A garbage sweeping station with drying function

By introducing water spraying and drying components into the garbage sweeping station, the problem of low drying efficiency of garbage sweepers has been solved, enabling rapid drying and water resource recycling, and improving work efficiency.

CN224277106UActive Publication Date: 2026-05-26CHINA MCC 2 GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA MCC 2 GRP CO LTD
Filing Date
2025-03-24
Publication Date
2026-05-26

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Abstract

This utility model relates to a garbage sweeper station with a drying function. The outer shell forms a cleaning cavity, with a mechanical compartment on its outer wall and a water supply compartment on the outer wall opposite to the mechanical compartment. A water storage compartment is located at the bottom of the outer shell, and multiple drainage holes are provided at the bottom of the outer shell. The cleaning cavity is connected to the water storage compartment through these drainage holes. One end of a water spraying component is connected to the water storage compartment, and the other end extends through the water supply compartment into the cleaning cavity. One end of a cleaning component is located inside the mechanical compartment, and the other end extends into the water storage compartment. A drying component is located inside the mechanical compartment. Multiple ventilation holes are provided on the outer wall of the outer shell away from the water supply compartment, and these ventilation holes correspond to the mechanical compartment. The cleaning cavity is connected to the mechanical compartment through these ventilation holes. By incorporating the drying component, the air blown into the cleaning cavity by the drying component can perform preliminary cleaning and drying of the garbage sweeper, improving the working efficiency of the garbage sweeper.
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Description

Technical Field

[0001] This utility model relates to the field of waste sweeping station technology, and in particular to a waste sweeping station with a drying function. Background Technology

[0002] Currently, garbage sweeping stations are designated parking areas for sweeping trucks. These trucks effectively improve road cleaning efficiency and reduce the burden on sanitation workers. They can replace regular sanitation workers for large-scale cleaning and are less prone to littering, meeting the environmental standards of large cities. However, existing garbage sweeping stations lack cleaning devices for the sweeping trucks. Prolonged operation can cause mud or dust to accumulate on the truck's exterior, affecting cleaning efficiency. Furthermore, existing stations cannot dry wet sweeping trucks, forcing them to be left to air dry for extended periods, further impacting work efficiency. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a garbage sweeping station with a drying function, which has the advantage of being able to dry the wet garbage sweeping vehicle and improve work efficiency.

[0004] The above-mentioned utility model objective is achieved through the following technical solution: a garbage sweeping station with drying function, comprising a shell, a water spraying assembly, a cleaning assembly, and a drying assembly; the shell is configured to form a cleaning cavity, a mechanical chamber is provided on one side of the outer wall of the shell, a water supply chamber is provided on the outer wall of the shell away from the mechanical chamber, a water storage chamber is provided at the bottom of the shell for holding water, and multiple drainage holes are provided at the bottom of the shell, the cleaning cavity is connected to the water storage chamber through the multiple drainage holes, and the garbage sweeper to be cleaned is parked in the cleaning cavity; one end of the water spraying assembly is connected to the water storage chamber, and the other end of the water spraying assembly passes through the water supply chamber and extends... The water spraying assembly extends into the cleaning cavity and is located at the top of the cleaning cavity. It is used to spray water to rinse the garbage sweeper to be cleaned. One end of the cleaning assembly is located in the mechanical compartment, and the other end of the cleaning assembly extends into the water storage tank. The cleaning assembly is used to clean the water leakage hole to prevent it from becoming clogged. The drying assembly is located in the mechanical compartment. Multiple ventilation holes are provided on the outer wall of the outer shell away from the water supply tank. The multiple ventilation holes are all corresponding to the mechanical compartment. The cleaning cavity is connected to the mechanical compartment through the multiple ventilation holes. The drying assembly is used to blow hot air into the cleaning cavity to dry the wet garbage sweeper.

[0005] Preferably, in the garbage sweeping station with drying function provided by this utility model, a partition is provided in the mechanical compartment, and the cavity of the mechanical compartment is divided into a first chamber and a second chamber by the partition. The first chamber and the second chamber are arranged from top to bottom. The drying component is arranged in the first chamber, and a plurality of ventilation holes are arranged corresponding to the first chamber. One end of the cleaning component is arranged in the second chamber, and the other end of the cleaning component extends into the water storage tank.

