Novel push plate mechanism and entertainment equipment
By converting circular motion into linear motion through reciprocating moving parts and intermediate transmission parts, the problem of tooth jamming caused by the need for forward and reverse rotation of the motor in the existing technology is solved. This simplifies the motor structure and improves the stability of the push plate assembly, thus meeting the fun requirements of entertainment equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU JISU ANIMATION TECH CO LTD
- Filing Date
- 2025-04-21
- Publication Date
- 2026-04-28
AI Technical Summary
The existing pusher mechanism achieves the reciprocating motion of the pusher through the cooperation of motor, gears, and racks. However, it suffers from gear jamming and has high motor performance requirements, resulting in complex structure and electromagnetic interference problems.
The circular motion is converted into linear motion by using reciprocating moving parts and intermediate transmission parts, so that the main motor only needs to rotate in one direction. Combined with the push rod mechanism, the reciprocating movement of the push plate assembly is realized, which simplifies the motor structure and improves its service life. The inner and outer push plates adopt an embedded design to enhance stability.
The simplified motor structure reduces electromagnetic interference, extends motor lifespan, and makes the control of the push plate assembly simpler, easier to maintain and replace, thus enhancing the fun of the entertainment equipment.
Smart Images

Figure CN224177008U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of entertainment equipment technology, specifically to a novel push plate mechanism and entertainment equipment. Background Technology
[0002] Indoor playgrounds, shopping malls, plazas and other areas often have electric amusement equipment. Some of this equipment uses a pusher mechanism to move objects during gameplay, which is very fun and popular with children.
[0003] Currently, the pusher plate usually achieves reciprocating motion through the cooperation of motor, gears, and racks. However, this requires the motor to rotate in both directions to drive the gears, which can cause gear jamming. Moreover, the performance requirements for the motor are also higher. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings and deficiencies in the existing technology and to provide a new type of push plate mechanism and entertainment equipment.
[0005] One embodiment of this utility model provides a novel pusher mechanism, including: a bracket, a pusher assembly, and a reciprocating drive assembly;
[0006] The pusher assembly is slidably mounted on the bracket, and the reciprocating drive assembly is driven to drive the pusher assembly to reciprocate.
[0007] The reciprocating drive assembly includes a main motor, a reciprocating moving part, and an intermediate transmission component. The main motor is driven by the reciprocating moving part and is used to drive the reciprocating moving part to rotate. The push plate assembly is provided with a reciprocating fixed point component. The two ends of the intermediate transmission component are respectively rotatably connected to the reciprocating moving part and the reciprocating fixed point component.
[0008] In some optional embodiments, the push plate assembly includes an outer push plate, an inner push plate, and a push rod mechanism. The outer push plate is slidably connected to the bracket, the inner push plate slides on the inner push plate, and the push rod mechanism is disposed on the outer push plate and drivenly connected to the inner push plate to drive the distance between the inner push plate and the outer push plate.
[0009] In some alternative implementations, the outer push plate forms a movable channel, the inner push plate is movably embedded in the movable channel, and slides along the movable channel under the drive of the push rod mechanism.
[0010] In some optional embodiments, the movable channel is provided with a plurality of sliding seats, and the inner push plate is provided with an inner guide rail that slides with the sliding seats.
[0011] In some optional embodiments, a plurality of sliding seats are provided in the movable channel, and the plurality of sliding seats are evenly arranged on both sides of the push rod mechanism. The inner push plate is provided with two inner guide rods that slide in cooperation with the sliding seats.
[0012] In some alternative embodiments, the bracket is provided with an outer guide rail rod, and the outer push plate is provided with a guide rail sleeve, the guide rail sleeve being slidably engaged with the outer guide rail rod.
[0013] In some optional embodiments, the bracket is provided with two outer guide rails, which are respectively located on both sides of the reciprocating fixed point component, and the outer push plate is provided with two guide rail sleeves, which slide in cooperation with the outer guide rails.
[0014] In some alternative embodiments, the inner push plate is provided with a push rod fixing member, which is detachably engaged with the push rod mechanism.
