Cleaning machine

By designing a cleaning machine adapted to municipal water supply systems, including housing components, water storage containers, and mixing valves, the problem of existing cleaning machines being unable to adapt to both ambient and hot water has been solved, achieving a wider range of water adaptability.

WO2026114386A1PCT designated stage Publication Date: 2026-06-04FOSHAN SHUNDE MIDEA WASHING APPLIANCES MANUFACTURING CO LTD +1

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
FOSHAN SHUNDE MIDEA WASHING APPLIANCES MANUFACTURING CO LTD
Filing Date
2025-11-28
Publication Date
2026-06-04

AI Technical Summary

Technical Problem

Existing cleaning machines cannot be directly adapted to the ambient temperature and hot water supplied by municipal water supply systems, resulting in insufficient applicability.

Method used

A cleaning machine has been designed, including a housing assembly, a water storage container, a mixing valve, and a water outlet assembly. It can directly accept ambient temperature water and hot water provided by the municipal water supply system, and output the water after mixing through the mixing valve, adapting to different water needs.

Benefits of technology

This enables the cleaning machine to be directly compatible with both ambient and hot water supplied by municipal water supply systems, improving its applicability and flexibility of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a cleaning machine. The cleaning machine comprises a housing assembly, a water storage container, a water mixing valve, and a water outlet assembly. The housing assembly is configured to be mounted on a wall surface, and the housing assembly has an upper end, a lower end, and an accommodating cavity defined between the upper end and the lower end. The water storage container is mounted in the accommodating cavity, the water storage container is provided with a first water cavity and a second water cavity, the first water cavity is configured to be communicated with an external hot water source, and the second water cavity is configured to be communicated with an external normal temperature water source. The water mixing valve is separately communicated with the first water cavity and the second water cavity. The water outlet assembly has a water inlet end and a water outlet end, the water inlet end of the water outlet assembly is communicated with the water mixing valve, and the water outlet end of the water outlet assembly is arranged at the upper end of the housing assembly and is configured to be communicated with a water using end.
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Description

Cleaning machine

[0001] Related applications

[0002] This application claims priority to Chinese patent applications filed on November 28, 2024, with application numbers 202411731935.7 and 202422926184.6, the entire contents of which are incorporated herein by reference. Technical Field

[0003] This application relates to the field of electrical technology, and in particular to a cleaning machine. Background Technology

[0004] In some cities, municipal water supply systems provide household water at room temperature and hot water directly through centralized water stations for drinking, washing, and other purposes. However, current technology lacks cleaning machines that can directly adapt to this water supply method. Therefore, there is an urgent need for a cleaning machine that can directly adapt to the water supply system that provides both room temperature and hot water. Summary of the Invention

[0005] The main purpose of this application is to provide a cleaning machine that can be directly adapted to a water supply system that supplies both room temperature and hot water, thereby improving the applicability of the cleaning machine.

[0006] To achieve the above objectives, the cleaning machine proposed in this application includes: a housing assembly; a water storage container; a mixing valve; and a water outlet assembly.

[0007] In one embodiment, the housing assembly is for mounting to a wall surface, the housing assembly having an upper end, a lower end, and a receiving cavity defined between the upper end and the lower end.

[0008] In one embodiment, the water storage container is installed in the receiving cavity. The water storage container has a first water cavity and a second water cavity. The first water cavity is used to communicate with an external hot water source, and the second water cavity is used to communicate with an external ambient temperature water source.

[0009] In one embodiment, the mixing valve is connected to both the first water chamber and the second water chamber.

[0010] In one embodiment, the water outlet assembly has an inlet end and an outlet end. The inlet end of the water outlet assembly is connected to the mixing valve, and the outlet end of the water outlet assembly is located at the upper end of the housing assembly and is used to connect to the water-using end.

[0011] In one embodiment, the height dimension of the housing assembly is greater than the length dimension and width dimension of the housing assembly.

[0012] In one embodiment, the housing assembly includes a faceplate and two pillars, the two pillars extending vertically and spaced apart from each other horizontally, the two pillars and the faceplate forming the receiving cavity.

[0013] In one embodiment, the opposing directions of the two pillars constitute the width direction of the housing assembly, and the extending direction of the pillars constitutes the height direction of the housing assembly.

[0014] In one embodiment, the cleaning machine further includes a first mounting bracket, the two ends of which are respectively connected to the middle of the two columns, and divide the receiving cavity into an upper cavity and a lower cavity. The water storage container is mounted on the first mounting bracket and is located in the middle of the columns.

[0015] In one embodiment, the water outlet assembly is located within the receiving cavity and extends from the lower cavity and the upper cavity, with the water outlet end of the water outlet assembly extending out of the receiving cavity.

[0016] In one embodiment, the water outlet assembly sprays water from the water storage container outward through the water outlet end.

[0017] In one embodiment, the water outlet assembly includes a first pipeline and a first pump body, one end of the first pipeline is the water inlet of the water outlet assembly, the other end of the first pipeline is the water outlet of the water outlet assembly, and the first pump body is disposed on the first pipeline.

[0018] In one embodiment, the first pump body is disposed in the lower cavity and located below the water storage container.

[0019] In one embodiment, the first pipeline has a first portion and a second portion. The first portion of the first pipeline is disposed in the upper cavity and is disposed toward the height of the housing assembly. The second portion of the first pipeline is disposed in the lower cavity and is disposed close to the water storage container.

[0020] A first motor bracket is provided on the side of the column facing the lower cavity, and the first pump body is suspended on the first motor bracket.

[0021] In one embodiment, the first pump body extends axially in a horizontal direction.

[0022] In one embodiment, the first motor bracket includes a mounting component and an elastic component, the mounting component being connected to the column and the elastic component being connected to the mounting component.

[0023] In one embodiment, the first pump body is suspended and mounted on the elastic member.

[0024] In one embodiment, the cleaning machine further includes a water inlet control component for controlling the inlet of water into the first water chamber and / or the second water chamber.

[0025] In one embodiment, the water inlet control component is located in the upper cavity and is disposed near the top of the first water cavity and / or the second water cavity.

[0026] In one embodiment, the water inlet control component includes a first water inlet valve and a second water inlet valve. The first water chamber is connected to an external hot water source through the first water inlet valve, and the second water chamber is connected to an external ambient temperature water source through the second water inlet valve.

[0027] In one embodiment, a second mounting bracket for mounting the first water inlet valve and the second water inlet valve is provided between the two columns, and the second mounting bracket extends along the width direction.

[0028] In one embodiment, the second mounting bracket is located in the upper cavity and positioned above the water storage container.

[0029] In one embodiment, the cleaning machine further includes a drainage component disposed in the lower cavity and located below the water storage container. The drainage component is used to drain the water storage container and the water outlet component when the machine is turned on.

[0030] In one embodiment, the drainage assembly includes a first drain pipe and a first drain valve, the first drain pipe being connected to the first pipeline, and the first drain valve being disposed on the first drain pipe.

[0031] In one embodiment, the first drain pipe is disposed near the column and extends along the height direction of the housing assembly to the lower end of the housing assembly, and the first drain valve is disposed near the lower end of the housing assembly.

[0032] In one embodiment, the cleaning machine further includes a circulating filter assembly, which is disposed in the lower cavity and located below the water storage container. The circulating filter assembly is used to draw in water used for washing or other water sources, filter it, and then deliver it to the second water cavity.

[0033] In one embodiment, the circulating filtration assembly includes a second pipeline, a second pump body, and a filter element. The second pipeline has a water intake end and a connection end, and the second pump body and the filter element are disposed on the second pipeline.

