Sand pot amusement machine
By designing a recycling mechanism in the sand pot game machine, the sand pots are automatically recycled using the first and second push modules, solving the problem of inconvenience in manual recycling and improving ease of use and gaming enjoyment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN BEE ANIMATION TECH CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-12
AI Technical Summary
Existing sand pot games require manual sand pot retrieval, which is inconvenient and reduces the enjoyment of the game.
A sand pot amusement machine was designed, which adopts a recycling mechanism, including a first pushing module and a second pushing module. The sand pot is automatically recycled by a drive device. The first pushing module pushes the sand pot into the recycling trough or recycling position, and the second pushing module pushes the sand pot in the recycling trough into the recycling position.
实现了沙壶的自动回收,提高了使用便利性,增强了游戏乐趣。
Smart Images

Figure CN224220705U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of amusement machine technology, and in particular to a sand pot amusement machine. Background Technology
[0002] Although there are some shovel games on the market, after people throw the shovels onto the platform, they need to walk to the other end of the platform to manually retrieve them, which is inconvenient and reduces the fun of the game. Utility Model Content
[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a sand-pot game machine that can automatically collect sandpots using a recycling mechanism, making it more convenient to use and ensuring the enjoyment of the game.
[0004] A shovel game machine according to an embodiment of the present invention includes a frame, a platform, and a recycling mechanism. The frame is provided with a recycling position. The upper surface of the platform is used for shovels to slide. The platform is disposed on the frame and located on one side of the recycling position. At least one first recycling channel is provided between the platform and the frame, and the first recycling channel is connected to the recycling position. The recycling mechanism includes a first pushing module and a second pushing module. The first pushing module is disposed on the frame or the platform, and the second pushing module is disposed on the first recycling channel. The first pushing module is used to drive the shovels on the platform to fall into the first recycling channel or the recycling position, and the second pushing module is used to drive the shovels in the first recycling channel to move to the recycling position.
[0005] The shovel game machine according to the embodiments of the present invention has at least the following beneficial effects: The shovel game machine provided by the present invention can use a first pushing module to push the shovels on the platform into a first recycling trough or recycling position. For the shovels that have fallen into the first recycling trough, a second pushing module can be used to push the shovels in the first recycling trough into the recycling position. Thus, the shovel game machine provided by the present invention can automatically recycle the shovels using a recycling mechanism, eliminating the need for people to manually recycle the shovels, making it more convenient and less time-consuming to use, thereby ensuring the fun of the game.
[0006] According to some embodiments of the present invention, the recycling mechanism further includes a driving device, which is disposed on the frame and connected to the first pushing module and the second pushing module. The first pushing module is disposed along the upper surface of the platform. The driving device can drive the first pushing module to move along the platform closer to or away from the recycling position, so that the first pushing module pushes the sand pot on the platform into the first recycling trough or the recycling position. The driving device can also drive the second pushing module to move along the first recycling channel closer to or away from the recycling position, so that the second pushing module can push the sand pot in the first recycling channel to the recycling position.
[0007] According to some embodiments of the present invention, two first recycling channels are provided, and the two first recycling channels are located on both sides of the platform in the width direction, respectively. The length direction of the first recycling channels is along the length direction of the platform. Two second pushing modules are provided and are located on the two first recycling channels in a corresponding manner.
[0008] According to some embodiments of the present invention, the second pushing module includes a mounting component and a push plate. The mounting component is connected to the driving device. The push plate is rotatably mounted on the lower end of the mounting component. A limiting structure is provided between the push plate and the mounting component. The limiting structure allows the push plate to swing towards the recycling position and restricts the push plate from swinging away from the recycling position. The push plate is used to push the sand pot along the first recycling channel to the recycling position. A guide structure is provided between the end of the platform away from the recycling position and the frame. When the second pushing module moves to the end of the first recycling channel away from the recycling position, the guide structure can guide the sand pot located behind the first pushing module into the first recycling channel and move to the side of the push plate close to the recycling position.
[0009] According to some embodiments of the present invention, the guiding structure includes a second recycling channel and two first guide plates. The two first guide plates are respectively disposed at the ends of the two first recycling channels away from the recycling position. The first guide plates are inclined along the length direction of the first recycling channel. The second recycling channel is located on the side of the platform away from the recycling position. The bottom wall of the second recycling channel is respectively connected to the two first guide plates at opposite ends. The bottom wall of the second recycling channel is higher in the middle and lower at both ends. When the second pushing module moves to the end of the first recycling channel away from the recycling position, the mounting member is located on the upper side of the first guide plate. The first guide plate drives the push plate to tilt towards the side of the recycling position.
