A cleaning device with water quality detection and an intelligent circulating self-cleaning method thereof
By using a cleaning device with water quality testing capabilities and a TDS water quality analyzer to adjust the cleaning mode in real time, the problem of dirt accumulation on the cleaning head is solved, achieving efficient and intelligent self-cleaning and improving the user experience.
Patent Information
- Application Number
- CN202210188266.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-28
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2042-02-28
AI Technical Summary
During use, existing cleaning devices tend to accumulate dirt on the cleaning head, resulting in incomplete cleaning. Manual cleaning also increases the workload and leads to a poor user experience.
The cleaning device uses a water quality testing system. It monitors the wastewater quality in real time using a TDS water quality analyzer and automatically adjusts the cleaning mode, including the cleaning liquid supply, rotation speed, and wastewater recovery system, to achieve intelligent adjustment of the self-cleaning mode.
It effectively prevents sewage from flowing everywhere, improves self-cleaning efficiency, ensures cleaning effect, reduces the labor burden of manual cleaning, and enhances user experience.
Smart Images

Figure CN114468883B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the field of cleaning small household appliances, and particularly relates to a cleaning device with water quality detection and an intelligent circulating self-cleaning method thereof. BACKGROUND
[0002] In daily life, due to the richness of living supplies, cleaning devices are subdivided a lot, bringing a lot of convenience. When cleaning the floor, ceramic tile floor and other ground environments, a kind of cleaning device can be used to clean the floor, ceramic tile floor and other ground environments, and has the functions of washing and brushing, is relatively convenient to use, and can be relatively economical in water use. Usually, the full water capacity of a clean water tank can clean a space of 200 to 300 square meters.
[0003] However, in daily use, as the number of uses or the area to be cleaned increases and the cleaning environment is different, more dirt is likely to accumulate on the cleaning head of the floor cleaning machine, and if it is not cleaned in time, it will cause the cleaned ground to have more stains and more bacteria in subsequent use. If manual cleaning is required each time, it will increase the labor burden. The above problems will make the user experience worse and have a bad impact.
[0004] Therefore, a cleaning device with water quality detection is needed, which can effectively clean the ground while solving the problem that the cleaning mode cannot be automatically adjusted during self-cleaning. The cleaning device can intelligently adjust the self-cleaning of the stains and dirt on the cleaning head to effectively adjust different pollution conditions. SUMMARY
[0005] The application aims to provide a cleaning device with water quality detection and an intelligent circulating self-cleaning method thereof, which can intelligently adjust the self-cleaning of the stains and dirt on the cleaning head to effectively adjust different pollution conditions.
[0006] Technical scheme: The application provides a cleaning device with water quality detection, which comprises a main body and a tray support. The main body is provided with a control system, a cleaning liquid supply system, a sewage recovery system and a cleaning system. The control system is electrically connected with the cleaning liquid supply system, the sewage recovery system and the cleaning system. When the main body is installed on the tray support, the cleaning system can be cleaned. The control system is provided with a program preset module. The tray support is provided with a TDS water quality detector and a conductive contact. The TDS water quality detector is located at the bottom of the tray support. The conductive contact is located at the top of the tray support. The TDS water quality detector is electrically connected with the conductive contact.
[0007] The application discloses a cleaning device with water quality detection, which comprises a main body and a tray support.
[0008] Further, the cleaning device with water quality detection comprises a cleaning liquid tank and a cleaning liquid pipe.
[0009] Further, the cleaning device with water quality detection comprises a sewage tank, a sewage suction source and a sewage recovery pipe.
[0010] Further, the cleaning device with water quality detection comprises a brushless motor.
[0011] Further, the cleaning device with water quality detection comprises a brushless motor.
[0012] Further, the cleaning device with water quality detection, the driving mechanism of the floor brush is a driving motor arranged in the roller brush. The driving motor is arranged at one end of the roller brush away from the cleaning liquid supply system. As a preferred embodiment of the present application, the driving motor is arranged in the roller brush, which can effectively reduce the surface of the floor brush body and make it more convenient to use.
