A floor cleaning machine

By using a single motor to drive the synchronous rotation of the roller assembly and the brush assembly, the problems of high noise and short standby time of floor scrubbers are solved. This achieves extended standby time without increasing size and simplifies the disassembly process of the cleaning brushes.

CN116491858BActive Publication Date: 2026-06-02WUHAN DIISEA INTELLIGENCE TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WUHAN DIISEA INTELLIGENCE TECH CO LTD
Filing Date
2023-04-27
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing floor scrubbers are noisy during operation and have short standby time. Dual-motor drive reduces battery life, and the cleaning brushes have a complex structure that is difficult to disassemble and clean.

Method used

The roller assembly is driven by a single motor, and the synchronous rotation of the roller assembly and brush assembly is achieved through the transmission assembly, which reduces noise and extends standby time. At the same time, the simple disassembly structure is designed to facilitate maintenance.

Benefits of technology

Without increasing the size of the floor scrubber, it improves standby time, reduces noise during operation, and simplifies the disassembly and maintenance of the cleaning brushes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a floor washing machine, which comprises a handle, a cleaning head assembly fixedly connected with the handle, wherein the cleaning head assembly comprises a shell and a motor installed on one side inside the shell; the cleaning head assembly further comprises a roller assembly sleeved on the motor, a transmission assembly arranged on the shell at the opposite side of the motor installation position, and a brush assembly bridged between the two opposite sides of the shell; the motor drives the roller assembly to rotate, and the roller assembly and the brush assembly are synchronously rotated through the transmission assembly. The floor washing machine provided by the application has simple structure, can prolong the standby time of the floor washing machine without increasing the volume of the floor washing machine, and can also reduce the noise of the floor washing machine in the working state.
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Description

Technical Field

[0001] This invention relates to the field of cleaning equipment technology, and more particularly to a floor scrubber. Background Technology

[0002] A floor scrubber is a cleaning machine suitable for cleaning hard floors while simultaneously sucking up and removing wastewater from the site. It has advantages such as being environmentally friendly, energy-saving, and highly efficient. It includes a roller assembly for cleaning up debris on the floor and a cleaning brush assembly for sweeping up the debris adhering to the roller assembly.

[0003] In existing floor scrubber products, the roller assembly and the cleaning brush assembly are driven by different motors. When the floor scrubber is working, the roller and brush assemblies work synchronously. The dual motors will generate a lot of noise when working at high speeds. At the same time, the dual motors also reduce the standby time of the floor scrubber.

[0004] In the aforementioned prior art, such as the one disclosed in Chinese Patent CN218009602U, a separate drive motor provides driving force to drive the gear set to rotate, thereby driving the brush roller to rotate. The cleaning roller is driven by another separate drive motor, and the brush roller and the cleaning roller rotate in opposite directions. This is more conducive to the brush roller brushing off the sticky debris on the cleaning roller. However, the separate motor driving the brush roller consumes more electricity, reducing the battery life of the floor scrubber. Another example is the cleaning machine disclosed in Chinese Patent CN215605440U, which uses a drive assembly that simultaneously drives the roller and the cleaning brush to rotate to drive the entire cleaning machine. However, the installation structure of the cleaning brush in this solution is too complicated, making it difficult to easily remove the cleaning brush from the cleaning machine for thorough cleaning.

[0005] Therefore, how to increase the standby time of floor scrubbers while reducing their noise is a technical problem that urgently needs to be solved. Summary of the Invention

[0006] To address the shortcomings of existing technologies, this invention provides a floor scrubbing machine with a simple structure. It can increase the standby time of the floor scrubbing machine without increasing its size, and at the same time, it can reduce the noise of the floor scrubbing machine during operation.

[0007] To address the above problems, the present invention provides a floor scrubbing machine, comprising:

[0008] handle;

[0009] The cleaning head assembly is fixedly connected to the handle;

[0010] The cleaning head assembly includes a housing and a motor, with the motor installed inside one side of the housing. The cleaning head assembly also includes a roller assembly sleeved on the motor, a transmission assembly disposed on the housing opposite the motor mounting location, and a brush assembly spanning the two opposite sides of the housing. The motor drives the roller assembly to rotate, and the roller assembly and the brush assembly rotate synchronously through the transmission assembly.

[0011] In one embodiment, the housing includes a housing body, a first side plate, and a second side plate; the housing body is fixedly connected to the handle, and a gap area is provided between the first side plate and the second side plate, and the roller assembly is detachably installed in the gap area.

[0012] In one embodiment, the roller assembly includes a roller member and a first gear member, and the transmission assembly includes a second gear member; the first gear member is fixedly connected to the roller member and is pulsatorically connected to the second gear member; the second gear member is pulsatorically connected to the brush assembly.

[0013] In one embodiment, the brush assembly includes a brush body and a third gear component; the brush body and the third gear component are detachably fixedly connected, and the third gear component is drively connected to the second gear component.

[0014] In one embodiment, the first gear component includes a gear and an elastic element; the gear is fixedly connected to the elastic element, and the elastic element is detachably fixedly connected to the roller component within the inner cavity of the roller component.