[0010] According to some embodiments of the present invention, the first pushing module is connected to two second pushing modules, and when the driving device drives the second pushing module, the second pushing module can drive the first pushing module to move.
[0011] According to some embodiments of the present invention, the driving device includes two moving components arranged side by side, two first recycling channels located between the two moving components, and two second pushing modules connected to the two moving components in a one-to-one correspondence, wherein the moving components can drive the second pushing modules to move.
[0012] According to some embodiments of the present invention, the recycling position is provided with a ball receiving hopper and a ball discharging mechanism. The ball receiving hopper is used to receive the sand pots pushed to the recycling position by the recycling mechanism, and the ball discharging mechanism is used to remove the sand pots from the ball receiving hopper.
[0013] According to some embodiments of the present invention, a second guide plate is provided on the side of the platform facing the recycling position. The second guide plate is inclined in the width direction of the platform. The lower end of the second guide plate is connected to the first recycling channel. The second guide plate is located on the upper side of the ball collecting hopper.
[0014] According to some embodiments of the present invention, the ball dispensing mechanism includes a protective shell and a ball feeding device. The protective shell is provided with a ball dispensing channel and a ball receiving port. The ball dispensing channel is inclined. A valve is provided between the ball dispensing channel and the ball receiving port. The ball feeding device is used to transport the sand pot from the ball receiving hopper to the ball dispensing channel.
[0015] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0017] Figure 1 This is a schematic diagram of a sand-pot amusement machine according to an embodiment of the present utility model;
[0018] Figure 2 for Figure 1 A schematic diagram of the recycling mechanism for the sand pot amusement machine is shown;
[0019] Figure 3 for Figure 1 A schematic diagram of the guide structure of the sand pot amusement machine is shown;
[0020] Figure 4 for Figure 1The diagram shown illustrates the guide structure of the sand pot amusement machine, which moves the sand pot to the front of the second push module.
[0021] Figure 5 for Figure 1 The diagram shows the second push module of the sand pot amusement machine pushing the sand pot.
[0022] Figure label:
[0023] The components include: frame 100, recycling station 110, platform 200, recycling mechanism 300, first push module 310, second push module 320, mounting component 321, push plate 322, limiting structure 323, drive device 330, moving component 331, first guide plate 410, third guide plate 420, ball receiving hopper 500, ball discharging mechanism 600, protective shell 610, ball discharging channel 611, ball taking port 612, ball feeding device 620, valve 630, second guide plate 700, first recycling channel 810, second recycling channel 820, and sand pot 900. Detailed Implementation
[0024] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0025] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0026] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.
[0027] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0028] Reference Figure 1 and Figure 2 According to an embodiment of the present invention, a sand juggling machine includes a frame 100, a platform 200, and a recovery mechanism 300. The frame 100 is provided with a recovery position 110. The upper surface of the platform 200 is used for sliding sand juggles 900. The platform 200 is disposed on the frame 100 and located on one side of the recovery position 110. At least one first recovery channel 810 is provided between the platform 200 and the frame 100, and the first recovery channel 810 is connected to the recovery position 110. The recovery mechanism 300 includes a first pushing module 310 and a second pushing module 320. The first pushing module 310 is disposed on the upper side of the platform 200, and the second pushing module 320 is disposed in the first recovery channel 810. The first pushing module 310 is used to drive the sand juggles 900 on the platform 200 to fall into the first recovery channel 810 or the recovery position 110, and the second pushing module 320 is used to drive the sand juggles 900 in the first recovery channel 810 to move to the recovery position 110.
[0029] Reference Figure 1 and Figure 2 In some embodiments, the recycling mechanism 300 further includes a drive device 330, which is disposed on the frame 100 and connected to the first push module 310 and the second push module 320. The first push module 310 is disposed along the upper surface of the platform 200, and is indirectly disposed on the frame 100. The drive device 330 can drive the first push module 310 to move along the platform 200 closer to or away from the recycling position 110, so that the first push module 310 pushes the sand pot 900 on the platform 200 into the first recycling trough or the recycling position 110. The drive device 330 can drive the second push module 320 to move along the first recycling channel 810 closer to or away from the recycling position 110, so that the second push module 320 can push the sand pot 900 in the first recycling channel 810 to the recycling position 110. With the above configuration, the first pushing module 310 and the second pushing module 320 directly contact each other to move the sand pot 900. This configuration makes the recovery mechanism 300 relatively simple and easy to install.