[0013] Further, the cleaning device with water quality detection, the tray support is provided with a corrugated groove. The corrugated groove is arranged at the front end of the tray support. The test end of the TDS water quality detector is located at the bottom of the groove. As a preferred embodiment of the present application, the corrugated groove can extrude the roller brush and the cleaning liquid when the roller brush rotates, improve the cleaning effect, and facilitate the early falling of some larger particles or stains, avoid extrusion and blockage when entering the suction port, and the TDS water quality detector in the corrugated groove can effectively detect the cleaned sewage, and the cleaning mode can be adjusted when the cleaned water quality meets the preset indicators.
[0014] Meanwhile, the present application also provides a self-cleaning method of the cleaning device with water quality detection, which comprises the following steps:
[0015] S1. When the cleaning device is used, it is placed on the tray support, the circulating cleaning mode can be started through the control system, and the rotation speed, water outlet and suction force can be adjusted according to the cleaning parameters preset in the program preset module in the control system;
[0016] S2. When the circulating cleaning mode is started, the control system controls the cleaning liquid supply system, the sewage recovery system and the cleaning system to respectively make the cleaning liquid tank discharge cleaning liquid, enter the roller brush through the cleaning liquid pipe, and the roller brush rotates at the same time;
[0017] S3. When the roller brush rotates, the cleaning liquid and the roller brush are extruded through the corrugated groove of the tray support, so that the roller brush is better washed by water;
[0018] S4. The stains and dirt washed down are recovered through the sewage recovery system, enter the sewage tank through the sewage recovery pipe by the suction force of the suction source, and the stains and dirt scraped off and the sewage mixed with the cleaning liquid are detected by the test end when passing through the bottom of the groove of the corrugated groove;
[0019] S5. When the detected data does not meet the predetermined water quality requirement, the cleaning work state is continued;
[0020] S6. When the detected data meets the predetermined water quality requirement, the power supply line of the conductive contact and the main body is disconnected; the control system controls each system to stop working;
[0021] S7, at the same time, the preset cycle self-cleaning time is usually 8-15 minutes, when reaching the preset time, if the required water quality data is still not obtained, then stop for 3-5 minutes, and then continue the self-cleaning work for 5 minutes, until the required water quality data is reached, and each system stops moving.
[0022] Further, the self-cleaning method of the cleaning device with water quality detection also includes the following steps:
[0023] S1, when the TDS water quality detector obtains the required water quality data, each system stops working, but can be operated and adjusted by the control system.
[0024] Further, the self-cleaning method of the cleaning device with water quality detection also includes the following steps:
[0025] S1, when the cycle cleaning is performed, the control system function is not disabled, and the control system can adjust the liquid outlet size of the cleaning liquid tank, the suction force of the suction source, and the speed of the roller brush.
[0026] The above technical solution can be seen, the present application has the following beneficial effects: the present application discloses a kind of cleaning device with water quality detection, including main body and tray support.There is control system, cleaning liquid supply system, sewage recovery system and cleaning system on main body.Wherein, TDS water quality detector and electric contact are arranged on tray support, when electric contact is connected with power supply, TDS water quality detector can be started, and the sewage generated during self-cleaning is detected, when the water quality generated meets the preset requirement, the water outlet, speed and other functions of cleaning device can be automatically adjusted, the change of self-cleaning mode is realized, sewage recovery system is mainly used for the recovery of sewage, when self-cleaning is performed, sewage recovery is also needed, which effectively avoids the problem of sewage cross flow when self-cleaning is performed on cleaning device, and the efficiency of self-cleaning can be improved, corrugated groove can extrude roller brush and cleaning liquid when roller brush rotates, improve cleaning effect, at the same time, some larger particles or stains can be conveniently dropped in advance, to avoid extrusion and blockage when entering suction port, and TDS water quality detector in corrugated groove can effectively detect the sewage washed down, and the mode of cleaning can be adjusted when the water quality of cleaned water meets the preset index. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 The cleaning device described in the embodiment of the present application is shown in the drawing;
[0028] Figure 2 The cleaning liquid tank described in the embodiment of the present application is shown in the drawing;
[0029] Figure 3 Schematic diagram of sewage tank for the embodiment of the present application;
[0030] Figure 4 Schematic diagram of main body for the embodiment of the present application;
[0031] Figure 5 Schematic diagram of floor brush for the embodiment of the present application;
[0032] Figure 6 Schematic diagram of tray support for the embodiment of the present application.
