Multifunctional surface cleaning system with multiple cleaning assemblies

By designing a multi-functional surface cleaning system with detachable power source components and a clean water tank, the problem of non-interchangeability of existing equipment parts is solved, realizing the modular design of the multi-functional cleaning device and improving user experience and ease of operation.

CN121533652APending Publication Date: 2026-02-17JOYOUNG CO LTD
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Patent Information

Application Number
CN202511866441.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2022-11-25
Publication Date
2026-02-17

AI Technical Summary

Technical Problem

The lack of universality and interchangeability of accessories for existing surface cleaning equipment means that users need to purchase multiple devices, increasing costs and space requirements, while also making operation inconvenient, especially when cleaning different surfaces.

Method used

Design a multifunctional surface cleaning system comprising a detachable power source assembly, a clean water tank, and a waste container. It can achieve a variety of cleaning functions through different combinations. The accessories are universal and interchangeable, and it supports operations such as vacuuming, dirt suction, water spraying, and automatic cleaning.

Benefits of technology

The modular design of the multi-functional cleaning device reduces user purchase costs, decreases operational complexity, improves user experience, supports both wet and dry use, and features automatic accessory cleaning, saving users physical labor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The multifunctional surface cleaning system at least comprises a first cleaning assembly, a second cleaning assembly, a water purifying tank, a power source assembly and a sewage containing barrel, the water purifying tank, the power source assembly and the sewage containing barrel are detachably fixed, and the water purifying tank, the power source assembly and the sewage containing barrel are detachably fixed to the first cleaning assembly to form a first cleaning device; the water purifying tank, the power source assembly and the dirt containing barrel are detachably fixed on the second cleaning assembly to form a second cleaning device; the first cleaning assembly comprises a base and a detachably-connected cleaning head, a shell is buckled on the base, a first water supply pipeline and a first dirt collecting channel are arranged in the shell, the dirt containing barrel is provided with an air port and a dirt suction pipe, the air port is located above a pipe opening of the dirt suction pipe, the cleaning head is provided with a dirt suction opening, and the dirt suction opening is located above the pipe opening of the dirt suction pipe. The first dirt collecting channel is communicated with the dirt containing barrel and the dirt suction opening, so that multiple cleaning functions can be achieved, the dirt containing barrel, the power source assembly and the water purification tank have universality and interchangeability, and the purchase cost of a user can be reduced.
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Description

Technical Field

[0001] This application relates to the field of surface cleaning apparatus technology, and in particular to a surface cleaning system. Background Technology

[0002] With the fast pace of modern life, surface cleaning equipment is widely used in people's lives. To meet customers' cleaning needs for various surfaces, surface cleaning equipment is further subdivided into different functional surface cleaning machines, such as floor scrubbers and floor cleaners that use water or cleaning solutions to clean floors (including cement floors, wooden floors, and tiles); dry vacuum cleaners for vacuuming and removing large particles of dirt; and fabric cleaning machines for cleaning sofas, mattresses, carpets, etc. Currently, the main components of existing surface cleaning machines with different functions are not universally compatible or interchangeable. This means that users need to purchase a complete set of products for each surface cleaning machine, resulting in multiple products taking up considerable space, causing waste, and increasing the user's purchase cost.

[0003] Therefore, multi-functional vacuum cleaners that can also be used for floor cleaning have appeared on the market. For example, patent application number 202011097924 X discloses a cleaning device including a floor brush, a body, and a recycling bin assembly on the floor brush or body; a power source assembly, which is detachably connected to the body and provides suction power so that airflow can at least pass through the interior of the recycling bin assembly. The technical solution provided by this invention integrates the power unit and battery into a power source assembly, which can be detached from the body. This allows the power source assembly to have a first usage mode of being installed on the cleaning device, and a second usage mode of being removed from the cleaning device and used as a standalone suction device. This improves the flexibility of the cleaning device, reduces maintenance costs, and provides a better user experience. However, this cleaning equipment only provides a shared power source component and various external accessories such as a dustbin, mite remover connector, and nozzle. These accessories are connected to the power source, but all require manual operation of the mite remover connector and nozzle to move and remove mites and vacuum, making operation still very inconvenient. For cleaning fabrics such as sofas and mattresses, a longer connector is required, as both water spraying and vacuuming are needed. Therefore, it is still necessary to drag the machine body with the recycling bin and cleaning solution tank to the item being cleaned, and manually operate the cleaning head for cleaning, which is very inconvenient. Therefore, it still cannot meet people's requirements. In addition, a large space is still needed in the bathroom to store these machines or accessories, making them inconvenient to use. Furthermore, cleaning accessories such as the recycling bin, floor brush, and dust cup after use is also a significant problem.

[0004] Furthermore, patent application number 201680065912 4 discloses an extractor (20) comprising: a housing (22); a suction source (29) disposed within the housing (22); and a suction nozzle (34) communicating with the suction source (29) and movable relative to the housing (22). The extractor (20) further includes a recovery tank (26) carried by the housing (22), and the suction source (29) is in communication with the recovery tank (26) for suctioning fluid through the suction nozzle (34) and storing the fluid extracted from the recovery tank in the recovery tank (26). A cleaning chamber (68) disposed on the housing (22) is used to accommodate a portion of the suction nozzle (34), and the cleaning chamber (68) is configured to selectively receive fluid along a fluid flow path (70) communicating with the cleaning chamber (68). Furthermore, this extractor is equipped with multiple auxiliary tools and a cleaning chamber. The auxiliary tool supply box and the recovery box are connected. Under the action of the suction source, water is sprayed to clean and the cleaned dirt is collected into the recovery box. The auxiliary tools can also be placed in the cleaning chamber. The supply box is not connected to the auxiliary tools, but is connected to the nozzle so that the nozzle sprays liquid to clean the auxiliary tools. This patent solves the problem of self-cleaning of auxiliary tools. However, this technical solution is only suitable for cleaning fabrics and does not provide a floor brush for cleaning floors or a machine body connected to the floor brush. Therefore, it still cannot solve the cleaning problems of different types of floors or fabrics. Summary of the Invention

