Electric cleaning mop

By designing an electric cleaning mop, the problem of inconvenient mop use is solved by using a drive component to rotate the wiping parts and the movable blade. This achieves automatic dehydration and structural simplification, improves transmission efficiency and waterproof performance, and reduces costs.

CN223541864UActive Publication Date: 2025-11-14FOSHAN SHUNDE KANGDOU TECH CO LTD
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Patent Information

Application Number
CN202422063596.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-11-14
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

Existing mops require repeated rinsing and wringing during the cleaning process, which is inconvenient to use, and they are also complex in structure, expensive, and have low transmission efficiency.

Method used

An electric cleaning mop has been designed, including a mop handle, a connecting base, a wiping component, and a drive assembly. The drive assembly drives the wiping component to twist and the movable blade to flip, achieving automatic dehydration. This simplifies the transmission structure, reduces costs, and improves waterproof performance through sealing components.

Benefits of technology

It achieves automatic wringing function for mops, simplifies the structure, improves transmission efficiency and waterproof performance, and reduces the complexity and cost of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an electric cleaning mop which comprises a mop rod, a connecting base, a wiping piece and a driving assembly. The connecting base comprises a base body and movable hinges, and the multiple movable hinges can be connected to the base body in an up-down overturning mode. The wiping piece is respectively connected with the plurality of movable hinges; the driving assembly is arranged on the seat body, the output end of the driving assembly is in transmission connection with the wiping piece, and the driving assembly is used for twisting the wiping piece to drive the movable hinge to turn up and down relative to the seat body. The driving assembly is in transmission connection with the wiping piece, when the output end of the driving assembly rotates, the wiping piece rotates along with rotation of the output end of the driving assembly, the multiple movable hinges can be driven to turn over up and down relative to the base body while the wiping piece twists and deforms, and then dewatering and wringing of the wiping piece are achieved; the driving assembly is arranged on the seat body, so that a transmission structure between the driving assembly and the wiping piece can be reduced, the complexity of a product structure is reduced, the transmission efficiency and the transmission sensitivity are improved, and the cost is reduced.
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Description

Technical Field

[0001] This application relates to the field of cleaning appliance technology, and more particularly to an electric cleaning mop. Background Technology

[0002] A mop is a tool used for cleaning floors, typically consisting of a long handle and a mop head. When using it, the mop head is soaked in cleaning solution and then used to wipe the floor to remove dirt and dust. However, because the cleaning function of a mop is limited, it can only clean to a certain extent each time before it can no longer absorb water or dust. Continuing to use it without this limitation would be less effective. Therefore, each time a mop is used, it needs to be repeatedly rinsed and wrung out, making it very inconvenient to use. Utility Model Content

[0003] Therefore, it is necessary to provide an electric cleaning mop to address the aforementioned problems with mops.

[0004] This application discloses an electric cleaning mop, the mop comprising a mop handle, a connecting base, a wiping component, and a drive assembly;

[0005] The connecting base includes a base body and multiple movable pages, which can be flipped up and down and connected to the base body.

[0006] The wiping device is connected to each of the multiple active pages;

[0007] The drive assembly is mounted on the base, and the output end of the drive assembly is connected to the wiping member. The drive assembly is used to twist the wiping member to drive the movable page to flip up and down relative to the base.

[0008] The electric cleaning mop disclosed in this application includes a mop handle, a connecting base, a wiping component, and a drive assembly. The connecting base includes a base body and multiple movable blades that can be flipped up and down and connected to the base body. The wiping component is connected to the multiple movable blades. When the wiping component is twisted and deformed, it can cause the movable blades to flip up and down relative to the base body. The drive assembly is connected to the wiping component through a transmission connection. When the output end of the drive assembly rotates, the wiping component rotates along with the output end of the drive assembly, thereby causing the wiping component to twist and deform. The deformation of the wiping component can cause the multiple movable blades to flip up and down relative to the base body, thereby achieving the dehydration and wringing of the wiping component. By setting the drive assembly on the base body, the transmission structure between the drive assembly and the wiping component can be reduced, which not only reduces the complexity of the product structure, improves transmission efficiency and transmission sensitivity, but also reduces costs.

