Cleaning tool

By incorporating a water-spraying component and a rotating assembly into the cleaning tool, the problem of poor cleaning performance caused by insufficient cleaning liquid at the bottom of the bucket is solved, enabling effective cleaning of the mop head even when the liquid is insufficient.

CN224193437UActive Publication Date: 2026-05-05XIAN AICHUANGJIA HELPER INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIAN AICHUANGJIA HELPER INTELLIGENT TECH CO LTD
Filing Date
2025-04-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing cleaning tools, when there is little water at the bottom of the bucket, the mop head cannot be fully submerged in the cleaning solution, resulting in poor cleaning performance.

Method used

The bucket is equipped with a water-lifting component and a rotating assembly. The rotating assembly agitates the cleaning liquid at the bottom of the bucket, causing the liquid to rise to the water-lifting component and be guided to the center of the bucket. The water-lifting component prevents the liquid from rising along the side wall, causing the liquid to be sprayed away from the side wall, thus helping to wet the mop head.

Benefits of technology

Even when there is little cleaning liquid at the bottom of the bucket, the water jet can still effectively help wet the mop head and improve cleaning results.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224193437U_ABST
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Abstract

The utility model provides a cleaning tool, and relates to the technical field of cleaning appliances. The rotating assembly is rotationally arranged in the barrel body; a water pumping piece is arranged at the bottom of the side wall in the barrel body and extends in the direction away from the side wall of the barrel body. When the rotating assembly rotates and stirs the liquid gathered in the barrel body to climb to the water pumping piece, the water pumping piece prevents the liquid from continuing to climb along the side wall in the barrel body and guides the flow direction of the liquid to the direction close to the center of the barrel body; and the liquid is sprayed in the direction far away from the side wall of the barrel body. According to the cleaning tool provided by the utility model, when the cleaning liquid at the bottom of the barrel body is less, the mop head arranged in the cleaning tool can be effectively soaked, so that a wiping object on the mop head can be better cleaned, and the cleaning effect is good.
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Description

Technical Field

[0001] This utility model relates to the field of cleaning tools, and in particular to a cleaning tool. Background Technology

[0002] In related technologies, for mop buckets with lifting baskets, users can move the lifting basket between high and low positions using the mop. Specifically, when the lifting basket is moved to the low position, the wiping material placed in the mop head inside the lifting basket will be immersed in the cleaning water at the bottom of the bucket. The user drives the lifting basket or mop head to rotate by the mop handle to agitate the cleaning water and wash the wiping material. When the lifting basket is moved to the high position, the wiping material placed in the mop head inside the lifting basket will detach from the cleaning water at the bottom of the bucket. The user drives the mop head to rotate by the mop handle to dehydrate the wiping material.

[0003] However, the above cleaning process usually requires a lot of cleaning water to be placed at the bottom of the bucket. If there is not enough cleaning water at the bottom of the bucket, the cleaning material on the mop head cannot be fully immersed in the cleaning water for cleaning, which will result in poor cleaning effect of the mop head. Utility Model Content

[0004] This utility model provides a cleaning tool to solve the problem in related technologies where the mop head has poor cleaning effect when there is little water at the bottom of the bucket.

[0005] This utility model provides a cleaning tool, including:

[0006] Barrel body;

[0007] A rotating assembly, which is rotatably disposed within the barrel body;

[0008] A water-lifting component is provided at the bottom of the side wall inside the barrel, and the water-lifting component extends away from the side wall of the barrel.

[0009] When the rotating component stirs the liquid accumulated in the barrel and it rises to the water-lifting component, the water-lifting component prevents the liquid from continuing to rise along the side wall of the barrel and guides the flow of the liquid toward the center of the barrel, so that the liquid is sprayed away from the side wall of the barrel.

[0010] The cleaning tool provided by this utility model includes a bucket, a rotating component, and a water-spraying component. Both the rotating component and the water-spraying component are located inside the bucket, with the water-spraying component extending away from the side wall of the bucket. When there is insufficient cleaning liquid at the bottom of the bucket, preventing the mop head from effectively immersing in the liquid, the rotating component can be driven to rotate, agitating the cleaning liquid at the bottom of the bucket. Under centrifugal force, the agitated liquid rises along the side wall of the bucket. When the liquid reaches the water-spraying component, the component prevents further upward movement and directs the liquid flow towards the center of the bucket, causing it to spray away from the side wall. This allows at least a portion of the sprayed liquid to be absorbed by the mop head inside the bucket, aiding in wetting the mop head. This ensures the mop head is effectively wetted even when there is little cleaning liquid at the bottom of the bucket, resulting in better cleaning of the items being wiped off the mop head and achieving excellent cleaning results.

[0011] According to the present invention, a cleaning tool is provided, wherein the water-lifting component is a sheet-shaped water-lifting plate, one end of which is disposed at the bottom of the side wall of the barrel body, and the other end extends away from the side wall of the barrel body.

[0012] This embodiment provides a specific implementation of a water-spraying component. Specifically, the water-spraying component is a sheet-like water-spraying plate extending from the bottom of the inner sidewall of the bucket away from the sidewall. Compared to other shapes such as protrusions or cylinders, the sheet-like water-spraying plate can effectively block liquid rising from the bottom of the bucket along the sidewall, and effectively guide the blocked liquid away from the sidewall, thereby maximizing the collection of rising liquid and spraying it away from the sidewall. This helps to effectively wet the mop head even when there is little cleaning liquid at the bottom of the bucket. Furthermore, the sheet-like water-spraying plate has a simple structure, low cost, and is easy to install.

[0013] According to the cleaning tool provided by this utility model, the water-lifting plate is inclined relative to the bottom of the bucket body.

[0014] In this embodiment, the water-spraying plate is set at an angle relative to the bottom of the bucket, which makes it easier to collect more rising liquid and spray it away from the side wall of the bucket. This helps to better wet the mop head located inside the bucket, thereby improving the cleaning effect on the mop head.

[0015] According to the present invention, the water-lifting plate is tilted in a direction that is lower upstream than downstream along the flow direction of the liquid after it has been agitated by the rotating component.

[0016] In this embodiment, after the liquid at the bottom of the bucket is agitated by the rotating component, it rotates along the agitation direction and rises upward along the inner side wall of the bucket. When the liquid rises, the upstream direction of its flow is lower than the downstream direction. Correspondingly, the tilt direction of the water-spraying plate in this application is also that the upstream direction of the liquid after it is agitated by the rotating component is lower than the downstream direction, which conforms to the direction of fluid mechanics. This can reduce the amount of liquid lost due to obstructing the liquid from rising, and gather as much rising liquid as possible and spray it away from the side wall of the bucket. This is beneficial for better wetting of the mop head located inside the bucket, thereby improving the cleaning effect on the mop head.

[0017] According to the present invention, a cleaning tool is provided in which the water-spraying plate is fan-shaped, and one end of the fan-shaped water-spraying plate corresponding to the apex of the fan faces the center of the bucket.