[0005] This invention overcomes the above-mentioned technical problems and provides a multifunctional surface cleaning system with multiple cleaning components. The main accessories such as the power source component, the waste tank, and the clean water tank have a certain degree of versatility and interchangeability. They can be combined with different cleaning components to complete different cleaning functions, which can reduce the user's purchase cost and reduce the space occupied by the accessories.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a multifunctional surface cleaning system with multiple cleaning components, comprising at least a first cleaning component and a second cleaning component, as well as a detachably fixed water tank, a power source component, and a waste container, wherein the water tank, power source component, and waste container are detachably fixed to the first cleaning component to form a first cleaning device; the water tank, power source component, and waste container are detachably fixed to the second cleaning component to form a second cleaning device; characterized in that the first cleaning component includes a base to which a housing is fastened and a component detachably connected to the housing. The cleaning head has a first water supply pipe and a first dirt collection channel inside the housing. The dirt container is provided with a vent connected to the power source component and a suction pipe connected to one end of the first dirt collection channel. The vent is located above the opening of the suction pipe. The cleaning head is provided with a suction port connected to the other end of the first dirt collection channel. Under the action of the power source component, the gas in the dirt container is sucked into the power source component through the vent, and a negative pressure is generated in the dirt container. The dirt is collected into the dirt container through the suction port on the cleaning head, the first dirt collection channel, and the suction pipe.

[0007] Furthermore, the cleaning head is also equipped with a cleaning brush and a water spray nozzle. The first cleaning component also includes a suction hose and a water supply hose sleeved inside the suction hose. One end of the suction hose is connected to the suction port, and the other end is connected to the sludge collection bucket on the housing through the first dirt collection channel and the suction pipe. One end of the water supply hose is connected to the water spray nozzle, and the other end is connected to the clean water tank on the housing through the first water supply pipeline, so as to supply water to the surface to be cleaned and clean the surface to be cleaned.

[0008] Furthermore, the cleaning head is a floor brush, and the cleaning function component also includes a body hinged to the floor brush. The floor brush includes a body and a cleaning roller. The second dirt collection channel is fixed in the body and communicates with the suction port. The front end of the body is provided with a roller brush cavity, and the rear end is provided with a transfer cavity. The cleaning roller is located at the front end of the roller brush cavity, and the suction port is located in the roller brush cavity. The power source system and the dirt container are removed from the housing and fixed to the upper end of the body. The other end extends upward from the transfer cavity at the rear end of the body into the body and communicates with the suction pipe. Under the action of the power source system, the dirt on the surface to be cleaned enters the container through the suction port on the cleaning head, the second dirt collection channel, and the suction pipe.

[0009] Furthermore, the main body is also equipped with a scraper and a water spray nozzle. The second water supply pipe is fixed inside the main body and connected to the water spray nozzle. The scraper is located above the suction port, and the water spray nozzle is located above the scraper. The clean water tank is removed from the housing and installed on the machine body. The other end of the second water supply pipe extends upward from the adapter cavity into the machine body and connects to the clean water tank, which facilitates the cleaning roller to clean the surface to be cleaned. At the same time, under the action of the power source component, the cleaned dirt is sucked into the dirt collection bucket.

[0010] Furthermore, a first adapter is provided on the side wall of the housing. The suction port of the first dirt collection channel and the water supply port of the first water supply pipe are both located in the first adapter. The suction hose is connected to the first adapter. The suction port and the suction hose are connected. The water supply port is connected to and communicates with the water supply hose, which facilitates the cleaning brush to clean the surface of the fabric. At the same time, under the action of the power source system, dirt enters the dirt container through the suction port, the second dirt collection channel, the first dirt collection channel, and the suction pipe.

[0011] Furthermore, the housing is also provided with an exhaust channel connected to the power source component. The exhaust outlet of the exhaust channel is provided with a second adapter. The cloth cleaning brush with a suction hose is detached from the first adapter and inserted into the second adapter, so that the suction hose is connected to the exhaust channel, and the air inside the housing is discharged from the suction port. The suction port is aimed at the cleaned object surface to dry it.

[0012] Furthermore, the suction pipe is externally placed in the sludge container, the sludge container is provided with a suction through hole, the shell and / or the sludge container is provided with a limiting groove, the suction pipe is detachably located in the limiting groove, and the suction pipe is connected to the sludge container through the suction through hole.

[0013] Furthermore, the top wall of the housing is provided with a positioning cavity, and the power source assembly is detachably installed in the positioning cavity. The side wall of the positioning cavity is also provided with wiring terminals for supplying power to the components inside the housing and electrical connectors for charging the power source assembly.

[0014] Furthermore, the housing is also provided with a third adapter, which is connected to the clean water tank through the first water supply pipe. The suction hose and cleaning brush are detached from the first adapter and connected to the third adapter to start the automatic cleaning program. The clean water tank provides cleaning fluid to automatically clean the suction hose, suction port, first dirt collection channel, suction pipe, and dirt container.

[0015] Furthermore, the base is also provided with a cleaning seat that can be pulled forward from the base. The second cleaning component is placed on the cleaning seat, and the clean water tank, power source component and sludge collection bucket are placed on the housing. When the automatic cleaning program is started, the clean water tank provides cleaning fluid to automatically clean the cleaning roller, suction pipe and second dirt collection channel.

