A hydrogen-rich spray all-in-one machine

By integrating an electrolysis unit, solenoid valve, water pump, and water level sensor into a hydrogen-rich sprayer, the problem of manual venting after electrolysis in existing technologies has been solved, realizing the automation and stable atomization of the spraying device and ensuring the normal operation of the spraying function.

CN115814209BActive Publication Date: 2025-11-18HEBEI HUIZHU GLASS IND TECH RES CO LTD
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Patent Information

Application Number
CN202111100713.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-18
Publication Date
2025-11-18
Estimated Expiration
2041-09-18

AI Technical Summary

Technical Problem

Existing hydrogen-rich spray products have separate electrolysis and spraying functions, requiring manual venting during use, which causes the spraying to malfunction. Furthermore, there is a problem where excessive pressure after electrolysis can lead to atomizing plate failure.

Method used

A hydrogen-rich spraying machine was designed, which integrates an electrolysis device, a solenoid valve, a water pump, a spraying device, and a water level sensor. By controlling the water flow and the water level sensor, the atomizing plate is ensured to work normally after electrolysis. The exhaust structure is eliminated, and the operation is automated.

Benefits of technology

The system automates the operation of the spray device after electrolysis, eliminating the need for manual venting, ensuring the stability of the spray function and the normal atomization of water, and solving the problem of atomizing plate failure caused by excessive pressure after electrolysis.

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Abstract

The present application relates to the technical field of sprayer, and belongs to the IPC classification number A47G19 / 22, in particular to a hydrogen-rich spray integrated machine. The cup cover comprises a top cover and a shell, and the top cover and the shell are sequentially connected from top to bottom; the top cover and the shell are connected to form the shell interior. The shell interior is provided with an electrolysis device and an electrolysis fixing support; the electrolysis device is connected with the electrolysis fixing support; the electrolysis spray cavity is further provided with a solenoid valve, a water pump, a spray device, a battery and a control panel; the spray device is provided with an atomizing piece, which can stably convert hydrogen-rich water into spray; the spray device is connected with the control panel through a circuit to realize the control of the spray device, so that the spray device can stably work. The hydrogen-rich spray integrated machine in the present application does not have an exhaust structure, and no exhaust is needed during electrolysis; after electrolysis is completed, the atomizing piece can also work normally under a certain pressure.
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Description

Technical Field

[0001] This invention relates to the field of sprayer technology, belonging to the IPC classification number A47G19 / 22, and particularly to a hydrogen-rich sprayer integrated machine. Technical Background

[0002] As people's living standards improve, after satisfying their basic needs, they begin to pursue a healthy and comfortable life. Hydrogen-rich water is water with a high hydrogen content. It is usually obtained by water electrolysis. Hydrogen-rich water can react with some harmful free radicals to maintain the body's health balance. It can also reduce the oxidation of cells by free radicals and delay the aging process. Using hydrogen-rich water as a spray can better moisturize the skin.

[0003] To meet people's needs, there are currently hydrogen-rich spray products on the market. However, the spraying and electrolysis functions of these products are separate. The spraying can be used directly, but after electrolysis, manual venting is required before the spraying will work. Patent CN109965628A provides a hydrogen-rich water cup with a hydrogen-rich water spraying function. However, although the cup has the function of hydrogen-rich spraying, the electrolysis and spraying devices are located at opposite ends of the cup. This means that the spraying will not work if venting is not performed after electrolysis. Summary of the Invention

[0004] To address the aforementioned end-of-life issues, this invention provides a hydrogen-rich sprayer, comprising a cup lid and a cup body.

[0005] The cup lid includes a top cover and an outer shell; the top cover and the outer shell are connected sequentially from top to bottom; the top cover and the outer shell are connected to form the interior of the outer shell.

[0006] An electrolysis device and an electrolysis fixing bracket are installed inside the outer shell; the electrolysis device is connected to the electrolysis fixing bracket; preferably, the electrolysis device is connected to the electrolysis fixing bracket by fasteners.

[0007] Examples of fasteners include screws, studs, bolts, and bolts. In some embodiments, the fastener is a screw.

