Intelligent cleaning monitoring equipment

By designing intelligent cleaning monitoring equipment, RFID tags and control modules are used to achieve automated cleaning and drying of mops and wiping items, solving the problems of time-consuming, labor-intensive, and inadequate supervision in existing technologies, and improving cleaning efficiency and user experience.

CN223569269UActive Publication Date: 2025-11-21谭华
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Patent Information

Application Number
CN202423165452.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-22
Publication Date
2025-11-21
Estimated Expiration
2034-12-22

AI Technical Summary

Technical Problem

The existing mops and wiping materials are time-consuming and laborious to clean, have a poor user experience, and are not properly supervised in their use, posing a risk of cross-infection, taking up space and affecting aesthetics.

Method used

Design an intelligent cleaning monitoring device, including a mop and wiping material cleaning device, an RFID reader and a control module, to identify and monitor the usage of mops and wiping materials through RFID tags, achieve automated cleaning and drying, and conduct area monitoring.

Benefits of technology

It enables intelligent management of mops and wiping materials, improving cleaning efficiency, reducing the risk of cross-infection, saving space, and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of cleaning management, particularly provides intelligent cleaning monitoring equipment, and aims to solve the problems that cleaning of a mop and a wiping object is time-consuming and labor-consuming, user experience is poor, and cleaning use is not supervised in place. The device comprises a mop, a wiping object, a cleaning host and a monitoring extension set, the cleaning host comprises a mop cleaning device, a wiping object cleaning device, an RFID reader and a control module, the mop and the wiping object are provided with RFID tags, the mop cleaning device is used for cleaning the mop, the wiping object cleaning device is used for cleaning the wiping object, and the monitoring extension set is used for monitoring the wiping object. The RFID reader on the cleaning host is used for monitoring the cleaning condition of the mop and the wiping object, and the monitoring extension set is arranged in a to-be-cleaned area and used for monitoring the use area of the mop and the wiping object. According to the utility model, the mop cloth and the wiping object are intelligently identified and cleaned, and the cleaning use condition is monitored, so that the time and labor are saved, the user experience is good, and the intelligent management of the cleaning and use areas of the mop and the wiping object is realized.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of cleaning, and specifically provides an intelligent cleaning monitoring equipment. BACKGROUND

[0002] With the continuous progress of society and the improvement of health consciousness, the requirement for public environmental health is increasing, and the mop is a cleaning product widely used in public places, and the mop is mainly composed of a mop rod, a mop plate and a mop cloth; the wiping material such as a cloth, a towel and a cleaning cloth is a cleaning product widely used in public places, and the mop cloth and the wiping material are basically cleaned by manual cleaning, naturally dried and manually managed.

[0003] The existing technology has the following disadvantages: first, the mop cloth and the wiping material are cleaned and dried naturally by manual cleaning, and the mop cloth and the wiping material are easily infected with bacteria and peculiar smell due to long-term wetness, so that the cleaning and disinfection effect is difficult to guarantee, there is a risk of cross infection, and it is time-consuming and laborious; second, in order to ensure the cleanliness and hygiene of the mop cloth and the wiping material, a mop cleaning device and a wiping material cleaning device are provided, at least two power sockets are provided, and power lines, water inlet pipelines and drain pipelines are increased, so that the accessory cost and the installation cost are increased, more space is occupied, the appearance is affected, and the user experience is poor; third, the mop cloth and the wiping material are cleaned and managed by manual cleaning and manual management, and it is difficult for the management personnel and the public to timely and effectively supervise the non-cleaning, non-replacement, non-regional mixed use and other irregularities, the mop cloth and the wiping material are easy to become a source of bacteria spreading in the public environment, endangering the safety of public environmental health, and the cleaning and use of the mop cloth and the wiping material are not supervised.

[0004] Correspondingly, there is a need for a new cleaning device to solve the above problems. UTILITY MODEL CONTENT

[0005] In order to solve the above technical problems in the prior art, that is, to solve the problems of time-consuming and laborious cleaning of the mop cloth and the wiping material, poor user experience and unsupervised cleaning and use, the utility model provides an intelligent cleaning monitoring equipment.

[0006] The utility model solves the above technical problems by adopting the technical scheme of an intelligent cleaning monitoring equipment, which comprises a mop and a wiping material, the mop comprises a mop cloth, and the intelligent cleaning monitoring equipment further comprises a cleaning host, a monitoring extension and an RFID reader.

[0007] The cleaning host comprises a mop cleaning device, a wiping material cleaning device, a first RFID reader and a control module.

[0008] The mop cleaning device comprises a mop cleaning cavity capable of accommodating the mop, and the mop cleaning device is used for cleaning the mop, and the mop is provided with an RFID tag.

[0009] The wiping material cleaning device comprises a wiping material cleaning cavity capable of accommodating the wiping material, and the wiping material cleaning device is used for cleaning the wiping material, and the wiping material is provided with an RFID tag.

[0010] The monitoring extension comprises a second RFID reader, and the monitoring extension is used for monitoring the use area of the mop and / or the wiping material.

[0011] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the RFID reader is used for identifying and reading the RFID tag, and transmitting the cleaning use information of the mop and / or the wiping material to the control module.

[0012] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the control module comprises a processing module and a storage module used for storing executable instructions of the processing module, and the storage module stores preset cleaning use information of the mop and the wiping material.

[0013] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the monitoring extension is arranged at a monitoring point of the area to be cleaned.

[0014] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the mop cleaning device comprises a mop scraping cleaning device, and the mop scraping cleaning device comprises a scraping mechanism and a first driving mechanism.

[0015] The scraping mechanism comprises a scraping piece, a roller and a scraping frame, the scraping piece and the roller are arranged on the scraping frame, the roller rolls in the cleaning cavity, the roller is used for supporting the scraping frame to move in the cleaning cavity, and the scraping piece is used for scraping and cleaning the mop.

[0016] The first driving mechanism drives the scraping mechanism to move up and down in the mop cleaning cavity.

[0017] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the wiping material cleaning device comprises a wiping material vertical cleaning device, and the wiping material vertical cleaning device comprises a vertical scrubbing frame, a guide piece and a second driving mechanism, the vertical scrubbing frame is arranged in the cleaning cavity, and the vertical scrubbing frame is used for scrubbing the wiping material.

[0018] The second driving mechanism drives the vertical scrubbing frame to move back and forth in the cleaning cavity.

[0019] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the mop cleaning device comprises a mop spray cleaning and drying device, the mop spray cleaning and drying device comprises a washing and drying mechanism and a first driving mechanism;

[0020] The washing and drying mechanism comprises a spray nozzle, an air nozzle and a washing and drying frame, the spray nozzle and the air nozzle are arranged on the washing and drying frame, the spray nozzle is used for spraying washing water to spray clean the mop, and the air nozzle is used for blowing hot air to dry the mop.

[0021] The first driving mechanism drives the washing and drying mechanism to move up and down in the mop cleaning cavity.

[0022] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the wiping material cleaning device comprises a pulsator washing machine.

