Cleaning system

By designing the motor battery pack assembly, the first cleaning assembly and the dust collection station assembly in the cleaning system, the interaction of the converter is used to solve the problems of large equipment size and high cost caused by the dust collection station, and the self-cleaning effect of multiple cleaning equipment is achieved, reducing the cost and assembly space.

CN223169659UActive Publication Date: 2025-08-01GUANGDONG DONLIM INTELLIGENT ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202422425624.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-01
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The installation of dust collecting stations in existing cleaning equipment leads to large size, high cost, and is inconvenient for user storage and assembly.

Method used

A cleaning system is designed, including a motor battery pack assembly, a first cleaning assembly, a second cleaning assembly and a dust collection station assembly. Through the interaction of the converter parts, multiple cleaning equipment share a dust collection station, reducing the number of structural parts, reducing costs and assembly space requirements.

Benefits of technology

The self-cleaning effect of multiple cleaning equipment is achieved, reducing costs, reducing the assembly space requirements of the device, and making it easier for users to use and store.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cleaning system. The cleaning system comprises a motor battery pack assembly; the first cleaning assembly is used for forming first cleaning equipment with the motor battery pack assembly; the second cleaning assembly is used for forming second cleaning equipment with the motor battery pack assembly, and the second cleaning equipment is internally provided with a first air duct; the dust collection station assembly is used for being combined with second cleaning equipment to form a dust collection station, and a second air duct is arranged in the dust collection station assembly; wherein the dust collection station assembly is provided with a first conversion piece, the second cleaning equipment is provided with a second conversion piece, and when the second cleaning equipment is connected with the dust collection station assembly, the first conversion piece and the second conversion piece interact with each other and generate relative movement so as to block the first part of the first air duct and communicate the second part of the first air duct with the second air duct; the third air channel is used for cleaning the target assembly. The cleaning system provided by the utility model is low in cost, small in assembly space requirement and capable of realizing an automatic cleaning function of equipment components.
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Description

Technical Field

[0001] The embodiments of the present utility model relate to the technical field of household cleaning equipment, and particularly to a cleaning system. Background Art

[0002] In the existing solutions, in order to improve the convenience of cleaning the dust cup in a vacuum cleaner, a dust collection station is added to the vacuum cleaner to have a dust collection function. That is, in existing cleaning products such as vacuum cleaners and cleaning machines, a separate dust collection station is made to achieve the dust collection function. The dust collection station usually contains a power component, a power supply module, a dust collection structure, etc., so it has a large volume and requires a certain cost. As a result, the cleaning equipment including the dust collection station needs to have sufficient assembly space and high manufacturing cost. Especially for some multi-device components with multiple different cleaning devices, if a separate dust collection station is set for each cleaning device, it will not only significantly increase the cost, but also make the overall volume of the component too large, which is not convenient for users to store and assemble. Content of the Utility Model

[0003] The present utility model provides a cleaning system with low cost, small requirement for assembly space, and capable of realizing the automatic cleaning function of the device component.

[0004] To solve the above technical problems, the embodiments of the present utility model provide a cleaning system, including:

[0005] A motor battery pack assembly;

[0006] A first cleaning component, configured to form a first cleaning device with the motor battery pack assembly, and the first cleaning device has a dust suction function;

[0007] A second cleaning component, configured to form a second cleaning device with the motor battery pack assembly, and the second cleaning device has a first air duct;

[0008] A dust collection station component, configured to form a dust collection station in combination with the second cleaning device, and the dust collection station is used to clean a target component for collecting dust in the first cleaning component, and the dust collection station component has a second air duct;

[0009] Wherein, the dust collection station component has a first conversion piece, and the second cleaning device has a second conversion piece. When the second cleaning device is connected to the dust collection station component, the first conversion piece and the second conversion piece interact with each other and generate relative movement to block a first part of the first air duct, conduct a second part of the first air duct and the second air duct, so as to form a third air duct for cleaning the target component.

[0010] In some embodiments, the second cleaning assembly includes a sewage tank and a main body assembly. The sewage tank and the motor battery pack assembly are installed on the main body assembly. The first part of the first air duct is located in the sewage tank, and the second part of the first air duct is located in the main body assembly and is connected to the motor battery pack assembly.

