Automatic water feeding electrolysis structure and water purifying device

By designing an automatic water electrolysis structure, including a shell assembly, a water inlet assembly, a pneumatic assembly, and an electrical control assembly, the problem of time-consuming water electrolysis was solved, achieving a fast and stable supply of electrolyzed water and improving electrolysis efficiency and water purification effect.

CN223688158UActive Publication Date: 2025-12-19GUANGDONG SHUNDE QINGYU ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202423289747.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-19
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing electrolysis technologies lack automatic water supply mechanisms, resulting in lengthy electrolysis times and failing to meet the demand for rapid water acquisition, especially during peak water usage periods or when large quantities of electrolyzed water are urgently needed, causing delays.

Method used

An automatic water electrolysis structure is designed, including a shell assembly, a water inlet assembly, a pneumatic assembly, an electrical control assembly, and a detection assembly. By intelligently detecting the water level and automatically controlling the water inlet, the electrolysis assembly is ensured to work continuously. The pneumatic assembly is used to promote the diffusion of electrolyzed water, thereby realizing an automated and intelligent supply of electrolyzed water.

Benefits of technology

It achieves a fast, stable, and automated supply of electrolyzed water, avoids water waste, ensures equipment safety, improves electrolysis efficiency and water purification effect, and meets the needs of peak water usage periods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an automatic water feeding electrolysis structure and a water purifying device, and belongs to the field of purification. An automatic water feeding electrolysis structure comprises a shell assembly which is provided with a containing cavity, a water outlet, a flow guide opening and an electrolysis cavity; the electrolysis assembly is arranged on the shell assembly and located in the electrolysis cavity; the water inlet assembly is arranged on the shell assembly and located in the containing cavity, the water inlet assembly, the water outlet, the flow guide opening and the electrolysis cavity are sequentially communicated, and the water inlet assembly is used for being communicated with an external water source; the pneumatic assembly is arranged on the shell assembly, part of the pneumatic assembly is located in the containing cavity, and the other part of the pneumatic assembly is located in the electrolysis cavity; and the electric control assembly is electrically connected with the electrolysis assembly, the water inlet assembly and the pneumatic assembly. According to the automatic water feeding electrolysis structure, stable water source supply can be ensured through the water inlet assembly, electrolysis does not need to be conducted after water in a water tank is added to a certain degree, and the electrolysis efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the purification field especially, is involved in an automatic water electrolysis structure and water purifier. BACKGROUND

[0002] In the prior art, the electrolysis structure is installed on the tank wall of the water tank, lacks the automatic water feeding structure, can only wait for water to slowly inject the water tank and reach a certain water level to carry out electrolysis, is time-consuming and long, greatly reduces the work efficiency, cannot satisfy the demand of fast obtaining electrolytic water, and when the water peak period or the great electrolytic water is urgently needed, will cause serious delay. UTILITY MODEL CONTENTS

[0003] Therefore, it is necessary to provide an automatic water electrolysis structure and water purifier aiming at the problem of lacking the automatic water feeding structure of the electrolysis structure.

[0004] An automatic water electrolysis structure, the automatic water electrolyysis structure includes: shell assembly, the shell assembly is equipped with containing cavity, water outlet, flow guide port and electrolysis cavity;Electrolysis assembly, the electrolysis assembly is arranged on the shell assembly and is located in the electrolysis cavity;Water inlet assembly, the water inlet assembly is arranged on the shell assembly and is located in the containing cavity, the water inlet assembly, the water outlet, the flow guide port and the electrolysis cavity are sequentially communicated, and the water inlet assembly is used for communicating with external water source;Pneumatic assembly, the pneumatic assembly is arranged on the shell assembly, part of the pneumatic assembly is located in the containing cavity, and the rest of the pneumatic assembly is located in the electrolysis cavity;Electrical control assembly, the electrical control assembly is arranged on the shell assembly and is located in the containing cavity, and the electrical control assembly is electrically connected with the electrolysis assembly, the water inlet assembly and the pneumatic assembly.

[0005] The above discloses an automatic water feeding electrolysis structure, from the overall structure, the shell assembly as the basic framework, scientific planning of the containing cavity, water outlet, diversion port and electrolysis cavity, each component is accurately positioned in the shell according to its functional characteristics, well ordered. This compact layout not only maximizes the use of space, reduces additional land occupation, but also has high flexibility when installing, can meet various use scenarios, reduces installation difficulty and adaptation cost. Secondly, the electric control assembly can accurately and accurately control the water feeding assembly to start the water suction program, the whole process is completed automatically, completely get rid of the cumbersome manual water adding step, ensure stable water supply anytime and anywhere, without waiting for the water in the sink to reach a certain degree before electrolysis. The electrolysis assembly undertakes the heavy task of water purification, uses electrolysis technology to deeply disinfect and sterilize the inhaled water, can strongly remove common bacteria such as escherichia coli, staphylococcus aureus and various microorganisms in water, and comprehensively guard the water safety line, so that daily washing, dish washing, food preliminary processing and other links are far away from bacterial pollution, and the user can use every drop of water with peace of mind. The intelligent detection assembly is used for water level monitoring. Once the water level reaches the preset standard, the signal can be accurately transmitted in an instant, and the water feeding assembly is stopped in time, which completely eliminates the risk of water overflow caused by continuous water entering from the water inlet, saves water, avoids unnecessary waste of water resources, and effectively prevents a series of problems such as equipment short circuit and surrounding environment damp caused by overflow. Moreover, even if the water feeding stops, the electrolysis work of the electrolysis assembly is not interrupted, and with the help of the hole specially opened in the sink wall, it can still continuously deliver water to the electrolysis cavity, and long-term maintain the water quality in a clean and sterile state. At the same time, the pneumatic assembly continues to operate, stably generates bubbles, orderly pushes the electrolyzed water to diffuse around, ensures that each area in the sink can be evenly covered with disinfectant water, and comprehensively improves the breadth and depth of disinfection, providing solid support for creating a healthy and sanitary water environment.