[0015] In one embodiment, the elastic element includes a rotating shaft and a spring; a first abutment is provided on the outer side of the rotating shaft, the spring is sleeved on the rotating shaft and located on the side of the first abutment away from the gear, and the rotating shaft abuts against the roller in the inner cavity of the roller.

[0016] In one embodiment, a button is provided on the rotating shaft, the button is sleeved on the side of the first abutting member near the gear, and abuts against the roller member in the inner cavity of the roller member.

[0017] In one embodiment, a second stop is provided at the end of the button away from the gear, a first copper sleeve is provided between the gear and the second stop, and a second copper sleeve is provided on the side of the gear away from the button. The gear is fixed to the button by the first copper sleeve and the second copper sleeve.

[0018] In one embodiment, a removable shaft cover is fitted onto one end of the rotating shaft near the gear, and abuts against the roller component within the inner cavity of the roller component.

[0019] In one embodiment, the shaft cover is further provided with a third abutment, the first abutment is located between the rotating shaft and the third abutment, the shaft cover is sleeved on the first abutment and is located on the side of the third abutment closer to the gear.

[0020] In one embodiment, the first stop, the third stop, and the rotating shaft are integrally formed.

[0021] In one embodiment, the roller component further includes a roller and a bushing; the elastic element is detachably and fixedly connected to the bushing in the inner cavity of the bushing, and the bushing is detachably and fixedly connected to the roller in the inner cavity of the roller.

[0022] In one embodiment, the brush assembly has a removable brush bottom cover and a pressure cover. The pressure cover includes a squeezing strip and a water receiving strip. The squeezing strip and the water receiving strip interfere with the roller assembly and form a water trough structure.

[0023] In one embodiment, the floor scrubber further includes a waste collection assembly and a scraper assembly; the waste collection assembly is disposed behind the scraper assembly and behind the roller assembly, and the scraper assembly is disposed between the brush assembly and the roller assembly.

[0024] Compared with the prior art, the beneficial effects of the present invention are as follows: The floor scrubber provided in the embodiments of the present invention includes a handle and a cleaning head assembly fixedly connected to the handle. The cleaning head assembly can be composed of a motor, a roller assembly, a transmission assembly and a brush assembly. The motor can drive the roller assembly to rotate while the brush assembly rotates synchronously with the roller assembly through the transmission assembly. This can improve the standby time of the floor scrubber without increasing its size, and also reduce the noise of the floor scrubber during operation. Attached Figure Description

[0025] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort, without exceeding the scope of protection claimed in this application.

[0026] Figure 1 A perspective structural diagram of the cleaning head assembly of a floor scrubber provided in an embodiment of the present invention;

[0027] Figure 2A perspective view of the cleaning head assembly of the floor scrubber provided in an embodiment of the present invention;

[0028] Figure 3 for Figure 2 Planar view from direction A;

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

[0030] Figure 5 for Figure 2 Planar view from direction B;

[0031] Figure 6 for Figure 5 Enlarged view of a section at point D;

[0032] Figure 7 The cleaning head assembly of the floor scrubber provided in this embodiment of the invention has its housing hidden in a left view.

[0033] Figure 8 for Figure 7 Enlarged view of a section at point E in the middle;

[0034] Figure 9 This is an exploded view of the cleaning head assembly of the floor scrubber according to an embodiment of the present invention;

[0035] Figure 10 This is an exploded view of the roller assembly of the cleaning head assembly of the floor scrubber according to an embodiment of the present invention;

[0036] Figure 11 This is an exploded view of the cleaning head assembly of the floor scrubber according to an embodiment of the present invention.

[0037] Figure 12 This is a schematic diagram of another transmission method for the cleaning head assembly of the floor scrubber according to an embodiment of the present invention.

[0038] Figure 13 This is a schematic diagram of another transmission method for the cleaning head assembly of the floor scrubber according to an embodiment of the present invention.

[0039] Figure 14 This is a schematic diagram of another transmission method of the cleaning head assembly of the floor scrubber according to an embodiment of the present invention.

[0040] Figure label:

[0041] 40 housing, 401 housing body, 402 first side plate, 403 second side plate, 4031 inner layer of second side plate, 4032 outer layer of second side plate, 404 removable cover plate, 405 brush bottom cover, 406 pressure cover, 4061 cover plate, 4062 sealing eaves, 407 water squeezing strip, 408 water support strip;

[0042] Drive motor 10;

[0043] Roller assembly 11, roller component 110, roller wiping layer 111, bushing 112;

[0044] First gear component 12, gear 121, elastic component 122, rotating shaft 1221, first stop component 12211, spring 1222, button 1223, second stop component 12231, shaft cover 1224, third stop component 12241, screw 1226, first copper sleeve 1225, second copper sleeve 1227;

[0045] Transmission assembly 20, second gear component 201, transmission assembly cover plate 113;

[0046] Brush assembly 30, brush body 301, third gear component 302;

[0047] 50-ton integrated water tank;

[0048] 60 blade assembly;

[0049] Waste collection component 70. Implementation

[0050] The claims of the present invention will be further described in detail below with reference to specific embodiments and accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are also within the scope of protection of the present invention.