[0011] In some embodiments, the second conversion member is disposed in the main body assembly. When the second cleaning device is separated from the dust collection station assembly, the second conversion member conducts the two parts of the first air duct located in the sewage tank and the main body assembly respectively. When the second cleaning device is connected to the dust collection station, the first conversion member and the second conversion member interact with each other and generate relative movement, so that the second conversion member blocks the first part of the first air duct and conducts the second air duct and the second part of the first air duct.

[0012] In some embodiments, the main body assembly includes a main body. The main body is provided with a cavity for installing the sewage tank and the motor battery pack assembly. The second part of the first air duct is formed by opening in the main body below the cavity.

[0013] In some embodiments, a through hole communicating with the second part of the first air duct is opened at the bottom of the main body. The second conversion member is disposed in the main body and can block the through hole and can also move to open the through hole. When blocking the through hole, the second conversion member can conduct a part of the first air duct and the second part of the first air duct. When opening the through hole, the second conversion member blocks the first part of the first air duct.

[0014] In some embodiments, there is a first included angle between the first part of the first air duct and the second part of the second air duct. The second conversion member has a first end and a second end, and there is a second included angle between the first end and the second end. The first included angle is the same as the second included angle. The first end is used to connect the first part of the first air duct, and the second end is used to connect the second part of the second air duct.

[0015] In some embodiments, both the first included angle and the second included angle are 90°. The second conversion member can move vertically in the main body. When the second cleaning device is separated from the dust collection station assembly, the second conversion member blocks the through hole due to its own gravity.

[0016] In some embodiments, the second conversion member is in the shape of a hollow cylinder with an open upper end and a closed lower end. An opening is provided in the part between the upper end and the lower end. The opening is used to communicate with the second part of the first air duct. A stop portion for restricting its moving position is provided above the opening of the second conversion member.

[0017] In some embodiments, the first conversion member is a convex post provided on the dust collection station assembly, which can pass through the through hole to push the second conversion member. The convex post is hollow and communicates with the second air duct.

[0018] In some embodiments, the first cleaning assembly includes a connecting pipe assembly, a floor brush assembly, and a dust cup assembly as the target assembly, and the first cleaning device is a vacuum cleaner;

[0019] The second cleaning assembly further includes a clean water tank assembly, which is installed on the main body assembly, and the second cleaning device is a fabric cleaner.

[0020] Based on the disclosure of the above embodiments, the beneficial effects of the embodiments of the present invention include that by providing a motor battery pack assembly, a first cleaning assembly for forming a first cleaning device with the motor battery pack assembly, a second cleaning assembly for forming a second cleaning device with the motor battery pack assembly, and a dust collection station assembly for combining with the second cleaning device to form a dust collection station, a cleaning system can be prepared. The overall structure involves fewer structural parts. Among them, the dust collection station is used to clean the target assembly that collects dust in the first cleaning assembly. To achieve cleaning, the dust collection station assembly has a second air duct and a first conversion member, and the second cleaning device has a second conversion member. When the second cleaning device is connected to the dust collection station assembly, the first conversion member and the second conversion member interact and generate relative movement to block a first part of the first air duct and conduct a second part of the first air duct and the second air duct, so that they are combined to form a third air duct for cleaning the target assembly. Through the above settings, there is no need to set up independent dust collection stations in both the first cleaning device and the second cleaning device. Only one dust collection station assembly is required, and by combining it with the second cleaning device, the dust collection functions of itself and the first cleaning device can be realized respectively, achieving a self-cleaning effect. There is no need to set multiple motors and batteries. Only one motor battery pack assembly can be used for multiple cleaning devices. In this way, the cost is greatly reduced, the assembly space requirement of the device is reduced, the overall structure of the cleaning system is supported to be simplified, and it is convenient for users to use and store. Description of the Drawings

[0021] Figure 1 It is a schematic structural diagram of the cleaning system in the embodiments of the present invention.

[0022] Figure 2 It is a partial schematic structural diagram of the cleaning system in the embodiments of the present invention.

[0023] Figure 3 It is a partial schematic structural diagram of the cleaning system in the embodiments of the present invention.

[0024] Figure 4This is a partial structural schematic diagram of the cleaning system in the embodiment of the present utility model.

[0025] Figure 5 This is a partial structural schematic diagram of the cleaning system in the embodiment of the present utility model.

