CN110192975B - Nano-ion cosmetic steam generation device - Google Patents

Nano-ion cosmetic steam generation device Download PDF

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CN110192975B
CN110192975B CN201910471756.7A CN201910471756A CN110192975B CN 110192975 B CN110192975 B CN 110192975B CN 201910471756 A CN201910471756 A CN 201910471756A CN 110192975 B CN110192975 B CN 110192975B
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steam
cosmetic
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discharge
pipe
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CN110192975A (en
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唐峰
姜峰
吴泽滨
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Hangzhou Tsingke Energy Conservation And Environmental Tech Co ltd
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Hangzhou Tsingke Energy Conservation And Environmental Tech Co ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/06Artificial hot-air or cold-air baths; Steam or gas baths or douches, e.g. sauna or Finnish baths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/06Artificial hot-air or cold-air baths; Steam or gas baths or douches, e.g. sauna or Finnish baths
    • A61H2033/068Steam baths

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  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
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  • Life Sciences & Earth Sciences (AREA)
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  • General Health & Medical Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Devices For Medical Bathing And Washing (AREA)
  • Cosmetics (AREA)

Abstract

The invention relates to a nano-ion cosmetic steam generating device, which mainly comprises a steam channel, a middle electrode, a discharge electrode group, a channel outlet and a cosmetic liquid atomizing unit; wherein, the middle electrode and the discharge electrode group jointly form a nanometer water ion steam manufacturing unit for manufacturing nanometer water ion steam; a beauty fluid atomizing unit for producing beauty fluid vapor; the high voltage is applied to the discharge electrode group, a strengthened high-voltage electric field can be formed between the discharge electrode group and the middle electrode, crude steam enters the steam channel from the channel inlet, is ionized and refined into nano-ion cosmetic steam by the nano-water ion steam manufacturing unit after being mixed with cosmetic liquid steam and is sprayed out from the channel outlet, or the crude steam is ionized and refined into nano-water ion steam by the nano-water ion steam manufacturing unit and is mixed with the cosmetic liquid steam or alternatively acts on a user object for cosmetic care.

Description

Nano-ion cosmetic steam generation device
Technical Field
The invention relates to a nano-ion beauty steam generating device, belongs to the field of beauty care, and particularly relates to the field of beauty care for manufacturing nano-water ion mist by adopting a high-voltage electric field.
Background
Beauty is one of the eternal subjects of good life, beauty and skin care become indispensable parts in daily life of most people, various skin care products are produced, however, how to really exert the efficacy of the skin care products is worthy of more attention.
The key to the efficacy of skin care products is how to promote the efficient absorption of skin care products. The nanometer water ion steam has the advantages of high biological activity and active negative oxygen ion content, small particle size, strong penetrability, high-efficiency cleaning, sterilization, disinfection, water replenishing and beauty treatment and the like, and gradually becomes a research hotspot in the fields of beauty treatment, recuperation and nursing.
A reference (application number 201810521592.X) provides a graphene nano steam generating device and a cosmetic instrument, which can realize the generation of refined steam or nano steam, but mainly has the following two defects:
(1) insufficient production of reducing particles: the reference generates reducing particles only by the intermediate conductor, and the amount of generation is limited.
(2) Lack of ability to efficiently treat cosmetic liquids: the comparison document lacks a necessary cosmetic liquid atomization device, and cannot well produce nano-ion cosmetic steam.
Aiming at the defects, the invention provides a device which is deep in cleaning, can efficiently replenish water and can promote the efficient absorption of beauty skin care products, and the research content of the invention is provided.
Disclosure of Invention
The invention provides a nano-ion cosmetic steam generating device for making up the defects of the prior art.
The technical scheme adopted by the invention is as follows:
a nanometer ion cosmetic steam generating device comprises a nanometer water ion steam manufacturing unit, a nanometer water ion steam manufacturing unit and a nanometer water ion steam generating unit, wherein the nanometer water ion steam manufacturing unit comprises a discharge electrode group and a middle electrode, the discharge electrode group comprises a pair of discharge electrodes which are separated by a certain distance, and the middle electrode is arranged in the middle of the discharge electrode group and is separated by a certain distance; the cosmetic liquid atomization unit is arranged on the shell of the nano-ion cosmetic steam generation device, or the cosmetic liquid atomization unit is independently arranged outside the nano-ion cosmetic steam generation device; the outlet end of the beauty fluid atomization unit is provided with an atomization outlet, and the inlet end of the beauty fluid atomization unit is provided with a beauty fluid replenishing box.