[0051] It should be understood that, in the description of the embodiments of the present invention, all directional indicating terms, such as "up," "down," "left," "right," "front," and "back," indicate the orientation or positional relationship based on the orientation and positional relationship shown in the accompanying drawings or the orientation or positional relationship commonly used when the product is in use. These terms are merely for the purpose of simplifying the description of the present invention and do not explicitly or implicitly suggest that the device, element, or component referred to must have a specific orientation or specific orientational structure, and should not be construed as a limitation of the present invention. They are only used to explain the relative positional relationships and movements between the components shown in the accompanying drawings. When this specific orientation changes, the directional indication may also change accordingly.

[0052] Furthermore, in this invention, ordinal numbers such as "first" and "second" are used for distinguishing purposes only and should not be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Thus, the features referred to as "first" and "second" may explicitly or implicitly include at least one of those technical features. In the description of this invention, "a plurality of" means at least two, i.e., two or more, unless otherwise explicitly defined; "at least one" means one or more.

[0053] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," "fixing," and "screw-in" should be interpreted broadly. For example, they can refer to a relatively fixed positional relationship between components, or a physically fixed connection between components; they can be detachable connections or integral structures; they can be mechanical connections or electrical signal connections; they can be direct connections or indirect connections through intermediate media or components; they can refer to the internal communication of two elements or the interaction between two elements. Unless otherwise explicitly limited in the specification, other interpretations will not achieve the corresponding functions or effects. For those skilled in the art, the specific meaning of the above terms in this invention can be understood according to the specific circumstances.

[0054] 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 for illustration and explanation only and are not intended to limit the present invention.

[0055] The following will describe the scheme of this application in detail with reference to the accompanying drawings.

[0056] As analyzed in the background section of this application, existing floor scrubbers have short standby times and high noise levels. To address these technical problems, this application provides a floor scrubber. Figures 1 to 5 As shown, a floor scrubber includes: a handle (not shown in the attached figure); a cleaning head assembly fixedly connected to the handle; wherein, the cleaning head assembly includes a housing and a motor, the motor being installed inside one side of the housing; the cleaning head assembly further includes a roller assembly sleeved on the motor, a transmission assembly disposed on the housing opposite the motor mounting location, and a brush assembly spanning between the two opposite sides of the housing, the motor driving the roller assembly to rotate, and the roller assembly and the brush assembly rotating synchronously via the transmission assembly.

[0057] The floor scrubber provided in this embodiment of the invention includes a handle and a cleaning head assembly fixedly connected to the handle. The cleaning head assembly may consist of a motor, a roller assembly, a transmission assembly, and a brush assembly. The motor can drive the roller assembly to rotate while simultaneously enabling the brush assembly to rotate synchronously with the roller assembly via the transmission assembly. This can increase the standby time of the floor scrubber without increasing its size, and also reduce the noise of the floor scrubber during operation.

[0058] In this embodiment, as Figure 1 , Figure 2 , Figure 9 , Figure 10 , Figure 11As shown, the cleaning head assembly includes a housing 40 and a motor 10. The housing 40 includes a housing body 401, and a removable cover plate 404 is provided on the housing body 401. The handle is fixedly connected to the cleaning head assembly through the housing 40. The motor 10 is installed inside the housing 40 on one side. The cleaning head assembly also includes a roller assembly 11 sleeved on the motor 10, a transmission assembly 20 disposed on the housing opposite the motor mounting location (not shown in the figure), and a brush assembly 30 spanning the two opposite sides of the housing. When the motor 10 drives the roller assembly 11 to rotate inside the housing 40, the transmission assembly 20 rotates due to the rotation of the roller assembly 11. At the same time, the brush assembly 30 also achieves directional rotation due to the rotation of the transmission assembly 20. Thus, by setting a motor 10 inside the housing 40, the roller assembly 11 and the brush assembly 30 can be rotated synchronously, thereby increasing the standby time of the floor scrubber and reducing the noise of the floor scrubber in the working state.

[0059] In some embodiments, such as Figure 1 , Figure 2 , Figure 9 , Figure 10 , Figure 11 As shown, the housing 40 also includes a first side plate 402 and a second side plate 403. The first side plate 402 is integrally formed with the housing body 401. The motor 10 is mounted on the side of the first side plate 402 facing the inside of the housing 40 via a rotatable support (not shown in the figure). A gap area (not shown in the figure) is provided between the first side plate 402 and the second side plate 403. One end of the roller assembly 11 can be sleeved on the outer edge of the motor 10. The output end coupling (not shown in the figure) of the motor 10 drives the roller component 110 of the roller assembly 11 to rotate. The outer wall of the roller component 110 is sleeved with a roller wiping layer 111. The roller wiping layer 111 rotates with the roller component 110 and the two do not slide against each other. The roller assembly 11 is detachably installed in the gap area, which makes the maintenance of components such as the motor 10 simpler and also saves the manufacturing cost of the floor scrubber.

