Wet surface cleaner

By introducing a non-rigid wiper and agitator into the wet surface cleaner, the problems of uneven distribution of cleaning liquids and solid waste residues are solved, uniform dispersion of cleaning liquids and automatic cleaning of solid waste are achieved, and user experience and cleaning efficiency are improved.

CN223054408UActive Publication Date: 2025-07-04BEIJING SHUNZAO TECH CO LTD
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Patent Information

Application Number
CN202422242215.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-04
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

The problems of uneven distribution of cleaning liquids and solid waste residues in existing wet surface cleaners affect the user experience.

Method used

A non-rigid wiper is used to cooperate with the stirring member to disperse the cleaning liquid evenly through elastic interference, and remove solid waste through self-cleaning function.

Benefits of technology

It realizes even distribution of cleaning liquids and automatic cleaning of solid waste, improving user experience and cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wet-type surface cleaner. The wet-type surface cleaner comprises a main body part and a ground brush assembly, the floor brush assembly is operably coupled to the main body part; the floor brush assembly comprises a shell assembly, a stirring piece and a non-rigid wiper. The shell assembly is pivotally connected with the main body part; the stirring piece is rotatably arranged on the shell assembly; and the non-rigid wiper is arranged close to the stirring piece and is in contact with the stirring piece along the longitudinal direction of the stirring piece.
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Description

Technical Field

[0001] The present disclosure relates to a wet surface cleaner. Background Art

[0002] The information provided in this section is only background information related to the present disclosure and is not necessarily prior art.

[0003] Existing floor cleaners clean the floor with a high flow rate of cleaning liquid in a manner that can completely wet the floor to be cleaned. By wetting the hard floor surface, the cleaning head transfers dust from the floor into the cleaning liquid. Then, the cleaning liquid is removed from the hard floor surface and retained in the recovery storage section as contaminated cleaning liquid.

[0004] A wet surface cleaner generally includes: a cleaning head that receives cleaning liquid and cleans the surface to be cleaned in a wet state; a cleaning liquid storage section that houses the cleaning solution; a recovery storage section that recovers contaminants recovered from the floor being cleaned; a motor-driven vacuum source to form a vacuum flow path from the floor being cleaned to the recovery storage section; a rechargeable battery that provides power to each component; and a base station for charging and post-cleaning maintenance of the wet surface cleaner.

[0005] When in use, in the existing wet surface cleaner, when the cleaning liquid is supplied to the cleaning head, generally a soft rubber strip is used to squeeze the cleaning head in order to expect the cleaning liquid to be distributed on the cleaning head as quickly and evenly as possible. At the same time, since the soft rubber strip is in a fixed state, a large amount of garbage will remain at the root of the soft rubber strip, and this garbage needs to be manually cleaned, otherwise it is easy to cause an odor in the cleaning head, affecting the user experience.

[0006] There are also cases in the prior art where no soft rubber strip is used. At this time, the fluid outlets for supplying the cleaning liquid to the cleaning head are dispersedly arranged in multiple numbers. However, even so, the cleaning liquid cannot be evenly dispersed on the cleaning head. Summary of the Utility Model

[0007] To solve one of the above technical problems, the present disclosure provides a wet surface cleaner.

[0008] According to one aspect of the present disclosure, there is provided a wet surface cleaner, which includes:

[0009] A main body portion; and

[0010] A floor brush assembly, the floor brush assembly being operably coupled to the main body portion;

[0011] Wherein, the floor brush assembly includes:

[0012] A housing assembly, the housing assembly being pivotally connected to the main body portion;

[0013] A stirring member rotatably disposed in the housing assembly; and

[0014] A non-rigid wiper disposed adjacent to the stirring member and in contact with the stirring member longitudinally along the stirring member.

[0015] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper is positioned on an obliquely upper side of the stirring member.

[0016] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper is an elastic wiper adapted to remove excess solids adhering to the surface of the stirring member in a manner of elastic interference.

[0017] In a wet surface cleaner according to at least one embodiment of the present disclosure, the floor brush assembly includes a cover portion for defining a receiving chamber for receiving the stirring member, wherein the non-rigid wiper is disposed on the cover portion.

