Water squeezing mechanism and cleaning head

By designing the water squeeze bar of the water squeeze mechanism to form a pressing groove with the surface of the cleaning drum, and using the cleaning structure to roll friction, the problem of sticky garbage deposition in existing cleaning tools is solved, achieving a more efficient cleaning effect and reducing resistance.

CN120240904APending Publication Date: 2025-07-04WUHAN DIISEA INTELLIGENCE TECH CO LTD
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Patent Information

Application Number
CN202510028040.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2021-12-10
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The existing integrated cleaning tools are difficult to effectively clean up the deposition of sticky garbage during the cleaning process, which affects the cleaning effect and use resistance of the cleaning drum.

Method used

A water squeeze mechanism is designed, including a water squeeze strip and a fixing frame. The water squeeze strip forms a press groove with the surface of the cleaning drum. The water press end is equipped with a cleaning structure to clean up sticky garbage through rolling friction and surface deformation.

Benefits of technology

It effectively avoids the deposition of sticky garbage on the surface of the cleaning drum, improves the cleaning effect, reduces the resistance during cleaning, and ensures the service life of the cleaning drum.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention is suitable for the technical field of cleaning equipment, and discloses a water squeezing mechanism and a cleaning head, the water squeezing mechanism comprises a water squeezing strip enabling the surface of a cleaning roller to deform, the water squeezing strip is provided with a water pressing end for squeezing the cleaning roller, and the water squeezing strip is connected with a fixing frame away from the water pressing end; the cleaning head support is connected with the fixing frame to enable the wringing strip and the surface of the cleaning roller to form a wringing pressing groove, and an included angle is formed between the fixing frame and one side face of the wringing strip. When the cleaning head is used, in the rotating process of the cleaning roller, the water squeezing mechanism can squeeze out water which is possibly adsorbed on the surface of a cleaning area and inside the cleaning roller, so that more liquid is prevented from being left in the cleaning area, and the surface of the cleaning roller and the ground which is possibly provided with viscous garbage can be cleaned more easily; and the viscous garbage deposition phenomenon formed on the cleaning roller is avoided.
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Description

[0001] This application is a divisional application of Chinese patent application No. 202111509069.3 and invention name “A water squeezing mechanism, cleaning head and cleaning tool for a mopping and sweeping cleaning head”, the contents of which are incorporated herein by reference. Technical Field

[0002] The present disclosure relates to the technical field of cleaning equipment, and in particular to a water squeezing mechanism and a cleaning head. Background Art

[0003] The existing integrated mopping and sweeping cleaning tools are implemented by using a water-dust flow path, that is, the wet cleaning roller is rolled on the cleaning surface to adsorb dust to the surface of the cleaning roller, and at the same time, the surface of the cleaning roller is partially cleaned with clean water, and then the cleaning part of the cleaning roller is squeezed by the water squeezing structure to discharge the water, so as to avoid the cleaning roller carrying too much water, resulting in too much water on the cleaning surface. At the same time, during the cleaning process or the clean water flushing process, some dust enters the shallow layer of the cleaning roller, which cannot be cleaned by flushing. The surface of the cleaning roller that squeezes the cleaning part can take away the shallow dust that enters the cleaning roller, thereby achieving continuous cleaning. However, the existing squeezing mechanism cannot effectively clean the sticky garbage deposits, which affects the use. Summary of the invention

[0004] The main technical problem solved by the present invention is to provide a water squeezing mechanism of a mopping and sweeping integrated cleaning head, a cleaning head and a cleaning tool, wherein the water squeezing mechanism can avoid the deposition of sticky garbage on both sides of the cleaning roller, improve the cleaning effect of the cleaning roller and the resistance during cleaning.

[0005] In order to solve the above problems, in the first aspect, the present invention provides a water squeezing mechanism, which is arranged on a cleaning head with a cleaning head bracket, and the water squeezing mechanism includes a water squeezing bar that deforms the surface of the cleaning roller, and the water squeezing bar has a water pressing end that squeezes the cleaning roller, and the water squeezing bar is connected to a fixed frame away from the water pressing end. The cleaning head bracket is connected to the fixed frame so that the water squeezing bar and the surface of the cleaning roller form a water squeezing groove, and the fixed frame forms an angle with one side of the water squeezing bar.