[0008] The electrolysis device is fixed to the inside of the outer shell by an electrolysis fixing bracket.

[0009] The electrolysis device has two electrolysis plates fixedly installed; an ion membrane is disposed between the two electrolysis plates; and a silicone cover is installed under the electrolysis plates.

[0010] Installing a silicone cover leaves water between the electrolysis plate and the silicone cover to prevent the ion exchange membrane from drying out and to keep the ion exchange membrane in a wetted state, thus preventing electrolysis from failing when consumers use the hydrogen-rich spray machine for the first time.

[0011] The bottom of the outer casing is provided with a water inlet A.

[0012] By inverting the hydrogen-rich spray machine, water can directly contact the electrolysis device, thus causing electrolysis.

[0013] The housing also houses a solenoid valve, a water pump, a spray device, a battery, and a control board. The spray device contains an atomizing plate that can stably convert hydrogen-rich water into a spray. The spray device is connected to the control board via wiring to control the spray device, enabling it to operate stably.

[0014] The battery and solenoid valve are respectively connected to the control board; preferably, the solenoid valve and the water pump are installed at the same horizontal position inside the housing.

[0015] In this invention, the opening and closing of the water flow and the magnitude of the flow can be effectively controlled by components such as water pumps and solenoid valves.

[0016] The water pump has a through hole B on its side wall; the solenoid valve is connected to a solenoid valve inlet pipe and a solenoid valve outlet pipe; the through hole B is connected to the solenoid valve outlet pipe; hydrogen-rich water can enter the water pump through the solenoid valve inlet pipe, the solenoid valve outlet pipe, and the through hole B.

[0017] The water pump is equipped with a water pump pipe; the water pump is connected to the control board.

[0018] The side wall of the spray device is provided with an atomizing chamber that communicates with the spray device; the atomizing chamber is connected to the water pump through the atomizing chamber inlet pipe, and hydrogen-rich water enters the atomizing chamber through the atomizing chamber inlet pipe.

[0019] The atomizing chamber is equipped with a water level sensor.

[0020] In this invention, the amount of water in the cavity is controlled by a water sensor, thereby ensuring that the spraying device can work continuously and normally under a certain pressure.

[0021] The outer casing has a through hole A; the spray device is located at through hole A, so that the spray can be smoothly sprayed out when the user uses it.

[0022] A switch is provided on the outer casing; the switch is connected to the control board, and the user can control whether the hydrogen-rich water is atomized through the switch;

[0023] The control panel is also equipped with lights. The hydrogen-rich spray device can generate lights during electrolysis. Preferably, the lights are tri-color lights, that is, the hydrogen-rich spray device can emit three different colors of light during electrolysis.

[0024] There is no limit to the number of lights; for example, it can be 1, 2, 3, 4, 5, etc.

[0025] The charging electrodes of the battery are connected to the top cover;

[0026] The top cover is provided with a hydrogen-oxygen separation drainage hole; the hydrogen-oxygen separation drainage hole is connected to the electrolysis device.

[0027] The cup body includes a cup body body, which is connected to the bottom of the outer shell; a sealing ring is provided at the connection between the cup body body and the bottom of the outer shell to increase the sealing performance of the connection.

[0028] The cup body serves as a container for storing water.

[0029] The cup body can be made of materials such as glass or PP. In some embodiments, the cup body is made of glass.

[0030] The working principle of the hydrogen-rich spray integrated machine of the present invention is as follows:

[0031] When using the hydrogen-rich spray atomizer, it should be used upside down. During the electrolysis hydrogen production process, the solenoid valve closes to cut off the water flow, preventing pressure generated during electrolysis from being transmitted to the spray device and causing the atomizing plate to malfunction. After electrolysis is complete, you can directly open the connection between the cup body and the bottom of the outer shell to drink the hydrogen-rich water, or you can turn on the atomization function via a switch. When the atomization function is turned on, the water level sensor activates. If the water level is low, the solenoid valve and water pump start working. The hydrogen-rich water enters from inside the cup body through the solenoid valve and then flows into the atomization chamber through the water pump. When the water level reaches the preset height, the solenoid valve and water pump close. The activation and deactivation of the solenoid valve and water pump are controlled by the water level sensor. The hydrogen-rich water inside the atomization chamber remains at the water level sensor level and will not overflow.