[0023] In the preferred technical scheme of the intelligent cleaning monitoring equipment, the intelligent cleaning monitoring equipment comprises a drying module, and the drying module is used for drying and disinfecting the mop and / or the wiping material.

[0024] Those skilled in the art can understand that, in the preferred technical scheme of the utility model, the cleaning host comprises a mop cleaning device, a wiping material cleaning device, an RFID reader and a control module, the mop and the wiping material are provided with RFID tags, the mop cleaning device is used for cleaning the mop, the wiping material cleaning device is used for cleaning the wiping material, the RFID reader on the cleaning host is used for monitoring the cleaning condition of the mop and the wiping material, and the monitoring extension is arranged in a to-be-cleaned area, and the monitoring extension is used for monitoring the use area of the mop and the wiping material. The mop and the wiping material are intelligently identified, cleaned and monitored in the utility model, time and labor are saved, user experience is good, and intelligent management of the mop and the wiping material cleaning and use areas is realized. BRIEF DESCRIPTION OF DRAWINGS

[0025] The preferred embodiments of the utility model are described below with reference to the drawings, and the drawings comprise:

[0026] Figure 1 is a structure schematic view of the cleaning host of the utility model embodiment one;

[0027] Figure 2 is a partial sectional view of the mop scraping and washing device of the utility model embodiment one;

[0028] Figure 3 is an internal structure schematic view of the mop scraping and washing device of the utility model embodiment one;

[0029] Figure 4 is a structure schematic view of the scraping and extruding mechanism and the driving mechanism of the utility model embodiment one;

[0030] Figure 5 is a structure schematic view of the scraping mechanism of the mop of the embodiment one of the utility model;

[0031] Figure 6 is a structure schematic view of the mop of the embodiment one of the utility model;

[0032] Figure 7 is a structure schematic view of the vertical cleaning device of the wiping article of the embodiment one of the utility model;

[0033] Figure 8 is a structure schematic view of the vertical cleaning device of the wiping article of the embodiment one of the utility model;

[0034] Figure 9 is an internal structure schematic view of the vertical cleaning device of the wiping article of the embodiment one of the utility model;

[0035] Figure 10 is a partial structure sectional view of the vertical cleaning device of the wiping article of the embodiment one of the utility model;

[0036] Figure 11 is a structure schematic view of the inserting and taking piece of the embodiment one of the utility model is inserted and placed in place;

[0037] Figure 12 is a structure schematic view of the inserting and taking piece of the embodiment one of the utility model;

[0038] Figure 13 is a structure schematic view of the wiping article of the embodiment one of the utility model;

[0039] Figure 14 is a front structure schematic view of the vertical scrubbing frame of the embodiment one of the utility model;

[0040] Figure 15 is a back structure schematic view of the vertical scrubbing frame of the embodiment one of the utility model;

[0041] Figure 16 is a structure schematic view of the guide piece of the embodiment one of the utility model;

[0042] Figure 17 is a structure schematic view of the limiting piece of the embodiment one of the utility model;

[0043] Figure 18 is a partial structure sectional view of the monitoring extension of the embodiment one of the utility model;

[0044] Figure 19 is a structure schematic view of the intelligent cleaning monitoring equipment of the embodiment one of the utility model;

[0045] Figure 20 is an internal structure schematic view of the mop spray washing and drying device of the embodiment two of the utility model;

[0046] Figure 21 is a structure schematic view of the washing and drying mechanism and the driving mechanism of the embodiment two of the utility model;

[0047] Figure 22 is a structure schematic view of the washing and drying mechanism of the embodiment two of the utility model;

[0048] The list of reference numerals of the embodiment one:

[0049] 10, mop cleaning box, 11, upper box body, 12, opening, 13, mop cleaning cavity, 14, positioning seat, 15, supporting body;

[0050] 20, mop, 21, mop plate, 211, positioning piece, 22, mop cloth, 23, mop rod;

[0051] 30, scraping mechanism, 31, scraping frame, 33, scraping piece, 34, first roller, 35, limiting assembly, 351, first limiting wheel, 36, square hole;

[0052] 50, first driving mechanism, 51, first driving motor, 52, first transmission assembly, 521, first screw rod, 522, first screw rod nut, 523, lifting connecting frame;

[0053] 60, first drying module, 61, first water inlet valve, 62, first water outlet valve;

[0054] 810, wiping article cleaning cavity, 812, inlet and outlet;

[0055] 820, inserting and taking piece, 821, hanging plate, 822, wiping article, 823, cover plate, 8211, limiting groove, 8212, magic tape, 82121, magic tape male face, 82122, magic tape female face;

[0056] 830, vertical scrubbing frame, 831, scrubbing plate, 832, connecting plate, 833, lifting assembly, 834, scraping strip, 835, moving assembly, 836, telescopic assembly, 8321, sliding groove, 8331, pulley, 8351, second roller, 8361, telescopic rod, 8362, elastic piece, 8363, telescopic base;

[0057] 840, guide piece, 841, first stage, 842, second stage;

[0058] 850, limiting piece, 851, second limiting wheel;

[0059] 860, second driving mechanism, 861, second driving motor, 862, second screw rod, 863, second screw rod nut, 864, sliding connecting piece;

[0060] 870, second drying module; 871, second water inlet valve; 872, second water outlet valve;

[0061] 891, first display;

[0062] 92, monitoring extension; 921, monitoring box; 922, second display; 923, second RFID reader;

[0063] 9800, mop scraping device; 9810, vertical cleaning device for wiping material;

[0064] Embodiment two

[0065] 330, washing and drying mechanism; 331, washing and drying frame; 32, nozzle; 34, first roller; 35, limiting assembly; 351, first limiting wheel; 36, square hole; 37, air nozzle;

[0066] 41, drag chain; 42, water pipe; 43, air pipe;

[0067] 50, first driving mechanism; 51, first driving motor; 52, first transmission assembly; 521, first screw rod; 522, first screw rod nut; 523, lifting connecting frame;

[0068] 60, first drying module; 61, first water inlet valve. DETAILED DESCRIPTION

[0069] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be further described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. In the case of no conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0070] Therefore, those skilled in the art should understand that the embodiments of the present application provided in the following drawings are only used to explain the technical principles of the present application, and are not used to limit the protection scope of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0071] It should be noted that in the description of the utility model, the terms "center", "upper", "lower", "left", "right", "inner", "outer" and other terms indicating direction or positional relationship are based on the direction or positional relationship shown in the drawings, which is merely for the convenience of description, and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0072] In addition, the terms "horizontal", "flat", "vertical", "suspension" and other terms do not mean that the components must be absolutely horizontal or suspended, but can be slightly inclined. For example, "horizontal" only means that its direction is relatively more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.