[0030] The shovel curling machine provided by this utility model is similar to the sport of curling. Players push the shovel 900 along the upper surface of the platform 200, and scores are given based on the position of the shovel 900 on the platform 200. Therefore, referring to… Figure 1 and Figure 5 , refer to Figure 1The sand pot 900 is shaped like a cylinder with a diameter greater than its axial height. Therefore, when people throw the pot, the sand pot 900 is more likely to slide along the upper surface of the platform 200 rather than roll. In order to facilitate scoring, the upper surface of the platform 200 can be equipped with a scoring diagram, or a diagram can be projected onto the upper surface of the platform 200 via a projector.
[0031] With the above configuration, the shovel game machine provided by this utility model can use the first pushing module 310 to push the shovel 900 on the platform 200 into the first recycling trough or recycling position 110. For the shovel 900 that has fallen into the first recycling trough, the second pushing module 320 can push the shovel 900 in the first recycling trough into the recycling position 110. Thus, the shovel game machine provided by this utility model can automatically recycle the shovel 900 using the recycling mechanism 300, eliminating the need for people to manually recycle the shovel 900, making it more convenient and less time-consuming, thereby ensuring the fun of the game.
[0032] Reference Figure 1 and Figure 2 According to some embodiments of this utility model, two first recycling channels 810 are provided, one on each side of the platform 200 in the width direction, and the length direction of the first recycling channels 810 is along the length direction of the platform 200. Two second pushing modules 320 are provided, one on each of the two first recycling channels 810. With the above configuration, people can play the game of throwing sand pots at the recycling position 110. During the game, the first pushing module 310 and the second pushing module 320 can move to the end away from the recycling position 110, reducing the impact of the recycling mechanism 300 on the game. If the sand pot 900 thrown by the people does not stay on the platform 200, the sand pot 900 will enter the first recycling channels 810 on both sides of the platform 200 to wait for recycling.
[0033] It is conceivable that the aforementioned first recycling channel 810 can also be set up. In this case, the cross-section of the entire first recycling channel 810 is roughly V-shaped, the platform 200 is in the middle of the first recycling channel 810, and the second pushing module 320 is set at the bottom of the first recycling channel 810. In this case, the second pushing module 320 can be set up once. Thus, the first recycling channel 810 forms an inlet for receiving sand pots 900 on both sides of the platform 200. The sand pots 900 on the platform 200 can fall from one side of the platform 200 into the first recycling channel 810 and then reach the bottom of the first recycling channel 810. At this time, the second pushing module 320 can push the sand pots 900 in the first recycling channel 810 into the recycling position 110.
[0034] Reference Figure 2 , refer to Figure 1In some embodiments provided, the second pushing module 320 includes a mounting member 321 and a push plate 322. The mounting member 321 is connected to the driving device 330. The push plate 322 is rotatably mounted on the lower end of the mounting member 321. A limiting structure 323 is provided between the push plate 322 and the mounting member 321. The limiting structure 323 allows the push plate 322 to swing towards the recovery position 110 and restricts the push plate 322 from swinging away from the recovery position 110. The push plate 322 is used to push the sand pot 900 along the first recovery channel 8. 10 moves to the recycling position 110. Thus, as the pusher plate 322 moves away from the recycling position 110, the pusher plate 322 rotates toward the recycling position 110 to avoid the sand pot 900 located behind the pusher plate 322 in the first recycling channel 810. Then, when the pusher plate 322 moves toward the recycling position 110, since the pusher plate 322 cannot swing away from the recycling position 110, the pusher plate 322 can push the sand pot 900 located in front of the pusher plate 322 in the first recycling channel 810 to move.