[0018] In this embodiment, the water-spraying plate is arranged in a fan shape, and one end of the fan-shaped water-spraying plate corresponding to the apex of the fan faces the center of the bucket. This facilitates the collection of blocked liquid through the apex of the fan shape and guides it to the central area of ​​the bucket away from the side wall of the bucket. This helps to better wet the mop head located inside the bucket, thereby improving the cleaning effect on the mop head.

[0019] According to the cleaning tool provided by this utility model, the fan-shaped water-spraying plate has a rounded corner at one end corresponding to the apex of the fan shape.

[0020] In this embodiment, one end of the aforementioned fan-shaped apex is set as a rounded corner. While improving the liquid cohesion, the edge of the rounded corner can more evenly spray the liquid away from the side wall of the bucket, which helps to better wet the mop head located inside the bucket, thereby improving the cleaning effect of the mop head.

[0021] According to the cleaning tool provided by this utility model, the upper side of the water-spraying plate is connected to the inner wall of the barrel through an arc-shaped transition surface; and / or, the lower side of the water-spraying plate is vertically connected to the inner wall of the barrel.

[0022] In this embodiment, the upper side of the water-spraying plate is connected to the inner wall of the bucket via an arc-shaped transition surface. The arc-shaped transition surface can reduce turbulence and resistance, and improve the flow efficiency of the liquid. When multiple water-spraying plates are set up at the top and bottom, it is easier for the liquid to climb up better through the transition surface and gather on the lower side of the upper water-spraying plate. And / or, the lower side of the water-spraying plate is set to be vertically connected to the inner wall of the bucket, which is easier to gather the liquid climbing up from the lower water-spraying plate and spray this liquid away from the side wall of the bucket. This helps to better wet the mop head located in the bucket, thereby improving the cleaning effect on the mop head.

[0023] According to the cleaning tool provided by this utility model, the edges of the water-spraying blades are all rounded chamfered.

[0024] In this embodiment, the edges of the water pumping plates are all rounded, which can effectively remove burrs generated during processing, reduce the resistance of the water pumping plates to the liquid, and also facilitate assembly with other components.

[0025] According to the present invention, a cleaning tool further includes a guide plate, which is detachably disposed on the inner wall of the barrel, and the water-lifting component is integrally formed on the guide plate.

[0026] In this embodiment, since the guide plate of the cleaning tool is detachably mounted on the inner wall of the barrel, the water-lifting component can be integrally molded onto the guide plate. This allows the small and difficult-to-assemble water-lifting component to be detachably assembled with the barrel along with the larger and easier-to-assemble guide plate. Furthermore, the integral molding of the water-lifting component onto the guide plate ensures a secure installation between the water-lifting component and the inner wall of the barrel, thereby improving the stability and service life of the water-lifting component and facilitating its manufacture.

[0027] According to the present invention, a cleaning tool is provided on the guide plate, the guide plate is provided with a track, the track has a high limit point and / or a low limit point, the rotating component is directly or indirectly slidably connected to the track, and when the rotating component slides along the track to the low limit point, the rotating component stirs the liquid accumulated in the barrel by rotating and agitating it to rise to the water-lifting component, and under the obstruction of the water-lifting component, it is sprayed away from the side wall of the barrel.

[0028] And / or, when the rotating assembly slides along the track to the high limit point, the rotating assembly disengages from the liquid inside the barrel.

[0029] In this embodiment, the guide plate is provided with a track, through which the rotating component can slide between the high limit point and the low limit point. When the rotating component slides along the track to the low limit point, it will come into contact with the liquid at the bottom of the bucket and, through rotation, agitate the liquid accumulated in the bucket to rise to the water-lifting component. Under the obstruction of the water-lifting component, the liquid is sprayed away from the side wall of the bucket, so as to effectively clean the mop head located in the bucket. When the rotating component slides along the track to the high limit point, it will detach from the liquid in the bucket, at which point the mop head can be driven to rotate to effectively dehydrate the mop head. The track of the guide plate can effectively limit the movement direction and area of ​​the rotating component, improving the working stability of the rotating component.

[0030] According to the present invention, a cleaning tool is provided, wherein the rotating assembly includes a rotating basket and a lifting component;

[0031] The lifting component drives the rotating basket to rise and fall within the barrel. When the lifting component lowers the rotating basket to a low position within the barrel, the rotating basket is driven to rotate and agitate the liquid accumulated within the barrel, causing the liquid to rise to the water-lifting component and be sprayed away from the side wall of the barrel under the obstruction of the water-lifting component; and / or, the rotating basket and the lifting component are rotatably positioned at the center of the barrel.

[0032] In this embodiment, the rotating assembly may include a rotating basket and a lifting component. The mop head can be disposed in the rotating basket and moved up and down within the bucket under the drive of the lifting component. When the lifting component lowers the rotating basket and mop head to a low position within the bucket, the rotating basket comes into contact with the liquid at the bottom of the bucket. The rotating basket, driven to rotate, agitates the liquid accumulated within the bucket, causing the liquid to rise to the water-spraying component and, under the obstruction of the water-spraying component, is sprayed towards the center of the bucket, thus facilitating effective cleaning of the mop head located within the bucket. In particular, when the rotating basket and lifting component are rotated and positioned at the center of the bucket, most of the liquid rising along the side wall of the bucket is sprayed by the water-spraying component in a direction closer to the center of the bucket, allowing most of the sprayed liquid to enter the rotating basket and be absorbed by the wiping material on the mop head within the rotating basket, further improving the mop's cleaning efficiency.

[0033] According to the present invention, a cleaning tool is provided with a guide plate detachably provided on the inner wall of the barrel, and a track is provided on the guide plate, and the track has a high limit point and / or a low limit point.

[0034] The lifting component is slidably connected to the track; when the lifting component slides along the track to the low limit point, it drives the rotating basket to descend to the low position inside the barrel.

[0035] And / or, when the lifting component slides along the track to the high limit point, it drives the rotating basket to rise to the high position inside the barrel.

[0036] In this embodiment, a guide plate is detachably provided on the inner wall of the bucket, and a track is provided on the guide plate. The lifting component can slide between the high limit point and the low limit point through the track, thereby driving the rotating basket to move between the high limit point and the low limit point. The track of the guide plate can effectively limit the movement direction and area of ​​the rotating basket, improving the stability of cleaning and dehydrating the mop head using the rotating basket.

[0037] According to the present invention, a cleaning tool is provided, which further includes a liquid inlet component. The liquid inlet component is connected to an external water source and is used to transport liquid from the external water source into the bucket and collect it in the bucket.

[0038] In this embodiment, the cleaning tool also includes a liquid inlet component, which is used to directly deliver liquid from an external water source into the bucket and collect it inside the bucket. This eliminates the need for the user to laboriously pour the cleaning liquid into the bucket and also prevents the liquid from spilling out of the bucket during the pouring process, thus improving the user experience.

[0039] According to the present invention, a cleaning tool is provided, wherein the liquid inlet assembly includes a liquid inlet pipe disposed at the edge of the opening of the barrel, and the liquid inlet pipe is provided with at least one liquid inlet port, the liquid inlet port being used to communicate with the external water source through an extension pipe and to transmit liquid from the external water source into the liquid inlet pipe.