[0073] In addition, it should be noted that in the description of the utility model, unless otherwise explicitly specified and limited, the terms "set", "installed", "connected", "connected" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0074] Example one

[0075] As Figures 1-3 , Figure 9 , Figures 18-19As shown, the intelligent cleaning monitoring equipment of the embodiment one of the utility model includes mop 20, wiping material 822, cleaning host (not marked in the drawing), monitoring extension 92 and RFID reader (not marked in the drawing), the cleaning host is arranged in the cleaning workshop, the monitoring extension 92 of several is arranged in the different monitoring point of the area to be cleaned, mop 20 includes mop cloth 22, mop cloth 22 and wiping material 822 are respectively provided with RFID label (not marked in the drawing), the cleaning host includes mop cleaning device (not marked in the drawing), wiping material cleaning device (not marked in the drawing), first RFID reader (not marked in the drawing), first display 891 and control module (not marked in the drawing), first display 891 is arranged in the upper outer side of cleaning host, mop cleaning device is used to wash dry mop cloth 22, wiping material cleaning device is used to wash dry wiping material 822.The monitoring extension 92 is provided with second display 922, second RFID reader 923 and wireless module (not marked in the drawing), and the wireless module is connected with control module and / or intelligent terminal wireless communication, and second RFID reader 923 is used for monitoring the use area and use condition of mop cloth 22 and wiping material 822.Further, RFID reader is used to identify reading RFID label on mop cloth 22 and / or wiping material 822, to monitor the cleaning use condition of mop cloth 22 and wiping material 822.Control module is connected with first display 91, second display 922, first RFID reader and second RFID reader 923, and control module includes processing module (not marked in the drawing) and the storage module (not marked in the drawing) for storing the executable instruction of processing module, the preset cleaning use information (ID number, cleaning time, use time, use area, use position, replacement time and other related management information) of mop cloth 22 and wiping material 822 is stored in storage module.Further, when the mop 22 and the wiping article 822 are cleaned and / or used, the RFID reader can non-contact, quickly and wirelessly automatically identify and read the RFID tag provided on the mop 22 and / or the wiping article 822, and transmit the cleaning and use information (ID number, cleaning time, use time, use area, use position, replacement time, and the like) of the mop 22 and / or the wiping article 822 to the control module. The control module judges whether the mop 22 and / or the wiping article 822 is cleaned or used according to the management regulation by comparing the relevant information of the mop 22 and / or the wiping article 822, and transmits the judgment result information and the work instruction to the first display 91, the second display 922, and the management terminal. The first display 91 and the second display 922 display the judgment result information and the work instruction, and the control module controls the mop cleaning device and the wiping article cleaning device to execute the corresponding cleaning work instruction. Not only can the cleaning staff be reminded to clean and replace the mop 22 and / or the wiping article 822 in time, but also the cleaning and use of the mop 22 and the wiping article 822 can be monitored, so that the management personnel and the public can effectively supervise the cleaning and use of the mop 22 and the wiping article 822 in time, and the manager can accurately grasp the cleaning work data of the mop 22 and the wiping article 822, so as to realize the intelligent management of the mop 20 and the wiping article 822, and improve the public environmental health and safety.

[0076] In addition, those skilled in the art can understand that the RFID tag is an electronic tag, which is composed of a microchip and a radio antenna. They store unique data and transmit them to the RFID reader, which is a non-contact automatic identification technology that identifies target objects through radio frequency signals to obtain data information without human intervention. The RFID tag is small in size, good in signal penetration, and can be arbitrarily set at a suitable position of an article. The RFID tag of the present embodiment can be attached to the surface of the mop 22 and the wiping article 822, or sewn inside the mop 22 and the wiping article 822, or set at any other feasible position.

[0077] In addition, the skilled person can understand that the control module can be communicatively connected with the intelligent terminal as needed, the database of the intelligent terminal stores preset cleaning use information (ID number, cleaning time, use time, use area, use position, replacement time, and other specified requirements) of the mop 22 and the wiping article 822, when the intelligent terminal receives and stores the cleaning use information of the mop 22 and / or the wiping article 822 transmitted by the control module, the relevant information of the corresponding mop 22 and / or wiping article 822 is obtained from the database for comparison, whether the preset specified requirements are met is judged, and the judgment result information and the work instruction are sent to the control module and other management terminals, the other management terminals can be mobile terminal devices such as mobile phones or tablet computers, and can also be terminal devices such as computers, so that the manager can accurately master the cleaning work data of the mop 22 and the wiping article 822, and the intelligent management of the cleaning use of the mop 20 and the wiping article 822 is realized.

[0078] As shown in Figure 9 , the monitoring extension 92 includes a monitoring box 921, a second display 922, a second RFID reader 923, and a wireless module, and the second display 922 is arranged on the outer side of the monitoring box 921. When the second RFID reader 923 reads and identifies the ID number in the RFID tag on the mop 22 and / or the wiping article 822, the wireless module transmits the use information (ID number, use time, use area, use position, and other information) of the mop 22 and / or the wiping article 822 to the control module.

[0079] In addition, the skilled person can understand that the second RFID reader can be communicatively connected with the control module through a cable.

[0080] As shown in Figure 1 , Figure 3 , and Figure 9 , the mop cleaning device of the embodiment of the utility model specifically is mop scraping cleaning device 9800, the mop scraping cleaning device 9800 includes first drying module 60, the wiping article cleaning device specifically is wiping article vertical cleaning device 9810, the wiping article vertical cleaning device 9810 includes second drying module 870, the wiping article cleaning device 9810 is located on the upper portion of the intelligent cleaning monitoring equipment, and the control module is electrically connected with the mop cleaning device and the wiping article cleaning device.

[0081] In addition, the skilled person can understand that the skilled person can set only one group of drying modules on the cleaning host as needed: two hot air output control valves are arranged on the drying module, and the mop cleaning cavity and the wiping article cleaning cavity are respectively communicated through pipelines, and the drying of the mop and the wiping article through hot air can also be realized.

[0082] As shown in Figures 1-2As shown, the mop scrubbing device 9800 comprises a mop cleaning box 10, an upper box body 11, a mop 20, a scraping mechanism 30, a first driving mechanism 50, a lifting connecting frame 523 and a first drying module 60, and a control module is electrically connected with the first driving mechanism 50 and the first drying module 60.

[0083] As shown in Figures 1-2 and Figure 6 The mop cleaning box 10 is provided with a mop cleaning cavity 13, which can accommodate the mop 20, the scraping mechanism 30 and washing water. The mop 20 comprises a mop plate 21, a mop cloth 22 and a mop rod 23. The mop cloth 22 is arranged on the bottom surface of the mop plate 21. The mop rod 23 is rotatably connected with the top surface of the mop plate 21. The top surface of the mop plate 21 is provided with a positioning member 211. The upper box body 11 is arranged above the mop cleaning box 10. The upper box body 11 is provided with an inner cavity (not marked in the figure), and the lower part of the inner cavity is provided with a lower cavity opening (not marked in the figure) in communication with the mop cleaning cavity 13. Further, the mop cleaning cavity 13 is provided with an opening 12, a positioning seat 14, a supporting body 15, a water inlet (not marked in the figure) and a water outlet (not marked in the figure). The opening 12 is arranged at the top of the mop cleaning cavity 13, and the mop 20 enters and exits the mop cleaning cavity 13 through the opening 12. The positioning seat 14 and the supporting body 15 are arranged in the mop cleaning cavity 13. The positioning seat 14 cooperates with the positioning member 211 to limit the mop 20 to a set position in the mop cleaning cavity 13. The supporting body 15 is fixedly arranged in the mop cleaning cavity 13. A first water inlet valve 61 is arranged at the water inlet, and a first water outlet valve 62 is arranged at the water outlet. The first water outlet valve 62 is used to open or close the water outlet.