[0035] Reference Figure 1 and Figure 3 A guide structure is provided between the end of the platform 200 away from the recycling position 110 and the frame 100. When the second push module 320 moves to the end of the first recycling tank away from the recycling position 110, the guide structure can guide the sand pot 900 located behind the first push module 310 into the first recycling channel 810 and move to the side of the push plate 322 near the recycling position 110. During this process, the push plate 322 can swing towards the recycling position 110 to avoid the sand pot 900, so that the sand pot 900 can move from the side of the push plate 322 away from the recycling position 110 to the side of the push plate 322 near the recycling position 110 under the action of the guide structure. Thus, when there is a sand pot 900 located behind the push plate 322 at the end of the platform 200 away from the recycling position 110, the second push module 320 can also push these sand pots 900 to the recycling position 110.
[0036] Ideally, people would stop playing when the recycling mechanism 300 is collecting the sand pots 900. However, in reality, because there are children among the players, when the first push module 310 moves closer to the recycling position 110, children may start throwing sand pots from behind the first push module 310, causing some sand pots 900 to be located behind the first push module 310, resulting in sand pots 900 being unable to be collected. This utility model effectively solves the problem of sand pots 900 being unable to be collected when they appear behind the first push module 310 by configuring the second push module 320 as a push plate 322 rotatably mounted on the mounting piece 321, and by using a guiding structure.
[0037] Reference Figures 3 to 5According to some embodiments of the present invention, the guiding structure includes a second recycling channel 820 and two first guide plates 410. The two first guide plates 410 are respectively disposed at the ends of the two first recycling channels 810 away from the recycling position 110. The first guide plates 410 are inclined in the length direction of the first recycling channel 810. The second recycling channel 820 is located on the side of the platform 200 away from the recycling position 110. The bottom wall of the second recycling channel 820 is respectively connected to the two first guide plates 410 at opposite ends. The bottom wall of the second recycling channel 820 is higher in the middle and lower at both ends. When the second pushing module 320 moves to the end of the first recycling channel away from the recycling position 110, the mounting part 321 is located on the upper side of the first guide plate 410. The first guide plate 410 drives the push plate 322 to tilt towards the side of the recycling position 110. Therefore, the second recycling channel 820 can guide the sand pot 900 located behind the first push module 310 to the first guide plate 410. Then, the first guide plate 410 guides the sand pot 900 to the side of the first guide plate 410 close to the recycling position 110. When the push plate 322 of the second push module 320 moves to the upper side of the first guide plate 410, all the sand pots 900 in the first recycling channel 810 will be located on the side of the push plate 322 close to the recycling position 110. Thus, when the push plate 322 moves towards the recycling position 110, the push plate 322 can push all the sand pots 900 in the first recycling channel 810 towards the recycling position 110.
[0038] Reference Figure 3 The bottom wall of the second recycling channel 820 can be formed by connecting two third guide plates 420 arranged in an inverted V shape. The two third guide plates 420, the platform 200 and the frame 100 enclose the second recycling channel 820.
[0039] It should be noted that when there is only one first recycling channel 810 and it is arranged in a roughly V-shape on the underside of the platform 200, the second recycling channel 820 can be replaced with a drop channel for the above-mentioned guide structure. In this case, the sand pot 900 can fall from the drop channel onto the first guide plate 410 and then move to the front side of the first guide plate 410 under the guidance of the first guide plate 410.
[0040] Reference Figure 2 According to some embodiments of the present invention, the first push module 310 is connected to two second push modules 320. When the drive device 330 drives the second push module 320, the second push module 320 can drive the first push module 310 to move. With the above arrangement, while driving the first push module 310 to move, the drive device 330 can be hidden inside the frame 100.
[0041] Reference Figure 1 and Figure 2According to some embodiments of the present invention, the drive device 330 includes two moving components 331 arranged side by side, two first recycling channels 810 located between the two moving components 331, and two second push modules 320 connected to the two moving components 331 in a one-to-one correspondence. The moving components 331 can drive the second push modules 320 to move. With the above arrangement, the entire recycling mechanism 300 runs more smoothly.
[0042] The moving component 331 can be a belt conveyor or a linear motor or other linear drive device 330.
[0043] It should be noted that the first pushing module 310 and the second pushing module 320 can also push the sand pot 900 to move in a non-direct contact manner. For example, in some embodiments, the first pushing module 310 can be set as an air gun, and the sand pot 900 is pushed to move by the high-speed air sprayed by the air gun. The air gun of the first pushing module 310 can be installed on a moving device, which can be installed on the platform 200 or the frame 100. Thus, the air gun can move along the platform 200 and sweep across the upper surface of the platform 200.