[0026] Reference numerals:

[0027] 1 - Motor battery pack assembly; 2 - Dust collection station assembly; 3 - First air duct; 4 - Second air duct; 5 - Sewage tank; 6 - Clean water tank assembly; 7 - Main body assembly; 8 - First part; 9 - Second part; 10 - First conversion piece; 11 - Second conversion piece; 12 - Dust cup assembly; 13 - Connecting pipe assembly; 14 - Floor brush assembly. Detailed implementation manners

[0028] Next, with reference to the accompanying drawings, specific embodiments of the present utility model will be described in detail, but it is not a limitation of the present utility model.

[0029] It should be understood that various modifications can be made to the embodiments disclosed herein. Therefore, the following description should not be regarded as a limitation, but only as an example of the embodiments. Those skilled in the art will think of other modifications within the scope and spirit of the present disclosure.

[0030] The accompanying drawings included in the specification and constituting a part of the specification illustrate the embodiments of the present disclosure, and together with the general description of the present disclosure given above and the detailed description of the embodiments given below, are used to explain the principles of the present disclosure.

[0031] Through the following description of the preferred forms of the embodiments given as non - restrictive examples with reference to the accompanying drawings, these and other features of the present utility model will become apparent.

[0032] It should also be understood that although the present utility model has been described with reference to some specific examples, those skilled in the art can surely implement many other equivalent forms of the present utility model, which have the features as described in the claims and thus are all within the protection scope defined thereby.

[0033] When combined with the accompanying drawings, in view of the following detailed description, the above and other aspects, features and advantages of the present disclosure will become more apparent.

[0034] Specific embodiments of the present disclosure will be described hereinafter with reference to the accompanying drawings; however, it should be understood that the disclosed embodiments are merely examples of the present disclosure, which can be implemented in various ways. Well-known and / or repetitive functions and structures are not described in detail to avoid obscuring the present disclosure with unnecessary or redundant details. Therefore, the specific structural and functional details disclosed herein are not intended to be limiting, but are merely used as a basis and representative basis for the claims to teach those skilled in the art to use the present disclosure in a substantially appropriate detailed structure in various ways.

[0035] This specification may use the phrases "in one embodiment", "in another embodiment", "in yet another embodiment", or "in other embodiments", each of which may refer to one or more of the same or different embodiments according to the present disclosure.

[0036] Next, embodiments of the present utility model will be described in detail with reference to the accompanying drawings.

[0037] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, an embodiment of the present utility model provides a cleaning system, including:

[0038] A motor battery pack assembly 1;

[0039] A first cleaning component for forming a first cleaning device with the motor battery pack assembly 1, and the first cleaning device has a dust suction function;

[0040] A second cleaning component for forming a second cleaning device with the motor battery pack assembly 1, and a first air duct 3 is provided in the second cleaning device;

[0041] A dust collection station assembly 2 for combining with the second cleaning device to form a dust collection station, and the dust collection station is used to clean a target component that collects dust in the first cleaning component, and a second air duct 4 is provided in the dust collection station assembly 2;

[0042] Wherein, the dust collection station assembly 2 has a first conversion member 10, and the second cleaning device has a second conversion member 11. When the second cleaning device is connected to the dust collection station assembly 2, the first conversion member 10 and the second conversion member 11 interact with each other and generate relative movement to block a first part 8 of the first air duct 3 and conduct a second part 9 of the first air duct 3 and the second air duct 4 to form a third air duct for cleaning the target component.

[0043] Based on the contents of the above embodiments, it can be known that this embodiment can prepare a cleaning system by setting a motor battery pack assembly 1, a first cleaning assembly for forming a first cleaning device with the motor battery pack assembly 1, a second cleaning assembly for forming a second cleaning device with the motor battery pack assembly 1, and a dust collection station assembly 2 for forming a dust collection station in combination with the second cleaning device. The overall number of structural parts involved is relatively small, wherein the dust collection station is used to clean the target component that collects dust in the first cleaning assembly. To achieve cleaning, the dust collection station assembly 2 has a second air duct 4 and a first conversion part 10, and the second cleaning device has a second conversion part 11. When the second cleaning device is connected to the dust collection station assembly 2, the first conversion part 10 interacts with the second conversion part 11 and generates relative movement to block the first part 8 of the first air duct 3 and connect the second part 9 of the first air duct 3 with the second air duct 4, so that they are combined to form a third air duct for cleaning the target component. Through the above-mentioned arrangement, there is no need to set up independent dust collection stations in the first cleaning device and the second cleaning device. Only one dust collection station component 2 is required, which can realize the dust collection function of itself and the first cleaning device respectively by being used in conjunction with the second cleaning device, thereby achieving a self-cleaning effect. There is no need to set up multiple motors and batteries. Only one motor battery pack component 1 is required to be used by multiple cleaning devices, which greatly reduces costs, reduces the assembly space requirements of devices, supports the simplification of the overall structure of the cleaning system, and is convenient for users to use and store.

