Ion fog generator, ion nursing comb and electric appliance
The ion mist generator comb addresses the inefficiencies of conventional tools by integrating a mist and ion generation system to produce high-speed, high-concentration oxidizing ion mist for effective scalp and hair care.
Patent Information
- Application Number
- CN202422033409.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing comb has a single function and cannot meet the needs of head care, and the existing electrolytic cell structure is difficult to efficiently generate oxidized ion mist for personal care.
An ion mist generator is designed, including atomizing assembly and an ion generator, through which the water is atomized and converted from the ion generator into an oxidized ion water mist is achieved, combined with a comb to achieve clean care of the scalp and hair follicles.
It achieves efficient production of oxidized ion water mist while combing hair, cleansing scalp and hair follicles, improving the head care effect, and oxidized ions are environmentally friendly and healthy.
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Figure CN223109458U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of household appliances. Background Art
[0002] The head skin is the foundation of hair health. All kinds of hair problems, such as itchy scalp, dandruff, hair loss, premature graying, etc., are closely related to the health of the head skin. Combs are commonly used in people's daily lives. They can not only comb hair but also massage the scalp. Most of the existing combs are composed of a comb handle and comb teeth, with single functions and cannot meet the needs of many people for head care.
[0003] The existing electrolytic cell structure is usually composed of an anode, a cathode, and a membrane in the middle that plays a role in proton exchange. Using water or aqueous electrolyte as raw materials, an aqueous solution containing ozone, hydroxyl radicals, and other oxidation ions can be prepared through an electrolysis device, and the oxidation ion mist can be adapted to more application scenarios and is suitable for fields such as personal care. Summary of the Utility Model
[0004] Based on the above-mentioned problems, it is necessary to provide an ion mist generator and an ion care comb including the ion mist generator.
[0005] The ion mist generator includes a housing, the housing is formed with an atomization chamber and an ion generation chamber, an atomization component is arranged in the atomization chamber, and an ion generator is arranged in the ion generation chamber;
[0006] The atomization chamber is communicated with a water inlet, and the atomization chamber is communicated to the ion generation chamber;
[0007] The atomization component is used to atomize the water body in the atomization chamber;
[0008] The ion generator is used to convert the water mist into an oxidation ion water mist.
[0009] In one embodiment, the atomization component includes a porous material and an ultrasonic atomization sheet, and one end of the porous material abuts against the ultrasonic atomization sheet.
[0010] In one embodiment, the porous material is any one of a porous metal material, a porous inorganic non-metal material, a porous material, and a porous ceramic.
[0011] In one embodiment, the atomization component is a gas-liquid two-fluid atomization generator, and the water body and the airflow collide and atomize in the gas-liquid two-fluid atomization generator.
[0012] In one embodiment, the atomization component is a low-temperature evaporation atomizer.
[0013] In one embodiment, the atomization component is a high-pressure spray generator.
[0014] In one embodiment, the ion generator includes a first electrode, an electrolyte membrane, and a second electrode stacked in sequence.
[0015] In one embodiment, the electrode material of the first electrode and / or the second electrode is conductive silicon, conductive diamond, or one of titanium, platinum, lead, tantalum, iridium, palladium or its oxide.
[0016] In one embodiment, an air blowing component is further included, and the air blowing component includes an air pump and an air flow channel. The air pump supplies air to the atomization chamber or the ion generating chamber through the air flow channel.
[0017] In one embodiment, the outlet of the air flow channel is arranged toward the atomization assembly.
[0018] An ion care comb comprises the ion mist generator described in any one of the above items.
[0019] In one embodiment, it also includes a comb body and comb teeth, the comb teeth are connected to the comb body, a side of the comb body connected to the comb teeth is provided with a plurality of mist outlet holes, a water tank and the ion mist generator are arranged in the comb body, the water tank is connected to the atomization chamber, and the ion generating chamber is connected to the mist outlet holes.
[0020] In one embodiment, the diameter of the mist outlet hole gradually increases toward the comb teeth.
[0021] An electrical appliance comprises the ion mist generator described in any one of the above items.