[0018] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper is formed on a side of the cover portion facing the stirring member.

[0019] In a wet surface cleaner according to at least one embodiment of the present disclosure, there is a seamless connection between the non-rigid wiper and the cover portion.

[0020] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper includes a connecting end portion that is seamlessly connected to the cover portion and forms a smooth transition.

[0021] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper includes a wiping portion, and a compressible space is formed between the wiping portion and the cover portion.

[0022] In a wet surface cleaner according to at least one embodiment of the present disclosure, a fluid outlet is formed on the cover portion, and cleaning liquid is provided to the stirring member via the fluid outlet, wherein the non-rigid wiper is located above the fluid outlet.

[0023] In a wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper is an elastic wiper adapted to remove excess liquid adsorbed on the surface of the stirring member in a manner of elastic interference.

[0024] In a wet surface cleaner according to at least one embodiment of the present disclosure, the elastic wiper is positioned adjacent to the fluid outlet.

[0025] A wet surface cleaner according to at least one embodiment of the present disclosure, the non-rigid wiper includes a soft rubber formed with a compressible space, and the soft rubber extends longitudinally along the rotation axis of the stirring member.

[0026] A wet surface cleaner according to at least one embodiment of the present disclosure, the housing assembly is formed with a suction nozzle, and the suction nozzle is located below the non-rigid wiper. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The drawings illustrate exemplary embodiments of the present disclosure and, together with the description thereof, are used to explain the principles of the present disclosure. The drawings are included to provide a further understanding of the present disclosure and are incorporated in this specification and form a part of this specification.

[0028] Figure 1 It is a schematic structural diagram of a wet surface cleaner according to an embodiment of the present disclosure.

[0029] Figure 2 It is a schematic structural diagram of a floor brush assembly according to an embodiment of the present disclosure.

[0030] Figure 3 It is a schematic structural diagram of another angle of the floor brush assembly according to an embodiment of the present disclosure.

[0031] Figure 4 It is a schematic structural diagram of a partial structure of the floor brush assembly according to an embodiment of the present disclosure.

[0032] Figure 5 It is a schematic cross-sectional structural diagram of a non-rigid wiper according to an embodiment of the present disclosure.

[0033] Figure 6 It is a schematic structural diagram of a non-rigid wiper according to an embodiment of the present disclosure.

[0034] Specifically, the reference numerals in the drawings are as follows:

[0035] 100 Handle part

[0036] 200 Main body part

[0037] 300 Cleaning liquid storage part

[0038] 400 Recycling storage part

[0039] 500 Connection part

[0040] 600 Floor brush assembly

[0041] 610 Housing assembly

[0042] 620 Suction nozzle

[0043] 630 Stirring member

[0044] 640 Cover part

[0045] 641 Fluid outlet

[0046] 650 Non-rigid wiper

[0047] 651 Connecting end

[0048] 652 Wiping part

[0049] 653 Plug

[0050] 660 Cleaning assembly Detailed implementation manners

[0051] The present disclosure will be further described in detail below in conjunction with the accompanying drawings and implementation manners. It can be understood that the specific implementation manners described herein are only used to explain the relevant content and do not limit the present disclosure. Additionally, it should be noted that for the sake of description, only parts related to the present disclosure are shown in the accompanying drawings.

[0052] It should be noted that, without conflict, the implementation manners and features in the implementation manners in the present disclosure can be combined with each other. The technical solutions of the present disclosure will be described in detail below with reference to the accompanying drawings and in conjunction with the implementation manners.

[0053] Unless otherwise specified, the exemplary implementation manners / embodiments shown will be understood to provide exemplary features of various details of some ways in which the technical concept of the present disclosure can be implemented in practice. Therefore, unless otherwise specified, without departing from the technical concept of the present disclosure, the features of various implementation manners / embodiments can be additionally combined, separated, interchanged, and / or rearranged.

