Cleaning device and cleaning system

By designing the frame, liquid collection and discharge mechanism of the cleaning device, the pollution and corrosion problems caused by water leakage in the clothing treatment equipment are solved, effective gathering and discharge of liquid leakage is achieved, ground cleaning equipment and frames are protected, and service life is extended.

CN223163641UActive Publication Date: 2025-07-29NANJING ROBOROCK INNOVATION TECH CO LTD +1
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Patent Information

Application Number
CN202421897585.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-07-29
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

When the clothing treatment equipment leaks, water can easily penetrate into the base or drip on the ground, causing the floor cleaning equipment to be dirty, damp, and breed bacteria, increasing the difficulty of cleaning and corroding the base, affecting the service life.

Method used

A cleaning device is designed, including a frame, a liquid collection mechanism and a liquid discharge mechanism, which is used to gather and discharge liquid leakage from clothing processing equipment to prevent liquid leakage from seeping into the cavity or flowing to the outside, and protect the floor cleaning equipment and frame.

Benefits of technology

Effectively prevent liquid leakage from destruction on the floor cleaning equipment and frames, reduce the moisture on the ground and bacterial growth, reduce the difficulty of cleaning, and extend the service life of the cleaning device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses a cleaning device and a cleaning system, the cleaning device comprises a frame body with a cavity, and one side of the frame body is provided with an opening communicated with the cavity; a liquid collecting mechanism and a liquid discharging mechanism are arranged on the frame body, under the condition that liquid leakage happens to the clothes treating equipment, the liquid collecting mechanism is used for collecting leaked liquid of the clothes treating equipment, then the liquid discharging mechanism is used for discharging the collected leaked liquid to a sewer, and therefore the leaked liquid of the clothes treating equipment is prevented from permeating into a cavity of the frame body, and the clothes treating equipment is prevented from leaking out of the cavity. The floor cleaning equipment in the cavity is stained or the floor cleaning equipment flows to the floor outside the frame body along the bottom surface of the frame body, so that the floor is wet, bacteria are bred, the environment is polluted, and the floor cleaning difficulty is increased. In addition, the top plate of the frame body is prevented from being corroded by the stored leaked liquid, the service life of the frame body is prolonged, and the service life of the cleaning device is also prolonged.
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Description

Technical Field

[0001] The utility model relates to the field of cleaning technology, and particularly relates to a cleaning device and a cleaning system. Background Art

[0002] At present, a base for accommodating a floor cleaning device is provided below a clothing processing device, so that there is no need to divide an additional space for placing the floor cleaning device, achieving the purpose of saving layout space.

[0003] However, if the clothing processing device leaks water (such as opening or closing the cabinet door), the leaked water is very likely to seep into the inside of the base or stay on the top surface of the base, and the seeped water will drip onto the floor cleaning device located inside the base, thereby causing damage to the floor cleaning device, or directly dripping onto the bottom surface of the base and flowing along the bottom surface to the floor outside the base, resulting in the floor near the base becoming damp, breeding bacteria, polluting the environment, and the damp floor is difficult to clean, which also increases the burden on users; in addition, the water stored on the base will also corrode the base and affect the service life of the base. Summary of the Utility Model

[0004] A series of simplified concepts are introduced in the summary of the utility model, which will be further described in detail in the specific implementation section. The summary of the utility model does not mean to attempt to define the key features and essential technical features of the claimed technical solution, nor does it mean to attempt to determine the protection scope of the claimed technical solution.

[0005] In a first aspect, an embodiment of the utility model provides a cleaning device, including a frame body having a cavity, and an opening communicating with the cavity is provided on one side of the frame body; a liquid collecting mechanism and a liquid discharging mechanism are provided on the frame body;

[0006] Wherein, a clothing processing device is provided above the frame body; the cavity is used for accommodating a floor cleaning device; the opening is used for the floor cleaning device to enter and exit the cavity; the liquid collecting mechanism is used for converging the leaked liquid of the clothing processing device; the liquid discharging mechanism is at least used for discharging the leaked liquid of the clothing processing device.

[0007] Optionally, the frame body includes a top plate, and the liquid collecting mechanism includes at least one liquid collecting area provided on the top plate; the height of at least one liquid collecting area is lower than other areas of the top plate, and a liquid discharging hole is provided on at least one liquid collecting area.

