Dry and wet integrated dual-mode cleaning equipment

Through the design of the dry and wet-in-one dual-mode cleaning equipment, the combination of cleaning rollers, scraping plates and filtering plates is used to solve the problem of blockage of squeegees in the ground dressing equipment, and the efficient dry and wet-in-one cleaning effect is achieved.

CN223143406UActive Publication Date: 2025-07-25JINGCHUANG YUNJIANG (NINGBO) TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421564466.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-07-25
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

During the cleaning process of existing floor trimming equipment, squeegees are prone to blockage of hair and fine garbage, resulting in reduced suction force, and need to be frequently disassembled and cleaned, resulting in inconvenience.

Method used

A dry and wet-in-one dual-mode cleaning equipment is designed, including cleaning components, sewage suction components and impurity removal components. The cleaning components absorb hair and fine garbage through cleaning rollers and brushes. The impurity removal components scrape and filter them through the scraping plate and the filtering plate. The sewage absorption components absorb sewage through the sewage suction structure to prevent blockage.

Benefits of technology

Effectively prevent hair and fine garbage from entering the sewage suction chamber, maintain the suction force of the sewage suction component, extend the cleaning interval time of impurity removal components, and achieve efficient cleaning effect of dry and wet.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223143406U_ABST
    Figure CN223143406U_ABST
Patent Text Reader

Abstract

The utility model discloses dry and wet integrated dual-mode cleaning equipment, the dry and wet integrated dual-mode cleaning equipment comprises a device main body, a sweeping assembly, a dirt suction assembly, an impurity removal component, a connecting assembly and a fixing assembly, the device main body comprises an equipment body, and the fixing assembly comprises a fixing component and a pull-up plate; the pull-up plate is movably arranged on the equipment body through the fixing component, the sweeping assembly is used for sweeping the ground, the sweeping assembly is arranged on the connecting assembly in the mode that hair and fine garbage can be adsorbed, and the dirt suction assembly is arranged on the connecting assembly in the mode that sewage can be sucked away. The cleaning assembly is arranged on the equipment body, the impurity removing component is arranged on the connecting assembly, the impurity removing component can remove hair and fine garbage adsorbed by the cleaning assembly and store the hair and the fine garbage on the connecting assembly, so that the frequency of cleaning the cleaning assembly is reduced, and the cleaning assembly, the impurity removing component and the dirt suction assembly are sequentially arranged in the advancing direction of the equipment body. Therefore, dry and wet integrated dual-mode cleaning is realized.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of ground finishing equipment, in particular to a wet-dry integrated dual-mode cleaning device. Background Art

[0002] A ground finishing device is a ground finishing machine for cleaning the ground, which replaces manual labor to clean the site to be cleaned and is often used in shopping malls, supermarkets and squares.

[0003] During the process of cleaning the ground by the existing ground finishing equipment, it is necessary to spray a cleaning liquid on the ground of the site to achieve a better cleaning effect and prevent dust on the ground from being raised during the process of cleaning the ground. There will be sewage on the ground after cleaning, and a water suction squeegee needs to be used to suck up the sewage to prevent the sewage from flowing randomly and polluting the site.

[0004] However, since the ground of the site to be cleaned contains hair and fine debris, the sewage generated on the ground after cleaning will be mixed with the hair and fine debris. Inevitably, the water suction squeegee will suck the hair and fine debris into the sewage suction cavity, thereby reducing the suction of the water suction squeegee. It is necessary to manually clean the water suction squeegee, which is extremely inconvenient and time-consuming.

[0005] Therefore, a new technical solution is needed to avoid the situation that the suction of the water suction squeegee is reduced due to the blockage of the sewage suction cavity by hair and fine debris during the operation of the ground finishing equipment, and further avoid the inconvenience caused by the need to often disassemble and clean the water suction squeegee from the bottom of the ground finishing equipment. Summary of the Utility Model

[0006] One advantage of the utility model is to provide a wet-dry integrated dual-mode cleaning device, wherein the impurity removal component is used to filter the hair and fine debris mixed in the sewage, prevent the hair and fine debris from being sucked into the sewage suction cavity, thereby ensuring the sewage suction capacity of the sewage suction component, and the cleaning component can also clean the ground, so as to realize the wet-dry integrated cleaning of the ground by the wet-dry integrated dual-mode cleaning device.

[0007] Another advantage of the utility model is to provide a wet-dry integrated dual-mode cleaning device, wherein the brush on the surface of the cleaning roller adsorbs the hair and fine debris, the scraping plate of the impurity removal component is arranged at a predetermined inclined angle, and one side of the scraping plate is at a predetermined distance from the cleaning roller, so as to scrape the hair and fine debris on the surface of the cleaning roller by one side of the scraping plate. After the hair and fine debris enter the impurity removal cavity from the impurity inlet of the impurity removal component, they fall on the impurity filtering plate, realizing the purpose of cleaning the hair and fine debris from the surface of the cleaning roller, which helps the wet-dry integrated dual-mode cleaning device to perform dry cleaning on the ground.