[0009] In one embodiment, the mop handle is a telescopic structure.

[0010] In one embodiment, the base has a mounting cavity and a first opening communicating with the mounting cavity, the drive assembly is located in the mounting cavity, and the output end of the drive assembly passes through the first opening and is connected to the wiping member in a transmission connection.

[0011] In one embodiment, a first seal is provided between the output end of the drive component and the first opening, the first seal being used to seal the gap between the output end of the drive component and the first opening.

[0012] The electric cleaning mop in the above embodiments further defines a first seal between the output end of the drive component and the first opening. Based on the fact that the first seal can seal the gap between the output end of the drive component and the first opening, the waterproof performance and service life of the drive component are improved.

[0013] In one embodiment, the base includes an upper housing and a lower housing, the upper housing and the lower housing are detachably connected, the upper housing at least partially encloses the lower housing to form the mounting cavity, and the lower housing has the first opening.

[0014] The electric cleaning mop in the above embodiments further defines the base as being composed of a detachable upper shell and a lower shell connected together, which not only facilitates the installation of the drive component during product assembly, but also facilitates the future maintenance and replacement of the drive component.

[0015] In one embodiment, a second seal is provided between the upper housing and the lower housing, the second seal being used to seal the gap between the upper housing and the lower housing.

[0016] The electric cleaning mop in the above embodiments further includes a second seal between the upper and lower housings. This second seal can seal the gap between the upper and lower housings, thereby improving the waterproof performance and service life of the drive assembly.

[0017] In one embodiment, the electric cleaning mop further includes a battery module disposed in a first cavity formed inside the mop handle. The connector also has a second opening communicating with the mounting cavity. The battery module is electrically connected to the drive assembly via a conductive wire. One end of the conductive wire is connected to the battery module, and the other end passes through the second opening and extends into the mounting cavity to connect with the drive assembly. A third seal is provided between the conductive wire and the second opening.

[0018] The electric cleaning mop in the above embodiment further includes a battery module that supplies power to the drive assembly, which is installed in a first cavity formed inside the mop handle. The battery module is electrically connected to the drive assembly through a conductive wire. When the conductive wire is connected to the drive assembly, it passes through a second opening that communicates with the mounting cavity. By providing a third sealing element at the second opening, the gap between the conductive wire and the second opening can be sealed to improve the waterproof performance and service life of the drive assembly.

[0019] In one embodiment, the electric cleaning mop further includes a control device disposed on the mop handle and electrically connected to the drive assembly, the control device being used to control the operating mode of the drive assembly.

[0020] The electric cleaning mop in the above embodiments is further defined as having a control device on the mop handle. Based on the fact that the control device can receive user commands to change the working mode of the drive component, it can achieve different dehydration effects on the wiping component.

[0021] In one embodiment, the drive assembly includes a motor and an adapter, the rotating shaft of the motor is connected to the adapter for transmission, and the wiping member is provided with a snap-fit ​​structure that snaps into the adapter.

[0022] The electric cleaning mop in the above embodiments further specifies that the drive assembly consists of at least a motor and an adapter. The wiping component is provided with a snap-fit ​​structure that engages with the adapter. When the motor rotates, the rotating shaft of the motor drives the adapter to rotate synchronously, and then the adapter drives the wiping component to twist, thereby achieving dehydration and wringing.

[0023] In one embodiment, a steering connector is provided between the mop handle and the base, the steering connector being connected to both the mop handle and the base, and the mop handle being able to flip up and down relative to the base via the steering connector.