[0054] In the accompanying drawings, cross-hatching and / or shading are generally used to make the boundaries between adjacent components clear. Thus, unless stated, the presence or absence of cross-hatching or shading does not convey or imply any preference or requirement for the specific material, material properties, dimensions, proportions, commonality between the components shown, and / or any other characteristics, attributes, properties, etc. of the components. Additionally, in the accompanying drawings, for the purpose of clarity and / or description, the dimensions and relative dimensions of the components may be exaggerated. When the exemplary embodiments can be implemented differently, the specific process sequences can be performed in a different order than described. For example, two consecutively described processes can be performed substantially simultaneously or in an order opposite to the described order. Furthermore, the same reference numerals denote the same components.

[0055] When a component is referred to as being "on" or "above" another component, "connected to" or "coupled to" another component, it can be directly on the other component, directly connected to or directly coupled to the other component, or there may be intervening components. However, when a component is referred to as being "directly on" another component, "directly connected to" or "directly coupled to" another component, there are no intervening components. For this reason, the term "connected" can refer to a physical connection, an electrical connection, etc., and can have or not have intervening components.

[0056] For descriptive purposes, the present disclosure may use spatial relative terms such as "under", "below", "beneath", "lower", "above", "on", "over", "upper", and "side (e.g., as in "sidewall")" to describe the relationship of one component to another (other) component as shown in the figures. In addition to the orientation depicted in the figures, the spatial relative terms are also intended to encompass different orientations of the device during use, operation, and / or manufacturing. For example, if the device in the figures is turned over, a component described as "under" or "beneath" another component or feature will then be positioned "above" the other component or feature. Thus, the exemplary term "under" can encompass both an "above" and a "below" orientation. Additionally, the device may be otherwise positioned (e.g., rotated 90 degrees or at other orientations), and accordingly, the spatial relative descriptors used herein are to be interpreted.

[0057] The terms used herein are for the purpose of describing particular embodiments and are not intended to be limiting. As used herein, unless the context clearly dictates otherwise, the singular forms "a", "an", and "the" are also intended to include the plural forms. Additionally, when the terms "comprises" and / or "comprising" and their variations are used in this specification, it is stated that the features, integers, steps, operations, components, parts, and / or groups thereof stated exist, but do not preclude the existence or addition of one or more other features, integers, steps, operations, components, parts, and / or groups thereof. It should also be noted that, as used herein, the terms "substantially", "about", and other similar terms are used as approximate terms and not as terms of degree, and thus are used to interpret the inherent deviations of measurements, calculations, and / or provided values that would be recognized by one of ordinary skill in the art.

[0058] Figure 1 is a schematic structural view of a wet surface cleaner according to an embodiment of the present disclosure.

[0059] As Figure 1As shown, the wet surface cleaner of the present disclosure is used to clean a floor surface to be cleaned. Preferably, the wet surface cleaner can perform wet cleaning on the floor surface to be cleaned and recycle the liquid after cleaning the floor surface to be cleaned back to the wet surface cleaner.

[0060] As Figure 1 shown, structurally, the wet surface cleaner may include components such as a handle part 100, a main body part 200, a cleaning liquid storage part 300, a recycling storage part 400, a connecting part 500, and a floor brush assembly 600.

[0061] When the wet surface cleaner of the present disclosure is in use, the floor brush assembly 600 is configured to be able to move on the floor surface to be cleaned, so as to perform wet cleaning on the floor surface to be cleaned through the floor brush assembly 600.

[0062] The handle part 100 can be arranged at the upper end of the main body part 200, and the handle part 100 and the main body part 200 can be detachably connected, so that the wet surface cleaner can be operated by operating the handle part 100. In other words, the operator can control the attitude of the wet surface cleaner by operating the handle part 100. For example, the main body part 200 of the wet surface cleaner can rotate between an angle of a parallel attitude parallel to the surface to be cleaned and an angle in the range of a self-supporting attitude, wherein the angle of the parallel attitude is 0° to 5°.