[0034] In one embodiment, the second pump body and the filter element are installed at the position of the column corresponding to the lower cavity, and the filter element is disposed at the lower part of the first pump body; the second pump body is disposed at the lower part of the filter element.

[0035] In one embodiment, the cleaning machine further includes a second motor bracket, the two ends of which are respectively connected to the lower parts of the two columns, and the second pump body is mounted on the second motor bracket.

[0036] In one embodiment, the second pump body extends axially in a horizontal direction.

[0037] In one embodiment, the circulating filtration assembly further includes a water collector located at the water intake end.

[0038] In one embodiment, the water collector is funnel-shaped and equipped with a filter screen for filtering out solid impurities when the water collector draws water.

[0039] In one embodiment, the cleaning machine further includes a drainage assembly, which includes a second drain pipe and a second drain valve. The second drain pipe is connected to the second pipeline between the second pump body and the filter element, and the second drain valve is disposed on the second drain pipe.

[0040] In one embodiment, the second drain pipe is disposed near the column relatively far from the circulating filter assembly and extends along the height direction of the housing assembly to the lower end of the housing assembly, and the second drain valve is disposed near the lower end of the housing assembly.

[0041] In one embodiment, the drainage assembly further includes a first drain pipe and a first drain valve, the first drain pipe being connected to the first pipeline, and the first drain valve being disposed on the first drain pipe.

[0042] In one embodiment, the first drain pipe and the second drain pipe are disposed adjacent to each other in the receiving cavity.

[0043] In one embodiment, the cleaning machine further includes a sterilization component and an electrical control box.

[0044] In one embodiment, the sterilization component is disposed in the upper cavity and is used to sterilize the water output from the water output component.

[0045] In one embodiment, the electrical control box is located in the upper cavity and is used to control the sterilization component to perform sterilization.

[0046] In one embodiment, the sterilization component and the electrical control box are respectively mounted on two of the columns and are spaced apart from each other.

[0047] In one embodiment, the cleaning machine further includes a socket mounting bracket disposed in the upper cavity, the sterilization component being inserted into the socket mounting bracket, and the sterilization component extending along the height direction of the housing assembly.

[0048] In one embodiment, the water outlet assembly includes a first pipeline and a first pump body; the cleaning machine further includes a circulating filtration assembly, which includes a second pipeline, a second pump body, and a filter element.

[0049] In one embodiment, the housing assembly has a first mounting bracket, a first motor bracket, and a second motor bracket arranged sequentially from top to bottom, and the water storage container is disposed on the first mounting bracket.

[0050] In one embodiment, the first pump body is disposed on the first motor bracket, and the second pump body is disposed on the second motor bracket.

[0051] In one embodiment, the filter element is disposed at a position between the housing assembly and the first motor bracket and the second motor bracket.

[0052] In one embodiment, the cover includes an upper cover plate, a control panel, and a lower cover plate connected in sequence. The upper cover plate covers the upper cavity, the lower cover plate covers the lower cavity and is hinged to the column, and the control panel covers the position of the upper and lower cover plate housing assembly corresponding to the water storage container.

[0053] Additional aspects and advantages of this application 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 this application. Attached Figure Description

[0054] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0055] Figure 1 is a structural schematic diagram of an embodiment of the cleaning machine provided in this application;

[0056] Figure 2 is a system diagram of an embodiment of the cleaning machine provided in this application;

[0057] Figure 3 is a structural schematic diagram of another embodiment of the cleaning machine provided in this application;

[0058] Figure 4 is a structural schematic diagram of an embodiment of the first motor bracket of the cleaning machine provided in this application;

[0059] Figure 5 is a structural schematic diagram of an embodiment of the valve mounting base of the cleaning machine provided in this application;

[0060] Figure 6 is a structural schematic diagram of another embodiment of the cleaning machine provided in this application;

[0061] Figure 7 is a structural schematic diagram of an embodiment of the face cover provided in this application.

[0062] Reference numerals in the attached figures: 100, upper end 111, lower end 112, receiving cavity 113, column 121, top plate 122, first mounting bracket 123, wall-mounted connecting plate 124, first motor bracket 130, connecting arm 131, hanging 132, first boom 1321, second boom 1322, second mounting bracket 141, valve mounting seat 142, mounting side plate 1421, connecting plate 1422, mounting slot 1423, first mounting hole 1424, second mounting hole 1425, third mounting bracket 150, slot 151, second motor bracket 160, fifth mounting bracket 171, sixth mounting bracket 172, hook 180, storage basket 181, face cover 191, upper cover plate 1911, control panel 1912, lower cover plate 1913, first magnet 1914, second magnet 1915; Water storage container 200, first water chamber 210, second water chamber 220; mixing valve 300; water outlet assembly 400, first pipeline 410, first pump body 420, mounting rod 421, water outlet valve 430; water inlet control assembly 500, first water inlet valve 510, second water inlet valve 520; drainage assembly 600, first drain pipe 610, first drain valve 620, second drain pipe 630, second drain valve 640; electrical control box 700; circulating filter assembly 800, second pipeline 810, second pump body 820, filter element 830, water collector 840, third water inlet valve 850; sterilization assembly 900, shell tube 910.

[0063] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0064] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0065] In some cities, municipal water supply systems provide household water at room temperature and hot water directly through centralized water stations for drinking, washing, and other purposes. However, current technology lacks cleaning machines that can directly adapt to this water supply method. Therefore, there is an urgent need for a cleaning machine that can directly adapt to the water supply system that provides both room temperature and hot water.

[0066] To address the aforementioned issues, this application provides a cleaning machine designed to be directly compatible with water supply systems that supply both ambient and hot water, thereby improving the machine's applicability.

[0067] As shown in Figures 1 and 2, in an embodiment of this application, the cleaning machine includes a housing assembly 100, a water storage container 200, a mixing valve 300, and a water outlet assembly 400.

[0068] Understandably, the cleaning machine 10 can be used as a household appliance or a commercial appliance. Its uses are varied; for example, it can be used as a shower machine for users to bathe, or as a cleaning device for appliances, furniture, etc. The specific application is not limited. The dotted arrows in the accompanying diagram indicate the direction of water flow.

[0069] In this embodiment, the housing assembly 100 is used for mounting on a wall. The housing assembly 100 has an upper end 111, a lower end 112, and a receiving cavity 113 defined between the upper end 111 and the lower end 112. It is understood that one side of the housing assembly 100 may have a mounting portion, such as a mounting hole or a wall-mounting bracket, for mounting on the wall. Furthermore, taking the wall as a reference end, after being mounted on the wall, the housing assembly 100 has the upper end 111, the lower end 112, and the receiving cavity 113. The receiving cavity 113 can be used to install the water storage container 200, the mixing valve 300, and the water outlet assembly 400. The receiving cavity 113 can also be used to install other components of this cleaning machine, which will be described in detail later. Thus, the housing assembly 100 provides installation space for the water storage container 200, the mixing valve 300, the water outlet assembly 400, and other components, while protecting these components from the influence of the external environment.

[0070] In this embodiment, a water storage container 200 is installed in the receiving cavity 113. The water storage container 200 has a first water cavity 210 and a second water cavity 220. The first water cavity 210 is used to communicate with an external hot water source, so that hot water provided by the municipal water supply system can flow into the first water cavity 210. The second water cavity 220 is used to communicate with an external ambient temperature water source, so that ambient temperature water provided by the municipal water supply system can flow into the second water cavity 220. In this way, the water storage container 200 can accept hot water and ambient temperature water provided by the municipal water supply system, thereby improving the applicability of the cleaning machine.

