Hydrogen-rich water machine with filling function
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI GREAT MEDICAL EQUIP CO LTD
- Filing Date
- 2025-08-12
- Publication Date
- 2026-08-07
AI Technical Summary
常规情况下,水机通常只设置冷水与热水两个出水口,缺少同时能够给储水桶灌装氢水,无法满足人们使用移动式储水桶的需求,并且存在灌装时管路内部压力大而带来的安全隐患
[0008] Compared with existing technologies, this utility model integrates multiple functions such as water production, hydrogen production, heating, cold water supply, and filling. Through intelligent control and convenient operation, it reduces the difficulty of operation for users, meets the needs of users in different scenarios, and ensures safety during use.
Smart Images

Figure CN224604830U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water purification equipment technology, specifically a hydrogen-rich water machine with filling function. Background Technology
[0002] Compared to drinking water, hydrogen-rich water, due to its high concentration of hydrogen, possesses antioxidant, anti-inflammatory, and digestive-improving properties, leading to the development of hydrogen-rich water-related products. Currently, there are many types of hydrogen-rich water machines on the market. However, conventional water machines typically only have cold and hot water outlets, lacking the ability to simultaneously fill storage tanks with hydrogen-rich water. This fails to meet the needs of users requiring portable storage tanks and poses safety hazards due to high internal pressure during filling. Utility Model Content
[0003] To address the problems mentioned in the background art, this utility model provides a hydrogen-rich water machine with a filling function, including a main shell. A drinking chamber is located on the front of the main shell. A multi-layered support plate is arranged inside the main shell from top to bottom. A water tank is located on the uppermost layer of the multi-layered support plate. A hydrogen production module, a heating inner tank, and a hot water pump are located on the support plate below the water tank. A cold water pump and a water production pump are located on the lowermost layer of the multi-layered support plate. A three-stage filter assembly and a reverse osmosis filter element are located below the lowermost layer of the multi-layered support plate. An inlet and a wastewater outlet are located on the back of the main shell. The inlet is connected to the three-stage filter assembly via a pipe. The three-stage filter assembly is connected to the water production pump via a pipe. The water production pump is connected to the reverse osmosis filter element via a pipe. The reverse osmosis filter element is connected to the wastewater outlet and the water tank via pipes. The water tank is connected to the heating inner tank via a pipe. The heating inner tank is connected to the water tank via an exhaust pipe. The heating inner tank is connected to one end of a three-way connector via a pipe. The second end of the three-way connector is connected to... Connect the hydrogen production module. The third end of T-connector 1 is connected to the hot water pump via a pipe. The hot water pump is connected to the hot water solenoid valve via a pipe. The hot water solenoid valve is connected to aeration device 1 via a pipe. Aeration device 1 is connected to the hot water outlet. The water tank is connected to one end of T-connector 2 via a pipe. The second end of T-connector 2 is connected to the hydrogen production module via a pipe. The third end of T-connector 2 is connected to the cold water pump via a pipe. The cold water pump is connected to T-connector 3 via a pipe. The second end of T-connector 3 is connected to the filling solenoid valve via a pipe. The third end of T-connector 3 is connected to the cold water solenoid valve via a pipe. The filling solenoid valve is connected to one end of T-connector 4 via a pipe. The second end of T-connector 4 is connected to the filling outlet via a pipe. The third end of T-connector 4 is connected to one end of T-connector 5 via a pipe. The second end of T-connector 5 is connected to the pressure relief port via a pipe. The third end of T-connector 5 is connected to the pressure gauge via a pipe. The cold water solenoid valve is connected to aeration device 2 via a pipe. Aeration device 2 is connected to the cold water outlet.
[0004] The main housing has an intelligent control panel on its front exterior and a filling button and a pressure relief button on its side exterior. The intelligent control panel is electrically connected to the water pump, heating tank, hydrogen production module, hot water pump, hot water solenoid valve, cold water pump, and cold water solenoid valve. The filling button is electrically connected to the filling solenoid valve and cold water pump, and the pressure relief button is electrically connected to the filling solenoid valve.