[0063] Thus, when the main body part 200 of the wet surface cleaner is in an inclined attitude (i.e., at an angle of approximately 60° with the surface to be cleaned) or a parallel attitude (i.e., substantially parallel to the surface to be cleaned), the wet surface cleaner can be in a cleaning mode; when the main body part 200 of the wet surface cleaner is in a self-supporting attitude (the main body part 200 is arranged substantially vertically), at this time the wet surface cleaner can be in a state of stopping working.

[0064] Physical buttons can be arranged on the handle part 100, so as to control the wet surface cleaner through these physical buttons, such as controlling the start and stop of the wet surface cleaner and controlling the liquid supply speed and suction power of the wet surface cleaner, etc., so as to make the user experience of the wet surface cleaner better.

[0065] In the present disclosure, the main body part 200 is formed as the main stress structure of the wet surface cleaner, and both the cleaning liquid storage part 300 and the recycling storage part 400 of the wet surface cleaner can be directly or indirectly fixed to the main body part 200.

[0066] The cleaning liquid storage part 300 is formed in the shape of a box to store cleaning liquid therein. In one embodiment, the cleaning liquid may be purified water. Of course, those skilled in the art should know that a mixture of purified water and a cleaning agent or the like may also be stored in the cleaning liquid storage part 300.

[0067] An accommodation space is formed on the main body part 200, and the cleaning liquid storage part 300 can be disposed in the accommodation space, and a part of the outer surface of the cleaning liquid storage part 300 forms a part of the outer surface of the wet surface cleaner.

[0068] In the present disclosure, the cleaning liquid storage part 300 can be detached from the main body part 200, and the cleaning liquid can be manually filled by the user; of course, the cleaning liquid in the cleaning liquid storage part 300 of the present disclosure can also be filled through a cleaning liquid interface provided on the main body part 200.

[0069] Furthermore, when a cleaning liquid interface is provided on the main body part 200, the cleaning liquid storage part 300 can be disposed inside the main body part 200. At this time, the cleaning liquid storage part 300 does not form at least a part of the outer surface of the wet surface cleaner.

[0070] In the present disclosure, to achieve the cleaning of the surface to be cleaned, the cleaning liquid storage part 300 is at least connected to the floor brush assembly 600 through a cleaning liquid pipeline, so as to supply the cleaning liquid to the floor brush assembly 600. Correspondingly, the floor brush assembly 600 uses the cleaning liquid to perform wet cleaning on the surface to be cleaned.

[0071] In another embodiment, the cleaning liquid storage part 300 of the present disclosure can also be disposed on the floor brush assembly 600; for example, disposed on the housing assembly of the floor brush assembly 600.

[0072] As Figure 1 shown, the main body part 200 forms an accommodation space. The recycling storage part 400 is detachably disposed on the main body part 200 and is located in the accommodation space. When the liquid stored in the recycling storage part 400 is relatively much, the user can remove the recycling storage part 400, pour out the internal sewage and clean up the solid garbage. At this time, a part of the outer surface of the recycling storage part 400 forms a part of the outer surface of the wet surface cleaner.

[0073] In order to recycle the liquid after cleaning the surface to be cleaned, the recycling storage part 400 can be connected to the floor brush assembly 600 through a recycling pipeline. Correspondingly, a mixture of sewage and gas (dirty) can be recycled to the recycling storage part 400 through the recycling pipeline.

[0074] Accordingly, the wet surface cleaner further includes a suction device (not shown in the figure). The suction device can generate a negative pressure and provide the negative pressure to the recovery storage part 400, so as to realize the forced flow of gas and sewage in the recovery pipeline. In the present disclosure, the gas discharged from the suction device can flow to the outside of the wet surface cleaner through the gaps on a part of the outer surface of the wet surface cleaner.

[0075] The main body part 200 is connected to the floor brush assembly 600 through the connecting part 500, so that the main body part 200 is pivotally connected to the floor brush assembly 600. In the present disclosure, the main body part 200 has at least two rotational degrees of freedom relative to the floor brush assembly 600, so as to enable the user to operate the wet surface cleaner more conveniently.

[0076] Figure 2 is a schematic structural view of a floor brush assembly according to an embodiment of the present disclosure. Figure 3 is a schematic structural view of the floor brush assembly from another angle according to an embodiment of the present disclosure.