Further, the atomization outlet is arranged at the upper part or the lower part of the nanometer water ion steam manufacturing unit.
Further, the cosmetic steam generating device further comprises an insulating fixing part, wherein the insulating fixing part is fixedly penetrated on the outer side wall of the shell of the cosmetic steam generating device with the nano ions.
Furthermore, the peripheries of the discharge electrodes are all laid with insulating water-proof layers and respectively comprise a discharge part and a reduction conductor; the reduction conductor is embedded in the insulation fixing part, one end of the reduction conductor is electrically connected with the discharge part, and the other end of the reduction conductor is electrically connected with a high-voltage power supply; the end of the discharge part, which points to the middle electrode, is a discharge end, the discharge end protrudes out of the insulating water-resisting layer, and the reduction conductor is flush with or protrudes out of the discharge end or has a certain distance with the discharge end.
Furthermore, the discharge part is made of a plurality of corrosion-resistant conductors which are easy to excite positive ions and negative ions.
Further, all or a part of the reduction conductor near the discharge end is made of reducing metal or alloy to ionize and excite anti-aging nano-scale reducing metal particles.
Further, the middle electrode and the discharge electrode group are perpendicular to each other or on the same straight line.
Further, all or a part of the middle electrode close to the discharge electrode group is made of reducing metal or alloy to ionize and excite anti-aging nanometer reducing metal particles.
The cosmetic steam generating device further comprises a steam channel, the steam channel is surrounded by the inner wall of the shell of the cosmetic steam generating device with the nano ions, a channel outlet communicated with the steam channel is formed in the upper end of the steam channel, and a channel inlet communicated with the steam channel is formed in the lower end of the steam channel.
Further, the beauty fluid atomization unit comprises an air inlet pipe, a reducing pipe, a vaporization pipe and an atomization nozzle; the pipe diameter of the reducing pipe is gradually reduced along the air flow direction, one end of the large pipe diameter of the reducing pipe is communicated with the outlet end of the air inlet pipe, one end of the small pipe diameter of the reducing pipe is communicated with the inlet end of the vaporizing pipe, the pipe diameter of the vaporizing pipe is far smaller than the pipe diameter of the air inlet pipe, the inlet end of the air inlet pipe is connected with an air pump, the atomizing nozzle is arranged at the outlet end of the vaporizing pipe, the outlet end of the atomizing nozzle is provided with an atomizing outlet, and the vaporizing pipe is communicated with the beauty fluid replenishing tank.
By adopting the technical scheme, the method has the following beneficial effects:
the invention relates to a nano-ion cosmetic steam generating device, which comprises a nano-water ion steam manufacturing unit consisting of a discharge electrode group and a middle electrode, wherein the nano-water ion steam manufacturing unit is used for manufacturing nano-water ion steam; a beauty fluid atomizing unit for producing beauty fluid vapor; the discharge electrode group is applied with high voltage, a strengthened high-voltage electric field can be formed between the discharge electrode group and the middle electrode, crude steam enters the steam channel from the channel inlet, is ionized and refined into nano-ion beautifying steam by the nano-water ion steam manufacturing unit after being mixed with beautifying liquid steam and is sprayed out from the channel outlet, or the crude steam is ionized and refined into nano-water ion steam by the nano-water ion steam manufacturing unit and is mixed with the beautifying liquid steam or acts on a using object alternately, so that the skin cleaning, moisturizing, whitening, skin caring, recuperation, aging resistance and the like can be used for deeply cleaning the skin, promoting the efficient absorption of the beautifying liquid and awakening the skin vitality.
