CN218530453U - Ozone catalytic elimination device and plasma beauty instrument - Google Patents
Ozone catalytic elimination device and plasma beauty instrument Download PDFInfo
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- CN218530453U CN218530453U CN202222295709.1U CN202222295709U CN218530453U CN 218530453 U CN218530453 U CN 218530453U CN 202222295709 U CN202222295709 U CN 202222295709U CN 218530453 U CN218530453 U CN 218530453U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/20—Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
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Abstract
The utility model relates to a beauty instrument technical field discloses an ozone catalytic elimination device and plasma beauty instrument including this ozone catalytic elimination device. Wherein, ozone catalytic elimination device includes: updraft ventilator, catalytic unit, heating device and cooling device, updraft ventilator's air inlet end is used for being linked together with the ionization chamber of plasma beauty instrument, updraft ventilator's air-out end is linked together with catalytic unit, updraft ventilator can be with the ozone pump that the ionization chamber produced to catalytic unit, catalytic unit is used for catalyzing ozone into oxygen, heating device can heat ozone, cooling device is linked together with catalytic unit is inside, cooling device can cool off oxygen. The utility model provides an ozone catalytic elimination device can change the ozone that plasma beauty instrument during operation produced into oxygen, so effectively avoided ozone to cause the condition emergence of injury to operator and beauty person's health.
Description
Technical Field
The utility model relates to a beauty instrument technical field especially relates to an ozone catalytic elimination device and plasma beauty instrument.
Background
The plasma beauty instrument mainly uses a plasma generator to ionize air (mainly oxygen) to generate plasma, and uses the plasma to beautify. However, the plasma generator generates plasma and ozone gas, which causes discomfort to the operator and the beauty person, and causes harm to the operator and the beauty person after being in the environment for a long time.
Therefore, how to avoid the ozone from harming the body of the operator and the beauty-care person is a problem to be solved urgently by those skilled in the art.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides an ozone catalytic elimination device and plasma beauty instrument comprising the ozone catalytic elimination device, which can avoid the damage of ozone to the bodies of operators and beauty workers.
In order to achieve the above object, the utility model provides a following scheme:
the utility model provides an ozone catalytic elimination device, include: updraft ventilator, catalytic unit, heating device and cooling device, updraft ventilator's air inlet end is used for being linked together with the ionization chamber of plasma beauty instrument, updraft ventilator's air-out end with catalytic unit is linked together, updraft ventilator can with the ozone pump that the ionization chamber produced extremely catalytic unit, catalytic unit be used for with ozone catalysis becomes oxygen, heating device can be right ozone heats, cooling device with the inside being linked together of catalytic unit, cooling device can be right oxygen cools off.
Preferably, catalytic unit includes first shell and porous catalysis structure, porous catalysis structure set up in inside the first shell, updraft ventilator with cooling device respectively with the both ends of first shell are linked together, porous catalysis structure adopts and to be able to with ozone catalysis becomes the catalytic material of oxygen makes, just porous catalysis structure has a plurality of tunnels, each the both ends in tunnel equally divide respectively with the both ends of first shell set up relatively.
Preferably, the porous catalytic device is of a honeycomb structure.
Preferably, the catalytic material is manganese oxide.
Preferably, the heating device is disposed inside the first housing.
Preferably, the heating device is a heating pipe.
Preferably, ozone catalytic elimination device still includes control element, ozone concentration detection device, wind speed detection device and temperature-detecting device, ozone concentration detection device set up in the ionization chamber, ozone concentration detection device is used for detecting in the ionization chamber the concentration of ozone, the ionization chamber is linked together through exhaust pipe and catalytic unit, updraft ventilator set up in on the exhaust pipe, wind speed detection device is used for detecting the inside wind speed of exhaust pipe, temperature-detecting device is used for detecting the inside temperature of first shell, ozone concentration detection device wind speed detection device temperature-detecting device updraft ventilator and heating device all with control element communication connection.
Preferably, the control element is a circuit board.
Preferably, the cooling device includes a second housing, heat exchange metal fins and a ventilation fan, a heat exchange pipe is disposed inside the second housing, the heat exchange pipe is communicated with the catalytic device, the heat exchange metal fins are in contact with the heat exchange pipe to exchange heat with the heat exchange pipe, an air inlet and an air outlet communicated with the inside of the second housing are disposed on the second housing, the ventilation fan is disposed at the air outlet, and the ventilation fan is configured to discharge air inside the second housing.
