 is located above the first adjustment plate 15, and a second adjustment plate 16 is provided on the lower surface of the partition plate 4 and below the first adjustment plate 15. Second gopher-like parts 9 are provided at both ends of the first adjustment plate 15 away from the driving mechanism, and first gopher-like parts 8 are provided at both ends of the second adjustment plate 16 away from the driving mechanism. The two second gopher-like parts 9 and the two first gopher-like parts 8 are all located on the upper surface of the toy base 1 and are staggered with each other. Therefore, when the first adjustment plate 15 drives the second gopher-like parts 9 to move forward, the second adjustment plate 16 drives the first gopher-like parts 8 to move backward, and vice versa.
[0033] The integrating target assembly further includes a connecting assembly, through which the second adjustment plate 16 is connected to the first adjustment plate 15 . The connecting assembly is used to drive the second adjustment plate 16 to move in the opposite direction when the driving mechanism drives the first adjustment plate 15 to move.
[0034] The connecting assembly includes a first connecting groove 17 that is laterally opened on the surface of the first adjustment plate 15. The lower surface of the rotating ring 14 is provided with a driving rod 18 that extends to the inner cavity of the first connecting groove 17. When the driving module drives the rotating ring 14 to rotate clockwise, the driving rod 18 slides along the first connecting groove 17 to drive the first adjustment plate 15 to move backward. The first adjustment plate 15 is driven by an auxiliary mechanism to move the second adjustment plate 16 forward. The lower surface of the partition plate 4 is also provided with a limiting mechanism for assisting the sliding of the second adjustment plate 16. The limiting mechanism can ensure that when the auxiliary mechanism drives the second adjustment plate 16 to move, the problem of only one end of the second adjustment plate 16 moving forward or backward is avoided, thereby meeting the overall movement requirements of the second adjustment plate 16.
[0035] The inner cavity of each first gopher-like component 8 and each second gopher-like component 9 is provided with a touch mechanism. When the user taps or touches it, it transmits a signal and emits light to increase the fun. The first gopher-like component 8 and the second gopher-like component 9 are both made of translucent material. The lower surface of the partition plate 4 is also provided with a guide mounting shell 37 for limiting the sliding direction of the first adjustment plate 15 and the second adjustment plate 16.
[0036] In this embodiment, the driving mechanism includes a rotating ring 14 that is rotatably provided on the partition plate 4, and the lower surface of which passes through the partition plate 4 and is located above the first adjustment plate 15. The surface of the partition plate 4 is provided with a through hole for matching with the rotating ring 14 and for the lower surface of the rotating ring 14 to be located above the integrating target assembly. A driving module is provided on the partition plate 4 to drive the rotating ring 14 to rotate. The driving module can drive the rotating ring 14 to rotate in the forward or reverse direction, thereby adjusting the reciprocating movement transformation of the integrating target assembly.
[0037] The top of the rotating ring 14 is fixedly connected to a fixed gear 38. The rotating ring 14 is specifically composed of a circular ring and a fixed rod provided on the upper surface of the circular ring. The bottom end of the fixed rod is fixedly connected to the upper surface of the circular ring, and the fixed gear 38 is fixedly connected to the top of the fixed rod. The driving module includes a mounting shell 10 provided on the partition plate 4 and a gear group 13 provided in the inner cavity of the mounting shell 10. The driving end of the mounting shell 10 is provided with a worm 12 meshing with the gear group 13. The gear group 13 meshes with the fixed gear 38. The motor 11 can drive the gear group 13 through the worm 12, and the gear group 13 drives the rotating ring 14 to rotate clockwise or counterclockwise, thereby controlling the movement of the first adjusting plate 15 and the second adjusting plate 16. The movement directions of the first adjusting plate 15 and the second adjusting plate 16 are opposite. The gear group 13 includes two gear groups, one gear group meshes with the worm 12, and the other gear group meshes with the fixed gear 38. Please refer to the attached manual. Figure 5The gear set meshing with the worm 12 is a transmission gear and a worm wheel fixed coaxially above and below: the worm wheel meshes with the worm 12, the transmission gear meshes with another gear set, and this gear set meshes with the fixed gear 38.