[0022] The beneficial effects of the utility model are:
[0023] In the ion mist generator, the atomization component is used to atomize the water in the atomization chamber, and the water mist is guided to the ion generating chamber. The ion generator is used to convert the water mist into oxidized ion water mist. Compared with the water body, the low-resistance water mist as a raw material can flow through the ion generator more efficiently, with a high flow rate, and the total water flow rate is greatly improved. The water mist particles have a large specific surface area and can fully contact the ion generator. The reaction rate is fast, the conversion rate is high, and it can pass through the ion generator quickly, and the ion water mist is produced more efficiently.
[0024] The ion mist generator is applied to the ion comb (or other electrical appliances). When the user combs the hair, oxidizing ion mist is sprayed out, which cleans the scalp and hair follicles while combing and massaging the hair. The oxidizing ions are environmentally friendly and healthy, and the user can use the ion comb to take good care of the hair. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can also be obtained based on these drawings.
[0026] Figure 1 It is a schematic structural diagram of an ion fog generator of an embodiment.
[0027] Figure 2 It is a schematic structural diagram of an ion fog generator of another embodiment.
[0028] Figure 3 It is a schematic structural diagram of a nursing comb including an ion fog generator of an embodiment. Detailed implementation manners
[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0030] As Figure 1 、 Figure 2 and Figure 3 shown, it is an ion fog generator of a preferred embodiment of the present invention. The housing forms an atomization chamber 5 and an ion generation chamber 8. An atomization assembly 4 is arranged in the atomization chamber 5, and an ion generator 6 is arranged in the ion generation chamber 8. The atomization chamber 5 is communicated with a water inlet, and the atomization chamber 5 is communicated to the ion generation chamber 8. The atomization assembly is used to atomize the water body in the atomization chamber. The ion generator 6 is used to convert the water mist into oxidized ion water mist.
[0031] In this embodiment, the atomization assembly 4 is used to atomize the water body in the atomization chamber 5, and the water mist is guided to the ion generation chamber 8. The ion generator 6 is used to convert the water mist into oxidized ion water mist. Compared with the water body, the water mist with low resistance can flow through the ion generator 6 more efficiently as a raw material. The flow rate is high, the total water flow is greatly increased, and the specific surface area of the water mist particles is large, which can fully contact the ion generator 6, the reaction rate is fast, the conversion rate is high, and it can quickly pass through the ion generator 6 to more efficiently produce ion water mist.
[0032] In order to efficiently generate water mist, in one embodiment, as Figure 3As shown, the atomization component includes a porous material 41 and an ultrasonic atomization sheet 42, and one end of the porous material 41 abuts against the ultrasonic atomization sheet 42. Specifically, water is guided to the atomization chamber 5, the porous material 41 is arranged in the atomization chamber 5, one end of the porous material 41 abuts against the ultrasonic atomization sheet 42, and the water in the atomization chamber 5 is transmitted to the ultrasonic atomization sheet 42 through the porous material 41 to ensure the atomization efficiency. Among them, water molecules can be transmitted forward through the porous material 41, while air bubbles in the water will be blocked by the porous material 41 or cut into smaller air bubbles, so that the ultrasonic atomization sheet 42 can generate finer water mist, generate water mist particles with a large specific surface area, can fully contact the ion generator 6, improve the reaction rate and conversion rate, and increase the ion concentration of the water mist.
[0033] In one embodiment, the porous material 41 is any one of a porous metal material, a porous inorganic non-metal material, a porous material 41, and a porous ceramic. For example, materials such as a porous titanium film 62, a porous semiconductor, porous graphite, plant fibers, cloth, and wet water paper that can block / cut air bubbles.
[0034] Preferably, in one embodiment, the porous material 41 is a cotton swab for absorbing water, and one end of the cotton swab for absorbing water abuts against the ultrasonic atomization sheet 42. During the oscillation process of the ultrasonic atomization sheet 42, the cotton swab for absorbing water abutting against the ultrasonic atomization sheet 42 can give a reaction force to the ultrasonic atomization sheet 42 during the oscillation process to help the ultrasonic atomization sheet 42 clean dirt.