Through reasonable control, can realize multiple operational mode in order to satisfy different beauty treatment needs, if:
(1) a cleaning and water replenishing mode: the beautifying liquid atomization unit is closed, the beautifying liquid is not added, only the nanometer water ion steam manufacturing unit is operated to provide nanometer water ion steam/mist, and deep cleaning and efficient water replenishing can be realized;
(2) and (3) a beauty care mode: adding cosmetic liquid (such as hyaluronic acid, etc.), simultaneously or alternately operating the cosmetic liquid atomization unit and the nanometer water ion steam production unit to produce nanometer ion cosmetic steam, permeating into the skin cuticle, promoting the efficient absorption of the cosmetic liquid, and realizing the effects of deep water replenishing, moisturizing, whitening, sterilizing, disinfecting, skin repairing, anti-aging, etc.;
(3) and (3) a nursing and maintenance mode: closing the nanometer water ion steam production unit, adding cosmetic liquid (such as hyaluronic acid, etc.), operating the cosmetic liquid atomization unit, providing cosmetic liquid steam, and caring skin.
Drawings
In order to more clearly illustrate the embodiments of the present application or technical solutions in the prior art, the drawings required in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings.
Fig. 1 is a schematic structural diagram of a nano-ion cosmetic vapor generation device in a first embodiment;
FIG. 2 is a schematic view of the structure of the discharge electrode of FIG. 1;
fig. 3 is a schematic structural diagram of a nano-ion cosmetic vapor generation device in the second embodiment.
In the figure: 1-a shell; 2-a steam channel; 3-a fixing frame; 4-an intermediate electrode; 5A-a discharge electrode; 5B-a discharge electrode; 51-a discharge portion; 52-insulating water barrier layer; 53-reduction of the conductor; 54-insulating fixing part; 6-channel outlet; 7-cosmetic liquid replenishing box; 8-cosmetic liquid atomization unit; 81-air inlet pipe; 82-a reducer; 83-a vaporization tube; 9-an atomization outlet; 10-channel entrance; 11-an atomizing unit housing; 12-fluid infusion port; 13-an air inlet; 14-a hose; 15-air pump; 151-air outlet; 152-suction inlet; 16-an atomizer; 17-cosmetic liquid communicating tube.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood, however, that the description herein of specific embodiments is only intended to illustrate the invention and not to limit the scope of the invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
The first embodiment is as follows:
referring to fig. 1 and 2, the present embodiment provides a nano-ion cosmetic vapor generation device, which includes a housing 1, a vapor channel 2, a fixing frame 3, an intermediate electrode 4, a discharge electrode group, a channel outlet 6, a cosmetic liquid supplement tank 7, a cosmetic liquid atomization unit 8, an atomization outlet 9, a channel inlet 10, and a supplement port 12.
Specifically, the discharge electrode group and the middle electrode 4 together constitute a nano water ion steam production unit, and the nano water ion steam production unit is disposed in the steam channel 2 to produce nano-scale water ion steam.
Specifically, the steam channel 2 is enclosed by the inner wall of the shell 1 of the nano-ion cosmetic steam generating device, the upper end of the steam channel 2 is provided with a channel outlet 6 communicated with the steam channel, and the lower end of the steam channel 2 is provided with a channel inlet 10 communicated with the steam channel.
Preferably, the housing 1 is made of an insulating material, and is used for communicating the crude steam supply device, the fixed cosmetic liquid atomizing device and the nano water ion steam production unit, and providing a pipeline for the circulation of the crude steam, the nano water ion steam, the cosmetic liquid steam and the nano ion cosmetic liquid steam.
Specifically, the channel inlet 10 communicates with the raw steam supply means so that raw steam flows from the channel inlet 10 into the steam channel 2.
Preferably, the raw steam supply device is a device for producing steam by high-temperature heating, and may be a device for producing steam by means of ultrasonic waves, venturi effect, electrostatic atomization, or the like.
Specifically, the beauty fluid atomization device is composed of a beauty fluid infusion tank 7, a beauty fluid atomization unit 8, an atomization outlet 9 and an infusion port 12, and is used for preliminarily atomizing beauty fluid (such as hyaluronic acid, essence, skin care lotion, toner, lyophilized powder solution, essential oil and the like).