[0006] Preferably, the garbage sweeping station with drying function provided by this utility model includes a blower and a heater in the drying component. The blower and the heater are both disposed in the first chamber. The heater is disposed between the ventilation hole and the air outlet of the blower, so that the air blown out by the blower is turned into hot air by the heater and blown into the cleaning cavity.

[0007] Preferably, in the garbage sweeping station with drying function provided by this utility model, the drying component further includes an isolation plate, one end of which is connected to the air outlet of the blower, and the other end of which is connected to the heater.

[0008] Preferably, in the garbage sweeping station with drying function provided by this utility model, the isolation plate is funnel-shaped.

[0009] Preferably, the garbage sweeping station with drying function provided by this utility model includes a cleaning component comprising a motor, a rotating shaft, and a cleaning unit. The motor is installed in the second chamber, and the output shaft of the motor is connected to one end of the rotating shaft via a coupling. The other end of the rotating shaft passes through the side wall of the second chamber and is inserted into the water storage tank. A propeller is provided at the end of the rotating shaft opposite to the motor. Both the rotating shaft and the propeller can rotate relative to the water storage tank, and the rotation of the rotating shaft drives the rotation of the propeller. The cleaning unit is disposed on the rotating shaft and located inside the water storage tank. The cleaning unit can move relative to the water storage tank, and the rotation of the rotating shaft drives the movement of the cleaning unit. The cleaning unit is used to clean the drain hole to prevent the drain hole from becoming clogged.

[0010] Preferably, the garbage sweeping station with drying function provided by this utility model includes a cleaning unit comprising a rotating disc, a connecting rod mechanism, and a cleaning block. The rotating disc is sleeved on the rotating shaft, and the rotating disc is spaced apart from the propeller. The side of the rotating disc facing away from the propeller is hinged to one end of the connecting rod mechanism. The other end of the connecting mechanism is provided with the cleaning block for cleaning the leakage hole. The rotation of the rotating disc drives the connecting mechanism to move, and the connecting rod mechanism drives the cleaning block to move.

[0011] Preferably, the garbage sweeping station with drying function provided by this utility model includes a connecting mechanism comprising a first connecting rod, a second connecting rod, a third connecting rod, and a limiting rod. One end of the first connecting rod is hinged to the side of the rotating disk away from the propeller, the other end of the first connecting rod is hinged to one end of the second connecting rod, the other end of the second connecting rod is hinged to one end of the third connecting rod, and the other end of the third connecting rod is connected to the cleaning block. One end of the limiting rod is hinged to one side of the third connecting rod, and the other end of the limiting rod is installed on the inner wall of the water storage tank. The rotation of the rotating disk drives the first connecting rod to rotate, the first connecting rod drives the second connecting rod to rotate, the second connecting rod drives the third connecting rod to move, and the third connecting rod drives the cleaning block to reciprocate under the action of the limiting rod.

[0012] Preferably, the garbage sweeping station with drying function provided by this utility model includes a water spraying assembly comprising an inlet pipe, a water pump, an outlet pipe, a water supply pipe, and multiple spraying units. One end of the inlet pipe is connected to the water storage tank, and the other end of the inlet pipe extends into the water supply tank and is connected to the inlet end of the water pump located in the water supply tank. The outlet end of the water pump is connected to one end of the outlet pipe, and the other end of the outlet pipe extends to the top of the water supply tank and is connected to one end of the water supply pipe. The other end of the water supply pipe extends into the cleaning cavity, and the water supply pipe is fixed to the inner top of the cleaning cavity. Multiple spraying units are located in the cleaning cavity and are spaced apart along the extension direction of the water supply pipe. The spraying units are used to spray water onto the garbage sweeping vehicle to be cleaned.

[0013] Preferably, the garbage sweeping station with drying function provided by this utility model includes a spraying unit comprising a connecting pipe, a rotating cylinder, and multiple nozzles. One end of the connecting pipe is connected to the water supply pipe, and the other end of the connecting pipe is inserted into the rotating cylinder. The connecting pipe is connected to the rotating cylinder, and the rotating cylinder can rotate relative to the connecting pipe. The multiple nozzles are arranged near the bottom of the rotating cylinder, and the multiple nozzles are spaced apart around the circumference of the rotating cylinder.

