Intelligent full-automatic cleaning water tank device

The intelligent fully automatic water tank cleaning device, which adopts an array-type cleaning structure and a chemical dosing water inlet structure, solves the problems of safety hazards and low cleaning efficiency in water tank cleaning, and achieves efficient and automated cleaning and disinfection to ensure water supply quality.

CN224294087UActive Publication Date: 2026-05-29ZHUOZHOU QIYA ENVIRONMENTAL PROTECTION TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUOZHOU QIYA ENVIRONMENTAL PROTECTION TECH CO LTD
Filing Date
2025-06-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing water tank cleaning methods pose safety hazards, have low cleaning efficiency and poor cleaning effect, and are difficult to disinfect in a timely manner, thus affecting water quality safety.

Method used

An intelligent fully automatic cleaning water tank device was designed, which includes an array-type cleaning structure, a chemical dosing water inlet structure, and a submerged water collection structure. The cleaning mechanism, consisting of a high-pressure water pump, cleaning nozzles, and water-driven nozzles, combined with a chemical dosing component and a water collection tank, achieves automated cleaning and disinfection.

Benefits of technology

It achieves efficient and automated water tank cleaning and disinfection, reduces manual intervention, ensures water supply quality, reduces safety risks, and reduces cleaning time and costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an intelligent full -automatic cleaning water tank device, including the box, the box is arranged in water supply system still includes the washing mechanism for constituting the array type cleaning structure, the water intake mechanism for constituting the dosing type water intake structure and the water collection mechanism for constituting the sinking type water collection structure, the washing mechanism is arranged inside the box, the water intake mechanism is assembled one side of the box, and the water collection mechanism is configured at the inside bottom of the box corresponding washing mechanism, the utility model has the beneficial effect that is equipped with the washing mechanism, and the pulse cleaning is carried out to the four walls and top surface of water tank through array type cleaning structure, and the cleaning efficiency is high, can be in the low water period timing cleaning, does not influence the normal use demand of user, guarantees the water supply quality, is equipped with the water intake mechanism, can through the disinfection and cleaning of water tank with water intake mechanism cooperation through the dosing subassembly, and the cleaning effect is good, is equipped with the water collection mechanism, can automatically discharge to the cleaning sewage.
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Description

Technical Field

[0001] This utility model relates to the technical field of water tank cleaning devices, and in particular to an intelligent fully automatic water tank cleaning device. Background Technology

[0002] In existing technologies, most residential communities require secondary water supply, necessitating the use of water tanks for storage. Over time, these tanks become very dirty, and without cleaning, water quality suffers, resulting in a high bacterial content in the released water. Therefore, regular cleaning is essential to ensure safe water supply. Current cleaning methods typically involve manual labor, with workers entering the tanks. However, the complex internal structure and relatively sealed nature of these tanks pose significant occupational health and safety risks, such as collisions, scratches, and suffocation. For worker safety, at least two people are required for each cleaning session to prevent accidents caused by a single worker being unable to call for help promptly. This process is not only time-consuming but also requires considerable time to reach other tanks requiring cleaning. Furthermore, personnel movement can cause secondary contamination of the tanks. In short, manual cleaning is extremely time-consuming, labor-intensive, and expensive, and the tanks are difficult to clean promptly, leading to an increase in sediment, bacteria, and dead or living organisms in the water, seriously endangering user safety.

[0003] Chinese utility model patent application number 202322868143.1 discloses an automatic cleaning water tank, including a tank body, a transmission device, and a cleaning device. The transmission device is mounted on the tank body, and the cleaning device is mounted on the transmission device. The cleaning device is located inside the tank body and connected to an external water supply network. The transmission device includes an X-axis electric guide rail, a Y-axis electric guide rail, and a Z-axis electric telescopic rod. The X-axis electric guide rail is mounted on the inner top of the tank body along its length, the Y-axis electric guide rail is mounted on the X-axis electric guide rail along its width, and the Z-axis electric telescopic rod is mounted on the Y-axis electric guide rail along its height. However, this type of automatic cleaning water tank uses a single cleaning structure to automatically clean the inner wall of the tank, resulting in low cleaning efficiency, which affects the user's normal usage needs. Furthermore, it cannot disinfect or clean the tank, leading to poor cleaning performance and certain limitations in its use. Summary of the Invention

[0004] The purpose of this invention is to provide an intelligent, fully automatic water tank cleaning device.