Specifically, the beauty fluid replenishing tank 7 is disposed at an inlet end of the beauty fluid atomizing unit 8, and is used for containing and storing beauty fluid, and atomizing the beauty fluid by using high-frequency (such as more than 100kHz) vibration to produce beauty fluid vapor; the atomization outlet 9 is arranged at the outlet end of the cosmetic liquid atomization unit 8 and is communicated with the steam channel 2, and the generated cosmetic liquid steam is released into the steam channel 2 from the atomization outlet 9; the fluid infusion port 12 is used for adding the beauty fluid into the beauty fluid infusion tank 7 and sealing the beauty fluid after infusion.
Preferably, the cosmetic liquid replenishing tank 7 is detachable, and can be fixed on the shell 1 by an integral design.
Preferably, the atomization outlet 9 is disposed at a lower portion of the nano water ion vapor manufacturing unit.
Specifically, the atomization outlet 9 connected to the cosmetic liquid atomization unit 8 is disposed upstream (in the steam flow direction) of the nano water ion steam production unit, and the cosmetic liquid steam produced by the cosmetic liquid atomization unit 8 is mixed with the raw steam entering from the channel inlet 10, ionized and refined by the nano water ion steam production unit into nano ion cosmetic steam, and acts on the human body and the like.
Preferably, the atomization outlet 9 is disposed at an upper portion of the nano water ion vapor manufacturing unit.
Specifically, the atomization outlet 9 connected to the cosmetic liquid atomization unit 8 is disposed downstream (in the steam flow direction) of the nano water ion steam production unit, and the cosmetic liquid steam produced by the cosmetic liquid atomization unit 8 and the nano water ion steam produced by the nano water ion steam production unit are mixed into nano ion cosmetic steam to act on the human body and the like.
Preferably, the atomizing outlet 9 can be selected in different forms, such as a grid, a nozzle, etc., and can be disposed at different angles with respect to the housing 1.
Preferably, the atomization outlet 9 connected with the cosmetic liquid atomization unit 8 is arranged in an independent channel connected with the steam channel 2 in parallel, and the cosmetic liquid steam produced by the cosmetic liquid atomization unit 8 and the nano water ion steam produced by the nano water ion steam production unit are respectively sprayed from different channels to act on human body and the like.
Preferably, the cosmetic liquid vapor produced by the cosmetic liquid atomizing unit 8 and the nano water ion vapor produced by the nano water ion vapor producing unit can act on the human body, etc. simultaneously or alternately according to different electric control logics.
Further, the discharge electrode group includes a pair of discharge electrodes 5A and 5B spaced apart from each other, and the intermediate electrode 4 is disposed in the middle of the discharge electrode group and spaced apart from each other.
Specifically, the peripheries of the discharge electrodes 5A or 5B are respectively provided with an insulating and water-proof layer 52, and each discharge electrode comprises a discharge part 51 and a reduction conductor 53; the reduction conductor 53 is embedded in the insulation fixing part 54, one end of the reduction conductor 53 is electrically connected with the discharge part 51, and the other end of the reduction conductor 53 is electrically connected with a high-voltage power supply; the end of the discharge part 51, which points to the middle electrode 4, is a discharge end, the discharge end protrudes out of the insulating water barrier layer 52, and the reduction conductor 53 is flush with or protrudes out of the discharge end or has a certain distance with the discharge end.
Specifically, the distance of the discharge end protruding the insulating water barrier layer 52 is 0.1-2.5 mm.
Specifically, the reduction conductor 53 is flush with or protrudes from the discharge end or is spaced apart from the discharge end by 0 to 1 mm.
Further, the insulating fixing portion 54 is made of a high temperature resistant insulating material, and the reduction conductor 53 is embedded in the insulating fixing portion 54 and further fixed to the housing 1 in a penetrating manner.
Further, the insulating and water-blocking layer 52 is made of a high-temperature-resistant insulating material, such as silica gel, and is used for locally insulating and blocking the discharge electrode 5A or 5B, so as to prevent the discharge portion 51 of the discharge electrode 5A or 5B from absorbing too much water, and ensure the stability of the high-voltage electric field.