[0006] In one of the embodiments, the water inlet assembly comprises a water inlet pipe, a solenoid valve and a water outlet pipe, the solenoid valve is arranged on the shell assembly and located in the containing cavity, the water inlet pipe is arranged on the solenoid valve and penetrates the containing cavity, the water outlet pipe is arranged on the solenoid valve, and the water inlet pipe, the solenoid valve, the water outlet pipe and the water outlet port are sequentially communicated. By precisely arranging the solenoid valve in the containing cavity of the shell assembly, on the one hand, it serves as the key hub of water flow control and can quickly and accurately respond to the instructions of the electric control assembly to realize automatic opening and closing, greatly improving the accuracy and timeliness of control and effectively avoiding the misentry or excessive entry of water, on the other hand, it can also protect the solenoid valve from interference and damage from external factors. Secondly, the water inlet pipe is cleverly penetrated in the containing cavity, which can stably and efficiently introduce the water source from the water inlet port, and the reasonable pipe diameter design can ensure that the user can easily connect the external water pipe, so that sufficient water flow is input into the electrolysis cavity to ensure the continuous and stable operation of the equipment. The water outlet pipe connects the solenoid valve and the water outlet port, making the water flow path clear and smooth, reducing water flow resistance, allowing water to flow quickly and smoothly to the electrolysis link, improving overall operating efficiency, laying a foundation for subsequent electrolysis sterilization and disinfection processes, and ensuring efficient and orderly operation of the entire automatic water feeding electrolysis structure.

[0007] In one of the embodiments, the water outlet pipe comprises a first water outlet pipe, a water passing pipe and a second water outlet pipe, the water passing pipe is arranged on the solenoid valve, and the first water outlet pipe and the second water outlet pipe are arranged on the water passing pipe, the number of water outlet ports is multiple, and the first water outlet pipe and the second water outlet pipe are respectively communicated with multiple water outlet ports. By subdividing the water outlet pipe into the first water outlet pipe, the water passing pipe and the second water outlet pipe, the structure is clear. The water passing pipe directly connects the solenoid valve and can quickly receive and disperse water flow to ensure the continuity of the subsequent electrolysis process. The first water outlet pipe and the second water outlet pipe are respectively communicated with multiple water outlet ports, on the one hand, the layout of multiple water outlet ports allows water to flow into the subsequent electrolysis link in multiple points, greatly expanding the water flow coverage and allowing water to flow more evenly to the electrolysis cavity, avoiding the influence of local water flow on electrolysis effect, and ensuring the consistency of water quality treatment in the electrolysis process. On the other hand, this shunt design effectively reduces the water flow load of a single pipe, reduces the wear of the pipe caused by excessive water flow, prolongs the service life of the pipe, and at the same time, even if a water outlet port or a branch pipe has a slight blockage or other minor faults, other branches can still maintain basic water flow supply to ensure the stability and continuity of the entire system operation.

[0008] In one of the embodiments, the pneumatic assembly comprises a pneumatic pump, a pneumatic pipeline, a pneumatic check valve and a pneumatic element, the pneumatic pump is arranged on the housing assembly, the pneumatic pipeline is arranged on the pneumatic pump, the check valve is arranged on the pneumatic pipeline, and the pneumatic element is arranged on the pneumatic pipeline and located in the electrolysis cavity. By arranging the pneumatic pump on the housing assembly, it can output strong airflow stably, provide reliable power source for the whole pneumatic process, and ensure smooth operation of the subsequent link. The pneumatic pipeline connects each component and builds an efficient airflow transmission channel, and reasonable pipe diameter and layout design make the airflow loss very small during transmission, and the power is delivered to the pneumatic element quickly and accurately. The check valve only allows airflow to flow in one direction, effectively prevents chaos caused by reverse flow of gas, ensures stable system pressure, avoids damage to equipment caused by abnormal pressure, ensures the safety and stability of operation, and the check valve can also prevent water in the tank from flowing back to the pneumatic pump, effectively protecting the stability and safety of the pneumatic process. After receiving stable airflow, the pneumatic element can regularly generate bubbles, which not only can evenly spread the electrolyzed water to the surrounding, improve the distribution range of the disinfectant water, and strengthen the sterilization and disinfection effect, but also can agitate the water in the electrolysis cavity, promote the electrolysis reaction to be more sufficient, and further optimize the water purification efficiency.

[0009] In one of the embodiments, the detection assembly is arranged on the housing assembly, and the electric control assembly is electrically connected with the detection assembly. By arranging the detection assembly on the housing assembly, the height position of the water level is detected by the detection assembly, which can effectively prevent water overflow. When the water level rises to the preset warning height, the detection assembly quickly feeds back a signal, and the electric control assembly controls the water inlet assembly to stop water inlet immediately, so as to avoid water overflow due to excessive water inlet, damage to surrounding facilities, and ensure the safety of the use environment. At the same time, reasonable control of the water level height can optimize the electrolysis effect. Different water levels will affect the electrolysis efficiency and the degree of water electrolysis. The detection assembly ensures that the water level is maintained in the appropriate interval, so that the electrolysis assembly always works in the best working condition, improves the quality of sterilization and disinfection, and stably produces clean and sterile electrolytic water.