[0005] To achieve the above objectives, the technical solution proposed by this utility model is as follows:

[0006] The intelligent fully automatic cleaning water tank device includes a tank body arranged in a water supply system, and also includes a cleaning mechanism for forming an array-type cleaning structure, a water inlet mechanism for forming a chemical dosing water inlet structure, and a water collection mechanism for forming a submerged water collection structure. The cleaning mechanism is arranged inside the tank body, the water inlet mechanism is assembled on one side of the tank body, and the water collection mechanism is arranged at the bottom of the inner side of the tank body corresponding to the cleaning mechanism.

[0007] The cleaning mechanism includes a cleaning pipe, cleaning nozzles, and water-driven nozzles. The cleaning pipe is horizontally arranged inside the housing and passes through the housing, and is fixedly connected to the housing. Several cleaning nozzles are arranged at intervals on the side of the cleaning pipe and are fixedly connected to the cleaning pipe. Several cleaning nozzles are arranged opposite to the side wall and top surface of the housing and communicate with the cleaning pipe. Several water-driven nozzles are arranged at intervals at the bottom of the cleaning pipe and are fixedly connected to the cleaning pipe.

[0008] The water-driven nozzle is arranged at an angle relative to the cleaning pipe and is positioned corresponding to the bottom surface of the housing. The water-driven nozzle is connected to the cleaning pipe.

[0009] The cleaning mechanism consists of several groups, which are arranged in an array inside the housing to form a pipe assembly structure.

[0010] The water inlet mechanism includes a high-pressure water pump, a high-pressure pipeline, high-pressure branch pipes, and a dosing assembly. The high-pressure water pump is located on one side of the tank and its inlet end is connected to the water supply system. The high-pressure pipeline is located on one side of the water tank and one end is connected to the outlet end of the high-pressure water pump. Several high-pressure branch pipes are provided corresponding to several sets of cleaning mechanisms. Several high-pressure branch pipes are arranged at intervals on the high-pressure pipeline and their two ends are respectively connected to the high-pressure pipeline and the cleaning pipeline. The dosing assembly is located on one side of the high-pressure water pump.

[0011] It also includes high-pressure solenoid valves, of which there are several, and the several high-pressure solenoid valves are respectively installed on several high-pressure branch pipes and fixedly connected to the corresponding high-pressure branch pipes.

[0012] The dosing assembly includes a dosing cartridge and a dosing pump. The dosing cartridge is located on one side of the high-pressure water pump. The dosing pump is located between the dosing cartridge and the high-pressure pipeline, with its input end connected to the dosing cartridge via a pipeline. The output end of the dosing pump is connected to the high-pressure pipeline via a pipeline.

[0013] It also includes a water inlet pipe and a water inlet electric valve. The water inlet pipe is located on the upper side of the box corresponding to the high-pressure water pump, and one end of the water inlet pipe is connected to the box. The end of the water inlet pipe away from the box is connected to the water supply system. The water inlet electric valve is located at the connection between the water inlet pipe and the box and is fixedly connected to the water inlet pipe.

[0014] The inlet of the high-pressure water pump is connected to the inlet pipe via a pipeline, and the high-pressure water pump is connected to the water supply system via the inlet pipe.

[0015] The water collection mechanism includes a water collection tank and a drain electric valve. The water collection tank is located on one side of the bottom of the housing and is positioned opposite to the water-driven nozzle. The drain electric valve is located at the bottom of the water collection tank and is connected to the outside through the drain electric valve.

[0016] The beneficial effects of this utility model are:

[0017] It is equipped with a cleaning mechanism that uses an array-type cleaning structure to perform pulse cleaning on the four walls and top surface of the water tank. The cleaning efficiency is high, and it can be cleaned regularly during periods of low water usage without affecting the user's normal usage needs and ensuring water supply quality. It is also equipped with a water inlet mechanism that can work with a chemical dosing component to disinfect and clean the water tank, resulting in good cleaning effect. Finally, it is equipped with a water collection mechanism that uses an angled water-driven nozzle and a water collection tank to automatically discharge cleaning wastewater. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a side view of the present invention;

[0020] Figure 3 This is a schematic diagram of the water inlet mechanism and the housing of this utility model.

[0021] In the diagram: 1. Housing; 2. Cleaning pipe; 3. Cleaning nozzle; 4. Water-driven nozzle; 5. High-pressure water pump; 6. High-pressure pipeline; 7. High-pressure branch pipe; 8. High-pressure solenoid valve; 9. Chemical cartridge; 10. Dosing pump; 11. Inlet pipe; 12. Inlet electric valve; 13. Water collection tank; 14. Drain electric valve. Detailed Implementation

[0022] The present invention will now be described in further detail with reference to the accompanying drawings.