[0084] As shown in Figures 2-5As shown, the scraping mechanism 30 is arranged in the mop cleaning cavity 13, and the scraping mechanism 30 comprises a scraping frame 31, a scraping piece 33, a first roller 34 and a limiting assembly 35, and the scraping piece 33 is used for scraping and washing the mop. The first driving mechanism 50 comprises a first driving motor 51 and a first transmission assembly 52, the first transmission assembly 52 comprises a first screw rod 522 and a first screw nut 523, the first driving motor 51 is connected with the first screw rod 522, and the first screw rod 522 is threadedly connected with the first screw nut 523. The upper end of the lifting connecting frame 523 is connected with the first screw nut 523, the lower end of the lifting connecting frame 523 is connected with the scraping frame 31, and the lifting connecting frame 523 is lifted and moved in the inner cavity of the upper box body 11 and the mop cleaning cavity 13. Further, the scraping frame 31 is provided with the scraping piece 33 and the limiting assembly 35 at the front end, two limiting assemblies 35 are arranged on the left and right sides of the scraping frame 31 respectively, the limiting assembly 35 is provided with a first limiting wheel 351, the first limiting wheel 351 abuts against the top surface of the mop plate, so as to limit the mop between the first limiting wheel 351 and the scraping piece 33, and ensure that the mop 20 will not be displaced during the cleaning process. The rear end of the scraping frame 31 is provided with a square hole 36, the support body 15 can pass through the square hole 36, the inner side of the square hole 36 is provided with four first rollers 34 which abut against the side surface of the support body 15, and the first rollers 34 roll on the side surface of the support body 15. Further, the first driving motor 51 is reversely rotated, the first driving motor 51 drives the first screw rod 522 to be reversely rotated, the first screw rod 522 drives the first screw nut 523 to be lifted and moved, the first screw nut 523 drives the lifting connecting frame 523 to be lifted and moved, and the lifting connecting frame 523 drives the scraping mechanism 30 to be lifted and moved. During the lifting and moving of the scraping mechanism 30, the first rollers 34 roll on the side surface of the support body 15, and the scraping piece 33 performs movable scraping and washing on the mop 22.

[0085] In addition, those skilled in the art can understand that the first driving mechanism 50 is any other feasible driving mechanism. For example, the driving mechanism is composed of a driving motor, a gear and a rack.

[0086] As shown in the drawings, Figure 3 The mop scraping and washing device 9800 is provided with a first drying module 60, the first drying module 60 comprises a first heater (not marked in the figure), a first fan (not marked in the figure), a first temperature sensor (not marked in the figure) and a first humidity sensor (not marked in the figure), the first fan inputs the air outside into the mop cleaning cavity 13, the first heater is used for heating the air, so that the air in the mop cleaning cavity 13 forms a dry hot airflow, the dry hot airflow evaporates the water on the mop 22, and thus forms a wet hot airflow, and then is discharged from the mop cleaning cavity 13, so as to dry and disinfect the mop 22.

[0087] The following will be described in combination with Figures 1-6 and Figures 18-19The mop scraping and washing device 9800 of the embodiment one of the utility model is described in detail.

[0088] The mop is cleaned, dried and disinfected by the following process of the embodiment one of the utility model.

[0089] Mop cleaning process:

[0090] The cleaning personnel inserts the mop 20 into the mop cleaning cavity 13 through the opening 12, and the mop 20 is limited at the set position. The cleaning program is started, the first RFID reader non-contact fast wireless automatic identification reads the RFID tag arranged on the mop cloth 22, and the information of the mop cloth 22 is transmitted to the control module and / or intelligent terminal. The control module controls the cleaning device to execute corresponding cleaning and drying work instructions. The first water inlet valve 61 is opened, the first drive motor 51 is reversed, the first drive motor 51 drives the first lead screw 522 to reverse, the first lead screw 522 drives the first lead screw nut 523 to move up and down, the first lead screw nut 523 drives the lifting connecting frame 523 to move up and down, the lifting connecting frame 523 drives the scraping mechanism 30 to move up and down at the set height, and the scraping piece 33 moves the mop cloth 22 for scraping and washing.

[0091] Mop dehydration process:

[0092] When the cleaning program is completed, the first water inlet valve 61 is closed, the first drain valve 62 is opened, the first drive motor 51 continues to reverse, the first drive motor 51 drives the first lead screw 522 to reverse, the first lead screw 522 drives the first lead screw nut 523 to move up and down, the first lead screw nut 523 drives the lifting connecting frame 523 to move up and down, the lifting connecting frame 523 drives the scraping mechanism 30 to move up and down at the set height, and the scraping piece 33 moves the mop cloth 22 for scraping and washing. The washing water on the mop cloth 22 is squeezed off, discharged from the mop cleaning cavity 13 through the first drain valve 62, and the mop cloth 22 is dehydrated.

[0093] Mop drying process:

[0094] The first heater and the first fan on the first drying module 60 are automatically opened. The first fan inputs the air outside the mop cleaning cavity 13, so that the air in the mop cleaning cavity 13 forms a dry hot airflow, the dry hot airflow evaporates the water on the mop cloth 22, and thus forms a wet hot airflow, which is then discharged from the mop cleaning cavity 13, thereby drying and disinfecting the mop cloth 22.

[0095] During the process that the first heater is opened, once the first temperature sensor detects that the temperature in the mop cleaning cavity 13 is higher than the preset threshold, the first heater is automatically closed; when the first temperature sensor detects that the air temperature is lower than the preset threshold, the first heater is automatically opened.

[0096] When the first humidity sensor detects that the moisture in the air in the mop cleaning cavity 13 is lower than the preset threshold, the first fan and the first heater are automatically turned off, and the cleaning and drying program is completed.

[0097] The cleaning staff takes out the cleaned, dried and disinfected mop 20 for cleaning work. The first RFID reader obtains the taking-out information of the mop cloth 22 from the mop cleaning box 10 by identifying the RFID tag on the mop cloth 22, and transmits the taking-out information (ID number, taking-out time, etc.) of the mop cloth to the control module and / or the intelligent terminal. The control module and / or the intelligent terminal receive and store the cleaning and disinfection information of the mop cloth 22, obtain the corresponding related information from the database according to the ID number of the mop cloth 22 for comparison, judge whether it meets the cleaning and disinfection requirements, and display the judgment result information and work instructions on the first display 891.