The utility model also provides a plasma beauty instrument, include ozone catalytic elimination device, still include main part and plasma generator, the main part is provided with the ionization chamber, plasma generator set up in the ionization chamber, ozone catalytic elimination device updraft ventilator's air inlet end with the ionization chamber is linked together.
The utility model discloses for prior art gain following technological effect:
the utility model provides an ozone catalytic elimination device, include: the air inlet end of the air draft device is used for being communicated with an ionization cavity of the plasma beauty instrument, the air outlet end of the air draft device is communicated with the catalytic device, the air draft device can pump ozone generated by the ionization cavity to the catalytic device, the catalytic device is used for catalyzing the ozone into oxygen, the heating device can heat the ozone, the cooling device is communicated with the inside of the catalytic device, and the cooling device can cool the oxygen.
The plasma generator of the plasma beauty instrument is arranged in the ionization cavity, and one end of the ionization cavity, which is contacted with the skin of a beauty person, is opened. When the plasma beauty instrument works, the open end of the ionization cavity of the plasma beauty instrument is abutted against the skin of a beauty person, the ionization cavity is sealed, the plasma generator ionizes air in the ionization cavity to generate plasma and ozone, the ozone catalytic elimination device is started while the plasma beauty instrument works, the air exhaust device of the ozone catalytic elimination device can pump gas in the ionization cavity to the catalytic device, the ozone contained in the gas is converted into oxygen under the catalytic action of the catalytic device and the heating of the heating device, and the oxygen is cooled by the cooling device and then discharged. By converting ozone into oxygen, the condition that ozone damages the bodies of operators and beauty workers is effectively avoided.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural diagram of an ozone catalytic elimination device provided in an embodiment of the present invention.
The reference numerals in fig. 1 illustrate: 100. an ozone catalytic elimination device; 1. an air extraction duct; 2. an air draft device; 3. a first housing; 4. a porous catalytic structure; 5. a heating device; 6. a cooling device; 7. a control element; 8. an ozone concentration detection device; 9. a wind speed detection device; 10. skin; 11. a plasma generator; 12. a plasma duct; 1201. an ionization chamber.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
The utility model aims at providing an ozone catalytic elimination device and including this ozone catalytic elimination device's plasma beauty instrument that can avoid ozone to cause the injury to operator and beauty person's health.
In order to make the above objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the detailed description.
Referring to fig. 1, the present embodiment provides an ozone catalytic eliminating apparatus 100, which includes: the ozone generating device comprises an air draft device 2, a catalytic device, a heating device 5 and a cooling device 6, wherein an air inlet end of the air draft device 2 is used for being communicated with an ionization cavity 1201 of the plasma beauty instrument, an air outlet end of the air draft device 2 is communicated with the catalytic device, the air draft device 2 can pump ozone generated by the ionization cavity 1201 to the catalytic device, the catalytic device is used for catalyzing the ozone to oxygen, the heating device 5 can heat the ozone, the decomposition speed of the ozone is rapidly accelerated along with the rise of temperature under the gaseous condition, the decomposition speed of the ozone is in direct proportion to the temperature, the cooling device 6 is communicated with the inside of the catalytic device, and the cooling device 6 can cool the oxygen. When the plasma beauty instrument works, the open end of the ionization cavity 1201 of the plasma beauty instrument is abutted against the skin 10 of a beauty person, the ionization cavity is sealed, the plasma generator 11 ionizes the air in the ionization cavity 1201 to generate plasma and ozone, the ozone catalytic elimination device is started while the plasma beauty instrument works, the air exhaust device 2 of the ozone catalytic elimination device 100 can pump the gas in the ionization cavity 1201 to the catalytic device, the ozone contained in the gas is converted into oxygen under the catalytic action of the catalytic device and the heating of the heating device 5, and the oxygen is cooled by the cooling device 6 and then discharged. By converting ozone into oxygen, the condition that ozone damages the bodies of operators and beauty workers is effectively avoided.