[0077] In the present disclosure, as Figure 2 and Figure 3 shown, the floor brush assembly 600 may include components such as a housing assembly 610, a suction nozzle 620, a stirring member 630, and a cover part 640.

[0078] The housing assembly 610 is configured to be connected to the main body part 200 through the connecting part 500, and the housing assembly 610 can be adapted to move on the floor surface to be cleaned. For example, the housing assembly 610 may include two rolling wheels. The housing assembly 610 can define a receiving cavity for the floor brush assembly. The receiving cavity is located in the front half of the floor brush assembly (with the moving direction of the wet surface cleaner when cleaning the surface to be cleaned as the front), so as to accommodate the stirring member 630 in the receiving cavity. Accordingly, the stirring member 630 is also located in the front half of the floor brush assembly.

[0079] The suction nozzle 620 is formed on the housing assembly 610. In the present disclosure, the suction nozzle 620 is disposed adjacent to the stirring member 630 and is located behind the stirring member 630. In the present disclosure, the suction nozzle 620 is connected to the recovery pipeline and forms the starting point of the recovery path.

[0080] The stirring member 630 is configured to stir the floor surface to be cleaned, that is, it can be used in cooperation with a cleaning medium (cleaning liquid and / or cleaning foam) to scrub the surface to be cleaned; that is to say, when the wet surface cleaner is performing a cleaning operation or a self-cleaning operation, the stirring member 630 can be driven by a motor to rotate, whereby the stirring member 630 can make frictional contact with the floor surface to be cleaned, and the cleaning of the floor surface to be cleaned can be achieved. During the frictional contact between the stirring member 630 and the floor surface to be cleaned, the cleaning liquid can be supplied to the stirring member 630, so as to achieve the wet cleaning of the floor surface to be cleaned.

[0081] The cover part 640 is arranged on the housing assembly 610 and is configured to partially surround the stirring member 630; in one embodiment, the cover part 640 also forms a part of the accommodating cavity. In other words, the cover part 640 and the housing assembly 610 together form the above-mentioned accommodating cavity.

[0082] Figure 4 It is a schematic structural view of a part of the floor brush assembly according to an embodiment of the present disclosure. Figure 5 It is a schematic cross-sectional structural view of a non-rigid wiper according to an embodiment of the present disclosure. Figure 6 It is a schematic structural view of a non-rigid wiper according to an embodiment of the present disclosure.

[0083] As Figure 4 and Figure 6 shown, the floor brush assembly 600 of the present disclosure may include a non-rigid wiper 650, and the non-rigid wiper 650 is arranged close to the stirring member 630 and contacts the stirring member 630 longitudinally along the stirring member 630.

[0084] That is to say, the non-rigid wiper 650 of the present disclosure can be in interference fit with the villi (i.e., bristles) of the stirring member 630. When the stirring member 630 rotates, the villi of the stirring member 630 can make pressured contact with the non-rigid wiper 650. Thus, the non-rigid wiper 650 can evenly disperse the liquid on the stirring member 630 in the entire axial direction of the stirring member 630.

[0085] In a specific embodiment, the non-rigid wiper 650 can be fixed to the cover part 640 and cover at least a part of the inner surface of the cover part 640. In a preferred embodiment, a fluid outlet 641 is formed on the cover part 640; specifically, the fluid outlet 641 can be a water outlet hole; preferably, the fluid outlet 641 is provided in plurality, and the plurality of fluid outlets 641 are distributed at equal intervals along the axial direction of the stirring member 630.

[0086] More preferably, in terms of position, the non-rigid wiper 650 is located above the fluid outlet 641, and moreover, the suction nozzle 620 is located below the fluid outlet 641.

[0087] In the present disclosure, a cleaning component 660 is further provided on the housing assembly 610; the cleaning component 660 is formed in a serrated structure and is located above the suction nozzle 620. When the wet surface cleaner of the present disclosure cleans the surface to be cleaned, the stirring member 630 is driven and rotates counterclockwise (in the Figure 3 direction shown), at this time, the surface of the stirring member 630 will sequentially pass through the suction nozzle 620, the cleaning component 660, the fluid outlet 641, and the non-rigid wiper 650; correspondingly, the solid dirt on the stirring member 630 can be scraped off by the cleaning component 660 and sucked into the recovery storage part 400 via the suction nozzle 620.