[0098] The use monitoring process is as follows:

[0099] A plurality of monitoring extensions 92 are arranged at different monitoring points in the area to be cleaned. The cleaning staff uses the mop cloth 22 to clean the area to be cleaned. The second RFID reader 923 on the monitoring extension 92 identifies the RFID tag on the mop cloth 22. The monitoring extension 92 transmits the use information (ID number, use time, use area, use position, etc.) of the mop cloth 22 to the control module. The control module and / or the intelligent terminal receive and store the use information of the mop cloth 22, and obtain the related information of the corresponding mop cloth 22 from the database for comparison, judge whether it meets the preset requirements, and send the judgment result information and work instructions to the cleaning host and other management terminals. The judgment result information and the specified information are displayed on the first display 891 and the second display 922 respectively, so that the management personnel and the public can timely and effectively supervise the cleaning and use of the mop cloth 22, realize the intelligent management of the cleaning and disinfection and use area of the mop cloth 22, prevent cross-infection events, and improve the safety of public environmental health.

[0100] As shown in Figures 8-12 The vertical mop cleaning device 9810 includes a mop cleaning cavity 810, a plug-in piece 820, a vertical washing rack 830, a guide piece 840, a limiting piece 850, a telescopic assembly 836, a second driving mechanism 860 and a second drying module 870. The control module is electrically connected with the second driving mechanism 860 and the second drying module 870.

[0101] As shown in Figures 7-8 The mop cleaning cavity 810 is provided with an inlet and outlet 812, and the inlet and outlet 812 are arranged at the top of the mop cleaning cavity 810.

[0102] As shown in Figures 8-11As shown in the figure, the vertical washing rack 830, the guide 840, the limiting piece 850, the telescopic assembly 836 and the second driving mechanism 860 are arranged in the wiping article cleaning cavity 810, wherein the guide 840 and the limiting piece 850 are arranged on the opposite side walls inside the wiping article cleaning cavity 810 respectively, the telescopic assembly 836 is arranged on the side of the vertical washing rack 830, and the second driving mechanism 860 is in sliding connection with the vertical washing rack 830.

[0103] As shown in the figure, Figures 14-15 The vertical washing rack 830 includes a washing plate 831, a connecting plate 832, a lifting assembly 833 and a moving assembly 835. Further, the connecting plate 832 is mounted on one side of the washing plate 831, and a sliding groove 321 is arranged on the connecting plate 832. Further, a plurality of protruding scraping strips 834 are arranged on the side of the washing plate 831 facing the wiping article 822, and the protruding scraping strips 834 are in contact with the wiping article 822. Further, two rows of lifting assemblies 833 are arranged on the side of the washing plate 831 facing the guide 840, and the lifting assemblies 833 are provided with pulleys 8331 in contact with the inner side wall of the wiping article cleaning cavity 810. Further, the moving assembly 835 is arranged on the lower part of the washing plate 831, and the rollers 351 on the moving assembly 835 are in contact with the bottom inside the wiping article cleaning cavity 810.

[0104] In addition, those skilled in the art can understand that the reciprocating movement distance of the vertical washing rack 830 along the length direction of the wiping article 822 is greater than the interval distance between the two scraping strips 834. In this way, the vertical washing rack 830 can more thoroughly wash and squeeze the wiping article 822, thereby improving the cleaning effect.

[0105] In addition, those skilled in the art can understand that the washing plate 831 can be any other feasible washing plate. For example, a washing rack provided with protruding ribs and grooves.

[0106] In addition, those skilled in the art can understand that the lifting assembly 833 can be any other feasible lifting assembly. For example, a lifting assembly provided with a ball.

[0107] In addition, those skilled in the art can understand that the moving assembly 835 can be any other feasible moving assembly. For example, a moving assembly provided with a ball.

[0108] As shown in the figure, Figures 10-11 , Figure 16As shown, the guide 840 is provided with a first level step 841 and a second level step 842 of different heights, and two rows of guide 840 protrusions are arranged on the inner side wall of the cleaning cavity 810, and the guide 840 is arranged in correspondence with the lifting assembly 833. When the pulley 8331 on the lifting assembly 833 moves up the first level step 841 or the second level step 842, the vertical washing rack 830 moves towards the wiping article 822, and the pressing strip 834 on the vertical washing rack 830 exerts a pressing force on the wiping article 822 on the inserting and taking part 820.

[0109] In addition, those skilled in the art can understand that the guide 840 can be provided with multiple steps of different heights, and when the lifting assembly 833 of the vertical washing rack 830 moves up the steps of different heights, the pressing strip 834 on the vertical washing rack 830 exerts a pressing force of different intensities on the wiping article 822 on the inserting and taking part 820, so that the wiping article 822 obtains a washing effect or a dehydration effect of different intensities, and the cleaning personnel can provide a wiping article 822 of different washing intensities or different humidities, thereby improving the user experience.

[0110] In addition, those skilled in the art can understand that the guide 840 can be any other feasible guide. For example, the guide is outwardly recessed on the inner side wall of the cleaning cavity 810.

[0111] As shown in Figure 11 , Figure 17 As shown, the limiting part 850 is provided with a second limiting wheel 851, and the limiting part 850 is installed on the inner side wall of the cleaning cavity 810, and the second limiting wheel 851 is in contact with the limiting groove 8211 on the inserting and taking part 820.

[0112] In addition, those skilled in the art can understand that the limiting part 850 can be any other feasible limiting part. For example, the limiting part is provided with a ball or does not have a limiting wheel.

[0113] As shown in Figures 11-13 , the inserting and taking part 820 is provided with a cover plate 823 and a hanging plate 821, the cover plate 823 can close the inlet and outlet 812, the hanging plate 821 is arranged below the cover plate 823, one side of the hanging plate 821 is provided with a limiting groove 8211, and the other side of the hanging plate 821 is provided with a Velcro female face 82122 which is detachably connected with a Velcro male face 82121 on the wiping article 822, and the Velcro female face 82122 and the Velcro male face 82121 form a Velcro 8212.

[0114] In addition, those skilled in the art can understand that the inserting and taking part 820 and the wiping article 822 can adopt any feasible detachable connection mode. For example, the inserting and taking part 820 is provided with a clamp which is detachably connected with the wiping article 822.

[0115] AsFigure 8 , Figure 11 As shown, the hanging plate 821 and the wiping material 822 on the insert 820 are inserted into the set position in the wiping material cleaning chamber 810 through the inlet and outlet 812. The wiping material 822 on one side of the insert 820 contacts the scraping strip 834 on the vertical scrubbing rack 830, and the limiting groove 8211 on the other side of the insert 820 contacts the second limiting wheel 851 on the limiting member 850. The scraping strip 834 and the second limiting wheel 851 cooperate to restrict the hanging plate 821 and the wiping material 822 in the set position in the wiping material cleaning chamber 810 so that the scraping strip 834 can scrub and squeeze the wiping material 822.

[0116] Furthermore, those skilled in the art will understand that the mounting plate 821 on the insert 820 and the limiting member 850 can be configured in any feasible corresponding manner. For example, the mounting plate 821 may have a limiting protrusion that engages with the groove on the limiting member 850.

