CN211512621U - Multifunctional hydrogen generator - Google Patents

Multifunctional hydrogen generator Download PDF

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Publication number
CN211512621U
CN211512621U CN201922201945.0U CN201922201945U CN211512621U CN 211512621 U CN211512621 U CN 211512621U CN 201922201945 U CN201922201945 U CN 201922201945U CN 211512621 U CN211512621 U CN 211512621U
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unit
hole
hydrogen
water storage
storage unit
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CN201922201945.0U
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Chinese (zh)
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叶明祥
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Vision Technology Co ltd
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Vision Technology Co ltd
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Abstract

A multi-functional hydrogen generator, comprising: the body, be equipped with the lid unit of a plurality of holes on the body and the inside water storage unit that is equipped with of body, hydrogen unit and control switch, and be equipped with the atomizing unit in the water storage unit, wherein hydrogen unit, atomizing unit and control switch all with the processing unit electric connection who locates the body, and control switch is whether hydrogen and aqueous vapor that control water storage unit has simultaneously by corresponding hole blowout or export to the accessory, consequently works as the utility model discloses a during multi-functional hydrogen generator function, not only can release hydrogen and aqueous vapor simultaneously and supply user's skin to absorb, also can release hydrogen under the state that does not release aqueous vapor and supply the user to absorb to internal or carry out other applications, and provide multiple mode and let the user select according to its demand.

