Multifunctional mop

By designing a multi-functional mop that combines a wringing device and a water spraying device, the problem of existing mops requiring manual wringing and frequent wetting is solved, achieving automatic wringing and water spraying functions, thus improving the cleaning effect and convenience of mopping.

CN223541889UActive Publication Date: 2025-11-14FOSHAN SHUNDE KANGDOU TECH CO LTD
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Patent Information

Application Number
CN202423136499.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-14
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Current mop cleaning methods rely on manual wringing and require bending over, which is difficult for the elderly and children to do. In addition, the mop cloth needs to be frequently wetted to achieve a better cleaning effect, and users need to wet the mop cloth during the mopping process.

Method used

Design a multi-functional mop, comprising a housing assembly, a wringing device, a wiping component, a water spraying device, and a control device. The wiping component is driven to flip and wring dry via a drive assembly, the water spraying device sprays water, and the control device controls the wringing and water spraying functions on the handle. The increased lever arm length reduces the user's operating force, the battery assembly provides power, and the conductive components enable detachable connections to improve flexibility.

Benefits of technology

It features automatic wringing of the wiping parts, reducing manual wringing operations, automatic cleaning effect, and the ability to spray water on the target area to improve the cleaning effect of mopping, enhancing the flexibility and convenience of the mop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multifunctional mop which comprises a shell assembly, a wringing device, a wiping piece, a water spraying device and a control device. The shell assembly comprises a handle and a main rod body, the wringing device and the water spraying device are installed on the main rod body, the length of a force arm is increased, and therefore the acting force needed when the mop is held by hand is reduced, the wiping piece is connected with a movable hinge of the wringing device, and the output end of the driving assembly is in transmission connection with the wiping piece. The driving assembly drives the wiping piece to twist and enables the movable hinge to turn over up and down relative to the connecting base so as to twist the wiping piece dry, and the water spraying device sprays water to a target area. The control device is arranged on the handle, a user controls the wringing device and the water spraying device on the handle through the first controller and the second controller, the user can conveniently switch between the wringing function and the water spraying function back and forth, the user does not need to manually wring the wiping piece to achieve automatic cleaning, and the mop has the water spraying function and is convenient to use. Water can be sprayed to the area before mopping, and the mopping cleaning effect is improved.
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Description

Technical Field

[0001] This application relates to the field of cleaning tools technology, and more particularly to a multifunctional mop. Background Technology

[0002] Existing mop cleaning methods are primarily manual, requiring considerable force to wring the mop dry and necessitating bending over. This can be challenging for the elderly or young children due to hand weakness. The new invention effectively solves these problems. Furthermore, users need to wet the mop cloth frequently for optimal cleaning results. Utility Model Content

[0003] Therefore, it is necessary to provide a multi-functional mop to address the aforementioned problems.

[0004] The multi-functional mop of this application includes:

[0005] A housing assembly, the housing assembly including a handle and a main body connected to the handle;

[0006] A wringing device, comprising a drive assembly, a connecting seat, and multiple movable blades, wherein the drive assembly is disposed on the main rod, the connecting seat is rotatably connected to the main rod, and the multiple movable blades are flipped up and down and connected to the connecting seat;

[0007] A wiping component, which is connected to the active page, and the output end of the drive assembly is connected to the wiping component in a transmission manner;

[0008] A water spraying device is mounted on the main pole.

[0009] A control device is provided on the handle. The control device includes a first controller and a second controller. The first controller is used to control the drive assembly to wring out the wiping component, and the second controller is used to control the water spraying device to spray water onto the target area.

[0010] The multi-functional mop disclosed in this application includes a housing assembly, a wringing device, a wiping component, a water spraying device, and a control device. The housing assembly includes a handle and a main shaft. By mounting the wringing and water spraying devices on the main shaft, the lever arm length is increased, thereby reducing the force required by the user to hold the mop. The wiping component is connected to the movable flap of the wringing device. The output end of a drive assembly is connected to the wiping component for transmission. The drive assembly drives the wiping component to twist and causes the movable flap to flip up and down relative to the connecting seat to wring the wiping component. The water spraying device is used to spray water onto the target area. The control device is located on the handle, allowing the user to directly control the wringing and water spraying devices via a first controller and a second controller, respectively. This facilitates switching between wringing and water spraying functions, eliminating the need for manual wringing of the wiping component for automatic cleaning. Furthermore, the mop's water spraying function sprays water onto the area before mopping, improving the cleaning effect.