[0006] In one or some embodiments, the water squeezing bar is rotatably connected to the fixing frame, and forms rolling friction with the surface of the cleaning roller when squeezing water.

[0007] In one or some embodiments, the angle is 90 degrees.

[0008] In one or some embodiments, the water pressure end squeezes the cleaning roller to make its surface shape suddenly change, the surface of the cleaning roller has a sudden change area, and the water-facing surface of the water pressure end is provided with a cleaning structure for cleaning the attachments on the surface of the cleaning roller.

[0009] In one or some embodiments, the cleaning structure includes a plurality of protrusions distributed along the length direction of the water squeezing strip, and there are gaps between adjacent protrusions.

[0010] In one or some embodiments, in the cross-section of the water squeezing mechanism along the direction perpendicular to its length, the protrusion is a triangular or triangular-like structure.

[0011] In one or some embodiments, in the cross-section of the water squeezing mechanism along the direction perpendicular to its length, two sides of the protrusion form two included angles with the water-facing surface, and the upper end surface of the protrusion forms an acute angle with the surface of the upper part of the water-facing surface.

[0012] In one or some embodiments, the protrusion does not come into contact with the surface of the cleaning roller.

[0013] In one or some embodiments, the mutation region is at the edge of the pressure groove, and the cleaning structure is located in the mutation region.

[0014] In one or some embodiments, the end of the water squeezing end is in an arc shape with a relatively small frictional force with the surface of the cleaning roller in the mutation region.

[0015] In one or some embodiments, strip-shaped cleaning grooves are uniformly arranged on the surface of the cleaning roller along the axial direction.

[0016] In one or some embodiments, the cross-section of the cleaning groove along the direction perpendicular to its length is square or V-shaped.

[0017] In one or some embodiments, at least one side surface of the water squeezing strip is on the same straight line as the radius of the cleaning roller.

[0018] In a second aspect, the present invention provides a cleaning head, including:

[0019] The water squeezing mechanism as described in the first aspect;

[0020] A cleaning head body;

[0021] A cleaning roller, rotatably connected to the cleaning body;

[0022] A garbage box for collecting the garbage cleaned by the cleaning roller;

[0023] The cleaning head can both mop the floor and sweep the floor.

[0024] In one or some embodiments, the water squeezing strip is rotatably connected to the fixing frame and forms a rolling friction with the surface of the cleaning roller when squeezing water.

[0025] In one or some embodiments, the included angle is 90 degrees.

[0026] In one or some embodiments, the water pressure end squeezes the cleaning roller to make its surface shape suddenly change, the surface of the cleaning roller has a sudden change area, and the water-facing surface of the water pressure end is provided with a cleaning structure for cleaning the attachments on the surface of the cleaning roller.

[0027] In one or some embodiments, the cleaning structure includes a plurality of protrusions distributed along the length direction of the water squeezing bar, and gaps are provided between adjacent protrusions.

[0028] In one or some embodiments, in the cross section of the water squeezing mechanism along the vertical direction of the length, the protrusion is a triangle or a triangle-like structure.

[0029] In one or some embodiments, in the cross section of the water squeezing mechanism along the vertical direction of the length, two edges of the protrusion form two angles with the water facing surface, and the upper end surface of the protrusion forms an acute angle with a surface at the upper part of the water facing surface.

[0030] In one or some embodiments, the protrusions do not come into contact with the surface of the cleaning roller.

[0031] In one or some embodiments, the mutation area is at the edge of the groove, and the cleaning structure is located at the mutation area.

[0032] In one or some embodiments, the end of the water pressure end is in the shape of an arc having a relatively small friction with the surface of the cleaning roller in the mutation area.

[0033] In one or some embodiments, strip-shaped cleaning grooves are evenly arranged on the surface of the cleaning roller along the axial direction.

[0034] In one or some embodiments, the cross-section of the cleaning groove along the vertical direction of the length is square or V-shaped.