[0071] In one embodiment, the first water chamber 210 is connected to an external hot water source to store hot water flowing from the municipal water supply system. This means the external hot water source is supplied by the municipal water supply system. Hot water typically refers to water with a temperature between 40 and 80 degrees Celsius. However, the specific temperature range of hot water may vary depending on the region, and the specific temperature of the hot water is not limited. The second water chamber 220 is connected to an external ambient temperature water source to store ambient temperature water flowing from the municipal water supply system. This means the external ambient temperature water source is supplied by the municipal water supply system. Ambient temperature water is tap water, typically with a temperature between 10 and 25 degrees Celsius. The specific temperature is affected by the season and environment; in winter, the ambient temperature water is lower, and in summer, it is higher. The specific temperature of the ambient temperature water is not limited.

[0072] It is understood that the first water chamber 210 can be located in the first water tank, and the second water chamber 220 can be located in the second water tank. The first and second water tanks can be separate structures; or, the first and second water tanks can be an integrated structure. When the first and second water tanks are separate structures, it is convenient to manufacture and install them separately, and it is also convenient to maintain or clean either one. At the same time, it allows the mixing valve 300 to more accurately adjust the ratio of hot water to room temperature water. When the first and second water tanks are an integrated structure, the water storage container 200 has a compact structure. The integrated design reduces material usage and installation costs, and the structure is more robust.

[0073] In this embodiment, the mixing valve 300 is connected to both the first water chamber 210 and the second water chamber 220 to mix the hot water in the first water chamber 210 and the room temperature water in the second water chamber 220 according to usage requirements. The mixed water flows along the water outlet assembly 400 to the water-using end for user cleaning. In one embodiment, the mixing valve 300 can be located outside or on the water storage container 200; the specific installation location is not limited, as long as the mixing valve 300 can communicate with both the first water chamber 210 and the second water chamber 220. The mixing valve 300 can be a mechanical thermostatic valve or an electronic thermostatic valve, depending on the requirements, and is not limited here. By setting the mixing valve 300, the hot water in the first water chamber 210 and the room temperature water in the second water chamber 220 can be mixed according to usage requirements to meet the user's water temperature needs. Therefore, it can be seen that the cleaning machine provided by this utility model can be directly adapted to the room temperature water and hot water supplied by the water supply system, and the cleaning machine has strong applicability.

[0074] In this embodiment, the water outlet assembly 400 has an inlet end and an outlet end. The inlet end of the water outlet assembly 400 is connected to the mixing valve 300, and the outlet end of the water outlet assembly 400 is located at the upper end 111 of the housing assembly 100 and is used to connect to the water-using end. It is understood that the water outlet component includes, but is not limited to, a faucet, a shower head, etc.; the water outlet assembly 400 may also not include a water outlet component, and the user can configure a suitable faucet, shower head, etc., according to their own needs.

[0075] In one embodiment, the height dimension of the housing assembly 100 is greater than the length dimension and the width dimension of the housing assembly 100.

[0076] It is understood that after the housing assembly 100 is installed on the wall, its height is parallel to the wall and perpendicular to the ground, its length is perpendicular to the wall and parallel to the ground, and its width is parallel to the wall and parallel to the ground, so that the housing assembly 100 is ultimately formed into a flat and elongated rectangular shape. The specific size relationship between the length and width dimensions is not limited here.

[0077] In one embodiment, as shown in Figures 1 and 3, the housing assembly 100 includes a faceplate 191 and two pillars 121. The two pillars 121 extend vertically and are spaced apart from each other horizontally. The two pillars 121 and the faceplate 191 enclose the receiving cavity 113. The opposite direction of the two pillars 121 constitutes the width direction of the housing assembly 100, and the extending direction of the pillars 121 is the height direction of the housing assembly 100.

[0078] Understandably, the receiving cavity 113 is used to install other components of the cleaning machine, such as the water storage container 200, the mixing valve 300, and the water outlet assembly 400.

[0079] In addition, the height, width and length of the column 121 can be determined according to the overall size required by the cleaning machine or the number of internal components, so as to ensure that the internal components of the cleaning machine are covered.

[0080] In this embodiment, the shape of the column 121 can be determined according to actual needs and is not limited here; in one example, as shown in Figures 1 and 3, the column 121 can be a Z-shaped column 121, with one side of the Z-shaped column 121 being provided with mounting holes for installation on the wall surface, and the other side being provided with mounting holes for installation of a panel or cover.

[0081] In this embodiment, the height of the cover 191 is adapted to the height of the receiving cavity 113 formed by the two pillars 121, and the width of the cover 191 is adapted to the width of the receiving cavity 113 formed by the two pillars 121. Thus, the cover 191 can completely cover one side of the two pillars 121 to form a protective mechanism. The cover 191 can be installed on the pillars 121 in a switchable or non-switching manner; a switchable installation facilitates subsequent maintenance. Furthermore, the cover 191 can have a control component, such as a control panel, touchscreen, buttons, knobs, etc., and is electrically connected to the internal electrical control box of the cleaning machine to control the operating parameters of the cleaning machine. It should be noted that the size and function of the cover 191 are not limited here; specifically, it is used to form a receiving cavity 113 with the two pillars 121 to install internal components.

[0082] In one embodiment, as shown in Figures 1 and 3, the housing assembly 100 further includes a first mounting bracket 123, which is connected to the middle of the two columns 121. The two columns 121, the cover 191, and the first mounting bracket 123 enclose the receiving cavity 113. The water storage container 200 is mounted on the first mounting bracket 123 and divides the receiving cavity 113 into an upper cavity and a lower cavity.

[0083] The first mounting bracket 123 is located in the middle of the two columns 121. The first mounting bracket 123 is mainly used to support and fix the water storage container 200, installing the water storage container 200 in the middle of the shell assembly 100 to ensure the stability and safety of the water storage container 200. At the same time, the first mounting bracket 123 divides the receiving cavity 113 into an upper cavity and a lower cavity, providing installation space for other components. Components that need to be located on the upper part of the water storage container 200 are located in the upper cavity, and components that need to be located on the lower part of the water storage container 200 are located in the lower cavity. The details will be described in detail later.

[0084] In this embodiment, as shown in Figure 1, a mounting slot is provided on one side of the water storage container 200. The water storage container 200 can be secured to the first mounting bracket 123 via this mounting slot, and then a stable structure can be formed with the first mounting bracket 123 using fasteners such as screws. The first mounting bracket 123 can be a mounting plate or a mounting platform; its specific form is not limited here. It is mainly used to mount the water storage container 200. Both ends of the first mounting bracket 123 can be fixed to the two columns 121 respectively using multiple fasteners to form a stable support structure.

[0085] It should be noted that, as shown in Figure 6, the housing assembly 100 is mounted on the wall, and two wall-mounted connecting plates 124 can be provided at intervals between the two columns 121. The housing assembly 100 can be connected to the wall through these two wall-mounted connecting plates 124.

[0086] In one embodiment, the housing assembly 100 may further include a top plate 122, which is connected to the upper ends 111 of the two columns 121 to connect the two columns 121. The top plate 122 serves as a capping function and together with the two columns 121 forms the housing assembly 100.

[0087] In this embodiment, the water outlet assembly 400 is located within the receiving cavity 113. The water outlet assembly 400 extends from the lower cavity and the upper cavity, with its outlet end protruding from the receiving cavity 113. The outlet end of the water outlet assembly 400 extends upwards from the lower cavity, passes through the first mounting bracket 123 and the upper cavity, and finally passes through the top plate 122 and extends out of the housing assembly 100. The water outlet assembly 400 sprays water from the water storage container 200 outwards through its outlet end. The outlet end is designed with a standard interface for easy connection to various water-using devices, such as shower heads and faucets. Furthermore, after passing through the top plate 122, the water outlet assembly 400 can be secured to the top plate 122 using clips or fasteners to prevent loosening or detachment due to water pressure or external forces. In this way, the water outlet assembly can better spray water from the water storage container 200 for user use.