[0060] In some embodiments, the first side plate 402 and the second side plate 403 are respectively disposed on two opposite sides of the housing body 401 of the cleaning head assembly, that is, the housing body 401 of the cleaning head assembly is disposed in a gap area formed between the first side plate 402 and the second side plate 403. The second side plate 403 is detachably fixedly connected to the housing body 401. The roller assembly 11 is respectively engaged with the first side plate 402 and the second side plate 403 in the gap area, thereby making it easier to assemble and disassemble the roller assembly 11.

[0061] In some embodiments, such as Figure 3 , Figure 4 , Figures 7 to 11 As shown, the roller assembly 11 includes a roller component 110 and a first gear component 12, and the transmission assembly 20 includes a first gear component 12 and a second gear component 201; wherein, the first gear component 12 is fixedly connected to the roller component 110 and is pulsatorically connected to the second gear component 201; the second gear component 201 is pulsatorically connected to the brush assembly 30.

[0062] In this embodiment, during the rotation of the roller 110, the first gear 12 and the second gear 201 also rotate in a specific direction along with the roller 110. The brush assembly 30 also rotates in a specific direction along with the second gear 201 when the second gear 201 rotates in that direction. The first gear 12 can be detachably and fixedly connected to the roller 110 to facilitate the assembly and disassembly of the roller 110.

[0063] Furthermore, in Figures 7 to 9 In the embodiment shown, the transmission assembly 20 further includes a third gear 302, and the brush assembly 30 includes a brush body 301 and a third gear 302; wherein the brush body 301 and the third gear 302 are detachably fixedly connected, and the third gear 302 is drively connected to the second gear 201.

[0064] In some embodiments, such as Figure 2 , Figure 9 As shown, the second side plate 403 includes an inner second side plate layer 4031 integrally formed with the housing body 401, and an outer second side plate layer 4032 detachably connected to the housing body 401. The roller assembly engages with the first side plate 402 and the second side plate 403 respectively in the gap area, thereby facilitating the assembly and disassembly of the roller assembly 11.

[0065] In some embodiments, such as Figure 3 , Figure 4 , Figures 7 to 11As shown, the roller assembly 11 includes a roller component 110 and a first gear component 12, and the transmission assembly 20 includes a first gear component 12 and a second gear component 201. The first gear component 12 is fixedly connected to the roller component 110 and is drive-connected to the second gear component 201. The second gear component 201 is drive-connected to the brush assembly 30. Both the first gear component 12 and the second gear component 201 protrude from the upper surface of the inner layer 4031 of the second side plate (facing the outer side of the housing body 401). The upper surface of the inner layer 4031 of the second side plate is also provided with a dam (not shown in the figure) surrounding the transmission assembly 20. A transmission assembly cover plate 113 is sealed over the dam, and the outer layer 4032 of the second side plate is sealed over the inner layer 4031 of the second side plate, which is covered by the transmission assembly cover plate 113.

[0066] In this embodiment, during the rotation of the roller 110, the first gear 12 and the second gear 201 also rotate in a specific direction along with the roller. When the second gear 201 rotates in a specific direction, the brush assembly 30 also rotates in a specific direction along with the second gear 201. The first gear 12 can be detachably and fixedly connected to the roller 110 to facilitate the assembly and disassembly of the roller 110.

[0067] Furthermore, in Figures 7 to 9 In the illustrated embodiment, the transmission assembly 20 further includes a third gear component 302, and the brush assembly 30 includes a brush body 301 and a third gear component 302; wherein the brush body 301 and the third gear component 302 are detachably and fixedly connected, and the third gear component 302 is drively connected to the second gear component 201. The third gear component 302 also protrudes from the upper surface of the inner layer 4031 of the second side plate, and the third gear component 302 is also sealed and covered by the cofferdam and the transmission assembly cover plate 113.

[0068] In some embodiments, the brush body 301 includes a brush 3011 and a rotating shaft 3012. The third gear 302 is fixed to one end face of the rotating shaft 3012 and can be detachably fixedly connected to the rotating shaft 3012. The brush 3011 is disposed on the circumferential surface of the rotating shaft 3012. In this embodiment, the second gear 201 can be a transmission gear, and the third gear 302 can be a driven gear. That is, the second gear 201 meshes with the third gear 302. During the directional rotation of the second gear 201 with the first gear 12, the third gear 302 and the rotating shaft 3012 on the brush body 301 can also rotate synchronously, thereby enabling the brush assembly 30 to clean the roller wiping layer 111 of the roller assembly 11.

[0069] In some embodiments, such as Figures 12 to 14 As shown, the transmission assembly 20 may further include a first drive wheel 121a and a second driven wheel 302a; wherein, the first drive wheel 121a is fixedly connected to the roller component 110 via a button 1223 and is drively connected to the second driven wheel 302a; the second driven wheel 302a is fixedly connected to the brush assembly 30. The first drive wheel 121a and the second driven wheel 302a both protrude from the upper surface of the inner layer 4031 of the second side plate (the surface facing the outside of the housing body 401). The upper surface of the inner layer 4031 of the second side plate is also provided with a dam (not shown in the figure) surrounding the transmission assembly 20. A transmission assembly cover plate 113 is sealed on the dam, and the outer layer 4032 of the second side plate is sealed on the inner layer 4031 of the second side plate that is covered by the transmission assembly cover plate 113.