[0005] The water tank is equipped with a float switch.
[0006] The filling port and pressure gauge are located on the side of the main housing.
[0007] The hot water inlet and cold water inlet are located at the upper end of the drinking chamber, and a water receiving tray is provided at the lower end of the drinking chamber.
[0008] Compared with existing technologies, this utility model integrates multiple functions such as water production, hydrogen production, heating, cold water supply, and filling. Through intelligent control and convenient operation, it reduces the difficulty of operation for users, meets the needs of users in different scenarios, and ensures safety during use. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the utility model structure; Figure 2 This is a schematic diagram of the internal structure of the utility model; Figure 3 This is a schematic diagram of the connection relationship of the utility model; Referring to the attached diagram, 1. Main shell, 2. Drinking water chamber, 3. Support plate, 4. Water tank, 5. Hydrogen production module, 6. Heating inner tank, 7. Hot water pump, 8. Cold water pump, 9. Water production pump, 10. Three-stage filter assembly, 11. Reverse osmosis filter element, 12. Inlet, 13. Wastewater outlet, 14. T-joint one, 15. Hot water solenoid valve, 16. Hot water outlet, 17. Aeration device one, 18. T-joint two, 19. T-joint three, 20. Filling solenoid valve, 21. Cold water solenoid valve, 22. T-joint four, 23. Filling port, 24. T-joint five, 25. Pressure relief port, 26. Pressure gauge, 27. Aeration device two, 28. Cold water outlet, 29. Intelligent control panel, 30. Filling button, 31. Pressure relief button, 32. Water receiving tray. Detailed Implementation
[0010] The present invention will be further described below with reference to the accompanying drawings.
[0011] like Figures 1 to 3A hydrogen-rich water machine with filling function includes a main shell 1, a drinking chamber 2 on the front of the main shell 1, a multi-layer support plate 3 arranged from top to bottom inside the main shell 1, a water tank 4 on the uppermost layer of the multi-layer support plate 3, a hydrogen production module 5, a heating inner tank 6 and a hot water pump 7 arranged on the support plate 3 below the water tank 4, a cold water pump 8 and a water production pump 9 arranged on the lowermost layer of the multi-layer support plate 3, and a three-stage filter element assembly 10 and a reverse osmosis filter element 9 arranged below the lowermost layer of the multi-layer support plate 3.
[0012] The back of the main housing 1 is provided with a water inlet 12 and a wastewater outlet 13. The water inlet 12 is connected to the three-stage filter element assembly 10 through a pipe. The three-stage filter element assembly 10 is connected to the water pump 9 through a pipe. The water pump 9 is connected to the reverse osmosis filter element 11 through a pipe. The reverse osmosis filter element 11 is connected to the wastewater outlet 13 and the water tank 4 through pipes respectively, so as to realize water purification and wastewater discharge.
[0013] Water tank 4 is connected to heating inner tank 6 via a pipe. Heating inner tank 6 is connected to water tank 4 via an exhaust pipe. Heating inner tank 6 is connected to one end of T-joint 14 via a pipe. The second end of T-joint 14 is connected to hydrogen generation module 5 via a pipe. The third end of T-joint 14 is connected to hot water pump 7 via a pipe. Hot water pump 7 is connected to hot water solenoid valve 15 via a pipe. Hot water solenoid valve 15 is connected to aeration device 17 via a pipe. Aeration device 17 is connected to hot water outlet 16. Water tank 4 is connected to one end of T-joint 2 18 via a pipe. The second end of T-joint 2 18 is connected to hydrogen generation module 5 via a pipe. The third end of T-joint 2 18 is connected to cold water pump 8 via a pipe. 8. Connect the three-way pipe joint 19 through a pipe. The second end of the three-way pipe joint 19 is connected to the filling solenoid valve 20 through a pipe. The third end of the three-way pipe joint 19 is connected to the cold water solenoid valve 21 through a pipe. The filling solenoid valve 20 is connected to one end of the four-way pipe joint 22 through a pipe. The second end of the four-way pipe joint 22 is connected to the filling port 23 through a pipe. The third end of the four-way pipe joint 22 is connected to one end of the five-way pipe joint 24. The second end of the five-way pipe joint 24 is connected to the pressure relief port 25 through a pipe. The third end of the five-way pipe joint 24 is connected to the pressure gauge 26 through a pipe. The cold water solenoid valve 21 is connected to the aeration device 27 through a pipe. The aeration device 27 is connected to the cold water inlet 28.