[0011] In one embodiment, the mop further includes a battery assembly disposed on the handle, and the first controller includes control buttons and a control circuit board, wherein the battery assembly, the drive assembly, and the control buttons are electrically connected to the control circuit board.

[0012] The multi-functional mop in the above embodiments further specifies that the control circuit board is electrically connected to both the battery assembly and the drive assembly. The battery assembly can output operating voltage to the drive assembly through the control circuit board, eliminating the need for a power cord and improving the mop's flexibility. Furthermore, the control buttons are electrically connected to the control circuit board and are mounted on the handle. Users can control the drive assembly in real time while holding the handle, such as controlling its start / stop and output power.

[0013] In one embodiment, the main rod body includes a first rod body, a second rod body, and a first housing. The handle, the first rod body, the second rod body, the first housing, and the connecting seat are connected in sequence. The first rod body and the second rod body are detachably connected. A first conductive element and a second conductive element are respectively provided on the first rod body and the second rod body. The first conductive element is electrically connected to the control circuit board, and the second conductive element is electrically connected to the drive assembly.

[0014] The multi-functional mop in the above embodiments further defines the detachability of the first and second rods, thereby reducing the space occupied by the product during transportation and storage. With a first conductive element and a second conductive element respectively provided on the first and second rods, a conductive channel is established when the first and second rods are assembled, as the first and second conductive elements abut against each other.

[0015] In one embodiment, the water spraying device includes a water tank, a piston, a drive rod, a first spring, a sealing cylinder, a first one-way valve, and a nozzle. The water tank is connected to the sealing cylinder via the first one-way valve, and the nozzle is connected to the sealing cylinder. The piston and the first spring are installed inside the sealing cylinder, with both ends of the first spring connected to the piston and the sealing cylinder, respectively. The drive rod is connected to the piston to drive the piston to slide within the sealing cylinder. The piston forms at least a first position and a second position within the sealing cylinder. When the piston is in the first position, the first one-way valve is open; when the piston is in the second position, the first one-way valve is closed.

[0016] The multi-functional mop in the above embodiment further defines the piston sliding inside the sealed cylinder to change the pressure inside the sealed cylinder, thereby controlling the opening and closing of the first one-way valve. When the first one-way valve is open, the liquid in the water tank can be transferred to the sealed cylinder through the first one-way valve. When the second one-way valve is closed, the connection between the water tank and the sealed cylinder is closed.

[0017] In one embodiment, the drive rod includes a first moving rod and a second moving rod, the first moving rod and the second moving rod are detachably connected, the second moving rod is connected to the piston, and the second controller is an operating trigger, which is rotatably connected to the handle to drive the first moving rod to slide in the main rod body.

[0018] The multi-functional mop in the above embodiments further specifies that the operating trigger is rotatably mounted on the handle. When the user presses the operating trigger, the trigger rotates relative to the handle, abutting against the first rod and driving the first rod to slide within the main rod body. This causes the piston to slide within the sealing cylinder, changing the pressure within the sealing cylinder. The detachable connection between the first and second rods reduces the space occupied by the disassembled drive rod during transportation and storage.

[0019] In one embodiment, a second one-way valve is provided at the opening of the water tank, and a connecting part is provided between the water tank and the sealing cylinder. An installation groove and a liquid guiding channel communicating with the installation groove are formed in the connecting part. The second one-way valve is movably inserted into the installation groove, and the water tank is connected to the liquid guiding channel through the second one-way valve. The first one-way valve is provided at the liquid outlet end of the liquid guiding channel and extends into the sealing cylinder.

[0020] The multi-functional mop in the above embodiment further specifies that a second one-way valve is provided on the opening of the water tank. This second one-way valve prevents the water tank from leaking during the inverted installation groove process, allowing for flexible assembly between the water tank and the sealing cylinder and reducing the difficulty of operation.

[0021] In one embodiment, the second one-way valve includes a valve body, a sealing plug, and a second spring. The valve body has an inlet and an outlet. The inlet is connected to the water tank. The sealing plug is located at the outlet. The two ends of the second spring are connected to the valve body and the sealing plug, respectively. A protruding post is formed on the mounting groove. When the valve body is inserted into the mounting groove, the protruding post abuts against the sealing plug and drives the sealing plug away from the outlet.