[0008] Another advantage of the present utility model is to provide a dry-wet integrated dual-mode cleaning device, wherein a plurality of impurity filtering holes are arrayed on the surface of the impurity filtering plate, and the sewage contained in the hair and fine garbage falling on the surface of the impurity filtering plate is filtered through the impurity filtering holes, so as to extend the time when the impurity removal cavity is filled, achieve the purpose of storing more hair and fine garbage in the impurity removal cavity of the impurity removal member, extend the interval use time when the impurity removal member needs to be cleaned, and make the use of the impurity removal member convenient.

[0009] Another advantage of the present utility model is to provide a dry-wet integrated dual-mode cleaning device, wherein the water baffle is arranged on the lower surface of the pulling plate and is located at a predetermined position above the impurity inlet. The water baffle forms a water guiding slope. When the cleaning roller rotates, part of the sewage on the surface of the cleaning roller will splash onto the water baffle, and under the guiding action of the water guiding slope, it will flow back to the surface of the cleaning roller, wash the hair and fine garbage on the surface of the cleaning roller to the impurity inlet, achieve the purpose of further removing the hair and fine garbage attached to the surface of the cleaning roller, prevent the situation that the hair and fine garbage on the surface of the cleaning roller cannot be scraped off by the scraping plate and remain, and fall on the ground and be sucked into the sewage suction cavity, and provide guarantee for the sewage suction capacity of the sewage suction component.

[0010] To achieve at least one of the above advantages of the present utility model, one advantage of the present utility model is to provide a dry-wet integrated dual-mode cleaning device, wherein the dry-wet integrated dual-mode cleaning device includes:

[0011] A device main body, the device main body includes an equipment body;

[0012] A fixing component, the fixing component includes a fixing member and a pulling plate, and the pulling plate is movably arranged at the bottom of the equipment body through the fixing member;

[0013] A connecting component, the connecting component is arranged on the fixing component;

[0014] A cleaning component, the cleaning component is used for cleaning the ground to perform wet cleaning on the ground. The cleaning component is adsorbably arranged on the connecting component for hair and fine garbage, and the cleaning component is arranged at a position closer to the front in the advancing direction of the equipment body;

[0015] A sewage suction component, the sewage suction component is arranged on the connecting component to be able to suck the sewage on the ground, and the sewage suction component is arranged at a position closer to the rear in the advancing direction of the equipment body; and

[0016] An impurity removing component, which is disposed on the connecting component and can remove the hair and fine garbage adsorbed by the cleaning component and store them in the impurity removing component for dry cleaning of the ground, and the impurity removing component is disposed between the cleaning component and the sewage suction component.

[0017] According to an embodiment of the present invention, the cleaning component includes a cleaning roller, a roller brush connecting member and a driving member. The cleaning roller is disposed on the connecting component, the driving member is disposed on the pulling plate, the driving member is drivingly connected to the roller brush connecting member, and the roller brush connecting member is coaxially disposed at one end of the cleaning roller.

[0018] According to an embodiment of the present invention, the connecting component includes a connecting member and a pulling member. The connecting member includes a connecting plate and connecting side plates. The connecting plate is connected to the connecting side plates. The pulling member is disposed between the connecting plate and the pulling plate and can pull out the connecting plate from below the pulling plate. The sewage suction component and the impurity removing component are both disposed on the connecting plate. One end of the cleaning roller away from the roller brush connecting member is rotatably disposed on the connecting side plate.

[0019] According to an embodiment of the present invention, the pulling member includes a connecting rod and a fixed sliding rod. The connecting rod is mounted on the pulling plate and forms a connecting chute. The fixed sliding rod is disposed on the connecting plate and is slidably disposed in the connecting chute.

[0020] According to an embodiment of the present invention, the connecting component includes a connecting member. The connecting member includes a connecting plate and connecting side plates. The connecting plate is connected to the connecting side plates. The connecting plate is disposed on the lower surface of the pulling plate. One end of the cleaning roller away from the roller brush connecting member is rotatably disposed on the connecting side plate, and the cleaning roller is disposed below the connecting plate. The sewage suction component and the impurity removing component are both disposed on the connecting plate.

[0021] According to an embodiment of the present invention, the impurity removing component has at least one mounting plate, at least one scraping plate and at least one filtering plate. The mounting plate is detachably mounted on the connecting plate by screws. The scraping plate is connected to the mounting plate through the filtering plate. The position of the filtering plate is set away from the connecting plate. The filtering plate is provided with a plurality of filtering holes for filtering sewage in an array. The scraping plate is disposed at a position with a predetermined distance from the cleaning roller at a predetermined angle. An impurity inlet is formed between one side edge of the scraping plate and the mounting plate. An impurity removing cavity for filtering and storing hair and fine garbage and communicating with the impurity inlet is formed above the filtering plate.