[0016] After adopting the above technical solution, the present invention has the following advantages: By setting a first cleaning component and a second cleaning component, the power source component, the clean water tank, and the waste collection bucket are respectively assembled with the first cleaning component or the second cleaning component to form at least two cleaning devices. The first cleaning component includes a base with a housing fastened thereon and a cleaning head detachably connected to the housing. The housing is provided with a first water supply pipe and a first dirt collection channel. The waste collection bucket is provided with a vent communicating with the power source component and a suction pipe communicating with one end of the first dirt collection channel. The vent is located above the opening of the suction pipe. The cleaning head of the first cleaning component is provided with a suction port communicating with the other end of the first dirt collection channel. By installing the power source component, the waste collection bucket, and the clean water tank on the housing, the first cleaning component is assembled into a first cleaning device. Under the action of the power source component, the gas in the waste collection bucket is sucked into the power source component through the vent, creating a negative pressure in the waste collection bucket. The dirt is drawn through the suction port on the cleaning head and the first dirt collection channel. The system collects dirt and grime from the suction pipe into the sludge bin, completing the vacuuming or sludge removal function. Different cleaning heads can be replaced on the first cleaning component to achieve functions such as vacuuming or mite removal, sucking up dirt, dust, mites, etc., attached to items or floors into the sludge bin. When the water tank receives a command, it supplies water to the cleaning head of the first cleaning component or the surface to be cleaned through the first water supply module, cleaning dirty surfaces such as sofas, mattresses, and other fabric items, and sucking the cleaned dirt into the sludge bin. When the power source component and sludge bin are detached from the housing and directly installed on the second cleaning component, a second cleaning device independent of the housing can be formed for vacuuming floors, under beds, etc. Installing the water tank on this cleaning component allows it to clean floors, etc. Users only need to purchase one multi-functional surface cleaning system, using a minimal number of components to create various surface cleaning devices, saving on purchase costs. Because the vent is located above the pipe opening, the sewage in the wastewater container will not be directly sucked out by the vent before it reaches the pipe opening. The water tank of this invention is detachably mounted on the housing, and a water filling device is provided on the housing for convenient water replenishment by the user.The first cleaning component is detachably mounted on the housing and directly connected to the clean water tank. This allows for automatic cleaning of the cleaning head or cleaning of other heavily soiled parts, reducing the frequency of contact between the customer and dirty components. Furthermore, if a drain port is provided on the housing, the waste in the waste container can be automatically discharged. After discharge, the first cleaning component with the cleaning head can be connected to the clean water tank for automatic cleaning. Customers can then empty the waste into the sewer without disassembling the waste container and clean it themselves under running tap water, reducing physical labor. This multi-functional surface cleaning system, through its multi-form combination, not only achieves both wet and dry cleaning but also features a modular design that makes assembly easier, operation simpler, and allows for more cleaning functions. It is also more intelligent and user-friendly, providing a better customer experience. Attached Figure Description

[0017] Figure 1 This is an exploded view of the first cleaning device of the present invention without a connected cleaning head;

[0018] Figure 2 This is a top partial sectional view of the first cleaning device of the present invention without a connected cleaning head;

[0019] Figure 3 This is a schematic diagram of the first cleaning component of the present invention having a cloth cleaning brush as its cleaning head;

[0020] Figure 4 This is a cross-sectional view of the first cleaning device of the present invention without a connected cleaning head;

[0021] Figure 5 yes Figure 1 A magnified view of a portion of the central positioning cavity;

[0022] Figure 6 This is an exploded view of the second cleaning device, which consists of a waste tank, a power source component, and a clean water tank installed on the second cleaning component.

[0023] Figure 7 yes Figure 6 Enlarged cross-sectional view of the ground brush in the image;

[0024] Figure 8 This is a schematic diagram of the assembled second cleaning device placed on the cleaning seat for automatic cleaning;

[0025] Figure 9 A schematic diagram of the power source assembly in Embodiment 1;

[0026] Figure 10 This is a schematic diagram of a handheld vacuum cleaner assembled from a power source component and a dust cup with a flat suction.

[0027] Figure 11 This is a schematic diagram showing the assembly of the power source components, dust cup, and mite removal cleaning head into a mite removal device;

[0028] Figure 12 This is Embodiment 2 of the multifunctional surface cleaning system described in this invention;

[0029] Figure 13 It is the structure of the fabric cleaning brush in Example 2;

[0030] Figure 14 This is Embodiment 3 of the multifunctional surface cleaning system described in this invention.

[0031] The components in the diagram are labeled as follows: 1. Base; 11. Housing; 110. Air inlet; 111. Air inlet chamber; 112. Exhaust chamber; 113. Cleaning seat; 114. Connecting part; 115. Water inlet; 116. Air intake; 117. First boss; 118. Protrusion; 119. Positioning platform; 12. Positioning cavity; 13. Exhaust duct; 131. Exhaust outlet; 132. Exhaust inlet; 14. Waste tank receiving cavity; 15. 1. Clean water tank cavity; 16. Waste inlet; 17. First adapter; 18. Second adapter; 19. Isolation ring; 2. Water supply module; 21. Clean water tank; 22. First water supply pipeline; 221. Water supply port; 23. Second water supply pipeline; 3. Dirt collection module; 31. Waste container; 311. Cover; 312. Opening; 313. First limiting groove; 32. First dirt collection channel; 321. Suction port; 33. Air inlet Channel; 331, Air inlet port; 34, Sewage suction pipe; 341, Vertical section; 342, Horizontal section; 35, Vent; 36, Pipe opening; 37, HEPA filter; 38, Second dirt collection channel; 4, Power source assembly; 41, Housing; 42, Air inlet; 43, Air outlet; 5, First cleaning assembly; 50, Second cleaning assembly; 51, Cleaning brush; 510 (570), Body; 511 (571), Sewage suction port; 512 (572) Adapter cavity; 513 (573) Spray nozzle; 516 Brush bristles; 52 Dust cup; 53 Body; 54 Suction hose; 541 Connection port; 55 Water supply hose; 551 Water supply head; 56 Scraper; 57 Floor brush; 576 Roller brush cavity; 577 Cleaning roller; 58 Mite removal cleaning head; 59 Flat nozzle suction; 8 Wiring terminal; 9 Electrical connector; 10 Placement slot; 101 Second limit slot.

[0032] in, Figure 2 In the diagram, box 6 represents the wastewater tank and box 7 represents the clean water tank. Detailed Implementation

[0033] The technical solutions of the embodiments of the present invention 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 the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0034] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the present invention.