[0032] The beneficial effects of the hydrogen-rich spray integrated machine of the present invention include: by adding components such as solenoid valves, water pumps, atomizing chambers and water level sensors, the problems of atomizing plates not working due to excessive pressure inside the cup after electrolysis and the possible leakage of water in the atomizing chamber are effectively solved. Compared with the prior art, the hydrogen-rich spray integrated machine of the present invention does not have an exhaust structure. During the electrolysis process, exhaust is not required. After electrolysis, the atomizing plates can also work normally under a certain pressure. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the external structure of a hydrogen-rich spray integrated machine in Example 1;

[0034] Figure 2 This is a schematic diagram of the external structure of the cup lid of a hydrogen-rich sprayer in Example 1;

[0035] Figure 3 This is a schematic diagram of the internal structure of the casing of a hydrogen-rich spray integrated machine in Example 1.

[0036] The components are as follows: 1. Cup lid; 2. Top cover; 3. Outer shell; 5. Electrolysis device; 6. Electrolysis fixing bracket; 7. Screw; 8. Electrolysis plate; 9. Silicone cover; 10. Water inlet A; 11. Solenoid valve; 12. Water pump; 13. Spray device; 14. Battery; 15. Control board; 16. Atomizing chamber; 17. Switch; 18. Through hole A; 19. Solenoid valve inlet pipe; 20. Solenoid valve outlet pipe; 21. Charging electrode; 22. Hydrogen-oxygen separation drain hole; 23. Atomizing chamber inlet pipe; 24. Cup body; 25. Sealing ring. Detailed Implementation

[0037] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The described embodiments are only some embodiments of the present invention, and the present invention is not limited to the following embodiments.

[0038] Example 1 :like Figure 1-3As shown, a hydrogen-rich sprayer includes a cup lid 1 and a cup body; the cup lid 1 includes a top cover 2 and a shell 3; the top cover 2 and the shell 3 are connected sequentially from top to bottom; the top cover 2 and the shell 3 form the interior of the shell after being connected; an electrolysis device 5 and an electrolysis fixing bracket 6 are installed inside the shell; the electrolysis device 5 is connected to the electrolysis fixing bracket 6 by screws 7; the fastener is the screw 7; the electrolysis device 5 is fixed to the bottom of the shell by the electrolysis fixing bracket 6; two electrolysis plates 8 are fixedly installed on the electrolysis device 5; an ion membrane is provided between the two electrolysis plates 8; a silicone cover 9 is installed at the bottom of the electrolysis plates 8; a water inlet A10 is provided on the bottom of the shell; a solenoid valve 11, a water pump 12, a sprayer 13, a battery 14, and a control board 15 are also installed inside the shell; The spray device 13 is equipped with an atomizing plate, which can stably convert hydrogen-rich water into a spray. The spray device 13 is connected to the control board 15 via wiring to control the spray device 13, enabling stable operation. The battery 14 and the solenoid valve 11 are respectively connected to the control board 15. The solenoid valve 11 and the water pump 12 are installed at the same horizontal position in the electrolytic spray chamber. The side wall of the water pump 12 has a through hole B. The solenoid valve 11 is connected to the solenoid valve inlet pipe 19 and the solenoid valve outlet pipe 20. The through hole B is connected to the solenoid valve outlet pipe 20. Hydrogen-rich water can enter the water pump 12 through the solenoid valve inlet pipe 19, the solenoid valve outlet pipe 20, and the through hole B. The water pump 12 is equipped with a water pump pipe and is connected to the control board 15. The side wall is provided with an atomizing chamber 16 connected to the spray device 13; the atomizing chamber 16 is connected to the water pump 12 through the atomizing chamber water inlet pipe 23, and hydrogen-rich water enters the atomizing chamber 16 through the atomizing chamber water inlet pipe 23; the atomizing chamber 16 is provided with a water level sensor; the outer shell is provided with a through hole A18; the spray device 13 is located at the through hole A, so that the spray can be smoothly sprayed out when the user uses it; a switch 17 is provided on the outer shell; the switch 17 is connected to the control board 15, and the user can control whether the hydrogen-rich water is atomized through the switch 17; a lamp is also installed on the control board 15; the lamp is a tri-color lamp; the number of lamps is 3; the charging electrode 21 of the battery 14 is connected to the top cover 2; the top cover 2 has a hydrogen-oxygen separation drain hole 22; the hydrogen-oxygen separation drain hole 22 is connected to the electrolysis device 5; the cup body includes a cup body 24, the cup body 24 It is connected to the bottom of the outer shell; a sealing ring 25 is provided at the connection between the cup body 24 and the bottom of the outer shell to increase the sealing of the connection; the cup body 24 serves as a container for storing water; the material of the cup body 24 is glass.