[0022] The multi-functional mop in the above embodiment further defines the specific structure of the second one-way valve. The mounting groove is provided with a protruding post, so that after the valve body is inserted into the mounting groove, the protruding post abuts against the sealing plug and overcomes the elastic force of the second spring, so that the sealing plug is moved away from the water outlet, thereby realizing the connection between the water tank and the liquid guiding channel.

[0023] In one embodiment, the drive assembly includes a drive motor and a transmission shaft. The drive motor is electrically connected to the control circuit board, and both ends of the transmission shaft are respectively connected to the rotating shaft of the drive motor and the wiping component.

[0024] In one embodiment, the drive motor is equipped with an encoder, which is electrically connected to the control circuit board. The encoder is used to control the direction and number of rotations of the drive motor.

[0025] In one embodiment, the handle is provided with a charging interface, which is electrically connected to the battery assembly. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of a multi-functional mop in one embodiment;

[0027] Figure 2 An exploded view of a portion of the structure of a multi-functional mop in one embodiment;

[0028] Figure 3 This is a cross-sectional view of a multi-functional mop in one embodiment;

[0029] Figure 4 for Figure 3 Enlarged view of section A in the middle;

[0030] Figure 5 for Figure 3 Enlarged view of section B;

[0031] Figure 6 for Figure 3 Enlarged view of section C.

[0032] Figure label:

[0033] 10 Housing assembly, 11 Handle, 12 Main rod, 121 First rod, 122 Second rod, 123 First housing, 124 Connecting sleeve, 110 Charging interface;

[0034] 20 Wringing device, 21 Drive assembly, 211 Drive motor, 212 Drive shaft, 22 Connecting seat, 23 Movable leaf;

[0035] 30 wipes;

[0036] 40 Spraying device, 41 Water tank, 42 ​​Piston, 43 Drive rod, 431 First moving rod, 432 Second moving rod, 44 First spring, 45 Sealing cylinder, 46 First one-way valve, 47 Nozzle, 48 Second one-way valve, 481 Valve body, 482 Sealing plug, 483 Second spring, 49 Connecting part, 491 Protruding column, 401 Water inlet, 402 Water outlet, 403 Mounting groove, 404 Liquid guiding channel;

[0037] 50 Control device, 51 First controller, 52 Second controller;

[0038] 60 battery assembly. Detailed Implementation

[0039] 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.

[0040] 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.

[0041] like Figures 1 to 6 As shown, this embodiment provides a multi-functional mop, including:

[0042] The housing assembly 10 includes a handle 11 and a main rod 12 connected to the handle 11.

[0043] The wringing device 20 includes a drive assembly 21, a connecting seat 22, and multiple movable blades 23. The drive assembly 21 is mounted on the main rod 12, the connecting seat 22 is rotatably connected to the main rod 12, and the multiple movable blades 23 are flipped up and down and connected to the connecting seat 22.

[0044] Wiping component 30 is connected to the active page 23, and the output end of the drive component 21 is connected to the wiping component 30 in a transmission connection.

[0045] A water spraying device 40 is installed on the main rod body 12.

[0046] The control device 50 is mounted on the handle 11. The control device 50 includes a first controller 51 and a second controller 52. The first controller 51 is used to control the drive assembly 21 to wring out the wiping piece 30, and the second controller 52 is used to control the water spraying device 40 to spray water onto the target area.

[0047] The multi-functional mop in the above embodiments includes a housing assembly 10, a wringing device 20, a wiping component 30, a water spraying device 40, and a control device 50. The housing assembly 10 includes a handle 11 and a main shaft 12. By mounting the wringing device 20 and the water spraying device 40 on the main shaft 12, the lever arm length is increased, thereby reducing the force exerted by the user holding the mop. The wiping component 30 is connected to the movable flap 23 of the wringing device 20. The output end of the drive assembly 21 is connected to the wiping component 30 via a transmission connection. The drive assembly 21 is used to drive the wiping component 30 to twist and move. Page 23 shows the relative connecting seat 22 flipped up and down to wring out the wiping part 30, and the water spraying device 40 is used to spray water on the target area; the control device 50 is set on the handle 11, and the user can directly control the wringing device 20 and the water spraying device 40 through the first controller 51 and the second controller 52 respectively on the handle 11, which makes it convenient for the user to switch back and forth between the wringing and water spraying functions. Not only does it achieve automatic cleaning without the user having to manually wring out the wiping part 30, but the mop also has a water spraying function, which can spray water on the area before mopping to improve the cleaning effect of mopping.