[0117] like Figure 9 , Figure 11 As shown, the telescopic assembly 836 includes a telescopic rod 8361, an elastic element 8362, and a telescopic base 8363. The telescopic base 8363 and the scraping strip 834 are installed on the same side of the vertical scrubbing rack 830. The telescopic rod 8361 contacts the inner wall of the wiping material cleaning cavity 810. The elastic element 8362 expands the gap between the vertical scrubbing rack 830 and the limiting member 850 to accommodate the side insertion of the insertion member 820.

[0118] Furthermore, those skilled in the art will understand that the telescopic component 836 can be any other feasible telescopic component. For example, a telescopic component equipped with pulleys or a telescopic component equipped with ball bearings.

[0119] Furthermore, those skilled in the art will understand that the telescopic assembly 836 can be installed at any feasible location within the wiping chamber 810. For example, the telescopic base 8363 is installed on the inner wall of the wiping chamber 810.

[0120] like Figure 9 As shown, the second drive mechanism 860 includes a second drive motor 861, a second lead screw 862, a second lead screw nut 863, and a sliding connector 864. The second drive motor 861 is connected to the second lead screw 862, the second lead screw 862 meshes with the second lead screw nut 863, and the second lead screw nut 863 is connected to the sliding connector 864. When the second drive motor 861 drives the second lead screw 862 to rotate, the second lead screw nut 863 drives the sliding connector 864 to move laterally, and the sliding connector 864 drives the vertical scrubbing frame 830 to reciprocate along the length of the object to be wiped 822. The vertical scrubbing frame 830 reciprocates and scrubs the object to be wiped 822.

[0121] likeFigure 9 , Figure 14 As shown, the sliding connector 864 on the second drive mechanism 860 passes through the slide groove 321 on the connecting plate 832 and is slidably connected to the connecting plate 832. The sliding connector 864 on the second drive mechanism 860 can slide within the slide groove 321.

[0122] Furthermore, those skilled in the art will understand that the second drive mechanism 860 can be any other feasible drive mechanism. For example, a drive mechanism consisting of a drive motor, gears, racks, and sliding connectors.

[0123] Furthermore, those skilled in the art will understand that the sliding connection between the second drive mechanism 860 and the vertical washing rack 830 can be achieved using any other feasible sliding connection method. For example, the vertical washing rack 830 and the second drive mechanism 860 can be slidably connected via a sliding connecting rod device.

[0124] like Figures 7-9 As shown, the vertical cleaning device 9810 for wiping items is equipped with a second water inlet valve 871, a second drain valve 872, and a second drying module 870. Further, the second drying module 870 includes a second heater (not shown in the figure), a second fan (not shown in the figure), a second temperature sensor (not shown in the figure), and a second humidity sensor (not shown in the figure). The second fan introduces outside air into the wiping item cleaning chamber 810, and the second heater heats the air, creating a dry, hot airflow within the wiping item cleaning chamber 810. This dry, hot airflow evaporates moisture from the wiping item 822, thus creating a humid, hot airflow, which is then discharged from the wiping item cleaning chamber 810, thereby drying and disinfecting the wiping item 822.

[0125] In addition, those skilled in the art can add an ultraviolet disinfection lamp to the wiping chamber 810 as needed to disinfect and sterilize the wiping material 822.

[0126] The following is combined with Figures 7-19 The vertical cleaning device 9810 for wiping objects according to Embodiment 1 of this utility model will be further described.

[0127] First, the cleaning staff fastens the female side 82122 of the hanging plate 821 to the male side 82121 of the wiping item 822. Then, they insert the hanging plate 821 and the wiping item 822 into the wiping item cleaning chamber 810 through the inlet / outlet 812. At this time, the wiping item 822 on one side of the insert 820 contacts the scraping strip 834 on the vertical scrubbing rack 830, and the limiting groove 8211 on the other side of the insert 820 contacts the second limiting wheel 851 on the limiting member 850. The scraping strip 834 and the second limiting wheel 851 restrict the hanging plate 821 and the wiping item 822 to a set position within the wiping item cleaning chamber 810. The cover plate 823 on the insert 820 closes the inlet / outlet 812.

[0128] Then, the cleaner opens the cleaning object washing and dewatering program, the first RFID reader non-contact fast wireless automatic identification reads the RFID tag arranged on the cleaning object 22, and transmits the information of the cleaning object 22 to the control module and / or intelligent terminal. The control module controls the cleaning device to execute corresponding cleaning and drying work instructions. The second drain valve 872 is closed, the second water inlet valve 871 is automatically opened, the washing water is injected into the cleaning object washing cavity 810, the washing water reaches the preset water level, and the second water inlet valve 871 is closed.

[0129] First-stage rubbing: the second drive motor 861 is positively rotated, and drives the second lead screw 862 to positively rotate. The second lead screw nut 863 drives the sliding connecting piece 864 to move horizontally. The sliding connecting piece 864 drives the vertical rubbing frame 830 to move along the length direction of the cleaning object 822. When the pulley 8331 on the lifting assembly 833 moves to the first-stage step 841, the elastic member 8362 on the telescopic assembly 836 is compressed, the scraping strip 834 on the vertical rubbing frame 830 exerts extrusion force on the cleaning object 822, and the vertical rubbing frame 830 continues to move along the length direction of the cleaning object 822. The scraping strip 834 rubs and washes the cleaning object 822 on the plug-in piece 820. When the pulley 8331 on the lifting assembly 833 moves to the end of the first-stage step 841, the second drive motor 861 is reversely rotated, drives the vertical rubbing frame 830 to move in the opposite direction, and the scraping strip 834 rubs and washes the cleaning object 822 in the opposite direction. In this way, the dirt on the cleaning object 822 is scraped into the cleaning object washing cavity 810, and the first-stage rubbing is completed.

[0130] Second-stage rubbing: at this time, the pulley 8331 on the lifting assembly 833 moves to the end of the first-stage step 841, the second drive motor 861 continues to be positively rotated, and the vertical rubbing frame 830 moves along the length direction of the cleaning object 822. When the pulley 8331 on the lifting assembly 833 moves to the second-stage step 842, the elastic member 8362 on the telescopic assembly 836 is compressed again, the scraping strip 834 exerts greater extrusion force on the cleaning object 822, and the vertical rubbing frame 830 continues to move along the length direction of the cleaning object 822. The scraping strip 834 rubs and washes the cleaning object 822 with greater force. When the pulley 8331 on the lifting assembly 833 moves to the end of the second-stage step 842, the second drive motor 861 is reversely rotated, drives the vertical rubbing frame 830 to move in the opposite direction, and the scraping strip 834 rubs and washes the cleaning object 822 in the opposite direction. In this way, the dirt on the cleaning object 822 is scraped into the cleaning object washing cavity 810, and the second-stage rubbing is completed.

[0131] Preferably, the vertical scrubbing frame 830 moves along the length direction of the wiping article 822, when the pulley 8331 on the lifting assembly 833 moves from the starting position to the end of the first step 841, the second driving motor 861 continues to rotate in the positive direction, when the pulley 8331 on the lifting assembly 833 moves to the end of the second step 842, the second driving motor 861 reverses, driving the vertical scrubbing frame 830 to move in the opposite direction, and the pulley 8331 on the lifting assembly 833 moves to the starting position. Repeat the above process, the scraping strip 834 applies a continuous and different force to the wiping article 822, which is beneficial to improve the cleaning effect.