[0070] In this embodiment, during the rotation of the roller component 110, the first drive wheel 121a rotates in a specific direction along with the roller component. The first drive wheel 121a drives the second driven wheel 302a to rotate. When the second driven wheel 302a rotates in a specific direction, the brush assembly 30 also rotates in a specific direction along with the second driven wheel 302a. The first drive wheel 121a can be detachably and fixedly connected to the roller component 110 to facilitate the assembly and disassembly of the roller component 110.

[0071] Furthermore, such as Figures 13 to 14As shown, the transmission assembly 20 further includes a synchronous belt (not shown) or a flexible belt (not shown), and the brush assembly 30 includes a brush body 301 and a second driven wheel 302a; wherein the brush body 301 and the second driven wheel 302a are detachably fixedly connected, and the second driven wheel 302a is drively connected to the first drive wheel 121a. When the transmission assembly 20 uses a synchronous belt, the rotation direction of the first drive wheel 121a is opposite to that of the second driven wheel 302a, which is more conducive to the brush body 301 of the brush assembly 30 performing reverse brushing on the surface of the roller 110, resulting in higher efficiency in removing solid waste. Of course, the transmission assembly 20 can also use a flexible belt. When the flexible belt winds clockwise around the first drive wheel 121a and the second driven wheel 302a, the rotation direction of the first drive wheel 121a is opposite to that of the second driven wheel 302a. When the flexible belt winds crosswise around the first drive wheel 121a and the second driven wheel 302a, the rotation direction of the first drive wheel 121a is the same as that of the second driven wheel 302a. Users can choose different winding methods of the flexible belt according to their needs. Of course, the first drive wheel 121a and the second driven wheel 302a can also be made of magnetic material. The two are not directly physically connected by any other components. They rotate in opposite directions without any physical connection, relying solely on the magnetism of their respective magnetic materials. In this way, the operating noise of the transmission assembly 20 is lower.

[0072] Furthermore, in Figure 10 , Figure 11 In the embodiment shown, the first gear component 12 includes a gear 121 and an elastic component 122; wherein the gear 121 is engaged with the elastic component 122, and the elastic component 122 is detachably and fixedly connected to the roller component 110 in the inner cavity of the roller component 110.

[0073] In this embodiment, the gear 121 in the first gear component 12 also meshes with the second gear component 201. The elastic element 122 can serve as the rotating shaft of the roller component 110. The gear 121 of the first gear component 12 can rotate in a specific direction as the roller component 110 rotates. At the same time, the elastic element 122 can be detachably and fixedly connected to the roller component 110 in the inner cavity of the roller component 110 to facilitate the assembly and disassembly of the roller component 110.

[0074] Furthermore, in Figure 10 , Figure 11In the illustrated embodiment, the elastic element 122 includes a rotating shaft 1221 and a spring 1222; wherein, a first abutment 12211 is provided on the outer side of the rotating shaft 1221, and the spring 1222 is sleeved on the rotating shaft 1221 and located on the side of the first abutment 12211 away from the gear 121; the rotating shaft 1221 is elastically abutted against the bushing 112 by the spring 1222, and the bushing 112 is detachably abutted against the roller 110 in the inner cavity of the roller 110.

[0075] In this embodiment, the rotating shaft 1221 can serve as the rotating shaft of the roller assembly 110, and can extend and retract within the inner cavity of the roller assembly 110 via the spring 1222. When the roller assembly 11 needs to be installed in the cleaning head assembly, the spring 1222 is sleeved on the rotating shaft 1221 located on the side of the first stop 1221 away from the gear 121. By applying pressure to the end face of the rotating shaft 1221 near the gear 121, the spring 1222 is compressed by the first stop 12211, and the rotating shaft 1221 moves a certain distance. At the same time, the rotating shaft 1221 is rotated by a certain angle, so that the rotating shaft 1221 abuts against the roller assembly within the inner cavity of the roller assembly 110.

[0076] In some embodiments, such as Figure 10 , Figure 11 As shown, to facilitate the assembly and disassembly of the elastic element 122 and the roller element 110, and to prevent the rotating shaft 1221 from dislodging from the roller element 110, a button 1223 is provided on the rotating shaft 1221. The button 1223 is sleeved on the side of the first abutting element 12211 near the gear 121 and abuts against the roller element 110 in the inner cavity of the roller element 110. Specifically, the button 1223 and the rotating shaft 1221 can be fixed together by screws 1226. A through hole (not shown in the figure) can be provided at both ends of the button 1223, and the screw 1226 is fixedly connected to the rotating shaft 1221 through the through hole.

[0077] In some embodiments, such as Figure 10 , Figure 11As shown, the end of the button 1223 away from the gear 121 is provided with a second abutment 12231. A first copper sleeve 1225 is provided between the gear 121 and the second abutment 12231. A second copper sleeve 1227 is provided on the side of the gear 121 away from the button 1223. The gear 121 is fixed to the button 1223 by the first copper sleeve 1225 and the second copper sleeve 1227. Specifically, the end of the second abutment 12231 near the roller 110 can directly abut against the roller 110 in the inner cavity of the roller 110, and the end of the second abutment 12231 away from the roller 110 can be used to limit the gear 121.