[0010] In one of the embodiments, the electrolysis assembly comprises electrolysis sheets and fixing members, the number of the electrolysis sheets is multiple, the number of the fixing members is multiple, the multiple fixing members are arranged on the shell assembly, and the multiple fixing members fix the multiple electrolysis sheets in the electrolysis cavity. By arranging multiple electrolysis sheets in the electrolysis cavity, the electrolysis efficiency is greatly improved. Compared with a single electrolysis sheet, multiple electrolysis sheets can work synchronously, increase the contact area with water, and make harmful substances such as bacteria and impurities in water be decomposed and removed in a shorter time, thereby effectively guaranteeing the efficiency of water purification and meeting the demand for rapid sterilization and disinfection in a continuous water use scenario. At the same time, the existence of the interval makes the water flow fully flow through each electrolysis sheet when flowing in the electrolysis cavity, ensures that the water in each area can be fully electrolyzed, eliminates electrolysis dead angles, and makes the sterilization and disinfection effect more comprehensive and complete, thereby laying a solid foundation for outputting high-quality purified water. The stable support of the fixing members on the electrolysis sheets can reduce the displacement risk of the electrolysis sheets under the impact of water flow and the vibration of equipment operation, and maintain the accuracy of the electrolysis structure. Moreover, when the electrolysis sheets need to be maintained or replaced, this fixing method makes the operation more convenient, reduces the maintenance difficulty and cost, guarantees the long-term stable operation of the equipment, and continuously provides reliable electrolysis purification service for users.

[0011] In one of the embodiments, the shell assembly comprises a mounting bottom plate and a mounting rear shell, the mounting bottom plate is provided with multiple fixing holes, the mounting bottom plate is arranged on an external structure through the multiple fixing holes, the mounting rear shell is arranged on the mounting bottom plate, and the mounting rear shell and the mounting bottom plate enclose the accommodation cavity. The mounting bottom plate is provided with the water outlets, the flow guide openings, and the electrolysis cavity, the number of the water outlets and the flow guide openings is multiple, and the multiple water outlets and the multiple flow guide openings are arranged one by one in a corresponding manner. By arranging the mounting bottom plate in the water tank outside through the multiple fixing holes, the installation of the equipment in various scenes is facilitated, and the stable operation of the system is guaranteed. The mounting rear shell is arranged on the mounting bottom plate, and the mounting bottom plate and the mounting rear shell enclose the accommodation cavity, thereby effectively protecting the internal components from the external environment. The flow guide openings are a highlight of the entire shell assembly, the multiple water outlets and the multiple flow guide openings are arranged one by one in a corresponding manner, thereby effectively blocking the overflow of water, gathering and guiding all the water to the electrolysis cavity, and supplying stable and sufficient water source for the electrolysis reaction, so that the electrolysis assembly is always in an ideal working state, and the electrolysis process is efficiently and uninterruptedly carried out. Stable water supply makes the electrolysis process continuous and efficient, ensures the output of clean and sterile electrolytic water, and significantly improves the operation efficiency of the entire automatic water feeding electrolysis structure. At the same time, the flow guide openings can also flush the silt brought in by external water, ensure that the electrolysis assembly is maintained in a non-clogged state, and ensure the efficient performance of the electrolysis process.

[0012] In one of the embodiments, the installation base plate comprises a base plate body, a plurality of supports and a plurality of water outlet components, the base plate body is arranged on an external structure, the plurality of supports are arranged on the base plate body, the water inlet assembly, the pneumatic assembly and the electric control assembly are arranged on the plurality of supports, the plurality of water outlet components are arranged on the base plate body, the water inlet assembly is arranged on the plurality of water outlet components, and the water outlet components are communicated with the water outlet. By arranging the base plate body on the external structure, the stable fit ensures that the entire device is firmly rooted, regardless of the plane on which it is placed, it can maintain stability and is not easy to shake or tilt, providing a solid foundation for the stable operation of subsequent components. The water inlet assembly, pneumatic assembly and electric control assembly are elevated by the plurality of supports, which are spaced apart from the base plate body, effectively avoiding the erosion and short circuit of these precision components caused by possible water accumulation and dust accumulation, prolonging the service life of the components. On the other hand, this elevated structure optimizes the layout of the components, facilitates the connection of lines and air circulation between the components, reduces heat accumulation, improves heat dissipation efficiency, keeps the components in an appropriate working environment at all times, and ensures the stability and reliability of operation. The water inlet assembly is arranged on the plurality of water outlet components, which provides a direct and stable support point for the water inlet assembly. Compared with being directly installed on the base plate body, this arrangement makes the connection between the water inlet assembly and the entire housing assembly more secure and precise, and is also easy to disassemble and assemble. At the same time, it can also allow the water in the water inlet assembly to be smoothly transported from the water outlet components to the water outlet, ensuring the connectivity of the entire waterway.

[0013] In one of the embodiments, the electric control assembly comprises a connection wire and a control circuit board, the control circuit board is arranged on the housing assembly, and the connection wire is arranged on the control circuit board and used for electrical connection with an external device. By installing the control circuit board on the housing assembly, precise control is provided for the operation of the entire device. Its internal program logic is rigorous and can control the start-stop timing and working state of the water inlet assembly, electrolysis assembly and pneumatic assembly in an orderly manner according to preset instructions, ensuring the cooperation and efficiency of each link. The connection wire can ensure the timeliness and accuracy of signal transmission, allowing the instructions of the control circuit board to reach each component instantly, avoiding delay and improving the response speed of the device. The connection wire is electrically connected with the external control panel, which can feedback the running state of the device to the user in real time, such as the current water level, electrolysis progress and working condition of the pneumatic assembly, etc. At the same time, the user can easily issue instructions to the automatic water feeding and electrolysis structure through the control panel. At the same time, the water-resistant electronic components of the control circuit board are oriented outward, ensuring that the electronic components are not disturbed even if the containing cavity is filled with water.