[0022] According to an embodiment of the present utility model, the fixing member includes at least a pair of first fixing rods, at least a pair of second fixing rods, and at least two pairs of connecting rods. At least a pair of the first fixing rods are symmetrically arranged on the pulling plate, at least a pair of the second fixing rods are correspondingly arranged at the bottom of the equipment body with respect to at least a pair of the first fixing rods, and at least two pairs of the connecting rods are arranged parallel to each other between the first fixing rods and the second fixing rods.

[0023] According to an embodiment of the present utility model, the dry-wet integrated dual-mode cleaning device further includes a water tank assembly. The water tank assembly includes a cleaning water tank member, and the cleaning water tank member includes a cleaning water tank main body, a water outlet pipe, and at least two liquid distribution pipes. The cleaning water tank main body has a water tank opening for loading cleaning liquid into the cleaning water tank main body. The cleaning water tank main body is arranged on the equipment body. One end of the water outlet pipe is communicated with the cleaning water tank main body, the other end of the water outlet pipe is communicated with one end of the liquid distribution pipe, and the other end of the liquid distribution pipe is arranged to face the cleaning roller.

[0024] According to an embodiment of the present utility model, the sewage suction assembly includes at least one sewage suction structure. The water tank assembly further includes a sewage tank member, and the sewage tank member includes a sewage tank main body for storing sewage. The sewage suction structure is arranged on the connecting plate, and the sewage suction structure is used for sucking sewage on the ground and conveying the sewage to the sewage tank main body through a pipeline.

[0025] According to an embodiment of the present utility model, the sewage suction assembly further includes a connection adjusting member. The connection adjusting member includes at least one adjusting plate, a plurality of adjusting bolts, and springs corresponding to the adjusting bolts. The sewage suction structure is arranged on the adjusting plate. The adjusting plate is connected to the connecting plate through the adjusting bolts. The springs are arranged between the adjusting plate and the connecting plate, and the adjusting bolts penetrate through the springs. Description of the Drawings

[0026] Figure 1 Schematic perspective view showing a preferred embodiment of the present utility model Figure 1 。

[0027] Figure 2 Schematic perspective view showing a preferred embodiment of the present utility model Figure 2 。

[0028] Figure 3 Shows Figure 2 An enlarged view schematic diagram of part A in

[0029] Figure 4 Schematic perspective view of the connection of some components showing a preferred embodiment of the present utility model

[0030] Figure 5 shows Figure 4 a schematic cross-sectional view of the components in

[0031] Figure 6 shows Figure 5 a schematic enlarged view at position B in

[0032] Figure 7 a schematic perspective view of the impurity removal component

[0033] Figure 8 a schematic perspective view of the driving component and the fixing assembly

[0034] Figure 9 a schematic perspective view of the cleaning roller and the brush connecting member Detailed implementation manners

[0035] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments in the following description are only examples, and those skilled in the art can think of other obvious variations. The basic principles defined in the following description can be applied to other implementation manners, variations, improvements, equivalent manners, and other technical solutions that do not depart from the spirit and scope of the present invention.

[0036] Those skilled in the art should understand that in the disclosure of the present invention, the orientation or positional relationships indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings. These are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on the present invention.

[0037] It can be understood that the term "a" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, while in other embodiments, the number of this element can be multiple. The term "a" should not be construed as a limitation on the number.

[0038] Referring to the accompanying drawings Figures 1 to 9 , a dry-wet integrated dual-mode cleaning device according to a preferred embodiment of the present invention will be described in detail below, where the dry-wet integrated dual-mode cleaning device includes a device main body 10, a cleaning assembly 20, a sewage suction assembly 30, an impurity removal component 40, a connection assembly 60, and a fixing assembly 70.

[0039] The device main body 10 includes a device body 11 and a plurality of traveling members 16. The traveling members 16 are disposed on the device body 11, and the traveling members 16 are connected to the output end of a traveling driving member so that the device body 11 is driven to move in a predetermined direction by the rotation of the traveling members 16.

[0040] The fixing assembly 70 includes a fixing member 71 and a pulling plate 72. The pulling plate 72 is movably disposed at the bottom of the device body 11 through the fixing member 71. The cleaning assembly 20 is used for cleaning the ground to perform wet cleaning on the ground. The cleaning assembly 20 is disposed on the connecting assembly 60 in a manner that can adsorb hair and fine garbage, and the cleaning assembly 20 is disposed at a position closer to the front in the advancing direction of the device body 11. The sewage suction assembly 30 is disposed on the connecting assembly 60 in a manner that can suck sewage, and the sewage suction assembly 30 is disposed at a position closer to the rear in the advancing direction of the device body 11. The impurity removing member 40 is disposed on the connecting assembly 60 in a manner that can remove and store the hair and fine garbage adsorbed by the cleaning assembly 20 in the impurity removing member 40 to perform dry cleaning on the ground. The impurity removing member 40 is disposed between the cleaning assembly 20 and the sewage suction assembly 30 to achieve the wet and dry integrated dual-mode cleaning of the ground by the wet and dry integrated dual-mode cleaning device.