[0024] The electric cleaning mop in the above embodiments further includes a rotating component between the mop handle and the base. Through this rotating connector, the mop handle can be flipped up and down relative to the base, thereby enabling the mop of this application to perform flexible cleaning on complex terrain.

[0025] In one embodiment, the mop handle, the steering connector, and the seat are connected in sequence. The mop handle can be flipped up and down relative to the steering connector in a first direction, and the steering connector can be flipped up and down relative to the seat in a second direction. Attached Figure Description

[0026] Figure 1 A perspective view of an electric cleaning mop in one embodiment;

[0027] Figure 2 This is a cross-sectional view of an electric cleaning mop in one embodiment;

[0028] Figure 3 This is a schematic diagram of the assembly of the drive component and the connector in one embodiment.

[0029] Figure label:

[0030] 10. Mop handle, 101. First cavity;

[0031] 20 Connecting seat, 21 Seat body, 22 Movable leaf, 201 Mounting cavity, 202 First opening, 203 Second opening, 211 Upper housing, 212 Lower housing;

[0032] 30 wipes;

[0033] 40 Drive assembly, 41 Motor, 42 Adapter;

[0034] 50 Battery module; 60 Control device; 70 Steering connector;

[0035] 81 First seal, 82 Second seal, 83 Third seal. Detailed Implementation

[0036] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0037] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate for the embodiments of this application described herein.

[0038] like Figures 1 to 3 As shown, this embodiment provides an electric cleaning mop, including:

[0039] Mop handle 10;

[0040] Connector 20 includes base 21 and movable page 22. There are multiple movable pages 22, which can be flipped up and down and connected to base 21.

[0041] Wiping component 30, which is connected to multiple active pages 22 respectively;

[0042] The drive assembly 40 is mounted on the base 21. The output end of the drive assembly 40 is connected to the wiping member 30. The drive assembly 40 is used to twist the wiping member 30 to drive the movable page 22 to flip up and down relative to the base 21.

[0043] The mop handle 10 may be, but is not limited to, a metal or non-metal casing. For example, the mop handle 10 may have a plastic casing. The mop handle 10 may be a long, cylindrical casing. The mop handle 10 may have a hollow interior forming a first cavity 101, which can be used to install the battery module 50 and the control device 60.

[0044] The movable page 22 can be flipped up and down relative to the base 21. For example, the movable page 22 and the base 21 can be rotatably connected via a pivot pin. The movable page 22 can be connected to the wiping component 30 via clips, straps, Velcro, or other means.

[0045] The number of active pages 22 can be multiple. For example, there are four active pages 22, which are distributed at intervals along the central axis of the base 21, and are rotatably connected to the base 21. Specifically, the active pages 22 can be flipped up and down relative to the base 21 to form at least a first position and a second position. When the active page 22 is in the first position, the wiping member 30 is in an unfolded state. When the active page 22 is flipped from the first position to the second position, the wiping member 30 is in a wringing state.

[0046] The drive assembly 40 can be used to twist the wiping member 30. Specifically, the output end of the drive assembly 40 is connected to the wiping member 30. When the output end of the drive assembly 40 rotates, the wiping member 30 rotates along with the output end of the drive assembly 40, thereby causing the wiping member 30 to twist and deform. While the wiping member 30 is deformed, it can drive multiple movable pages 22 to rotate from the first position to the second position, thereby realizing the dehydration and wringing of the wiping member 30.

[0047] The electric cleaning mop in the above embodiment includes a mop handle 10, a connecting base 20, a wiping component 30, and a drive assembly 40. The connecting base 20 includes a base 21 and multiple movable blades 22 that can be flipped up and down and connected to the base 21. The wiping component 30 is connected to the multiple movable blades 22 respectively. When the wiping component 30 is twisted and deformed, it can drive the movable blades 22 to flip up and down relative to the base 21. The drive assembly 40 is connected to the wiping component 30 through a transmission. When the output end of the drive assembly 40 rotates, the wiping component 30 rotates with the output end of the drive assembly 40, thereby causing the wiping component 30 to twist and deform. When the wiping component 30 deforms, it can drive the multiple movable blades 22 to flip up and down relative to the base 21, thereby realizing the dehydration and wringing of the wiping component 30. By setting the drive assembly 40 on the base 21, the transmission structure between the drive assembly 40 and the wiping component 30 can be reduced, which not only reduces the complexity of the product structure and improves the transmission efficiency and transmission sensitivity, but also reduces the cost.