[0023] An intelligent fully automatic cleaning water tank device includes a tank body 1, which is arranged in a water supply system. It also includes a cleaning mechanism for forming an array-type cleaning structure, a water inlet mechanism for forming a chemical dosing water inlet structure, and a water collection mechanism for forming a submerged water collection structure. The cleaning mechanism is located inside the tank body 1, the water inlet mechanism is mounted on one side of the tank body 1, and the water collection mechanism is located at the bottom inner side of the tank body 1, corresponding to the cleaning mechanism. A schematic diagram of the overall structure of this utility model is shown below. Figure 1 As shown.

[0024] The cleaning mechanism includes a cleaning pipe 2, cleaning nozzles 3, and water-driven nozzles 4. The cleaning pipe 2 is horizontally installed inside the housing 1 and passes through the housing 1, being fixedly connected to it. Several cleaning nozzles 3 are arranged at intervals on the side of the cleaning pipe 2 and fixedly connected to it. These nozzles 3 are positioned opposite the side wall and top surface of the housing 1 and communicate with the cleaning pipe 2. Several water-driven nozzles 4 are arranged at intervals at the bottom of the cleaning pipe 2 and fixedly connected to it. The water-driven nozzles 4 are arranged at an angle relative to the cleaning pipe 2 and correspond to the bottom surface of the housing 1. The water-driven nozzles 4 are connected to the cleaning pipe 2. The cleaning mechanism comprises several groups, arranged in an array inside the housing 1 to form a pipe assembly structure. The cleaning mechanism, through the cooperation of cleaning pipes 2, cleaning nozzles 3, and water-driven nozzles 4, forms an array-type automatic cleaning device to automatically clean the four walls and top of the water tank, and to drive the wastewater to the collection mechanism and discharge it from the housing 1. The cleaning pipes 2 connect to the water inlet mechanism and provide mounting support for the cleaning nozzles 3 and water-driven nozzles 4. The cleaning nozzles 3 perform pulse cleaning on the four walls and top of the housing 1, and the water-driven nozzles 4 drive the wastewater to the collection mechanism and discharge it from the housing 1. A side view of this utility model is shown below. Figure 2 As shown.

[0025] The water inlet mechanism includes a high-pressure water pump 5, a high-pressure pipeline 6, high-pressure branch pipes 7, and a dosing assembly. The high-pressure water pump 5 is located on one side of the tank 1, and its inlet end is connected to the water supply system. The high-pressure pipeline 6 is located on one side of the water tank, and one end of it is connected to the outlet end of the high-pressure water pump 5. Several high-pressure branch pipes 7 are provided corresponding to several sets of cleaning mechanisms. Several high-pressure branch pipes 7 are arranged at intervals on the high-pressure pipeline 6, and their two ends are connected to the high-pressure pipeline 6 and the cleaning pipe 2, respectively. The dosing assembly is located on one side of the high-pressure water pump 5. The water inlet mechanism, through the cooperation of the high-pressure water pump 5, the high-pressure pipeline 6, the high-pressure branch pipes 7, and the dosing assembly, constitutes a water inlet with a dosing function. The structure allows for the addition of prepared disinfectant to the cleaning water while simultaneously supplying water to the cleaning structure, thus disinfecting and cleaning the tank 1. A high-pressure water pump 5 supplies water to a high-pressure pipeline 6, which in turn directs the cleaning water from the pump 5 into a high-pressure branch pipe 7. The branch pipe 7 then directs the cleaning water from the pipeline 6 into a cleaning pipe 2, which in turn supplies water to the cleaning nozzles 3 and water-driven nozzles 4. A dosing assembly stores the prepared disinfectant and adds it to the cleaning water as needed to meet the disinfection and cleaning requirements of the tank. A schematic diagram of the water inlet mechanism and its interaction with the tank 1 is shown below. Figure 3 As shown.

[0026] It also includes a high-pressure solenoid valve 8, of which there are several. The several high-pressure solenoid valves 8 are respectively installed on several high-pressure branch pipes 7 and fixedly connected to the corresponding high-pressure branch pipes 7. The high-pressure solenoid valves 8 are used to control the opening and closing of the pipeline between the high-pressure branch pipes 7 and the cleaning pipe 2.