In other preferred embodiments, as shown in fig. 1, the catalytic device includes a first housing 3 and a porous catalytic structure 4, the porous catalytic structure 4 is disposed inside the first housing 3, the air draft device 2 and the cooling device 6 are respectively communicated with two ends of the first housing 3, the porous catalytic structure 4 is made of a catalytic material capable of catalyzing ozone into oxygen, and the porous catalytic structure 4 has a plurality of pore channels, and two ends of each pore channel are respectively disposed opposite to two ends of the first housing 3. During use, ozone enters the channels and is catalyzed by the porous catalytic structure 4 into oxygen gas during passage through the channels.
Further, the porous catalytic device is a honeycomb structure.
Further, the catalytic material is manganese oxide. It should be noted that the catalytic material is not limited to manganese oxide, but may be any other material capable of catalyzing ozone into oxygen.
In other preferred embodiments, the heating means 5 are arranged inside the first housing 3. How the heating means 5 are arranged inside the first housing 3 in particular depends on the actual need.
In other preferred embodiments, the heating device 5 is a heating tube. It should be noted that the heating device 5 is not limited to the heating device 5, and may be any other device capable of heating gas.
In other preferred embodiments, as shown in fig. 1, the catalytic ozone elimination apparatus 100 further includes a control element 7, an ozone concentration detection device 8, a wind speed detection device 9, and a temperature detection device, the ozone concentration detection device 8 is disposed in the ionization chamber 1201, the ozone concentration detection device 8 is used for detecting the concentration of ozone in the ionization chamber 1201, the ionization chamber 1201 is communicated with the catalytic apparatus through the ventilation duct 1, the ventilation apparatus 2 is disposed on the ventilation duct 1, the wind speed detection device 9 is used for detecting the wind speed inside the ventilation duct 1, the temperature detection device is used for detecting the temperature inside the first housing 3, and the ozone concentration detection device 8, the wind speed detection device 9, the temperature detection device, the ventilation apparatus 2, and the heating device 5 are all in communication connection with the control element 7.
During specific work, ozone concentration detection device 8 will detect ozone concentration information transfer to control element 7, wind speed detection device 9 is used for the wind speed information transfer to control element 7 that will detect, heating device 5 transmits the inside temperature information of first shell 3 that detects to control element 7, control element 7 adjusts updraft ventilator 2's convulsions wind speed (1 inside wind speed of draft pipeline) and heating device 5's heating temperature according to ozone concentration information, and through wind speed detection device 9 and temperature-detecting device respectively to updraft ventilator wind speed and the inside temperature real-time supervision of first shell 3.
Further, the control element 7 is a circuit board. It should be noted that the control element 7 is not limited to be a circuit board, and may be other control structures, such as a controller. As to how the circuit board internal circuit sets up belongs to prior art, and does not belong to the utility model discloses the key of protection, the event is no longer repeated here.
Further, the ozone concentration detecting device 8 is an ozone concentration sensor, the wind speed detecting device 9 is a wind speed sensor, and the temperature detecting device is a temperature sensor.
In other preferred embodiments, the cooling device 6 includes a second housing, a heat exchange metal fin and a ventilation fan, the second housing is internally provided with a heat exchange pipe, the heat exchange pipe is communicated with the catalytic device, the heat exchange metal fin is in contact with the heat exchange pipe to exchange heat with the heat exchange pipe, the second housing is provided with an air inlet and an air outlet communicated with the interior of the second housing, the ventilation fan is arranged at the air outlet, and the ventilation fan is used for exhausting air in the interior of the second housing. When the cooling device 6 works, outside air enters the second shell from the air inlet, and the air in the second shell after heat exchange with the heat exchange metal fins is discharged through the air outlet under the action of the ventilation fan.
Further, the cooling device 6 further comprises an air inlet fan, and the air inlet fan is arranged at the air inlet. Under the effect of air inlet fan and ventilation fan, can conveniently, exchange second shell inside air and outside air fast.
Specifically, the heat exchange metal fins are heat exchange copper fins, and the copper material has good heat conductivity, so that heat of the heat exchange pipeline can be rapidly transferred to the heat exchange metal fins.
In other preferred embodiments, the air extraction device 2 is an air extraction fan. It should be noted that the air draft device 2 is not limited to an air draft fan, and any other device capable of conveying air may be used.
It should be noted that the utility model provides an ozone catalytic elimination device 100 is not only applicable to the catalytic elimination who produces ozone in the cosmetic plasma appearance working process, still is applicable to other occasions that need be to ozone treatment, and during the specific use, the cavity that will produce ozone and updraft ventilator 2 air inlet end communicate can.