[0048] In addition to the features of the above embodiments, this embodiment further specifies that the mop handle 10 is a telescopic structure.

[0049] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the base 21 has an installation cavity 201 and a first opening 202 communicating with the installation cavity 201, the drive component 40 is located in the installation cavity 201, and the output end of the drive component 40 passes through the first opening 202 and is connected to the wiping member 30 in a transmission manner.

[0050] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a first sealing member 81 is provided between the output end of the drive component 40 and the first opening 202, and the first sealing member 81 is used to seal the gap between the output end of the drive component 40 and the first opening 202.

[0051] In the above embodiments, a first sealing element 81 is further provided between the output end of the drive component 40 and the first opening 202. Based on the fact that the first sealing element 81 can seal the gap between the output end of the drive component 40 and the first opening 202, the waterproof performance and service life of the drive component 40 are improved.

[0052] The first seal 81 can be an annular sealing ring. The first seal 81 can be sleeved on the adapter 42 of the drive assembly 40. The first seal 81 can seal the gap between the adapter 42 and the first opening 202, so as to prevent water from entering the mounting cavity 201 and damaging the drive assembly 40 when the mop is being cleaned or washed.

[0053] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the seat 21 includes an upper shell 211 and a lower shell 212, the upper shell 211 and the lower shell 212 are detachably connected, the upper shell 211 at least partially surrounds the lower shell 212 to form an installation cavity 201, and the lower shell 212 has a first opening 202.

[0054] In the above embodiments, the base 21 is further defined as being composed of an upper shell 211 and a lower shell 212 that are detachable from each other. This not only facilitates the installation of the drive component 40 during product assembly, but also facilitates the maintenance and replacement of the drive component 40 in the future.

[0055] The upper housing 211 and the lower housing 212 can be detachably connected by means of threads, bolts, snaps, etc. After the connection is achieved, the upper housing 211 and the lower housing 212 enclose each other to form the mounting cavity 201.

[0056] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a second sealing member 82 is provided between the upper housing 211 and the lower housing 212, and the second sealing member 82 is used to seal the gap between the upper housing 211 and the lower housing 212.

[0057] In the above embodiment, a second sealing member 82 is further provided between the upper housing 211 and the lower housing 212. Based on the fact that the second sealing member 82 can seal the gap between the upper housing 211 and the lower housing 212, the waterproof performance and service life of the drive assembly 40 are improved.

[0058] The second seal 82 can be an annular sealing ring, which can be disposed on the annular groove of the lower housing 212. The second seal 82 can seal the gap between the upper housing 211 and the lower housing 212, preventing water from entering the mounting cavity 201 and damaging the drive assembly 40 when the mop is being cleaned or washed.

[0059] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the electric cleaning mop also includes a battery module 50, the battery module 50 is disposed in a first cavity 101 formed inside the mop handle 10, the connecting seat 20 is also provided with a second opening 203 communicating with the mounting cavity 201, the battery module 50 is electrically connected to the drive assembly 40 through a conductive wire, one end of the conductive wire is connected to the battery module 50, and the other end passes through the second opening 203 and extends into the mounting cavity 201 to be connected to the drive assembly 40, and a third sealing member 83 is provided between the conductive wire and the second opening 203.