Description

Multifunctional hydrogen generator
Technical Field
The utility model relates to a multi-functional hydrogen generator, in particular to multi-functional hydrogen generator with multiple modes for the user to use.
Background
Medical methods for treating human diseases using Hydrogen (Hydrogen) have been studied and proven to be effective in many medical and health care fields. Meanwhile, modern people have a busy life and a tight mood, and need to find various methods for relaxing the mood and improving the energy, however, one of the methods widely used in recent years is that a user absorbs, drinks or absorbs hydrogen generated by electrolyzing water molecules by a water element machine.
However, most of the water machines on the market today have only a single function, such as: the conventional water machine cannot meet the requirements of users and consumes money because the conventional water machine needs to be added with a plurality of water machines with different functions when the users have multiple requirements.
In view of the above, the inventor of the present invention has been diligent in research and thinking for many years and has designed a multifunctional hydrogen generator in order to improve the deficiency of the known technology and further enhance the industrial application.
SUMMERY OF THE UTILITY MODEL
The main objective of the present invention is to provide a multifunctional hydrogen generator, which not only can release hydrogen and water vapor simultaneously for the skin absorption of the user, but also can release hydrogen under the state of not releasing water vapor for the user to absorb to the body or to perform other applications, therefore, the utility model discloses have multiple modes for the user to select, and then achieve the efficacy of one machine for multiple purposes, let the user need not consume a large amount of money and purchase the equipment with multiple different functions.
Therefore, in order to achieve the above objects, the present invention provides a multifunctional hydrogen generator, comprising: the upper part of the body is provided with a cover body unit which is provided with a first hole and a second hole; the water storage unit is arranged in the body, communicated with the first hole and used for adding an external water source into the water storage unit, connected to the second hole through a first pipeline, and provided with a connecting end, wherein the tail end of the first pipeline protrudes out of the second hole and is provided with at least one fitting part with a corresponding connecting end; the hydrogen production unit is arranged in the body and is connected with the water storage unit through a water inlet pipeline so as to enable water stored in the water storage unit to flow to the hydrogen production unit for electrolytic reaction to generate hydrogen, and the hydrogen production unit is connected with the water storage unit through a gas outlet pipeline so as to enable the hydrogen generated by the hydrogen production unit to flow into the water storage unit; the atomization unit is arranged in the water storage unit and atomizes the water stored in the water storage unit into water vapor; the control switch is arranged in the body and is used for controlling hydrogen and water vapor in the water storage unit to be sprayed out from the first hole or outputting the hydrogen to the accessory through the second hole; wherein, the hydrogen production unit, the atomization unit and the control switch are all electrically connected with a processing unit arranged on the body.
In the multifunctional hydrogen generator, the first hole is further provided with a nozzle structure.
The multifunctional hydrogen generator as described above, wherein the fitting is a tubular structure.
The multifunctional hydrogen generator is characterized in that the tail end of the tubular structure is further provided with a tooth die, and the tooth die is provided with a plurality of air holes.
The multifunctional hydrogen generator as described above, wherein a bubble generator is further disposed at the end of the tubular structure.
In the above multifunctional hydrogen generator, the cover unit further comprises a plug.
The multifunctional hydrogen generator described above has a pressure sensing unit disposed in the water storage unit, and the pressure sensing unit is electrically connected to the processing unit for detecting the gas pressure in the water storage unit.
The multifunctional hydrogen generator is characterized in that the body is further provided with a setting unit, and the setting unit is electrically connected with the processing unit.
In the above-mentioned multifunctional hydrogen generator, the cover unit further has a third hole, and a material supplying box is disposed in the third hole and is connected to the third hole, and the material supplying box is used for supplying a material.
In the multifunctional hydrogen generator, a pump unit is further disposed in the body and connected to the water storage unit and/or the third hole through an air-blowing pipeline, and the pump unit is electrically connected to the processing unit.
When the water storage unit is connected to the third hole through the second pipeline, the pump unit is communicated with the water storage unit through the pumping pipeline.
In the above multifunctional hydrogen generator, the cover unit has a cover plate corresponding to the first hole, the second hole and the third hole.
Drawings
FIG. 1 is a schematic perspective view of the multi-functional hydrogen generator of the present invention;
FIG. 2 is a partial cutaway perspective view of the multi-functional hydrogen generator of the present invention;
FIG. 3 is a schematic diagram of a block of the multi-functional hydrogen generator of the present invention;
fig. 4A is a schematic view of a first embodiment of the multifunctional hydrogen generator of the present invention;
FIG. 4B is a schematic view of a second embodiment of the multi-functional hydrogen generator of the present invention;
fig. 4C is a schematic view of a third embodiment of the multifunctional hydrogen generator of the present invention;
fig. 4D is a schematic view of a fourth embodiment of the multifunctional hydrogen generator of the present invention;
fig. 4E is a schematic view of a fifth embodiment of the multifunctional hydrogen generator of the present invention;
fig. 5 is a schematic view of the multifunctional hydrogen generator of the present invention, illustrating the plug body covering the first hole.
In the above drawings, the reference numerals have the following meanings:
10 main body
11 cover unit
111 first hole
112 second hole
113 third hole
114 liftable cover plate
115 plug body
12 water storage unit
121 connection end
13 hydrogen production unit
14 atomizing unit
15 control switch
16 processing unit
17 setting unit
18 pump unit
19 pressure sensing unit
20 fittings
21 tooth mould
22 bubble generator
30 shower nozzle structure
40 feeding box
Detailed Description
The following describes an embodiment of the present invention with reference to fig. 1 to 5. The description is not intended to limit the embodiments of the present invention, but is one example of the embodiments of the present invention, and in the drawings and the examples, the same or similar reference numbers refer to the same, substantially the same, or functionally the same parts and elements throughout the drawings. The drawings are in a simplified form and, in all embodiments, are not drawn to precise scale.