[0088] In one embodiment, the water outlet assembly 400 includes a first pipe 410 and a first pump body 420. One end of the first pipe 410 is the water inlet of the water outlet assembly 400, and the other end is the water outlet of the water outlet assembly 400. The first pump body 420 is disposed on the first pipe 410. It can be understood that by providing the first pump body 420, the water mixed by the mixing valve 300 can be pumped along the first pipe 410 to the water-using end, providing a strong water flow and improving the cleaning capacity of the cleaning machine. Furthermore, a water outlet component can be installed at the water outlet of the first pipe 410 for user convenience.

[0089] In this embodiment, the first pipeline 410 is also provided with a water outlet valve 430, which is used to control whether water can be output to the water-using end.

[0090] In this embodiment, the first pump body 420 is disposed in the lower cavity and located below the water storage container 200. Thus, after the water in the water storage container 200 is naturally discharged, the water flow formed by the first pump body 420 is sent out through the outlet end.

[0091] In one embodiment, as shown in FIG1, the first pipe 410 has a first portion and a second portion. The first portion of the first pipe 410 is disposed in the upper cavity and is arranged in the height direction of the housing assembly 100. The second portion of the first pipe 410 is disposed in the lower cavity and is disposed near the water storage container 200. It can be understood that the second portion is connected to the mixing valve 300 and is disposed in the lower cavity, so that the water source can flow naturally by gravity. With the action of the first pump body 420, the water source can flow through the first pipe 410 to the first portion of the upper cavity and be discharged through the outlet.

[0092] A first motor bracket 130 is provided on the side of the column 121 facing the lower cavity, and the first pump body 420 is mounted on the first motor bracket 130. It is understood that the first motor bracket 130 can have a shock absorption function to effectively absorb and buffer the vibration and noise generated by the first pump body 420 during operation, reducing the impact of these vibrations on the housing assembly 100 and other internal components, such as reducing wear and damage caused by vibration, thereby improving the overall stability and service life of the cleaning machine. Secondly, the first motor bracket 130 can reduce the interference of pump body vibration on the user experience, making the cleaning machine quieter and more stable during operation, improving user satisfaction. Thus, the setting of the first motor bracket 130 not only improves the performance and user experience of the cleaning machine, but also extends the service life of the equipment.

[0093] In one embodiment, as shown in FIG3, after the first pump body 420 is mounted on the first motor bracket 130, the axial direction of the first pump body 420 extends horizontally. The horizontal extension of the first pump body 420 facilitates the layout and connection of other pipelines. Firstly, the horizontal axial arrangement of the pump body allows the inlet and outlet ends of the first pipeline 410 to be more compact and symmetrical in space, facilitating the straight-line arrangement of the pipeline and reducing the number of bends and joints, thereby reducing water flow resistance and leakage risk. Secondly, the horizontal arrangement of the pump body helps optimize the internal space utilization of the housing assembly 100, allowing other components such as the mixing valve 300 and the water storage container 200 to be arranged more rationally, improving the overall structural compactness and aesthetics.

[0094] In one embodiment, the first motor bracket 130 includes a mounting member and an elastic member, one side of the mounting member is connected to the column 121, and the other side of the mounting member is connected to the elastic member; the first pump body 420 is suspended and mounted on the elastic member.

[0095] In this embodiment, as shown in FIG3, the mounting component is specifically a connecting wall 131, and the elastic component is specifically a hanger 132. The connecting arm 131 has a first end and a second end. The first end of the connecting arm 131 is connected to the column 121 to ensure the stability of the entire first motor bracket 130. The second end of the connecting arm 131 extends toward the lower cavity to provide a stable support point for the hanger 132. The hanger 132 is connected to the second end of the connecting arm 131 and extends vertically. The hanger 132 has a first arm 1321 and a second arm 1322 that are spaced apart horizontally, forming a stable suspension system. The first pump body 420 is suspended between the first arm 1321 and the second arm 1322, and the peripheral wall of the first pump body 420 is connected to the first arm 1321 and the second arm 1322. In this way, it can not only effectively absorb and buffer the vibration and noise generated by the first pump body 420 during operation, but also provide stable installation support. At the same time, the design of the hanger 132 makes the installation and disassembly of the first pump body 420 more convenient, and technicians can easily install and maintain the pump body, reducing maintenance difficulty and cost.

[0096] In this embodiment, mounting rods 421 may be provided on both sides of the first pump body 420 to cooperate with the first boom 1321 and the second boom 1322 to install the first pump body 420 between the first boom 1321 and the second boom 1322.

[0097] In this embodiment, the first boom 1321 and the second boom 1322 are made of a shock-absorbing material. This material possesses good elasticity and durability, maintaining its shock-absorbing performance over extended use. This material can be rubber, silicone, or other high-performance shock-absorbing materials. When the first pump body 420 vibrates during operation, the booms made of shock-absorbing material effectively absorb this vibrational energy, converting it into minute deformations, thereby reducing vibration transmission. This not only reduces the operating noise of the cleaning machine but also reduces mechanical wear caused by vibration, extending the service life of the pump body and the entire equipment.

[0098] In one embodiment, as shown in Figures 1 and 2, the cleaning machine further includes a water inlet control assembly for controlling the inlet of water into the first water chamber (210) and / or the second water chamber 220; the water inlet control assembly is located in the upper cavity and is disposed near the top of the first water chamber 210 and / or the second water chamber 220. In this embodiment, the water inlet control assembly is a first water inlet valve 510 and a second water inlet valve 520.

[0099] In one embodiment, the first water chamber 210 is connected to an external hot water source through the first inlet valve 510, and the second water chamber 220 is connected to an external ambient temperature water source through the second inlet valve 520. It is understood that when the first inlet valve 510 is open, external hot water flows through the first inlet valve 510 into the first water chamber 210; when the first inlet valve 510 is closed, external hot water cannot flow into the first water chamber 210. The first inlet valve 510 is a switch that controls the flow of hot water into the first water chamber 210. Similarly, when the second inlet valve 520 is open, external ambient temperature water flows through the second inlet valve 520 into the second water chamber 220; when the second inlet valve 520 is closed, external ambient temperature water cannot flow into the second water chamber 220. The second inlet valve 520 is a switch that controls the flow of ambient temperature water into the second water chamber 220.

[0100] In one embodiment, a first water chamber 210 and a second water chamber 220 are respectively located in a first water tank and a second water tank. The first and second water tanks have open water inlets, and a first inlet valve 510 and a second inlet valve 520 are respectively connected to the open water inlets of the first and second water tanks. In one embodiment, the outlets of the first and second inlet valves 510 and 520 are aligned with the open water inlets, which facilitates the direct flow of water into the first water chamber 210 and the second water chamber 220 after the first and second inlet valves 510 and 520 are opened.

[0101] In this embodiment, a second mounting bracket 141 is connected between the two columns 121, and the second mounting bracket 141 is located in the upper cavity. Two valve mounting seats 142 are provided on the second mounting bracket 141, and the first inlet valve 510 and the second inlet valve 520 are respectively mounted on the second mounting bracket 141 via one of the valve mounting seats 142. Furthermore, the second mounting bracket 141 extends along its width direction, is located in the upper cavity, and is positioned above the water storage container 200. It is understood that the second mounting bracket 141 provides a stable mounting platform, ensuring that the first inlet valve 510 and the second inlet valve 520 can be firmly fixed within the housing assembly 100 at the position corresponding to the water storage container 200, facilitating water supply to the water storage container 200. The design of the valve mounting seats 142 makes the installation and removal of the inlet valves more convenient, allowing technicians to easily install, debug, and maintain the valves.