The utility model provides a plasma beauty instrument, it is shown with reference to fig. 1, this plasma beauty instrument includes ozone catalytic elimination device 100 in above-mentioned arbitrary embodiment, still includes main part and plasma generator 11, and the main part is provided with ionization chamber 1201, and plasma generator 11 sets up in ionization chamber 1201, and ozone catalytic elimination device 100's updraft ventilator 2's air inlet end is linked together with ionization chamber 1201.
Further, the main body of the plasma beauty instrument includes a plasma duct 12, and an ionization chamber 1201 is formed inside the plasma duct 12.
Further, the catalytic ozonation unit 100 is disposed on the main body. In operation, the catalytic ozonation unit 100 moves with the movement of the body.
The principle and the implementation mode of the present invention are explained by applying specific examples in the present specification, and the above descriptions of the examples are only used to help understanding the method and the core idea of the present invention; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the concrete implementation and the application scope. In summary, the content of the present specification should not be construed as a limitation of the present invention.
Claims (10)
1. An ozone catalytic elimination device, comprising: updraft ventilator, catalytic unit, heating device and cooling device, updraft ventilator's air inlet end is used for being linked together with the ionization chamber of plasma beauty instrument, updraft ventilator's air-out end with catalytic unit is linked together, updraft ventilator can with the ozone pump that the ionization chamber produced extremely catalytic unit, catalytic unit be used for with ozone catalysis becomes oxygen, heating device can be right ozone heats, cooling device with the inside being linked together of catalytic unit, cooling device can be right oxygen cools off.
2. The catalytic ozone elimination device of claim 1, wherein the catalytic device comprises a first housing and a porous catalytic structure, the porous catalytic structure is disposed inside the first housing, the air draft device and the cooling device are respectively communicated with two ends of the first housing, the porous catalytic structure is made of a catalytic material capable of catalyzing ozone into oxygen, and the porous catalytic structure has a plurality of pores, and two ends of each of the pores are equally disposed opposite to two ends of the first housing.
3. The catalytic ozonation device of claim 2, wherein the porous catalytic structure is a honeycomb structure.
4. The catalytic ozonation unit of claim 2, wherein the catalytic material is manganese oxide.
5. The catalytic ozonation unit of claim 2, wherein the heating unit is disposed within the first housing.
6. The catalytic ozone elimination device of claim 1 or 5, wherein the heating device is a heating pipe.
7. The catalytic ozone elimination device of claim 5, further comprising a control element, an ozone concentration detection device, a wind speed detection device and a temperature detection device, wherein the ozone concentration detection device is disposed in the ionization chamber, the ozone concentration detection device is used for detecting the concentration of ozone in the ionization chamber, the ionization chamber is communicated with the catalytic device through a wind suction pipeline, the wind suction device is disposed on the wind suction pipeline, the wind speed detection device is used for detecting the wind speed in the wind suction pipeline, the temperature detection device is used for detecting the temperature in the first shell, and the ozone concentration detection device, the wind speed detection device, the temperature detection device, the wind suction device and the heating device are all in communication connection with the control element.
8. The catalytic ozone elimination device of claim 7, wherein the control element is a circuit board.
9. The catalytic ozone elimination device of claim 1, wherein the cooling device comprises a second housing, a heat exchange metal fin, and a ventilation fan, the second housing is provided with a heat exchange pipe inside, the heat exchange pipe is communicated with the catalytic device, the heat exchange metal fin is in contact with the heat exchange pipe to exchange heat with the heat exchange pipe, the second housing is provided with an air inlet and an air outlet communicated with the second housing inside, the ventilation fan is provided at the air outlet, and the ventilation fan is used for exhausting gas inside the second housing.
10. A plasma beauty instrument, characterized in that, it comprises the ozone catalytic elimination device of any claim 1-9, also comprises a main body and a plasma generator, the main body is provided with an ionization chamber, the plasma generator is arranged in the ionization chamber, the air intake end of the air draft device of the ozone catalytic elimination device is communicated with the ionization chamber.
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CN202222295709.1U CN218530453U (en) | 2022-08-30 | 2022-08-30 | Ozone catalytic elimination device and plasma beauty instrument |
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CN202222295709.1U CN218530453U (en) | 2022-08-30 | 2022-08-30 | Ozone catalytic elimination device and plasma beauty instrument |
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