[0040] The inlet pipe has multiple outlet holes on one side facing the bottom of the barrel, which are used to discharge the liquid transmitted to the inlet pipe into the barrel through the multiple outlet holes, so that the liquid can accumulate in the barrel.

[0041] In this embodiment, the liquid inlet assembly includes a liquid inlet pipe disposed at the edge of the opening of the bucket body, which has at least one liquid inlet port. Liquid from an external water source can be transferred into the liquid inlet pipe through an extension pipe. The liquid inlet pipe has multiple liquid outlet holes on the side facing the bottom of the bucket body, which can discharge the liquid in the liquid inlet pipe into the bucket body through the multiple liquid outlet holes, so that the liquid can accumulate in the bucket body. Furthermore, by setting the positions of the multiple liquid outlet holes on the liquid inlet pipe, the liquid can be discharged according to specific needs. For example, if they are all set to discharge towards the mop head, the cleaning efficiency of the mop head can be effectively improved.

[0042] According to the cleaning tool provided by this utility model, the liquid inlet pipe is annular and is arranged around the edge of the opening of the barrel;

[0043] And / or, the plurality of liquid outlet holes are evenly arranged on the liquid inlet pipe.

[0044] In this embodiment, the liquid inlet pipe is arranged in a ring shape and surrounds the edge of the bucket opening, which facilitates drainage into the bucket through multiple liquid outlet holes on the liquid inlet pipe. The liquid can be discharged directly from the top of the bucket to the mop head placed inside the bucket, improving the cleaning efficiency of the mop head; and / or, multiple liquid outlet holes are evenly arranged on the liquid inlet pipe, which facilitates the even discharge of liquid transmitted to the liquid inlet pipe to the mop head placed inside the bucket through the evenly arranged multiple liquid outlet holes, improving the cleaning efficiency of the mop head.

[0045] According to the present invention, a cleaning tool is provided with a drain outlet at the bottom of the bucket body. The cleaning tool also includes a drain pipe, which is sealed to the drain outlet for discharging sewage from the bucket body to the outside of the bucket through the drain pipe.

[0046] In this embodiment, a drain outlet and a drain pipe sealed to the drain outlet are provided at the bottom of the bucket. When the mop inside the bucket is finished washing and is being wrung out, the wastewater inside the bucket can be discharged to the outside of the bucket through the drain pipe, so that the mop can be wrung out more effectively and the wastewater can be prevented from contaminating the mop again.

[0047] According to the present invention, a cleaning tool is provided in which the rotating component is a mop head that extends into the bucket and is rotatably connected to the bucket.

[0048] In this embodiment, when the mop head is driven to rotate, it agitates the liquid accumulated in the bucket, causing the liquid to rise to the water-spraying component and be sprayed away from the side wall of the bucket under the obstruction of the water-spraying component. At least part of the sprayed liquid is absorbed by the wiping material on the mop head inside the bucket, thereby improving the cleaning efficiency of the mop head.

[0049] According to the present invention, a cleaning tool further includes a support member movably disposed on the bucket body, the support member being used to support the rotation of the mop head;

[0050] The mop head is inserted into the support member and drives the support member to rise and fall within the bucket; and / or, the support member is located at the center of the bucket.

[0051] In this embodiment, the mop head is supported on the support member after being inserted into the bucket, facilitating its rotation. The mop head can move the support member up and down within the bucket, allowing for cleaning at the lower position and dehydration at the higher position. When the mop head is in the lower position, it comes into contact with the liquid at the bottom of the bucket. The rotation agitates the accumulated liquid, causing it to rise to the water-spraying device and be sprayed away from the bucket's sidewalls. At least a portion of the sprayed liquid is absorbed by the wiping agent on the mop head inside the bucket, thus improving cleaning efficiency. In particular, when the support member is located at the center of the bucket, the mop head is also supported there. Most of the liquid rising along the bucket's sidewalls is sprayed towards the center by the water-spraying device, ensuring that most of the liquid is absorbed by the wiping agent on the mop head at the center, further enhancing cleaning efficiency.

[0052] According to the present invention, a cleaning tool is provided in which the rotating component is rotatably disposed at the center of the barrel.

[0053] In this embodiment, when the rotating component is located at the center of the bucket, the rotating component is driven to rotate and stir the liquid at the bottom of the bucket, causing it to rise evenly along the side wall of the bucket. Most of the liquid is sprayed towards the center of the bucket by the water-spraying component, so that most of the liquid is absorbed by the wiping material on the mop head located in the bucket, which further improves the cleaning efficiency of the mop. Attached Figure Description

[0054] To more clearly illustrate the technical solutions in this utility model or related technologies, the drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0055] Figure 1 This is one of the structural schematic diagrams of the cleaning tool provided by this utility model;

[0056] Figure 2 This is the second structural schematic diagram of the cleaning tool provided by this utility model;

[0057] Figure 3 This is one of the structural schematic diagrams of the water-spraying blade in the cleaning tool provided by this utility model;

[0058] Figure 4 This is the second schematic diagram of the water-lifting blade in the cleaning tool provided by this utility model;

[0059] Figure 5 This is the third structural schematic diagram of the cleaning tool provided by this utility model;

[0060] Figure 6 This is a schematic diagram of the structure of the guide plate in the cleaning tool provided by this utility model;

[0061] Figure 7 This is the fourth structural schematic diagram of the cleaning tool provided by this utility model;

[0062] Figure 8 This is the fifth structural schematic diagram of the cleaning tool provided by this utility model.

[0063] Figure label:

[0064] 10: Cleaning tools; 20: Mops;

[0065] 101: Tank body; 102: Rotating assembly; 103: Water lifting plate; 104: Guide plate;

[0066] 105: Liquid inlet assembly;

[0067] 1021: Rotating basket; 1022: Lifting component;

[0068] 1051: Liquid inlet pipe; H: Liquid inlet port; I: Liquid outlet port;

[0069] A: The liquid flows upstream after being agitated by the rotating component;

[0070] B: The downstream direction of the liquid after it has been agitated by the rotating component;

[0071] C: The apex angle of the pumping vane;

[0072] D: The arc-shaped transition surface between the upper side of the water pump and the inner wall of the tank;

[0073] E: The vertical structure in which the lower side of the water-lifting plate is perpendicularly connected to the inner wall of the tank.

[0074] F: High-position limit point of the track on the guide plate;

[0075] G: Low-position limit point of the track on the guide plate. Detailed Implementation

[0076] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0077] In the description of this utility model, it should be clarified that the terms "vertical", "lateral", "longitudinal", "front", "back", "left", "right", "up", "down", "horizontal", etc., which indicate orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model. They do not mean that the device or element referred to must have a specific orientation or position, and therefore should not be construed as a limitation on this utility model.

[0078] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components; they can refer to a wireless connection or a wired connection. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0079] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0080] The cleaning tool of this utility model is described below with reference to the accompanying drawings.

[0081] Figure 1 This is one of the structural schematic diagrams of the cleaning tool provided by this utility model, such as... Figure 1As shown, the mop head of the mop 20 can be placed in the cleaning tool 10 for washing and wringing. The cleaning tool 10 is, for example, a mop bucket or other cleaning bucket that can be used to clean the mop head, and is not limited here.