[0014] The main housing 1 has an intelligent control panel 29 on its front exterior and a filling button 30 and a pressure relief button 31 on its side exterior. The intelligent control panel 29 is electrically connected to the water pump 9, the heating inner tank 6, the hydrogen production module 5, the hot water pump 7, the hot water solenoid valve 15, the cold water pump 8, and the cold water solenoid valve 21. The filling button 30 is electrically connected to the filling solenoid valve 20 and the cold water pump 8, and the pressure relief button 31 is electrically connected to the filling solenoid valve 20, thereby enabling control of each function.
[0015] The water tank 4 is equipped with a float switch to detect the water level in the tank and ensure the normal operation of the device.
[0016] The filling port 23 and pressure gauge 26 are located on the side of the main housing 1. Pressure gauge 26 provides real-time feedback on the pressure value in the pipeline.
[0017] Hot water inlet 16 and cold water inlet 28 are located at the upper end of drinking chamber 2. A water receiving tray 32 is provided at the lower end of drinking chamber 2 for placing water cups and for collecting splashed water.
[0018] Municipal tap water enters the three-stage filter assembly 10 through the pipe connected to the inlet 12. Under the action of the tap water pressure and the water pump 9, the tap water undergoes the first purification treatment. Then, it undergoes the second purification treatment through the reverse osmosis filter 11. The purified water will enter the water tank 4 for storage. The wastewater generated during the purification process will be discharged from the wastewater outlet 13.
[0019] During operation, the hydrogen production module 5 generates hydrogen gas, which enters the water outlet channel through pipelines. Under the action of the water pump, the hydrogen gas mixes with the water in the pipeline to form hydrogen-rich water. The water in the water tank 4 enters the heating inner tank 6 for heating, and the hot steam returns to the water tank 4 through the exhaust pipe. When the intelligent control panel 29 releases cold water, the hydrogen-rich water formed by the mixture is pumped by the cold water pump 8 and enters the aeration device 27 through the cold water solenoid valve 21. After being pressurized by the aeration device 27, it forms high-concentration hydrogen-rich water and is discharged from the cold water outlet 28. When the intelligent control panel 29 releases hot water, the heated water in the heating inner tank 6 mixes with hydrogen gas and forms hydrogen-rich water under the action of the hot water pump 7. It is then discharged from the hot water outlet 16 through the hot water solenoid valve 15.
[0020] After connecting the portable water storage tank, press the filling button 30. The filling solenoid valve 20 opens, and the water in the water tank 4 and the hydrogen produced by the hydrogen generation module 5 mix into hydrogen-rich water under the action of the cold water pump 8. This water is then discharged from the filling port 23 and enters the portable water storage tank. The pressure in the pipeline increases, and filling automatically stops when the pressure reaches the set pressure value, such as 0.3 MPa. Simultaneously, the filling time is set, such as 3 minutes, and filling also automatically stops when the set time is reached. Pressing the pressure relief button 31 releases the pressure in the pipeline through the filling solenoid valve 20, and the wastewater in the pipeline is discharged through the pressure relief port to the wastewater pipe.