First, please refer to fig. 1-3, the present invention provides a multifunctional hydrogen generator, comprising: a main body 10, a cover unit 11 is disposed on the upper portion of the main body 10, the cover unit 11 has a first hole 111 and a second hole 112; a water storage unit 12 disposed inside the body 10 and connected to the first hole 111 for adding an external water source to the water storage unit 12, wherein the water storage unit 12 is connected to the second hole 112 through a first pipe, and the end of the first pipe protrudes out of the second hole 112 and has a connection end 121 for connecting at least one fitting (not shown) having a corresponding connection end; a hydrogen-producing unit 13 disposed inside the body 10 and connected to the water storage unit 12 through a water inlet pipeline, so that water stored in the water storage unit 12 flows to the hydrogen-producing unit 13 for an electrolytic reaction to produce hydrogen, the hydrogen-producing unit 13 is connected to the water storage unit 12 through a gas outlet pipeline, so that hydrogen produced by the hydrogen-producing unit 13 flows into the water storage unit 12; an atomizing unit 14 disposed inside the water storage unit 12, wherein the atomizing unit 14 atomizes the water stored in the water storage unit 12 into water vapor; and a control switch 15 disposed inside the main body 10 for controlling the hydrogen and water vapor in the water storage unit 12 to be simultaneously sprayed out from the first hole 111 or the hydrogen is output from the second hole 112 to the fitting (not shown); wherein, the hydrogen generating unit 13, the atomizing unit 14 and the control switch 15 are all electrically connected to a processing unit 16 disposed on the body 10. Therefore, the utility model discloses a multi-functional hydrogen generator not only can release hydrogen and aqueous vapor simultaneously and supply user's skin to absorb, also can release hydrogen under the state that does not release aqueous vapor and supply the user to absorb to internal or carry out other applications.
Next, please refer to fig. 4A to 4E, which are schematic diagrams of the first to fifth embodiments of the present invention. The detailed description is as follows:
as shown in fig. 4A, when the user selects the "spray" mode through a setting unit 17 (as shown in fig. 3) electrically connected to the processing unit 16, the hydrogen generating unit 13 performs an electrolysis reaction and sends the generated hydrogen to the water storage unit 12, and the atomizing unit 14 disposed in the water storage unit 12 atomizes the water stored in the water storage unit 12 into water vapor, and at the same time, the control switch 15 controls the hydrogen and the water vapor in the water storage unit 12 to be sprayed out from the first hole 111 and the spray head structure 30 for the skin (such as facial skin, hand skin, etc.) of the user to absorb, thereby achieving the effect of beautifying or relieving pressure, or serving as an environment humidity increasing function. The setting unit 17 can be designed as a user interface on the main body 10, such as a touch screen, a physical button, etc.
In addition, as shown in fig. 4B to 4D, the connection end 121 is connected to the fitting 20 having a corresponding connection end, and the fitting 20 is a tubular structure, when the user selects the "hydrogen discharge" mode through a setting unit 17 electrically connected to the processing unit 16, the hydrogen generation unit 13 performs an electrolysis reaction and sends the generated hydrogen to the water storage unit 12, and the control switch 15 controls the hydrogen in the water storage unit 12 to be output to the fitting 20 through the second hole 112, because the atomization unit 14 disposed in the water storage unit 12 is not operated, the water in the water storage unit 12 is not output. However, the user can not only select the tubular structure with different curvatures, thicknesses and materials to assemble according to his needs, but also choose to directly place the end of the tubular structure into the container for containing drinks (as shown in fig. 4B) to provide the user with drinks with hydrogen, or further place a tooth mold 21 (as shown in fig. 4C) or a bubble generator 22 (as shown in fig. 4D) at the end of the tubular structure, when the tooth mold 21 is placed at the end of the tubular structure, since the tooth mold 21 is provided with a plurality of air vents 211, the user can place the tooth mold 21 into the mouth to absorb hydrogen; when the end of the tubular structure is provided with the bubble generator 22, the bubble generator 22 can be placed in a container containing water, so that a user can clean vegetables and fruits in the container or can generate bubbles for other purposes.
In addition, referring to fig. 2 and fig. 4E, the cover unit 11 further has a third hole 113, and a supply box 40 is disposed on the third hole 113 and is communicated with the third hole 113, and the supply box 40 is used for disposing a material, such as perfume, essence, or any material capable of emitting gas and being inhaled by human body.
However, in order to effectively eject the hydrogen and moisture in the water storage unit 12 from the first hole 111, effectively output the hydrogen in the water storage unit 12 from the second hole 112, and effectively emit the odor of the material from the supply box 40, a pump unit 18 (as shown in fig. 3) is further disposed in the body 10, wherein the pump unit 18 is connected to the water storage unit 12 and/or the third hole 113 through an air outlet pipeline. Therefore, when the user selects the "smell" mode through a setting unit 17 electrically connected to the processing unit 16, the pump unit 18 operates to deliver air to the supply box 40 through the third hole 113, and then to eject the smell together with the air, so that the user can absorb the smell from the material. Moreover, in order to allow the user to absorb hydrogen while absorbing odor, the "odor" mode and the "spray" mode are selected simultaneously, so that the hydrogen and the moisture sprayed from the first holes 111 are mixed with the odor in the air; or, the water storage unit 12 is connected to the third hole through the second pipeline, and at this time, the user only needs to select the "smell" mode through a setting unit 17 electrically connected to the processing unit 16, and then the pump unit 18 is operated to transport the hydrogen gas in the water storage unit 12 to the supply box 40 through the air, and then the smell is ejected together with the air and the hydrogen gas, so that the user can absorb the smell and the hydrogen gas at the same time.
Finally, referring to fig. 5, the cover unit 11 further has a plug 115 for sealing the first hole 111 to ensure that no hydrogen gas escapes from the first hole 111 when the "hydrogen discharge" mode is selected. When the spray mode is selected, the plug 115 can be fitted over the connection end 121. However, in order to avoid the situation that the user forgets to remove the plug 115 combined with the first hole 111 or the connection end 121 when selecting the "spray" mode, and thus the gas pressure in the water storage unit 12 is too high and is damaged by explosion, a pressure sensing unit 19 (as shown in fig. 3) electrically connected to the processing unit 16 is disposed in the water storage unit 12 for detecting the gas pressure in the water storage unit 12, and if the detected gas pressure is too high, the operation is stopped immediately.
In addition, the cover unit 11 is provided with a liftable cover 114 corresponding to the first hole 111, the second hole 112 and the third hole 113, respectively, and the liftable cover 114 can be covered when not in use, and when in use, a user can lift the corresponding liftable cover 114 according to a selected mode.
The utility model provides a multi-functional hydrogen generator really, not only can release hydrogen and aqueous vapor simultaneously and supply user's skin to absorb, also can release hydrogen under the state that does not release aqueous vapor and supply the user to absorb to internal or carry out other applications, consequently the utility model discloses have multiple mode and can supply the user to select, and then reach the efficiency of a tractor serves several purposes, let the user need not to consume the equipment of a large amount of money additional purchase multiple different functions.