[0014] In summary, the beneficial technical effects of this utility model are as follows: The garbage sweeping station with drying function provided in this application includes a shell, a water spraying component, a cleaning component, and a drying component; the shell surrounds a cleaning cavity, a mechanical chamber is provided on one side of the outer wall of the shell, a water supply chamber is provided on the outer wall of the shell away from the mechanical chamber, a water storage chamber is provided at the bottom of the shell for holding water, and multiple drainage holes are provided at the bottom of the shell, the cleaning cavity is connected to the water storage chamber through the multiple drainage holes, and the garbage sweeper to be cleaned is parked in the cleaning cavity; one end of the water spraying component is connected to the water storage chamber, and the other end of the water spraying component extends through the water supply chamber into the cleaning cavity and is located at the top of the inner part of the cleaning cavity, the water spraying component is used to spray water to wash the garbage sweeper to be cleaned; one end of the cleaning ... extends through the water supply chamber, and the other end of the cleaning component extends through the water supply chamber into the cleaning cavity, and is located at the top of the inner part of the cleaning cavity, the water spraying component is used to spray water to wash the garbage sweeper to be cleaned; one end of the cleaning component extends through the water supply chamber, and the other end of the cleaning component extends through the water supply chamber into the cleaning cavity, and is located at the top of the inner part of the cleaning cavity, the water spraying component is used to spray water to wash the garbage sweeper to be cleaned; one end of the cleaning component extends through the water supply chamber The cleaning component is located inside the mechanical chamber, with the other end extending into the water storage tank. The cleaning component cleans the drain holes to prevent clogging. The drying component is also located inside the mechanical chamber, with multiple ventilation holes on the outer wall away from the water supply tank. These ventilation holes correspond to the mechanical chamber, and the cleaning cavity connects to it. The drying component blows hot air into the cleaning cavity to dry the wet garbage sweeper. By incorporating the drying component, the air blown into the cleaning cavity provides initial cleaning and drying of the garbage sweeper, improving its working efficiency. Furthermore, the drain holes allow water used to clean the garbage sweeper to flow into the water storage tank for reuse, reducing water waste. Attached Figure Description

[0015] Figure 1 This is a cross-sectional view of a garbage sweeping station with drying function provided in an embodiment of this utility model.

[0016] Figure 2 This is a schematic diagram of the overall structure of a garbage sweeping station with drying function provided in an embodiment of this utility model.

[0017] Figure 3 This is a schematic diagram of the spraying unit in a garbage sweeping station with drying function provided in this embodiment of the utility model.

[0018] Figure 4 This is a schematic diagram of the structure of the cleaning unit in the garbage sweeping station with drying function provided in this embodiment of the utility model. Figure 1 .

[0019] Figure 5 This is a schematic diagram of the structure of the cleaning unit in the garbage sweeping station with drying function provided in this embodiment of the utility model. Figure 2 .

[0020] Figure 6 This is a cross-sectional view of the spraying unit in a garbage sweeping station with drying function provided in this embodiment of the utility model.

[0021] In the diagram: 1. Garbage sweeping station; 10. Outer shell; 11. Cleaning cavity; 111. Drain hole; 12. Mechanical compartment; 121. Partition plate; 122. First chamber; 123. Second chamber; 13. Water supply tank; 14. Water storage tank; 20. Spraying assembly; 21. Inlet pipe; 22. Water pump; 221. Rotary switch; 23. Outlet pipe; 24. Water supply pipe; 25. Spraying unit; 251. Connecting pipe; 2511. Triangular protrusion; 252. Rotating circle 2521. Cylinder; 253. Annular groove; 30. Nozzle; 31. Cleaning assembly; 32. Motor; 32. Shaft; 321. Propeller; 33. Cleaning unit; 331. Rotating disc; 332. Linkage mechanism; 3321. First link; 3322. Second link; 3323. Third link; 3324. Limiting rod; 333. Cleaning block; 34. Limiting plate; 40. Drying assembly; 41. Blower; 42. Heater; 43. Isolation plate. Detailed Implementation

[0022] The present invention will be further described in detail below with reference to the accompanying drawings.