[0082] Figure 2 This is the second structural schematic diagram of the cleaning tool provided by this utility model, as shown below. Figure 2 As shown, Figure 2 This is a cross-sectional view of a cleaning tool 10, which includes a bucket 101, a rotating assembly 102, and a water-lifting component.

[0083] The rotating assembly 102 is rotatably disposed inside the barrel 101; a water-lifting component is provided at the bottom of the side wall inside the barrel 101, and the water-lifting component extends away from the side wall of the barrel 101; when the rotating assembly 102 rotates and agitates the liquid accumulated inside the barrel 101 to rise to the water-lifting component, the water-lifting component can prevent the liquid from continuing to rise along the side wall inside the barrel 101 and guide the flow of the liquid toward the center of the barrel 101, so that the liquid is sprayed away from the side wall of the barrel 101.

[0084] It should be noted that the rotating component 102 can be any component or mechanism rotatably disposed within the bucket 101, and this application does not impose any restrictions. For example, if the bucket 101 is provided with a rotatable rotating basket for washing or dehydrating, then the rotating component 102 can be the rotating basket and / or other structures for supporting the rotation of the rotating basket; or, if the mop head of the mop 20 extends into the bucket 101 and is cleaned by rotating the mop head relative to the bucket 101, the mop head of the mop 20 can act as the rotating component 102 to agitate the liquid at the bottom of the bucket 101; or the rotating component 102 can also be a dedicated mechanism disposed within the bucket 101, which can be driven to rotate to agitate the liquid at the bottom of the bucket 101 regardless of how the bucket 101 is used to clean the mop.

[0085] For example, the water-lifting component extends away from the side wall of the tank 101, meaning that as the water-lifting component extends, the distance between it and the center of the tank 101 decreases. Optionally, the extension direction of the water-lifting component can be from the side wall of the tank 101 towards the center of the tank 101. Assuming the cross-section of the tank 101 is circular, the water-lifting component can extend along the direction of a chord of the circle. This chord can be any diameter of the circle passing through the water-lifting component, or any chord of the circle that is not a diameter passing through the water-lifting component.

[0086] For example, the water-spraying component can prevent liquid from continuing to rise along the side wall inside the bucket 101 and guide the flow of the liquid towards the center of the bucket 101, causing the liquid to be sprayed away from the side wall of the bucket 101. The liquid blocked by the water-spraying component can be sprayed along a reference direction containing the shortest distance from the water-spraying component to the center of the bucket 101, or it can be sprayed in other directions deviating from the reference direction. As long as the distance between the liquid blocked by the water-spraying component and the side wall of the bucket increases, at least some of the liquid with a longer spray distance will be absorbed by the wiping material of the mop head located inside the mop bucket, so that the liquid at the bottom of the bucket can effectively wet the wiping material of the mop head and improve the cleaning efficiency of the mop head.

[0087] Optionally, the rotating component 102 can be driven in various ways. For example, the rotating component 102 can be connected to the mop head extending into the bucket 101, allowing the user to drive the mop head to move within the bucket 101, including but not limited to sliding, moving up and down, or rotating within the bucket 101, thereby causing the rotating component 102 to rotate. Alternatively, a driving component can be installed on the bucket 101. When cleaning the mop, the user can insert the mop head into the bucket 101 and then drive the driving component to move along or within the bucket 101, including but not limited to sliding, moving up and down, or rotating relative to the bucket 101, thereby causing the rotating component 102 to rotate. Alternatively, when the rotating component 102 is the mop head, it is connected to the mop handle, allowing the user to drive the mop handle to rotate the mop head. Specifically, the mop handle can consist of two rods with a spiral rod or hydraulic rod between them. By driving the two rods to move relative to each other, the mop head is rotated.

[0088] In some embodiments, the cleaning tool 10 may also include drainage components such as a drain outlet and a drain pipe for discharging wastewater from the mop head after cleaning into the bucket 101; the bucket 101 may also be provided with components such as a handle to facilitate user movement.

[0089] The cleaning tool provided by this utility model includes a bucket body 101, a rotating assembly 102, and a water-lifting component. Both the rotating assembly 102 and the water-lifting component are disposed within the bucket body 101, with the water-lifting component extending away from the side wall of the bucket body 101. When there is insufficient cleaning liquid at the bottom of the bucket body 101, preventing the mop head inserted into the bucket body 101 from effectively immersing itself in the cleaning liquid, the rotating assembly 102 can be driven to rotate, causing it to agitate the cleaning liquid at the bottom of the bucket body 101. The agitated cleaning liquid, under centrifugal force, gathers and flows along the inside of the bucket body 101. As the cleaning liquid rises along the side wall, it reaches the water-spraying component. This component, extending from the side wall of the bucket 101, prevents the liquid from continuing to rise along the side wall and directs the flow of the liquid towards the center of the bucket 101. This causes the liquid to be sprayed away from the side wall of the bucket 101, allowing at least a portion of the sprayed liquid to be absorbed by the mop head located inside the bucket. This helps to wet the mop head, ensuring that it is effectively wetted even when there is less cleaning liquid at the bottom of the bucket, thus better cleaning the items on the mop head and achieving excellent cleaning results.

[0090] In some embodiments, a specific implementation of setting up a water pumping device is provided. For example... Figure 2 As shown, the water-lifting component is a sheet-shaped water-lifting plate 103. One end of the water-lifting plate 103 is located at the bottom of the side wall inside the barrel 101, and the other end extends away from the side wall of the barrel 101.

[0091] In this embodiment, the water-spraying component is a sheet-like water-spraying plate 103 extending from the bottom of the inner sidewall of the bucket 101 away from the sidewall of the bucket 101. Compared to other shapes such as protrusions or columns, the water-spraying plate 103 can effectively block liquid rising from the bottom of the bucket 101 along the sidewall, and can also effectively guide the blocked liquid away from the sidewall of the bucket 101, so as to gather as much rising liquid as possible and spray it away from the sidewall of the bucket 101. This helps the mop head to be effectively wetted even when there is little cleaning liquid at the bottom of the bucket 101. At the same time, the sheet-like water-spraying plate 103 has a simple structure, low cost, and is easy to install.

[0092] In some embodiments, such as Figure 2 As shown, the water pump 103 is inclined relative to the bottom of the tank body 101.

[0093] In this embodiment, the water-spraying plate 103 is set at an angle relative to the bottom of the bucket 101, which makes it easier to collect more rising liquid and spray it away from the side wall of the bucket 101. This helps to better wet the mop head located inside the bucket, thereby improving the cleaning effect on the mop head.

[0094] In some embodiments, such as Figure 1 and Figure 2 As shown, the tilt direction of the water pump 103 is such that the upstream A of the liquid after it has been agitated by the rotating component 102 is lower than the downstream B.