[0035] In one or some embodiments, at least one side of the squeezing bar is on the same straight line as the radius of the cleaning roller.

[0036] In the third aspect, the present invention also provides a mopping and sweeping cleaning tool, which comprises the cleaning head as described in the second aspect and a handle movably connected to the cleaning head, the cleaning head comprises a cleaning head body and a cleaning roller rotatably connected to the cleaning body, and a garbage box for collecting garbage cleaned by the cleaning roller, the mopping and sweeping cleaning head is also provided with a water squeezing mechanism, the water squeezing mechanism comprises a water squeezing bar having a water pressing end, which squeezes the cleaning roller to cause a sudden change in its surface shape, and a cleaning structure for cleaning the attachments on the surface of the cleaning roller, the cleaning structure comprises a plurality of protrusions distributed along the length direction of the water squeezing bar, and gaps are provided between adjacent protrusions.

[0037] The present invention discloses a water squeezing mechanism, a cleaning head and a cleaning tool. The water squeezing mechanism includes a water squeezing bar that deforms the surface of a cleaning roller. The water squeezing bar has a water pressing end that squeezes the cleaning roller to make its surface shape suddenly change. At the same time, rolling friction between the water squeezing bar and the surface of the cleaning roller is adopted to reduce the resistance of the squeezing water to the cleaning roller. The water-facing surface of the water pressing end is provided with a cleaning structure for cleaning the attachments on the surface of the cleaning roller. The cleaning structure includes a plurality of protrusions distributed along the length direction of the water squeezing bar, and gaps are provided between adjacent protrusions. When in use, the water squeezing bar forms axially distributed pressure grooves on the surface of the cleaning roller. During the rotation of the cleaning roller, the water that may be adsorbed on the surface of the cleaning area and inside the cleaning roller can be squeezed out to avoid more liquid remaining in the cleaning area. At the same time, due to the provision of a water squeezing bar with a special structure, it is easier to clean the possible sticky garbage on the surface of the cleaning roller, and avoid the formation of sticky garbage deposition on the cleaning roller.

[0038] The water squeezing bar is provided with a fixing frame away from the water pressing end, and the water-facing surface or the other side surface of the water squeezing bar is on the same straight line as the radius of the cleaning roller, that is, the angle between the fixing frame and one side surface of the water squeezing bar is 90 degrees, so that the cleaning structure of the water pressing end can be located in the tangent direction of the contact point of the water squeezing end with the cleaning roller on the surface of the cleaning roller as the cleaning roller rotates, which is most convenient for peeling off the attachments attached to the surface of the cleaning roller. The water squeezing bar causes the surface shape of the cleaning roller to change suddenly near the water squeezing bar, so that the attachments attached to the surface of the cleaning roller, especially the linear shape such as hair, or the part with certain sticky garbage, are separated from the cleaning roller, and the cleaning structure is just in the sudden change area of ​​the surface, so that the attachments are easily cleaned. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without exceeding the scope of protection required by the present application.

[0040] Figure 1 It is a schematic diagram of the cross-sectional structure of an embodiment of the cleaning head of the present invention along the vertical direction of the rotating shaft.

[0041] Figure 2 It is a schematic structural diagram of an embodiment of a water squeezing mechanism of the present invention.

[0042] Figure 3 yes Figure 2 A schematic diagram of the enlarged structure of part A.

[0043] Figure 4 This is a schematic diagram of the structure when the water squeezing bar cooperates with the cleaning roller.

[0044] Figure 5 It is a schematic structural view when the water squeezing strip with a cleaning structure cooperates with the cleaning roller.

[0045] Figure 6 It is Figure 5 an enlarged schematic view of the structure of part B in

[0046] The realization, functional features and advantages of the present invention will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments

[0047] The following further elaborates in detail the claims of the present invention in combination with specific embodiments and the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art without creative efforts based on the embodiments of the present invention also fall within the scope of protection of the present invention.