[0023] Reference Figure 1 and Figure 2This utility model discloses a garbage sweeping station 1 with a drying function, comprising a shell 10, a water spraying assembly 20, a cleaning assembly 30, and a drying assembly 40. The shell 10 forms a cleaning cavity 11. A mechanical chamber 12 is provided on one side of the outer wall of the shell 10, and a water supply chamber 13 is provided on the outer wall of the shell 10 away from the mechanical chamber 12. A water storage chamber 14 is provided at the bottom of the shell 10 for holding water. Multiple drainage holes 111 are provided at the bottom of the shell 10. The cleaning cavity 11 is connected to the water storage chamber 14 through the multiple drainage holes 111. The garbage sweeper to be cleaned is parked in the cleaning cavity 11. One end of the water spraying assembly 20 is connected to the water storage chamber 14, and the other end of the water spraying assembly 20 extends through the water supply chamber 13 into the cleaning cavity 11 and is located at the top of the inner part of the cleaning cavity 11. The water spraying assembly 20 is used to spray water onto the garbage sweeper to be cleaned. Water spraying and rinsing; one end of the cleaning component 30 is located inside the mechanical chamber 12, and the other end extends into the water storage tank 14. The cleaning component 30 is used to clean the drain hole 111 to prevent it from becoming clogged. The drying component 40 is located inside the mechanical chamber 12. Multiple ventilation holes are provided on the outer wall of the outer shell 10 away from the water supply tank 13. These ventilation holes are all corresponding to the mechanical chamber 12. The cleaning cavity 11 is connected to the mechanical chamber 12 through these ventilation holes. The drying component 40 is used to blow hot air into the cleaning cavity 11 to dry the wet garbage sweeper. This configuration allows for preliminary cleaning and drying of the garbage sweeper to be cleaned, improving its working efficiency. In addition, by providing the drain hole 111, the water used to clean the garbage sweeper can flow into the water storage tank 14 and be reused, reducing water waste.

[0024] Specifically, with Figure 1 Taking the orientation shown as an example, a water supply chamber 13 is provided on the left outer wall of the outer casing 10, and a mechanical chamber 12 is provided on the right outer wall of the outer casing 10.

[0025] Furthermore, in this embodiment, a partition 121 is provided inside the mechanical chamber 12, and the cavity of the mechanical chamber 12 is divided into a first chamber 122 and a second chamber 123 by the partition 121. The first chamber 122 and the second chamber 123 are arranged from top to bottom. The drying component 40 is disposed in the first chamber 122, and multiple ventilation holes are disposed corresponding to the first chamber 122. One end of the cleaning component 30 is disposed in the second chamber 123, and the other end of the cleaning component 30 extends into the water storage tank 14.

[0026] by Figure 1 Taking the orientation shown as an example, the first chamber 122 is located above the partition 121, the second chamber 123 is located below the partition 121, and the cleaning cavity 11 is connected to the first chamber 122 through a ventilation hole.

[0027] Furthermore, in this embodiment, the drying assembly 40 includes a blower 41 and a heater 42. Both the blower 41 and the heater 42 are disposed in the first chamber 122. The heater 42 is disposed between the ventilation hole and the air outlet of the blower 41, so that the air blown out by the blower 41 is turned into hot air by the heater 42 and blown into the cleaning cavity 11. With this arrangement, the air blown out by the blower 41 is blown into the cleaning cavity 11 through the heater 42 to perform preliminary cleaning and drying of the garbage sweeper, thereby improving the working efficiency of the garbage sweeper.

[0028] Specifically, with Figure 1 Taking the orientation shown as an example, the heater 42 is set close to the ventilation hole, the heater 42 is located to the left of the blower 41, and the heater 42 is set corresponding to the ventilation hole.

[0029] Furthermore, in this embodiment, the drying assembly 40 also includes an isolation plate 43, one end of which is connected to the air outlet of the blower 41, and the other end of which is connected to the heater 42; by setting the isolation plate 43, the air blown out by the blower 41 is concentrated.