[0095] Specifically, Figure 1 and Figure 2 Taking the clockwise agitation of the liquid at the bottom of the tank by the rotating component 102 as an example, the liquid rises clockwise from the bottom of the tank along the inner wall of the tank body 101. Relative to the tank body 101, the upstream flow direction is lower than the downstream flow direction; that is, the upstream liquid is lower and closer to the bottom of the tank body 101, while the downstream liquid is higher and farther from the bottom of the tank body 101. Correspondingly, the tilt direction of the water-lifting plate 103 in this application is also that the upstream flow direction of the liquid after being agitated by the rotating component 102 is lower than the downstream flow direction. Figure 2 The starting end (e.g., A in the figure) of the water pump 103 corresponds to the upstream direction of the liquid flow, and the ending end (e.g., B in the figure) corresponds to the downstream direction of the liquid flow. The starting end (e.g., A in the figure) is lower than the ending end (e.g., B in the figure), meaning that the starting end (e.g., A in the figure) is closer to the bottom of the tank 101, and the ending end (e.g., B in the figure) is farther from the bottom of the tank 101. Figure 1 and Figure 2 Taking a liquid flowing clockwise as an example, the starting end on the left (e.g., A in the diagram) is lower than the ending end on the right (e.g., B in the diagram). Assume... Figure 1 and Figure 2 The rotating component 102 in the middle is driven to rotate counterclockwise, that is, the liquid at the bottom of the barrel 101 is stirred by the rotating component 102 and flows counterclockwise. At this time, the setting direction of the water pump 103 should be that the starting end (e.g., A in the figure) is higher than the ending end (e.g., B in the figure) located on the right. That is, at this time, the ending end (e.g., B in the figure) corresponds to the upstream of the liquid flow direction, and the starting end (e.g., A in the figure) corresponds to the downstream of the liquid flow direction.

[0096] In this embodiment, after the liquid at the bottom of the bucket 101 is agitated by the rotating component 102, it flows along the agitation direction and rises upward along the inner wall of the bucket 101. When the liquid rises, the upstream direction of its flow relative to the bucket 101 is lower than the downstream direction. Correspondingly, the tilt direction of the water-spraying plate 103 in this application is also that the upstream direction of the liquid flow after being agitated by the rotating component 102 is lower than the downstream direction, which conforms to the direction of fluid mechanics. This can reduce the amount of liquid lost due to obstructing the liquid from rising, and gather as much rising liquid as possible and spray it away from the side wall of the bucket 101. This is beneficial for the mop head located in the bucket to be better wetted, thereby improving the cleaning effect on the mop head.

[0097] In some embodiments, Figure 3 This is one of the structural schematic diagrams of the water-lifting blade in the cleaning tool provided by this utility model, such as... Figure 2 and 3As shown, the water-lifting plate 103 is fan-shaped, and one end of the fan-shaped water-lifting plate 103 corresponding to the apex C of the fan-shaped plate faces the center of the barrel 101.

[0098] Optionally, the two sides of the fan-shaped water pumping plate 103 can be equal or unequal.

[0099] In this embodiment, the water-spraying plate 103 is arranged in a fan shape, and one end of the fan-shaped water-spraying plate 103 corresponding to the apex C of the fan shape faces the center of the bucket 101. This facilitates the collection and guidance of blocked liquid through the apex C of the fan shape to the central area of ​​the bucket 101 away from the side wall of the bucket 101. This helps to better wet the mop head located in the bucket 101, thereby improving the cleaning effect on the mop head.

[0100] In some embodiments, such as Figure 3 As shown, the fan-shaped water pumping plate 103 has a rounded corner at one end corresponding to the apex C of the fan shape.

[0101] In this embodiment, one end of the aforementioned fan-shaped apex C is set as a rounded corner. While improving the liquid cohesion, the edge of the rounded corner can more evenly spray the liquid away from the side wall of the bucket 101, which helps to better wet the mop head located inside the bucket 101, thereby improving the cleaning effect of the mop head.

[0102] In some embodiments, Figure 4 This is the second schematic diagram of the water-lifting blade in the cleaning tool provided by this utility model, as shown below. Figure 4 As shown, the upper side of the water-lifting plate 103 is connected to the inner wall of the tank 101 through an arc-shaped transition surface D; and / or, the lower side of the water-lifting plate is vertically connected to the inner wall of the tank.

[0103] Specifically, in Figure 4 The vertical structure in which the lower side of the water pump 103 is vertically connected to the inner wall of the tank 101 is represented by E.

[0104] In this embodiment, the upper side of the water-spraying plate 103 is connected to the inner wall of the bucket 101 by an arc-shaped transition surface C. The arc-shaped transition surface C can reduce turbulence and resistance, and improve the flow efficiency of the liquid. When multiple water-spraying plates are provided on the side wall of the bucket 101 from top to bottom, it is convenient for the liquid to climb upward better through the transition surface and gather on the lower side of the upper water-spraying plate 103. And / or, the lower side of the water-spraying plate 103 is vertically connected to the inner wall of the bucket 101, which is convenient for better collection of the liquid climbing up from the lower water-spraying plate 103 and for spraying this liquid away from the side wall of the bucket 101. This is beneficial for the mop head located in the bucket to be better wetted, thereby improving the cleaning effect on the mop head.

[0105] In some embodiments, the edges of the water-lifting plate 103 are all rounded chamfered.

[0106] In this embodiment, the edges of the water pumping plate 103 are all rounded chamfered, which can effectively remove burrs generated by processing on the water pumping plate 103, reduce the resistance of the water pumping plate 103 to the liquid, and also facilitate assembly with other components.

[0107] In some embodiments, Figure 5 This is the third structural schematic diagram of the cleaning tool provided by this utility model. The cleaning tool 10 also includes a guide plate 104, which is detachably mounted on the inner wall of the barrel 101. The water-lifting component is integrally formed on the guide plate 104. Figure 5 As shown, the water pumping plate 103 is integrally formed on the guide plate 104.

[0108] In this embodiment, since the guide plate 104 of the cleaning tool 10 is detachably mounted on the inner wall of the barrel 101, the water-lifting component can be integrally molded onto the guide plate 104. This allows the smaller, less easily assembled water-lifting component to be detachably assembled with the larger, more easily assembled guide plate 104 and the barrel 101. Furthermore, the integral molding of the water-lifting component onto the guide plate 104 ensures a secure installation between the water-lifting component and the inner wall of the barrel 101, thereby improving the stability and service life of the water-lifting component and facilitating its manufacture.

[0109] In some embodiments, Figure 6 This is a schematic diagram of the structure of the guide plate in the cleaning tool provided by this utility model, as shown below. Figure 5 and 6 As shown, the guide plate 104 is provided with a track, which has a high limit point F and / or a low limit point G. The rotating component 102 is directly or indirectly slidably connected to the track. When the rotating component 102 slides along the track to the low limit point G, the rotating component 102 rotates and agitates the liquid accumulated in the barrel 101 to rise to the water-lifting component, and under the obstruction of the water-lifting component, it is sprayed away from the side wall of the barrel 101.

[0110] And / or, when the rotating component 102 slides along the track to the high limit point F, the rotating component 102 disengages from the liquid inside the barrel 101.