[0014] In one of the embodiments, the disinfection devices are provided in multiple numbers on the shell assembly and located in the electrolysis cavity. By providing multiple disinfection devices on the shell assembly, they can work in cooperation with the electrolysis assembly, further enhancing the sterilization and disinfection efficiency. The ultraviolet rays can penetrate deep into the water body and precisely attack stubborn bacteria and microorganisms such as Bacillus spores that are difficult to completely eliminate by electrolysis, greatly expanding the sterilization spectrum and making water purification more comprehensive and thorough, ensuring high standards of water quality. At the same time, the ultraviolet disinfection process does not require additional chemical agents, which not only avoids chemical residue pollution of the water body but also reduces subsequent processing costs, providing users with a safer, more convenient, and efficient water purification solution and continuously protecting water health.

[0015] The second aspect of the present application discloses a water purification device, comprising: the automatic water feeding electrolysis structure described above; a control module electrically connected with the automatic water feeding electrolysis structure; and a power supply electrically connected with the control module.

[0016] The second aspect discloses a water purification device. By electrically connecting the control module with the automatic water feeding electrolysis structure and electrically connecting the power supply with the control module, on the one hand, the control module can accurately and stably distribute power to each component in the automatic water feeding electrolysis structure after receiving power supply from the power supply, ensuring that the water inlet assembly, the electrolysis assembly, the pneumatic assembly, and the disinfection device obtain appropriate working voltage, ensuring their stable operation and avoiding equipment failure or performance decline caused by unstable voltage. On the other hand, through electrical connection, the control module can orderly control the working process of each component according to the preset program. It can accurately control the water absorption period and water volume of the water inlet assembly, control the electrolysis time and intensity of the electrolysis assembly, and also can start the pneumatic assembly as needed to diffuse electrolytic water, and manage the start and stop of the disinfection device, so that each link of the automatic water feeding electrolysis structure closely cooperates and efficiently collaborates, realizes automatic and intelligent operation, and meets the needs of users for high-quality purified water. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 FIG. 1 is a first perspective view of the automatic water feeding electrolysis structure;

[0018] Figure 2 FIG. 2 is a second perspective view of the automatic water feeding electrolysis structure;

[0019] Figure 3 FIG. 3 is a partial enlarged view of region A of FIG. 1; Figure 2

[0020] Figure 4 FIG. 4 is a sectional view of the automatic water feeding electrolysis structure;

[0021] Figure 5 FIG. 5 is a perspective view of the shell assembly; ​

[0022] Figure 6 Figure 3 is a third perspective view of the automatic water feeding electrolysis structure;

[0023] Figure 7 Figure 4 is a perspective view of the water feeding assembly;

[0024] Figure 8 Figure 5 is a perspective view of the pneumatic assembly;

[0025] Figure 9 Figure 6 is a fourth perspective view of the automatic water feeding electrolysis structure;

[0026] Figure 10 Figure 7 is a perspective view of the electric control assembly.

[0027] In the drawings, the correspondence between the reference signs and the component names is as follows:

[0028] 1 housing assembly, 11 mounting bottom plate, 111 bottom plate body, 112 support piece, 113 water outlet piece, 12 mounting rear shell, 101 containing cavity, 102 water outlet, 103 flow guide opening, 104 electrolysis cavity, 105 fixing hole;

[0029] 2 electrolysis assembly, 21 electrolysis sheet, 22 fixing piece;

[0030] 3 water feeding assembly, 31 water feeding pipeline, 32 electromagnetic valve, 33 water outlet pipeline, 331 first water outlet pipeline, 332 water passing pipeline, 333 second water outlet pipeline, 301 water inlet;

[0031] 4 pneumatic assembly, 41 pneumatic pump, 42 pneumatic pipeline, 43 one-way valve, 44 pneumatic piece;

[0032] 5 detection assembly;

[0033] 6 electric control assembly, 61 connecting wire, 62 control circuit board;

[0034] 7 disinfection device. DETAILED DESCRIPTION

[0035] In order to enable the above objects, features and advantages of the present application to be more clearly understood, the following will further describe the present application with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0036] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can be practiced in other ways different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0037] The automatic water electrolysis structure and water purification device of this utility model are described below with reference to the accompanying drawings.

[0038] Example 1

[0039] like Figures 1 to 10 As shown, this embodiment discloses an automatic water supply electrolysis structure, characterized in that the automatic water supply electrolysis structure includes: a shell assembly 1, which has a receiving cavity 101, a water outlet 102, a guide port 103, and an electrolysis chamber 104; an electrolysis assembly 2, which is disposed on the shell assembly 1 and located in the electrolysis chamber 104; a water inlet assembly 3, which is disposed on the shell assembly 1 and located in the receiving cavity 101, and the water inlet assembly 3, the water outlet 102, the guide port 103, and the electrolysis chamber 104 are sequentially connected, and the water inlet assembly 3 is used to connect with an external water source; a pneumatic assembly 4, which is disposed on the shell assembly 1, with a portion of the pneumatic assembly 4 located in the receiving cavity 101 and the remaining portion of the pneumatic assembly 4 located in the electrolysis chamber 104; and an electrical control assembly 6, which is disposed on the shell assembly 1 and located in the receiving cavity 101, and is electrically connected to the electrolysis assembly 2, the water inlet assembly 3, and the pneumatic assembly 4.

