A mop cleaning bucket

By designing a mop cleaning bucket with dynamic water balance and sewage separation functions, the problem of manual water addition and water replacement frequency in the existing technology is solved, automatic water addition and efficient sewage separation are achieved, and the convenience of use and resource utilization efficiency are improved.

CN113749587BActive Publication Date: 2025-06-13NINGBO DWAFER ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202111001806.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-30
Publication Date
2025-06-13
Estimated Expiration
2041-08-30

AI Technical Summary

Technical Problem

The existing mop cleaning buckets require manual water addition and lack a sewage separation structure, which leads to inconvenience in use and excessive water replacement frequency, and wastes labor and water resources.

Method used

A mop cleaning bucket with dynamic water balance and sewage separation functions was designed. Automatic water addition and sewage separation were achieved through the combination of water tank, water inlet seat, cleaning seat, connecting pipeline and cleaning plate.

Benefits of technology

Automatic water level balance without manual water addition is achieved, reducing the frequency of water replacement, improving cleaning efficiency, and saving labor and water resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a mop cleaning bucket, belonging to the technical field of cleaning devices. It includes: a water tank having a water outlet channel; a cleaning bucket body including a water inlet seat and a cleaning seat, the water inlet seat is connected to the cleaning seat, the water inlet seat is provided with a water storage cavity and a water outlet, the water outlet is located in the water storage cavity, the water tank is installed on the water inlet seat and the water outlet channel is communicated with the water outlet, the cleaning seat is provided with a water inlet, a clean water cavity and a sewage cavity, the clean water cavity is separated from the sewage cavity, the water inlet is arranged in the clean water cavity and is communicated with the water outlet through a connecting pipeline; a cleaning disc provided with an impeller cavity, an impeller, a water scraping part and a drainage part, the impeller cavity and the clean water cavity are arranged vertically, the impeller is rotatably arranged in the impeller cavity, and both the water scraping part and the drainage part are located above the sewage cavity. The cleaning bucket body has the functions of dynamic water balance and separation of clean water and sewage, eliminating the need to repeatedly add water every time a mop is cleaned and the need to change water multiple times, improving the mopping efficiency and saving water resources.
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Description

Technical Field

[0001] The present invention belongs to the technical field of cleaning devices, and particularly relates to a mop cleaning bucket. Background Art

[0002] A mop bucket is an important tool for household cleaning. Many mops are equipped with corresponding cleaning buckets. After mopping the floor each time, the mop can be quickly cleaned by simply putting it into the cleaning bucket.

[0003] The current mop cleaning buckets have the following two problems: 1. Each time it is used, water needs to be added manually, or the switch of the water tank needs to be manually opened to inject the clear water stored in the water tank into the cleaning bucket, resulting in time-consuming and laborious operation for the user each time; 2. The cleaning bucket lacks a structure for separating clean water from sewage. After one or two cleanings, the water in the cleaning bucket will become very dirty. Subsequently, the sewage in the cleaning bucket needs to be replaced before the mop can be cleaned continuously, resulting in a problem of too high a water change frequency, and thus wasting the user's labor and water resources.

[0004] For example, in the prior art, a patent for invention with an application number of: CN202011408628.7 discloses a rotary steam mop and cleaning bucket system, including: the rotary steam mop contains a steam generating device, a rotary mop head, and a mop cloth of the mop head; the cleaning bucket has a water storage space with an upward opening; a lifting mechanism is arranged in the cleaning bucket and moves longitudinally along the cleaning bucket to separate or immerse the mop cloth of the mop head on the rotary steam mop into the water storage space; a cleaning component is arranged above the lifting mechanism to clean the mop cloth of the mop head on the rotary steam mop.

[0005] The above-mentioned cleaning bucket is used to clean a rotary mop, and its cleaning object is the same as that of the present invention. However, the above-mentioned cleaning bucket does not have the functions of water balance and separation of clean water from sewage, and needs to change water multiple times during cleaning, resulting in a problem of wasting the user's labor and water resources. Summary of the Invention

[0006] The present invention addresses the above problems existing in the prior art and proposes a mop cleaning bucket with functions of dynamic water balance and separation of clean water from sewage.