[0030] For example, the partition plate 43 may be trumpet-shaped. Of course, the partition plate 43 may also be cylindrical.

[0031] Continue to refer to Figure 1 , Figure 4 as well as Figure 5 In this embodiment, the cleaning component 30 includes a motor 31, a rotating shaft 32, and a cleaning unit 33. The motor 31 is installed in the second chamber 123. The output shaft of the motor 31 is connected to one end of the rotating shaft 32 via a coupling. The other end of the rotating shaft 32 passes through the side wall of the second chamber 123 and is inserted into the water storage tank 14. A propeller 321 is provided at the end of the rotating shaft 32 away from the motor 31. Both the rotating shaft 32 and the propeller 321 can rotate relative to the water storage tank 14. The rotation of the rotating shaft 32 drives the propeller 321 to rotate. The cleaning unit 33 is disposed on the rotating shaft 32 and is located in the water storage tank 14. The cleaning unit 33 can move relative to the water storage tank 14. The rotation of the rotating shaft 32 drives the cleaning unit 33 to move. The cleaning unit 33 is used to clean the leakage hole 111 to prevent the leakage hole 111 from becoming blocked.

[0032] Specifically, the propeller 321 and the cleaning unit 33 are spaced apart.

[0033] Furthermore, in this embodiment, the cleaning unit 33 includes a rotating disk 331, a connecting rod mechanism 332, and a cleaning block 333. The rotating disk 331 is sleeved on the rotating shaft 32, and the rotating disk 331 is spaced apart from the propeller 321. The side of the rotating disk 331 facing away from the propeller 321 is hinged to one end of the connecting rod mechanism 332, and the other end of the connecting mechanism is provided with a cleaning block 333 for cleaning the leak hole 111. The rotation of the rotating disk 331 drives the connecting mechanism to move, and the connecting rod mechanism drives the cleaning block 333 to move.

[0034] During use, the output shaft of motor 31 drives the rotating shaft 32 to rotate, the rotating shaft 32 drives the rotating disk 331 to rotate, the rotating disk 331 drives the connecting mechanism to move, and the connecting rod mechanism drives the cleaning block 333 to move.

[0035] The connecting mechanism includes a first connecting rod 3321, a second connecting rod 3322, a third connecting rod 3323, and a limiting rod 3324. One end of the first connecting rod 3321 is hinged to the side of the rotating disk 331 away from the propeller 321. The other end of the first connecting rod 3321 is hinged to one end of the second connecting rod 3322. The other end of the second connecting rod 3322 is hinged to one end of the third connecting rod 3323. The other end of the third connecting rod 3323 is connected to the cleaning block 333. One end of the limiting rod 3324 is hinged to one side of the third connecting rod 3323, limiting its movement. The other end of rod 3324 is installed on the inner wall of water storage tank 14; the rotating disc 331 rotates, driving the first connecting rod 3321 to rotate, the first connecting rod 3321 drives the second connecting rod 3322 to rotate, the second connecting rod 3322 drives the third connecting rod 3323 to move, and the third connecting rod 3323 drives the cleaning block 333 to reciprocate under the action of the limiting rod 3324; by setting the limiting rod 3324, the limiting rod 3324 is used to limit the third connecting rod 3323 so that the cleaning block 333 can clean the leak hole 111 at a fixed amplitude.

[0036] To improve the stability of the rotating shaft 32, a limiting plate 34 is provided inside the water storage tank 14. The limiting plate 34 is located between the propeller 321 and the rotating disk 331. The propeller 321, the limiting plate 34, and the rotating disk 331 are arranged at intervals from left to right along the center line of the rotating shaft 32. The bottom end of the limiting plate 34 is connected to the inner bottom surface of the water storage tank 14. The end of the rotating shaft 32 away from the motor 31 passes through the rotating disk 331 and is connected to the limiting plate 34 and the propeller 321 in sequence. The rotating shaft 32 can rotate relative to the limiting plate 34.

