Undercounter basin with self-cleaning function
By setting up a first and second water channel in the undermount basin, and utilizing a combination of electrolyzed water and salt water, a self-cleaning function is achieved, solving the problem of time-consuming and laborious traditional cleaning methods, and improving cleaning efficiency and sterilization effect.
Patent Information
- Application Number
- CN202520511336.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing undermount sinks require manual cleaning by the user after use, and traditional flushing power is weak and cannot effectively remove limescale, resulting in time-consuming and laborious cleaning.
An undermount basin with self-cleaning function was designed. By setting up a first water channel and a second water channel, the first water channel is used for regular cleaning, while the second water channel sprays electrolyzed water to atomize and cover the inner wall of the water storage chamber to sterilize and soften scale. Combined with the salt water in the storage bottle, the sterilization and disinfection ability of the electrolyzed water is improved.
It effectively removes limescale without the need for manual cleaning agents and brushes, improves sterilization and disinfection capabilities, and leaves no harmful residues after dilution with electrolyzed water, simplifying the cleaning process.
Smart Images

Figure CN223951873U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of bathroom, specifically relates to a under -bowl basin with self -cleaning function. BACKGROUND
[0002] When the user uses the under -bowl basin to wash hands and wash, often some dirt will fall in the basin, need the user to open the water faucet and guide the water flow to flush the dirt on the pot surface, but this way flushing force is weak, and the scale on the pot surface cannot be softened and removed. After long -term use, the user needs to use cleaning agent and brush to clean, time -consuming and labor -intensive, and further improvement is needed. UTILITY MODEL CONTENTS
[0003] The utility model aims at overcoming the defects of prior art, and provides a under -bowl basin with self -cleaning function.
[0004] The utility model adopts the following technical scheme:
[0005] A under -bowl basin with self -cleaning function, including installation platform, the basin body being installed at the bottom of installation platform and the water storage cavity being formed in the basin body, still include first water route, second water route, shunt mechanism and liquid storage bottle;
[0006] First water route, set up on the basin body, wash the inner wall of water storage cavity;
[0007] Second water route, set up on installation platform, electrolytic water is sprayed to the inner wall of water storage cavity;
[0008] Shunt mechanism, set up on installation platform, connect first water route with second water route, including the shunt seat being set up on installation platform, the water inlet pipe being set up on the shunt seat, the first shunt component being connected between first water route and water inlet pipe and the second shunt component being connected between second water route and water inlet pipe;
[0009] Liquid storage bottle is connected with second shunt component, and salt water is stored in the inside to supply salt water to second water route.
[0010] Further, the first water route includes a water flow channel formed between the basin body and the installation platform, and a water inlet connector extending inwardly from the outside of the basin body to communicate with the water flow channel, and the inner wall of the water storage cavity is surrounded by a water outlet step, and the water flow channel is formed between the water outlet step and the installation platform.
[0011] Further, the first shunt component includes a first electromagnetic valve connected to the water inlet pipe on the shunt seat and a first water outlet connected to the water inlet connector at the lower end of the first electromagnetic valve.
[0012] Further, the second waterway comprises a misting faucet arranged on the mounting table to spray electrolytic water to the inner wall of the water storage cavity and an electrolytic water module arranged at the bottom of the mounting table and connected with the misting faucet, and the misting faucet comprises misting nozzles arranged opposite to each other on the upper and lower sides of the water storage cavity.
[0013] Further, the second shunt assembly comprises a second electromagnetic valve arranged on the shunt seat and connected with the water inlet pipe, a second water outlet arranged at the lower end of the second electromagnetic valve, a three-way valve connected with the second water outlet, and a water pump connected between the three-way valve and the liquid storage bottle, and the three-way valve is connected with the electrolytic water module.
[0014] Further, the three-way valve comprises a valve body, a mixing cavity formed in the valve body, a first interface arranged at the upper end of the valve body and connected with the second water outlet, a second interface arranged at the lower end of the valve body and connected with the water pump, and a third interface arranged at the lower end of the valve body and connected with the electrolytic water module.
[0015] Further, the second interface is connected with the water pump through a first one-way valve.
[0016] Further, a second one-way valve is arranged between the misting faucet and the electrolytic water module.
[0017] Further, the liquid storage bottle comprises a liquid storage bottle body for storing brine, a liquid level sensor arranged in the liquid storage bottle body, and a liquid inlet assembly connected with the liquid storage bottle body.
[0018] Further, the liquid inlet assembly comprises a liquid inlet pipe connected with the liquid storage bottle body and a liquid inlet port arranged at the upper end of the liquid inlet pipe.