[0078] It is understood that the second abutment 12231 can be an annular protrusion (not shown in the figure) formed around the circumference of the button 1223. That is to say, the second abutment 12231 and the button 1223 can be integrally formed. At the same time, the annular protrusion can be formed by multiple protrusions. The structure of the second abutment 12231 can be selected according to the actual application. This embodiment does not make specific limitations.

[0079] In some embodiments, such as Figure 10 , Figure 11 As shown, a detachable cover 1224 is fitted onto one end of the rotating shaft 1221 near the gear 121, and abuts against the roller component 110 within the inner cavity of the roller component 110. Specifically, by fitting a detachable and fixed cover 1224 onto one end of the rotating shaft 1221 near the gear 121, the cover 1224 has multiple through holes (not shown in the figure) around its end face. Screws (not shown in the figure) can be used to fix the cover 1224 onto the aforementioned bushing 112 through the through holes. A spring 1222 is fitted onto the other end of the rotating shaft 1221. One end of the spring 1222 abuts against the bushing 112, and the other end of the spring 1222 abuts against the rotating shaft 1221, thereby achieving retractable elastic abutment of the entire elastic element 122 against the bushing 112.

[0080] Furthermore, a third abutment 12241 is also provided on the shaft cover 1224. The first abutment 12211 is located between the rotating shaft 1221 and the third abutment 12241. The shaft cover 1224 is sleeved on the first abutment 12211 and is located on the side of the third abutment 12241 near the gear 121.

[0081] In one embodiment, the third stop 12241 is used to limit the shaft cover 1224, and the first stop 12211, the third stop 12241 and the rotating shaft 1221 can be integrally formed.

[0082] It is understood that the first stop 12211 and the third stop 12241 can both be an annular protrusion formed around the circumference of the button 1223. That is to say, the first stop 12211, the third stop 12241 and the rotating shaft 1221 can be integrally formed. At the same time, the annular protrusion can be formed by multiple protrusions. The structure of the first stop 12211 and the third stop 12241 can be selected according to the actual application. This embodiment does not make specific limitations.

[0083] In some embodiments, the rotating shaft 1221 can be an integral three-section structure design, with the middle section of the rotating shaft 1221 being thicker and the two ends being thinner. The middle section of the rotating shaft 1221 can have two cut surfaces, and the protruding part after the cut surfaces can serve as a first abutment. The part of the middle section of the rotating shaft 1221 that has not been cut into two surfaces can form a third abutment.

[0084] Furthermore, such as Figure 10 , Figure 11 As shown, the roller assembly 11 further includes a roller wiping layer 111 and a bushing 112. The roller wiping layer 111 is sleeved on the outer wall of the roller component 110 of the roller assembly 11. The roller wiping layer 111 rotates with the roller component 110 and the two do not slide against each other. The elastic element 122 includes a rotating shaft 1221 and a spring 1222. The elastic element 122 is detachably and fixedly connected to the bushing 112 in the inner cavity of the bushing 112. The bushing 112 is detachably and fixedly connected to the roller component 110 in the inner cavity of the roller component 110.

[0085] In some embodiments, such as Figure 1 , Figure 5 , Figure 7 As shown, the floor scrubber also includes a waste collection component 70 and a scraper assembly 60. The waste collection component 70 is located behind the scraper assembly 60 and the roller assembly 11. The scraper assembly 60 is located between the brush assembly 30 and the roller assembly 11.

[0086] In some embodiments, such as Figures 5 to 8As shown, the housing body 401 also includes a squeezing strip 407 disposed on the inner side of the top of the housing body 401. A water-collecting strip 408 is also snapped onto the inner side of the top of the housing body next to the squeezing strip 407. A pressure cap 406 is also snapped onto the top of the opposite side of the squeezing strip 407 and the water-collecting strip 408 of the housing body. The pressure cap 406 includes a cover plate 4061 and a sealing eave 4062. The pressure cap 406 is integrally formed. A sealing ring (not shown in the figure) is sleeved on the sealing eave 4062. The housing 40 includes a first side plate 402, a second side plate 403, a housing body 401 connecting the first side plate 402 and the second side plate 403, a pressure cap 406 sealing the top of the housing body 401, and a water-collecting strip 408 snapped onto the inner wall of the top of the housing body 401.

[0087] In some embodiments, such as Figure 5 , Figure 6 As shown, the squeezing strip 407 and the water-collecting strip 408 both interfere with the roller wiping layer 111, forming a water trough structure (not shown in the figure). The pressure cap 406 mainly covers the roller wiping layer 111. The squeezing strip 407 interferes with the roller wiping layer 111 to squeeze out excess water from the roller wiping layer 111, preventing the garbage from being too wet and difficult to clean, and truly achieving dry and wet separation of garbage. The water-collecting strip 408 interferes with the roller wiping layer 111 to hold the sewage squeezed out by the squeezing strip 407 and guide it to the sewage channel inlet (not shown in the figure) so that it can be drawn away in time and will not flow along the arc surface of the roller wiping layer 111 to the garbage collection assembly 70 behind the roller assembly 11, further achieving dry and wet separation of garbage.