[0007] The present invention can be realized by the following technical solutions:

[0008] A mop cleaning bucket, comprising:

[0009] A water tank having a water outlet channel;

[0010] A cleaning bucket body, which includes a water inlet seat and a cleaning seat. The water inlet seat is connected to the cleaning seat. The water inlet seat is provided with a water storage cavity and a water outlet. The water outlet is located within the water storage cavity. The water tank is installed on the water inlet seat and the water outlet passage is communicated with the water outlet. The cleaning seat is provided with a water inlet, a purified water cavity and a sewage cavity. A partition plate is provided between the purified water cavity and the sewage cavity. The water inlet is located within the purified water cavity;

[0011] A connecting pipeline, the two ends of which are respectively communicated with the water outlet and the water inlet;

[0012] A cleaning disc, which is provided with an impeller cavity, an impeller, a water scraping part and a drainage part. The impeller cavity and the purified water cavity are arranged vertically. The impeller is rotatably arranged within the impeller cavity. The water scraping part and the drainage part are both located above the sewage cavity.

[0013] As a further improvement of the present invention, the water tank is provided with a water tank cover, and the water outlet passage is penetrated through the water tank cover.

[0014] As a further improvement of the present invention, the water tank cover is provided with a switch core, an annular boss and a spring. The switch core is movably arranged within the water outlet passage. The annular boss is connected to the switch core. The two ends of the spring respectively abut against the water tank cover and the switch core.

[0015] As a further improvement of the present invention, when the annular boss abuts against the water tank cover, the water outlet passage is cut off. When the annular boss is separated from the water tank cover, the water outlet passage is opened.

[0016] As a further improvement of the present invention, a top seat is further provided within the water storage cavity. When the water tank cover is installed on the water inlet seat, the water tank cover is located within the water storage cavity. The top seat pushes open the switch core until the annular boss is separated from the water tank cover.

[0017] As a further improvement of the present invention, the cleaning disc has at least one cleaning tabletop, and the impeller cavity, the impeller, the water scraping part and the drainage part are all arranged on the cleaning tabletop.

[0018] As a further improvement of the present invention, the number of the water scraping parts is at least one, and the water scraping part includes a plurality of water scraping plates.

[0019] As a further improvement of the present invention, the drainage part includes a first drainage port, a second drainage port, a third drainage port and a fourth drainage port. The first drainage port is located on both sides of the water scraping part. The second drainage port is located on both sides of the impeller cavity. The fourth drainage port is far away from the impeller cavity. The third drainage port is located between the first drainage port and the fourth drainage port.

[0020] As a further improvement of the present invention, a positioning convex part is further provided on the cleaning tabletop, and the positioning convex part is used for connecting with the mop.

[0021] As a further improvement of the present invention, the water inlet seat is provided with a water outlet pipe, the water outlet pipe is located at the side of the water storage cavity, and the water outlet pipe passes through the water inlet seat and communicates with the outside.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] 1. The cleaning bucket body has the function of dynamic water balance. Only when the water tank is filled with water for the first time, the water in the water storage cavity can continuously flow from the water outlet through the connecting pipeline and the water inlet into the cleaning seat until the water level in the cleaning seat reaches a certain level and is flush with the water level in the water storage cavity. At this time, the water in the cleaning seat, the water storage cavity and the water tank forms a dynamic balance state until all the water in the water tank is used up. There is no need to repeatedly add water every time the mop is cleaned, which greatly improves the convenience of using the cleaning bucket.

[0024] 2. During the process of cleaning the mop, the clean water is continuously taken out of the clean water cavity by the impeller and onto the mop cloth, while the sewage falls into the sewage cavity, which has the function of separating clean water and sewage. Thus, the clean water in the clean water cavity can always be not polluted by the sewage. When the user mops the floor, there is no need to repeatedly change water, which not only improves the mopping efficiency, but also reduces the labor expenditure, and at the same time plays a role in saving water resources.

[0025] 3. The cleaning disc is provided with a plurality of drain ports, and each drain port communicates with the sewage cavity. The sewage can all enter the sewage cavity without polluting the clean water in the clean water cavity, thereby ensuring the reliability of separating clean water and sewage.