[0088] When the stirring member 630 after being cleaned by the cleaning component 660 rotates past the fluid outlet 641, the cleaning liquid provided by the fluid outlet 641 will be absorbed by the surface of the stirring member 630. Since the fluid outlet 641 is separately arranged, at this time, the liquid distribution on the surface of the stirring member 630 is not uniform; thus, the non-rigid wiper 650 of the present disclosure can be used to disperse the liquid. Specifically, by having the non-rigid wiper 650 in pressured contact with a partial area in the entire axial direction of the stirring member 630, the cleaning liquid can be evenly distributed on the stirring member 630. Correspondingly, when the stirring member 630 continues to rotate and contacts the surface to be cleaned, uniform water stains can also be formed on the surface to be cleaned.

[0089] In the present disclosure, the non-rigid wiper 650 is formed on the side of the cover body part 640 facing the stirring member 630, and the non-rigid wiper 650 is positioned on the obliquely upper side of the stirring member 630. Specifically, the non-rigid wiper 650 is positioned on the obliquely rear side of the stirring member 630, so that the non-rigid wiper 650 and the fluid outlet 641 can be arranged close to each other to disperse the cleaning liquid on the stirring member 630 as soon as possible, improving the dispersion effect of the cleaning liquid.

[0090] In a preferred embodiment, the non-rigid wiper 650 is seamlessly connected to the cover body part 640; specifically, the non-rigid wiper 650 includes a connecting end part 651, and the connecting end part 651 is seamlessly connected to the cover body part 640 and forms a smooth transition.

[0091] That is to say, along the circumferential direction of the stirring member 630, the non-rigid wiper 650 of the present disclosure includes two connecting ends 651, and both of these two connecting ends 651 are smoothly connected to the inner surface of the cover body portion 640; moreover, the inner surface of the cover body portion 640 of the present disclosure is also formed as a smooth surface; correspondingly, when the wet surface cleaner performs a cleaning operation, no solid waste remains on the inner surface of the cover body portion 640. To put it another way, when the wet surface cleaner performs a cleaning operation, even if some solid waste remains on the inner surface of the cover body portion 640, the solid waste can be removed through the self-cleaning operation of the wet surface cleaner.

[0092] In other words, when the wet surface cleaner performs a self-cleaning operation, through the forward rotation and reverse rotation of the stirring member 630, the fluff of the stirring member 630 can clean the entire inner surface of the cover body portion 640 and the non-rigid wiper 650, so that the dirt on the cover body portion 640 and the non-rigid wiper 650 can be brushed off, realizing the maintenance of the cover body portion 640 and the non-rigid wiper 650 without disassembly and cleaning.

[0093] Referring again to Figure 6 , in the present disclosure, the non-rigid wiper 650 includes a wiping portion 652, and a compressible space is formed between the wiping portion 652 and the cover body portion 640. Specifically, the wiping portion 652 of the present disclosure is formed as the portion between the two connecting ends 651. In other words, the wiping portion 652 of the present disclosure can enable the non-rigid wiper 650 to form a concave cavity, and this concave cavity and the inner surface of the cover body portion 640 jointly form the above-mentioned compressible space; taking the non-rigid wiper 650 prepared by using an elastic material such as rubber or silica gel (or soft glue) as an example, when pressure is applied to the wiping portion 652, the shape of the concave cavity can change. For example, the volume of the concave cavity can shrink, so that the non-rigid wiper 650 of the present disclosure is formed as a deformable component.

[0094] The non-rigid wiper 650 includes a soft glue in which a compressible space is formed, and the soft glue extends longitudinally along the rotation axis of the stirring member 630; in a preferred embodiment, plugs 653 are formed at both ends of the non-rigid wiper 650, and the plugs can limit the compressible space at both ends. Thus, the cleaning liquid and solid waste will not enter the compressible space through both ends of the non-rigid wiper 650. In other words, when the non-rigid wiper 650 of the present disclosure is installed on the cover body portion 640, the plugs 653 can be in pressure contact (sealed contact) with the inner surface of the cover body portion 640, thereby reducing the cleaning difficulty of the wet surface cleaner of the present disclosure.

