Novel atomizing hair drier

By designing a detachable atomizing hair dryer, which utilizes ultrasonic atomizing plates and infrared irradiation, the problems of dry and damaged hair and uneven application by manual application are solved, achieving a convenient combination of hair care and drying, and improving the user experience.

CN121970964AInactive Publication Date: 2026-05-05DONGGUAN CITY GREATINY ELECTRONICS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
DONGGUAN CITY GREATINY ELECTRONICS TECH CO LTD
Filing Date
2026-01-09
Publication Date
2026-05-05
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing hair dryers cause severe dryness and damage to hair after use. Manually applying hair oil is tedious and uneven. The spray device needs to be replaced entirely, which is costly and inconvenient.

Method used

Design a detachable atomizing hair dryer, comprising a detachable atomizing shell, a storage cotton, and an ultrasonic atomizing plate. The ultrasonic atomizing plate is controlled by a fan circuit board to atomize hair care oil and evenly adhere it to the hair and scalp. Combined with an infrared circuit board to provide infrared irradiation, it realizes hair care and drying functions.

Benefits of technology

It enables hair oil to adhere and be absorbed quickly and evenly, reducing manual operation, lowering replacement costs, improving user experience, and meeting different usage needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a novel atomization hair drier which comprises a hair drier body, the hair drier body comprises a fan shell, a high-speed fan, a hollow air duct and a fan circuit board, and the novel atomization hair drier further comprises at least one atomization mechanism which is longitudinally inserted into the fan shell and penetrates through the hollow air duct. The atomization mechanism comprises an atomization shell which is detachably screwed into the air duct machine shell and the hollow air duct, a storage bin formed in the atomization shell, storage cotton arranged in the middle of the storage bin, and an ultrasonic atomization piece which is arranged in the atomization shell, located at the front end of the storage cotton and electrically connected with the fan circuit board. The ultrasonic atomization piece atomizes liquid entering the storage cotton from the storage bin and blows the liquid out. Liquid such as hair care essential oil in the device can be effectively atomized, so that the liquid such as the hair care essential oil can be quickly and uniformly attached to hair and scalp and can be conveniently absorbed by the hair and the scalp, hands do not need to be dirtied, the atomization mechanism can be freely disassembled and is easy and convenient to install, liquid adding by people is facilitated, and different kinds of liquid can be conveniently replaced as a whole.
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Description

Technical Field

[0001] This invention relates to the field of hair dryer technology, and more particularly to a novel atomizing hair dryer. Background Technology

[0002] Currently, most hair dryers on the market use heating wires, with a motor creating airflow that passes over the heating wires to generate hot air, thus drying the hair. However, after using this type of hair dryer, the hair becomes very dry due to the hot air, causing significant damage to the hair quality. Manually applying hair oil to wet hair, followed by washing and drying, is a very tedious process, and manual application is not always even.

[0003] Therefore, hair dryers with atomizing functions appeared on the market. These include a hair dryer body and a spray device mounted on it. The hair dryer has an air inlet and an air outlet, and an air duct inside the body that connects to both the air inlet and outlet. A motor and guide vanes are located within the air duct, with the motor driving the guide vanes to rotate. The spray device is detachably mounted on the hair dryer body. The hair dryer body contains a main control board and retractable conductive pins. The main control board is electrically connected to the conductive pins and supplies power to the spray device through them. The spray device has a mist outlet, which is isolated from the air inlet, air outlet, and air duct. The spray device is detachably positioned at the center of the air outlet. While this spray device solves the problem of needing to apply hair serum by hand, it is generally pre-loaded with hair oil. Once the hair oil is used up, the entire spray device needs to be replaced, which is costly and inconvenient for daily use. Summary of the Invention

[0004] To address the aforementioned shortcomings, the present invention aims to provide a novel atomizing hair dryer that effectively atomizes liquids such as hair oil, allowing them to quickly and evenly adhere to the hair and scalp for easy absorption. This eliminates the need for messy hands, improving the user experience. Furthermore, the atomizing mechanism is easily detachable, making installation simple and convenient. This allows users to easily add hair oil and other liquids themselves, and also facilitates switching between different atomizing liquids, making it convenient for daily use.