[0035] In order to efficiently generate water mist, in one embodiment, as Figure 1 shown, the atomization component is a gas-liquid two-fluid atomization generator. Specifically, the gas-liquid two-fluid atomization generator is provided with an air inlet 43 and a water inlet 44. Water is introduced through the water inlet 44, and high-speed air flow is introduced through the air inlet 43. The water and the air flow collide and atomize in the gas-liquid two-fluid atomization generator. The gas-liquid two-fluid atomization generator is provided with a mist outlet 45, and the water mist generated after the collision is ejected from the mist outlet 45.
[0036] In order to efficiently generate water mist, in one embodiment, as Figure 2 shown, the atomization component is a high-pressure spray generator. The high-pressure spray generator includes a high-pressure pump and a nozzle 46. The liquid is pressurized by the high-pressure pump and sent into the nozzle 46. Under the action of high-pressure spraying, the liquid is fully mixed with the surrounding air, and the liquid is dispersed into tiny droplet particles to form water mist.
[0037] In one embodiment, as Figure 3As shown, it further includes a gas injection assembly, and the gas injection assembly includes an air pump 51 and an air flow channel 52. The air pump 51 supplies gas to the atomization chamber 5 or the ion generation chamber 8 through the air flow channel 52. Specifically, for example, the outlet of the air flow channel 52 is arranged towards the atomization assembly, that is, wind pressure is applied to the atomization assembly, so that the water mist can quickly transfer from the surface of the atomization sheet towards the direction of the ion generator 6, avoiding the retention of water mist on the surface of the atomization sheet, improving the product transfer efficiency, thereby improving the generation efficiency, and enabling the continuous and efficient production of ion mist.
[0038] In order to generate a water body / water mist with oxidation ions, in one embodiment, as Figures 1 - 3 shown, the ion generator 6 includes a first electrode 61, an electrolyte membrane 62, and a second electrode 63 stacked in sequence. The electrolyte membrane 62 is a proton exchange membrane 62 (Proton Exchange Membrane, PEM), and its function is to provide a hydrogen ion channel, that is, H + generated at the anode migrates to the cathode through the proton exchange membrane 62, thereby increasing the reaction rate and the product generation rate. By electrolyzing water under low voltage, oxidation ions such as ozone, hypochlorous acid, and oxygen atoms are generated to disinfect the air.
[0039] In one embodiment, the electrode material of the first electrode 61 and / or the second electrode 63 is one of conductive silicon, conductive diamond, or the single element of titanium, platinum, lead, tantalum, iridium, palladium or their oxides. In one embodiment, the first electrode 61 is a cathode, and the material of the first electrode 61 can be materials such as platinum, stainless steel, and titanium. The second electrode 63 is an anode, and the material of the second electrode 63 can be one of conductive silicon, conductive diamond, or the single element of titanium, platinum, lead, tantalum, iridium, palladium or their oxides, or other conductive materials. In one embodiment, the electrode materials of the first electrode 61 and the second electrode 63 are one of conductive silicon, conductive diamond, or the single element of titanium, platinum, lead, tantalum, iridium, palladium or their oxides. The electrode conversion can be achieved by changing the current between the first electrode 61 and the second electrode 63, thereby reducing the problem of scale such as calcium carbonate adhering to the electrode surface.
[0040] This application proposes an ion care comb, as Figure 3As shown, it includes the ion mist generator described in any of the above embodiments. In one embodiment, the ion care comb includes a comb body 2, comb teeth 1, and an ion mist generator. The comb teeth 1 are connected to the comb body 2. On the surface of the comb body 2 where the comb teeth 1 are connected, a plurality of mist outlets 7 are provided. Inside the comb body 2, a water tank 3 and the ion mist generator are provided. The water tank 3 communicates with the atomization chamber 5, and the ion generation chamber 8 communicates with the mist outlets 7. That is to say, the water tank 3, the atomization chamber 5, the ion generation chamber 8, and the mist outlets 7 are arranged in sequence. The water in the water tank 3 enters the atomization chamber 5 and is converted into water mist, and then is converted into oxidized ion mist through the ion generation chamber 8 and sprayed out from the mist outlets 7. When the user combs with the comb, the oxidized ion water mist is sprayed out, cleaning the scalp and hair follicles while combing and massaging the hair, and caring for the hair. The oxidized ions are environmentally friendly, healthy, and have no toxic side effects.