[0035] Example 1:

[0036] As described in this invention, a multifunctional surface cleaning system with multiple cleaning components, such as Figures 1 to 11As shown, it includes at least a first cleaning component 5 and a second cleaning component 50, as well as a detachably fixed water tank 21, a power source component 4, and a waste container 31. The water tank 21, power source component 4, and waste container 31 are detachably fixed to the first cleaning component 5 to form a first cleaning device; the water tank 21, power source component 4, and waste container 31 are detachably fixed to the second cleaning component 50 to form a second cleaning device; the first cleaning component 5 includes a base 1 on which a housing 11 is fastened, a cleaning head detachably connected to the housing 11, a water supply module 2, and a dirt collection module 3. The dirt collection module includes a first dirt collection channel 32 and a second dirt collection channel 38. The water supply module 2 includes a first water supply pipe 22 and a second water supply pipe 28. Water supply pipe 23, the first water supply pipe 22, and the first dirt collection channel are all located inside housing 11. The waste container 31 is equipped with a vent 35 connected to the power source assembly 4 and a suction pipe 34 connected to one end of the first dirt collection channel 32. The vent 35 is located above the opening 36 of the suction pipe 34. The cleaning head of the first cleaning assembly 5 is equipped with a suction port 511 connected to the other end of the first dirt collection channel 32. Under the action of the power source assembly, gas in the waste container 31 is sucked into the power source assembly 4 through the vent 35, creating a negative pressure inside the waste container 31. Dirt is collected into the waste container 31 through the suction port 511 on the cleaning head, the first dirt collection channel 32, and the suction pipe 34. The power source assembly 4 is movably mounted on housing 11, and at least one cleaning head is movably mounted on housing 11. In this embodiment, the first cleaning component 5 includes a base 1 and a housing 11 fastened to the base 1. A positioning cavity 12 is provided on the top wall of the housing 11. A sludge-holding cavity 14 and a clean water tank holding cavity 15 are provided on both sides of the housing 11. The power source component 4 is detachably installed within the positioning cavity 12. The power source component 4 has a housing 41 and includes a suction motor (not shown) and a battery pack (not shown) for powering the surface cleaning system, both housed within the housing 41. An air inlet 42 and an air outlet 43 are provided on the housing 41. An exhaust channel 13 communicating with the air outlet 43 is provided inside the housing 11, and an exhaust outlet 131 of the exhaust channel 13 is located on the housing 11. The water supply module 2 includes a water purification tank 21 detachably mounted on the housing 11 and a first water supply pipe 22 located inside the housing 11. The bottom of the water purification tank 21 is provided with a water outlet, and the bottom surface of the water purification tank cavity 15 is provided with a water inlet 115 that is connected to and communicates with the water outlet. One end of the first water supply pipe 22 is connected to and sealed with the water inlet 115.The sludge container 31 is provided with a suction pipe 34 and a vent 35 that are connected to the first sludge collection channel 32. The top of the sludge container 31 is equipped with a cover 311 with an opening. A gas-liquid separator 37 is provided at the opening. The cover 311 is provided with a vent 35. The housing 11 is provided with an air inlet channel 33 that is sealed and connected to the air inlet 42. The air inlet port 331 of the air inlet channel 33 is located on the bottom surface of the positioning cavity 12. The top wall of the sludge container cavity 14 is provided with a suction port 116 that is sealed and connected to the vent 35. The other end of the air inlet channel 33 is connected to and sealed to the suction port 116, forming an air inlet path from the air inlet 42 on the housing 41 of the power source assembly 4 to the air inlet port 331, the air inlet channel 33, the suction port 116, the vent 35, and the sludge container 34. Thus, under the action of the sludge suction motor, a negative pressure is formed inside the sludge container 34. The housing 11 is also provided with a sewage inlet 16, which is located at the bottom of the sewage container cavity 14, and the vent 35 is located above the pipe opening 36 of the suction pipe 34. The sludge collection bucket 31, power source component 4, and clean water tank 21 are mounted on the housing 11 to assemble the first cleaning device. One end of the first dirt collection channel 32 is connected to the suction port inside the cleaning head, and the other end is connected to the sludge collection bucket 31 through the suction pipe 34. The vent 35 of the sludge collection bucket 31 is connected to the air inlet 42 on the power source component 4 through the air inlet channel 33 provided inside the housing 11. Under the action of the suction motor of the power source component 5, the air in the sludge collection bucket 31 is sucked into the power source component from the vent 35, the suction port 116, the air inlet channel 33, and the air inlet 42, and is discharged out of the housing from the air outlet 43, the exhaust channel 13 which is sealed and connected to the air outlet 43, and the exhaust outlet 131 on the housing 11. This creates a negative pressure inside the sludge collection bucket 31, and dirt is collected into the sludge collection bucket 31 through the suction port 511 on the cleaning head, the first dirt collection channel 32, and the suction pipe 34, thus completing the dust or dirt suction process.

[0037] In this embodiment, the suction pipe 34 is disposed outside the sludge container and closely attached to it. This structure makes the sludge container and suction pipe easier to clean and facilitates automatic cleaning of these dirty components. In this embodiment, the side wall of the sludge container 31 has an opening 312. The suction pipe 34 extends upward along the side wall of the sludge container 31 to the opening 312 and is sealed and connected to the opening, thereby connecting the suction pipe 34 to the sludge container 31. The first sludge collection channel 32 is connected and sealed to the lower end of the suction pipe 34 through the sludge inlet 16. The pipe opening 36 of the suction pipe 34 is located below the vent 35 and is offset from the vent 35. The side wall of the housing 11 has a first adapter 17. The suction port 321 of the first sludge collection channel 32 and the water supply port 221 of the first water supply pipe 22 are both disposed within the first adapter 17. The side wall of the positioning cavity 12 is also provided with wiring terminals 8 for supplying power to the components inside the housing 11 and electrical connectors 9 for charging the power source assembly. The water supply module 2 has the function of providing cleaning water to the cleaning function component 5. The clean water tank 21 is detachably installed on the housing 11, which is convenient for the user to replenish the clean water tank 21. When water is supplied to the surface to be cleaned through the water supply module 2, the surface cleaning machine has a wet cleaning function.