[0033] In the figure: main body 1, tray support 11, TDS water quality detector 111, conductive contact 112, corrugated groove 12, control system 2, cleaning liquid supply system 3, cleaning liquid tank 31, sewage recovery system 4, sewage tank 41, sewage suction source 42, sewage recovery pipe 43, cleaning system 5, floor brush 51, rolling brush 52. DETAILED DESCRIPTION
[0034] The present application is further illustrated below in conjunction with the accompanying drawings and specific embodiments.
[0035] Embodiment 1
[0036] As Figures 1 to 6The cleaning device with water quality detection shown includes a main body 1 and a tray support 11. The main body 1 is provided with a control system 2, a cleaning liquid supply system 3, a sewage recovery system 4 and a cleaning system 5. The control system 2 is electrically connected with the cleaning liquid supply system 3, the sewage recovery system 4 and the cleaning system 5. When the main body 1 is installed on the tray support 11, the cleaning system 5 can be cleaned. In addition, the control system 2 is provided with a program preset module. The tray support 11 is provided with a TDS water quality detector 111 and a conductive contact 112. The TDS water quality detector 111 is located at the bottom of the tray support 11. The conductive contact 112 is located at the top of the tray support 11. In addition, the TDS water quality detector 111 is electrically connected with the conductive contact 112. At the same time, the cleaning liquid supply system 3 includes a cleaning liquid tank 31 and a cleaning liquid pipe. The cleaning liquid tank 31 is arranged on the main body 1 and located at one end of the main body 1. The two ends of the cleaning liquid pipe are connected with the cleaning liquid tank 31 and the cleaning system 5. The control system 2 can control the size and duration of the liquid output of the cleaning liquid tank 31. In addition, the sewage recovery system 4 includes a sewage tank 41, a sewage suction source 42 and a sewage recovery pipe 43. The sewage tank 41 is arranged on the main body 1 and located at the other end of the main body 1 relative to the cleaning liquid supply system 3. The sewage suction source 42 is arranged at the top of the sewage tank 41 and connected with the sewage tank 41. One end of the sewage recovery pipe 43 is connected with the bottom of the sewage tank 41 and the other end is connected with the cleaning system 5. The control system 2 can control the size of the suction force of the sewage suction source 42. In addition, the cleaning system 5 includes a floor brush 51 and a roller brush 52. The roller brush 52 is arranged in the floor brush 51 and located at the front of the floor brush 51. One end of the roller brush 52 is connected with the cleaning liquid supply system 3. The roller brush 52 is provided with an outlet pipe and an outlet. The floor brush 51 is provided with a driving mechanism which can drive the roller brush 52 to rotate. The control system 2 can control the rotation speed of the roller brush 52. The tray support 11 is provided with a corrugated groove 12. The corrugated groove 12 is arranged at the front end of the tray support 11. The test end of the TDS water quality detector 111 is located at the bottom of the groove of the corrugated groove 12.