[0026] 4. The water tank cover is provided with a first limiting part in a ring shape, and the bottom of the connecting end is provided with a second limiting part. The second limiting part is close to the circumferential wall of the water outlet channel and is correspondingly arranged with the first limiting part. Thus, it can be ensured that when the top seat pushes the switch core into the water tank inward, the switch core will not break away from the water outlet channel and completely enter the water tank, ensuring the reliability of the entire water outlet switch during use.

[0027] 5. A water outlet pipe is provided on each side of the water storage cavity. After the water tank is placed in the water tank placement cavity, if the initial water injection speed of the water tank into the water storage cavity is too fast, resulting in the water in the water storage cavity overflowing into the water tank placement cavity, these overflowed waters can flow out through the two water outlet pipes, ensuring the stability and reliability of the cleaning bucket body during use. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 is a schematic structural diagram of the mop cleaning bucket of the present invention;

[0029] Figure 2 is a schematic structural view of the cleaning bucket body of the present invention;

[0030] Figure 3 is of the present invention Figure 1 cross-sectional view;

[0031] Figure 4 is of the present invention Figure 3 partial enlarged view at position A in;

[0032] Figure 5 is a schematic structural view of the water tank of the present invention;

[0033] Figure 6 is a schematic structural view of the switch core and the annular boss of the present invention.

[0034] In the figure, 100, water tank; 110, water outlet channel; 120, water tank cover; 121, first limiting part; 130, switch core; 131, insertion end; 132, connection end; 1321, second limiting part; 140, annular boss; 150, spring; 200, cleaning bucket body; 210, water inlet seat; 211, water storage cavity; 212, water outlet; 213, top seat; 220, cleaning seat; 221, water inlet; 222, clean water cavity; 223, sewage cavity; 230, partition board; 240, connecting pipeline; 250, water outlet pipe; 300, cleaning disc; 310, impeller cavity; 320, impeller; 330, water scraping part; 331, water scraping plate; 340, drainage part; 341, first drainage port; 342, second drainage port; 343, third drainage port; 344, fourth drainage port; 350, positioning convex part. Detailed implementation manners

[0035] The following are specific embodiments of the present invention and in combination with the accompanying drawings, the technical methods of the present invention are further described, but the present invention is not limited to these embodiments.

[0036] As Figures 1-6 shown, the present invention provides a mop cleaning bucket, including:

[0037] A water tank 100 having a water outlet channel 110, and the water in the water tank 100 can flow out through the water outlet channel 110.

[0038] The cleaning bucket body 200 includes a water inlet seat 210 and a cleaning seat 220. The water inlet seat 210 is connected to the cleaning seat 220. The water inlet seat 210 is provided with a water storage cavity 211 and a water outlet 212. The water outlet 212 is located within the water storage cavity 211. The water tank 100 is installed on the water inlet seat 210 and the water outlet passage 110 is communicated with the water outlet 212. The cleaning seat 220 is provided with a water inlet 221, a purified water cavity 222 and a sewage cavity 223. A partition plate 230 is provided between the purified water cavity 222 and the sewage cavity 223. The partition plate 230 separates the purified water cavity 222 and the sewage cavity 223. Among them, the water inlet 221 is arranged within the purified water cavity 222.

[0039] Both ends of the connecting pipeline 240 are respectively communicated with the water outlet 212 and the water inlet 221. That is to say, after the water tank 100 is installed on the water inlet seat 210, the water in the water tank 100 can flow into the water storage cavity 211 through the water outlet passage 110, and the water in the water storage cavity 211 then flows into the purified water cavity 222 of the cleaning seat 220 after passing through the water outlet 212, the connecting pipeline 240 and the water inlet 221 in sequence.