[0019] As can be seen from the above description of the present application, compared with the prior art, the present application has the following beneficial effects: by limiting the structure of the under-counter basin, the under-counter basin is arranged in the first waterway for regular cleaning, and arranged in the second waterway to spray electrolytic water to the inner wall of the water storage cavity for atomization, covering and sterilization of the inner wall of the water storage cavity, softening of the water scale, and effective removal of the water scale remaining on the inner wall of the water storage cavity, without the need for manual spraying of cleaning agents and cleaning with a brush. At the same time, the brine in the liquid storage bottle can increase the chlorine concentration of the electrolytic water generated, improve the sterilization and disinfection capacity, and the salt is easy to obtain, without the need for special cleaning agents and the addition of sterilizing agents. In addition, the sprayed electrolytic water is diluted after flushing, has no harmful effect, and there is no need to worry about the problem of residual cleaning agents on the inner wall of the water storage cavity after using the cleaning agents. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 Structure of the under-counter basin Figure One ;
[0021] Figure 2 Structure of the under-counter basin Figure Two ;
[0022] Figure 3 Assembled view of the under-counter basin Figure One ;
[0023] Figure 4 Assembled view of the under-counter basin Figure Two ;
[0024] Figure 5 Assembled view of the under-counter basin Figure Three ;
[0025] In the figure, 1 - installation platform, 2 - basin body, 3 - water storage cavity, 4 - drainage port, 5 - first waterway, 6 - second waterway, 7 - shunt mechanism, 8 - liquid storage bottle, 11 - connecting ring, 21 - connecting groove, 31 - water outlet step, 51 - water flow channel, 52 - water inlet connector, 61 - atomizing faucet, 62 - electrolytic water module, 63 - atomizing nozzle, 71 - shunt seat, 72 - water inlet pipe, 73 - first shunt assembly, 731 - first electromagnetic valve, 732 - first water outlet, 74 - second shunt assembly, 741 - second electromagnetic valve, 742 - second water outlet, 743 - three-way valve, 744 - water pump, 745 - valve body, 746 - first interface, 747 - second interface, 748 - third interface, 81 - liquid storage bottle body, 82 - liquid level sensor, 83 - liquid inlet assembly, 831 - liquid inlet pipe, 832 - liquid inlet port, 833 - sealing cover. DETAILED DESCRIPTION
[0026] The utility model will be further described below through specific embodiments.
[0027] Referring to Figures 1 to 5 As shown in the figure, an under-counter basin with self-cleaning function, comprising an installation platform 1, a basin body 2 installed at the bottom of the installation platform 1, a water storage cavity 3 formed inside the basin body 2, a drainage port 4 extending downward at the bottom of the water storage cavity 3, a first waterway 5 arranged on the basin body 2 to clean the inner wall of the water storage cavity 3, a second waterway 6 arranged on the installation platform 1 to spray electrolytic water to the inner wall of the water storage cavity 3, a shunt mechanism 7 arranged on the installation platform 1 to connect the first waterway 5 and the second waterway 6, and a liquid storage bottle 8 connected with the shunt mechanism 7, wherein the installation platform 1 is provided with a connecting ring 11 connected with the basin body 2, and the top of the basin body 2 is formed with a connecting groove 21 extending downward for the connecting ring 11 to be embedded, and the basin body 2 is installed at the bottom of the installation platform 1 through the cooperation of the connecting ring 11 and the connecting groove 21.
[0028] The first waterway 5 comprises a water flow channel 51 formed between the basin 2 and the mounting table 1 and a water inlet joint 52 arranged outside the basin 2 and extending inwardly to communicate with the water flow channel 51, wherein a water outlet step 31 is arranged around the inner wall of the water storage cavity 3, and the water flow channel 51 is formed between the water outlet step 31 and the mounting table 1; during normal cleaning, water flows into the water flow channel 51 from the water inlet joint 52, part of the water continues to flow forward along the water flow channel 51, and part of the water flows downward to wash the inner wall of the water storage cavity 3.