[0005] The technical solution adopted by the present invention to achieve the above objectives is as follows:

[0006] A novel atomizing hair dryer includes a hair dryer comprising a fan housing, a high-speed fan disposed within the fan housing, a hollow air duct disposed within the fan housing and located at the air outlet of the high-speed fan, a fan circuit board disposed within the fan housing, and at least one atomizing mechanism longitudinally inserted into the fan housing and passing through the hollow air duct. The atomizing mechanism includes an atomizing shell detachably screwed into the fan housing and the hollow air duct, a storage chamber formed within the atomizing shell, a storage cotton disposed in the middle of the storage chamber, and an ultrasonic atomizing plate disposed within the atomizing shell at the front end of the storage cotton and electrically connected to the fan circuit board. The ultrasonic atomizing plate atomizes liquid entering the storage cotton from the atomizing shell and blows it outward.

[0007] As a further improvement of the present invention, the hair dryer also includes an infrared circuit board disposed at the lower part of the hollow air duct and electrically connected to the fan circuit board, the infrared circuit board being provided with at least one indicator light and at least one infrared lamp.

[0008] As a further improvement of the present invention, the storage chamber is T-shaped in general, including a rear cover that is snapped onto the upper end of the atomizing shell, and a cotton fixing post formed at the lower end of the rear cover. The storage cotton is placed in the cotton fixing post and its lower end protrudes out of the cotton fixing post and presses against the ultrasonic atomizing plate.

[0009] As a further improvement of the present invention, the atomizing mechanism further includes an upper cover disposed at the top of the atomizing shell and a middle cover disposed between the upper cover and the atomizing shell. The middle cover has at least one filling port, and the rear cover has at least one filling guide groove extending upward to below the filling port. The cotton fixing post has at least one guide portion. The tail end of the atomizing shell has a first atomizing outlet facing the ultrasonic atomizing plate. The storage cotton protrudes out of the first atomizing outlet. External liquid flows into the filling guide groove from the filling port and then into the atomizing shell. It then enters the storage chamber through the guide portion and is absorbed and stored by the storage cotton. The ultrasonic atomizing plate atomizes the external liquid absorbed and stored by the storage cotton and blows it out through the first atomizing outlet. The atomizing fixing post has an air guide groove with one end connected to the hollow air duct and extending laterally to the second atomizing outlet.

[0010] As a further improvement of the present invention, the guide portion is a through hole, a through groove, or a combination of the two.

[0011] As a further improvement of the present invention, it also includes at least one atomizing and fixing air guide assembly that is longitudinally inserted into the fan housing and passes through the hollow air duct. The atomizing and fixing air guide assembly includes an atomizing fixing column that is longitudinally inserted into the fan housing and passes through the hollow air duct, and an atomizing air guide member that is arranged around the lower periphery of the atomizing fixing column and connected to the hollow air duct. The atomizing mechanism is inserted into the atomizing fixing column. The inner wall of the atomizing air guide member is provided with several hollow ventilation holes surrounding the outside of the atomizing fixing column. A second atomizing outlet is formed at the lower center of the atomizing air guide member, which is directly opposite the first atomizing outlet.

[0012] As a further improvement of the present invention, it also includes at least one massage member disposed on the fan housing and directly opposite the atomizing mechanism. The massage member is radially shaped on its entire periphery. An upwardly protruding air guiding and limiting ring is formed at the middle of the upper end of the massage member, and a number of massage outlet columns located below the air guiding and limiting ring are formed in a conical shape. A massage outlet groove is formed in the middle of the massage outlet column, and a magnet is provided at the upper end of the massage member to be magnetically attracted to the fan housing.