[0037] In addition, the self-cleaning method of the cleaning device with water quality detection is also disclosed, which includes the following steps:
[0038] S1, when the cleaning device is used up, it is placed on the tray support 11, the control system 2 can start the circulating cleaning mode, and the rotation speed, water output and suction force are adjusted according to the cleaning parameters preset in the program preset module of the control system 2;
[0039] S2, when the circulating cleaning mode is started, the control system controls the cleaning liquid supply system 3, the sewage recovery system 4 and the cleaning system 5, respectively, so that the cleaning liquid tank 31 discharges the cleaning liquid, the cleaning liquid enters the roller brush 52 through the cleaning liquid pipe, and the roller brush 52 rotates at the same time;
[0040] S3, while the rolling brush 52 rotates, when it passes through the corrugated groove 12 of the tray support 11, the cleaning liquid and the rolling brush 52 are extruded, and the rolling brush is better washed by water;
[0041] S4, the stains and dirt washed off pass through the sewage recovery system 4, and enter the sewage tank 41 through the sewage recovery pipe 43 by the suction force of the suction source 42, at the same time, the stains and dirt scraped off and the sewage mixed with the cleaning liquid are detected by the test end when passing through the groove bottom of the corrugated groove 12;
[0042] S5, when the detected data does not meet the predetermined water quality requirement data, the cleaning work state is continued;
[0043] S6, when the detected data meets the predetermined water quality requirement data, the power supply circuit of the conductive contact 112 and the main body 1 is disconnected; the control system 2 controls each system to stop working;
[0044] S7, at the same time, the preset cycle self-cleaning time is usually 8-15 minutes, when the required water quality data is obtained, each system stops working.
[0045] In addition, the self-cleaning method of the cleaning device with water quality detection described above further includes the following steps:
[0046] S1, when the TDS water quality detector 111 obtains the required water quality data, each system stops working, but can be operated and adjusted by the control system 2 to single or multiple systems individually or in linkage.
[0047] In addition, the self-cleaning method of the cleaning device with water quality detection described above further includes the following steps:
[0048] S1, when the TDS water quality detector 111 obtains the required water quality data, each system stops working, but can be operated and adjusted by the control system 2 to single or multiple systems individually or in linkage.
[0049] Example 2
[0050] As Figures 1 to 6The cleaning device with water quality detection shown comprises a main body 1 and a tray support 11. The main body 1 is provided with a control system 2, a cleaning liquid supply system 3, a sewage recovery system 4 and a cleaning system 5. The control system 2 is electrically connected with the cleaning liquid supply system 3, the sewage recovery system 4 and the cleaning system 5. When the main body 1 is installed on the tray support 11, the cleaning system 5 can be cleaned. In addition, the control system 2 is provided with a program preset module. The tray support 11 is provided with a TDS water quality detector 111 and a conductive contact 112. The TDS water quality detector 111 is located at the bottom of the tray support 11. The conductive contact 112 is located at the top of the tray support 11. In addition, the TDS water quality detector 111 is electrically connected with the conductive contact 112. At the same time, the cleaning liquid supply system 3 comprises a cleaning liquid tank 31 and a cleaning liquid pipe. The cleaning liquid tank 31 is arranged on the main body 1 and located at one end of the main body 1. The two ends of the cleaning liquid pipe are connected with the cleaning liquid tank 31 and the cleaning system 5. The control system 2 can control the size and duration of the liquid output of the cleaning liquid tank 31. In addition, the sewage recovery system 4 comprises a sewage tank 41, a sewage suction source 42 and a sewage recovery pipe 43. The sewage tank 41 is arranged on the main body 1 and located at the other end of the main body 1 relative to the cleaning liquid supply system 3. The sewage suction source 42 is arranged at the top of the sewage tank 41 and connected with the sewage tank 41. One end of the sewage recovery pipe 43 is connected with the bottom of the sewage tank 41 and the other end is connected with the cleaning system 5. The control system 2 can control the size of the suction force of the sewage suction source 42. The sewage suction source 42 is a brushless motor. The brushless motor of the sewage suction source 42 is provided with a planetary speed reduction mechanism. In addition, the cleaning system 5 comprises a floor brush 51 and a rolling brush 52. The rolling brush 52 is arranged in the floor brush 51 and located at the front of the floor brush 51. One end of the rolling brush 52 is connected with the cleaning liquid supply system 3. The rolling brush 52 is provided with a liquid outlet pipeline and a liquid outlet. The floor brush 51 is provided with a driving mechanism which can drive the rolling brush 52 to rotate. The control system 2 can control the rotating speed of the rolling brush 52. At the same time, the driving mechanism of the floor brush 51 is a driving motor arranged in the rolling brush 52. The driving motor is arranged at the end of the rolling brush 52 away from the cleaning liquid supply system 3. The tray support 11 is provided with a corrugated groove 12. The corrugated groove 12 is arranged at the front end of the tray support 11. The testing end of the TDS water quality detector 111 is located at the bottom of the groove of the corrugated groove 12.