[0038] In this embodiment, as Figure 5 As shown, the bottom wall of the positioning cavity 12 is provided with an isolation ring 19, which surrounds the air inlet 110. The exhaust inlet 132 of the exhaust channel 13 is located on the side wall of the positioning cavity 12. The power source assembly 4 is inserted into the isolation ring 19 in the positioning cavity 12. The air inlet 42 on the outer shell 41 of the power source assembly 4 is inserted into the isolation ring 19, and is sealed and connected to the air inlet 110. The air outlet 43 is sealed and connected to the exhaust inlet 132 of the exhaust channel 13. The air inlet 42 and the air outlet 43 on the power source assembly 4, as well as the inlet 132 of the exhaust channel 13, are isolated by the isolation ring 19, forming a sealed and separated air inlet cavity 111 and exhaust cavity 112, so that the air inlet and exhaust do not affect each other. When the sewage suction motor is activated, a negative pressure is formed in the sewage container, which facilitates the suction of sewage or waste into the sewage container.

[0039] In this embodiment, the first cleaning device is a fabric cleaning machine, the cleaning head is the cleaning brush of the fabric cleaning machine, and the first cleaning component also includes a suction hose 54 and a water supply hose 55 sleeved inside the suction hose 54. The fabric cleaning brush 51 includes a body 510 with a suction port 511 and an adapter cavity 512 and bristles 516 disposed on the surface of the body 510. The bristles 516 are disposed around the suction port 511. The suction hose 54 is at least partially fixed inside the body 510 and communicates with the suction port 511 on the cleaning head 51. The other end of the suction hose 54 is provided with an adapter pipe 541. The suction hose is inserted into the first adapter interface 17, and the adapter pipe 541 communicates with the suction port 321 in the first adapter interface 17. The main body 510 is also provided with a water spray nozzle 513. The water supply hose 55 is at least partially fixed inside the main body 510, and one end of it is connected to the water spray nozzle 513. The water supply hose 55 is connected to the first water supply pipe 22 for spraying water onto the surface to be cleaned. The other end of the water supply hose 55 is provided with a water supply head 551, which is connected to the water supply port 221 in the first adapter 17. Thus, the water spray nozzle 513 is connected to the clean water tank 21 through the water supply hose 55, the water supply head 551, the water supply port 221, and the first water supply pipe 22. The base 1 is provided with casters to facilitate moving the base 1 to a suitable position for cleaning fabrics such as sofas and mattresses. When the fabric cleaning brush connected to the suction hose and the water supply hose is installed on the housing 11 and is not spraying water, it is equivalent to a vacuum cleaner and can vacuum the surface to be cleaned. If the fabric cleaning brush head is replaced with a mite remover brush head, it can remove mites. In this embodiment, the suction hose is a corrugated pipe.

[0040] The second cleaning component 50 of the present invention includes a floor brush 57 and a body 53 hinged to the floor brush 57. The second dirt collection channel 38 is at least partially disposed within the floor brush 57. The floor brush 57 includes a body 570 and a cleaning roller 577. The second dirt collection channel 38 is partially fixed within the body 570 and communicates with a suction port 571. The front end of the body 570 has a roller brush cavity 576, and the rear end has a transition cavity 572. The cleaning roller 577 is located at the front end of the roller brush cavity 576, and the suction port 571 is located within the roller brush cavity 576. When the power source component 4 and the dirt container 3 are removed from the housing 11... Fixed at the upper end of the body 53, the other end of the second dirt collection channel 38 extends upward from the adapter cavity 572 at the rear end of the main body 570 into the body 53 and connects with the suction pipe 34. These components are combined to form a second cleaning device, which is a vacuum cleaner. The dirt container is the dust cup of the vacuum cleaner, and the second dirt collection channel 38 and the suction pipe 34 are the suction channels. Under the action of the suction motor of the power source component 4, the dirt on the surface to be cleaned enters the dirt container 31 through the suction port 571 on the floor brush 57, the second dirt collection channel 38, and the suction pipe 34, thus completing the vacuuming work. In this embodiment, the main body 570 is also provided with a scraper 56 and a water spray nozzle 573. When the clean water tank is also removed from the housing 11 and installed on the machine body, the cleaning roller 577 can clean the surface to be cleaned. The second water supply pipe 23 is partially fixed inside the main body 570 and communicates with the water spray nozzle 573. The scraper 56 is set above the suction port 571, and the water spray nozzle 573 is set above the scraper 56 with one end pressed against the cleaning roller 577. The other end of the second water supply pipe 23 extends upward from the adapter cavity 572 into the machine body and communicates with the clean water tank 21, which facilitates the cleaning roller to clean the surface to be cleaned. This completes the assembly of a machine body. A surface cleaning device that can perform wet cleaning of the surface to be cleaned. When the cleaning function is activated, water in the clean water tank is pumped into the second water supply pipe 23 to provide clean water to the spray nozzle 573. The spray nozzle 573 sprays water onto the surface to be cleaned or the cleaning roller 577. The cleaning roller rotates under the action of the drive motor and cleans the surface to be cleaned. The scraper scrapes off the dirt or sludge on the bristles of the cleaning roller. Under the action of the suction motor, a negative pressure is generated in the sludge collection tank. The sludge and / or dirt enter the sludge collection tank 3 through the suction port 571, the second dirt collection channel 38, and the suction pipe 34. This process is repeated until the cleaning is completed, thus completing the cleaning function of the surface to be cleaned.