[0041] Among them, for example, a water injection port is provided on the comb body 2, and water is injected into the water tank 3 through the water injection port. Among them, the water tank 3 can be formed inside the comb body 2 (integrally formed or fixedly installed), or the water tank 3 is detachably arranged on the comb body 2, and the water tank 3 can be detached to inject water inward.
[0042] In one embodiment, as Figure 3 shown, the aperture diameter of the mist outlet 7 gradually increases in the direction close to the comb teeth 1. During the process of the water mist diffusing outward from the ion generator 6, the aperture channel it passes through becomes larger, enabling it to be sprayed out in a larger range to care for the hair.
[0043] This application also provides an electrical appliance, including the ion mist generator described in any of the above embodiments.
[0044] It should be understood that a control circuit board and a battery are also provided inside the ion care comb / electrical appliance. For example, an independent working chamber is further included inside the ion care comb / electrical appliance, and the control circuit board and the battery are arranged in the working chamber. The water pump and the ion generator 6 are electrically connected to the control circuit board.
[0045] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as within the scope described in this specification.
[0046] The above-described embodiments merely represent several implementation manners of the present utility model. The description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all fall within the protection scope of the present utility model. Therefore, the protection scope of the present utility model patent shall be subject to the appended claims.
Claims
1. Ion fog generator, characterized in that, It includes a housing, in which an atomization chamber and an ion generation chamber are formed. An atomization assembly is arranged in the atomization chamber, and an ion generator is arranged in the ion generation chamber; The atomization chamber is communicated with a water inlet and is communicated to the ion generation chamber; The atomization assembly is used for atomizing the water body in the atomization chamber; The ion generator is used for converting the water mist into oxidized ion water mist.
2. The ion fog generator according to claim 1, wherein The atomization assembly includes a porous material and an ultrasonic atomization sheet, and one end of the porous material abuts against the ultrasonic atomization sheet.
3. The ion fog generator according to claim 2, wherein, The porous material is any one of porous metal materials, porous inorganic non-metal materials, porous materials and porous ceramics.
4. The ionic fog generator according to claim 1, characterized in that, The atomization assembly is a gas-liquid two-fluid atomization generator.
5. The ion fog generator according to claim 1, wherein The atomization assembly is a high-pressure spray generator.
6. The ion fog generator according to claim 1, wherein, The ion generator includes a first electrode, an electrolyte membrane and a second electrode which are stacked in sequence.
7. The ion fog generator according to claim 6, characterized in that, The electrode material of the first electrode and / or the second electrode is one of conductive silicon, conductive diamond, or the simple substance of titanium, platinum, lead, tantalum, iridium, palladium or their oxides.
8. The ion fog generator according to claim 1, characterized in that, It further includes a gas blowing assembly, which includes an air pump and an air flow channel. The air pump supplies air to the atomization chamber or the ion generation chamber through the air flow channel.
9. The ion fog generator according to claim 8, wherein The outlet of the air flow channel is arranged towards the atomization assembly.
10. The ionic care comb is characterized in that, It includes the ion mist generator according to any one of claims 1-9.
11. The ionic care comb according to claim 10, wherein It further includes a comb body and comb teeth. The comb teeth are connected to the comb body. A plurality of mist outlets are formed on the surface of the comb body where the comb teeth are connected. A water tank and the ion mist generator are arranged in the comb body. The water tank is communicated with the atomization chamber, and the ion generation chamber is communicated with the mist outlets.
12. The ionic care comb according to claim 11, wherein, The radial direction of the mist outlets gradually increases towards the direction close to the comb teeth.
13. An electrical appliance, characterized in that, It includes the ion mist generator according to any one of claims 1-9.