[0015] In some optional embodiments, the intermediate transmission component includes a distance adjusting rod and two bearings, with both ends of the distance adjusting rod being movably connected to the two bearings respectively. The reciprocating moving component is provided with an eccentric portion, and the two bearings are respectively rotatably engaged with the eccentric portion of the reciprocating moving component and the reciprocating stationary component.
[0016] Compared to existing technologies, the novel pusher mechanism of this utility model converts circular motion into linear motion through reciprocating moving parts and intermediate transmission parts. This allows the main motor to drive the pusher assembly to move back and forth with only unidirectional rotation, eliminating the need for forward and reverse rotation. This simplifies the main motor structure, makes it easier to control, extends its lifespan, and reduces electromagnetic interference. The push rod mechanism simplifies the distance control between the inner and outer pushers, making maintenance and replacement easier. The embedded design of the inner and outer pushers further simplifies the structure. It can be used in entertainment and gaming equipment, offering high entertainment value and making it popular with children.
[0017] Another embodiment of this utility model provides an entertainment device, including: a novel push plate mechanism as described above.
[0018] To provide a clearer understanding of this invention, the specific embodiments of this invention will be described below in conjunction with the accompanying drawings. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of a novel pusher mechanism according to an embodiment of the present invention;
[0020] Figure 2 This is a schematic diagram of one side of the novel pusher mechanism according to an embodiment of the present invention;
[0021] Figure 3 This is an exploded view of a novel pusher mechanism according to an embodiment of the present invention;
[0022] Figure 4 This is a schematic diagram of the structure of the novel push plate mechanism according to an embodiment of the present invention after adjusting the position of the inner push plate;
[0023] Figure 5 This is a schematic diagram of one side of the push plate according to an embodiment of the present invention.
[0024] Explanation of reference numerals in the attached figures:
[0025] 10. Bracket; 11. Outer guide rail rod; 20. Push plate assembly; 21. Reciprocating stationary component; 22. Outer push plate; 221. Mounting bracket; 222. Movable channel; 223. Sliding seat; 224. Guide rail sleeve; 23. Inner push plate; 231. Inner guide rail rod; 232. Push rod fixing component; 24. Push rod mechanism; 30. Reciprocating drive assembly; 31. Main motor; 32. Reciprocating moving component; 321. Eccentric part; 33. Intermediate transmission component; 331. Distance adjustment rod; 332. Bearing. Detailed Implementation
[0026] The technical solutions of the present invention will now be clearly and completely described with reference to the accompanying drawings of the embodiments thereof. Please refer to... Figure 1 One embodiment of this utility model provides a novel pusher mechanism, including: a bracket 10, a pusher assembly 20, and a reciprocating drive assembly 30.
[0027] The push plate assembly 20 is slidably mounted on the bracket 10. The reciprocating drive assembly 30 is connected to the push plate assembly 20 and is used to drive the push plate assembly 20 to move back and forth. The movement of the push plate assembly 20 pushes the target object to move, thereby meeting the game requirements.
[0028] Please see Figure 2 The reciprocating drive assembly 30 includes a main motor 31, a reciprocating movable component 32, and an intermediate transmission component 33. The main motor 31 is driven by the reciprocating movable component 32 and is used to drive the reciprocating movable component 32 to rotate. The pusher assembly 20 is provided with a reciprocating fixed component 21. The two ends of the intermediate transmission component 33 are respectively rotatably connected to the reciprocating movable component 32 and the reciprocating fixed component 21. The main motor 31 drives the reciprocating movable component 32 to rotate. Based on the principle of linkage mechanism, the reciprocating movable component 32 drives the reciprocating fixed component 21 to translate back and forth through the intermediate transmission component 33, thereby driving the pusher assembly 20 to reciprocate. The main motor 31 can realize the reciprocating motion of the pusher assembly 20 by driving the reciprocating movable component 32 to rotate in one direction. This helps to simplify the structure of the main motor 31, reduce costs, facilitate the control of the main motor 31, improve the service life of the motor, and reduce electromagnetic interference.