[0029] The second waterway 6 comprises an atomizing faucet 61 arranged on the mounting table 1 to spray electrolytic water to the inner wall of the water storage cavity 3 and an electrolytic water module 62 arranged at the bottom of the mounting table 1 and connected with the atomizing faucet 61, wherein the atomizing faucet 61 comprises atomizing nozzles 63 opposite to the upper and lower surfaces of the water storage cavity 3, the electrolytic water treated by the electrolytic water module 62 is sprayed to the surface of the water storage cavity 3 through the atomizing nozzles 63, and the electrolytic water is allowed to stand for a period of time to soften the scale and kill bacteria, and then water is supplied to the water flow channel 51 through the water inlet joint 52 to flush the surface of the water storage cavity 3 and carry away impurities and discharge the impurities from the drain 4; specifically, the electrolytic water module 62 is a structure commonly used in bathroom products, and the treated water is electrolytic water, and the specific composition and working principle of the electrolytic water module 62 will not be described further; further, a second one-way valve is arranged between the electrolytic water module 62 and the atomizing faucet 61 to prevent the electrolytic water from flowing back to the electrolytic water module 62.
[0030] The shunt mechanism 7 comprises a shunt seat 71 arranged on the mounting table 1, a water inlet pipe 72 arranged on the shunt seat 71, a first shunt assembly 73 connected between the first waterway 5 and the water inlet pipe 72, and a second shunt assembly 74 connected between the second waterway 6 and the water inlet pipe 72.
[0031] The first shunt assembly 73 comprises a first electromagnetic valve 731 arranged on the shunt seat 71 and connected with the water inlet pipe 72 and a first water outlet 732 arranged at the lower end of the first electromagnetic valve 731 and connected with the water inlet joint 52, wherein the first water outlet 732 is connected with the water inlet joint 52 through a rubber bellows and a rubber hose.
[0032] The second shunt assembly 74 comprises a second electromagnetic valve 741 arranged on the shunt base 71 and connected with the water inlet pipe 72, a second water outlet 742 arranged at the lower end of the second electromagnetic valve 741, a three-way valve 743 connected with the second water outlet 742, and a water pump 744 connected between the three-way valve 743 and the liquid storage bottle 8, wherein the three-way valve 743 is connected with the electrolytic water module 62, and comprises a valve body 745, a mixing cavity formed in the valve body 745, a first interface 746 arranged at the upper end of the valve body 745 and connected with the second water outlet 742, a second interface 747 arranged at the lower end of the valve body 745 and connected with the water pump 744, and a third interface 748 arranged at the lower end of the valve body 745 and connected with the electrolytic water module 62. The brine in the liquid storage bottle 8 is extracted by the water pump 744 into the mixing cavity, so as to increase the concentration of the tap water to be electrolyzed in the pipeline. The mixed water flows to the electrolytic water module 62, and the tap water passing through the electrolytic water module 62 is electrolyzed to form electrolytic water, which is sprayed through the atomizing faucet 61 to form atomized water, which is sprayed on the surface of the water storage cavity 3 to soften the scale and kill bacteria. Specifically, the second interface 747 is connected with the water pump 744 through a first one-way valve. The first one-way valve is arranged to prevent the tap water from flowing back to the liquid storage bottle 8.
[0033] The liquid storage bottle 8 stores brine inside, and supplies the brine to the second water path 6. The liquid storage bottle 8 comprises a liquid storage bottle body 81 for storing the brine, a liquid level sensor 82 arranged in the liquid storage bottle body 81, and a liquid inlet assembly 83 connected with the liquid storage bottle body 81. Specifically, the liquid inlet assembly 83 comprises a liquid inlet pipe 831 connected with the liquid storage bottle body 81, a liquid inlet port 832 arranged at the upper end of the liquid inlet pipe 831, and a sealing cover 833 for sealing the liquid inlet port 832. The liquid level sensor 82 is arranged to detect the liquid level of the brine. When the water level is too low, the user is reminded to add liquid. The user can be reminded through the screen display of the atomizing faucet 61 or the buzzer on the controller.
[0034] When the user uses the faucet, and only needs to flush the impurities on the surface of the water storage cavity 3, the first electromagnetic valve 731 is controlled to work, so that the water flows into the water flow channel 51 through the water inlet joint 52, flushes the entire inner wall of the water storage cavity 3, and carries away the impurities from the drain port 4.
[0035] When the inner wall of the water storage cavity 3 needs to be sterilized and descaled, the second electromagnetic valve 741, the water pump 744 and the electrolytic water module 62 are opened at the same time. The electrolytic water treated by the electrolytic water module 62 is sprayed on the inner wall of the water storage cavity 3 through the atomizing nozzle 63 on the atomizing faucet 61 for a period of time. Then, the second electromagnetic valve 741, the water pump 744 and the electrolytic water module 62 are closed, and the system is left for a period of time to soften the scale and kill bacteria. Then, the first electromagnetic valve 731 is opened, and the water flows into the water flow channel 51 through the water inlet joint 52, flushes the entire inner wall of the water storage cavity 3, and carries away the impurities from the drain port 4.