[0038] In this embodiment, the auxiliary mechanism is rotatably provided on the lower surface of the partition plate 4 and is located below the first adjustment plate 15 and the second adjustment plate 16. The transmission plate 19 has a third connecting groove 27 opened transversely at one end and a second connecting groove 20 opened at the other end. A rotating rod 29 is provided at the center of the transmission plate 19 and between the third connecting groove 27 and the second connecting groove 20. The transmission plate 19 is rotatably connected to the partition plate 4 through the rotating rod 29. The lower surface of the first adjustment plate 15 has a second sliding rod extending to the inner cavity of the third connecting groove 27. 28. The lower surface of the second adjustment plate 16 is provided with a first sliding rod 21 extending to the inner cavity of the second connecting groove 20. When the first adjustment plate 15 moves backward, the transmission plate 19 rotates with its center as the center of rotation, and the second sliding rod 28 slides along the inner cavity of the third connecting groove 27. The first sliding rod 21 slides along the inner cavity of the second connecting groove 20, and the second adjustment plate 16 is driven to move forward by the rotation of the transmission plate 19. When the first adjustment plate 15 moves forward, the second adjustment plate 16 is also driven to move backward through the transmission plate 19.
[0039] In this embodiment, the limiting mechanism includes connecting plates 22 provided at both ends of the second adjustment plate 16, the two connecting plates 22 are located between the two first imitation hamster parts 8, and a vertical groove 23 is provided on the surface of the connecting plate 22, and two positioning rods 24 extending into the inner cavity of the corresponding vertical groove 23 are provided on the lower surface of the partition plate 4. When the second adjustment plate 16 is driven by the transmission plate 19 to move forward or backward, since the transmission plate 19 is connected to one end of the second adjustment plate 16, in order to avoid the second adjustment plate 16 from tilting, the movement direction of the second adjustment plate 16 is ensured to be stable by the connecting plates 22, the vertical groove 23 and the positioning rod 24. When the second adjustment plate 16 moves forward or backward, the positioning rod 24 slides along the inner cavity of the vertical groove 23.
[0040] In this embodiment, the touch mechanism is used to determine the sensing module 36 for touch or tapping reactions and the wireless module 35 for sending control signals. The wireless module 35 is signal-connected to the control motherboard 5. After being touched or tapped, the sensing module 36 determines and sends a signal to the wireless module 35. The signal is sent to the control motherboard 5 through the wireless module 35. The control motherboard 5 counts the number of taps of the received signal and sends it to the display screen 33 for display. A plurality of light-emitting modules are provided on the inner wall of the protective shell 2 at positions corresponding to the two first gopher-like parts 8 and the two second gopher-like parts 9, respectively. It can be understood that the position of the light-emitting module can be set at any position, but there must be a light-emitting module corresponding to the first gopher-like part 8 or the second gopher-like part 9. When the first gopher-like part 8 or the second gopher-like part 9 is hit, the corresponding light-emitting module can emit light for prompting. The first gopher-like part 8 and the second gopher-like part 9 are both made of translucent material to effectively provide prompts.
[0041] In this embodiment, the surfaces of the partition plate 4 and the toy base 1 are both provided with a plurality of through-grooves 7 for limiting the movement direction of the first simulated hamster piece 8 and the second simulated hamster piece 9. The portions of the two first simulated hamster pieces 8 and the two second simulated hamster pieces 9 that are respectively connected to the first adjustment plate 15 and the second adjustment plate 16 are connected via corresponding through-grooves 7, and the through-grooves 7 can ensure the stability of forward or backward movement. The number of the four through-grooves 7 corresponds one-to-one to the number of the two first simulated hamster pieces 8 and the two second simulated hamster pieces 9.
[0042] In this embodiment, the ticket dispensing mechanism is connected to the control mainboard 5 for controlling the ticket dispensing through the control mainboard 5. The ticket dispensing mechanism includes a ticket dispensing shell 3 provided on the top of the protective shell 2. The ticket dispensing shell 3 is detachably assembled and rotatably provided in the inner cavity of the ticket dispensing shell 3 for placing a rotating shaft 30 for placing a sticker. The surface of the rotating shaft 30 is replaceably provided with a ticket cylinder, a transmission cylinder 32 for conveying the sticker for ticket dispensing, the transmission cylinder 32 is rotatably connected to the inner cavity of the ticket dispensing shell 3, a driving member 31 for driving the transmission cylinder 32 to rotate, a paper pressing roller 34 rotatably provided in the inner cavity of the ticket dispensing shell 3, and a transmission cylinder 32 for transmitting the sticker for ticket dispensing. The driving cylinder 32 and the pressing roller 34 are both located above the rotating shaft 30, and the surface of the pressing roller 34 is in contact with the surface of the ticket cylinder. The driving cylinder 32 and the pressing roller 34 rotate in opposite directions. When the driving cylinder 32 drives the pressing roller 34 to rotate, the pressing roller 34 drives the rotating shaft 30 to rotate, so that the sticker passes between the pressing roller 34 and the driving cylinder 32 and is ejected to the outside of the ticket ejection housing 3. A ticket ejection slot for ejecting tickets is provided on the ticket ejection housing 3. When the control mainboard 5 receives that the number of strikes is 50 or 100, the control mainboard 5 controls the driving member 31 to start ejecting tickets.