[0132] First stage of dehydration: the second drainage valve 872 is opened, and the washing water is drained out of the wiping article cleaning cavity 810. At this time, the pulley 8331 on the lifting assembly 833 moves to the starting position, the second driving motor 861 rotates in the positive direction, and the vertical scrubbing frame 830 moves along the length direction of the wiping article 822. When the pulley 8331 on the lifting assembly 833 moves onto the first step 841, the elastic member 8362 on the telescopic assembly 836 is compressed, and the scraping strip 834 applies a squeezing force to the wiping article 822. The vertical scrubbing frame 830 continues to move along the length direction of the wiping article 822, and the scraping strip 834 squeezes the wiping article 822 on the inserting and taking member 820. When the pulley 8331 on the lifting assembly 833 moves from the starting position to the end of the first step 841, the second driving motor 861 reverses, driving the vertical scrubbing frame 830 to move in the opposite direction, and the scraping strip 834 squeezes the wiping article 822 in the opposite direction. Repeat the above process, and the washing water on the wiping article 822 is squeezed off and drained out of the wiping article cleaning cavity 810 through the second drainage valve 872, and the first stage of dehydration is completed.

[0133] Second stage of dehydration: at this time, the pulley 8331 on the lifting assembly 833 moves to the end of the first step 841, the second driving motor 861 continues to rotate in the positive direction, and the vertical scrubbing frame 830 moves along the length direction of the wiping article 822. When the pulley 8331 on the lifting assembly 833 moves onto the second step 842, the elastic member 8362 on the telescopic assembly 836 is compressed again, and the scraping strip 834 applies a greater squeezing force to the wiping article 822. The vertical scrubbing frame 830 continues to move along the length direction of the wiping article 822, and the scraping strip 834 squeezes the wiping article 822 with greater force. When the pulley 8331 on the lifting assembly 833 moves to the end of the second step 842, the second driving motor 861 reverses, driving the vertical scrubbing frame 830 to move in the opposite direction, and the scraping strip 834 squeezes the wiping article 822 in the opposite direction. Repeat the above process, and the washing water on the wiping article 822 is squeezed off and drained out of the wiping article cleaning cavity 810 through the second drainage valve 872, and the second stage of dehydration is completed.

[0134] Preferably, the vertical washing rack 830 moves along the length direction of the wiping article 822, when the pulley 8331 on the lifting assembly 833 moves from the starting position to the end of the first step 841, the second driving motor 861 continues to rotate in the positive direction, when the pulley 8331 on the lifting assembly 833 moves to the end of the second step 842, the second driving motor 861 reverses, driving the vertical washing rack 830 to move in the opposite direction, and the pulley 8331 on the lifting assembly 833 moves to the starting position. Thus, the continuous and different force extrusion dehydration of the wiping article 822 by the scraping strip 834 can improve the dehydration effect.

[0135] When the second driving motor 861 reverses, the vertical washing rack 830 moves to the starting position, and the elastic member 8362 on the telescopic assembly 836 pries the gap between the vertical washing rack 830 and the limiting member 850 to allow the hanging plate 821 and the wiping article 822 to enter and exit. At this time, the washing water in the wiping article washing cavity 810 has been drained, the second drainage valve 872 is closed, and the washing and dehydration program is completed.

[0136] In addition, those skilled in the art can understand that those skilled in the art can set the number of washing and dehydration according to actual needs to achieve better washing and dehydration effect.

[0137] Wiping article drying and disinfection program:

[0138] The second heater and the second fan on the second drying module 870 are automatically turned on, so that the air in the wiping article washing cavity 810 forms a dry hot air flow, the dry hot air flow evaporates the water on the wiping article 822, and thus forms a wet hot air flow, which is then discharged from the wiping article washing cavity 810, thereby drying and disinfecting the wiping article 822.

[0139] During the operation of the second heater, once the second temperature sensor detects that the temperature in the wiping article washing cavity 810 is higher than the preset threshold, the second heater is automatically turned off; when the second temperature sensor detects that the air temperature is lower than the preset threshold, the second heater is automatically turned on.

[0140] When the second humidity sensor detects that the moisture in the air in the wiping article washing cavity 810 is lower than the preset threshold, the second fan and the second heater are automatically turned off, and the washing and drying program is completed.

[0141] The cleaning staff first removes the plug-in piece 820 from the inlet and outlet 812 on the wiping material cleaning cavity 810, then separates the magic sticker female surface 82122 on the hanging plate 821 from the magic sticker male surface 82121 on the wiping material 822, and takes down the wiping material 822 which is washed, rubbed clean, and squeezed and dehydrated, for cleaning work. The first RFID reader obtains the taking information of the wiping material 822 leaving the wiping material cleaning cavity 810 by identifying the RFID tag on the wiping material 822, and transmits the taking information (ID number, taking time, and other information) of the wiping material to the control module and / or the intelligent terminal. The control module and / or the intelligent terminal receive and store the cleaning and disinfection information of the wiping material 822, obtain the corresponding related information from the database according to the ID number of the wiping material 822 for comparison, judge whether it meets the cleaning and disinfection requirements, and display the judgment result information and work instructions on the first display 891.

[0142] The monitoring process is as follows:

[0143] The cleaning staff uses the wiping material 822 to clean the area to be cleaned, and the second RFID reader 923 on the monitoring extension 92 identifies the RFID tag on the wiping material 822. The monitoring extension 92 transmits the use information (ID number, use time, use area, use position, and other information) of the wiping material 822 to the control module. The control module and / or the intelligent terminal receive and store the use information of the wiping material 822, and obtain the related information of the wiping material 822 from the database for comparison, judge whether it meets the preset requirements, and send the judgment result information and work instructions to the cleaning host and other management terminals. The judgment result information and the specified information are displayed on the first display 891 and the second display 922 respectively, so that the management personnel and the public can timely and effectively supervise the cleaning and use of the wiping material 822, realize the intelligent management of the cleaning and disinfection of the wiping material 822 and the use area, prevent cross-infection events, and improve the safety of public environmental health.

[0144] Embodiment Two

[0145] As shown in Figures 20-21 The difference between embodiment two and embodiment one is that the mop cleaning device of embodiment two is a mop spray washing and drying device (not marked in the figure). The mop spray washing and drying device does not use a scraping and squeezing mechanism, but uses a washing and drying mechanism 330, and additionally provides a mop chain 41, a water pipe 42, and an air pipe 43. The rest of the working mode is the same as that of embodiment one.