Further, the discharge portion 51 is made of a plurality of corrosion-resistant conductors, such as carbon fibers, fullerene, graphene fibers, etc., which are easy to excite positive ions and negative ions, so as to excite high-concentration positive ions or negative ions more easily, strengthen the high-voltage electric field, and maintain the continuity and stability of the high-voltage ionization electric field.
Further, all or a portion of the reduction conductor 53 near the discharge end is made of a reducing metal or alloy, such as platinum, gold, silver, zinc, titanium, etc., to ionize and excite nanometer-sized reducing metal particles with anti-aging effect, for beauty treatment and anti-aging.
Furthermore, the middle electrode 4 is a cylinder or a cone, is fixed at the center position between the discharge electrodes 5A and 5B through the fixing frame 3, is separated from the discharge electrodes 5A and 5B by a certain distance, is not electrically connected with each other, and is vertical to the discharge electrode group or on the same straight line.
Preferably, the number of the discharge electrode groups may be 1 or more.
Specifically, the fixing frame 3 is disposed in the middle of the steam channel 2, the cross-sectional shape of the fixing frame is matched with that of the steam channel 2, and the middle electrode 4 is fixedly disposed on the fixing frame 3.
Further, the fixing frame 3 is made of a high-temperature-resistant insulating material.
Furthermore, the whole or the part close to the discharge electrode group of the middle electrode 4 is made of reductive metal or alloy such as platinum, gold, silver, zinc, titanium and the like, so as to ionize and excite anti-aging nano-scale reductive metal particles for beauty treatment and anti-aging.
Preferably, the intermediate electrode 4 may not be in the same plane or at an angle with the discharge electrode group.
Preferably, the beautifying liquid is a hyaluronic acid stock solution or hyaluronic acid solution, a large amount of hyaluronic acid ion steam with nanometer particle size is produced under the ionization action of a high-voltage electric field of a nanometer water ion steam production unit, and the hyaluronic acid ion steam is easily and efficiently absorbed by skin, so that the beautifying benefit similar to that of a hyaluronic acid polishing needle is realized.
Preferably, the beauty solution is collagen stock solution or solution, and a large amount of collagen ion steam with nanometer particle size is produced under the ionization action of a high-voltage electric field of a nanometer water ion steam production unit, so that the collagen ion steam is easily and efficiently absorbed by skin, and the beauty benefit is better than that of an oral collagen preparation.
Preferably, the beauty fluid is a stock solution or solution of vitamin C, and a large amount of vitamin C ion steam with nanometer particle size is produced under the ionization action of a high-voltage electric field of a nanometer water ion steam production unit, so that the beauty fluid is not only easily and efficiently absorbed by skin, but also can obtain better gains of sterilization, disinfection, even lung cancer cell killing and the like.
Preferably, the beauty fluid can also be mineral water, reducing water, water essence, toner, freeze-dried powder solution, essence, essential oil and other beauty fluids, and can promote the efficient absorption of the beauty fluid.
Specifically, high voltage is applied to the discharge electrode group, a strengthened high-voltage electric field is formed between the discharge electrode group and the middle electrode 4, crude steam enters the steam channel 2 from the channel inlet 10, is ionized and refined into nanometer ion beautifying steam by the nanometer water ion steam manufacturing unit after being mixed with beautifying liquid steam, and is sprayed out from the channel outlet 6, or the crude steam is ionized and refined into nanometer water ion steam by the nanometer water ion steam manufacturing unit and is mixed with the beautifying liquid steam or alternatively acts on a using object to clean, replenish water, preserve moisture, whiten skin, care skin, heal, resist aging and the like, so that the skin is cleaned deeply, the beautifying liquid is promoted to be absorbed efficiently, and the skin vitality is aroused.
Example two
Referring to fig. 3, on the basis of the first embodiment, the cosmetic liquid atomizing unit 8 in this embodiment uses a venturi atomizing device to produce cosmetic liquid vapor, where the venturi atomizing device mainly includes an air inlet pipe 81, a reducing pipe 82, a vaporizing pipe 83, a hose 14, an atomizing nozzle 16 and an air pump 15; the air pump 15 includes a suction inlet 152 and an air outlet 151.