[0102] In one embodiment, as shown in FIG5, the valve mounting base 142 includes a mounting side plate 1421. One side of the mounting side plate 1421 has two spaced-apart connecting plates 1422, which together form a mounting slot 1423. The two connecting plates 1422 have first mounting holes 1424. The mounting side plate 1421 is inserted into the second mounting bracket 141 through the mounting slot 1423 and fixed to the second mounting bracket 141 through the first mounting holes 1424. The mounting side plate 1421 also has a second mounting hole 1425 for mounting the first inlet valve 510 or the second inlet valve 520. Thus, the first inlet valve 510 and the second inlet valve 520 can be fixed in their respective positions via the valve mounting base 142, supplying water to the water storage container 200.

[0103] In addition, the second mounting bracket 141 can be a mounting plate or a mounting platform, and the specific form is not limited here. It is mainly used to install the first water inlet valve 510 and the second water inlet valve 520. The two ends of the second mounting bracket 141 can be fixed to the two columns 121 respectively by multiple fasteners to form a stable support structure.

[0104] In one embodiment, as shown in Figures 1 and 2, the cleaning machine further includes a drainage component 600. The drainage component 600 is disposed in the lower cavity and located below the water storage container 200. The drainage component 600 is used to empty the water storage container 200 and the water outlet component 400 when the machine is turned on. It can be understood that, being located below the water storage container 200, it can utilize gravity to drain the water, allowing the water source to flow naturally out of the water storage container 200 and be discharged from the cleaning machine through the drainage component 600.

[0105] In this embodiment, the drainage assembly 600 includes a first drain pipe 610 and a first drain valve 620. One end of the first drain pipe 610 is connected to the lower end 112 of the first pipe 410, and the other end of the first drain pipe 610 is located on one side or one end of the bracket to drain water to the outside of the housing assembly 100. The first drain valve 620 is located on the first drain pipe 610 and is used to empty the water storage container 200 and the water outlet assembly 400 when opened. It is understood that after the cleaning machine finishes cleaning, water remains in the first water chamber 210 and the second water chamber 220 of the water storage container 200, and water also remains in the first pipe 410 of the water outlet assembly 400. If the cleaning machine is not used for a long time, the water remaining in the water chambers and pipes is prone to bacterial growth and corrosion of the container and pipes, affecting the service life of the cleaning machine. Therefore, the cleaning machine in this solution is equipped with a drainage component 600, which is connected to the first pipe 410. The water remaining after washing in the first water chamber 210 and / or the second water chamber 220 can flow into the first pipe 410. The water remaining after washing in the first pipe 410 can flow through the discharge component and be discharged outward, so as to realize the function of the cleaning machine to discharge the water remaining after washing, thereby improving the cleanliness and service life of the cleaning machine.

[0106] Understandably, when the cleaning machine is in drainage mode, the first drain valve 620 opens, allowing water in the first drain pipe 610 to be discharged. This design, by placing the outlet of the first drain pipe 610 below the first pipe 410, allows water in the first pipe 410 to flow into the first drain pipe 610 under gravity and then discharge outwards along the first drain pipe 610, thus improving drainage smoothness.

[0107] In this embodiment, the connection point between one end of the first drain pipe 610 and the first pipeline 410 is located between the first pump body 420 and the water-using end. This arrangement means that the connection point between the first drain pipe 610 and the first pipeline 410 is downstream of the first pump body 420, allowing the remaining water in the first water chamber 210 and the second water chamber 220 after washing to flow completely through the first pump body 420 and into the first drain pipe 610 before being discharged.

[0108] In this embodiment, the first drain pipe 610 is positioned near the column 121 and extends along the height direction of the housing assembly 100 to the lower end of the housing assembly 100. The first drain valve 620 is positioned near the lower end of the housing assembly 100. It is understood that by positioning the first drain valve 620 at the lower end of the housing assembly 100, when the first drain valve 620 is open, the water flow can be naturally influenced by gravity, eliminating the need for an additional pump. It should be noted that in other embodiments, the first drain valve 620 can be positioned anywhere on the first drain pipe 610, as long as the first drain pipe 610 is not perpendicular to the ground; the specific position of the first drain valve 620 is not limited.

[0109] In one embodiment, as shown in Figures 1 and 2, the cleaning machine further includes a circulating filter assembly 800, which is disposed in the lower cavity. The circulating filter assembly 800 has a water suction end and a connecting end, and the connecting end is connected to the second water cavity 220. The circulating filter assembly 800 is used to draw in water used for washing or other water sources through the water suction end, filter it, and then deliver it to the second water cavity 220.

[0110] Understandably, traditional cleaning machines lack water recycling capabilities; the water source can only be used once. After being sprayed from the nozzles to rinse the cleaned items, the water falls to the ground and is directly discharged into the sewer. Furthermore, continuous cleaning can consume a significant amount of water if not carefully monitored. Therefore, in this embodiment, the introduction of the circulating filter assembly 800 effectively solves this problem. The circulating filter assembly 800 draws in used water or other water sources through its suction end, filters it, and then returns the clean water to the second water chamber 220, achieving water recycling. This design not only significantly reduces water waste but also improves the environmental performance of the cleaning machine. By recycling water resources, users can perform cleaning operations more efficiently without frequent water source changes, improving the convenience and economy of the cleaning machine.

[0111] Furthermore, since the sanitary quality of recycled water is generally low, in this embodiment, a sterilization component 900 is located in the upper cavity, and its water channel is connected in series with the water outlet component 400 to sterilize the water emanating from the water outlet component 400. The use of the sterilization component 900 ensures that bacteria and viruses are thoroughly killed before the water is reused, guaranteeing the sanitary safety of the effluent. This improves the cleaning effect of the cleaning machine and also protects the user's health.

[0112] In one embodiment, the circulating filtration assembly 800 includes a second pipeline 810, a second pump body 820, and a filter element 830. The second pipeline 810 has a suction end and a connecting end. The second pump body 820 is disposed on the second pipeline 810 and located between the connecting end and the suction end. The filter element 830 is disposed on the second pipeline 810 between the connecting end and the second pump body 820. The connecting end communicates with the second water chamber 220. The circulating filtration assembly 800 is used to draw in used water or other water sources through the suction end, filter it, and then deliver it to the second water chamber 220. It is understood that when the second pump body 820 is running, the motor or other power source of the second pump body 820 drives the impeller inside the pump body to rotate. The rotation of the impeller creates a negative pressure at the suction end to draw in used water or other water sources into the pump body. After the water passes through the high-speed rotation of the impeller, its kinetic and pressure energy increases, and it is pumped into the second water chamber 220. Furthermore, the water drawn in by the second pump body 820 can also flow through the filter element 830 for filtration. The types of filter element 830 include, but are not limited to, activated carbon filters, reverse osmosis membranes, ceramic filters, etc. Filter element 830 can remove impurities, pollutants, microorganisms, bacteria and viruses from the water to purify the water, so that the water flowing into the second water chamber 220 is clean water.