[0095] In the present disclosure, the wet surface cleaner may further include a fluid delivery system that can supply the cleaning liquid stored in the cleaning liquid storage portion 300 to the fluid outlet 641 and further supply it to the stirring member 630 through the fluid outlet 641.

[0096] In a preferred embodiment, the stirring member 630 may include a roller brush. Moreover, due to the arrangement of the non-rigid wiper 650, the fluid outlet of the present disclosure can be spaced from the surface of the stirring member 630, thereby avoiding blockage of the fluid outlet.

[0097] The non-rigid wiper of the present disclosure can also remove the excess solids adhering to the surface of the stirring member 630. Especially during the self-cleaning of the wet surface cleaner of the present disclosure, the self-cleaning of the stirring member 630 can be achieved more quickly through the arrangement of the non-rigid wiper 650.

[0098] In the description of this specification, the description with reference to terms such as "one embodiment / way", "some embodiments / ways", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment / way or example are included in at least one embodiment / way or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment / way or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments / ways or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments / ways or examples described in this specification and the features of different embodiments / ways or examples.

[0099] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0100] Those skilled in the art should understand that the above embodiments are only for clearly explaining the present disclosure and not for limiting the scope of the present disclosure. For those skilled in the art, other changes or modifications can be made based on the above disclosure, and these changes or modifications are still within the scope of the present disclosure.

Claims

1. A wet surface cleaner, characterized in that, Comprising: A main body portion; And A floor brush assembly operatively coupled to the main body portion; Wherein, the floor brush assembly comprises: A housing assembly pivotally connected to the main body portion; A stirring member rotatably disposed in the housing assembly; and A non-rigid wiper disposed adjacent to the stirring member and in contact with the stirring member longitudinally along the stirring member.

2. The wet surface cleaner according to claim 1, characterized in that, The non-rigid wiper is positioned on the diagonal upper side of the stirring member.

3. The wet surface cleaner according to claim 1, characterized in that, The non-rigid wiper is an elastic wiper adapted to remove excess solids adhering to the surface of the stirring member in a manner of elastic interference.

4. The wet surface cleaner according to claim 1, wherein The floor brush assembly includes a cover portion for defining a receiving chamber for receiving the stirring member, wherein the non-rigid wiper is disposed on the cover portion.

5. The wet surface cleaner according to claim 4, wherein The non-rigid wiper is formed on a side of the cover portion facing the stirring member.

6. The wet surface cleaner according to claim 5, wherein There is a seamless connection between the non-rigid wiper and the cover portion.

7. The wet surface cleaner according to claim 5, characterized in that, The non-rigid wiper includes a connecting end portion that is seamlessly connected to the cover portion and forms a smooth transition.

8. The wet surface cleaner according to claim 5, characterized in that, The non-rigid wiper includes a wiping portion, and a compressible space is formed between the wiping portion and the cover portion.

9. The wet surface cleaner according to claim 4, wherein A fluid outlet is formed on the cover portion, and cleaning liquid is provided to the stirring member via the fluid outlet, wherein the non-rigid wiper is located above the fluid outlet.

10. The wet surface cleaner according to claim 9, characterized in that, The non-rigid wiper is an elastic wiper adapted to remove excess liquid adsorbed on the surface of the stirring member in a manner of elastic interference.

11. The wet surface cleaner according to claim 10, characterized in that, The elastic wiper is positioned adjacent to the fluid outlet.

12. The wet surface cleaner according to claim 1, characterized in that, The non-rigid wiper includes a soft rubber with a compressible space formed therein, and the soft rubber extends longitudinally along the rotation axis of the stirring member.

13. The wet surface cleaner according to claim 1, characterized in that, The housing assembly forms a suction nozzle located below the non-rigid wiper.