[0037] Continue to refer to Figures 1 to 3In this embodiment, the water spraying assembly 20 includes an inlet pipe 21, a water pump 22, an outlet pipe 23, a water supply pipe 24, and multiple spraying units 25. One end of the inlet pipe 21 is connected to the water storage tank 14, and the other end of the inlet pipe 21 extends into the water supply tank 13 and is connected to the inlet end of the water pump 22 located in the water supply tank 13. The outlet end of the water pump 22 is connected to one end of the outlet pipe 23, and the other end of the outlet pipe 23 extends to the top of the water supply tank 13 and is connected to one end of the water supply pipe 24. The other end of the water supply pipe 24 extends into the cleaning cavity 11, and the water supply pipe 24 is fixed to the inner top of the cleaning cavity 11. Multiple spraying units 25 are all located in the cleaning cavity 11, and multiple spraying units 25 are spaced apart on the water supply pipe 24 along the extension direction of the water supply pipe 24. The spraying units 25 are used to spray water onto the garbage sweeper to be cleaned. This arrangement facilitates the cleaning of the garbage sweeper to be cleaned.

[0038] Specifically, the center line of the outlet pipe 23 is set perpendicular to the center line of the supply pipe 24.

[0039] The water pump 22 is equipped with a rotary switch 221, which is used to control the water storage capacity of the water pump 22. During use, the water output of the water pump 22 is controlled by rotating the rotary switch 221, so that the water inside the water storage tank 14 enters the water supply pipe 24 and is sprayed through the spraying unit 25.

[0040] Furthermore, in this embodiment, the spraying unit 25 includes a connecting pipe 251, a rotating cylinder 252, and a plurality of nozzles 253. One end of the connecting pipe 251 is connected to the water supply pipe 24, and the other end of the connecting pipe 251 is inserted into the rotating cylinder 252. The connecting pipe 251 is connected to the rotating cylinder 252, and the rotating cylinder 252 can rotate relative to the connecting pipe 251. The plurality of nozzles 253 are disposed near the bottom of the rotating cylinder 252, and the plurality of nozzles 253 are arranged at intervals around the circumference of the rotating cylinder 252.

[0041] Specifically, the center line of the connecting pipe 251 is set perpendicular to the center line of the water supply pipe 24, and the center line of the connecting pipe 251 is set parallel to the center line of the rotating cylinder 252. In some feasible ways, the center line of the connecting pipe 251 and the center line of the rotating cylinder 252 are set collinearly.

[0042] During use, water in the water supply pipe 24 enters the rotating cylinder 252 through the connecting pipe 251. The water in the rotating cylinder 252 is sprayed out through the nozzle 253. The centrifugal force of the water flow drives the rotating cylinder 252 to rotate, so as to spray water on the garbage sweeper to be cleaned.

[0043] Continue to refer to Figure 6To prevent the rotating cylinder 252 from separating from the connecting pipe 251 during rotation, two elastic triangular protrusions 2511 are provided on the outer peripheral wall of the connecting pipe 251. The two triangular protrusions 2511 are arranged opposite each other. An annular groove 2521 that matches the triangular protrusions 2511 is provided on the inner peripheral wall of the rotating cylinder 252. The rotating cylinder 252 is sleeved on the connecting pipe 251, and the triangular protrusions 2511 are inserted into the annular groove 2521, allowing the triangular protrusions 2511 to slide within the annular groove 2521.

[0044] The working principle of the garbage sweeper station 1 with drying function provided in this embodiment is as follows: When in use, the garbage sweeper to be cleaned is driven into the cleaning cavity 11. Then, the water pump 22 is turned on and the water volume is adjusted by turning the switch 221. Then, the water in the water storage tank 14 is pumped into the water outlet pipe 23 through the water inlet pipe 21. Then, the water from the water outlet pipe 23 to the water supply pipe 24 is sprayed through multiple spraying units 25. Then, the blower 41 inside the mechanical compartment 12 is turned on so that the air is blown into the cleaning cavity 11 through the heater 42 to dry the garbage sweeper to be cleaned.