[0111] In this embodiment, the guide plate 104 is provided with a track, and the rotating component 102 can slide between the high limit point F and the low limit point G via the track. When the rotating component 102 slides directly or indirectly along the track to the low limit point G, the rotating component 102 will come into contact with the liquid at the bottom of the bucket 101, and the liquid accumulated in the bucket 101 will rise to the water-lifting device by rotating and stirring. Under the obstruction of the water-lifting device, the liquid will be sprayed away from the side wall of the bucket 101, so as to effectively clean the mop head located in the bucket 101. When the rotating component 102 slides along the track to the high limit point F, the rotating component 102 will detach from the liquid in the bucket 101. At this time, the mop head can be driven to rotate to effectively dehydrate the mop head. The track of the guide plate 104 can effectively limit the movement direction and area of ​​the rotating component 102, thereby improving the working stability of the rotating component 102.

[0112] In some embodiments, the rotating assembly 102 can be rotatably disposed at the center of the bucket body 101. When the rotating assembly 102 is disposed at the center of the bucket body 101, the rotating assembly 102 is driven to rotate and agitate the liquid at the bottom of the bucket body 101, causing it to rise evenly along the side wall of the bucket body. Most of the liquid is sprayed towards the center of the bucket body 101 by the water-spraying component, so that most of the liquid is absorbed by the wiping material on the mop head located in the bucket body 101, further improving the cleaning efficiency of the mop.

[0113] In some embodiments, Figure 7 This is the fourth structural schematic diagram of the cleaning tool provided by this utility model, as shown below. Figure 7 As shown, the rotating assembly 102 includes a rotating basket 1021 and a lifting member 1022. The lifting member 1022 drives the rotating basket 1021 to rise and fall within the barrel 101. When the lifting member 1022 lowers the rotating basket 1021 to a low position within the barrel 101, the rotating basket 1021 rotates and agitates the liquid accumulated within the barrel 101, causing the liquid to rise to the water-lifting member and, under the obstruction of the water-lifting member, to be sprayed away from the side wall of the barrel 101. And / or, the rotating basket 1021 and the lifting member 1022 are rotatably positioned at the center of the barrel 101.

[0114] It should be noted that the aforementioned lifting component 1022 can be a support column at the center of the barrel 101, with the rotating basket 1021 supported on the support column and rotating relative to the support column when driven, or simultaneously driving the support column to rotate; or the lifting component 1022 can also be a bracket, with the rotating basket 1021 rotatably connected to the bracket, the bracket being vertically and vertically mounted inside the barrel 101, and the rotating basket 1021 rotating relative to the bracket when driven.

[0115] For example, the rotating basket 1021 and the lifting component 1022 are rotatably disposed at the center of the bucket 101. When the rotating basket 1021 is driven to rotate, it agitates the liquid accumulated in the bucket 101, causing the liquid to rise evenly along the side wall of the bucket 101. When the liquid rises to the water-spraying component, the water-spraying component can prevent the liquid from rising further and spray the liquid evenly towards the center of the bucket 101. This allows most of the sprayed liquid to enter the rotating basket 1021 and be absorbed by the wiping material on the mop head in the rotating basket 1021, further improving the mop's cleaning efficiency.

[0116] In this embodiment, the rotating assembly 102 may include a rotating basket 1021 and a lifting member 1022. The mop head may be disposed in the rotating basket 1021 and move up and down within the bucket 101 under the drive of the lifting member 1022. When the lifting member 1022 drives the rotating basket 1021 and the mop head to a low position within the bucket 101, the rotating basket 1021 comes into contact with the liquid at the bottom of the bucket 101. The rotating basket 1021, driven to rotate, stirs up the liquid accumulated within the bucket 101, causing the liquid to rise to the water-lifting member and, under the obstruction of the water-lifting member, is sprayed away from the side wall of the bucket 101, so as to effectively clean the mop head located within the bucket 101. In particular, when the rotating basket 1021 and the lifting component 1022 are rotated and positioned at the center of the bucket 101, most of the liquid that rises along the side wall of the bucket 101 is sprayed by the water-spraying component in a direction closer to the center of the bucket 101. This allows most of the sprayed liquid to enter the rotating basket 1021 and be absorbed by the wiping material on the mop head in the rotating basket 1021, further improving the mop's cleaning efficiency.

[0117] In some embodiments, the rotating component 102 can be a mop head that extends into and is rotatably connected to the bucket 101. When the mop head is driven to rotate, it agitates the liquid accumulated inside the bucket 101, causing the liquid to rise to the water-spraying component and be sprayed away from the side wall of the bucket 101 under the obstruction of the water-spraying component. At least part of the sprayed liquid is absorbed by the wiping material on the mop head inside the bucket, thereby improving the cleaning efficiency of the mop head.

[0118] For example, the cleaning tool also includes a support member movably disposed on the bucket body 101. This support member supports the rotation of the mop head. For instance, the support member can be a column vertically disposed at the bottom of the bucket body 101. This column can be fixedly connected to the bottom of the bucket body 101 or rotatably connected to the bottom of the bucket body 101. The mop head extends into the bucket body 101 and is supported on the support member. When driven, the mop head can rotate relative to the support member, or it can drive the support member to rotate.

[0119] Optionally, the mop head can be inserted into a support member. For example, the bottom of the mop head is provided with an insertion hole. When the mop head is inserted into the bucket 101, the end of the support member is inserted into the insertion hole and engaged with the side wall of the insertion hole. The mop head can drive the support member to rise and fall within the bucket, allowing the mop head to descend to a low position within the bucket 101. In this low position, the mop head is driven relative to the support member or drives the support member to rotate, agitating the liquid at the bottom of the bucket and causing it to rise along the side wall of the bucket 101, and under the action of the water-spraying component, spray it away from the side wall of the bucket 101. Alternatively, the mop head can drive the support member to a high position within the bucket 101. In this high position, the mop head is driven relative to the support member or drives the support member to rotate, thus achieving the dehydration of the mop head.

[0120] And / or, the support member can be located at the center of the bucket 101, that is, when the mop head is inserted into the bucket 101 and supported by the support member, it is located at the center of the bucket 101. At this time, the rotation of the mop head will agitate the liquid accumulated in the bucket 101, causing the liquid to rise evenly along the side wall of the bucket 101. When the liquid rises to the water-spraying member, the water-spraying member can prevent the liquid from rising further and spray the liquid evenly towards the center of the bucket 101, so that most of the sprayed liquid can be absorbed by the wiping material on the mop head located at the center of the bucket 101, further improving the cleaning efficiency of the mop.

[0121] In this embodiment, the mop head is inserted into the bucket 101 and supported on the support member, facilitating the rotation of the mop head. The mop head can drive the support member to rise and fall within the bucket 101, allowing the mop head to perform cleaning at a lower position within the bucket 101 and dehydration at a higher position. When the mop head is in the lower position, it comes into contact with the liquid at the bottom of the bucket 101. The rotation agitates the liquid accumulated within the bucket 101, causing it to rise to the water-spraying member and, under the obstruction of the water-spraying member, is sprayed away from the side wall of the bucket 101. At least part of the sprayed liquid is absorbed by the wiping agent on the mop head inside the bucket 101, thereby improving the cleaning efficiency of the mop head. In particular, when the support is located at the center of the bucket 101, the mop head is also supported at the center of the bucket 101. Most of the liquid that rises along the side wall of the bucket 101 is sprayed by the water-spraying plate in a direction closer to the center of the bucket 101, so that most of the liquid is absorbed by the wiping material on the mop head located at the center of the bucket 101, which further improves the cleaning efficiency of the mop.