[0041] Of course, it is understandable that we can also configure the second cleaning component directly as a floor brush with a body and a second dirt collection channel and a second water supply pipe. The floor brush and the body are hinged together. The floor brush is equipped with a suction port, a water spray port and a scraper. The water tank, the dirt container and the power source component are removed from the housing and installed on the body to assemble a surface cleaning device that can perform wet cleaning. Such a surface cleaning device is equipped with multiple functions such as vacuuming and cleaning. When performing the vacuuming function, the scraper is set to be floating or detachable. At this time, the scraper is removed or the scraper is moved up and separated from the cleaning roller, so that the water pump does not operate and the water spray port does not spray water. Instead, the vacuum motor is started. Under the action of the vacuum motor, a negative pressure is generated in the dirt container. The dirt and / or debris enter the dirt container 31 through the suction port 571, the second dirt collection channel 38 and the suction pipe 34 to complete the vacuuming work.

[0042] In this embodiment, the base 1 is also provided with a cleaning seat 6 that can be pulled forward from the base 1. The second cleaning device is placed on the cleaning seat 6, the automatic cleaning program is started, the clean water tank 21 provides cleaning liquid, and the water spray nozzle on the floor brush sprays water into the cleaning seat or the cleaning roller to automatically clean the cleaning roller, the suction pipe and the second dirt collection channel 38.

[0043] In this embodiment, a second adapter 18 is provided around the exhaust outlet 131 of the exhaust channel 13. The fabric cleaning brush with a suction hose 54 is detached from the first adapter 17 and inserted into the second adapter 18, so that the suction hose 54 is connected to the exhaust channel 13, and the air inside the housing 11 is discharged from the suction port 511. The suction port 511 of the fabric cleaning brush is aligned with the cleaned object surface to air dry it. Of course, it can also be understood that the fabric cleaning brush can be aligned with the floor brush placed on the base to air dry the cleaned cleaning roller and the second dirt collection channel inside the floor brush, or aligned with the first dirt collection channel and the dirt container inside the housing to air dry these parts, ensuring that these cleaned parts dry quickly and avoiding dampness and mold.

[0044] In this embodiment, the side wall of the positioning cavity 12 is also provided with wiring terminals for supplying power to the components inside the housing 11 and electrical connectors for charging the power source assembly 4. For example... Figure 8 As shown, the technical solution enables electrical connection between the power source assembly 4 and the base 1 when the power source assembly 4 is installed in the positioning cavity 12. The power source assembly 4 can be charged, and the electrical components on the housing 1 can be controlled via buttons on the power source assembly 4.

[0045] The bottom of the base 1 is also provided with a cleaning seat 113 that can be pulled forward from the base 1. The second cleaning component 50, which has a cleaning roller 577 and a body 53, is placed on the cleaning seat 113. When the automatic cleaning program is started, the clean water tank 21 provides cleaning solution to automatically clean the cleaning roller 577, the suction pipe 34, and the second dirt collection channel 38. The cleaning seat 113 can be used to place the second cleaning component 50. After the cleaning roller on the second cleaning component is cleaned, the cleaning seat 113 can be directly pulled out for separate cleaning.

[0046] In this embodiment, the housing 11 is further provided with a docking part 114 that mates with the body 53. The docking part 114 is provided with electrical contacts. When the floor brush with cleaning roller 577 and the second cleaning component 50 of the body, together with the sludge bucket, clean water tank and power source component, form a wet surface cleaning device, and the surface cleaning device is placed on the cleaning seat 113, the body 53 mates with the docking part 114, and the electrical contacts on the body 53 are electrically connected to the electrical contacts on the docking part 114. When the body 53 mates with the docking part 114, the power source component 4 installed on the body 53 can be charged through the docking part 114 on the housing 11. When the power source component 4 is installed separately on the housing 11, it can also be charged separately through the electrical connector 9 provided on the housing 11.

[0047] Of course, it is understandable that a third adapter (not shown in the figure) can also be provided on the housing 11. The third adapter is connected to the clean water tank through the first water supply pipe. The suction hose and the fabric cleaning brush are removed from the first adapter and connected to the third adapter. The automatic cleaning program is started, and the clean water tank provides cleaning fluid to automatically clean the suction hose, the first dirt collection channel, and the suction port on the fabric cleaning brush.

[0048] Of course, it is understandable that the suction pipe can also be set on the bottom wall inside the sludge container, and the vent of the sludge container can be set on and extend upward from the bottom wall of the sludge container; the suction pipe can also be integrally formed with the sludge container, as long as the opening of the suction pipe is set lower than the vent and the two are staggered, so that the sewage sprayed from the opening of the suction pipe is far away from the vent, avoiding the sewage from entering the suction motor of the power source component from the vent and air inlet, thus affecting the operation of the suction motor. Such technical solutions that do not depart from the concept of the present invention are also within the protection scope of the present invention, and will not be listed one by one here.

[0049] Of course, it is understandable that we could also provide a third cleaning component, which includes a dust cup with a long and large suction port (i.e., a long flat suction nozzle). A handle is provided on the housing of the power source component, allowing the power source component to be detached from the housing and installed onto the dust cup to assemble a handheld vacuum cleaner for vacuuming. A cleaning head for a mite remover can also be connected to the dust cup for mite removal. Alternatively, a fourth cleaning component could be provided, comprising a dust cup and a body with a floor brush. The body has a suction channel, and the power source component is sequentially installed onto the body with the floor brush, allowing it to be assembled into a standalone vacuum cleaner. Such technical solutions that do not depart from the concept of this invention are also within the scope of protection of this invention, and will not be listed in detail here.

[0050] Example 2:

[0051] Compared with Embodiment 1, the structure of the base and housing of the first cleaning component is different, and the structure of the first cleaning device assembled from the sludge bucket, the clean water tank and the power source component is also different.