[0146] As shown in Figures 20-21As shown, the bendable and deformable water pipe 42 and air pipe 43 are arranged in the bendable and deformable drag chain 41, one end of the water pipe 42 is connected with the first water inlet valve 61, the other end of the water pipe 42 is connected with the nozzle 32; one end of the air pipe 43 is connected with the first drying module 60, the other end of the air pipe 43 is connected with the air nozzle 37, the hot air generated by the first drying module 60 is blown out through the air nozzle 37 to dry and disinfect the mop; one end of the drag chain 41 is fixedly connected with the fixed seat (not shown in the figure) of the first water inlet valve 61, the other end of the drag chain 41 is fixedly connected with the upper end of the lifting connecting frame 523, the drag chain 41 is bent and deformed along with the lifting of the lifting connecting frame 523, the water pipe 42 and the air pipe 43 are bent and deformed along with the lifting of the drag chain 41.

[0147] As shown, Figures 20-22 The washing and drying mechanism 330 includes a washing and drying frame 331, a nozzle 32, a first roller 34, a limiting assembly 35 and an air nozzle 37, the nozzle 32 is used to spray washing water to spray and wash the mop, the air nozzle 39 is used to blow hot air to dry and disinfect the mop; the first driving mechanism 50 includes a first driving motor 51 and a first transmission assembly 52, the first transmission assembly 52 includes a first lead screw 522 and a first lead screw nut 523, the first driving motor 51 is connected with the first lead screw 522, the first lead screw 522 is threadedly connected with the first lead screw nut 523; the upper end of the lifting connecting frame 523 is connected with the first lead screw nut 523, the lower end of the lifting connecting frame 523 is connected with the washing and drying frame 331. Further, the washing and drying frame 331 is provided with the nozzle 32, the limiting assembly 35 and the air nozzle 37 at the front end, two limiting assemblies 35 are respectively arranged on the left and right sides of the washing and drying frame 331, the limiting assembly 35 is provided with a first limiting roller 351 on the upper end, the first limiting roller 351 abuts against the top surface of the mop plate to limit the mop between the first limiting roller 351 and the nozzle 32; the washing and drying frame 331 is provided with a square hole 36 at the rear end, the supporting body 15 can pass through the square hole 36, the inner side of the square hole 36 is provided with four first rollers 34 abutting against the side surface of the supporting body 15, the first rollers 34 roll on the side surface of the supporting body 15. Further, the first driving motor 51 is reversed, the first driving motor 51 drives the first lead screw 522 to be reversed, the first lead screw 522 drives the first lead screw nut 523 to move up and down, the first lead screw nut 523 drives the lifting connecting frame 523 to move up and down, the lifting connecting frame 523 drives the washing and drying mechanism 330 to move up and down. In the process of moving up and down of the washing and drying mechanism 330, the first rollers 34 roll on the side surface of the supporting body 15, the drag chain 41 is bent and deformed along with the lifting of the lifting connecting frame 523, the water pipe 42 is bent and deformed along with the lifting of the drag chain 41, the nozzle 32 sprays washing water to moveably spray and wash the mop, the air nozzle 37 blows hot air to moveably dry and disinfect the mop.

[0148] Example three

[0149] The difference between the third embodiment and the first embodiment is that the cleaning device structures of the two embodiments are different, and the cleaning device of the third embodiment is a pulsator washing machine, and the rest of the working modes are the same as those of the first embodiment.

[0150] In addition, the person skilled in the art can understand that the cleaning device can be any other feasible cleaning device.

[0151] Through the above description, the mop and the cleaning material are intelligently identified, cleaned and monitored for cleaning use, which not only saves time and effort, has good user experience, but also realizes intelligent management of the mop and the cleaning material cleaning and use area, prevents cross infection events and improves public environmental health safety.

[0152] Finally, it should be noted that: the technical scheme of the utility model has been described above in combination with the preferred embodiments shown in the drawings, but the person skilled in the art can easily understand that the protection scope of the utility model is obviously not limited to these specific embodiments. On the premise of not deviating from the principles of the utility model, the person skilled in the art can make equivalent changes or replacements to the related technical features, and the technical schemes after the changes or replacements will all fall within the protection scope of the utility model.

Claims

1. An intelligent cleaning monitoring device comprising a mop and a wipe, the mop comprising a mop cloth, characterized in that, The intelligent cleaning monitoring device further comprises a cleaning host, a monitoring extension, and an RFID reader; The cleaning host comprises a mop cleaning device, a wiping material cleaning device, a first RFID reader, and a control module; The mop cleaning device comprises a mop cleaning cavity, which can accommodate the mop cloth, and is used for cleaning the mop cloth, wherein the mop cloth is provided with an RFID tag; The wiping material cleaning device comprises a wiping material cleaning cavity, which can accommodate the wiping material, and is used for cleaning the wiping material, wherein the wiping material is provided with an RFID tag; The monitoring extension comprises a second RFID reader, and is used for monitoring the use area of the mop cloth and / or the wiping material.

2. The intelligent wash monitoring device of claim 1, wherein, The RFID reader is used for identifying and reading the RFID tag, and transmitting the cleaning use information of the mop cloth and / or the wiping material to the control module.

3. The intelligent wash monitoring device of claim 1, wherein, The control module comprises a processing module and a storage module for storing executable instructions of the processing module, wherein the storage module stores preset cleaning use information of the mop cloth and the wiping material.

4. The intelligent wash monitoring device of claim 1, wherein, The monitoring extension is arranged at a monitoring point of the area to be cleaned, and is provided with a display, which is used for displaying the cleaning use information of the mop cloth and / or the wiping material.

5. The intelligent wash monitoring device of claim 1, wherein, The mop cleaning device comprises a mop scraping and washing device, which comprises a scraping and washing mechanism and a first driving mechanism; The scraping and washing mechanism comprises a scraping and washing piece, a roller, and a scraping and washing frame, the scraping and washing piece and the roller are arranged on the scraping and washing frame, the roller rolls in the cleaning cavity, and is used for supporting the scraping and washing frame to move in the cleaning cavity, and the scraping and washing piece is used for scraping and washing the mop cloth; The first driving mechanism drives the scraping and washing mechanism to move up and down in the mop cleaning cavity.

6. The intelligent wash monitoring device of claim 1, wherein, The wiping material cleaning device comprises a wiping material vertical cleaning device, which comprises a vertical scrubbing frame, a guide piece, and a second driving mechanism, the vertical scrubbing frame is arranged in the cleaning cavity, and is used for scrubbing the wiping material; The second driving mechanism drives the vertical scrubbing frame to move back and forth in the cleaning cavity.

7. The intelligent wash monitoring device of claim 1, wherein, The mop cleaning device comprises a mop spray washing and drying device, which comprises a washing and drying mechanism and a first driving mechanism; The washing and drying mechanism comprises a spray nozzle, an air nozzle, and a washing and drying frame, the spray nozzle and the air nozzle are arranged on the washing and drying frame, the spray nozzle is used for spraying cleaning water to spray wash the mop cloth, and the air nozzle is used for blowing hot air to dry the mop cloth; The first driving mechanism drives the washing and drying mechanism to move up and down in the mop cleaning cavity.

8. The intelligent wash monitoring device of claim 1, wherein, The wiping material cleaning device comprises a pulsator washing machine.

9. The intelligent wash monitoring device of claim 1, wherein, The intelligent cleaning monitoring device comprises a drying module, which is used for drying and disinfecting the mop cloth and / or the wiping material.