[0043] In this embodiment, auxiliary grooves 25 are provided at both ends of the surface of the first adjustment plate 15, and a connecting rod 26 is provided on the lower surface of the partition plate 4, which extends to the inner cavity of the corresponding auxiliary groove 25. When the rotating ring 14 rotates, the first adjustment plate 15 is driven to move through the cooperation of the driving rod 18 and the first connecting groove 17, and the connecting rod 26 slides in the inner cavity of the auxiliary groove 25, thereby further improving the stability of the movement of the first adjustment plate 15.
[0044] In this embodiment, a placement groove 6 for accommodating and placing a hammer is provided on the surface of the toy base 1 .
[0045] In summary, in the present invention, a whack-a-hamster toy has a second whack-a-hamster part 9 located outside the protective shell 2 and a first whack-a-hamster part 8 located inside the protective shell 2. When in use, by touching the second whack-a-hamster part 9 located outside, the number of hits is sent to the control motherboard 5 for counting through the touch mechanism inside the second whack-a-hamster part 9. The control motherboard 5 outputs a signal to the display screen 33 to display the number of hits. The driving module drives the rotating ring 14 to rotate clockwise, and the driving rod 18 moves along the inner cavity of the first connecting groove 17, thereby driving the first adjusting plate 15 to move backward. The auxiliary mechanism drives the second adjusting plate 15 to move backward when the first adjusting plate 15 moves backward. 6 moves forward, and the positions of the first imitation hamster member 8 and the second imitation hamster member 9 can be quickly adjusted, while avoiding the single playability of existing whack-a-hamster toys. In addition, the reaction and hand-eye coordination abilities can be better trained during the movement of the first imitation hamster member 8 and the second imitation hamster member 9. Similarly, since there are two first imitation hamster members 8 and two second imitation hamster members 9, family members can also participate in the game and compete to determine who hits faster by the luminous prompt of the second imitation hamster member 9. It can be understood that hitting the first hamster member 8 will also send a hitting signal to the control mainboard 5 for counting, and the number of times will be displayed on the display screen 33.
[0046] During use, the number of hits each time is transmitted to the control main board 5 through the touch mechanism, and the control main board 5 sends a signal to control the display screen 33 to process and display the number of hits. After reaching a certain number of times, the sticker lottery ticket is automatically output through the ticket issuing mechanism. It can be understood that any specified number can be set as the control main board 5 to control the ticket issuing mechanism to issue tickets according to specific usage requirements. The 50 times and 100 times in the above description are only an implementation method and are not limited.
[0047] The above is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A whack-a-mole toy, comprising a toy base (1), a protective shell (2) provided on the toy base (1), an inner cavity of the toy base (1) provided with a control mainboard (5), a top of the protective shell (2) provided with a ticket dispensing mechanism connected to the control mainboard (5), a display screen (33) capable of displaying the number of hits provided on the protective shell (2), and a partition plate (4) provided in the inner cavity of the toy base (1), characterized in that: An integral target assembly is provided in the inner cavity of the toy base (1) and below the partition plate (4), and a driving mechanism for driving the integral target assembly is provided above the partition plate (4); The integrating target assembly comprises a first adjusting plate (15) provided on the lower surface of the partition plate (4) and a second adjusting plate (16) provided on the lower surface of the partition plate (4) and located below the first adjusting plate (15), both ends of the second adjusting plate (16) are provided with first imitation hamster parts (8), both ends of the first adjusting plate (15) are provided with second imitation hamster parts (9), and the two first imitation hamster parts (8) and the two second imitation hamster parts (9) are both located on the upper surface of the toy base (1) and are arranged in an interlaced manner. The integrating target assembly further includes a connecting assembly, wherein the second adjusting plate (16) is connected to the first adjusting plate (15) via the connecting assembly, and the connecting assembly is used to drive the second adjusting plate (16) to move in the opposite direction when the driving mechanism drives the first adjusting plate (15) to move; The inner cavities of the first simulated hamster part (8) and the second simulated hamster part (9) are both provided with touch mechanisms, and the lower surface of the partition plate (4) is also provided with a guide mounting shell (37) for limiting the sliding direction of the first adjustment plate (15) and the second adjustment plate (16).