[0060] In the above embodiment, a battery module 50 for powering the drive assembly 40 is provided in the first cavity 101 formed inside the mop handle 10. The battery module 50 is electrically connected to the drive assembly 40 through a conductive wire. When the conductive wire is connected to the drive assembly 40, it passes through the second opening 203 that communicates with the mounting cavity 201. By providing a third sealing member 83 at the second opening 203, the gap between the conductive wire and the second opening 203 can be sealed to improve the waterproof performance and service life of the drive assembly 40.

[0061] The battery module 50 can be used to power the drive assembly 40. The battery module 50 can be a rechargeable lithium battery pack, thus enabling the mop of this application to be used flexibly in multiple situations.

[0062] The third seal 83 can be an annular sealing ring. The third seal 83 can be disposed at the second opening 203. The third seal 83 can be sleeved around the conductive wire. The third seal 83 can seal the gap between the conductive wire and the second opening 203, so as to prevent water from entering the mounting cavity 201 and damaging the drive assembly 40 when the mop is being cleaned or washed.

[0063] like Figure 2 In addition to the features of the above embodiments, this embodiment further specifies that: the electric cleaning mop also includes a control device 60, which is disposed on the mop handle 10, electrically connected to the drive assembly 40, and used to control the working mode of the drive assembly 40.

[0064] In the above embodiments, a control device 60 is further provided on the mop handle 10. Based on the fact that the control device 60 can receive user commands to change the working mode of the drive component 40, the wiping component 30 can achieve different dehydration effects.

[0065] The control device 60 can receive user commands to control the drive component 40 to operate in different working modes. Specifically, the control device 60 includes a human-machine interface panel and a control circuit panel. The human-machine interface panel can receive user commands through buttons, voice, etc., and the control circuit panel sends control signals according to the user commands to change the working mode of the drive component 40, such as changing the start / stop of the drive component 40, the output power, etc.

[0066] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the drive assembly 40 includes a motor 41 and an adapter 42, the rotation shaft of the motor 41 is connected to the adapter 42 for transmission, and the wiping member 30 is provided with a snap-fit ​​structure, which snaps into the adapter 42.

[0067] In the above embodiments, the drive assembly 40 is further defined as consisting of at least a motor 41 and an adapter 42. The wiping member 30 is provided with a snap-fit ​​structure that snaps into the adapter 42. When the motor 41 rotates, the rotating shaft of the motor 41 drives the adapter 42 to rotate synchronously, and then the adapter 42 drives the wiping member 30 to twist, thereby achieving dehydration and wringing.

[0068] The adapter 42 is connected to the rotating shaft of the motor 41 via a transmission connection. When the motor 41 rotates, it can drive the rotating shaft to rotate synchronously. The motor 41 can rotate forward and reverse. For example, when the motor 41 rotates forward, the wiping member 30 is driven by the adapter 42 to twist clockwise, and the movable page 22 flips from the first position to the second position. At this time, the wiping member 30 is in a wringing state. When the motor 41 changes from forward to reverse, the wiping member 30 twists counterclockwise, and the movable page 22 flips from the second position to the first position. At this time, the wiping member 30 is in an unfolded state.

[0069] In addition to the features of the above embodiments, this embodiment further specifies that: a steering connector 70 is provided between the mop handle 10 and the seat 21, the steering connector 70 is connected to the mop handle 10 and the seat 21 respectively, and the mop handle 10 can be flipped up and down relative to the seat 21 through the steering connector 70.

[0070] In the above embodiments, a rotating component is further provided between the mop handle 10 and the seat 21. Through the steering connector 70, the mop handle 10 can be flipped up and down relative to the seat 21, thereby enabling the mop of this application to perform flexible cleaning in complex terrain.

[0071] like Figure 1 and Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the mop handle 10, the steering connector 70 and the seat 21 are connected in sequence, the mop handle 10 can be flipped up and down in a first direction relative to the steering connector 70, and the steering connector 70 can be flipped up and down in a second direction relative to the seat 21.