[0041] Preferably, the cleaning assembly 20 includes a cleaning roller 21, a roller brush connecting member 22, and a driving member 23. The cleaning roller 21 is disposed on the connecting assembly 60, and the driving member 23 is disposed on the pulling plate 72. The roller brush connecting member 22 is coaxially disposed at one end of the cleaning roller 21, and the driving member 23 drives the roller brush connecting member 22 to rotate through a belt, thereby causing the cleaning roller 21 to rotate. The surface of the cleaning roller 21 is covered with a brush.

[0042] Specifically, the wet and dry integrated dual-mode cleaning device further includes a water tank assembly 50. The water tank assembly 50 includes a cleaning water tank member 51. The cleaning water tank member 51 includes a cleaning water tank main body 511, a water outlet pipe 512, and at least two liquid distribution pipes 513. The cleaning water tank main body 511 has a water tank opening 51101 for loading cleaning liquid into the cleaning water tank main body 511, and the cleaning water tank main body 511 is disposed on the device body 11. One end of the water outlet pipe 512 is communicated with the cleaning water tank main body 511, the other end of the water outlet pipe 512 is communicated with one end of the liquid distribution pipe 513, and the other end of the liquid distribution pipe 513 is disposed facing the cleaning roller 21 of the cleaning assembly 20.

[0043] Those skilled in the art can understand that during the process that the cleaning liquid in the cleaning water tank member 51 passes through the water outlet pipe 512 and flows out from the liquid distribution pipe 513 to the surface of the cleaning roller 21, the cleaning roller 21 is in a rotating state, and the cleaning liquid will be evenly covered on the surface of the cleaning roller 21 to improve the effect of the cleaning roller 21 in cleaning the ground.

[0044] Preferably, the connection assembly 60 includes a connection member 61. The connection member 61 includes a connection plate 611 and a connection side plate 612. The connection plate 611 is connected to the connection side plate 612, and the connection plate 611 is disposed on the lower surface of the pulling plate 72. One end of the cleaning roller 21 away from the brush connecting member 22 is rotatably disposed on the connection side plate 612, and the cleaning roller 21 is located below the connection plate 611. Both the sewage suction assembly 30 and the impurity removing member 40 are disposed on the lower surface of the connection plate 611.

[0045] Preferably, in another embodiment, the connection assembly 60 further includes a pulling member 62. The pulling member 62 is disposed between the connection plate 611 and the pulling plate 72 so that the connection plate 611 can be pulled out from below the pulling plate 72.

[0046] Specifically, the pulling member 62 includes a connecting rod 621 and a fixed sliding rod 622. The connecting rod 621 is installed on the pulling plate 72 and forms a connection sliding groove 62101. The fixed sliding rod 622 is disposed on the connection plate 611, and the fixed sliding rod 622 is slidably disposed in the connection sliding groove 62101. When the fixed sliding rod 622 is pulled to slide in the connection sliding groove 62101 of the connecting rod 621, the connection plate 611 is pulled away from the bottom of the device body 11, making the operation of taking out the cleaning roller 21, the sewage suction assembly 30 and the impurity removing member 40 from the bottom of the device body 11 more convenient.

[0047] The impurity removing member 40 has at least one mounting plate 41, at least one scraping plate 42 and at least one impurity filtering plate 43. The mounting plate 41 is detachably mounted on the connection plate 611 by screws. The scraping plate 42 is connected to the mounting plate 41 through the impurity filtering plate 43. The position of the impurity filtering plate 43 is set away from the connection plate 611. The scraping plate 42 is disposed at an inclined predetermined angle at a position having a predetermined distance from the cleaning roller 21. An impurity inlet 402 is formed between one edge of the scraping plate 42 and the mounting plate 41. An impurity removing cavity 401 for storing hair and fine garbage and communicating with the impurity inlet 402 is formed above the impurity filtering plate 43.

[0048] It is worth mentioning that since the mounting plate 41 is detachably arranged on the connecting plate 611, it is beneficial to take out the impurity removing member 40 from below the connecting plate 611, which is conducive to conveniently cleaning the hair and fine garbage in the impurity removing member 40.

[0049] Preferably, the mounting plate 41 is implemented as an arc shape so that the hair and fine garbage entering the impurity removing cavity 401 can smoothly fall onto the impurity filtering plate 43.