[0008] Optionally, a cleaning tank is provided on the bottom surface of the cavity, and the cleaning tank is used for cleaning the cleaning components of the floor cleaning device and receiving the leaked liquid flowing out of the liquid discharging hole;

[0009] The liquid discharging mechanism includes a first liquid discharging pipeline communicated with the cleaning tank.

[0010] Optionally, the cleaning tank is located below the liquid discharging hole.

[0011] Optionally, a connecting pipeline is provided between the cleaning tank and the liquid discharging hole.

[0012] Optionally, a suction component is provided on the first liquid discharging pipeline.

[0013] Optionally, the liquid discharging mechanism includes a second liquid discharging pipeline communicated with the liquid discharging hole.

[0014] Optionally, a suction component is provided on the second liquid discharging pipeline.

[0015] Optionally, an installation component for installing the laundry treatment device is provided at the top of the frame body.

[0016] In a second aspect, an embodiment of the present invention provides a cleaning system, including a laundry treatment device, a floor cleaning device, and the above-mentioned cleaning device. The laundry treatment device is located above the frame body of the cleaning device, and the floor cleaning device can enter and exit the cavity of the frame body of the cleaning device.

[0017] According to the cleaning device and the cleaning system provided by the embodiments of the present invention, in the case of liquid leakage of the laundry treatment device, the liquid collecting mechanism is used to converge the liquid leakage of the laundry treatment device, and then the liquid discharging mechanism discharges the converged liquid leakage from the cleaning device, for example, discharging it to the sewer, so as to avoid the liquid leakage of the laundry treatment device from penetrating into the cavity of the frame body and causing damage to the floor cleaning device in the cavity, or flowing along the bottom surface of the frame body to the ground outside the frame body, causing the ground to be wet, breeding bacteria, polluting the environment, and increasing the difficulty of ground cleaning; and it also avoids the top plate of the frame body being corroded by the stored liquid leakage, improves the service life of the frame body, and thus improves the service life of the cleaning device. Description of the Drawings

[0018] The following drawings of the present invention are used as a part of the embodiments of the present invention to understand the present invention. The embodiments and descriptions of the present invention are shown in the drawings to explain the principles of the present invention.

[0019] In the drawings:

[0020] Figure 1 is a structural diagram of a cleaning system according to an optional embodiment of the present invention;

[0021] Figure 2 is a structural diagram of a cleaning device according to an optional embodiment of the present invention;

[0022] Figure 3 Cross-sectional view of a cleaning device according to an alternative embodiment of the present utility model;

[0023] Figure 4 Assembly drawing of the bottom plate and side plates according to an alternative embodiment of the present utility model;

[0024] Figure 5 Assembly drawing of the bottom plate, side plates and top plate according to an alternative embodiment of the present utility model;

[0025] Figure 6 Schematic structural diagram of a self-propelled cleaning device according to an alternative embodiment of the present application;

[0026] Figure 7 is Figure 1 bottom view of.

[0027] Description of reference numerals:

[0028] 100 - cleaning device, 110 - housing, 111 - top plate, 112 - side plates, 113 - bottom plate, 114 - rear cover plate, 115 - opening, 116 - cavity, 120 - liquid collection mechanism, 121 - liquid collection area, 122 - drain hole, 130 - mounting member, 131 - limiting plate, 132 - fixing member, 133 - mounting plate, 140 - guide rail, 150 - cleaning tank, 160 - connecting pipeline, 200 - laundry treatment equipment, 300 - floor cleaning equipment, 310 - machine main body, 311 - forward part, 312 - rearward part, 320 - sensing system, 321 - determination device, 322 - buffer, 340 - drive system, 341 - drive wheel module, 342 - driven wheel, 350 - cleaning system, 351 - dry cleaning system, 352 - side brush, 353 - cleaning element, 360 - human - machine interaction system. Detailed implementation manners

[0029] In the following description, numerous specific details are given to provide a more thorough understanding of the present utility model. However, it is obvious to those skilled in the art that the present utility model can be implemented without one or more of these details. In other instances, in order to avoid confusion with the present utility model, some well - known technical features are not described.

[0030] It should be noted that the terms used herein are for the purpose of describing specific embodiments only and are not intended to limit the exemplary embodiments according to the present utility model. As used herein, unless the context clearly indicates otherwise, the singular forms are also intended to include the plural forms. In addition, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they specify the presence of features, wholes, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, wholes, steps, operations, elements, components, and / or combinations thereof.