[0051] In addition, the self-cleaning method of the cleaning device with water quality detection is also disclosed, which comprises the following steps:
[0052] S1, when the cleaning device is used up, it is placed on the tray support 11, the rotating speed, water output and suction force can be adjusted according to the cleaning parameters preset in the program preset module in the control system 2 by starting the circulating cleaning mode of the control system 2;
[0053] S2, when the cycle cleaning mode is started, the control system controls the cleaning liquid supply system 3, the sewage recovery system 4 and the cleaning system 5 to make the cleaning liquid tank 31 discharge cleaning liquid, enter the roller brush 52 through the cleaning liquid pipe, and the roller brush 52 rotates at the same time;
[0054] S3, when the roller brush 52 rotates at the same time, the corrugated groove 12 of the tray support 11 is extruded to form a pressing force between the cleaning liquid and the roller brush 52, so that the roller brush is better washed by water;
[0055] S4, the stains and dirt washed down pass through the sewage recovery system 4, enter the sewage tank 41 through the suction force of the suction source 42 and the sewage recovery pipe 43, and the stains and dirt scraped off and the sewage mixed with the cleaning liquid pass through the groove bottom of the corrugated groove 12 and are detected by the test end;
[0056] S5, when the detected data does not meet the predetermined water quality requirement data, the cleaning work state is continued;
[0057] S6, when the detected data meets the predetermined water quality requirement data, the conductive contact 112 is disconnected with the power supply line of the main body 1; the control system 2 controls each system to stop working;
[0058] S7, at the same time, the preset cycle self-cleaning time is usually 8-15 minutes, when the preset time is reached, if the required water quality data is still not obtained, stop for 3-5 minutes, then continue the self-cleaning work for 5 minutes, until the required water quality data is obtained, each system stops moving.
[0059] In addition, the self-cleaning method of the cleaning device with water quality detection described above further includes the following steps:
[0060] S1, when the TDS water quality detector 111 obtains the required water quality data, each system stops working, but can be operated and adjusted by the control system 2 to a single or multiple systems individually or in linkage.
[0061] In addition, the self-cleaning method of the cleaning device with water quality detection described above further includes the following steps:
[0062] S1, when the cycle cleaning is performed, the control system 2 function is not disabled, and the control system 2 can adjust the liquid discharge size of the cleaning liquid tank 31, the suction force of the suction source 42 and the speed of the roller brush 52.
[0063] The above is only the preferred embodiment of the present application, it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, can make a number of improvements, these improvements also should be considered as the protection scope of the present application.
Claims
1. A self-cleaning method for a cleaning device with water quality detection, characterized in that: Includes the following steps: S1. When the cleaning device is used up and placed on the tray support (11), the circulating cleaning mode can be started through the control system (2), and the speed, water output and suction can be adjusted according to the cleaning parameters preset in the program preset module in the control system (2). S2. When the circulating cleaning mode is started, the control system controls the cleaning liquid supply system (3), the sewage recovery system (4) and the cleaning system (5) to discharge the cleaning liquid from the cleaning liquid tank (31) and enter the roller brush (52) through the cleaning liquid pipe. At the same time, the roller brush (52) rotates. S3. As the roller brush (52) rotates, it squeezes the cleaning liquid and the roller brush (52) when it passes through the corrugated groove (12) of the tray support (11), thus better cleaning the roller brush with water. S4. The dirt and grime removed by the cleaning process is collected by the sewage recycling system (4) and enters the sewage tank (41) from the sewage recycling pipe (43) by the suction of the sewage source (42). At the same time, the dirt and grime removed by the scraping process and the sewage mixed with the cleaning solution are detected by the test end when they pass through the bottom of the groove of the corrugated trough (12). S5. When the detected data does not meet the predetermined water quality requirements, continue to maintain the cleaning operation. S6. When the detected data meets the predetermined water quality requirements, the power supply line between the conductive contact (112) and the main body (1) is disconnected; the control system (2) then controls each system to stop working. S7. At the same time, the preset self-cleaning time is 8 to 15 minutes. If the required water quality data is not obtained after the preset time, the self-cleaning work will continue for 5 minutes after stopping for 3 to 5 minutes until the required water quality data is obtained. After that, each system will stop operating. It also includes the following steps: When the TDS water quality analyzer (111) obtains the required water quality data, each system stops working, but can be operated and adjusted individually or in conjunction with the control system (2). It also includes the following steps: During the cyclic cleaning process, the control system (2) function is not disabled. The control system (2) can adjust the amount of liquid discharged from the cleaning liquid tank (31), the suction force of the dirt source (42), and the speed of the roller brush (52).