[0044] Specifically, in this embodiment, the first cleaning component includes a connecting pipe component 13, a floor brush component 14, and a dust cup component 12 as the target component. The first cleaning device is a vacuum cleaner. The second cleaning component also includes a sewage tank 5, a clean water tank component 6, and a main body component 7. The main body component 7 has a cavity. The sewage tank 5, the clean water tank component 6, and the motor battery pack component 1 are installed in the cavity of the main body component 7. The second cleaning device is a fabric cleaning machine. Of course, the first cleaning device and the second cleaning device are not unique and can also be a combination of other cleaning devices. However, the first cleaning device needs to have a vacuuming function, which can be to vacuum the ground, or to vacuum dust from other objects, and can also vacuum non-dust particles.

[0045] In the second cleaning device, the first part 8 of the first air duct 3 is located in the sewage tank 5, and the second part 9 of the first air duct 3 is located in the main body assembly 7. At the same time, the second part 9 of the first air duct 3 is also connected to the motor battery pack assembly 1 to obtain kinetic energy for sucking air based on the suction motor in the motor battery pack assembly 1.

[0046] Further, the second conversion member 11 is disposed within the main body assembly 7. When the second cleaning device is separated from the dust collection station assembly 2, the second conversion member 11 conducts two parts of the first air duct 3 located in the sewage tank 5 and the main body assembly 7 respectively. When the second cleaning device is connected to the dust collection station, the first conversion member 10 and the second conversion member 11 interact with each other and generate relative movement, so that the second conversion member 11 blocks the first part 8 of the first air duct 3 and conducts the second air duct 4 and the second part 9 of the first air duct 3.

[0047] Continuing to combine Figure 2 、 Figure 3 and Figure 4 As shown, the main body assembly 7 includes a main body, and the main body is provided with a cavity for installing the sewage tank 5 and the motor battery pack assembly 1. The second part 9 of the first air duct 3 is formed by opening in the main body below the cavity.

[0048] Further, a through hole communicating with the second part 9 of the first air duct 3 is opened at the bottom of the main body. The second conversion member 11 is disposed within the main body and can block the through hole, and can also move to open the through hole. When blocking the through hole, the second conversion member 11 can conduct a part of the first air duct 3 and the second part 9 of the first air duct 3. When opening the through hole, the second conversion member 11 blocks the first part 8 of the first air duct 3.

[0049] Combining Figure 3 and Figure 4 As shown, there is a first included angle between the first part 8 of the first air duct 3 and the second part 9 of the second air duct 4. The second conversion member 11 has a first end and a second end, and there is a second included angle between the first end and the second end. The first included angle is the same as the second included angle. The first end is used to connect the first part 8 of the first air duct 3, and the second end is used to connect the second part 9 of the second air duct 4.

[0050] Specifically, both the first included angle and the second included angle are 90°. The second conversion member 11 can move vertically within the main body. When the second cleaning device is separated from the dust collection station assembly 2, the second conversion member 11 blocks the through hole based on its own gravity.

[0051] Combining Figure 5 As shown, the second conversion member 11 is in the shape of a hollow cylinder with an open upper end and a closed lower end. An opening is provided in the part between the upper end and the lower end. The opening is used to communicate with the second part 9 of the first air duct 3. A stop portion for restricting its movement position is provided above the opening of the second conversion member 11.

[0052] The first conversion member 10 is a convex post disposed on the dust collection station assembly 2, which can pass through the through hole to push the second conversion member 11. The convex post is hollow and communicates with the second air duct 4.