[0013] As a further improvement of the present invention, the massage component is further provided with a light-transmitting part surrounding the massage guide column and allowing the light from the display lamp and infrared lamp to pass through.

[0014] As a further improvement of the present invention, it also includes a heating mechanism disposed at the air inlet position of the hollow air duct and electrically connected to the fan circuit board. The heating mechanism includes a heating retaining ring snapped into the air inlet position of the hollow air duct near the high-speed fan end, a heating fixing frame disposed inside the heating retaining ring and having an overall cross shape, and a heating wire disposed on the heating fixing frame and electrically connected to the fan circuit board.

[0015] The beneficial effects of this invention are as follows:

[0016] By configuring this atomizing hair dryer as a hair dryer, the hair dryer includes a fan housing, a high-speed fan disposed within the fan housing, a hollow air duct disposed within the fan housing and located at the air outlet position of the high-speed fan, a fan circuit board disposed within the fan housing, and at least one atomizing mechanism longitudinally inserted into the fan housing and passing through the hollow air duct. The atomizing mechanism includes an atomizing shell detachably screwed into the fan housing and the hollow air duct, a storage chamber formed within the atomizing shell, a storage cotton disposed in the middle of the storage chamber, and an ultrasonic atomizing plate disposed within the atomizing shell at the front end of the storage cotton and electrically connected to the fan circuit board. The atomizing mechanism has an external liquid (such as hair oil) pre-filled inside its atomizing shell. This external liquid enters a storage chamber and is temporarily stored in a storage cotton. The atomizing mechanism is inserted into the fan shell. During use, the fan circuit board controls a high-speed fan to start, generating airflow. This airflow enters the hollow air duct, with a portion entering the atomizing shell. At this time, the fan circuit board controls an ultrasonic atomizing plate to activate, atomizing the external liquid stored in the storage cotton and blowing it out of the atomizing mechanism and fan shell using the airflow. This allows the external liquid to quickly and evenly adhere to the hair and scalp, facilitating absorption without soiling hands. It dries hair while simultaneously conditioning it, improving the user experience. Another portion of the airflow is blown directly out of the fan shell through the hollow air duct. This multi-force airflow makes drying hair easier. The atomizing mechanism can be freely disassembled and installed within the hollow air duct, allowing for easy addition and replacement of the external liquid, meeting the needs of different users.

[0017] The above is an overview of the invention's technical solution. The invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0018] Figure 1 This is an overall schematic diagram of the present invention;

[0019] Figure 2 This is an exploded view of the present invention;

[0020] Figure 3 This is a cross-sectional view of the present invention;

[0021] Figure 4 This is a schematic diagram of the wind flow direction in this invention;

[0022] Figure 5 This is a schematic diagram of the atomizing mechanism;

[0023] Figure 6 This is a cross-sectional view of the atomizing mechanism;

[0024] Figure 7This is an exploded view of the atomizing mechanism;

[0025] Figure 8 This is a schematic diagram of the internal structure of a hair dryer;

[0026] Figure 9 A schematic diagram of the structure of the atomizing fixed air guide assembly;

[0027] Figure 10 A schematic diagram of the bottom surface of the atomizing fixed air guide assembly;

[0028] Figure 11 A cross-sectional view of the atomizing fixed air guide assembly;

[0029] Figure 12 This is a schematic diagram of the massage component.

[0030] Figure 13 This is a schematic diagram of the bottom surface of the massage component;

[0031] Figure 14 This is a cross-sectional view of the massage component;

[0032] Figure 15 This is a schematic diagram of the massage mounting slot.