[0122] In some embodiments, such as Figure 6 and 7As shown, a guide plate 104 is detachably provided on the inner wall of the barrel 101. A track is provided on the guide plate 104, and the track has a high limit point F and / or a low limit point G. The lifting member 1022 is slidably connected to the track. When the lifting member 1022 slides along the track to the low limit point G, it drives the rotating basket 1021 to descend to the low position inside the barrel 101. And / or, when the lifting member 1022 slides along the track to the high limit point F, it drives the rotating basket 1021 to rise to the high position inside the barrel 101.

[0123] For example, the lifting member 1022 may be provided with a slider or a connecting rod, the end of which is inserted into the track and slides along the track.

[0124] In this embodiment, a guide plate 104 is detachably provided on the inner wall of the bucket 101. A track is provided on the guide plate 104. The lifting member 1022 can slide between the high limit point F and the low limit point G through the track, thereby driving the rotating basket 1021 to move between the high limit point F and the low limit point G. The track of the guide plate 104 can effectively limit the movement direction and area of ​​the rotating basket 1021, thereby improving the stability of cleaning and dehydrating the mop head using the rotating basket 1021.

[0125] In some embodiments, Figure 8 This is the fifth structural schematic diagram of the cleaning tool provided by this utility model, as shown below. Figure 8 As shown, the cleaning tool 10 also includes a liquid inlet assembly 105, which is connected to an external water source and is used to deliver liquid from the external water source into the tank 101 and collect it in the tank 101.

[0126] In this embodiment of the application, the cleaning tool 10 also includes a liquid inlet component 105, which is used to directly deliver liquid from an external water source into the bucket 101 and collect it in the bucket 101. This eliminates the need for the user to laboriously pour the cleaning liquid into the bucket 101 and also prevents the liquid from spilling out of the bucket 101 during the pouring process, thus improving the user experience.

[0127] In some embodiments, such as Figure 8 As shown, the liquid inlet assembly 105 includes a liquid inlet pipe 1051 disposed at the edge of the opening of the barrel 101. The liquid inlet pipe 1051 is provided with at least one liquid inlet port H, which is used to communicate with the external water source through an extension pipe and to transfer liquid from the external water source into the liquid inlet pipe 1051.

[0128] The liquid inlet pipe 1051 has multiple liquid outlet holes I on one side facing the bottom of the barrel 101, which are used to discharge the liquid transmitted to the liquid inlet pipe 1051 into the barrel 101 through the multiple liquid outlet holes I, so that the liquid can accumulate in the barrel 101.

[0129] In this embodiment, the liquid inlet assembly 105 includes a liquid inlet pipe 1051 disposed at the edge of the opening of the bucket body 101, which is provided with at least one liquid inlet port H. Liquid from an external water source can be transferred into the liquid inlet pipe 1051 through an extension pipe. The liquid inlet pipe 1051 is provided with multiple liquid outlet holes I on the side facing the bottom of the bucket body 101, so that the liquid in the liquid inlet pipe 1051 can be discharged into the bucket body 101 through the multiple liquid outlet holes I, so that the liquid can accumulate in the bucket body 101. Furthermore, by setting the positions of the multiple liquid outlet holes I on the liquid inlet pipe 1051, the liquid can be discharged according to specific needs, such as being set to discharge towards the mop head, which can effectively improve the cleaning efficiency of the mop head.

[0130] In some embodiments, such as Figure 8 As shown, the liquid inlet pipe 1051 is annular and is arranged around the edge of the opening of the barrel 101;

[0131] And / or, the plurality of liquid outlet holes I are evenly arranged on the liquid inlet pipe 1051.

[0132] In this embodiment, the liquid inlet pipe 1051 is annular and surrounds the edge of the opening of the bucket 101, facilitating drainage into the bucket 101 through multiple liquid outlet holes I on the liquid inlet pipe 1051. The liquid can be discharged directly from the top of the bucket 101 downwards to the mop head placed inside the bucket 101, improving the cleaning efficiency of the mop head; and / or, the multiple liquid outlet holes I are evenly arranged on the liquid inlet pipe 1051, facilitating the even discharge of liquid transmitted to the liquid inlet pipe 1051 through the evenly arranged multiple liquid outlet holes I to the mop head placed inside the bucket 101, improving the cleaning efficiency of the mop head.

[0133] For example, the rotating assembly 102 is located at the center of the bucket body 101. A liquid inlet pipe 1051 is arranged around the opening edge of the bucket body 101, and multiple liquid outlet holes I are evenly arranged on the side of the liquid inlet pipe 1051 facing the bottom of the bucket body 101. When the mop head is inserted into the bucket body 101 and engaged with the rotating assembly 102, the liquid entering the liquid inlet pipe 1051 can be evenly sprayed onto the mop head through the multiple liquid outlet holes I, thus improving the cleaning efficiency of the mop head.

[0134] In some embodiments, the bottom of the bucket 101 may be provided with a drain outlet, and the cleaning tool further includes a drain pipe, which is sealed to the drain outlet for discharging the sewage inside the bucket 101 to the outside of the bucket through the drain pipe.

[0135] For example, a drain outlet and a drain pipe sealed to the bottom of the tub 101 are provided. When the mop in the tub 101 is finished washing and is being spun dry, the wastewater in the tub 101 can be discharged to the outside of the tub 101 through the drain pipe, so that the mop can be spun dry more effectively and the wastewater can be prevented from contaminating the mop again.

[0136] The following example illustrates the cleaning tools provided in the embodiments of this application, taking a mop bucket as an example.

[0137] In related technologies, for mop buckets with a rotating basket 1021 (which can move up and down within the bucket body 101 under the drive of the lifting member 1022), when there is little cleaning water at the bottom of the bucket body 101, the rotating basket 1021 moves to the bottom of the bucket body, and the wiping material on the mop head located in the rotating basket 1021 cannot be completely submerged in water. Therefore, even if the rotating basket 1021 or the mop board rotates, it is not possible to effectively clean the wiping material on the mop head.

[0138] like Figures 1 to 8 As shown, taking water as an example when the liquid used to clean the mop head is water, this application provides a liquid inlet pipe 1051 (e.g., a water inlet ring pipe) at the top of the mop bucket. The top of the liquid inlet pipe 1051 is provided with a liquid inlet port H (e.g., a water inlet port). In use, the liquid inlet port H can be connected to an external water source (e.g., a tap water pipe) through an extension pipe. Water from the external water source enters the liquid inlet pipe 1051 through the extension pipe and is sprayed onto the mop head in the rotating basket 1021 through multiple liquid outlet holes I (e.g., water outlet holes) at the bottom of the liquid inlet pipe 1051.

[0139] When the amount of water flowing into the bucket 101 through the outlet I meets the user's requirements, the user can drive the mop head with the mop handle or rotate the basket 1021 so that the water at the bottom of the bucket 101 can clean the wiped items.