[0040] The application discloses an automatic water feeding electrolysis structure. From the overall structure, the shell assembly 1 serves as the basic framework, and the accommodation cavity 101, the water outlet 102, the flow guide opening 103 and the electrolysis cavity 104 are scientifically planned. Each component is accurately positioned in the shell according to its functional characteristics, and is orderly. This compact layout not only maximizes the use of space and reduces additional land occupation, but also has high flexibility during installation, can meet various use scenarios, and reduces installation difficulty and adaptation cost. Secondly, the electric control assembly 6 can accurately and accurately control the water feeding assembly 3 to start the water suction program, and the whole process is completed automatically, completely eliminating the cumbersome manual water feeding step, ensuring stable water supply at any time and anywhere, and not having to wait for the water in the sink to reach a certain degree before electrolysis. The electrolysis assembly 2 undertakes the heavy task of water purification, uses electrolysis technology to deeply disinfect and sterilize the inhaled water, can strongly remove common bacteria such as escherichia coli, staphylococcus aureus and various microorganisms in water, and comprehensively guards the water safety line, so that daily washing, dish washing, food preliminary processing and other links are far away from bacterial pollution, and users can use every drop of water with peace of mind. The water level is monitored by the intelligent detection assembly. Once the water level reaches the preset standard, the signal can be accurately transmitted in an instant, and the water feeding assembly 3 is stopped in time, so as to eliminate the overflow hidden danger caused by continuous water inflow from the water inlet 301 from the root, save water, avoid unnecessary water waste, and effectively prevent a series of problems such as equipment short circuit and surrounding environment dampness caused by overflow. Moreover, even if the water feeding stops, the electrolysis work of the electrolysis assembly 2 is not interrupted, and by means of the holes specially opened in the sink wall, the electrolysis cavity 104 can still continuously convey water into the sink, and the water quality can be maintained in a clean and sterile state for a long time. At the same time, the pneumatic assembly 4 continuously operates, stably generates bubbles, orderly pushes the electrolyzed water to diffuse to all directions, ensures that each area in the sink can be evenly covered with disinfectant water, and comprehensively improves the breadth and depth of disinfection, and provides solid support for creating a healthy and sanitary water environment.

[0041] As Figure 2 , Figure 4 and Figure 7As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the water inlet assembly 3 comprises a water inlet pipe 31, a solenoid valve 32 and a water outlet pipe 33, the solenoid valve 32 is arranged on the shell assembly 1 and located in the containing cavity 101, the water inlet pipe 31 is arranged on the solenoid valve 32 and penetrates the containing cavity 101, the water outlet pipe 33 is arranged on the solenoid valve 32, and the water inlet pipe 31, the solenoid valve 32, the water outlet pipe 33 and the water outlet 102 are sequentially communicated. By precisely arranging the solenoid valve 32 in the containing cavity 101 of the shell assembly 1, on the one hand, as the key hub of water flow control, it can quickly and accurately respond according to the instructions of the electric control assembly 6, realize automatic opening and closing, greatly improve the accuracy and timeliness of control, effectively avoid the misentry or excessive entry of water, on the other hand, it can also protect the solenoid valve 32 from interference and damage from external factors. Secondly, the water inlet pipe 31 is cleverly penetrated in the containing cavity 101, which can stably and efficiently introduce the water source introduced from the outside from the water inlet 301, and the reasonable pipe diameter design can ensure that the user can easily connect the external water pipe, so that sufficient water flow is input to the electrolysis cavity 104, and the continuous and stable operation of the equipment is ensured. And the water outlet pipe 33 connects the solenoid valve 32 and the water outlet 102, so that the water flow path is clear and smooth, the water flow resistance is reduced, the water can flow quickly and smoothly to the electrolysis link, the overall operation efficiency is improved, the foundation for the subsequent electrolysis sterilization and disinfection process is laid, and the efficient and orderly operation of the whole automatic water feeding electrolysis structure is ensured.

[0042] As Figure 2 and Figure 7As shown, in addition to the features of the above embodiments, the present embodiment is further limited that: the water outlet pipeline 33 includes a first water outlet pipeline 331, a water passing pipeline 332 and a second water outlet pipeline 333, the water passing pipeline 332 is arranged on the electromagnetic valve 32, the first water outlet pipeline 331 and the second water outlet pipeline 333 are arranged on the water passing pipeline 332, and the number of the water outlets 102 is multiple, and the first water outlet pipeline 331 and the second water outlet pipeline 333 are respectively communicated with the multiple water outlets 102. By subdividing the water outlet pipeline into the first water outlet pipeline 331, the water passing pipeline 332 and the second water outlet pipeline 333, the structural hierarchy is clear. The water passing pipeline 332 directly connects the electromagnetic valve 32, can quickly receive and disperse the water flow, and ensures the continuity of the subsequent electrolysis process. The first water outlet pipeline 331 and the second water outlet pipeline 333 are respectively communicated with the multiple water outlets 102, on the one hand, the layout of the multiple water outlets 102 enables the water to be dispersed into the subsequent electrolysis link in multiple points, greatly broadens the water flow coverage, makes the water flow more evenly to the electrolysis cavity 104, avoids the influence of local water flow on the electrolysis effect, and ensures the consistency of water quality treatment in the electrolysis process. On the other hand, the shunt design effectively reduces the water flow load of a single pipeline, reduces the wear of the pipeline caused by excessive water flow, prolongs the service life of the pipeline, and at the same time, even if a slight blockage or other small faults occur in a water outlet or a branch pipeline, other branches can still maintain basic water flow supply, ensuring the stability and sustainability of the entire system operation.