[0040] Specifically, the water inlet 221, the water outlet 212 and the connecting pipeline 240 in this embodiment form a U-shaped structure. Initially, the water in the water storage cavity 211 can continuously flow into the purified water cavity 222 until the water level in the purified water cavity 222 reaches a certain level and is flush with the water level in the water storage cavity 211. At this time, the water in the cleaning seat 220 forms an equilibrium state with the water in the water storage cavity 211 and the water tank 100. At this time, the water in the water storage cavity 211 no longer flows into the cleaning seat 220, and the water in the water tank 100 also no longer flows into the water storage cavity 211. Once the water in the cleaning seat 220 decreases, the original equilibrium state is broken, the water in the water storage cavity 211 flows into the purified water cavity 222 again, and the water in the water tank 100 will also flow into the water storage cavity 211 again until the equilibrium state is reached again.

[0041] That is to say, the cleaning bucket body 200 in this embodiment has the function of dynamic water balance. Only when the water tank 100 is filled with water for the first time, the cleaning seat 220 can always be kept in a state with water until the water in the water tank 100 is all used up, without repeatedly adding water every time when mopping the floor, greatly improving the convenience of using the cleaning bucket.

[0042] The cleaning tray 300 is provided with an impeller cavity 310, an impeller 320, a water scraping part 330 and a drainage part 340. The impeller cavity 310 and the purified water cavity 222 are arranged vertically. The impeller 320 is rotatably arranged in the impeller cavity 310 and part of the impeller 320 extends into the purified water cavity 222. When the impeller 320 rotates rapidly, the blades of the impeller 320 can throw the purified water in the purified water cavity 222 outwards from the impeller cavity 310, and both the water scraping part 330 and the drainage part 340 are located above the sewage cavity 223.

[0043] Specifically, when the water in the water purification chamber 222 and the water storage chamber 211 reaches a water balance state, the water level of the purified water in the water purification chamber 222 is high enough for the blades of the impeller 320 to be immersed in the purified water. When the mop rotates on the cleaning tray 300, the mop drives the impeller 320 to rotate rapidly. The impeller 320 takes the purified water in the water purification chamber 222 upward onto the mop. At the same time, when the mop rotates, it will be squeezed by the water scraping part 330, squeezing the sewage on the mop out and falling into the sewage chamber 223 from the drainage part 340. This cycle repeats until the mop is cleaned.

[0044] During the process of cleaning the mop, the purified water is continuously taken out of the water purification chamber 222 by the impeller 320. At the same time, due to the above-mentioned dynamic water balance function, the purified water in the water tank 100 will continuously supplement the water purification chamber 222, while the sewage falls into the sewage chamber 223. That is to say, the mop cleaning bucket in this embodiment has the function of separating purified water and sewage. Thus, the purified water in the water purification chamber 222 will never be polluted by sewage. When the user mops the floor, there is no need to change water repeatedly, which not only improves the mopping efficiency, reduces the labor cost, but also plays a role in saving water resources.

[0045] Preferably, the water tank 100 is provided with a water tank cover 120, and the water outlet channel 110 is arranged through the water tank cover 120. Among them, the water tank cover 120 is provided with an annular first limiting part 121, and the first limiting part 121 is located at one end of the water outlet channel 110 close to the water tank 100. A top seat 213 is also arranged in the water storage chamber 211. When the water tank cover 120 is installed on the water inlet seat 210, the water tank cover 120 is located in the water storage chamber 211, and the top seat 213 abuts against the water tank cover 120. At this time, the water outlet channel 110 is opened, and the water in the water tank 100 can flow into the water storage chamber 211 through the water outlet channel 110.

[0046] Preferably, the water tank cover 120 is further provided with a switch core 130, an annular boss 140 and a spring 150, wherein the switch core 130 is movably arranged in the water outlet channel 110, wherein the switch core 130 includes an insertion end 131 and a connection end 132, wherein the insertion end 131 passes through the water outlet channel 110 and extends into the water tank 100, and the connection end 132 is located in the water outlet channel 110 and a second limiting portion 1321 is provided at the bottom of the connection end 132, wherein the second limiting portion 1321 is close to the water outlet channel The circumferential wall of 110 is arranged corresponding to the first limiting portion 121, thereby ensuring that when the top seat 213 pushes the switch core 130 inward into the water tank 100, the switch core 130 will not separate from the water outlet channel 110 and completely enter the water tank 100, ensuring the reliability of the entire water outlet switch during use. The annular boss 140 is connected to the switch core 130, and the two ends of the spring 150 are respectively abutted against the first limiting portion 121 of the water tank cover 120 and the second limiting portion 1321 of the switch core 130.