[0027] The dosing assembly includes a cartridge 9 and a dosing pump 10. The cartridge 9 is located on one side of the high-pressure water pump 5. The dosing pump 10 is located between the cartridge 9 and the high-pressure pipeline 6, with its input end connected to the cartridge 9 via a pipeline and its output end connected to the high-pressure pipeline 6 via a pipeline. The dosing assembly, through the cooperation of the cartridge 9 and the dosing pump 10, stores the prepared disinfectant solution and adds the prepared disinfectant solution to the cleaning water according to the usage requirements to meet the disinfection and cleaning needs of the water tank. The cartridge 9 is used to store the prepared disinfectant solution, and the dosing pump 10 is used to add the prepared disinfectant solution to the cleaning water to meet the disinfection and cleaning needs of the water tank.

[0028] It also includes a water inlet pipe 11 and a water inlet electric valve 12. The water inlet pipe 11 is located on the upper side of the box 1, corresponding to the high-pressure water pump 5, and one end of the water inlet pipe 1 is connected to the box 1. The end of the water inlet pipe 11 away from the box 1 is connected to the water supply system. The water inlet electric valve 12 is located at the connection between the water inlet pipe 11 and the box 1 and is fixedly connected to the water inlet pipe 11. The water inlet end of the high-pressure water pump 5 is connected to the water inlet pipe 11 through a pipeline. The high-pressure water pump 5 is connected to the water supply system through the water inlet pipe 11. The water inlet pipe 11 is used to connect tap water to the box 1, and the water inlet electric valve 12 is used to control the opening and closing of the water inlet pipe 11.

[0029] The water collection mechanism includes a water collection tank 13 and a drain electric valve 14. The water collection tank 13 is located on one side of the bottom of the housing 1 and is positioned opposite to the water-driven nozzle 4. The drain electric valve 14 is located at the bottom of the water collection tank 13 and is connected to the outside through the drain electric valve 14. The water collection mechanism, through the cooperation of the water collection tank 13 and the drain electric valve 14, forms a water collection structure at the bottom of the housing 1 to collect and discharge cleaning wastewater. The water collection tank 13 is used to collect the cleaning wastewater brought in by the water-driven nozzle 4, and the drain electric valve 14 is used to discharge the cleaning wastewater in the water collection tank 13.

[0030] Among them, the pipeline corresponding to the water-driven nozzle 4 is equipped with a corresponding control solenoid valve.

[0031] Working principle:

[0032] When the water tank needs to be cleaned, close the inlet electric valve 12 and open the drain electric valve 14 to empty the water tank. After the water tank is emptied, start the high-pressure water pump 5 to supply water to the high-pressure pipeline 6. At the same time, control the high-pressure solenoid valve 8 to alternately and sequentially supply high-pressure water to the cleaning pipe 2. Pulse cleaning is performed on the four walls and top surface of the tank 1 through the cleaning nozzle 3. After the pulse cleaning of the four walls and top surface is completed, water is sequentially supplied to the water-driven nozzle 4 through the corresponding control solenoid valve. With the water collection tank 13 as the reference, water is supplied to the corresponding water-driven nozzle 4 from far to near. Since the water-driven nozzle 4 has a certain tilt angle, the cleaning sewage is driven to the water collection tank 13 after sequential water supply and discharged through the drain electric valve 14. Repeat the above cleaning process several times. During one of the times, start the dosing pump 10 to mix the disinfectant solution prepared in the chemical cartridge 9 into the cleaning water to disinfect and clean the water tank.

[0033] The beneficial effects of this utility model are that it is equipped with a cleaning mechanism, which performs pulse cleaning on the four walls and top surface of the water tank through an array-type cleaning structure, resulting in high cleaning efficiency. It can be cleaned regularly during periods of low water usage without affecting the user's normal usage needs and ensuring water supply quality. It is also equipped with a water inlet mechanism, which can be used in conjunction with a chemical dosing component to disinfect and clean the water tank, resulting in good cleaning effect. Finally, it is equipped with a water collection mechanism, which can be used in conjunction with an angled water-driven nozzle and a water collection tank to automatically discharge cleaning wastewater.

[0034] The above description details one embodiment of the present utility model, but it is merely a preferred embodiment and should not be construed as limiting the scope of the present utility model. All equivalent variations and improvements made within the scope of the present utility model application should still fall within the patent coverage of the present utility model.