[0052] As described in this invention, the multifunctional surface cleaning system that can be used both wet and dry is as follows: Figure 12 and Figure 13As shown, the system includes a water supply module 2, a dirt collection module 3, a power source assembly 4 mounted on the housing, a water inlet tank 21, a dirt collection tank 31, a first cleaning assembly 5, and a second cleaning assembly 50. In this embodiment, the first cleaning assembly 5 includes a housing 11 and a base 1, which are fastened together to form a receiving space. The rear top of the housing 11 has an upward-facing first protrusion 117. Two forward-protruding protrusions 118 are provided on the front side of the first protrusion 117 to form a U-shaped positioning cavity 12. The housing 11 located in the U-shaped positioning cavity 12 protrudes upward and forward to form a positioning platform 119. The first protrusion 117 and the positioning platform 119 are connected and communicate with each other. An air intake 116 is provided on the front wall of the first protrusion 117, and the corresponding position on the side wall of the dirt collection tank 31 is... A vent (not shown in the figure) is provided that communicates with and is sealed to the air intake 116. An air inlet port 331 is provided at the bottom of the positioning platform 119. An air intake channel (not shown in the figure) is provided in the accommodating space. One end of the air intake channel is connected to the air intake port 331, and the other end of the air intake channel is connected to the air intake 116. The power source assembly 4 is mounted on the positioning platform 119 and is surrounded and limited by the U-shaped positioning cavity 12. The air inlet (not shown in the figure) on the outer shell 41 of the power source assembly 4 is connected with and sealed to the air intake port 331. In this embodiment, the sewage suction pipe 34 is provided outside the sewage container 31 and extends upward from the bottom of the sewage container. The vent is provided on the rear side wall of the sewage container. The vent is located at the upper end of the sewage container and is higher than the inlet of the sewage suction pipe 34 and offset from it. The exhaust inlet 132 of the exhaust channel is located on the bottom wall of the U-shaped positioning cavity 12. The exhaust channel (not shown in the figure) is located inside the first protrusion 117 and the positioning platform 119. One end of the exhaust channel is connected and sealed to the air outlet through the exhaust inlet. The exhaust channel extends from the positioning platform 119 to the rear wall of the first protrusion 117, which is the rear wall of the housing 11. The rear wall of the housing 11 is provided with an exhaust outlet 131 to discharge air out of the housing 11. The sludge bucket is installed on one side of the U-shaped positioning cavity. The housing is provided with a sludge inlet 16. The receiving space is provided with a first sludge collection channel 32. One end of the sludge inlet 16 is connected to the first sludge collection channel 32. The other end of the first sludge collection channel 16 extends from the receiving space to the front wall of the housing 11. The front wall of the housing 11 is provided with a first adapter 17. The sludge suction port 321 of the first sludge collection channel 32 is located inside the first adapter 17.The purified water tank 21 is installed on the other side of the U-shaped positioning cavity 12. An inlet 115 is provided on the housing, communicating with the purified water tank 21. A one-way valve is installed between the inlet 115 and the outlet of the purified water tank 21 to control the discharge of water from the purified water tank. A first water supply pipeline 22 is installed within the accommodating space. One end of the first water supply pipeline 22 is connected to the inlet 115, and the other end extends towards the front wall of the housing 11 within the accommodating space. The water supply port 221 of the first water supply pipeline 22 is located within the first adapter 17. The cleaning seat and the base form an integral structure. Thus, the first cleaning component, the waste container, the purified water tank, and the power source component are assembled into a first cleaning device, namely a fabric cleaning machine with a cleaning seat.

[0053] In this embodiment, the air inlet and air outlet of the power source component are both located on the bottom wall of the housing, with the air inlet located at the center and the air outlet located around the air inlet. An air inlet 110 is located on the bottom wall of the positioning cavity 12, communicating and sealingly connecting with the air inlet. Two isolation rings 19 are provided on the bottom wall of the positioning cavity 12. The air inlet 110 is located within the first isolation ring 19, while the exhaust inlet 132 of the exhaust channel is located between the first and second isolation rings. The air intake channel is connected to the air intake port 42 via the air intake port 110. The power source component 4 is inserted into the positioning cavity 12. The air intake port is inserted into the first isolation ring 19, and the air outlet is inserted between the first isolation ring 19 and the second isolation ring 19, so that the air intake port 110 and the air intake port are sealed and connected. The exhaust inlet 132 of the exhaust channel is sealed and connected to the air outlet, thereby isolating the air intake and exhaust ports of the power source component and forming a sealed and separated air intake chamber and exhaust chamber. This scheme can form a sealed and separated air intake chamber and exhaust chamber, so that the air intake path and the exhaust path are separated and do not affect each other. The power source component draws the air out of the sludge container through the air intake chamber, thereby creating a negative pressure in the sludge container, thus completing the sludge suction or dust suction.

[0054] In this embodiment, the suction pipe 34 is detachably disposed on the front side of the sludge container 31. The sludge container 31 is provided with an opening 312. The front side of the sludge container 31 is provided with a first limiting groove 313, which extends from the bottom of the sludge container 31 to the opening 312. The suction pipe 34 includes a vertical section 341 and a horizontal section 342 connected thereto. The pipe opening is disposed at the end of the horizontal section. A positioning groove (not shown in the figure) is provided at the opening. The vertical section is inserted into the first limiting groove, and the pipe opening 36 is inserted into the positioning groove. A sealing ring (not shown in the figure) is provided between the pipe opening and the positioning groove, so that the suction pipe and the sludge container are sealed and connected. The air intake 116 is disposed on the front side wall of the first protrusion 117, and the air vent (not shown in the figure) is disposed on the rear side wall of the sludge container 31. The air vent and the air intake 116 are sealed and connected. The front side of the housing is provided with a forward-extending cleaning seat. A through hole (not shown in the figure) is provided on the housing 11. The inlet 16 of the first dirt collection channel 32 extends upward through the through hole. The lower end of the suction pipe 34 is inserted into the inlet 16 of the first dirt collection channel. The suction port 321 of the other end of the first dirt collection channel 32 extends forward from the housing and passes through the cleaning seat 113 to the side wall of the cleaning seat 113. The first adapter 17 is provided on the side wall of the cleaning seat. The suction port 321 of the first dirt collection channel 32 is located in the first adapter 17.