[0047] Specifically, when the top seat 213 pushes the switch core 130 inwardly into the water tank 100, the annular boss 140 is separated from the first limiting portion 121 and the water outlet channel 110 is opened, and the spring 150 is in a compressed state. At this time, the water in the water tank 100 can flow into the water storage chamber 211; when the water tank 100 is lifted from the water inlet seat 210, the top seat 213 is separated from the switch core 130, and the switch core 130 retracts under the elastic force of the spring 150. Until the annular boss 140 abuts against the first limiting portion 121 and the water outlet channel 110 is closed, the water in the water tank 100 cannot flow out, thereby achieving: after filling the water into the water tank 100, screw on the water tank cover 120, the water in the water tank 100 cannot flow out, and when the water tank 100 is placed on the water inlet seat 210, the water in the water tank 100 can automatically flow into the water storage cavity 211, and then flow into the cleaning seat 220 until a dynamic water balance state is reached.

[0048] Preferably, the water inlet seat 210 is provided with a water outlet pipe 250, which is located at the side of the water storage chamber 211, passes through the water inlet seat 210 and communicates with the outside. In this embodiment, there are two water outlet pipes 250, which are respectively located on both sides of the water storage chamber 211. Therefore, when the water tank 100 is placed in the water tank 100 placement chamber, if the water tank 100 initially fills the water storage chamber 211 too fast, causing the water in the water storage chamber 211 to overflow into the water tank 100 placement chamber, the overflowed water can flow out through the two water outlet pipes 250, ensuring the stability and reliability of the cleaning barrel body 200 when in use. .

[0049] Preferably, the cleaning tray 300 has at least one cleaning tabletop. The impeller cavity 310, the impeller 320, the water scraping part 330 and the drainage part 340 are all arranged on the cleaning tabletop. Since the mop corresponding to the mop bucket in this embodiment has two rotating disks, and both rotating disks are equipped with mop cloths, therefore, the cleaning tray 300 in this embodiment is correspondingly provided with two cleaning tabletops. The two cleaning tabletops have the same structure and size. During cleaning, only the rotating disks of the mop need to be placed on the cleaning tabletop for rapid rotation, and the sewage on the mop can be scraped off by the water scraping part 330 and discharged into the sewage cavity 223 through the drainage part 340. At the same time, the mop is continuously cleaned with clean water until the mop is cleaned.

[0050] Preferably, the number of the water scraping parts 330 is at least one. The water scraping part 330 includes a plurality of water scraping plates 331. Specifically, in this embodiment, the number of the water scraping parts 330 is symmetrically set to two. The two water scraping parts 330 are on the same straight line, and each water scraping plate 331 is horizontally arranged. Thus, when the mop cloth rotates rapidly, each water scraping plate 331 can exert a large extrusion force on the mop, squeezing out the sewage on the mop as much as possible and improving the cleaning efficiency of the mop.

[0051] Preferably, the drainage part 340 includes a first drainage port 341, a second drainage port 342, a third drainage port 343 and a fourth drainage port 344. The first drainage port 341 is located on both sides of the water scraping part 330. The first drainage port 341 is the main drainage port. When the mop is squeezed, most of the sewage can be discharged into the sewage cavity 223 from both sides of the first drainage port 341. The second drainage port 342 is located on both sides of the impeller cavity 310. The arrangement of the second drainage port 342 can prevent part of the sewage from entering the clean water cavity 222 from the impeller cavity 310, thereby preventing the clean water in the clean water cavity 222 from being polluted. The fourth drainage port 344 is far from the impeller cavity 310. The third drainage port 343 is located between the first drainage port 341 and the fourth drainage port 344. The arrangements of the third drainage port 343 and the fourth drainage port 344 can prevent part of the sewage from remaining on the cleaning tray 300, ensuring that all the sewage enters the sewage cavity 223 as much as possible.

[0052] Preferably, a positioning convex part 350 is further arranged on the cleaning tabletop. The positioning convex part 350 is used to connect with the rotating disk of the mop. By aligning the concave part at the bottom of the rotating disk of the mop with the positioning convex part 350 and inserting it, the mop can rotate rapidly on the cleaning tray 300 with the positioning convex part 350 as the center.