[0033] Figure 16 This is a schematic diagram of the heating mechanism;

[0034] In the diagram: 1. Hair dryer; 11. Fan housing; 12. High-speed fan; 13. Hollow air duct; 14. Fan circuit board; 15. Infrared circuit board; 16. Light-transmitting plate; 2. Atomizing mechanism; 21. Atomizing housing; 211. First atomizing outlet; 22. Storage compartment; 221. Back cover; 2211. Adding guide groove; 222. Cotton fixing post; 2221. Guide section; 23. Storage cotton; 24. Ultrasonic atomizing plate; 25. Top cover; 26. Middle cover; 261. Adding port; 2 7. Elastic component; 28. First atomizing circuit board; 3. Atomizing fixed air guide assembly; 31. Atomizing fixed column; 311. Air guide groove; 32. Atomizing air guide component; 321. Hollow vent; 322. Second atomizing outlet; 33. Second atomizing circuit board; 4. Massage component; 41. Air guide limiting ring platform; 42. Massage outlet column; 43. Massage outlet groove; 44. Magnet; 45. Light-transmitting part; 5. Heating mechanism; 51. Heating retaining ring; 52. Heating fixing bracket; 53. Heating wire. Detailed Implementation

[0035] To further illustrate the technical means and effects adopted by the present invention to achieve the intended purpose, the specific implementation of the present invention will be described in detail below with reference to the accompanying drawings and preferred embodiments.

[0036] In the description of this invention, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0037] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0039] Please refer to Figures 1 to 16 This invention provides a novel atomizing hair dryer 1, comprising a hair dryer 1, the hair dryer 1 including a fan housing 11, a high-speed fan 12 disposed within the fan housing 11, a hollow air duct 13 disposed within the fan housing 11 and located at the air outlet position of the high-speed fan 12, a fan circuit board 14 disposed within the fan housing 11, and at least one atomizing mechanism 2 longitudinally inserted within the fan housing 11 and passing through the hollow air duct 13. The atomizing mechanism 2 includes an atomizing housing 21 detachably screwed into the fan housing and the hollow air duct 13, a storage chamber 22 formed within the atomizing housing 21, a storage cotton 23 disposed in the middle of the storage chamber 22, and an ultrasonic atomizing sheet 24 disposed within the atomizing housing 21 at the front end of the storage cotton 23 and electrically connected to the fan circuit board 14.

[0040] The atomizing mechanism 2 has an external liquid (such as hair oil) pre-filled inside its atomizing shell 21. The external liquid enters the storage cotton 23 through the storage chamber 22 and is temporarily stored there. The atomizing mechanism 2 is inserted into the fan shell 11. In use, the fan circuit board 14 controls the high-speed fan 12 to start, generating airflow. This airflow enters the hollow air duct 13, and a portion of it enters the atomizing shell 21. At this time, the fan circuit board 14 controls the ultrasonic atomizing plate 24 to start, atomizing the external liquid temporarily stored in the storage cotton 23 and allowing it to enter the atomizing shell 21. The airflow inside the blower 1 is blown out through the atomizing mechanism 2 and the blower housing 11, allowing the external liquid to quickly and evenly adhere to the hair and scalp for easy absorption. This eliminates the need for messy hands and provides hair conditioning while drying, enhancing the user experience. A portion of the airflow is blown directly out through the hollow air duct 13, providing multiple airflows for easier hair drying. The atomizing mechanism 2 can be freely disassembled and installed within the hollow air duct 13, allowing for easy removal and replacement of the external liquid, meeting the needs of different users. By placing the storage compartment 22 inside the blower 1, its capacity can be set larger. Compared to other atomizing structures on the market, it has a larger capacity, can store more liquid, and requires fewer refills, further facilitating daily use.

[0041] Preferred, such as Figures 3 to 4 , Figure 8 As shown, to facilitate better absorption of external liquids such as hair oil by the scalp, the hair dryer 1 also includes an infrared circuit board 15 located at the lower part of the hollow air duct 13 and electrically connected to the fan circuit board 14. The infrared circuit board 15 is equipped with at least one indicator light and at least one infrared lamp. The infrared rays emitted by the infrared lamp irradiate the scalp and hair strands, and their wavelength can penetrate deep into the hair shaft, helping to open the hair cuticles and making it easier for external liquids such as hair oil to be absorbed. Furthermore, the warming effect of the infrared rays can simulate professional salon heat therapy, improving hair resilience and reducing heat damage. The indicator light can be a red LED light. Conventional infrared lights are invisible to the human eye; the red LED light indicates that the infrared irradiation function is activated, allowing for precise irradiation of different areas of the scalp and hair, and also providing an ambiance for users, enhancing their user experience.