[0050] Those skilled in the art can understand that the brush on the surface of the cleaning roller 21 adsorbs the hair and fine garbage. The scraping plate 42 of the impurity removing member 40 is arranged at a predetermined inclination angle, and one side of the scraping plate 42 is at a predetermined distance from the cleaning roller 21. The hair and fine garbage on the surface of the cleaning roller 21 are scraped off by one side of the scraping plate 42, and the hair and fine garbage enter the impurity removing cavity 401 from the impurity inlet 402 and fall onto the impurity filtering plate 43. Finally, the purpose of cleaning the hair and fine garbage from the surface of the cleaning roller 21 is achieved, that is, the ground is dry-cleaned by the impurity removing member 40.

[0051] Preferably, a plurality of impurity filtering holes 4301 are arrayed on the surface of the impurity filtering plate 43. The sewage contained in the hair and fine garbage falling on the surface of the impurity filtering plate 43 is filtered through the impurity filtering holes 4301 and falls onto the ground to avoid the sewage occupying the impurity removing cavity 401. Furthermore, the purpose of storing more hair and fine garbage in the impurity removing cavity 401 of the impurity removing member 40 is achieved, and the interval use time between cleanings of the impurity removing member 40 is extended, which improves the convenience of using the impurity removing member 40. It is worth mentioning that the fixing member 71 includes at least a pair of first fixing rods 711, at least a pair of second fixing rods 712, and at least two pairs of connecting rods 713. At least a pair of the first fixing rods 711 are symmetrically arranged on the pulling plate 72. At least a pair of the second fixing rods 712 are correspondingly arranged on the bottom of the equipment body 11 with at least a pair of the first fixing rods 711. At least two pairs of the connecting rods 713 are arranged parallel to each other between the first fixing rods 711 and the second fixing rods 712 to realize the connection between the first fixing rods 711 and the second fixing rods 712.

[0052] Those skilled in the art can understand that the connecting rod 713 can rotate around one end fixed to the second fixing rod 712, so that the other end of the connecting rod 713 can move up and down along a predetermined track, so that the cleaning roller 21, the sewage suction assembly 30, and the impurity removing member 40 can be operated to move away from or close to the ground. Furthermore, when the ground has undulations, the predetermined distance between the cleaning roller 21, the sewage suction assembly 30, and the impurity removing member 40 and the ground can be adjusted in time to achieve better cleaning of the ground.

[0053] Preferably, the fixing component 70 further includes a fixing plate 73, the fixing plate 73 is connected to one side of the pulling plate 72, and the fixing plate 73 is arranged relative to the connecting side plate 612. The driving member 23 includes a driving piece 231, a transmission wheel 232 and a transmission clamping member 233. The driving piece 231 is arranged on the pulling plate 72. The transmission wheel 232 is rotatably arranged on the side of the fixing plate 73 away from the cleaning roller 21. The transmission clamping member 233 is rotatably arranged on the fixing plate 73 and close to the cleaning roller 21 and can be driven by the transmission wheel 232. The output end of the driving piece 231 is connected to the transmission wheel 232 through a belt drive. The transmission clamping member 233 is coaxially arranged with the transmission wheel 232, and the transmission clamping member 233 is arranged to be clamped to the brush roller connecting member 22.

[0054] Specifically, the brush roller connecting member 22 has a positioning hole 221 coaxial with the cleaning roller 21 and a plurality of fixing grooves 222 arranged in a circumferential array. One end of the transmission clamping member 233 away from the transmission wheel 232 has a clamping shaft 2331 coaxially corresponding to the positioning hole 221 and a plurality of clamping blocks 2332 corresponding to the fixing grooves 222.

[0055] It is worth mentioning that when the clamping shaft 2331 of the transmission clamping member 233 is movably inserted into the positioning hole 221 of the brush roller connecting member 22, the clamping shaft 2331 of the transmission clamping member 233 is limited in the fixing groove 222 of the brush roller connecting member 22, so as to ensure that the transmission clamping member 233 drives the cleaning roller 21 to rotate through the brush roller connecting member 22, and the cleaning roller 21 can wet-clean the ground by rolling on the ground.

[0056] Furthermore, since the fixing plate 73 is arranged between the cleaning roller 21 and the transmission wheel 232, water splashing on the surface of the cleaning roller 21 is prevented from splashing onto the surface of the transmission wheel 232, thereby avoiding damage to the transmission wheel 232 due to rust and prolonging the service life of the transmission wheel 232.

[0057] Preferably, the driving piece 231 is implemented as a driving motor.

[0058] In this embodiment, the sewage suction component 30 includes at least one sewage suction structure 31. The water tank component 50 further includes a sewage tank member 52, and the sewage tank member 52 includes a sewage tank main body 521 for storing sewage. The sewage suction structure 31 is arranged on the connecting plate 611. The sewage suction structure 31 is used to suck sewage on the ground and convey the sewage to the sewage tank main body 521 for storage through a pipeline.