[0048] It should be understood that in the description of the embodiments of the present invention, all terms indicating directional indications, such as "upper", "lower", "left", "right", "front", "rear", etc., indicate the orientation or positional relationship based on the orientation and positional relationship shown in the drawings or the orientation or positional relationship when the product of the present invention is usually placed. It is only for the convenience of simplifying the description of the present invention, rather than explicitly or implicitly indicating that the device, element or component must have a specific orientation and a specific orientation structure. It should not be construed as a limitation of the present invention. It is only used to explain the relative positional relationship and movement conditions between the components under the shown drawings. When the specific posture changes, the directional indication may also change accordingly.

[0049] In addition, the ordinal numbers in the present invention, such as "first", "second", etc., are only used for distinguishing purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the technical features indicated. Thus, the features defined by "first" and "second" may explicitly or implicitly include at least one of such technical features. In the description of the present invention, the meaning of "a plurality" is at least two, that is, two or more, unless otherwise clearly defined; the meaning of "at least one" is one or more.

[0050] In the present invention, unless otherwise clearly defined and limited, terms such as "installation", "setting", "connection", "fixation", "swivel connection" and the like shall be understood in a broad sense. For example, it can be either a relatively fixed positional relationship between components or a physically fixed connection between components. It can be either a detachable connection or an integral structure; it can be either a mechanical connection or an electrical signal connection; it can be either directly connected or indirectly connected through an intermediate medium or component; it can be either the communication inside two components or the interaction relationship between two components. Unless otherwise clearly defined in the specification, when other understandings cannot achieve the corresponding functions or effects, for those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0051] If the present invention involves controllers and control circuits, they are conventional control technologies or units in the art. For example, the control circuit of the controller can be implemented by ordinary technicians in the art using existing technologies, such as simple programming. For software or programs that cooperate with hardware to achieve control results, if the description does not provide detailed explanations indicating the control processes of the software or programs involved, they belong to the use of existing technologies or the conventional technologies of ordinary technicians in the art. The power supply also belongs to the existing technologies in the art. And since the main inventive technical point of the present invention lies in the improvement of the mechanical device, the specific circuit control relationships and circuit connections of the present invention will not be described in detail.

[0052] The disclosure of the present invention provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, components and settings of specific examples are described in the present invention. Of course, they are only examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numerals and / or reference letters in different examples. Such repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but those of ordinary skill in the art can be aware of the application of other processes and / or the use of other materials.

[0053] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for explaining and illustrating the present invention, and are not used to limit the present invention.

[0054] The technical solutions of the present invention will be described in detail below with reference to the accompanying drawings.

[0055] Figures 1 - 6 As shown, the present invention provides an embodiment of a water squeezing mechanism for a combined mopping and sweeping cleaning head.

[0056] The water squeezing mechanism of the integrated sweeping and mopping cleaning head includes a water squeezing strip 41 that deforms the surface of the cleaning roller 2, and at least one side of the water squeezing strip 41 is on the same straight line as the radius of the cleaning roller 2.

[0057] Specifically, a fixing frame 4 is provided at the end of the water squeezing strip 41 away from the water pressing end, and the fixing frame 4 is connected to the cleaning head bracket 1. After assembly, the fixing frame 4 forms a water squeezing groove on the surface of the cleaning roller 2 with the water squeezing strip 41 thereon. The water-facing surface or another side surface of the water squeezing strip 41 is on the same straight line as the radius of the cleaning roller 2, that is, the included angle a between the fixing frame 4 and one side surface of the water squeezing strip 41 is 90 degrees.

[0058] During use, the water squeezing strip forms an axially distributed pressing groove A on the surface of the cleaning roller. During the rotation of the cleaning roller, the water that may be adsorbed on the surface of the cleaning area and inside the cleaning roller can be squeezed out, avoiding the residue of a large amount of liquid in the cleaning area and causing water stains on the cleaning surface. At the same time, due to the special structure of the water squeezing strip 41, it is easier to clean the sticky garbage that may adhere to the surface 21 of the cleaning roller 2, avoiding the deposition of sticky garbage on the cleaning roller and increasing the resistance of the cleaning roller during cleaning.