[0029] Please see Figure 3 and Figure 4 In some optional embodiments, the pusher assembly 20 includes an outer pusher plate 22, an inner pusher plate 23, and a push rod mechanism 24. The outer pusher plate 22 is slidably connected to the bracket 10, the inner pusher plate 23 slides on the inner pusher plate 23, and the push rod mechanism 24 is disposed on the outer pusher plate 22 and drivenly connected to the inner pusher plate 23 to drive the distance between the inner pusher plate 23 and the outer pusher plate 22. When the pusher needs to adjust to its maximum movement distance to meet entertainment needs, the push rod mechanism 24 drives the inner pusher plate 23 to move to adjust the distance between the inner pusher plate 23 and the outer pusher plate 22, thereby adjusting the maximum distance that the pusher assembly 20 can push out. The pusher assembly 20 pushes the target object to move through the inner pusher plate 23, which is simple to control and easy to maintain and replace. In this embodiment, the bottom of the outer pusher plate 22 is provided with a mounting bracket 221 for mounting the push rod mechanism 24, and the reciprocating fixed point component 21 is disposed at the bottom of the mounting bracket 221.
[0030] The push rod mechanism 24 can be of different types, such as electric push rod, hydraulic push rod or pneumatic push rod, depending on the actual use.
[0031] Please see Figure 5 In some alternative embodiments, the outer push plate 22 forms a movable channel 222, and the inner push plate 23 is movably embedded in the movable channel 222 and slides along the movable channel 222 under the drive of the push rod mechanism 24. The inner and outer push plates 22 adopt an embedded structure, which makes the structural cooperation between the inner push plate 23 and the outer push plate 22 stable, and the movement of the inner push plate 23 and the outer push plate 22 is not easy to shake.
[0032] In order to improve the movement stability of the inner push plate 23, in some optional embodiments, a plurality of sliding seats 223 are provided in the movable channel 222, and an inner guide rod 231 is provided on the inner push plate 23 to slide in cooperation with the sliding seats 223. The sliding cooperation between the inner guide rod 231 and the sliding seats 223 can improve the stability of the inner push plate 23 when it moves relative to the outer push plate 22.
[0033] In some optional embodiments, the movable channel 222 is provided with a plurality of sliding seats 223, which are evenly arranged on both sides of the push rod mechanism 24. The inner push plate 23 is provided with two inner guide rails 231 that slide in cooperation with the sliding seats 223. The plurality of sliding seats 223 helps to improve the movement stability of the inner push plate 23, and the arrangement of the inner guide rails 231 on both sides of the push rod mechanism 24 helps to restrict the inner push plate 23 relative to the push rod mechanism 24 in the circumferential direction, thereby further improving the movement stability of the inner push plate 23.
[0034] In some optional embodiments, the bracket 10 is provided with an outer guide rail rod 11, and the outer push plate 22 is provided with a guide rail sleeve 224. The outer guide rail rod 11 moves through the guide rail sleeve 224 to achieve a sliding engagement between the guide rail sleeve 224 and the outer guide rail rod 11. The engagement between the outer guide rail rod 11 and the guide rail sleeve 224 helps to improve the stability of the movement of the outer push plate 22 relative to the bracket 10, thereby making the push plate assembly 20 more stable when it reciprocates.
[0035] In some optional embodiments, the bracket 10 is provided with two outer guide rods 11, which are located on both sides of the reciprocating fixed point component 21. The outer push plate 22 is provided with two guide sleeves 224, which are slidably engaged with the outer guide rods 11. The arrangement of the outer guide rods 11 on both sides of the reciprocating fixed point component 21 helps to restrict the outer push plate 22 relative to the reciprocating fixed point component 21 in the circumferential direction, thereby further improving the movement stability of the outer push plate 22.
[0036] In some alternative embodiments, the inner push plate 23 is provided with a push rod fixing member 232, which is detachably engaged with the push rod mechanism 24, thereby facilitating the disassembly, assembly, and maintenance of the push rod mechanism 24 and the inner push plate 23.