Specifically, the air pump 15 sucks air from the suction port 152, pressurizes the air, and sends the air out from the air outlet 151;
specifically, the hose 14 is made of a material such as silica gel, and is used for connecting the air outlet 151 and the air inlet pipe 81.
Specifically, the cosmetic solution supplement tank 7 and the vaporization pipe 83 are communicated through the cosmetic solution communication pipe 17.
Specifically, the atomizing nozzle 16 is communicated with the vaporizing tube 83 to spray the atomized cosmetic liquid.
Further, the venturi atomization device is arranged in the atomization unit shell 11, the atomization unit shell 11 is further provided with an air inlet 13, and the atomization unit shell 11 and the shell 1 are fixedly connected with each other.
Specifically, the diameter of the reducing pipe 82 is gradually reduced along the airflow direction, one end of the reducing pipe 82 with a large diameter is communicated with the outlet end of the air inlet pipe 81, one end of the reducing pipe 82 with a small diameter is communicated with the inlet end of the vaporizing pipe 83, and the diameter of the vaporizing pipe 83 is far smaller than that of the air inlet pipe 81; the atomizing nozzle 16 is arranged at the outlet end of the vaporizing tube 83, the outlet end of the atomizing nozzle 16 is provided with an atomizing outlet 9, and the vaporizing tube 83 is communicated with the cosmetic liquid replenishing tank 7 through a cosmetic liquid communicating tube 17 arranged on the side wall of the vaporizing tube.
Specifically, air enters the atomizing unit housing 11 through the air inlet 13, is sucked and pressurized by the air pump 15 through the suction port 152, and is sent to the air inlet pipe 81 of the cosmetic liquid atomizing unit 8 through the air outlet 151, and high-speed airflow flows through the reducing pipe 82 from the air inlet pipe 81 to the vaporizing pipe 83, and because the pipe diameter is rapidly reduced, the flow rate is greatly improved, the pressure is rapidly reduced, so that the pressure at the vaporizing pipe 83 is lower than the vaporizing pressure of the cosmetic liquid, and the cosmetic liquid is rapidly vaporized, converted into cosmetic liquid vapor/mist, and finally sprayed out from the atomizing outlet 9. Meanwhile, the cosmetic liquid is induced by the air flow to continuously enter the vaporization pipe 83 through the cosmetic liquid communication pipe 17.
Preferably, the beauty fluid replenishing tank 7 is provided with one or more so as to spray various combined beauty fluid nano small molecular mist.
Preferably, the cosmetic liquid replenishing tank 7 is detachable, and can be fixed on the atomization unit shell 11 by an integral design.
Preferably, the atomizer head 16 can be arranged in different forms, such as a grid, nozzles, etc., and can also be arranged at different angles to the atomizer unit housing 11.
Preferably, the reduction conductor 53 and the intermediate electrode 4 are both made of platinum, and the discharge electrode is made of (12K) carbon fiber bundles.
Specific experimental data are shown in table 1:
specifically, the data in the comparison file in the background art are also shown in table 1.
TABLE 1 Experimental data sheet for different types of nano-ion cosmetic steam generating devices
Figure BDA0002081011890000101
From table 1, the following conclusions can be drawn:
(1) because a pair of reduction conductors are arranged, in the first and second embodiments, under the same high voltage loading, the generation amount of the reduction particles is about 3 times of that of the device of the comparison document, and the reduction anti-aging and beautifying effects of the nano ion steam are greatly improved.
(2) Because the beauty fluid atomization unit is arranged, under the same high voltage loading, the generation amount of the nano ion steam is respectively increased by 60% and 40% compared with the generation amount of the nano ion steam of the device of the comparison document in the embodiment I and the embodiment II, the beauty fluid steam manufactured by the beauty fluid atomization unit is further ionized and refined into the nano ion beauty steam by the nano ion steam manufacturing unit (embodiment I), or is directly vaporized into the nano ion beauty steam by the Venturi atomization device (embodiment II), and the beauty fluid atomization unit not only can deeply clean and efficiently replenish water, but also can promote the efficient absorption of beauty skin care products.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are merely for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
The above is only a specific embodiment of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent substitutions or modifications made on the basis of the present invention to solve the same technical problems and achieve the same technical effects are all covered in the protection scope of the present invention.