[0045] When the drain hole 111 is clogged with debris, the motor 31 is turned on. The output shaft of the motor 31 drives the rotating shaft 32 to rotate, which in turn drives the propeller 321 to rotate and the rotating disk 331 to rotate. The rotating disk 331 drives the first connecting rod 3321 to rotate, which in turn drives the second connecting rod 3322 to rotate. The second connecting rod 3322 then drives the third connecting rod 3323 to rotate. Under the limiting action of the limiting rod 3324, the third connecting rod 3323 drives the cleaning block 333 to move back and forth and clean the drain hole 111.

[0046] The garbage sweeper station 1 with drying function provided in this application includes a shell 10, a water spraying assembly 20, a cleaning assembly 30, and a drying assembly 40. The shell 10 surrounds a cleaning cavity 11. A mechanical chamber 12 is provided on one side of the outer wall of the shell 10. A water supply chamber 13 is provided on the outer wall of the shell 10 away from the mechanical chamber 12. A water storage chamber 14 is provided at the bottom of the shell 10. The water storage chamber 14 is used to hold water. Multiple drainage holes 111 are opened at the bottom of the shell 10. The cleaning cavity 11 is connected to the water storage chamber 14 through the multiple drainage holes 111. The garbage sweeper to be cleaned is parked in the cleaning cavity 11. One end of the water spraying assembly 20 is connected to the water storage chamber 14. The other end of the water spraying assembly 20 extends through the water supply chamber 13 into the cleaning cavity 11 and is located at the top of the inner part of the cleaning cavity 11. The water spraying assembly 20 is used to spray water to wash the garbage sweeper to be cleaned. One end of the cleaning assembly 30... The cleaning component 30, located inside the mechanical chamber 12, extends to the water storage tank 14 at one end. The cleaning component 30 cleans the drain hole 111 to prevent blockage. The drying component 40, also located inside the mechanical chamber 12, has multiple ventilation holes on its outer wall away from the water supply tank 13. These ventilation holes correspond to the mechanical chamber 12. The cleaning cavity 11 connects to the mechanical chamber 12 through these ventilation holes. The drying component 40 blows hot air into the cleaning cavity 11 to dry the wet garbage sweeper. By installing the drying component 40, the air blown into the cleaning cavity 11 can perform preliminary cleaning and drying of the garbage sweeper, improving its working efficiency. Furthermore, the drain hole 111 allows water from cleaning the garbage sweeper to flow into the water storage tank 14 for reuse, reducing water waste.

[0047] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0048] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.

Claims

1. A garbage machine sweeping station with drying function, characterized in that: Includes the outer casing, water spray assembly, cleaning assembly, and drying assembly; The outer shell is configured to form a cleaning cavity. A mechanical compartment is provided on one side of the outer wall of the outer shell. A water supply compartment is provided on the outer wall of the outer shell away from the mechanical compartment. A water storage compartment is provided at the bottom of the outer shell. The water storage compartment is used to hold water. Multiple drainage holes are provided at the bottom of the outer shell. The cleaning cavity is connected to the water storage compartment through the multiple drainage holes. The garbage sweeper to be cleaned is parked in the cleaning cavity. One end of the water spraying assembly is connected to the water storage tank, and the other end of the water spraying assembly extends through the water supply tank into the cleaning cavity and is located at the top of the cleaning cavity. The water spraying assembly is used to spray water to wash the garbage sweeper to be cleaned. One end of the cleaning component is disposed inside the mechanical compartment, and the other end of the cleaning component extends into the water storage compartment. The cleaning component is used to clean the leakage hole to prevent the leakage hole from becoming blocked. The drying assembly is located inside the mechanical compartment. Multiple ventilation holes are provided on the outer wall of the outer shell away from the water supply compartment. Each of the ventilation holes is corresponding to the mechanical compartment. The cleaning cavity is connected to the mechanical compartment through the multiple ventilation holes. The drying assembly is used to blow hot air into the cleaning cavity to dry the wet garbage sweeper.

2. The garbage machine with drying function according to claim 1, characterized in that: The mechanical chamber is equipped with a partition, which divides the cavity of the mechanical chamber into a first chamber and a second chamber. The first chamber and the second chamber are arranged from top to bottom. The drying component is arranged in the first chamber, and multiple ventilation holes are arranged corresponding to the first chamber. One end of the cleaning component is arranged in the second chamber, and the other end of the cleaning component extends into the water storage tank.