[0113] It is understood that the circulating filter assembly 800 can be integrated into the water storage container 200 or located outside the water storage container 200, as long as the connection end of the circulating filter assembly 800 is connected to the second water chamber 220. The circulating filter assembly 800 has water absorption and filtration functions. It draws in water through its absorption end and filters it, ensuring that the water flowing into the second water chamber 220 is clean water. The water drawn in through the absorption end can be water from washing machines, such as bath water or water after cleaning equipment; of course, the absorption end can also draw in water from other sources, such as water from other equipment use or rainwater. In other words, the source of the water drawn in through the absorption end of the circulating filter assembly 800 is not limited. The absorption end of the circulating filter assembly 800 can be located below the water storage container 200, such as on the floor of an indoor bathroom, or in a separate water storage tank used to store water from washing machines or other water sources. The cleaning machine in this solution, by setting up a circulating filter component 800, can recycle the water after use, reducing water waste, improving water utilization, and having water-saving and energy-saving functions.

[0114] It should be noted that after the second pump body 820 and the filter element 830 are installed, the filter element (830) is located at the lower part of the first pump body (420); the second pump body (820) is located at the lower part of the filter element (830).

[0115] In this embodiment, as shown in Figure 1, the filter element 830 is installed on the column 121 at the position corresponding to the lower cavity. It is understood that because the filter element 830 is relatively large compared to other components, and one end of the filter element 830 can be provided with a mounting hole, the filter element 830 can be directly installed on the column 121 using a fixing member, achieving good fixation without the need for additional mounting brackets. This design not only simplifies the installation process but also reduces the use of mounting brackets, lowering costs. By directly installing the filter element 830 on the column 121, the stability of the filter element 830 during operation can be ensured, preventing loosening or detachment due to vibration or water flow impact, thus improving the installation stability of the filter element 830. Simultaneously, the installation position on the column 121 can absorb and buffer the vibration generated by the filter element 830 during operation, reducing the impact of vibration on other components and improving the overall operational stability of the cleaning machine.

[0116] In this embodiment, as shown in Figure 1, a second motor bracket 160 is provided on the column 121 corresponding to the lower cavity. The two ends of the second motor bracket 160 are respectively connected to the lower parts of the two columns 121, and the second pump body 820 is mounted on the second motor bracket 160. It can be understood that the second motor bracket 160 includes a mounting plate and a mounting platform. The two ends of the mounting plate are respectively connected to the two columns 121, and the mounting plate has multiple mounting holes. The mounting platform also has multiple mounting holes. The mounting plate and mounting platform are connected to each other through mounting holes and fasteners to form the second motor bracket 160. The mounting platform has a long mounting groove for the second pump body 820 to be mounted on. Combined with the mounting structure of other pipelines, a stable whole can be formed. This connection method does not excessively restrict the movement of the pump body, achieving a shock absorption effect, reducing the transmission of vibrations generated by the pump body during operation to other components, and improving the overall operational stability of the cleaning machine.

[0117] In addition, the second pump body 820 is located behind the second motor bracket 160, and the axial direction of the second pump body 820 extends horizontally. In this way, several water inlets of the second pump body 820 can face the horizontal direction. Compared with all of them facing the vertical direction, facing the horizontal direction is more conducive to the pipeline layout inside the cleaning machine and makes better use of the horizontal space.

[0118] In this embodiment, a third inlet valve 850 is also provided between the filter element 830 and the second water chamber 220. The third inlet valve 850 is used to control the flow or cut-off of the water path between the filter element 830 and the second water chamber 220 to enhance the controllability of the entire system.

[0119] In one embodiment, the circulating filtration assembly 800 further includes a water collector 840 located at the water intake end. The water collector 840 is funnel-shaped and equipped with a filter screen for filtering out solid debris during water intake. It is understood that the water intake end uses the water collector 840 for water intake. The funnel-shaped design of the water collector 840 effectively collects and guides water flow, ensuring that the intake end can efficiently draw in used water or other water sources. The funnel-shaped design increases the water collection area, making it easier for water to be drawn in and improving suction efficiency. The water collector 840 contains a filter screen for filtering out solid debris such as hair, paper scraps, and sediment during water intake. The filter screen design effectively prevents these debris from entering the second pipe 810 and the second pump body 820, avoiding blockage and damage, and ensuring the normal operation of the circulating filtration assembly 800. Thus, the funnel-shaped design of the water collector 840 and the preliminary filtration function of the filter screen not only improve water absorption efficiency and prevent clogging, but also protect the pump body, improve water quality, and facilitate maintenance, thereby comprehensively enhancing the performance of the cleaning machine and the user experience.

[0120] In one embodiment, as shown in FIG1, the cleaning machine further includes a drainage assembly 600, which is disposed in the lower cavity. The drainage assembly 600 includes a second drain pipe 630 and a second drain valve 640. One end of the second drain pipe 630 is connected to the second pipeline 810 between the second pump body 820 and the filter element 830. The other end of the second drain pipe 630 is disposed on one side or one end of the bracket to drain water to the outside of the bracket. The second drain valve 640 is disposed on the second drain pipe 630 and is used to drain the circulating filter assembly 800 when it is opened.

[0121] Understandably, a drainage component 600 also needs to be designed for the circulating filter component 800 to ensure that the water in the circulating filter component 800 can be completely drained when the cleaning machine is not in use or requires maintenance, preventing water from stagnating in the pipes and water chamber, which could lead to bacterial growth and pipe corrosion. Through the cooperation of the second pump body 820 and the second drain valve 640, the water in the circulating filter component 800 can be quickly drained when needed, ensuring the system's hygiene, safety, and long-term stable operation. The second drain valve 640 allows for precise control of the drainage process, ensuring that water in the system can be quickly and effectively discharged when drainage is needed, and can be closed when drainage is not needed, preventing accidental water loss. This design not only improves the convenience of maintenance and the reliability of the system, but also saves water resources, meets environmental protection and energy-saving requirements, and enhances the performance of the cleaning machine and the user experience.

[0122] In this embodiment, the second drain pipe 630 is disposed near the column 121 which is relatively far from the circulating filter assembly 800, and extends along the height direction of the housing assembly 100 to the lower end of the housing assembly 100. The second drain valve 640 is disposed near the lower end of the housing assembly 100. Its beneficial effects are similar to those of the arrangement of the first drain pipe 610 and the first drain valve 620, and will not be described again here.

[0123] In this embodiment, as shown in FIG1, the first drain pipe 610 and the second drain pipe 630 are arranged adjacent to each other on the column 121. In this way, the drain outlets of the two drain pipes are arranged close to each other, making the internal layout of the cleaning machine more reasonable and reducing the complexity of the internal structure or internal pipeline.

[0124] In one embodiment, as shown in FIG1, the cleaning machine further includes a sterilization component 900 and an electrical control box 700. The sterilization component 900 is disposed in the upper cavity and is used to sterilize the water output from the water output component 400. The electrical control box 700 is disposed in the upper cavity and is used to control the sterilization component 900 to perform sterilization. The sterilization component 900 and the electrical control box 700 are respectively mounted on the two columns 121 and are arranged at intervals relative to each other.

[0125] In this embodiment, a main control board is installed and fixed inside the electrical control box 700, and the main control board carries the control circuit of the entire machine. Several sensors and signal lines are installed inside the cleaning machine, with the signal lines connecting the terminals of each electrical component to the terminals of the main control board. The main control board controls the start and stop of each electrical component and the on / off state of the solenoid valves, allowing the liquid to flow in a preset direction inside the cleaning machine. In this embodiment, the electrical control box 700 can control the operation of various solenoid valves, which may include: a mixing valve 300, a first inlet valve 510, a second inlet valve 520, a third inlet valve 850, a first drain valve 620, a second drain valve 640, and an outlet valve 430. This enables mode switching, improves user convenience, enhances the controllability of the cleaning machine, and increases its applicability.