[0048] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the mop also includes a battery assembly 60, the battery assembly 60 is disposed on the handle 11, the first controller 51 includes control keys and a control circuit board, and the battery assembly 60, the drive assembly 21 and the control keys are electrically connected to the control circuit board respectively.

[0049] In the above embodiments, the control circuit board is further defined to be electrically connected to the battery assembly 60 and the drive assembly 21 respectively. The battery assembly 60 can output operating voltage to the drive assembly 21 through the control circuit board, without being restricted by a power cord, thus improving the flexibility of the mop. Furthermore, the control button is electrically connected to the control circuit board and is mounted on the handle 11. When the user holds the handle 11, they can control the drive assembly 21 in real time through the control button, such as controlling the start / stop and output power of the drive assembly 21.

[0050] like Figures 1 to 3 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the main rod 12 includes a first rod 121, a second rod 122 and a first housing 123, the handle 11, the first rod 121, the second rod 122, the first housing 123 and the connecting seat 22 are connected in sequence, the first rod 121 and the second rod 122 are detachably connected, the first rod 121 and the second rod 122 are respectively provided with a first conductive element and a second conductive element, the first conductive element is electrically connected to the control circuit board, and the second conductive element is electrically connected to the drive assembly 21.

[0051] The above embodiments further define that the first rod 121 and the second rod 122 are detachable from each other, thereby reducing the space occupied by the product during transportation and storage. Since the first rod 121 and the second rod 122 are respectively provided with a first conductive element and a second conductive element, when the first rod 121 and the second rod 122 are assembled, the first conductive element and the second conductive element abut against each other to establish a conductive channel.

[0052] The first rod 121 and the second rod 122 are detachably connected. For example, the first rod 121 and the second rod 122 can be detachably connected via a threaded connection, a connecting sleeve 124, or a snap-fit. For instance, a connecting sleeve 124 is provided between the first rod 121 and the second rod 122. The first rod 121 and the second rod 122 are respectively inserted into both ends of the connecting sleeve 124. The connecting sleeve 124 has two through holes, and the first rod 121 and the second rod 122 are respectively provided with elastic protrusions. When the first rod 121 and the second rod 122 are inserted into the connecting sleeve 124, the elastic protrusions engage with the through holes, thereby achieving a detachable connection between the first rod 121 and the second rod 122. It should be noted that the snap-fit ​​can be one or a combination of an elastic snap-fit ​​or a rotary snap-fit.

[0053] Both the first and second conductive components are made of conductive materials. For example, both the first and second conductive components are made of metal. Specifically, the first conductive component is a metal spring pin, and the second conductive component is a metal sheet. When the metal spring pin and the metal sheet come into contact, an electrical path is established.

[0054] like Figure 1 , Figure 3 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the water spraying device 40 includes a water tank 41, a piston 42, a drive rod 43, a first spring 44, a sealing cylinder 45, a first one-way valve 46, and a nozzle 47. The water tank 41 is connected to the sealing cylinder 45 through the first one-way valve 46, and the nozzle 47 is connected to the sealing cylinder 45.

[0055] The piston 42 and the first spring 44 are installed inside the sealing cylinder 45. The two ends of the first spring 44 are connected to the piston 42 and the sealing cylinder 45 respectively. The drive rod 43 is connected to the piston 42 to drive the piston 42 to slide inside the sealing cylinder 45. The piston 42 forms at least a first position and a second position inside the sealing cylinder 45. When the piston 42 is in the first position, the first one-way valve 46 is open; when the piston 42 is in the second position, the first one-way valve 46 is closed.

[0056] In the above embodiment, the piston 42 sliding inside the sealing cylinder 45 can change the pressure inside the sealing cylinder 45, thereby controlling the opening and closing of the first one-way valve 46. When the first one-way valve 46 is open, the liquid in the water tank 41 can be transferred to the sealing cylinder 45 through the first one-way valve 46. When the second one-way valve 48 is closed, the connection between the water tank 41 and the sealing cylinder 45 is closed.