2. A cleaning device with water quality detection, used to implement the method of claim 1, characterized in that: The system includes a main body (1) and a tray support (11). The main body (1) is equipped with a control system (2), a cleaning fluid supply system (3), a wastewater recycling system (4), and a cleaning system (5). The control system (2) is electrically connected to the cleaning fluid supply system (3), the wastewater recycling system (4), and the cleaning system (5). When the main body (1) is installed on the tray support (11), it can perform cleaning operations on the cleaning system (5). The control system (2) is equipped with a program preset module. The tray support (11) is equipped with a TDS water quality analyzer (111) and a conductive contact (112). The TDS water quality analyzer (111) is located at the bottom of the tray support (11). The conductive contact (112) is located at the top of the tray support (11). The TDS water quality analyzer (111) is electrically connected to the conductive contact (112).
3. The cleaning device with water quality detection according to claim 2, characterized in that: The cleaning fluid supply system (3) includes a cleaning fluid tank (31) and a cleaning fluid pipe; the cleaning fluid tank (31) is located on the main body (1) and at one end of the main body (1); both ends of the cleaning fluid pipe are connected to the cleaning fluid tank (31) and the cleaning system (5); the control system (2) can control the amount of liquid discharged from the cleaning fluid tank (31) and the duration of liquid discharge.
4. The cleaning device with water quality detection according to claim 2, characterized in that: The wastewater recycling system (4) includes a wastewater tank (41), a suction source (42), and a wastewater recycling pipe (43); the wastewater tank (41) is located on the main body (1) and at the bottom of the main body (1) at the other end relative to the cleaning liquid supply system (3); the suction source (42) is located on the top of the wastewater tank (41) and connected to the wastewater tank (41); one end of the wastewater recycling pipe (43) is connected to the bottom of the wastewater tank (41), and the other end is connected to the cleaning system (5); the control system (2) can control the suction force of the suction source (42).
5. The cleaning device with water quality detection according to claim 4, characterized in that: The suction source (42) is a brushless motor; the brushless motor of the suction source (42) is equipped with a planetary reduction mechanism.
6. The cleaning device with water quality detection according to claim 2, characterized in that: The cleaning system (5) includes a floor brush (51) and a roller brush (52); the roller brush (52) is located inside the floor brush (51) and at the front of the floor brush (51); one end of the roller brush (52) is connected to the cleaning liquid supply system (3); the roller brush (52) is provided with a liquid outlet pipe and a liquid outlet; the floor brush (51) is provided with a drive mechanism that can drive the roller brush (52) to rotate; the control system (2) can control the rotation speed of the roller brush (52).
7. The cleaning device with water quality detection according to claim 6, characterized in that: The driving mechanism of the floor brush (51) is a drive motor located inside the roller brush (52); the drive motor is located at the end of the roller brush (52) away from the cleaning liquid supply system (3).
8. The cleaning device with water quality detection according to claim 2, characterized in that: The tray support (11) is provided with a corrugated groove (12); the corrugated groove (12) is located at the front end of the tray support (11); the test end of the TDS water quality analyzer (111) is located at the bottom of the groove of the corrugated groove (12).
Citation Information
Patent Citations
Cleaning device with water quality detection function
CN218044977U