2. A whack-a-mole toy according to claim 1, characterized in that: The driving mechanism comprises a rotating ring (14) rotatably arranged on the partition plate (4) and having a lower surface passing through the partition plate (4), and a driving module arranged on the partition plate (4) for driving the rotating ring (14) to rotate.
3. A whack-a-mole toy according to claim 2, characterized in that: A fixed gear (38) is provided at the top end of the rotating ring (14), and the driving module comprises a mounting shell (10) provided on the partition plate (4) and a gear set (13) provided in the inner cavity of the mounting shell (10). A worm (12) meshing with the gear set (13) is provided at the driving end of the mounting shell (10), and the gear set (13) meshes with the fixed gear (38).
4. A whack-a-mole toy according to claim 3, characterized in that: The connecting assembly includes a first connecting groove (17) formed on the surface of the first adjusting plate (15); a driving rod (18) extending into the inner cavity of the first connecting groove (17) is provided on the lower surface of the rotating ring (14); and an auxiliary mechanism for transmitting the movement of the second adjusting plate (16) when the first adjusting plate (15) moves and a limiting mechanism for assisting the sliding of the second adjusting plate (16) are provided on the lower surface of the partition plate (4).
5. A whack-a-mole toy according to claim 4, characterized in that: The auxiliary mechanism is rotatably provided on a transmission plate (19) on the lower surface of the partition plate (4) and located below the first adjustment plate (15) and the second adjustment plate (16); a second connecting groove (20) is transversely provided at one end of the transmission plate (19) and a third connecting groove (27) is provided at the other end; a first sliding rod (21) extending to the inner cavity of the second connecting groove (20) is provided on the lower surface of the second adjustment plate (16); and a second sliding rod (28) extending to the inner cavity of the third connecting groove (27) is provided on the lower surface of the first adjustment plate (15).
6. The whack-a-mole toy according to claim 4, wherein: The limiting mechanism includes connecting plates (22) provided at both ends of the second adjustment plate (16), the two connecting plates (22) being located between the two first imitation hamster parts (8), and the surfaces of the connecting plates (22) being provided with vertical grooves (23), and the lower surface of the partition plate (4) being provided with two positioning rods (24) extending to the inner cavities corresponding to the vertical grooves (23).
7. The whack-a-hamster toy according to claim 2, wherein: The touch mechanism comprises a sensing module (36) for judging a touch or striking reaction and a wireless module (35) for sending a control signal, wherein the wireless module (35) is connected to the control mainboard (5) by a signal.
8. The whack-a-mole toy according to claim 1, wherein: The surfaces of the partition plate (4) and the toy base (1) are both provided with a plurality of through slots (7) for limiting the movement direction of the first simulated hamster piece (8) and the second simulated hamster piece (9), and the number of the plurality of through slots (7) corresponds one-to-one to the number of the two first simulated hamster pieces (8) and the two second simulated hamster pieces (9).
9. The whack-a-mole toy according to claim 5, wherein: The ticket dispensing mechanism is connected to the control main board (5) for controlling ticket dispensing through the control main board (5). The ticket dispensing mechanism comprises a ticket dispensing shell (3) arranged on the top of the protective shell (2), a rotating shaft (30) rotatably arranged in the inner cavity of the ticket dispensing shell (3) for placing a sticker, a bill tube detachably arranged on the rotating shaft (30), a transmission cylinder (32) for conveying the bill tube to dispense tickets, a paper pressing roller (34) rotatably arranged in the inner cavity of the ticket dispensing shell (3), and a driving member (31) for driving the transmission cylinder (32) to rotate, the transmission cylinder (32) and the paper pressing roller (34) are both located above the rotating shaft (30), and the surface of the paper pressing roller (34) is in contact with the surface of the bill tube.
10. The whack-a-mole toy according to claim 1, wherein: Auxiliary grooves (25) are provided at both ends of the surface of the first adjustment plate (15), and a connecting rod (26) extending to the inner cavity corresponding to the auxiliary groove (25) is provided on the lower surface of the partition plate (4).
Citation Information
Patent Citations
Variable arc steel shuttering
CN2573677Y