[0057] The first one-way valve 46 controls whether the water tank 41 and the sealing cylinder 45 are connected. Specifically, when the pressure in the water tank 41 is greater than the pressure in the sealing cylinder 45, the first one-way valve 46 opens, connecting the water tank 41 and the sealing cylinder 45, and the liquid in the water tank 41 is transferred to the sealing cylinder 45 through the first one-way valve 46; when the pressure in the water tank 41 is less than the pressure in the sealing cylinder 45, the first one-way valve 46 closes, and the connection between the water tank 41 and the sealing cylinder 45 is closed. It should be noted that the first one-way valve 46 can be a silicone valve structure, which automatically opens and closes the valve disc based on the flow of the medium itself, thereby preventing backflow. When the medium flows in the forward direction, the valve disc opens; when the medium flows in the reverse direction, the valve disc closes, thus ensuring that the fluid can only flow in one direction.

[0058] The sealing cylinder 45 has a cylindrical shell structure, and the piston 42 is movably installed inside the sealing cylinder 45. The piston 42 can slide within the sealing cylinder 45, forming a first position and a second position. When the piston 42 is in the first position, the pressure inside the sealing cylinder 45 is less than the pressure inside the water tank 41, and the first one-way valve 46 is open. When the piston 42 slides from the first position to the second position, the gas cup inside the sealing cylinder 45 is compressed, the pressure inside the cylinder increases and becomes greater than the pressure inside the water tank 41, and the first one-way valve 46 is closed. The liquid inside the sealing cylinder 45 is discharged through the nozzle 47. Additionally, under the action of the first spring 44, the piston 42 can be reset from the second position to the first position using its elastic force.

[0059] like Figure 2 and Figure 3As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the drive rod 43 includes a first moving rod 431 and a second moving rod 432, the first moving rod 431 and the second moving rod 432 are detachably connected, the second moving rod 432 is connected to the piston 42, the second controller 52 is an operating trigger, and the second controller 52 is rotatably connected to the handle 11 to drive the first moving rod 431 to slide within the main rod body 12.

[0060] In the above embodiment, the operating trigger is further defined as being rotatably mounted on the handle 11. When the user presses the operating trigger, the operating trigger rotates relative to the handle 11, and the operating trigger abuts against the first rod 121, driving the first rod 121 to slide within the main rod 12. This causes the piston 42 to slide within the sealing cylinder 45, changing the pressure within the sealing cylinder 45. The detachable connection between the first rod 121 and the second rod 122 reduces the space occupied by the disassembled drive rod 43 during product transportation and storage.

[0061] like Figure 3 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a second one-way valve 48 is provided at the opening of the water tank 41, a connecting part 49 is provided between the water tank 41 and the sealing cylinder 45, an installation groove 403 and a liquid guiding channel 404 communicating with the installation groove 403 are formed in the connecting part 49, the second one-way valve 48 is movably inserted in the installation groove 403 and the water tank 41 is connected to the liquid guiding channel 404 through the second one-way valve 48, and a first one-way valve 46 is provided at the liquid outlet end of the liquid guiding channel 404 and extends into the sealing cylinder 45.

[0062] In the above embodiment, a second one-way valve 48 is provided on the opening of the water tank 41. The second one-way valve 48 prevents the water tank 41 from leaking during the inverted installation groove 403 process, allowing the water tank 41 and the sealing cylinder 45 to be flexibly assembled, reducing the difficulty of operation.

[0063] The second one-way valve 48 is used to control the opening and closing of the water tank 41. Specifically, when the second one-way valve 48 is open, the water tank 41 is connected to the liquid guiding channel 404 through the second one-way valve 48; when the second one-way valve 48 is closed, the connection between the water tank 41 and the liquid guiding channel 404 is closed. It should be noted that before being assembled with the connecting part 49, the second one-way valve 48 is in the closed state, so that no leakage will occur when the water tank 41 is inserted into the mounting groove 403. After the second one-way valve 48 is inserted into the mounting groove 403, the second one-way valve 48 is in the open state, and the water tank 41 normally supplies liquid to the sealing cylinder 45.