Claims (12)

1. A multifunctional hydrogen generator, comprising:
the upper part of the body is provided with a cover body unit which is provided with a first hole and a second hole;
the water storage unit is arranged in the body, communicated with the first hole and used for adding an external water source into the water storage unit, connected to the second hole through a first pipeline, and provided with a connecting end, wherein the tail end of the first pipeline protrudes out of the second hole and is provided with at least one fitting part with a corresponding connecting end;
the hydrogen production unit is arranged in the body and is connected with the water storage unit through a water inlet pipeline so as to enable water stored in the water storage unit to flow to the hydrogen production unit for electrolytic reaction to generate hydrogen, and the hydrogen production unit is connected with the water storage unit through a gas outlet pipeline so as to enable the hydrogen generated by the hydrogen production unit to flow into the water storage unit;
the atomization unit is arranged in the water storage unit and atomizes the water stored in the water storage unit into water vapor; and
the control switch is arranged in the body and is used for controlling hydrogen and water vapor in the water storage unit to be sprayed out from the first hole or outputting the hydrogen to the accessory through the second hole;
wherein, the hydrogen production unit, the atomization unit and the control switch are all electrically connected with a processing unit arranged on the body.
2. The multi-functional hydrogen generator of claim 1, wherein the first hole is further provided with a nozzle structure.
3. A multi-functional hydrogen generator according to claim 1 wherein the fitting is of a tubular configuration.
4. A multi-functional hydrogen generator according to claim 3 wherein the tubular structure is further provided at its distal end with a tooth mold having a plurality of ventilation holes.
5. A multi-functional hydrogen generator according to claim 3 wherein the tubular structure is further provided at its distal end with a bubble generator.
6. A multi-functional hydrogen generator according to claim 1 wherein the cover unit is further provided with a plug.
7. The multifunctional hydrogen generator according to claim 6, wherein a pressure sensing unit is disposed in the water storage unit, and the pressure sensing unit is electrically connected to the processing unit for detecting the gas pressure in the water storage unit.
8. The multifunctional hydrogen generator according to claim 1, wherein the body further comprises a setting unit, and the setting unit is electrically connected to the processing unit.
9. A multi-functional hydrogen generator according to any one of claims 1-8, wherein the cover unit further has a third hole, and a supply box is disposed on the third hole and is connected to the third hole, and is used to contain a material.
10. A multi-functional hydrogen-generating machine according to claim 9, wherein a pump unit is further provided in the body and connected to the water storage unit and/or the third hole via an air-blowing pipe, and the pump unit is electrically connected to the processing unit.
11. The multifunctional hydrogen generator according to claim 10, wherein when the water storage unit is connected to the third hole through the second pipeline, the pump unit is connected to the water storage unit through the pumping pipeline.
12. The multifunctional hydrogen generator according to claim 9, wherein the cover unit has a cover plate corresponding to the first hole, the second hole and the third hole.
CN201922201945.0U 2019-12-10 2019-12-10 Multifunctional hydrogen generator Active CN211512621U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922201945.0U CN211512621U (en) 2019-12-10 2019-12-10 Multifunctional hydrogen generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922201945.0U CN211512621U (en) 2019-12-10 2019-12-10 Multifunctional hydrogen generator

Publications (1)

Publication Number Publication Date
CN211512621U true CN211512621U (en) 2020-09-18

Family

ID=72445073

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922201945.0U Active CN211512621U (en) 2019-12-10 2019-12-10 Multifunctional hydrogen generator

Country Status (1)

Country Link
CN (1) CN211512621U (en)

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