[0043] As shown in Figure 1 and Figure 8 As shown, in addition to the features of the above embodiments, the present embodiment is further limited that: the pneumatic assembly 4 includes a pneumatic pump 41, a pneumatic pipeline 42, a pneumatic one-way valve 43 and a pneumatic element 44, the pneumatic pump 41 is arranged on the shell assembly 1, the pneumatic pipeline 42 is arranged on the pneumatic pump 41, the one-way valve 43 is arranged on the pneumatic pipeline 42, and the pneumatic element 44 is arranged on the pneumatic pipeline 42 and located in the electrolysis cavity 104. By arranging the pneumatic pump 41 on the shell assembly 1, it can stably output strong airflow to provide a reliable power source for the entire pneumatic process, ensuring smooth operation of the subsequent link. The pneumatic pipeline 42 connects each component to build an efficient airflow transmission channel, and the reasonable pipe diameter and layout design make the airflow loss very small in the transmission process, quickly and accurately delivering power to the pneumatic element 44. The one-way valve 43 only allows airflow to flow in one direction, effectively preventing chaos caused by reverse flow of gas, ensuring stable system pressure, avoiding damage to the equipment caused by abnormal gas pressure, and ensuring the safety and stability of operation. The one-way valve 43 can also prevent water in the water tank from flowing back to the pneumatic pump 41, effectively protecting the stability and safety of the pneumatic process. After receiving stable airflow, the pneumatic element 44 can regularly generate bubbles, which not only uniformly diffuse the electrolyzed water to the surrounding to improve the distribution range of the disinfectant water and strengthen the sterilization and disinfection effect, but also agitate the water body in the electrolysis cavity to promote the electrolysis reaction to be more sufficient, further optimizing the water quality purification efficiency.

[0044] As Figure 1 and Figure 4 shown, in addition to the features of the above embodiments, the present embodiment is further limited: further comprising a detection assembly 5, the detection assembly 5 is arranged on the shell assembly 1, and the electric control assembly 6 is electrically connected with the detection assembly 5. By arranging the detection assembly 5 on the shell assembly 1, the height position of the water level is detected by the detection assembly 5, which can effectively prevent the overflow of water. When the water level rises to the preset warning height, the detection assembly 5 quickly feeds back the signal, and the electric control assembly 6 immediately controls the water inlet assembly 3 to stop water inflow, so as to avoid the damage of surrounding facilities caused by excessive water inflow, and to protect the safety of the use environment. At the same time, reasonable control of the water level height can optimize the electrolysis effect. Different water levels will affect the electrolysis efficiency and the degree of water electrolysis. The detection assembly 5 ensures that the water level is maintained in the appropriate interval, so that the electrolysis assembly 2 always works in the best working condition, improves the quality of sterilization and disinfection, and stably produces clean and sterile electrolytic water.

[0045] As Figure 1 and Figure 6 shown, in addition to the features of the above embodiments, the present embodiment is further limited: the electrolysis assembly 2 comprises an electrolysis sheet 21 and a fixing piece 22, the number of electrolysis sheets 21 is multiple, the number of fixing pieces 22 is multiple, and the multiple fixing pieces 22 are arranged on the shell assembly 1, and the multiple fixing pieces 22 fix the multiple electrolysis sheets 21 in the electrolysis cavity 104. By arranging multiple electrolysis sheets 21 in the electrolysis cavity 104, the electrolysis efficiency is greatly improved. Compared with a single electrolysis sheet 21, multiple electrolysis sheets 21 can work synchronously, increase the contact area with water, and make harmful substances such as bacteria and impurities in water be decomposed and removed in a shorter time, which effectively guarantees the efficiency of water purification and meets the demand for rapid sterilization and disinfection in continuous water use scenarios. At the same time, the existence of the interval makes the water flow fully flow through each electrolysis sheet 21 when flowing in the electrolysis cavity 104, ensuring that the water in each area can be fully electrolyzed, eliminating electrolysis dead angles, and making the sterilization and disinfection effect more comprehensive and thorough, laying a solid foundation for outputting high-quality purified water. The stable support of the fixing piece 22 to the electrolysis sheet 21 can reduce the displacement risk of the electrolysis sheet 21 under the impact of water flow and the vibration of equipment operation, and maintain the accuracy of the electrolysis structure. Moreover, when the electrolysis sheet 21 needs to be maintained or replaced, this fixing method makes the operation more convenient, reduces the maintenance difficulty and cost, guarantees the long-term stable operation of the equipment, and continuously provides reliable electrolysis purification service for users.

[0046] As Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the shell assembly 1 comprises a mounting bottom plate 11 and a mounting back shell 12, the mounting bottom plate 11 is provided with a plurality of fixing holes 105, the mounting bottom plate 11 is arranged on the external structure through the plurality of fixing holes 105, the mounting back shell 12 is arranged on the mounting bottom plate 11, the mounting back shell 12 and the mounting bottom plate 11 enclose to form the containing cavity 101, the mounting bottom plate 11 is provided with a water outlet 102, a flow guide port 103 and an electrolysis cavity 104, the number of the water outlet 102 and the flow guide port 103 is multiple, and the plurality of water outlets 102 and the plurality of flow guide ports 103 are arranged one by one. By using the plurality of fixing holes 105 to install the mounting bottom plate 11 in the sink outside, the installation of the equipment in various scenes is facilitated, and the stable operation of the system is ensured. The mounting back shell 12 is arranged on the mounting bottom plate 11 and the two enclose to form the containing cavity 101, which effectively protects the internal components from the external environment. The flow guide port 103 is a highlight of the entire shell assembly 1, the plurality of water outlets 102 and the flow guide port 103 are arranged one by one, effectively blocking the overflow of water flow, and guiding all the water into the electrolysis cavity 104, which supplies stable and abundant water source for electrolysis reaction, so that the electrolysis assembly 2 is always in an ideal working state, ensuring the efficient and uninterrupted electrolysis process. Stable water supply makes the electrolysis process continuous and efficient, ensures the output of clean and sterile electrolytic water, and significantly improves the operation efficiency of the entire automatic water feeding electrolysis structure. At the same time, the flow guide port 103 can also flush the silt brought by the external water, ensure that the electrolysis assembly 2 maintains a non-clogged state, and ensure the efficient electrolysis process.