[0059] In another embodiment, the dirt suction assembly 30 further includes a connection adjustment member 32, the connection adjustment member 32 includes at least one adjustment plate 321, a plurality of adjustment bolts 322 and a spring 323 corresponding to the adjustment bolts 322, the dirt suction structure 31 is disposed on the adjustment plate 321, and the adjustment plate 321 is connected to the connection plate 611 through the adjustment bolts 322. The spring 323 is disposed between the adjustment plate 321 and the connection plate 611, and the adjustment bolt 322 passes through the spring 323.

[0060] Preferably, the sewage tank body 521 has a sewage outlet 52101 , and the sewage outlet 52101 is used to discharge the sewage in the sewage tank body 521 .

[0061] Specifically, the dirt suction structure 31 includes at least one squeegee body 311 and at least one scraper member 312, wherein the squeegee body 311 is disposed on the adjustment plate 321, and the scraper member 312 is disposed on the squeegee body 311. The scraper member 312 includes a closed scraper 3121 and a water-blocking scraper 3122, wherein both the closed scraper 3121 and the water-blocking scraper 3122 are disposed on the squeegee body 311. The squeegee body 311 has a sewage outlet 31101, wherein the closed scraper 3121 and the water-blocking scraper 3122 are connected in the first position to form a dirt suction chamber 31201 communicating with the sewage outlet 31101.

[0062] It is worth mentioning that by adjusting the tightening degree of the adjusting bolt 322, and then adjusting the distance between the adjusting plate 321 and the connecting plate 611, the predetermined distance between the sewage suction structure 31 and the ground is achieved, so that the sewage suction structure 31 can better fit the ground, avoiding the scraper component 312 of the sewage suction structure 31 from being unable to fit the ground due to long-term wear.

[0063] Preferably, the closed scraper 3121 and the water-retaining scraper 3122 are implemented in predetermined shapes, and the predetermined lengths of the closed scraper 3121 and the water-retaining scraper 3122 are greater than the predetermined length of the cleaning roller 21, so that the sewage suction structure 31 can better suck away the sewage generated by the cleaning roller 21 when cleaning the ground.

[0064] Specifically, the closed scraper 3121 and the water-blocking scraper 3122 are arranged front and back in the forward direction of the device body 11. The predetermined width of the closed scraper 3121 is smaller than the predetermined width of the water-blocking scraper 3122, so that when the water-blocking scraper 3122 is attached to the ground, a sewage suction port 31202 connected to the sewage suction chamber 31201 is formed between the edge of the closed scraper 3121 close to the ground and the ground.

[0065] Those skilled in the art can understand that the sewage outlet 31101 of the water absorption squeegee main body 311 sucks air into the sewage suction cavity 31201 of the scraping member 312, so as to form a negative pressure environment in the sewage suction cavity 31201. Sewage enters the sewage suction cavity 31201 from the sewage suction port 31202 of the scraping member 312, and then passes through the sewage outlet 31101 of the water absorption squeegee main body 311 and enters the sewage tank main body 521 through a pipeline communicated with the sewage outlet 31101, finally realizing the cleaning and collection of sewage.

[0066] It should be noted that in the dry-wet integrated dual-mode cleaning device, after the ground is wet-cleaned by the cleaning roller 21 and dry-cleaned by the impurity removing member 40, the sewage suction structure 31 can suck the sewage remaining on the ground after wet-cleaning and the sewage falling to the ground from the impurity filtering holes 4301, so as to achieve the purpose of dry-cleaning and wet-cleaning the ground.

[0067] Preferably, the fixing component 70 further includes a water baffle 75, which is arranged on the lower surface of the connecting plate 611 and at a predetermined position above the impurity inlet 402. The water baffle 75 is formed with a water guiding slope, and the predetermined direction of the water guiding slope faces the surface of the cleaning roller 21. When the cleaning roller 21 rotates, the sewage on the surface of the cleaning roller 21 will splash onto the surface of the connecting plate 611 due to inertia. Under the action of the water guiding slope of the water baffle 75, the sewage will flow back and flush onto the surface of the cleaning roller 21, and scour the surface of the cleaning roller 21. The flowing-back sewage will wash the hair and fine garbage on the surface of the cleaning roller 21 into the impurity inlet 402, preventing the hair and fine garbage on the surface of the cleaning roller 21 from falling back to the ground without being completely scraped off by the scraping plate 42 and being sucked into the sewage suction cavity 31201, resulting in a decrease in the sewage suction capacity of the sewage suction component 30, and finally ensuring the cleaning capacity of the dry-wet integrated dual-mode cleaning device.