[0055] To make the detailed structure of cleaning component 5 more clearly visible, the cleaning head of cleaning component 5 has been enlarged proportionally, such as... Figure 13 As shown, the shape of the fabric cleaning head, the arrangement of the bristles, and the position of the suction port 511 in this embodiment are different from those in Embodiment 1. The second cleaning component and the second cleaning device assembled from it in this embodiment have the same structure as those in Embodiment 1, and will not be described in detail here.

[0056] The remaining structures and beneficial effects in this embodiment are the same as in Embodiment 1, and will not be repeated here.

[0057] Example 3:

[0058] The difference between this embodiment and Embodiment 2 is the positioning structure of the suction pipe and the waste collection bucket.

[0059] As described in this invention, the multifunctional surface cleaning system that can be used both wet and dry is as follows: Figure 14As shown, the housing 11 is also provided with a placement groove 10 for placing the sludge bucket 31, which positions and limits the sludge bucket 31. The rear side wall of the sludge bucket 31 is provided with a first limiting groove (not shown in the figure). The front side wall of the first protrusion 117 of the housing 11 is provided with a second limiting groove 101. The inlet 16 of the first dirt collection channel 32 extends upward from the through hole on the housing 11 and extends into the second limiting groove 101. The suction pipe 34 is placed in the second limiting groove 101. The lower end of the suction pipe 34 is sealed and connected to the inlet 16 of the first dirt collection channel 32 provided on the housing 11. After the sludge bucket 31 is installed, the first limiting groove and the second limiting groove 101 cover the suction pipe 34, thereby fixing the suction pipe 34 to the housing. The air intake 116 is located above the second limiting groove 101. The suction pipe 34 is detachably set in the first limiting groove and the second limiting groove 101. In the above technical solution, the suction pipe 34 is set on the outer wall of the sludge container 31, which facilitates the disassembly, assembly, and positioning of the suction pipe 34.

[0060] Of course, it is understandable that the port of the first dirt collection channel can also be made not to extend from the housing, but to have a through hole on the housing for inserting the suction pipe, with a surrounding edge extending outwards from the housing around the through hole. The first dirt collection channel fits onto the surrounding edge of the through hole, and the suction pipe extends downwards along the second limiting groove to the first dirt collection channel. The suction pipe is then inserted through the through hole into the surrounding edge and sealed and connected to the first dirt collection channel. Alternatively, a clean water tank placement groove can be provided on the housing to position and limit the clean water tank; the suction pipe can also be placed inside the waste container, extending upwards from the bottom wall of the waste container, thus eliminating the need for the limiting groove for the suction pipe; the suction pipe can also be fixed to the outside of the waste container. Such technical solutions that do not depart from the concept of this invention are also within the protection scope of this invention, and will not be listed in detail here.

[0061] The remaining structures and beneficial effects in this embodiment are the same as in Embodiment 2, and will not be described in detail here.

[0062] In addition to the preferred embodiments described above, there are other embodiments of the present invention. Those skilled in the art can make various changes and modifications based on the present invention, and can also combine the above embodiments. As long as they do not depart from the spirit of the present invention, they should all fall within the scope defined in the claims of the present invention.

Claims

1. A multi-functional surface cleaning system having a plurality of cleaning assemblies, characterized by, The utility model provides a cleaning device, including first cleaning component, second cleaning component, water purifying tank, power source component and dirty bucket, power source component includes dirty -suction motor and battery pack, first cleaning component includes casing and cleaning head, casing and cleaning head are connected through dirty -suction hose, the positioning cavity for installing power source component, water purifying tank containing cavity and dirty bucket containing cavity are equipped on the casing, water purifying tank containing cavity and dirty bucket containing cavity are arranged respectively on both sides of positioning cavity, and water purifying tank, power source component and dirty bucket are detachably installed on first cleaning component and form first cleaning device, second cleaning component includes ground brush and hinge on ground brush machine body, and water purifying tank, power source component and dirty bucket are detachably installed on second cleaning component and form second cleaning device.

2. The multi-surface cleaning system having multiple cleaning assemblies of claim 1, wherein, The casing is provided with a first boss protruding upward, and the water purifying tank, the power source component and the dirty bucket are respectively installed on the side of the first boss.

3. The multi-surface cleaning system having multiple cleaning assemblies of claim 2, wherein, The casing is further provided with a positioning table protruding upward and forward, the positioning table is connected with the first boss, and the power source component is installed on the positioning table.

4. The multi-surface cleaning system having multiple cleaning assemblies of claim 2, wherein, The bottom of the power source component is higher than the bottom of the water purifying tank and the dirty bucket.

5. The multi-surface cleaning system having multiple cleaning assemblies of claim 2, wherein, The water purifying tank and the dirty bucket are arranged opposite on the side of the first boss.

6. The multi-surface cleaning system having multiple cleaning assemblies of claim 1, wherein, The first cleaning component further includes a base arranged below the casing, and the projection area of the base on the horizontal plane is greater than the projection area of the ground brush on the horizontal plane.

7. The multi-surface cleaning system having multiple cleaning assemblies of claim 1, wherein, The casing is provided with an air inlet channel, the power source component is communicated with the dirty bucket through the air inlet channel, the bottom of the positioning cavity is provided with an air inlet port communicated with the air inlet channel, and the bottom of the power source component is provided with an air inlet.

8. The multi-surface cleaning system having multiple cleaning assemblies of claim 7, wherein, The casing is provided with a first water supply pipeline and a first dirty collection channel, the water purifying tank is communicated with a water outlet on the cleaning head through the first water supply pipeline, and the dirty bucket is communicated with a dirty suction port on the cleaning head through the first dirty collection channel.

9. The multi-surface cleaning system having multiple cleaning assemblies of claim 1, wherein, The utility model further includes a third cleaning component, the third cleaning component includes a dust cup, and the dust cup and the power source component are detachably installed to form a handheld vacuum cleaner.

10. The multi-surface cleaning system having multiple cleaning assemblies of claim 1, wherein, The casing is further provided with a third adapter, the third adapter is communicated with the water purifying tank through the first water supply pipeline, and the water purifying tank provides a cleaning liquid to automatically clean the first dirty collection channel and the dirty bucket.