[0140] However, in actual operation, if the items to be wiped are to be thoroughly cleaned, a large amount of water is required at the bottom of the bucket 101. The outflow efficiency of the liquid outlet I is usually low, and users may have to wait a long time to clean the mop head, resulting in a poor user experience. When the water level is low, if the user drives the rotating basket 1021 or the mop head to rotate, the mop head is not fully immersed in the cleaning water, which makes it difficult to effectively clean the items to be wiped.

[0141] To address the aforementioned issues, this application incorporates a water-spraying plate 103 at the bottom of the side wall of the bucket 101. When the water level at the bottom of the bucket 101 is low, rotating the basket 1021 or driving the mop head to rotate agitates the cleaning water. This causes the cleaning water to rise along the side wall of the bucket 101 under centrifugal force, reaching the area below the water-spraying plate 103. The water is then directed towards the center of the bucket 101 by the water-spraying plate 103, spraying onto the object being wiped by the mop head located at the center of the bucket 101. Thus, even with a low water level at the bottom of the bucket 101, the cleaning water can still adequately wet the object being wiped thanks to the auxiliary spraying action of the water-spraying plate 103, facilitating effective cleaning.

[0142] In addition, the water pumping plate 103 is set at an angle, and the angle direction conforms to the direction of fluid mechanics, that is, the upstream of the rotating basket or mop head is lower than the downstream.

[0143] In addition, the water-lifting plate 103 can be extended in a direction away from the side wall of the tank 101.

[0144] In some embodiments, the water-lifting plate 103 can be integrated onto the guide plate 104 and detachably mounted on the side wall of the tank body 101 via the guide plate 104, which facilitates manufacturing.

[0145] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A cleaning tool, characterized in that, include: Barrel body; A rotating assembly, which is rotatably disposed within the barrel body; A water-lifting component is provided at the bottom of the side wall inside the barrel, and the water-lifting component extends away from the side wall of the barrel. When the rotating component stirs the liquid accumulated in the barrel and it rises to the water-lifting component, the water-lifting component prevents the liquid from continuing to rise along the side wall of the barrel and guides the flow of the liquid toward the center of the barrel, so that the liquid is sprayed away from the side wall of the barrel.

2. The cleaning tool according to claim 1, characterized in that, The water-lifting component is a sheet-shaped water-lifting plate, with one end of the water-lifting plate located at the bottom of the side wall inside the tank, and the other end extending away from the side wall of the tank.

3. The cleaning tool according to claim 2, characterized in that, The water-lifting plate is inclined relative to the bottom of the bucket.

4. The cleaning tool according to claim 3, characterized in that, The tilt direction of the water pumping plate is such that the upstream of the liquid after it has been agitated by the rotating component is lower than the downstream.

5. The cleaning tool according to any one of claims 2 to 4, characterized in that, The water-lifting blade is fan-shaped, and one end of the fan-shaped blade, corresponding to the apex of the fan, faces the center of the barrel.

6. The cleaning tool according to claim 5, characterized in that, The fan-shaped water pump has a rounded corner at one end corresponding to the apex of the fan.

7. The cleaning tool according to any one of claims 2 to 4, 6, characterized in that, The upper side of the water-lifting plate is connected to the inner wall of the tank through an arc-shaped transition surface; And / or, the lower side of the water-lifting plate is vertically connected to the inner wall of the tank.

8. The cleaning tool according to claim 7, characterized in that, The edges of the water pumps are all rounded and chamfered.

9. The cleaning tool according to any one of claims 1 to 4, 6 or 8, characterized in that, The cleaning tool also includes a guide plate, which is detachably mounted on the inner wall of the barrel, and the water-lifting component is integrally formed on the guide plate.

10. The cleaning tool according to claim 9, characterized in that, The guide plate is provided with a track, which has a high limit point and / or a low limit point. The rotating component is directly or indirectly slidably connected to the track. When the rotating component slides along the track to the low limit point, the rotating component stirs the liquid accumulated in the barrel by rotating and agitating it to rise to the water-lifting component, and under the obstruction of the water-lifting component, it is sprayed away from the side wall of the barrel. And / or, when the rotating assembly slides along the track to the high limit point, the rotating assembly disengages from the liquid inside the barrel.

11. The cleaning tool according to any one of claims 1 to 4, 6 or 8, 10, characterized in that, The rotating assembly includes a rotating basket and a lifting component; The lifting component drives the rotating basket to rise and fall within the barrel. When the lifting component lowers the rotating basket to a low position within the barrel, the rotating basket is driven to rotate and agitate the liquid accumulated within the barrel, causing the liquid to rise to the water-lifting component and, under the obstruction of the water-lifting component, to be sprayed away from the side wall of the barrel. And / or, the rotating basket and the lifting component are rotatably positioned at the center of the barrel.

12. The cleaning tool according to claim 11, characterized in that, A guide plate is detachably provided on the inner wall of the barrel, and a track is provided on the guide plate, and the track has a high limit point and / or a low limit point; The lifting component is slidably connected to the track; when the lifting component slides along the track to the low limit point, it drives the rotating basket to descend to the low position inside the barrel. And / or, when the lifting component slides along the track to the high limit point, it drives the rotating basket to rise to the high position inside the barrel.

13. The cleaning tool according to any one of claims 1 to 4, 6 or 8, 10, 12, characterized in that, The cleaning tool also includes a liquid inlet assembly, which is connected to an external water source and is used to deliver liquid from the external water source into the tank and collect it inside the tank.

14. The cleaning tool according to claim 13, characterized in that, The liquid inlet assembly includes a liquid inlet pipe disposed at the edge of the opening of the barrel body. The liquid inlet pipe is provided with at least one liquid inlet port, which is used to communicate with the external water source through an extension pipe and to transfer liquid from the external water source into the liquid inlet pipe. The inlet pipe has multiple outlet holes on one side facing the bottom of the barrel, which are used to discharge the liquid transmitted to the inlet pipe into the barrel through the multiple outlet holes, so that the liquid can accumulate in the barrel.

15. The cleaning tool according to claim 14, characterized in that, The liquid inlet pipe is annular and is arranged around the edge of the opening of the barrel; And / or, the plurality of liquid outlet holes are evenly arranged on the liquid inlet pipe.

16. The cleaning tool according to any one of claims 1 to 4, 6, 8, 10, 12, 14, and 15, characterized in that, The bottom of the bucket is provided with a drain outlet, and the cleaning tool also includes a drain pipe. The drain pipe is sealed to the drain outlet and is used to discharge the sewage inside the bucket to the outside of the bucket through the drain pipe.

17. The cleaning tool according to any one of claims 1 to 4, 6, 8, 10, 12, 14, and 15, characterized in that, The rotating component is a mop head that extends into the bucket and is rotatably connected to the bucket.

18. The cleaning tool according to claim 17, characterized in that, The cleaning tool also includes a support member movably disposed on the bucket body, the support member being used to support the rotation of the mop head; The mop head is inserted into the support member and drives the support member to rise and fall within the bucket. And / or, the support is located at the center of the barrel.

19. The cleaning tool according to any one of claims 1 to 4, 6, 8, 10, 12, 14, 15, and 18, characterized in that, The rotating assembly is rotatably positioned at the center of the barrel.