[0068] Specifically, the dry-wet integrated dual-mode cleaning device further includes a pulling-up structure 80, and the fixing component 70 further includes a pulling fixing block 74, which is arranged on the pulling-up plate 72, and the pulling-up structure 80 is arranged on the device body 11 so as to be able to pull up the pulling fixing block 74.

[0069] It is worth mentioning that when the wet-dry integrated dual-mode cleaning device is suspended from use, the pulling fixed block 74 is pulled up to a predetermined height by the pulling-up structure 80, so that the pulling-up plate 72 is lifted off the ground by a predetermined height, and the cleaning assembly 20, the sewage suction assembly 30, and the impurity removal member 40 are lifted off the ground by a predetermined height, preventing the scraping member 312 from losing its resilience due to long-term contact with the ground and ensuring that the sewage suction assembly 30 can normally suck up sewage.

[0070] Preferably, the pulling-up structure 80 includes a telescopic member 81 and a receiving member 82. Both the telescopic member 81 and the receiving member 82 are disposed on the device body 11. The output end of the telescopic member 81 is connected to a pulling wire, and the other end of the pulling wire is connected to the pulling fixed block 74 through the receiving member 82.

[0071] Those skilled in the art can understand that, preferably, the receiving member 82 is implemented as an arc. This enables the pulling wire passing through the receiving member 82 to easily change the extension direction under the support of the arc shape of the receiving member 82, facilitating the pulling-up structure 80 to conveniently pull the pulling fixed block 74.

[0072] Preferably, the telescopic member 81 is implemented as a telescopic cylinder.

[0073] Specifically, the device main body 10 further includes a control and display member 12. The control and display member 12 is disposed on the device body 11 and is used to control the operating state of the wet-dry integrated dual-mode cleaning device. The driving member 231 is electrically connected to the control and display member 12 with its rotational speed controllable, the telescopic member 81 is electrically connected to the control and display member 12 with its opening state controllable, and the sewage suction assembly 30 is electrically connected to the control and display member 12 with its suction force size controllable.

[0074] Preferably, the sewage tank member 52 further includes a water level sensing member 522. The water level sensing member 522 is disposed in the sewage tank main body 521 to detect the water level inside the water level sensing member 522. The water level sensing member 522 is electrically connected to the control and display member 12 to timely transmit a signal to the outside of the wet-dry integrated dual-mode cleaning device indicating whether the sewage in the sewage tank main body 521 needs to be drained.

[0075] Specifically, the device main body 10 further includes a rechargeable power source 13. The rechargeable power source 13 is disposed on the device body 11 and is used to supply power to all components inside the wet-dry integrated dual-mode cleaning device, enabling the wet-dry integrated dual-mode cleaning device to be free from the restraint of wires and allowing the wet-dry integrated dual-mode cleaning device to perform cleaning work better.

[0076] The device main body 10 further includes a distance sensor 14, which is electrically connected to the control and display member 12 and is disposed around the device body 11. The distance sensor 14 is used to detect the distance between pedestrians around the device body 11 and the wet-dry dual-mode cleaning device, so as to avoid collisions between the wet-dry dual-mode cleaning device and pedestrians and ensure the safety of pedestrians.

[0077] The device main body 10 further includes a depth camera 15, which is disposed on the device body 11 and faces the forward direction of the device body 11. The depth camera 15 is electrically connected to the control and display member 12. The depth camera 15 transmits the ground conditions to the control and display member 12, and the control and display member 12 adjusts the distance between the cleaning assembly 20, the sewage suction assembly 30, and the impurity removal member 40 and the ground, so as to adjust the cleaning intensity of the cleaning assembly 20 and the sewage suction assembly 30 and ensure the cleaning ability of the device.

[0078] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are only examples and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functions and structural principles of the present invention have been demonstrated and explained in the embodiments, and the embodiments of the present invention can be deformed or modified in any way without departing from the principle.

Claims

1. A wet-dry integrated dual-mode cleaning device, characterized in that, The wet-dry integrated dual-mode cleaning device includes: A device main body, the device main body includes a plurality of traveling parts of the equipment body, the traveling parts are arranged on the equipment body, and the traveling parts are connected to the output end of a traveling driving part, so as to drive the equipment body to move in a predetermined direction by the rotation of the traveling parts; A fixing component, the fixing component includes a fixing member and a pulling plate, and the pulling plate is movably arranged at the bottom of the equipment body through the fixing member; A connecting component, the connecting component is arranged on the fixing component; A cleaning component, the cleaning component is used for cleaning the ground to perform wet cleaning on the ground, the cleaning component is arranged on the connecting component in a manner that can adsorb hairs and fine garbage, and the cleaning component is arranged at a position closer to the front in the advancing direction of the equipment body; A sewage suction component, the sewage suction component is arranged on the connecting component in a manner that can suck up the sewage on the ground, and the sewage suction component is arranged at a position closer to the rear in the advancing direction of the equipment body; and An impurity removing member, the impurity removing member is arranged on the connecting component in a manner that can remove the hairs and fine garbage adsorbed by the cleaning component and store them in the impurity removing member to perform dry cleaning on the ground, and the impurity removing member is arranged between the cleaning component and the sewage suction component.