[0031] Now, exemplary embodiments according to the present utility model will be described in more detail with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in many different forms and should not be construed as being limited only to the embodiments set forth herein. It should be understood that these embodiments are provided so that the disclosure of the present utility model is thorough and complete, and the concept of these exemplary embodiments is fully conveyed to those of ordinary skill in the art.

[0032] As Figures 1 to 7 shown, an embodiment of the present utility model provides a cleaning system, including a laundry treatment device 200, a floor cleaning device 300, and a cleaning device 100. The laundry treatment device 200 is located above the housing 110 of the cleaning device 100. In some embodiments, the housing 110 includes a top plate 111, and the cleaning device 100 is disposed on the top plate 111, facilitating the installation of the cleaning device 100. The floor cleaning device 300 can enter and exit the cavity 116 of the housing 110 of the cleaning device 100, thereby increasing the overall height of the laundry treatment device 200, facilitating the user to put clothes into the laundry treatment device 200. At the same time, the cleaning device 100 accommodates the floor cleaning device 300, so that the vertical space for placing the laundry treatment device 200 can be fully utilized, avoiding the need for additional space to place the floor cleaning device 300 and saving the layout space.

[0033] The laundry treatment device 200 can be a washing machine with a laundry washing function, a dryer with a laundry drying function, a washing and drying integrated machine with a laundry cleaning or drying function, etc. In some embodiments, the laundry treatment device 200 includes a rotatable laundry treatment drum, and the laundry treatment drum is located in the cabinet. The rotation axis of the laundry treatment drum can be along the vertical direction, the inclined direction, or the horizontal direction. That is to say, the laundry treatment machine can be a pulsator-type laundry treatment machine or a drum-type laundry treatment machine, etc. The laundry treatment drum is used to place and process clothes, for example, the laundry treatment drum is used to wash and / or dry clothes, etc.

[0034] The floor cleaning device 300 is a device that automatically performs cleaning operations in a cleaning area to be cleaned without user operation. Among them, when the floor cleaning device 300 starts working, the floor cleaning device 300 starts from the cavity 116 of the cleaning device 100 to perform cleaning tasks. When the floor cleaning device 300 completes the cleaning task or other situations that require aborting the cleaning task, the floor cleaning device 300 can return to the cavity 116 of the cleaning device 100.

[0035] As Figure 6 shown, the machine body 310 includes a front part 311 and a rear part 312, having an approximately circular shape (circular both front and rear), and may also have other shapes, including but not limited to an approximately D-shaped shape with a circular front and a circular rear, and a rectangular or square shape with a circular front and a circular rear.

[0036] As Figure 6 shown, the sensing system 320 includes a position determination device 321 located on the machine body 310, a collision sensor and a proximity sensor provided on a buffer 322 of the front part 311 of the machine body 310, a cliff sensor provided at the lower part of the machine body 310, and sensing devices such as a magnetometer, an accelerometer, a gyroscope, and an odometer provided inside the machine body 310, for providing various position information and motion state information of the machine to the control module. The position determination device 321 includes but is not limited to a camera and a laser distance sensor (LDS, full name Laser Distance Sensor).

[0037] As Figure 6 shown, the front part 311 of the machine body 310 can carry the buffer 322. When the drive wheel module 341 drives the floor cleaning device 300 to move on the ground during the cleaning process, the buffer 322 detects one or more events in the driving path of the floor cleaning device 300 through a sensor system provided thereon, such as an infrared sensor. The floor cleaning device 300 can control the drive wheel module 341 to respond to the events detected by the buffer 322, such as obstacles and walls, for example, moving away from the obstacles.

[0038] The control module is disposed on a circuit board within the machine body 310 and includes a computing processor that communicates with non-transitory memories such as a hard disk, flash memory, and random access memory, such as a central processing unit or an application processor. The application processor uses a positioning algorithm, such as Simultaneous Localization And Mapping (SLAM), to draw an instant map of the environment where the floor cleaning device 300 is located based on the obstacle information fed back by the laser ranging device. And by combining the distance information and speed information fed back by the sensing devices such as the sensors, cliff sensors, magnetometers, accelerometers, gyroscopes, and odometers provided on the buffer 322, it comprehensively determines what working state the floor cleaning device 300 is currently in, where it is located, and the current pose of the floor cleaning device 300, such as crossing a threshold, getting on a carpet, being at a cliff, being stuck above or below, the dust box being full, being picked up, etc. It will also give specific next action strategies for different situations, so that the floor cleaning device 300 has better cleaning performance and user experience.