[0047] As Figure 1 , Figure 5 , Figure 7 , Figure 8 and Figure 10As shown, in addition to the features of the above embodiments, the present embodiment is further limited in that: the mounting bottom plate 11 comprises a bottom plate body 111, a plurality of support pieces 112 and a plurality of water outlet pieces 113, the bottom plate body 111 is configured to be arranged on an external structure, the plurality of support pieces 112 are arranged on the bottom plate body 111, the water inlet assembly 3, the pneumatic assembly 4 and the electric control assembly 6 are arranged on the plurality of support pieces 112, the plurality of water outlet pieces 113 are arranged on the bottom plate body 111, the water inlet assembly 3 is arranged on the plurality of water outlet pieces 113, and the water outlet pieces 113 are in communication with the water outlet 102. By arranging the bottom plate body 111 on the external structure, its stable fit ensures that the entire device has a solid foundation, and can maintain stability regardless of the plane on which it is placed, and is not easy to shake or tilt, providing a solid premise for the stable operation of subsequent components. The plurality of support pieces 112 elevate the water inlet assembly 3, the pneumatic assembly 4 and the electric control assembly 6, so that they have a certain interval from the bottom plate body 111, effectively avoiding damage such as erosion and short circuit to these precision components due to possible water accumulation and dust accumulation, prolonging the service life of the components; on the other hand, this elevated structure optimizes the layout of the components, facilitates the connection of lines and air circulation between the components, reduces heat accumulation, improves heat dissipation efficiency, keeps the components in a suitable working environment at all times, and ensures the stability and reliability of operation. Arranging the water inlet assembly 3 on the plurality of water outlet pieces 113 provides the water inlet assembly 3 with a direct and stable support point, and compared to being directly mounted on the bottom plate body 111, this arrangement makes the connection of the water inlet assembly 3 and the entire shell assembly 1 more compact and precise, is also easy to disassemble and assemble, and can also allow water from the water inlet assembly 3 to be smoothly delivered from the water outlet pieces 113 to the water outlet 102, ensuring the connectivity of the entire waterway.

[0048] As Figure 1 and Figure 10As shown, in addition to the features of the above embodiments, the present embodiment is further limited that: the electric control assembly 6 comprises a connecting wire 61 and a control circuit board 62, the control circuit board 62 is arranged on the shell assembly 1, and the connecting wire 61 is arranged on the control circuit board 62, and the connecting wire 61 is used for electrical connection with external devices. By installing the control circuit board 62 on the shell assembly 1, accurate control is provided for the operation of the entire device. Its built-in program logic is rigorous, and can control the start-stop time and working state of the water inlet assembly 3, the electrolysis assembly 2, the pneumatic assembly 4 and the like in order according to the preset instructions, to ensure that each link works efficiently. The connecting wire 61 can ensure the timeliness and accuracy of signal transmission, so that the instructions of the control circuit board 62 can instantly reach each component, avoid delay, improve the response speed of the device, and the connecting wire 61 is electrically connected with the external control panel, which can feed back the running state of the device to the user in real time, such as the current water level, the electrolysis progress, the working condition of the pneumatic assembly and the like, and also can conveniently enable the user to easily issue instructions to the automatic water feeding electrolysis structure through the control panel. At the same time, the water-fearing electronic elements of the control circuit board 62 are oriented to the outside, so that even if the containing cavity 101 is filled with water, the electronic elements can be ensured not to be disturbed.

[0049] As shown in Figure 1 In addition to the features of the above embodiments, the present embodiment is further limited that: the disinfection device 7 is further included, the number of disinfection devices 7 is multiple, and the multiple disinfection devices 7 are arranged on the shell assembly 1 and located in the electrolysis cavity 104. By arranging multiple disinfection devices 7 on the shell assembly 1, they can work cooperatively with the electrolysis assembly 2, further strengthening the sterilization and disinfection efficiency. The ultraviolet rays can penetrate into the interior of the water body, accurately attack stubborn bacteria and microorganisms such as bacillus spores that are difficult to completely remove by electrolysis, greatly broaden the sterilization spectrum, make the water quality purification more comprehensive and thorough, and ensure the high standard of water quality. At the same time, the ultraviolet disinfection process does not need to add additional chemical agents, which not only avoids chemical residue pollution of the water body, but also reduces the subsequent treatment cost, provides a safer, more convenient and efficient water purification scheme for the user, and continuously protects the health of the water.

[0050] Embodiment 2

[0051] As shown in Figures 1 to 10 The present embodiment discloses a water purification device, which comprises: the above-mentioned automatic water feeding electrolysis structure; a control module, which is electrically connected with the automatic water feeding electrolysis structure; and a power supply, which is electrically connected with the control module.

[0052] The second aspect of the application discloses a water purification device, by connecting the control module with the automatic water electrolysis structure, and then connecting the power supply with the control module, on the one hand, the control module can accurately and stably distribute power to each component in the automatic water electrolysis structure after receiving power supply from the power supply, ensuring that the water inlet component 3, the electrolysis component 2, the pneumatic component 4, and the disinfection device 7, etc. obtain the appropriate working voltage, and ensure their stable operation, avoiding equipment failure or performance decline caused by unstable voltage. On the other hand, through electrical connection, the control module can orderly control the working process of each component according to the preset program. It can accurately control the water absorption period and water volume of the water inlet component 3, control the electrolysis time and intensity of the electrolysis component 2, and also can start the pneumatic component 4 as needed to diffuse electrolytic water, and manage the start and stop of the disinfection device 7, so that each link of the automatic water electrolysis structure closely cooperates and efficiently cooperates, realizes automatic and intelligent operation, and meets the user's demand for high-quality purified water.