[0044] In some embodiments, the second pushing module 320 can be an electromagnet, and a magnet or magnetic material can be placed inside the sand pot 900. Thus, during the process of the pushing module moving along the first recycling channel 810, the second pushing module 320 can use magnetic force to drive the sand pot 900 to move closer to the recycling position 110. With this setting, when the second pushing module 320 returns to a position away from the recycling position 110, the second pushing module 320 will not drive the sand pot 900 to move. Thus, it can avoid the situation where the sand pot 900 cannot be recycled when it is placed behind the first pushing module 310. In this case, the second recycling channel 820 can be retained, and the first guide plate 410 can be set or not.
[0045] Reference Figure 1 According to some embodiments of this utility model, the recycling position 110 is equipped with a ball-collecting hopper 500 and a ball-discharging mechanism 600. The ball-collecting hopper 500 is used to receive the sand pots 900 pushed to the recycling position 110 by the recycling mechanism 300, and the ball-discharging mechanism 600 is used to remove the sand pots 900 from the ball-collecting hopper 500. Thus, the ball-collecting hopper 500 centrally collects and stores the sand pots 900, and the ball-discharging mechanism 600 can supply sand pots 900 to people when it is working. When the ball-discharging mechanism 600 is not working, people cannot obtain sand pots 900. Therefore, the sand pot amusement machine can control whether to output sand pots 900 to people.
[0046] Reference Figure 1According to some embodiments of this utility model, a second guide plate 700 is provided on the side of the platform 200 facing the recycling position 110. The second guide plate 700 is inclined in the width direction of the platform 200. The lower end of the second guide plate 700 is connected to the first recycling channel 810. The second guide plate 700 is located on the upper side of the ball collecting hopper 500. The second guide plate 700 receives the sand pot 900 falling from the end of the platform 200 near the recycling position 110, preventing the sand pot 900 from falling directly into the ball collecting hopper 500, reducing the distance of the sand pot 900 falling, thereby reducing the impact and impact sound when the sand pot 900 falls. In addition, the second guide plate 700 can also play a certain protective role to prevent children from reaching into the ball collecting hopper 500.
[0047] When there are two first recycling channels 810, there can also be two second guide plates 700 arranged in an inverted V shape.
[0048] Reference Figure 1 According to some embodiments of the present invention, the ball dispensing mechanism 600 includes a protective shell 610 and a ball feeding device 620. The protective shell 610 is provided with a ball dispensing channel 611 and a ball taking port 612. The ball dispensing channel 611 is inclined. The ball feeding device 620 is used to transport the sand pot 900 from the ball receiving hopper 500 to the ball dispensing channel 611. A valve 630 is provided between the ball dispensing channel 611 and the ball taking port 612. The valve 630 controls whether the ball dispensing channel 611 outputs the sand pot 900 to the ball taking port 612.
[0049] In the specific implementation process, the ball receiving hopper 500 includes a liftable tray, and the ball feeding device 620 is set as a lifting device. The tray is tilted. After the tray receives the sand pot 900, the ball feeding device 620 can move the tray to the ball outlet channel 611, so that the sand pot 900 slides from the tray into the ball outlet channel 611 under the action of gravity. When the valve 630 is opened, the sand pot 900 can slide from the ball outlet channel 611 into the ball taking port 612 under the action of gravity.
[0050] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0051] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A sand-pot amusement machine, characterized in that, include: The rack (100) is equipped with a recycling station (110); Platform (200), the upper surface of which is used for sliding of sand pot (900), the platform (200) is disposed on the frame (100) and located on one side of the recycling position (110), at least one first recycling channel (810) is provided between the platform (200) and the frame (100), the first recycling channel (810) is connected to the recycling position (110); The recycling mechanism (300) includes a first pushing module (310) and a second pushing module (320). The first pushing module (310) is disposed on the frame (100) or the platform (200), and the second pushing module (320) is disposed on the first recycling channel (810). The first pushing module (310) is used to drive the sand pot (900) on the platform (200) to fall into the first recycling channel (810) or the recycling position (110), and the second pushing module (320) is used to drive the sand pot (900) in the first recycling channel (810) to move to the recycling position (110).