[0039] When using the hydrogen-rich spray machine, it should be used upside down. During the electrolysis hydrogen production process, the solenoid valve 11 closes to cut off the water flow, preventing pressure generated during electrolysis from being transmitted to the spray device 13 and causing the atomizing plate to malfunction. After electrolysis is complete, you can directly open the connection between the cup body and the bottom of the outer shell to drink the hydrogen-rich water, or you can turn on the atomization function via switch 17. When the atomization function is turned on, the water level sensor is activated. If the water level is low, the solenoid valve 11 and the water pump 12 start working. The hydrogen-rich water enters the solenoid valve 11 from inside the cup body 24 and then enters the atomization chamber 16 through the water pump 12. When the water level reaches the preset height, the solenoid valve 11 and the water pump 12 close. The activation and deactivation of the solenoid valve 11 and the water pump 12 are controlled by the water level sensor detecting the water level. The hydrogen-rich water inside the atomization chamber 16 is always at the water level sensor level and will not overflow.

Claims

1. A hydrogen-rich spray integrated machine, characterized in that, The cup includes a lid and a body; the lid includes a top cover and an outer shell, which are connected sequentially from top to bottom; the top cover and the outer shell are connected to form the interior of the outer shell; the body includes a main body, which is connected to the bottom of the outer shell; the interior of the outer shell contains an electrolysis device and an electrolysis fixing bracket; The housing also houses a solenoid valve, a water pump, a spraying device, a battery, and a control board. The spraying device is connected to the control board via wiring to control the spraying device. The battery and the solenoid valve are respectively connected to the control board. The spray device is equipped with an atomizing plate; The water pump has a through hole B on its side wall; the solenoid valve is connected to a solenoid valve inlet pipe and a solenoid valve outlet pipe; the through hole B is connected to the solenoid valve outlet pipe. The side wall of the spraying device is provided with an atomizing chamber that communicates with the spraying device; the atomizing chamber is connected to the water pump through the atomizing chamber inlet pipe; A sealing ring is provided at the connection between the cup body and the outer shell to increase the sealing performance of the connection. The top cover has a hydrogen-oxygen separation drainage hole; the hydrogen-oxygen separation drainage hole is connected to the electrolysis device.

2. The hydrogen-rich spray integrated machine according to claim 1, characterized in that, The water pump is equipped with a water pump pipe, and the water pump is connected to the control board.

3. The hydrogen-rich spray integrated machine according to claim 1, characterized in that, The atomizing chamber is equipped with a water level sensor.

4. The hydrogen-rich spray integrated machine according to claim 1, characterized in that, A switch is provided on the outer casing; the switch is connected to the control board; the charging electrode of the battery is connected to the top cover.

5. The hydrogen-rich spray integrated machine according to claim 1, characterized in that, The top cover has a hydrogen-oxygen separation drainage hole; the hydrogen-oxygen separation drainage hole is connected to the electrolysis device.

Citation Information

Patent Citations

  • Hydrogen-rich cup with hydrogen-rich water mist function

    CN109965628A

  • Cosmetic hydrogen-rich water atomizer and operating method thereof

    CN106309107A

  • Portable oxyhydrogen breathing machine

    CN213048783U

  • Hydrogen-rich spraying all-in-one machine

    CN216777676U