Claims

1. An intelligent fully automatic cleaning water tank device, comprising a tank (1), said tank (1) being arranged in a water supply system, characterized in that, It also includes a cleaning mechanism for forming an array-type cleaning structure, a water inlet mechanism for forming a dosing-type water inlet structure, and a water collection mechanism for forming a submerged water collection structure. The cleaning mechanism is arranged inside the tank (1), the water inlet mechanism is assembled on one side of the tank (1), and the water collection mechanism is arranged at the bottom of the inner side of the tank (1) corresponding to the cleaning mechanism.

2. The intelligent fully automatic cleaning water tank device as described in claim 1, characterized in that, The cleaning mechanism includes a cleaning pipe (2), a cleaning nozzle (3), and a water-driven nozzle (4). The cleaning pipe (2) is horizontally arranged inside the housing (1) and passes through the housing (1) and is fixedly connected to the housing (1). There are several cleaning nozzles (3), which are spaced apart on the side of the cleaning pipe (2) and fixedly connected to the cleaning pipe (2). The cleaning nozzles (3) are arranged opposite to the side wall and top surface of the housing (1) and communicate with the cleaning pipe (2). There are several water-driven nozzles (4), which are spaced apart on the lower part of the cleaning pipe (2) and fixedly connected to the cleaning pipe (2).

3. The intelligent fully automatic cleaning water tank device as described in claim 2, characterized in that, The water-driven nozzle (4) is arranged at an angle relative to the cleaning pipe (2) and is positioned corresponding to the bottom surface of the housing (1). The water-driven nozzle (4) is connected to the cleaning pipe (2).

4. The intelligent fully automatic cleaning water tank device as described in claim 3, characterized in that, The cleaning mechanism is provided in several groups, and the several groups of cleaning mechanisms are arranged in an array inside the box (1) to form a pipe group structure.

5. The intelligent fully automatic cleaning water tank device as described in claim 4, characterized in that, The water inlet mechanism includes a high-pressure water pump (5), a high-pressure pipeline (6), a high-pressure branch pipe (7), and a dosing assembly. The high-pressure water pump (5) is located on one side of the tank (1) and its inlet end is connected to the water supply system. The high-pressure pipeline (6) is located on one side of the water tank and one end is connected to the outlet end of the high-pressure water pump (5). The high-pressure branch pipe (7) is provided for several sets of cleaning mechanisms. The high-pressure branch pipe (7) is arranged at intervals on the high-pressure pipeline (6) and its two ends are respectively connected to the high-pressure pipeline (6) and the cleaning pipe (2). The dosing assembly is arranged on one side of the high-pressure water pump (5).

6. The intelligent fully automatic cleaning water tank device as described in claim 5, characterized in that, It also includes a high-pressure solenoid valve (8), and there are several high-pressure solenoid valves (8). The several high-pressure solenoid valves (8) are respectively installed on several high-pressure branch pipes (7) and are fixedly connected to the corresponding high-pressure branch pipes (7).

7. The intelligent fully automatic cleaning water tank device as described in claim 6, characterized in that, The dosing assembly includes a dosing cartridge (9) and a dosing pump (10). The dosing cartridge (9) is located on one side of the high-pressure water pump (5). The dosing pump (10) is located between the dosing cartridge (9) and the high-pressure pipeline (6), and its input end is connected to the dosing cartridge (9) through a pipeline. The output end of the dosing pump (10) is connected to the high-pressure pipeline (6) through a pipeline.

8. The intelligent fully automatic cleaning water tank device as described in claim 7, characterized in that, It also includes a water inlet pipe (11) and a water inlet electric valve (12). The water inlet pipe (11) is located on the upper side of the box (1) corresponding to the high-pressure water pump (5) and one end of it is connected to the box (1). The end of the water inlet pipe (11) away from the box (1) is connected to the water supply system. The water inlet electric valve (12) is located at the connection between the water inlet pipe (11) and the box (1) and is fixedly connected to the water inlet pipe (11).

9. The intelligent fully automatic cleaning water tank device as described in claim 8, characterized in that, The inlet end of the high-pressure water pump (5) is connected to the inlet pipe (11) through a pipeline, and the high-pressure water pump (5) is connected to the water supply system through the inlet pipe (11).

10. The intelligent fully automatic cleaning water tank device as described in claim 9, characterized in that, The water collection mechanism includes a water collection tank (13) and a drain electric valve (14). The water collection tank (13) is located on one side of the bottom of the housing (1). The water collection tank (13) is opposite to the water-driven nozzle (4). The drain electric valve (14) is located at the bottom of the water collection tank (13). The water collection tank (13) is connected to the outside through the drain electric valve (14).