[0059] Strip-shaped cleaning grooves (not marked in the attached drawing) are uniformly arranged axially on the surface of the cleaning roller 2. The existence of these cleaning grooves can produce a better cleaning effect, but it is also easy to adhere to garbage, and at the same time, it is easy to form a deposition phenomenon of sticky garbage.

[0060] In order to reduce the rolling friction between the water squeezing strip 41 and the surface of the cleaning roller 2, the resistance generated by water squeezing on the cleaning roller can be reduced. A cleaning structure 5 for cleaning the attachments on the surface of the cleaning roller is provided on the water-facing surface of the water squeezing strip 41. The cleaning structure 5 is located in the surface mutation area of the cleaning roller 2, that is, between the edge of the pressure groove A formed by squeezing water between the surface 21 of the cleaning roller 2 and the water squeezing strip 41. The cleaning structure 5 includes a plurality of protrusions distributed along the length direction of the water squeezing strip 41, and there are gaps between adjacent protrusions (not marked in the attached drawing). The protrusions can be set as triangular or similar triangular structures. Two sides of the protrusion form two included angles with the water-facing surface of the water squeezing strip 41, and an acute angle is formed between the upper end surface of the protrusion and one surface of the upper part of the water-facing surface. Due to the cleaning structure near the water squeezing strip 41, the water squeezing strip 41 causes the surface shape of the cleaning roller 2 to mutate, so that the attachments attached to the surface 21 of the cleaning roller 2, especially those in the form of hair-like lines or sticky garbage with a certain viscosity, are partially separated from the surface of the cleaning roller. And the cleaning structure is exactly in the surface mutation area, so that the attachments can be easily cleaned from the surface 21 of the cleaning roller 2. When the protrusions are set, they are exactly located in the mutation area and do not come into contact with the surface of the cleaning roller. In this way, the attachments can be cleaned and the surface of the cleaning roller is not affected, thus prolonging the service life. According to needs, the cross-section of the cleaning groove in the vertical direction of the length is square, V-shaped, wavy, etc.

[0061] The present invention also provides a combined sweeping and mopping cleaning head, which includes a cleaning head body 1, a cleaning roller 2 rotatably connected to the cleaning body, and a garbage box 3 for collecting the garbage cleaned by the cleaning roller. The combined sweeping and mopping cleaning head is also provided with a water squeezing mechanism, which includes a water squeezing strip 41 that deforms the surface of the cleaning roller 2, and at least one side surface of the water squeezing strip 41 is on the same straight line as the radius of the cleaning roller 4.

[0062] Specifically, a fixing frame 4 is provided at the end of the water squeezing strip 41 away from the water pressing end. The fixing frame 4 is connected to the cleaning head bracket 1. After assembly, the fixing frame 4 makes the water squeezing strip 41 thereon form a water squeezing pressure groove with the surface of the cleaning roller 4. The water-facing surface or another side surface of the water squeezing strip 41 is on the same straight line as the radius of the cleaning roller 2, that is, the included angle a between the fixing frame 4 and one side surface of the water squeezing strip 41 is 90 degrees.

[0063] During use, the water squeezing strip forms an axially distributed pressure groove on the surface of the cleaning roller. During the rotation of the cleaning roller, the water on the surface of the cleaning area and possibly adsorbed inside the cleaning roller can be squeezed out, avoiding the residue of more liquid in the cleaning area and causing water stains on the cleaning surface. At the same time, due to the special structure of the water squeezing strip 41, it is easier to clean the sticky garbage on the surface of the cleaning roller 2, avoiding the deposition of sticky garbage on the cleaning roller and increasing the resistance of the cleaning roller during cleaning.

[0064] The surface of the cleaning roller 2 is evenly provided with strip-shaped cleaning grooves along the axial direction (not marked in the attached drawings). The existence of these cleaning grooves can produce a better cleaning effect, but it is easy for garbage to adhere to them, and at the same time, it is also easy to form a phenomenon of sticky garbage deposition.