2. The sand pot amusement machine according to claim 1, characterized in that, The recycling mechanism (300) further includes a drive device (330), which is disposed on the frame (100). The drive device (330) is connected to the first push module (310) and the second push module (320). The first push module (310) is disposed along the upper surface of the platform (200). The drive device (330) can drive the first push module (310) to move along the platform (200) closer to or away from the recycling position (110), so that the first push module (310) pushes the sand pot (900) on the platform (200) into the first recycling tank or the recycling position (110). The drive device (330) can drive the second push module (320) to move along the first recycling channel (810) closer to or away from the recycling position (110), so that the second push module (320) can push the sand pot (900) in the first recycling channel (810) to move to the recycling position (110).
3. The sand pot amusement machine according to claim 2, characterized in that, There are two first recycling channels (810), which are located on both sides of the platform (200) in the width direction and the length direction of the first recycling channels (810) is along the length direction of the platform (200). There are two second pushing modules (320) which are located on the two first recycling channels (810) in a corresponding manner.
4. A sand-pot amusement machine according to claim 3, characterized in that, The second pushing module (320) includes a mounting component (321) and a push plate (322). The mounting component (321) is connected to the driving device (330). The push plate (322) is rotatably mounted on the lower end of the mounting component (321). A limiting structure (323) is provided between the push plate (322) and the mounting component (321). The limiting structure (323) allows the push plate (322) to swing toward the retraction position (110) and restricts the push plate (322) from swinging away from the retraction position (110). The push plate (322) is used for... The sand pot (900) is pushed along the first recycling channel (810) to the recycling position (110). A guide structure is provided between the end of the platform (200) away from the recycling position (110) and the frame (100). When the second push module (320) moves to the end of the first recycling channel away from the recycling position (110), the guide structure can guide the sand pot (900) located behind the first push module (310) into the first recycling channel (810) and move to the side of the push plate (322) close to the recycling position (110).
5. A sand-pot amusement machine according to claim 4, characterized in that, The guiding structure includes a second recycling channel (820) and two first guide plates (410). The two first guide plates (410) are respectively disposed at the ends of the two first recycling channels (810) away from the recycling position (110). The first guide plates (410) are inclined in the length direction of the first recycling channel (810). The second recycling channel (820) is located on the side of the platform (200) away from the recycling position (110). The bottom wall of the second recycling channel (820) is respectively connected to the two first guide plates (410) at opposite ends. The bottom wall of the second recycling channel (820) is higher in the middle and lower at both ends. When the second pushing module (320) moves to the end of the first recycling channel away from the recycling position (110), the mounting member (321) is located on the upper side of the first guide plate (410). The first guide plate (410) drives the push plate (322) to tilt towards the side of the recycling position (110).
6. A sand-pot amusement machine according to claim 3, characterized in that, The first push module (310) is connected to two second push modules (320). When the drive device (330) drives the second push module (320), the second push module (320) can drive the first push module (310) to move.
7. A sand-pot amusement machine according to claim 6, characterized in that, The drive device (330) includes two moving components (331) arranged side by side, two first recycling channels (810) located between the two moving components (331), and two second push modules (320) connected to the two moving components (331) in a one-to-one correspondence. The moving components (331) can drive the second push modules (320) to move.
8. A sand-pot amusement machine according to claim 3, characterized in that, The recycling station (110) is provided with a ball receiving hopper (500) and a ball discharging mechanism (600). The ball receiving hopper (500) is used to receive the sand pot (900) pushed to the recycling station (110) by the recycling mechanism (300), and the ball discharging mechanism (600) is used to remove the sand pot (900) from the ball receiving hopper (500).
9. A sand-pot amusement machine according to claim 8, characterized in that, A second guide plate (700) is provided on the side of the platform (200) facing the recycling position (110). The second guide plate (700) is inclined in the width direction of the platform (200). The lower end of the second guide plate (700) is connected to the first recycling channel (810). The second guide plate (700) is located on the upper side of the ball collecting hopper (500).
10. A sand-pot amusement machine according to claim 8, characterized in that, The ball dispensing mechanism (600) includes a protective shell (610) and a ball feeding device (620). The protective shell (610) is provided with a ball dispensing channel (611) and a ball taking port (612). The ball dispensing channel (611) is inclined. A valve (630) is provided between the ball dispensing channel (611) and the ball taking port (612). The ball feeding device (620) is used to transport the sand pot (900) from the ball receiving hopper (500) to the ball dispensing channel (611).