[0039] As Figure 7 shown, the drive system 340 can maneuver the machine body 310 to travel across the ground based on drive commands having distance and angle information such as x, y, and θ components. The drive system 340 includes a drive wheel module 341, and the drive wheel module 341 can control the left and right wheels simultaneously. For more precise control of the movement of the machine, it is preferred that the drive wheel module 341 includes a left drive wheel module and a right drive wheel module respectively. The left and right drive wheel modules are arranged along the transverse axis defined by the machine body 310. For the floor cleaning device 300 to be able to move more stably or have stronger movement ability on the ground, the floor cleaning device 300 may include one or more driven wheels 342, and the driven wheels 342 include but are not limited to caster wheels. The drive wheel module 341 includes a driving wheel, a drive motor, and a control circuit for controlling the drive motor. The drive wheel module 341 can also be connected to a circuit for measuring the drive current and an odometer. The drive wheel may have a biased-drop suspension system and is fastened in a movable manner, such as rotatably attached to the machine body 310, and receives a spring bias that biases downward and away from the machine body 310. The spring bias allows the drive wheel to maintain contact with the ground and traction with a certain ground contact force, while the cleaning component 353 of the floor cleaning device 300 also contacts the ground with a certain pressure.

[0040] The energy system includes rechargeable batteries such as nickel-metal hydride batteries and lithium batteries. The rechargeable batteries can be connected with a charge control circuit, a battery pack charge temperature detection circuit, and a battery under-voltage monitoring circuit, and the charge control circuit, the battery pack charge temperature detection circuit, and the battery under-voltage monitoring circuit are then connected to the single-chip microcomputer control circuit. The main body is charged through charging electrodes provided on the side or below the body.

[0041] The human-machine interaction system 360 includes buttons on the main unit panel for the user to select functions; a display screen and / or indicator lights and / or a speaker to display the current machine status or function options to the user; and a mobile client application. For a route-guiding floor cleaning device 300, the mobile client can display a map of the device's environment and the device's location, providing users with a richer and more user-friendly set of functions.

[0042] The cleaning system 350 includes a wet cleaning system, that is, the floor cleaning device 300 may be a mopping machine, or the cleaning system 350 includes a wet cleaning system and a dry cleaning system 351 , that is, the floor cleaning device 300 may be an all-in-one sweeping and mopping machine.

[0043] like Figure 7 As shown, the dry cleaning system 351 provided in this embodiment of the present application may include a roller brush, a dust box, a fan, and an air outlet. The roller brush, which has a certain degree of interference with the ground, sweeps up debris from the ground and carries it to the front of the dust suction port between the roller brush and the dust box. The air is then sucked into the dust box by the suction force generated by the fan and passing through the dust box. The dry cleaning system 351 may also include a side brush 352 with a rotating shaft that is angled relative to the ground to move debris into the roller brush area of the cleaning system 350.

[0044] Among them, the wet cleaning system may include: a cleaning component, a water supply mechanism, a liquid storage tank, etc. Among them, the cleaning component can be arranged below the liquid storage tank, and the cleaning liquid inside the liquid storage tank is transmitted to the cleaning component through the water supply mechanism, so that the cleaning component performs wet cleaning on the surface to be cleaned. In other embodiments of the present application, the cleaning liquid inside the liquid storage tank can also be sprayed directly onto the surface to be cleaned, and the cleaning component cleans the surface by evenly applying the cleaning liquid. It is understandable that the floor cleaning device 300 is provided with a water injection port connected to the liquid storage tank. The water injection port can be used to replenish the liquid outside the floor cleaning device 300 into the liquid storage tank to achieve a water replenishment operation on the liquid storage tank.

[0045] Among them, the cleaning component provided by the embodiment of the present application includes a motion mechanism and a cleaning part 353 arranged on the machine body 310. That is, the entire cleaning component 180 can be installed on the machine body 310 through the motion mechanism, and the cleaning component moves along with the movement of the machine body 310 to achieve the mopping function. Among them, the motion mechanism is used to drive the cleaning part 353 to act. For example, the motion mechanism can drive the cleaning part 353 to lift, and the motion mechanism can also drive the cleaning part 353 to rotate. Thus, according to the need of whether the cleaning part 353 is in contact with the surface to be cleaned, through the motion mechanism, the lifting and rotation operations of the cleaning part 353 can be realized to meet the different functional requirements of the cleaning part 353, that is, the processing of the discrimination strategy of the cleaning part 353 can be realized, improving the cleaning performance of the self-cleaning device, and improving the cleaning efficiency and user experience.