[0126] In this embodiment, the staggered positioning of the control box 700 and the water outlet assembly 400 effectively avoids mutual interference between them. The control box 700 houses the main control board, which contains the control circuitry for the entire device, including various sensors and signal lines. If the control box 700 and the water outlet assembly 400 are too close, water vapor and droplets may splash onto the control box 700, affecting the normal operation of the circuitry and potentially causing short circuits and damage. By staggering the control box 700 and the water outlet assembly 400, the control box 700 is kept away from the water source, reducing the potential threat of water vapor and droplets to the circuitry and improving the reliability and safety of the equipment.

[0127] In this embodiment, as shown in Figures 1 and 6, a third mounting bracket 150 is provided on the column 121, and the third mounting bracket 150 is provided with a slot 151, into which the electrical control box 700 is inserted. It is understood that the slot 151 design makes the installation and removal of the electrical control box 700 very convenient. Technicians only need to align the electrical control box 700 with the slot 151 and gently insert it to complete the installation, without the need for complicated fixing tools or steps, significantly shortening the installation time. At the same time, this design also simplifies the removal of the electrical control box 700, facilitating maintenance and replacement. Furthermore, the slot 151 design ensures that the electrical control box 700 is firmly fixed to the third mounting bracket 150 after installation, preventing loosening or detachment due to vibration or external force, thus improving the installation stability of the electrical control box 700.

[0128] In this embodiment, the electrical control box 700 has a wiring port on the side facing away from the first column 121. The wiring port's location on the rear side of the electrical control box 700 ensures that signal and power cables are routed from the rear, avoiding interference with other components at the front, reducing wiring complexity, making the cable layout neater and more aesthetically pleasing, and improving the overall appearance of the equipment. Furthermore, the cables routed from the rear can be routed along the edge of the column 121 or the housing assembly 100, allowing technicians to easily connect and disconnect signal and power cables from the rear, facilitating installation and maintenance.

[0129] In one embodiment, as shown in Figure 1, the sterilization component 900 includes a shell tube 910 and a UV lamp. The shell tube 910 has a mounting cavity, and the UV lamp is disposed within the mounting cavity, forming a water channel between it and the inner wall of the shell tube 910. The water channel is connected in series with the water outlet component 400. It is understood that the mounting cavity inside the shell tube 910 is used to install the UV lamp. The design of the mounting cavity ensures the stable installation of the UV lamp, preventing loosening or detachment due to vibration or water flow impact. The water channel formed between the inner wall of the shell tube 910 and the UV lamp allows water to fully contact the ultraviolet light emitted by the UV lamp when flowing through this channel, achieving a highly efficient sterilization effect. The design of the water channel ensures smooth and uniform water flow, improving the sterilization coverage. The ultraviolet light emitted by the UV lamp has a strong sterilization ability, effectively killing bacteria, viruses, and other microorganisms in the water, ensuring the hygiene and safety of the effluent.

[0130] It is important to note that not only the water drawn in through the suction end needs to be sterilized, but the water source obtained from the municipal water supply system also needs to be sterilized. Therefore, the sterilization component 900 is connected in series with the water outlet component 400, meaning that all water to be discharged will pass through the sterilization component 900 before being discharged, thus ensuring a higher level of hygiene for the discharged water source.

[0131] In one embodiment, the cleaning machine further includes a socket mounting bracket disposed in the upper cavity, the sterilization component (900) is inserted into the socket mounting bracket, and the sterilization component (900) extends along the height direction of the housing assembly (100).

[0132] In one embodiment, a mounting bracket for the insertion hole is provided on the column 121 at a position corresponding to the upper cavity. Specifically, the mounting bracket may include a fifth mounting bracket 171 and a sixth mounting bracket 172, both of which have insertion holes. The shell tube 910 has a first end and a second end arranged opposite to each other. The first end of the shell tube 910 is inserted into the insertion hole of the fifth mounting bracket 171, and the second end of the shell tube 910 is inserted into the insertion hole of the sixth mounting bracket 172. It is understood that the fifth mounting bracket 171 and the sixth mounting bracket 172 are spaced apart along the height direction of the column 121. The sterilization component 900 can be directly inserted between the fifth mounting bracket 171 and the sixth mounting bracket 172. The insertion hole design simplifies the disassembly of the shell tube 910, facilitating maintenance and replacement. When it is necessary to inspect or replace the shell tube 910 or the UV lamp, simply pull the shell tube 910 out of the insertion hole; no other components need to be disassembled.

[0133] In one embodiment, the fifth mounting bracket 171 and the sixth mounting bracket 172 can be L-shaped connecting plates 1422, one side of which is connected to the column 121, and the other side is provided with a socket. The two are arranged at intervals to form the installation space for the sterilization component 900. In addition, since the water outlet component 400 is located in the upper cavity, the sterilization component 900 is also located in the upper cavity, so it can be directly connected in series with the water outlet component 400, reducing the complexity of the structure.

[0134] In this embodiment, for the lower cavity separated by the first mounting bracket 123, the first mounting bracket 123, the first motor bracket 130, and the second motor bracket 160 are arranged sequentially from top to bottom. The water storage container 200 is disposed on the first mounting bracket 123, the first pump body 420 is disposed on the first motor bracket 130, the second pump body 820 is disposed on the second motor bracket 160, and the filter element 830 is disposed on the housing assembly 100 at the position corresponding to the first motor bracket 130 and the second motor bracket 160.

[0135] In one embodiment, as shown in Figures 3 and 6, the outer wall of the column 121 is provided with at least one hook 180, and the cleaning machine further includes a storage basket 181, which is hooked onto the hook 180. It is understood that the storage basket 181 can be used to store items needed during the cleaning process, such as soap, detergent, brushes, sponges, etc., thus improving ease of use.

[0136] In this embodiment, the storage basket 181 is provided with a water filter hole on at least its bottom wall; it is understood that during the cleaning process, wet cleaning tools or cleaning agent bottles may be placed in the storage basket 181, and the moisture on these items can flow back to the bottom of the cleaning machine or the ground through the water filter hole, avoiding the slipperiness and inconvenience caused by water accumulation in the storage basket 181.

[0137] In one embodiment, as shown in Figures 3 and 7, the cover 191 is disposed over the receiving cavity 113. In one embodiment, the cover 191 includes an upper cover plate 1911, a control panel 1912, and a lower cover plate 1913 connected in sequence. The upper cover plate 1911 covers the upper cavity, the lower cover plate 1913 covers the lower cavity and is hinged to the column 121, and the control panel 1912 covers the position of the upper cover plate 1911 and the lower cover plate 1913 housing assembly 100 corresponding to the water storage container 200.

[0138] In this embodiment, as shown in FIG7, the lower cover plate 1913 has a first side and a second side disposed opposite to each other, wherein the first side is hinged to the column 121, so that the lower cover plate 1913 can be opened and closed around the connection between the first side and the column 121. In one embodiment, the second side of the lower cover plate 1913 is provided with a first magnet 1914, and a second magnet 1915 is provided at the corresponding position on the column 121, for making the lower cover plate 1913 fit against the column 121 when the lower cover plate 1913 is in the closed state.

[0139] In all the above embodiments, the material of the housing assembly 100 can be plastic or stainless steel. Stainless steel can be aluminum or sheet metal; no limitation is made here. Since the housing assembly 100 is the supporting structure of the entire cleaning machine, a certain level of support capacity needs to be considered. In one embodiment, the housing assembly 100 is made of sheet metal, which ensures that the housing assembly 100 has high strength and durability, effectively protecting the internal components from the influence of the external environment.