[0065] In order to reduce the rolling friction between the water squeezing strip 41 and the surface of the cleaning roller 2, the resistance generated by water squeezing on the cleaning roller can be reduced. A cleaning structure 5 for cleaning the attachments on the surface of the cleaning roller is provided on the water-facing surface of the water squeezing strip 41. This cleaning structure 5 is located in the surface mutation area of the cleaning roller 2, that is, between the edge of the pressure groove A formed by the water squeezing of the surface 21 of the cleaning roller 2 and the water squeezing strip 41. The cleaning structure 5 includes a plurality of protrusions distributed along the length direction of the water squeezing strip 41, and there are gaps between adjacent protrusions (not marked in the attached drawings). The protrusions can be set as triangular or similar triangular structures. Two sides of the protrusion form two included angles with the water-facing surface of the water squeezing strip 41, and an acute angle is formed between the upper end surface of the protrusion and the upper surface of the water-facing surface. Due to the cleaning structure near the water squeezing strip 41, the water squeezing strip 41 causes the shape of the surface of the cleaning roller 2 to mutate, so that the attachments adhering to the surface 21 of the cleaning roller 2, especially those in the shape of hair or some sticky garbage, are partially separated from the surface of the cleaning roller. And this cleaning structure is exactly in the surface mutation area, so it is very easy to clean the attachments from the surface 21 of the cleaning roller 2. When the protrusions are set, they are exactly located in the mutation area and do not come into contact with the surface of the cleaning roller. In this way, it can not only clean the attachments but also have no impact on the surface of the cleaning roller, extending the service life. As required, the cross-section of the cleaning groove along the vertical direction of its length is square, V-shaped, wavy, etc.

[0066] The present invention also provides a combined mopping and sweeping cleaning tool, which includes a cleaning head and a handle movably connected to the cleaning head. The cleaning head includes a cleaning head body, a cleaning roller rotatably connected to the cleaning body, and a garbage box for collecting the garbage cleaned by the cleaning roller. The combined mopping and sweeping cleaning head is also provided with a water squeezing mechanism, which includes a water squeezing strip 41 that deforms the surface of the cleaning roller 2, and at least one side surface of the water squeezing strip 41 is on the same straight line as the radius of the cleaning roller 2.

[0067] Specifically, a fixing frame 4 is provided at the end of the water squeezing strip 41 away from the water pressing end. The fixing frame 4 is connected to the cleaning head bracket 1. After assembly, the fixing frame 4 makes the water squeezing strip 41 on it form a water squeezing pressure groove with the surface of the cleaning roller 2. One side surface of the water squeezing strip 41 or another side surface is on the same straight line as the radius of the cleaning roller 2, that is, the included angle a between the fixing frame 4 and one side surface of the water squeezing strip 41 is 90 degrees.

[0068] When in use, the squeezing strip forms axially distributed pressure grooves on the surface of the cleaning roller. During the rotation of the cleaning roller, the water that may be adsorbed on the surface of the cleaning area and the inside of the cleaning roller can be squeezed out to avoid more liquid remaining in the cleaning area, resulting in water stains on the cleaning surface during cleaning. At the same time, due to the provision of the squeezing strip 41 with a special structure, it is easier to clean the possible sticky garbage on the surface of the cleaning roller 2, avoid the formation of sticky garbage deposition on the cleaning roller, and increase the resistance of the cleaning roller during cleaning.

[0069] The surface of the cleaning roller 2 is evenly provided with strip-shaped cleaning grooves (not shown in the drawings) along the axial direction. The existence of the cleaning grooves can produce a better cleaning effect, but it is also easy for garbage to adhere and sticky garbage to form deposition.