[0053] In application, when the second cleaning device is placed on the dust collection station assembly 2, the first conversion member 10 on the dust collection station assembly 2 lifts the second conversion member 11 to close the first part 8 of the original first air duct 3 in the second cleaning device, and converts it into a third air duct after the second air duct 4 in the dust collection station assembly 2 communicates with the second part 9 of the first air duct 3 in the second cleaning device. Then, the dust cup assembly 12 in the first cleaning device is placed on the dust collection station assembly 2. When the motor battery pack assembly 1 starts to work, the dust collection function can be realized, that is, the dust cup assembly 12 is cleaned.

[0054] The above embodiments are only exemplary embodiments of the present invention and are not used to limit the present invention. The protection scope of the present invention is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements within the essence and protection scope of the present invention, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the present invention.

Claims

1. A cleaning system, characterized in that, Comprising: A motor battery pack assembly; A first cleaning assembly for forming a first cleaning device with the motor battery pack assembly, the first cleaning device having a dust suction function; A second cleaning assembly for forming a second cleaning device with the motor battery pack assembly, the second cleaning device having a first air duct therein; A dust collection station assembly for combining with the second cleaning device to form a dust collection station, the dust collection station being used to clean a target component for collecting dust in the first cleaning assembly, the dust collection station assembly having a second air duct therein; Wherein, the dust collection station assembly has a first conversion member, and the second cleaning device has a second conversion member. When the second cleaning device is connected to the dust collection station assembly, the first conversion member and the second conversion member interact and generate relative movement to block a first part of the first air duct and conduct a second part of the first air duct and the second air duct, so that they are combined to form a third air duct for cleaning the target component.

2. The cleaning system according to claim 1, wherein, The second cleaning assembly includes a sewage tank and a main body assembly. The sewage tank and the motor battery pack assembly are installed on the main body assembly. A first part of the first air duct is located in the sewage tank, and a second part of the first air duct is located in the main body assembly and is connected to the motor battery pack assembly.

3. The cleaning system according to claim 2, wherein The second conversion member is arranged in the main body assembly. When the second cleaning device is separated from the dust collection station assembly, the second conversion member conducts two parts of the first air duct located in the sewage tank and the main body assembly respectively. When the second cleaning device is connected to the dust collection station, the first conversion member and the second conversion member interact and generate relative movement, so that the second conversion member blocks the first part of the first air duct and conducts the second air duct and the second part of the first air duct.

4. The cleaning system according to claim 3, characterized in that, The main body assembly includes a main body. The main body is provided with a cavity for installing the sewage tank and the motor battery pack assembly. The second part of the first air duct is formed by opening in the main body below the cavity.

5. The cleaning system according to claim 4, wherein A through hole communicating with the second part of the first air duct is opened at the bottom of the main body. The second conversion member is arranged in the main body and can block the through hole and can also move to open the through hole. When blocking the through hole, the second conversion member can conduct a part of the first air duct and the second part of the first air duct. When opening the through hole, the second conversion member blocks the first part of the first air duct.

6. The cleaning system according to claim 5, characterized in that, There is a first included angle between the first part of the first air duct and the second part of the second air duct. The second conversion member has a first end and a second end. The first end and the second end have a second included angle. The first included angle is the same as the second included angle. The first end is used to connect the first part of the first air duct, and the second end is used to connect the second part of the second air duct.

7. The cleaning system according to claim 6, wherein Both the first included angle and the second included angle are 90°. The second conversion member can move vertically in the main body. When the second cleaning device is separated from the dust collection station assembly, the second conversion member blocks the through hole based on its own gravity.

8. The cleaning system according to claim 6, characterized in that, The second conversion member is in the shape of a hollow cylinder, with an open upper end and a closed lower end. A part between the upper end and the lower end is provided with an opening for communicating with the second part of the first air duct. A stop portion for restricting its moving position is provided above the opening of the second conversion member.

9. The cleaning system according to claim 5, characterized in that, The first conversion member is a convex column arranged on the dust collection station assembly, which can pass through the through hole to push the second conversion member. The convex column is hollow and communicates with the second air duct.

10. The cleaning system according to claim 2, wherein The first cleaning assembly includes a connecting pipe assembly, a floor brush assembly, and a dust cup assembly as the target assembly. The first cleaning device is a vacuum cleaner. The second cleaning assembly further includes a clean water tank assembly, which is installed on the main body assembly. The second cleaning device is a fabric cleaning machine.