2. The wet-dry integrated dual-mode cleaning device according to claim 1, wherein The cleaning component includes a cleaning roller, a roller brush connecting member and a driving member, the cleaning roller is arranged on the connecting component, the driving member is arranged on the pulling plate, the driving member is in transmission connection with the roller brush connecting member, and the roller brush connecting member is coaxially arranged at one end of the cleaning roller.

3. The wet-dry integrated dual-mode cleaning device according to claim 2, wherein, The connecting component includes a connecting member and a pulling member, the connecting member includes a connecting plate and connecting side plates, the connecting plate is connected to the connecting side plates, the pulling member is arranged between the connecting plate and the pulling plate in a manner that can pull out the connecting plate from below the pulling plate, the sewage suction component and the impurity removing member are both arranged on the connecting plate, and one end of the cleaning roller away from the roller brush connecting member is rotatably arranged on the connecting side plate.

4. The wet-dry integrated dual-mode cleaning device according to claim 3, wherein The pulling member includes a connecting rod and a fixed sliding rod, the connecting rod is installed on the pulling plate and forms a connecting chute, the fixed sliding rod is arranged on the connecting plate, and the fixed sliding rod is slidably arranged in the connecting chute.

5. The wet-dry integrated dual-mode cleaning device according to claim 2, wherein, The connecting component includes a connecting member, the connecting member includes a connecting plate and connecting side plates, the connecting plate is connected to the connecting side plates, the connecting plate is arranged on the lower surface of the pulling plate, one end of the cleaning roller away from the roller brush connecting member is rotatably arranged on the connecting side plate, and the cleaning roller is arranged below the connecting plate, and the sewage suction component and the impurity removing member are both arranged on the connecting plate.

6. The wet-dry integrated dual-mode cleaning device according to claim 4 or 5, characterized in that, The debris removing component comprises at least one mounting plate, at least one scraping plate and at least one debris filtering plate, the mounting plate is detachably mounted on the connecting plate by screws, the scraping plate is connected to the mounting plate by the debris filtering plate, the position of the debris filtering plate is arranged away from the connecting plate, the debris filtering plate is provided with a plurality of debris filtering holes in an array for filtering sewage, the scraping plate is inclined at a predetermined angle and arranged at a predetermined distance from the cleaning roller, a debris inlet is formed between one side of the scraping plate and the mounting plate, and a debris removing cavity for filtering and storing hair and fine garbage and communicating with the debris inlet is formed above the debris filtering plate.

7. The wet-dry integrated dual-mode cleaning device according to claim 6, wherein, The fixing member includes at least one pair of first fixing rods, at least one pair of second fixing rods, and at least two pairs of connecting rods. At least one pair of the first fixing rods are symmetrically arranged on the pull-up plate, at least one pair of the second fixing rods are arranged at the bottom of the equipment body corresponding to at least one pair of the first fixing rods, and at least two pairs of the connecting rods are arranged parallel to each other between the first fixing rods and the second fixing rods.

8. The wet-dry integrated dual-mode cleaning device according to claim 7, wherein, The wet-dry dual-mode cleaning device also includes a water tank assembly, which includes a clean water tank component, and the clean water tank component includes a clean water tank body, a water outlet pipe and at least two liquid dispensing tubes. The clean water tank body has a water tank opening for loading cleaning liquid into the clean water tank body, and the clean water tank body is arranged on the device body, one end of the water outlet pipe is connected to the clean water tank body, and the other end of the water outlet pipe is connected to one end of the liquid dispensing tube, and the other end of the liquid dispensing tube is arranged toward the cleaning roller.

9. The wet-dry integrated dual-mode cleaning device according to claim 8, wherein The sewage suction assembly includes at least one sewage suction structure, the water tank assembly also includes a sewage tank component, the sewage tank component includes a sewage tank body for storing sewage, the sewage suction structure is arranged on the connecting plate, the sewage suction structure is used to suck the sewage on the ground and transport the sewage to the sewage tank body through a pipeline.

10. The wet-dry integrated dual-mode cleaning device according to claim 9, wherein, The dirt suction assembly also includes a connecting adjustment member, which includes at least one adjusting plate, a plurality of adjusting bolts and a spring corresponding to the adjusting bolts. The dirt suction structure is arranged on the adjusting plate, and the adjusting plate is connected to the connecting plate through the adjusting bolts. The spring is arranged between the adjusting plate and the connecting plate, and the adjusting bolt passes through the spring.