[0064] The connecting part 49 is a pipe housing structure for connecting the second one-way valve 48 and the sealing cylinder 45. Specifically, the connecting part 49 is provided with an installation groove 403 and a liquid guiding channel 404 communicating with the installation groove 403. After the second one-way valve 48 is inserted into the installation groove 403, the water tank 41 can be connected to the liquid guiding channel 404 through the second one-way valve 48. Moreover, a first one-way valve 46 is provided at the liquid outlet end of the liquid guiding channel 404, which can control whether the water tank 41 and the sealing cylinder 45 are connected by changing the pressure inside the sealing cylinder 45.

[0065] like Figure 3 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the second one-way valve 48 includes a valve body 481, a sealing plug 482 and a second spring 483. The valve body 481 has an inlet 401 and an outlet 402. The inlet 401 is connected to the water tank 41. The sealing plug 482 is located at the outlet 402. The two ends of the second spring 483 are respectively connected to the valve body 481 and the sealing plug 482. A protruding post 491 is formed on the mounting groove 403. When the valve body 481 is inserted into the mounting groove 403, the protruding post 491 abuts against the sealing plug 482 and drives the sealing plug 482 away from the outlet 402.

[0066] The above embodiments further define the specific structure of the second one-way valve 48. The mounting groove 403 is provided with a protruding post 491, so that after the valve body 481 is inserted into the mounting groove 403, the protruding post 491 abuts against the sealing plug 482 and overcomes the elastic force of the second spring 483, so that the sealing plug 482 is moved away from the water outlet 402, thereby realizing the connection between the water tank 41 and the liquid guiding channel 404.

[0067] The valve body 481 is a shell structure with openings at both ends, namely an inlet 401 and an outlet 402. When the second check valve 48 is assembled with the water tank 41, the inlet 401 is in communication with the water tank 41. A sealing plug 482 is provided at the outlet 402, and a second spring 483 is connected between the sealing plug 482 and the valve body 481. The elastic force of the second spring 483 causes the sealing plug 482 to block the outlet 402. A protruding post 491 is formed on the mounting groove 403. During the process of the valve body 481 being inserted into the mounting groove 403, the protruding post 491 abuts against the sealing plug 482, and the protruding post 491 drives the sealing plug 482 to move away from the outlet 402, so that the liquid in the water tank 41 can be discharged into the liquid guiding channel 404 through the outlet 402 on the valve body 481.

[0068] like Figure 3 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the drive assembly 21 includes a drive motor 211 and a transmission shaft 212, the drive motor 211 is electrically connected to the control circuit board, and the two ends of the transmission shaft 212 are respectively connected to the rotating shaft of the drive motor 211 and the wiping member 30.

[0069] In addition to the features of the above embodiments, this embodiment further specifies that: an encoder is provided on the drive motor 211, the encoder is electrically connected to the control circuit board, and the encoder is used to control the direction and number of rotations of the drive motor 211.

[0070] The encoder can be a PCBA with a Hall sensor and a hexagonal magnet. The encoder controls the direction and number of rotations of the drive motor 211. Specifically, when the wiping piece 30 needs to be wrung out, the encoder controls the drive motor 211 to rotate forward N times. The drive motor 211, through the transmission shaft 212, causes the wiping piece 30 to twist, and simultaneously the movable leaf 23 flips relative to the connecting seat 22. After the wiping piece 30 is wrung out, the encoder controls the drive motor 211 to rotate backward N times, causing the wiping piece 30 to unfold and return to its original state. It should be noted that the number of rotations N of the drive motor 211 can be set according to the twisting state of the wiping piece 30 and / or the flipping state of the movable leaf 23. It should also be noted that the Hall sensor can be replaced by a grating sensor, a gravity velocity sensor, a gyroscope, or other sensors.

[0071] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a charging interface 110 is provided on the handle 11, and the charging interface 110 is electrically connected to the battery assembly 60.

[0072] 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.

[0073] 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. A multi-functional mop, characterized in that, include: A housing assembly (10) including a handle (11) and a main rod (12) connected to the handle (11); The wringing device (20) includes a drive assembly (21), a connecting seat (22), and multiple movable blades (23). The drive assembly (21) is disposed on the main rod body (12). The connecting seat (22) is rotatably connected to the main rod body (12). The multiple movable blades (23) are flipped up and down and connected to the connecting seat (22). Wiping component (30), the wiping component (30) is connected to the active page (23), and the output end of the drive assembly (21) is connected to the wiping component (30) in a transmission manner; A water spraying device (40) is provided on the main rod body (12); A control device (50) is disposed on the handle (11). The control device (50) includes a first controller (51) and a second controller (52). The first controller (51) is used to control the drive assembly (21) to wring out the wiping piece (30), and the second controller (52) is used to control the water spraying device (40) to spray water on the target area.