[0046] Among them, as Figure 7 shown, in the forward direction of the floor cleaning device 300, the cleaning part 353 is located at the rear of the dry cleaning system 351. The cleaning part 353 can usually be a flexible material such as fabric or sponge with water absorption. In this solution, the cleaning part 353 can be at least one rotating turntable. The water in the liquid storage tank of the self-moving robot is guided to the cleaning part 353, and the wet cleaning part 353 removes the stains on the ground through rotational movement.

[0047] Further, during the movement of the floor cleaning device 300, in some scenarios that require mopping, such as in the case of wet treatment of the floor, the control module can be used to control the motion mechanism to drive the cleaning part 353 to descend, so that the lowest lower surface of the cleaning part 353 interferes with the surface to be cleaned. At the same time, the control module is used to control the motion mechanism to drive the cleaning part 353 to rotate. Thus, during the process of the driving wheel driving the floor cleaning device 300 to move, the cleaning part 353 will interfere with the surface to be cleaned to achieve the mopping operation on the surface to be cleaned.

[0048] Further, during the movement of the floor cleaning device 300, in some scenarios that do not require mopping, such as when returning to the cleaning device 100 or cleaning the carpet, the control module can be used to control the motion mechanism to drive the cleaning part 353 to rise. It can be understood that the rising of the cleaning part 353 can be that the lowest lower surface of the cleaning part 353 is higher than the lowest lower surface of the driving wheel. In this case, during the process of the driving wheel driving the floor cleaning device 300 to move, the cleaning part 353 will not contact the surface to be cleaned, thereby avoiding the situation that the cleaning part 353 contacts the surface to be cleaned and causes secondary pollution of the surface to be cleaned in scenarios where mopping is not required, which is beneficial to improving the cleanliness of the floor cleaning device 300, and improving the cleaning efficiency and user experience.

[0049] Furthermore, in addition to being able to accommodate the floor cleaning device 300, the cleaning device 100 can also perform operations such as charging and / or cleaning on the floor cleaning device 300. That is to say, the cleaning device 100 has the same functions as a base station, so there is no need for users to additionally equip the corresponding base station, which improves the user experience.

[0050] The structure of the cleaning device 100 will be elaborated in detail below. As Figures 1 to 5 shown, the cleaning device 100 includes a housing 110 with a cavity 116. An opening 115 communicating with the cavity 116 is provided on one side of the housing 110; a liquid collection mechanism 120 and a liquid discharge mechanism are provided on the housing 110; among them, a clothing treatment device 200 is provided above the housing 110; the cavity 116 is used to accommodate the floor cleaning device 300; the opening 115 is used for the floor cleaning device 300 to enter and exit the cavity 116; the liquid collection mechanism 120 is used to gather the leaked liquid of the clothing treatment device 200; the liquid discharge mechanism is at least used to discharge the leaked liquid of the clothing treatment device 200.

[0051] As Figures 4 to 5 shown, the housing 110 specifically includes a top plate 111, a bottom plate 113, a rear cover plate 114, and two side plates 112. The top plate 111 is a complete plate body without splicing gaps, thus avoiding the situation where leaked liquid seeps into the cavity 116 through the splicing gaps. One of the side plates 112 is connected to one end of the bottom plate 113, and the other side plate 112 is connected to the other end of the bottom plate 113, thus forming a U-shaped structure. The top plate 111 covers the top of the U-shaped structure, so that a cavity 116 is surrounded by the top plate 111, the bottom plate 113, and the side plates. And the cavity 116 has two opposite openings 115. As Figure 1 shown, the rear cover plate 114 covers one of the openings 115 to block the opening 115. In this way, the housing 110 only has one opening 115 that allows the floor cleaning device 300 to enter and exit, thus improving the protection effect on the floor cleaning device 300 and also improving the sealing of the cavity 116.