Claims
1. A hydrogen-rich water machine with a filling function, comprising a main housing (1), characterized in that: The main shell (1) has a drinking water chamber (2) on the front. The main shell (1) has a multi-layer support plate (3) from top to bottom. The uppermost layer of the multi-layer support plate (3) has a water tank (4). The support plate (3) below the water tank (4) has a hydrogen production module (5), a heating inner tank (6) and a hot water pump (7). The lowermost layer of the multi-layer support plate (3) has a cold water pump (8) and a water production pump (9). The lowermost layer of the multi-layer support plate (3) has a three-stage filter assembly (10) and a reverse osmosis filter element (11). The back of the main shell (1) has a water inlet (12) and a wastewater outlet (13). The water inlet (12) The three-stage filter element assembly (10) is connected to the water pump (9) via a pipe. The water pump (9) is connected to the reverse osmosis filter element (11) via a pipe. The reverse osmosis filter element (11) is connected to the wastewater outlet (13) and the water tank (4) via pipes. The water tank (4) is connected to the heating inner tank (6) via a pipe. The heating inner tank (6) is connected to the water tank (4) via an exhaust pipe. The heating inner tank (6) is connected to one end of the three-way pipe connector (14) via a pipe. The second end of the three-way pipe connector (14) is connected to the hydrogen production module (5) via a pipe. The third end of the three-way pipe connector (14) is connected to the hydrogen production module (5) via a pipe. Connect the hot water pump (7), the hot water pump (7) is connected to the hot water solenoid valve (15) through a pipe, the hot water solenoid valve (15) is connected to the aeration device one (17) through a pipe, the aeration device one (17) is connected to the hot water outlet (16), the water tank (4) is connected to one end of the three-way pipe connector two (18) through a pipe, the second end of the three-way pipe connector two (18) is connected to the hydrogen production module (5) through a pipe, the third end of the three-way pipe connector two (18) is connected to the cold water pump (8) through a pipe, the cold water pump (8) is connected to the three-way pipe connector three (19) through a pipe, the second end of the three-way pipe connector three (19) is connected to the filling solenoid valve (20) through a pipe, the three-way pipe connector The third end of the three (19) is connected to the cold water solenoid valve (21) through a pipe. The filling solenoid valve (20) is connected to one end of the three-way connector four (22) through a pipe. The second end of the three-way connector four (22) is connected to the filling port (23) through a pipe. The third end of the three-way connector four (22) is connected to one end of the three-way connector five (24). The second end of the three-way connector five (24) is connected to the pressure relief port (25) through a pipe. The third end of the three-way connector five (24) is connected to the pressure gauge (26) through a pipe. The cold water solenoid valve (21) is connected to the aeration device two (27) through a pipe. The aeration device two (27) is connected to the cold water port (28).
2. A hydrogen-rich water machine with filling function according to claim 1, characterized in that: The main housing (1) is provided with an intelligent control panel (29) on the front side and a filling button (30) and a pressure relief button (31) on the side side. The intelligent control panel (29) is electrically connected to the water pump (9), the heating inner tank (6), the hydrogen production module (5), the hot water pump (7), the hot water solenoid valve (15), the cold water pump (8), and the cold water solenoid valve (21). The filling button (30) is electrically connected to the filling solenoid valve (20) and the cold water pump (8). The pressure relief button (31) is electrically connected to the filling solenoid valve (20).
3. A hydrogen-rich water machine with filling function according to claim 1, characterized in that: The water tank (4) is equipped with a float switch.
4. A hydrogen-rich water machine with filling function according to claim 1, characterized in that: The filling port (23) and pressure gauge (26) are located on the side of the main housing (1).
5. A hydrogen-rich water machine with filling function according to claim 1, characterized in that: The hot water inlet (16) and cold water inlet (28) are located at the upper end of the drinking water chamber (2), and a water receiving tray (32) is provided at the lower end of the drinking water chamber (2).