[0037] In some optional embodiments, the intermediate transmission component 33 includes a distance adjusting rod 331 and two bearings 332. The two ends of the distance adjusting rod 331 are movably connected to the two bearings 332, respectively. An eccentric portion 321 is provided on the reciprocating movable component 32. The two bearings 332 are rotatably engaged with the eccentric portion 321 and the reciprocating fixed point component 21 of the reciprocating movable component 32, respectively. The distance between the bearings 332 and the distance adjusting rod 331 can be adjusted, thereby adjusting the length of the intermediate transmission component 33. Since the position of the reciprocating stroke of the pusher assembly 20 depends on the distance between the reciprocating movable component 32 and the reciprocating fixed point component 21, and this distance depends on the length of the intermediate transmission component 33, the distance can be adjusted by adjusting the length of the intermediate transmission component 33. It should be noted that the eccentric portion 321 is offset from the rotation axis of the reciprocating movable component 32, and the range of the reciprocating stroke of the pusher assembly 20 is related to the distance between the rotation axis of the reciprocating movable component 32 and the eccentric portion 321. In this embodiment, a threaded rod is provided on one side of the bearing 332, which is threadedly engaged with the distance adjustment rod 331. The distance between the bearing 332 and the distance adjustment rod 331 can be adjusted by rotating the bearing 332.
[0038] The bearing 332 can be selected according to actual needs. In this embodiment, the bearing 332 is a fisheye bearing. Of course, other types of bearings can also be used, and this example is not limited to this one.
[0039] The shape of the bracket 10 and the installation method of the main motor 31 can be selected according to actual installation requirements, and are not limited to those shown in the figure.
[0040] The novel pusher mechanism described above can be applied to entertainment equipment, which includes the novel pusher mechanism described above. Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A novel pusher mechanism, characterized in that, include: Support frame, push plate assembly, reciprocating drive assembly; The pusher assembly is slidably mounted on the bracket, and the reciprocating drive assembly is driven to drive the pusher assembly to reciprocate. The reciprocating drive assembly includes a main motor, a reciprocating moving part, and an intermediate transmission component. The main motor is driven by the reciprocating moving part and is used to drive the reciprocating moving part to rotate. The push plate assembly is provided with a reciprocating fixed point component. The two ends of the intermediate transmission component are respectively rotatably connected to the reciprocating moving part and the reciprocating fixed point component.
2. The novel pusher mechanism according to claim 1, characterized in that: The push plate assembly includes an outer push plate, an inner push plate, and a push rod mechanism. The outer push plate is slidably connected to the bracket, the inner push plate slides on the inner push plate, and the push rod mechanism is disposed on the outer push plate and drivenly connected to the inner push plate to drive the distance between the inner push plate and the outer push plate.
3. The novel pusher mechanism according to claim 2, characterized in that: The outer push plate forms a movable channel, and the inner push plate is movably embedded in the movable channel and slides along the movable channel under the drive of the push rod mechanism.
4. The novel pusher mechanism according to claim 3, characterized in that: The active channel is provided with several sliding seats, and the inner push plate is provided with an inner guide rail rod that slides with the sliding seats.
5. The novel pusher mechanism according to claim 4, characterized in that: The active channel is provided with a plurality of sliding seats, which are evenly arranged on both sides of the push rod mechanism. The inner push plate is provided with two inner guide rods that slide in cooperation with the sliding seats.
6. The novel pusher mechanism according to claim 2, characterized in that: The bracket is provided with an outer guide rail rod, and the outer push plate is provided with a guide rail sleeve, the guide rail sleeve and the outer guide rail rod being slidably engaged.
7. A novel pusher mechanism according to claim 6, characterized in that: The bracket is provided with two outer guide rails, which are located on both sides of the reciprocating fixed point component. The outer push plate is provided with two guide rail sleeves, which slide in cooperation with the outer guide rails.
8. The novel pusher mechanism according to claim 2, characterized in that: The inner push plate is provided with a push rod fixing component, which is detachably engaged with the push rod mechanism.
9. A novel pusher mechanism according to any one of claims 1 to 7, characterized in that: The intermediate transmission component includes a distance adjusting rod and two bearings. The two ends of the distance adjusting rod are movably connected to the two bearings respectively. The reciprocating moving part is provided with an eccentric part. The two bearings are respectively rotatably engaged with the eccentric part of the reciprocating moving part and the reciprocating fixed part.
10. An entertainment device, characterized in that, include: A novel pusher mechanism as described in any one of claims 1 to 9.