[0088] In some embodiments, such as Figure 1 , Figure 5 , Figure 9 As shown, the housing 40 also includes an integrated water tank 50. The integrated water tank 50 includes a clean water tank (not shown) located at the top of the integrated water tank and a wastewater tank (not shown) located at the bottom of the integrated water tank, separated by a partition plate (not shown in the figure) in the middle of the water tank. The clean water tank is used to provide clean water to the surface of the roller assembly 11, and the wastewater tank is used to collect wastewater flowing through the surface of the roller assembly 11. Both the clean water and wastewater flowing through the surface of the roller assembly 11 are confined within the water tank structure. One end of the water tank structure is connected to the clean water tank, and the other end is connected to the wastewater tank. Clean water starts from the clean water tank of water tank 40, flows through the clean water channel (not shown in the attached figure), and then flows through the water tank structure. The clean water seeps into the roller wiping layer 111 in the water tank structure and is squeezed out by the squeezing strip 407 into sewage under the high-speed rotation of the roller assembly 11. The sewage continues to flow through the sewage channel and is collected into the sewage tank of water tank 40, forming a water circulation structure in which clean water enters from one end of the water tank structure and sewage exits from the other end of the water tank structure.

[0089] In some embodiments, such as Figure 5 , Figure 9 As shown, the removable cover 404 includes a removable brush bottom cover 405 that snaps onto the removable cover body (not shown in the figure). The brush bottom cover 405 prevents debris from splashing when the brush assembly 30 cleans the roller wiping layer 111, and also facilitates the brush assembly 30 to throw the brushed debris along the arc surface of the brush bottom cover 405 into the debris collection assembly 70. The extended portion of the removable cover plate 404 also covers the pressure cover 406 to protect the pressure cover 406 and the roller assembly 11. When the user puts the floor scrubber back on the base after each cleaning, the cover structure of the extended portion of the removable cover plate 404 covering the surface of the roller wiping layer 111 helps to prevent the roller wiping layer 111 from drying and hardening due to moisture evaporation during long-term periods of non-use. When the user pushes the floor scrubber forward to clean the floor, the extended portion of the removable cover plate 404 can also prevent the soft roller wiping layer 111 from being scratched by obstacles during high-speed rotation when the cleaning head assembly hits an obstacle. When users need to thoroughly clean the cleaning head assembly of the floor scrubber after using it for a period of time, they can turn on the high-water rinse mode. At this time, removing the removable cover 404 allows the external rinsing water to directly spray onto the roller wiping layer 111 and the brush assembly 30. Any debris remaining in the water tank structure will be washed away by the combined action of the high-water rinsing, the squeezing strips, and the roller brushes. The flexible and convenient removable cover design improves the ease with which users can thoroughly clean the cleaning head assembly using the high-water rinse mode.

[0090] On the other hand, the specific working method of the floor scrubber provided in this application is as follows: when the floor scrubber is turned on, the motor 10 starts to work, and the water circuit and other components work simultaneously. When the motor 10 rotates, it drives the roller assembly 11 to rotate, thereby driving the brush assembly 30 to rotate through the transmission assembly 20. After the water circuit is working, clean water is delivered to the surface of the roller assembly 11 through the clean water tank (not shown in the attached drawing) and clean water pipe (not shown in the attached drawing) of the integrated water tank 50 to wet the surface of the roller assembly 11. At the same time, the roller wiping layer 111 of the roller assembly 11 rolls and cleans the ground. The scraper assembly 60 is designed to follow the roller assembly 11, and the garbage collection assembly 70 is located on the roller assembly 11. Behind the roller assembly 11 and below the brush assembly 30, when the roller wiping layer 111 of the roller assembly 11 rolls to clean the ground, the ground debris is scooped up by the shovel assembly 60. Through the gap between the shovel assembly 60 and the roller wiping layer 111 of the roller assembly 11, and through the friction of the roller wiping layer 111, the debris is carried into the debris collection assembly 70. At the same time, the brush assembly 30 contacts the roller wiping layer 111 of the roller assembly 11, and the brush assembly 30 sweeps away the debris remaining on the roller wiping layer 111 of the roller assembly 11, sweeping it into the debris collection assembly 70, thus collecting the ground debris. In addition, during the operation of the floor scrubber, clean water is continuously supplied to the surface of the roller wiping layer 111 of the roller assembly 11. The water used to clean the roller wiping layer 111 of the roller assembly 11 is wastewater. The wastewater enters the wastewater pipe (not shown in the attached drawing) through the water tank structure and is transported to the wastewater tank (not shown in the attached drawing) of the integrated water tank 50 for collection.