[0052] In specific use, the orientation of the opening 115 of the cleaning device 100 is the same as the orientation of the cabinet door of the clothing treatment device 200, so that there is enough space in front of the opening 115 to facilitate the floor cleaning device 300 to enter and exit the cavity 116. Furthermore, a guide rail 140 is provided at the opening 115 of the cleaning device 100 to avoid the situation where the floor cleaning device 300 is stuck due to the height difference formed between the bottom plate 113 of the cleaning device 100 and the ground when the floor cleaning device 300 enters and exits the cavity 116, so that the floor cleaning device 300 can enter and exit the cavity 116 more smoothly.

[0053] In the case of liquid leakage occurring in the laundry treatment device 200, the liquid collection mechanism 120 is used to converge the leaked liquid of the laundry treatment device 200, and then the drained mechanism drains the converged leaked liquid to the outside of the cleaning device 100, for example, into the sewer, so as to prevent the leaked liquid of the laundry treatment device 200 from seeping into the cavity 116 of the frame 110, which may cause damage to the floor cleaning device 300 in the cavity 116, or flow along the bottom surface of the frame 110 to the ground outside the frame 110, resulting in a wet ground, bacteria breeding, environmental pollution, and increased difficulty in floor cleaning; and it also prevents the top plate 111 of the frame 110 from being corroded by the stored leaked liquid, improving the service life of the frame 110, and thus improving the service life of the cleaning device 100.

[0054] Further, as Figures 2 to 3 shown, an installation component 130 for installing the laundry treatment device 200 is provided at the top of the frame 110.

[0055] In some embodiments, as Figure 1 and Figure 2 shown, the installation component 130 includes installation plates 133 provided at the corners of the top plate 111, and fixing members 132 for fixing the laundry treatment device 200 are provided on the installation plates 133. Thus, the laundry treatment device 200 can be fixed on the top plate 111 through the fixing members 132.

[0056] Further, as Figure 2 shown, a baffle 131 is further provided outside the installation plate 133, so as to prevent the laundry treatment device 200 from slipping off the top plate 111 and also to guide the installation process of the laundry treatment device, facilitating its quick installation in place.

[0057] Specifically, as Figure 2 , Figure 3 and Figure 5 shown, the liquid collection mechanism 120 includes at least one liquid collection area 121 provided on the top plate 111; the height of at least one liquid collection area 121 is lower than other areas of the top plate 111, and drain holes 122 are provided on at least one liquid collection area 121.

[0058] The number of liquid collection areas 121 can be one or more than one. The specific number can be set by the staff according to the actual situation, and this embodiment does not make strict limitations.

[0059] The height of the liquid collection area 121 is lower than that of other areas of the top plate 111. When the leaked liquid of the laundry treatment device drops on the top plate 111, due to the gravity of the leaked liquid, the leaked liquid automatically flows from other areas of the top plate 111 to the liquid collection area 121. Thus, the leaked liquid on the top plate 111 can be converged in the liquid collection area 121, and then the leaked liquid converged in the liquid collection area 121 is discharged from the liquid collection area 121 through the liquid discharge hole 122.

[0060] The liquid collection mechanism 120 provided in this embodiment has a simple structure, is easy to implement, and also has a good liquid collection effect.

[0061] In specific applications, for the leaked liquid flowing out of the liquid discharge hole 122 of the liquid collection area 121, different structures can be adopted to discharge the cleaning device 100.

[0062] The first implementation method: As Figure 3 shown, a cleaning tank 150 is provided on the bottom surface of the cavity 116. The cleaning tank 150 is used to clean the cleaning component 353 of the floor cleaning device 300 and to receive the leaked liquid flowing out of the liquid discharge hole 122; the liquid discharge mechanism includes a first liquid discharge pipeline communicated with the cleaning tank.

[0063] In this embodiment, the cleaning tank 150 is not only used to clean the cleaning component 353 of the floor cleaning device 300, but also can be used to receive the leaked liquid flowing out of the liquid discharge hole 122, thereby achieving the purpose of simplifying the structure and reducing the cost. The leaked liquid received by the cleaning tank 150 is discharged into the sewer through the first liquid discharge pipeline to realize the discharge of the leaked liquid.

[0064] In order to smoothly guide the leaked liquid of the liquid discharge hole 122 into the cleaning tank, in some implementation methods, the cleaning tank 150 is located below the liquid discharge hole 122, so that the leaked liquid flowing out of the liquid discharge hole 122 directly drops into the cleaning tank 150. Thus, the discharge of the leaked liquid can be realized only by using the original structure of the cleaning device 100 without adding new components, thereby further simplifying the overall structure of the cleaning device 100.