Claims (8)

1. A nano-ion cosmetic steam generating device comprises a nano-water ion steam manufacturing unit, which comprises a discharge electrode group and a middle electrode (4), wherein the discharge electrode group comprises a pair of discharge electrodes (5A) and (5B) which are separated by a certain distance, and the middle electrode (4) is arranged in the middle of the discharge electrode group and is separated by a certain distance; the method is characterized in that: the cosmetic liquid atomization unit (8) is arranged on the shell (1) of the nano-ion cosmetic vapor generation device, or the cosmetic liquid atomization unit (8) is separately arranged outside the nano-ion cosmetic vapor generation device; the cosmetic liquid atomization device comprises a cosmetic liquid atomization unit (8), an atomization outlet (9) and an insulation fixing part (54), wherein the outlet end of the cosmetic liquid atomization unit (8) is provided with an atomization outlet (9), the inlet end of the cosmetic liquid atomization unit (8) is provided with a cosmetic liquid replenishing box (7), the insulation fixing part (54) penetrates through and is fixed on the outer side wall of a shell (1) of the nano-ion cosmetic steam generating device, an insulation water-proof layer (52) is laid on the periphery of a discharge electrode (5A) or (5B), and the discharge electrode and the insulation water-proof layer both comprise a discharge part (51) and a reduction conductor (53); wherein the reduction conductor (53) is embedded in the insulation fixing part (54), one end of the reduction conductor (53) is electrically connected with the discharge part (51), and the other end of the reduction conductor (53) is electrically connected with a high-voltage power supply; the end, pointing to the middle electrode (4), of the discharge part (51) is a discharge end, the discharge end protrudes out of the insulating water-resisting layer (52), and the reduction conductor (53) is flush with or protrudes out of the discharge end or is away from the discharge end by a certain distance.
2. The cosmetic vapor generation device of claim 1, wherein: the atomization outlet (9) is arranged at the upper part or the lower part of the nanometer water ion steam manufacturing unit.
3. The cosmetic vapor generation device of claim 1, wherein: the discharge part (51) is made of a plurality of corrosion-resistant conductors which are easy to excite positive ions and negative ions.
4. The cosmetic vapor generation device of claim 1, wherein: all or a part of the reduction conductor (53) close to the discharge end is made of reducing metal or alloy so as to ionize and excite anti-aging nano-scale reducing metal particles.
5. The cosmetic vapor generation device of claim 1, wherein: the middle electrode (4) and the discharge electrode group are mutually vertical or on the same straight line.
6. The cosmetic vapor generation device of claim 1, wherein: all or the part of the middle electrode (4) close to the discharge electrode group is made of reducing metal or alloy so as to ionize and excite anti-aging nano-scale reducing metal particles.
7. The cosmetic vapor generation device of claim 1, wherein: the cosmetic steam generating device is characterized by further comprising a steam channel (2), wherein the steam channel (2) is surrounded by the inner wall of the shell (1) of the cosmetic steam generating device with the nano ions, a channel outlet (6) communicated with the steam channel (2) is formed in the upper end of the steam channel (2), and a channel inlet (10) communicated with the steam channel (2) is formed in the lower end of the steam channel (2).
8. The cosmetic vapor generation device of claim 1, wherein: the beauty fluid atomization unit (8) comprises an air inlet pipe (81), a reducing pipe (82), a vaporization pipe (83) and an atomization nozzle (16); the pipe diameter of the reducing pipe (82) is gradually reduced along the air flow direction, one end of the large pipe diameter of the reducing pipe (82) is communicated with the outlet end of the air inlet pipe (81), one end of the small pipe diameter of the reducing pipe (82) is communicated with the inlet end of the vaporizing pipe (83), the pipe diameter of the vaporizing pipe (83) is far smaller than the pipe diameter of the air inlet pipe (81), the inlet end of the air inlet pipe (81) is connected with an air pump (15), the atomizing nozzle (16) is arranged at the outlet end of the vaporizing pipe (83), the outlet end of the atomizing nozzle (16) is provided with an atomizing outlet (9), and the vaporizing pipe (83) is communicated with the beauty fluid replenishing box (7).
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