3. The garbage machine with drying function according to claim 2, characterized in that: The drying assembly includes a blower and a heater, both of which are located in the first chamber. The heater is located between the ventilation hole and the blower's air outlet, so that the air blown out by the blower is turned into hot air by the heater and blown into the cleaning cavity.

4. The garbage machine with drying function according to claim 3, characterized in that: The drying assembly also includes an isolation plate, one end of which is connected to the air outlet of the blower, and the other end of which is connected to the heater.

5. The garbage machine with drying function according to claim 4, characterized in that: The isolation plate is trumpet-shaped.

6. The garbage sweeping station with drying function according to claim 2, characterized in that: The cleaning assembly includes a motor, a rotating shaft, and a cleaning unit. The motor is installed in the second chamber. The output shaft of the motor is connected to one end of the rotating shaft via a coupling. The other end of the rotating shaft passes through the side wall of the second chamber and is inserted into the water storage tank. A propeller is provided at the end of the rotating shaft opposite to the motor. Both the rotating shaft and the propeller can rotate relative to the water storage tank. The rotation of the rotating shaft drives the rotation of the propeller. The cleaning unit is mounted on the rotating shaft and located inside the water storage tank. The cleaning unit is movable relative to the water storage tank, and the rotation of the rotating shaft drives the cleaning unit to move. The cleaning unit is used to clean the leak hole to prevent it from becoming clogged.

7. The garbage sweeping station with drying function according to claim 6, characterized in that: The cleaning unit includes a rotating disk, a linkage mechanism, and a cleaning block. The rotating disk is sleeved on the rotating shaft and is spaced apart from the propeller. The side of the rotating disk away from the propeller is hinged to one end of the linkage mechanism, and the other end of the linkage mechanism is provided with the cleaning block for cleaning the leakage hole. The rotating disk rotates, causing the linkage mechanism to move, which in turn causes the cleaning block to move.

8. The garbage sweeping station with drying function according to claim 7, characterized in that: The linkage mechanism includes a first link, a second link, a third link, and a limiting rod. One end of the first link is hinged to the side of the rotating disk away from the propeller. The other end of the first link is hinged to one end of the second link. The other end of the second link is hinged to one end of the third link. The other end of the third link is connected to the cleaning block. One end of the limiting rod is hinged to one side of the third connecting rod, and the other end of the limiting rod is installed on the inner wall of the water storage tank; The rotating disk rotates, causing the first connecting rod to rotate. The first connecting rod then rotates the second connecting rod, which in turn rotates the third connecting rod. Under the action of the limiting rod, the third connecting rod causes the cleaning block to reciprocate.

9. The garbage sweeping station with drying function according to claim 1, characterized in that: The water spray assembly includes an inlet pipe, a water pump, an outlet pipe, a water supply pipe, and multiple spraying units. One end of the inlet pipe is connected to the water storage tank, and the other end of the inlet pipe extends into the water supply tank and is connected to the inlet end of the water pump located in the water supply tank. The outlet end of the water pump is connected to one end of the outlet pipe, and the other end of the outlet pipe extends to the top of the water supply tank and is connected to one end of the water supply pipe. The other end of the water supply pipe extends into the cleaning cavity, and the water supply pipe is fixed to the inner top of the cleaning cavity. Multiple spraying units are located inside the cleaning cavity, and multiple spraying units are spaced apart on the water supply pipe along the extension direction of the water supply pipe; The spraying unit is used to spray water onto the garbage sweeper truck to be cleaned.

10. The garbage sweeping station with drying function according to claim 9, characterized in that: The spraying unit includes a connecting pipe, a rotating cylinder, and multiple nozzles. One end of the connecting pipe is connected to the water supply pipe, and the other end of the connecting pipe is inserted into the rotating cylinder. The connecting pipe is connected to the rotating cylinder, and the rotating cylinder can rotate relative to the connecting pipe. The multiple nozzles are arranged near the bottom of the rotating cylinder, and the multiple nozzles are spaced apart around the circumference of the rotating cylinder.