[0036] The application defines the structure of the under-table basin, sets the first waterway 5 for regular cleaning, and sets the second waterway 6 to spray electrolytic water to the inner wall of the water storage cavity 3 to atomize, cover and sterilize the inner wall of the water storage cavity 3, soften the scale, and effectively remove the scale remained on the inner wall of the water storage cavity 3 without manual spraying of the cleaning agent and the brush for cleaning. Meanwhile, the brine in the liquid storage bottle 8 can improve the chlorine concentration of the electrolytic water and the sterilization and disinfection capacity, and the salt is easy to obtain without special cleaning agent and disinfectant. In addition, the sprayed electrolytic water is diluted after flushing without harmful effect, and there is no problem of residue on the inner wall of the water storage cavity 3 after using the cleaning agent.
[0037] The above is only a preferred embodiment of the present application, and therefore cannot limit the scope of the present application. Any equivalent changes and modifications made according to the scope of the present application and the content of the specification shall still be within the scope of the present application.
Claims
1. A below-table basin with self-cleaning function, comprising a mounting table, a basin body mounted at the bottom of the mounting table, and a water storage cavity formed in the interior of the basin body, characterized in that: The first water path, the second water path, the shunt mechanism and the liquid storage bottle are further included. The first water path is arranged on the basin body to clean the inner wall of the water storage cavity. The second water path is arranged on the mounting table to spray electrolytic water to the inner wall of the water storage cavity. The shunt mechanism is arranged on the mounting table and connected with the first water path and the second water path, and includes a shunt seat arranged on the mounting table, a water inlet pipe arranged on the shunt seat, a first shunt component connected between the first water path and the water inlet pipe, and a second shunt component connected between the second water path and the water inlet pipe. The liquid storage bottle is connected with the second shunt component and internally stores brine to supply the brine to the second water path.
2. The under-counter sink with self-cleaning function according to claim 1, characterized in that: The first water path includes a water flow channel formed between the basin body and the mounting table and a water inlet connector arranged outside the basin body and extending inwardly to communicate with the water flow channel, and the inner wall of the water storage cavity is arranged with a water outlet step, and the water flow channel is formed between the water outlet step and the mounting table.
3. The under-counter sink with self-cleaning function according to claim 2, characterized in that: The first shunt component includes a first electromagnetic valve arranged on the shunt seat and connected with the water inlet pipe, and a first water outlet arranged at the lower end of the first electromagnetic valve and connected with the water inlet connector.
4. The under-counter sink with self-cleaning function according to claim 1, characterized in that: The second water path includes an atomizing faucet arranged on the mounting table to spray electrolytic water to the inner wall of the water storage cavity, and an electrolytic water module arranged at the bottom of the mounting table and connected with the atomizing faucet, and the atomizing faucet includes an atomizing nozzle opposite to the water storage cavity in the up-down direction.
5. The under-counter sink with self-cleaning function according to claim 4, characterized in that: The second shunt component includes a second electromagnetic valve arranged on the shunt seat and connected with the water inlet pipe, a second water outlet arranged at the lower end of the second electromagnetic valve, a three-way valve connected with the second water outlet, and a water pump connected between the three-way valve and the liquid storage bottle, and the three-way valve is connected with the electrolytic water module.
6. The under-counter sink with self-cleaning function according to claim 5, characterized in that: The three-way valve includes a valve body, a mixing cavity formed in the valve body, a first interface arranged at the upper end of the valve body and connected with the second water outlet, a second interface arranged at the lower end of the valve body and connected with the water pump, and a third interface arranged at the lower end of the valve body and connected with the electrolytic water module.
7. The under-counter sink with self-cleaning function according to claim 6, characterized in that: The second interface is connected with the water pump through a first one-way valve.
8. The under-counter sink with self-cleaning function according to claim 4, characterized in that: A second one-way valve is arranged between the atomizing faucet and the electrolytic water module.
9. The under-counter sink with self-cleaning function according to claim 1, characterized in that: The liquid storage bottle includes a liquid storage bottle body for storing brine, a liquid level sensor arranged in the liquid storage bottle body, and a liquid inlet component connected with the liquid storage bottle body.
10. The under-counter sink with self-cleaning function according to claim 9, characterized in that: The liquid inlet component includes a liquid inlet pipe connected with the liquid storage bottle body, and a liquid inlet port arranged at the upper end of the liquid inlet pipe.