[0065] In some other implementation methods, as Figure 3 shown, a connecting pipeline 160 is provided between the cleaning tank 150 and the liquid discharge hole 122, so that the leaked liquid flowing out of the liquid discharge hole 122 flows into the cleaning tank 150 through the connecting pipeline 160, thus eliminating the need to arrange the cleaning tank below the liquid discharge hole 122 and improving the flexibility of the position setting of the cleaning tank.

[0066] The connecting pipeline 160 can adopt a flexible hose, so that the connecting pipeline 160 can be bent arbitrarily to improve the flexibility of laying the connecting pipeline 160.

[0067] Furthermore, a suction component is provided on the first liquid discharge pipeline.

[0068] The suction component can adopt components such as a water pump. By using the suction force of the suction component, the speed of discharging the leaked liquid can be increased.

[0069] The second implementation method: The liquid discharge mechanism includes a second liquid discharge pipeline communicated with the liquid discharge hole 122.

[0070] By using the second liquid discharge pipeline directly communicated with the liquid discharge hole 122, the leaked liquid flowing out of the liquid discharge hole 122 is discharged into the sewer, so that the discharge path of the leaked liquid can be shortened and the discharge efficiency can be improved. The second liquid discharge pipeline can adopt a flexible hose, so that the second liquid discharge pipeline can be bent arbitrarily to improve the flexibility of arranging the second liquid discharge pipeline.

[0071] Optionally, a suction component is provided on the second liquid discharge pipeline.

[0072] The suction component can adopt components such as a water pump. By using the suction force of the suction component, the speed of discharging the leaked liquid can be increased.

[0073] The present utility model has been described through the above embodiments. However, it should be understood that the above embodiments are only for the purpose of illustration and example, and are not intended to limit the present utility model within the scope of the described embodiments. In addition, those skilled in the art can understand that the present utility model is not limited to the above embodiments, and more variations and modifications can be made according to the teachings of the present utility model, and these variations and modifications all fall within the scope claimed by the present utility model. The protection scope of the present utility model is defined by the appended claims and their equivalent scope.

Claims

1. A cleaning device, characterized in that, It comprises a frame with a cavity, one side of the frame is provided with an opening communicating with the cavity; the frame is provided with a liquid collecting mechanism and a liquid discharging mechanism; In which, a clothing processing device is provided above the frame; the cavity is used to accommodate a floor cleaning device; the opening is used for the floor cleaning device to enter and exit the cavity; the liquid collecting mechanism is used to collect liquid leaked from the clothing processing device; and the liquid draining mechanism is at least used to discharge the collected leaked liquid.

2. The cleaning device according to claim 1, wherein The frame includes a top plate, and the liquid collection mechanism includes at least one liquid collection area arranged on the top plate; the height of at least one liquid collection area is lower than other areas of the top plate, and at least one liquid collection area is provided with a drainage hole.

3. The cleaning device according to claim 2, wherein A cleaning trough is provided on the bottom surface of the cavity, and the cleaning trough is used to clean the cleaning components of the floor cleaning equipment and receive the leaked liquid flowing out of the drainage hole; the drainage mechanism includes a first drainage pipeline connected to the cleaning trough.

4. The cleaning device according to claim 3, characterized in that, The cleaning tank is located below the drainage hole.

5. The cleaning device according to claim 3, characterized in that, A connecting pipeline is provided between the cleaning tank and the drainage hole.

6. The cleaning device according to claim 3, characterized in that, The first liquid discharge pipeline is provided with a suction component.

7. The cleaning device according to claim 2, characterized in that, The drainage mechanism includes a second drainage pipeline communicated with the drainage hole.

8. The cleaning device according to claim 7, characterized in that The second liquid discharge pipeline is provided with a suction component.

9. The cleaning device according to claim 1, wherein The top of the frame is provided with a mounting component for mounting the clothes processing device.

10. A cleaning system, characterized in that, It comprises a clothes processing device, a floor cleaning device and the cleaning apparatus according to any one of claims 1 to 9, wherein the clothes processing device is located above the frame of the cleaning apparatus, and the floor cleaning device can enter and exit the cavity of the frame of the cleaning apparatus.