[0053] The technical means disclosed by the solution of the present invention are not limited to those disclosed by the above technical means, but also include technical solutions composed of any combination of the above technical features. The above are the specific implementation manners of the present invention. It should be noted that for those of ordinary skill in the art of this technology, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present invention.

[0054] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative position relationship, movement conditions, etc. between components in a specific posture (as shown in the drawings). If this specific posture changes, then the directional indications will change accordingly.

[0055] In addition, in the present invention, descriptions such as "first", "second", "one", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, the meaning of "a plurality" is at least two, such as two, four, etc., unless otherwise clearly and specifically defined.

[0056] In the present invention, unless otherwise clearly specified and limited, terms such as "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and can be the internal connection or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0057] In addition, the technical solutions between the various embodiments of the present invention can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.

Claims

1. A mop cleaning bucket, characterized in that, it includes: a water tank having a water outlet channel; a cleaning bucket body including a water inlet seat and a cleaning seat. The water inlet seat is connected to the cleaning seat. The water inlet seat is provided with a water storage cavity and a water outlet. The water outlet is located in the water storage cavity. The water tank is installed on the water inlet seat and the water outlet channel is communicated with the water outlet. The cleaning seat is provided with a water inlet, a clean water cavity and a sewage cavity. A partition board is arranged between the clean water cavity and the sewage cavity. The water inlet is located in the clean water cavity; a connecting pipeline which is arranged in a U-shaped structure and the two ends are respectively communicated with the water outlet and the water inlet; a cleaning disc which is provided with an impeller cavity, an impeller, a water scraping part and a drainage part. The impeller cavity and the clean water cavity are arranged up and down. The impeller is rotatably arranged in the impeller cavity. The water scraping part and the drainage part are both located above the sewage cavity.

2. The mop cleaning bucket according to claim 1, characterized in that, the water tank is provided with a water tank cover, and the water outlet channel penetrates through the water tank cover.

3. The mop cleaning bucket according to claim 2, characterized in that, the water tank cover is provided with a switch core, an annular boss and a spring. The switch core is movably arranged in the water outlet channel. The annular boss is connected to the switch core. The two ends of the spring are respectively abutted against the water tank cover and the switch core.

4. The mop cleaning bucket according to claim 3, characterized in that, when the annular boss abuts against the water tank cover, the water outlet channel is cut off. When the annular boss is separated from the water tank cover, the water outlet channel is opened.

5. The mop cleaning bucket according to claim 4, characterized in that, a top seat is further arranged in the water storage cavity. When the water tank cover is installed on the water inlet seat, the water tank cover is located in the water storage cavity. The top seat pushes open the switch core until the annular boss is separated from the water tank cover.

6. The mop cleaning bucket according to claim 1, characterized in that, the cleaning disc has at least one cleaning tabletop, and the impeller cavity, the impeller, the water scraping part and the drainage part are all arranged on the cleaning tabletop.

7. The mop cleaning bucket according to claim 6, characterized in that, the number of the water scraping parts is at least one, and the water scraping part includes a plurality of water scraping plates.

8. The mop cleaning bucket according to claim 6, characterized in that, the drainage part includes a first drainage port, a second drainage port, a third drainage port and a fourth drainage port. The first drainage port is located on both sides of the water scraping part. The second drainage port is located on both sides of the impeller cavity. The fourth drainage port is far away from the impeller cavity. The third drainage port is located between the first drainage port and the fourth drainage port.

9. The mop cleaning bucket according to claim 6, characterized in that, a positioning convex part is further arranged on the cleaning tabletop, and the positioning convex part is used for connecting with the mop.

10. The mop cleaning bucket according to claim 1, characterized in that, The water inlet seat is provided with a water outlet pipe, the water outlet pipe is located at the side of the water storage cavity, and the water outlet pipe passes through the water inlet seat and communicates with the outside.

Citation Information

Patent Citations

  • Rotary steam mop and wash tub system

    CN112401790A

  • Mop cleaning barrel

    CN216135825U