[0072] The steering connector 70 is a hollow shell structure, allowing the conductive wires led out from the first cavity 101 to pass through the central area of ​​the steering connector 70 and connect to the drive assembly 40. The steering connector 70 can be flipped up and down relative to the mop handle 10 and the seat 21 in different directions. For example, the mop handle 10 can be flipped up and down relative to the steering connector 70 in a first direction, which can refer to the front-to-back direction; the steering connector 70 can be flipped up and down relative to the seat 21 in a second direction, which can refer to the left-to-right direction. Based on the above design, the mop handle 10 can rotate at multiple angles relative to the seat 21 to meet the cleaning needs of complex terrains.

[0073] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0074] The above embodiments merely illustrate several implementation methods of this application, and their descriptions are relatively specific and detailed. However, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. An electric cleaning mop, characterized in that, include: Mop handle (10); The connecting seat (20) includes a base (21) and a movable page (22). The number of movable pages (22) is multiple, and the multiple movable pages (22) can be flipped up and down and connected to the base (21). Wiping element (30), the wiping element (30) is connected to a plurality of the active pages (22); A drive assembly (40) is disposed on the base (21). The base (21) has an installation cavity (201) and a first opening (202) communicating with the installation cavity (201). The drive assembly (40) is located inside the installation cavity (201). The output end of the drive assembly (40) passes through the first opening (202) and is connected to the wiping member (30) in a transmission manner. The drive assembly (40) is used to twist the wiping member (30) so as to drive the movable page (22) to flip up and down relative to the base (21). The drive assembly (40) includes a motor (41) and an adapter (42). The rotating shaft of the motor (41) is connected to the adapter (42) for transmission. The wiping member (30) is provided with a snap-fit ​​structure, which snaps into the adapter (42).

2. The electric cleaning mop according to claim 1, characterized in that, A first seal (81) is provided between the output end of the drive assembly (40) and the first opening (202), and the first seal (81) is used to seal the gap between the output end of the drive assembly (40) and the first opening (202).

3. The electric cleaning mop according to claim 1, characterized in that, The seat (21) includes an upper shell (211) and a lower shell (212). The upper shell (211) and the lower shell (212) are detachably connected. The upper shell (211) at least partially surrounds the lower shell (212) to form the mounting cavity (201). The lower shell (212) has the first opening (202).

4. The electric cleaning mop according to claim 3, characterized in that, A second sealing element (82) is provided between the upper housing (211) and the lower housing (212), and the second sealing element (82) is used to seal the gap between the upper housing (211) and the lower housing (212).

5. The electric cleaning mop according to claim 1, characterized in that, It also includes a battery module (50), which is disposed in a first cavity (101) formed inside the mop handle (10). The connector (20) is also provided with a second opening (203) communicating with the mounting cavity (201). The battery module (50) is electrically connected to the drive assembly (40) through a conductive wire. One end of the conductive wire is connected to the battery module (50), and the other end passes through the second opening (203) and extends into the mounting cavity (201) to connect with the drive assembly (40). A third seal (83) is provided between the conductive wire and the second opening (203).

6. The electric cleaning mop according to claim 1, characterized in that, It also includes a control device (60) disposed on the mop handle (10), the control device (60) being electrically connected to the drive assembly (40), and the control device (60) being used to control the working mode of the drive assembly (40).

7. The electric cleaning mop according to claim 1, characterized in that, A steering connector (70) is provided between the mop handle (10) and the seat (21). The steering connector (70) is connected to the mop handle (10) and the seat (21) respectively. The mop handle (10) can be flipped up and down relative to the seat (21) through the steering connector (70).

8. The electric cleaning mop according to claim 7, characterized in that, The mop handle (10), the steering connector (70), and the seat (21) are connected in sequence. The mop handle (10) can be flipped up and down in a first direction relative to the steering connector (70), and the steering connector (70) can be flipped up and down in a second direction relative to the seat (21).