[0053] The technical features of the above-described embodiments can be combined in any manner. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described, but as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present disclosure.

[0054] The above-described embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, some modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. An automatic water feeding electrolytic structure, characterized by, The automatic water feeding electrolysis structure comprises: a shell assembly (1) provided with a containing cavity (101), a water outlet (102), a flow guide opening (103) and an electrolysis cavity (104); an electrolysis assembly (2) arranged on the shell assembly (1) and located in the electrolysis cavity (104); a water inlet assembly (3) arranged on the shell assembly (1) and located in the containing cavity (101), the water inlet assembly (3), the water outlet (102), the flow guide opening (103) and the electrolysis cavity (104) being sequentially communicated, the water inlet assembly (3) being used for communicating with an external water source; a pneumatic assembly (4) arranged on the shell assembly (1), part of the pneumatic assembly (4) being located in the containing cavity (101) and the rest of the pneumatic assembly (4) being located in the electrolysis cavity (104); an electric control assembly (6) arranged on the shell assembly (1) and located in the containing cavity (101), the electric control assembly (6) being electrically connected with the electrolysis assembly (2), the water inlet assembly (3) and the pneumatic assembly (4).

2. The automatic water feeding electrolytic structure according to claim 1, characterized in that, The water inlet assembly (3) comprises a water inlet pipeline (31), an electromagnetic valve (32) and a water outlet pipeline (33), the electromagnetic valve (32) being arranged on the shell assembly (1) and located in the containing cavity (101), the water inlet pipeline (31) being arranged on the electromagnetic valve (32) and penetrating through the containing cavity (101), the water outlet pipeline (33) being arranged on the electromagnetic valve (32), the water inlet pipeline (31), the electromagnetic valve (32), the water outlet pipeline (33) and the water outlet (102) being sequentially communicated.

3. The automatic water feeding electrolytic structure according to claim 2, characterized in that, The water outlet pipeline (33) comprises a first water outlet pipeline (331), a water passing pipeline (332) and a second water outlet pipeline (333), the water passing pipeline (332) being arranged on the electromagnetic valve (32), the first water outlet pipeline (331) and the second water outlet pipeline (333) being arranged on the water passing pipeline (332), the number of the water outlets (102) being multiple, the first water outlet pipeline (331) and the second water outlet pipeline (333) being respectively communicated with multiple water outlets (102).

4. The automatic water feeding electrolysis structure according to claim 1, wherein the pneumatic assembly (4) comprises a pneumatic pump (41), a pneumatic pipeline (42), a pneumatic one-way valve (43) and a pneumatic element (44), the pneumatic pump (41) being arranged on the shell assembly (1), the pneumatic pipeline (42) being arranged on the pneumatic pump (41), the one-way valve (43) being arranged on the pneumatic pipeline (42), the pneumatic element (44) being arranged on the pneumatic pipeline (42) and located in the electrolysis cavity (104); and / or further comprising a detection assembly (5) arranged on the shell assembly (1), the electric control assembly (6) being electrically connected with the detection assembly (5).

5. The self-watering electrolytic structure of claim 1, wherein, The electrolysis assembly (2) comprises electrolysis sheets (21) and fixing members (22), the number of the electrolysis sheets (21) is multiple, the number of the fixing members (22) is multiple, the multiple fixing members (22) are arranged on the shell assembly (1), and the multiple fixing members (22) fix the multiple electrolysis sheets (21) in the electrolysis cavity (104) in a spaced manner.

6. The self-watering electrolytic structure of claim 1, wherein, The shell assembly (1) comprises a mounting bottom plate (11) and a mounting back shell (12), the mounting bottom plate (11) is provided with multiple fixing holes (105), the mounting bottom plate (11) is arranged on a structure outside through the multiple fixing holes (105), the mounting back shell (12) is arranged on the mounting bottom plate (11), and the mounting back shell (12) and the mounting bottom plate (11) enclose to form the containing cavity (101). The mounting bottom plate (11) is provided with the water outlet (102), the flow guide opening (103) and the electrolysis cavity (104), the number of the water outlet (102) and the flow guide opening (103) is multiple, and the multiple water outlets (102) and the multiple flow guide openings (103) are arranged in a one-to-one correspondence.

7. The self-watering electrolytic structure of claim 6, wherein, The mounting bottom plate (11) comprises a bottom plate body (111), multiple support members (112) and multiple water outlet members (113), the bottom plate body (111) is arranged on a structure outside, the multiple support members (112) are arranged on the bottom plate body (111), the water inlet assembly (3), the pneumatic assembly (4) and the electric control assembly (6) are arranged on the multiple support members (112), the multiple water outlet members (113) are arranged on the bottom plate body (111), and the water inlet assembly (3) is arranged on the multiple water outlet members (113). The water outlet member (113) is in communication with the water outlet (102).

8. The self-watering electrolytic structure of claim 1, wherein, The electric control assembly (6) comprises a connecting wire (61) and a control circuit board (62), the control circuit board (62) is arranged on the shell assembly (1), and the connecting wire (61) is arranged on the control circuit board (62). The connecting wire (61) is used for electrically connecting with a device outside.

9. The self-watering electrolytic structure of claim 1, wherein, The water purifying device further comprises multiple disinfection devices (7), and the multiple disinfection devices (7) are arranged on the shell assembly (1) and located in the electrolysis cavity (104).

10. A water purifying apparatus characterized by comprising: The water purifying device comprises: The automatic water feeding electrolysis structure according to any one of claims 1 to 9; A control module, the control module is electrically connected with the automatic water feeding electrolysis structure; A power supply, the power supply is electrically connected with the control module.