[0091] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present invention, and these modifications or substitutions should all be covered within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A floor scrubbing machine, characterized in that, include: handle; A cleaning head assembly is fixedly connected to a handle. The cleaning head assembly includes a housing and a motor. It also includes a roller assembly sleeved on the motor, a transmission assembly mounted on the housing opposite the motor mounting location, and a brush assembly. The brush assembly cleans the wiping layer of the roller assembly. The motor drives the roller assembly to rotate, and the roller assembly and brush assembly rotate synchronously via the transmission assembly. The roller assembly includes a roller component and a first gear component. The roller component includes a roller and a bushing. The first gear component is fixedly connected to the roller component and includes a gear and an elastic element. The gear and the elastic element are fixedly connected, and the elastic element is detachably fixedly connected to the roller component within the inner cavity of the roller component. The elastic element includes... The assembly includes a rotating shaft that elastically abuts against a bushing, which is detachably abutted against the roller assembly within the inner cavity of the roller assembly. A button is mounted on the rotating shaft and abuts against the roller assembly within its inner cavity. A first gear component is a first drive wheel, and the transmission assembly includes a first drive wheel and a second driven wheel. The first drive wheel is fixedly connected to the roller assembly via the button and is also drively connected to the second driven wheel. The second driven wheel is fixedly connected to the brush assembly. A water-squeezing strip is located on the inner side of the top of the housing, directly above the axis of the roller assembly. A water-receiving strip is snapped onto the inner side of the top of the housing, parallel to the water-squeezing strip and close to the brush assembly. Both the water-squeezing strip and the water-receiving strip interfere with the roller assembly, forming a water trough structure. An integrated water tank, located within a shell, includes a clean water tank located at the top of the water tank and a wastewater tank located at the bottom of the water tank, separated by a partition in the middle of the water tank. One end of the water trough structure is connected to the clean water tank, and the other end is connected to the wastewater tank. The clean water and wastewater flowing over the surface of the roller assembly are both confined within the water trough structure, forming a water circulation structure where clean water enters from one end of the water trough structure and wastewater exits from the other end of the water trough structure.

2. The floor scrubber according to claim 1, characterized in that, The elastic element also includes a spring. A first abutment is provided on the outside of the rotating shaft. The spring is sleeved on the rotating shaft and located on the side of the first abutment away from the gear of the first gear component. The rotating shaft is elastically abutted against the bushing by the spring. A button is sleeved on the side of the first abutment close to the gear of the first gear component. The clean water tank delivers clean water to the surface of the roller wiping layer of the roller assembly. The wastewater tank collects wastewater flowing through the surface of the roller wiping layer of the roller assembly. The housing body is covered with a removable cover plate. After removing the removable cover plate, the external rinsing water can be directly rinsed on the roller wiping layer, brush assembly, and water tank structure.

3. The floor scrubbing machine according to claim 2, characterized in that, The housing includes a housing body, a first side plate, and a second side plate; the first driving wheel and the second driven wheel both protrude from the upper surface of the inner layer of the second side plate, and a dam surrounding the transmission component is also provided on the upper surface of the inner layer of the second side plate. A transmission component cover is provided on the dam, and the outer layer of the second side plate is sealed on the inner layer of the second side plate that covers the transmission component cover.

4. The floor scrubbing machine according to claim 3, characterized in that, The brush assembly includes a brush body and a second driven wheel; the brush body and the second driven wheel are detachably and fixedly connected, and the second driven wheel is drivenly connected to the first drive wheel.

5. The floor scrubber according to claim 3, characterized in that, A second stop is provided at the end of the button away from the gear, a first copper sleeve is provided between the gear and the second stop, and a second copper sleeve is provided on the side of the gear away from the button. The gear is fixed to the button by the first copper sleeve and the second copper sleeve.

6. The floor scrubber according to any one of claims 2 to 5, characterized in that, A removable shaft cover is fitted onto one end of the rotating shaft near the gear, and it abuts against the roller component inside the roller component.

7. The floor scrubbing machine according to claim 6, characterized in that, The shaft cover is also provided with a third stop, the first stop is located between the rotating shaft and the third stop, the shaft cover is sleeved on the first stop and is located on the side of the third stop closer to the gear.

8. The floor scrubbing machine according to claim 7, characterized in that, The first stop, the third stop, and the rotating shaft are integrally formed.

9. The floor scrubbing machine according to claim 1, characterized in that, The elastic element is detachably and fixedly connected to the bushing in the inner cavity of the bushing, and the bushing is detachably and fixedly connected to the roller in the inner cavity of the roller.

10. The floor scrubber according to claim 1, characterized in that, A long slot is opened at the top of the housing between the water squeezing strip and the water receiving strip, running along the axis of the roller assembly. A pressure cap is provided on the sealing cover above the long slot.

11. The floor scrubber according to claim 1, characterized in that, The cleaning head assembly also includes a removable cover plate that covers the brush assembly and roller assembly. By removing the removable cover plate, external rinsing water can be directly sprayed onto the roller wiping layer and brush assembly.

12. The floor scrubber according to claim 1, characterized in that, The cleaning head assembly also includes a waste collection assembly and a shovel assembly. The waste collection assembly is located behind the shovel assembly and the roller assembly, and the shovel assembly is located between the brush assembly and the roller assembly.