[0070] In order to reduce the rolling friction between the water squeezing bar 41 and the surface of the cleaning roller 2, the resistance of the squeezing water to the cleaning roller can be reduced. The water-facing surface of the water squeezing bar 41 is provided with a cleaning structure 5 for cleaning the attachments on the surface of the cleaning roller. The cleaning structure 5 is located in the sudden change area of ​​the surface of the cleaning roller 2, that is, between the surface 21 of the cleaning roller 2 and the edge of the pressure groove A formed by squeezing water from the water squeezing bar 41. The cleaning structure 5 includes a plurality of protrusions distributed along the length direction of the water squeezing bar 41, and there is a gap between adjacent protrusions (not shown in the drawings). The protrusion can be set as a triangle or a similar triangle structure, and the two sides of the protrusion form two angles with the water-facing surface of the water squeezing bar 41, wherein the upper end surface of the protrusion forms an acute angle with a side of the upper part of the water-facing surface. By providing a cleaning structure near the squeezing strip 41, the squeezing strip 41 causes a sudden change in the shape of the surface of the cleaning roller 2, so that the attachments attached to the surface 21 of the cleaning roller 2, especially the linear shape such as hair, or the local part of the sticky garbage, are separated from the cleaning roller 2, and the cleaning structure is just in the sudden change area of ​​the surface, so that the attachments can be easily cleaned off the surface 21 of the cleaning roller 2. The protrusion is exactly located in the sudden change area when it is set, and does not contact the surface of the cleaning roller. In this way, the attachments can be cleaned without affecting the surface of the cleaning roller, thereby extending the service life. According to needs, the cross section of the cleaning groove along the vertical direction of the length is square, V-shaped, or wavy, etc.

[0071] The embodiments of the present application are described in detail above. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and its core idea of ​​the present application. At the same time, changes or deformations made by those skilled in the art based on the ideas of the present application, the specific implementation methods and the scope of application of the present application, all belong to the scope of protection of the present application. In summary, the content of this specification should not be construed as a limitation on the present application.

Claims

1. A water squeezing mechanism is provided on a cleaning head having a cleaning head bracket, characterized in that, It includes a water squeezing strip that deforms the surface of the cleaning roller. The water squeezing strip has a water pressing end that presses the cleaning roller. A fixing frame is connected to the water squeezing strip away from the water pressing end. The cleaning head bracket is connected to the fixing frame to form a water squeezing groove between the water squeezing strip and the surface of the cleaning roller. The fixing frame forms an angle with one side of the water squeezing strip.

2. The water squeezing mechanism according to claim 1, wherein, The water squeezing strip is rotatably connected to the fixing frame and forms a rolling friction with the surface of the cleaning roller during water squeezing.

3. The water squeezing mechanism according to claim 1, characterized in that, The angle is 90 degrees.

4. The water squeezing mechanism according to claim 1, characterized in that, The water pressing end presses the cleaning roller to cause a sudden change in its surface shape. The surface of the cleaning roller has a sudden change area. A cleaning structure for cleaning the attachments on the surface of the cleaning roller is provided on the water-facing surface of the water pressing end. Preferably, the cleaning structure includes a plurality of protrusions distributed along the length direction of the water squeezing strip, and there are gaps between adjacent protrusions. Preferably, in the cross-section of the water squeezing mechanism along the length vertical direction, the protrusions are triangular or similar triangular structures. Preferably, in the cross-section of the water squeezing mechanism along the length vertical direction, the two sides of the protrusion form two angles with the water-facing surface, and the upper end surface of the protrusion forms an acute angle with the upper surface of the water-facing surface.

5. The water squeezing mechanism according to claim 4, characterized in that, The protrusions do not come into contact with the surface of the cleaning roller.

6. The water squeezing mechanism according to claim 4, characterized in that, The sudden change area is at the edge of the water squeezing groove, and the cleaning structure is located in the sudden change area.

7. The water squeezing mechanism according to claim 4, characterized in that The end of the water pressing end is in an arc shape with a relatively small frictional force with the surface of the cleaning roller in the sudden change area.

8. The water squeezing mechanism according to claim 1, wherein Strip-shaped cleaning grooves are uniformly provided on the surface of the cleaning roller along the axis. Preferably, the cross-section of the cleaning groove along the length vertical direction is square or V-shaped.

9. The water squeezing mechanism according to claim 1, characterized in that, At least one side surface of the water squeezing strip is on the same straight line as the radius of the cleaning roller.

10. A cleaning head, characterized in that, It includes: The water squeezing mechanism according to any one of claims 1-9; The cleaning head body; The cleaning roller, which is rotatably connected to the cleaning body; The trash box, which is used to collect the garbage cleaned by the cleaning roller; The cleaning head can both mop the floor and sweep the floor.