[0140] The above description is merely an exemplary embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the technical concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A cleaning machine, wherein, The cleaning machine comprises: a housing assembly for being mounted on a wall surface, the housing assembly having an upper end, a lower end and a receiving cavity defined between the upper end and the lower end; a water storage container mounted in the receiving cavity, the water storage container having a first water cavity for being in communication with an external hot water source and a second water cavity for being in communication with an external normal temperature water source; a water mixing valve in communication with the first water cavity and the second water cavity respectively; and a water outlet assembly having a water inlet end and a water outlet end, the water inlet end of the water outlet assembly being in communication with the water mixing valve, and the water outlet end of the water outlet assembly being arranged at the upper end of the housing assembly and being in communication with a water using end.

2. The cleaning machine of claim 1, wherein, The height dimension of the housing assembly is greater than the length dimension and the width dimension of the housing assembly.

3. The cleaning machine of claim 1 or 2, wherein, The housing assembly comprises a face cover and two vertical columns, the two vertical columns being arranged in a vertical direction and being spaced apart in a horizontal direction, and the two vertical columns and the face cover enclosing the receiving cavity, the opposite direction of the two vertical columns constituting the width direction of the housing assembly, and the extension direction of the vertical columns constituting the height direction of the housing assembly.

4. The cleaning machine of claim 3, wherein, The cleaning machine further comprises a first mounting bracket, two ends of the first mounting bracket being connected to the middle portions of the two vertical columns respectively, and the receiving cavity being divided into an upper cavity and a lower cavity by the first mounting bracket, the water storage container being mounted on the first mounting bracket and being located at the middle portions of the vertical columns.

5. The cleaning machine of claim 4, wherein, The water outlet assembly is arranged in the receiving cavity and extends from the lower cavity and the upper cavity, and the water outlet end of the water outlet assembly penetrates out of the receiving cavity; the water outlet assembly sprays the water source in the water storage container outwards through the water outlet end.

6. The cleaning machine of claim 4 or 5, wherein, The water outlet assembly comprises a first pipeline and a first pump body, one end of the first pipeline being the water inlet end of the water outlet assembly, the other end of the first pipeline being the water outlet end of the water outlet assembly, and the first pump body being arranged on the first pipeline; The first pump body is arranged in the lower cavity and below the water storage container.

7. The cleaning machine of claim 6, wherein, The first pipeline has a first portion and a second portion, the first portion of the first pipeline being arranged in the upper cavity and being arranged in the height direction of the housing assembly, and the second portion of the first pipeline being arranged in the lower cavity and being arranged close to the water storage container.

8. The cleaning machine of claim 6 or 7, wherein, The side of the vertical column facing the lower cavity is provided with a first motor bracket, the first pump body is suspended and mounted on the first motor bracket, and the axial direction of the first pump body extends in a horizontal direction.

9. The cleaning machine of claim 8, wherein, The first motor bracket comprises a mounting member and an elastic member, the mounting member being connected to the vertical column, and the elastic member being connected to the mounting member; The first pump body is suspended and mounted on the elastic member.

10. The cleaning machine of any one of claims 4 to 9, wherein, The cleaning machine further comprises a water inlet control assembly for controlling the water inlet of the first water cavity and / or the second water cavity, the water inlet control assembly being arranged in the upper cavity and being arranged close to the top of the first water cavity and / or the second water cavity.

11. The cleaning machine of claim 10, wherein, The water inlet control assembly comprises a first water inlet valve and a second water inlet valve, the first water cavity is communicated with an external hot water source through the first water inlet valve, and the second water cavity is communicated with an external normal temperature water source through the second water inlet valve. Two of the columns are also provided with a second mounting bracket for mounting the first water inlet valve and the second water inlet valve, the second mounting bracket extends along the width direction, and the second mounting bracket is located in the upper cavity and above the water storage container.

12. The cleaning machine of any one of claims 6 to 11, wherein, The washing machine further comprises a drainage assembly, which is arranged in the lower cavity and below the water storage container, and is used to drain the water storage container and the water outlet assembly when opened.

13. The cleaning machine of claim 12, wherein, The drainage assembly comprises a first drainage pipe and a first drainage valve, the first drainage pipe is communicated with the first pipeline, and the first drainage valve is arranged on the first drainage pipe; The first drainage pipe is arranged close to the column and extends to the lower end of the shell assembly along the height direction of the shell assembly, and the first drainage valve is arranged close to the lower end of the shell assembly.

14. The cleaning machine of any one of claims 6 to 13, wherein, The washing machine further comprises a circulating filtration assembly, which is arranged in the lower cavity and below the water storage container, and is used to suck and filter water after washing or other water sources and then deliver the filtered water to the second water cavity.

15. The cleaning machine of claim 14, wherein, The circulating filtration assembly comprises a second pipeline, a second pump body and a filter, the second pipeline has a water suction end and a connection end, the second pump body and the filter are arranged on the second pipeline; The second pump body and the filter are mounted on the column at a position corresponding to the lower cavity, the filter is arranged below the first pump body, and the second pump body is arranged below the filter.

16. The cleaning machine of claim 15, wherein, The washing machine further comprises a second motor bracket, two ends of the second motor bracket are respectively connected to the lower parts of the two columns, the second pump body is mounted on the second motor bracket, and the second pump body extends along the horizontal direction in the axial direction.

17. The cleaning machine of claim 15 or 16, wherein, The circulating filtration assembly further comprises a water collector, and the water collector is arranged on the water suction end; The water collector is in the shape of a funnel, the water collector is provided with a filter screen, and the filter screen is used to filter out solid impurities when the water collector sucks water.

18. The cleaning machine of any one of claims 15 to 17, wherein, The washing machine further comprises a drainage assembly, which comprises a second drainage pipe and a second drainage valve, the second drainage pipe is communicated with the second pipeline between the second pump body and the filter, and the second drainage valve is arranged on the second drainage pipe; The second drainage pipe is arranged close to the column away from the circulating filtration assembly and extends to the lower end of the shell assembly along the height direction of the shell assembly, the second drainage valve is arranged close to the lower end of the shell assembly.

19. The cleaning machine of claim 18, wherein, The drainage assembly further comprises a first drainage pipe and a first drainage valve, the first drainage pipe is communicated with the second pipeline, and the first drainage valve is arranged on the first drainage pipe; The first drainage pipe and the second drainage pipe are arranged adjacent to each other in the accommodating cavity.

20. The cleaning machine of any one of claims 4 to 19, wherein, The washing machine further comprises: A sterilization assembly is arranged in the upper cavity and is used to sterilize the water outlet of the water outlet assembly. An electric control box is arranged in the upper cavity for controlling the sterilization assembly to perform sterilization. The sterilization assembly and the electric control box are respectively arranged on the two upright columns and are oppositely spaced.

21. The cleaning machine of claim 20, wherein, The cleaning machine further comprises a jack mounting support arranged in the upper cavity, the sterilization assembly is inserted into the jack mounting support, and the sterilization assembly is arranged in the height direction of the shell assembly.

22. The cleaning machine of any one of claims 1 to 21, wherein, The water outlet assembly comprises a first pipeline and a first pump body; the cleaning machine further comprises a circulating filtration assembly comprising a second pipeline, a second pump body and a filter element. The shell assembly has a first mounting support, a first motor support and a second motor support arranged in sequence from top to bottom, the water storage container is arranged in the first mounting support, the first pump body is arranged in the motor support, the second pump body is arranged in the second motor support, and the filter element is arranged at a position between the motor support and the second motor support of the shell assembly.

23. The cleaning machine of any one of claims 4 to 21, wherein, The face cover comprises an upper cover plate, a control panel and a lower cover plate connected in sequence, the upper cover plate is arranged in the upper cavity, the lower cover plate is arranged in the lower cavity and is hingedly connected to the upright column, and the control panel is arranged in the upper cover plate and the lower cover plate at a position corresponding to the water storage container of the shell assembly.