2. The multifunctional mop according to claim 1, characterized in that, It also includes a battery assembly (60) disposed on the handle (11), and the first controller (51) includes control keys and a control circuit board, wherein the battery assembly (60), the drive assembly (21) and the control keys are electrically connected to the control circuit board.

3. The multifunctional mop according to claim 2, characterized in that, The main rod (12) includes a first rod (121), a second rod (122), and a first housing (123). The handle (11), the first rod (121), the second rod (122), the first housing (123), and the connecting seat (22) are connected in sequence. The first rod (121) and the second rod (122) are detachably connected. The first rod (121) and the second rod (122) are respectively provided with a first conductive element and a second conductive element. The first conductive element is electrically connected to the control circuit board, and the second conductive element is electrically connected to the drive assembly (21).

4. The multifunctional mop according to claim 3, characterized in that, The water spraying device (40) includes a water tank (41), a piston (42), a drive rod (43), a first spring (44), a sealing cylinder (45), a first one-way valve (46), and a nozzle (47). The water tank (41) is connected to the sealing cylinder (45) through the first one-way valve (46), and the nozzle (47) is connected to the sealing cylinder (45). The piston (42) and the first spring (44) are installed inside the sealing cylinder (45). The two ends of the first spring (44) are connected to the piston (42) and the sealing cylinder (45) respectively. The drive rod (43) is connected to the piston (42) to drive the piston (42) to slide inside the sealing cylinder (45). The piston (42) forms at least a first position and a second position inside the sealing cylinder (45). When the piston (42) is in the first position, the first one-way valve (46) is open; when the piston (42) is in the second position, the first one-way valve (46) is closed.

5. The multifunctional mop according to claim 4, characterized in that, The drive rod (43) includes a first moving rod (431) and a second moving rod (432). The first moving rod (431) and the second moving rod (432) are detachably connected. The second moving rod (432) is connected to the piston (42). The second controller (52) is an operating trigger. The second controller (52) is rotatably connected to the handle (11) to drive the first moving rod (431) to slide within the main rod body (12).

6. The multifunctional mop according to claim 4, characterized in that, A second one-way valve (48) is provided at the opening of the water tank (41). A connecting part (49) is provided between the water tank (41) and the sealing cylinder (45). An installation groove (403) and a liquid guiding channel (404) communicating with the installation groove (403) are formed in the connecting part (49). The second one-way valve (48) is movably inserted in the installation groove (403) and the water tank (41) is connected to the liquid guiding channel (404) through the second one-way valve (48). The first one-way valve (46) is provided at the liquid outlet end of the liquid guiding channel (404) and extends into the sealing cylinder (45).

7. The multifunctional mop according to claim 6, characterized in that, The second one-way valve (48) includes a valve body (481), a sealing plug (482), and a second spring (483). The valve body (481) has an inlet (401) and an outlet (402). The inlet (401) is connected to the water tank (41). The sealing plug (482) is located at the outlet (402). The two ends of the second spring (483) are connected to the valve body (481) and the sealing plug (482) respectively. A protruding post (491) is formed on the mounting groove (403). When the valve body (481) is inserted into the mounting groove (403), the protruding post (491) abuts against the sealing plug (482) and drives the sealing plug (482) away from the outlet (402).

8. The multifunctional mop according to claim 2, characterized in that, The drive assembly (21) includes a drive motor (211) and a transmission shaft (212). The drive motor (211) is electrically connected to the control circuit board. The two ends of the transmission shaft (212) are respectively connected to the rotating shaft of the drive motor (211) and the wiping member (30).

9. The multifunctional mop according to claim 8, characterized in that, An encoder is provided on the drive motor (211), and the encoder is electrically connected to the control circuit board. The encoder is used to control the direction and number of rotations of the drive motor (211).

10. The multifunctional mop according to claim 2, characterized in that, The handle (11) is provided with a charging interface (110), which is electrically connected to the battery assembly (60).