[0042] Preferred, such as Figures 3 to 4 , Figure 8 , Figure 15As shown, a light-transmitting plate 16 is provided on the fan housing 11, which is directly opposite the infrared circuit board 15. The light from the infrared lamp and the light from the indicator lamp pass through the light-transmitting plate 16 and shine on the scalp and hair, so that external liquids such as hair care oil can be better absorbed by the scalp.

[0043] Preferred, such as Figures 3 to 4 , Figure 8 , Figure 15 As shown, the length and width of the light-transmitting plate 16 are both greater than the length and width of the infrared circuit board 15, which makes it easier for the light from the infrared lamps and the display lamps on the infrared circuit board 15 to penetrate from multiple angles.

[0044] Regarding the specific structural configuration of the storage compartment 22, as follows: Figures 3 to 7 As shown, the storage chamber 22 is T-shaped and includes a rear cover 221 that is snapped onto the upper end of the atomizing shell 21, and a cotton fixing post 222 formed at the lower end of the rear cover 221. The storage cotton 23 is placed inside the cotton fixing post 222 and its lower end protrudes out of the cotton fixing post 222 and presses against the ultrasonic atomizing plate 24, thereby fixing the storage cotton 23 and preventing the storage cotton 23 from shifting and causing the external liquid to fail to atomize.

[0045] Preferred, such as Figures 3 to 7 As shown, the atomizing mechanism 2 further includes an elastic element 27, one end of which presses against the upper end of the cotton fixing post 222 and the other end of which presses against the storage cotton 23. The elastic element 27 presses the storage cotton 23 against the ultrasonic atomizing plate 24, thereby improving the atomization of the external liquid on the storage cotton 23. Preferably, the elastic element 27 is a spring, which is inexpensive, durable, and effectively reduces the production cost of the atomizing hair dryer 1, ensuring its service life.

[0046] Regarding the specific structural configuration of external liquid entering the atomizing mechanism 2, such as... Figures 3 to 7As shown, the atomizing mechanism 2 further includes an upper cover 25 disposed at the top of the atomizing shell 21, and a middle cover 26 disposed between the upper cover 25 and the atomizing shell 21. The middle cover 26 has at least one filling port 261. The rear cover 221 has at least one adding guide groove 2211 extending upward to below the adding port 261. The cotton fixing post 222 has at least one guide portion 2221. The tail end of the atomizing shell 21 has a first atomizing outlet 211 facing the ultrasonic atomizing plate 24. The storage cotton 23 protrudes from the first atomizing outlet 211. External liquid flows into the addition guide channel 2211 from the addition port 261 and then into the atomizing shell 21. It is loaded by the atomizing shell 21 and enters the storage chamber 22 via the guide section 2221, where it is partially absorbed and temporarily stored by the storage cotton 23. The ultrasonic atomizing plate 24 atomizes the external liquid absorbed and stored by the storage cotton 23 and blows it out of the hair dryer 1 through the first atomizing outlet 211, reaching the scalp and hair. This allows the external liquid to quickly and evenly adhere to the hair and scalp, facilitating absorption and eliminating the need for dirty hands. It also allows for hair conditioning while drying hair, improving the user experience. Preferably, the upper cover 25 is a silicone upper cover 25, which fits tightly onto the middle cover 26, effectively achieving a sealing effect and preventing leakage. Preferably, the side of the middle cover 26 has an inwardly recessed pull-out relief opening, which facilitates the user to insert their finger into the pull-out relief opening to pull out the upper cover 25, which is interference-fitted onto the middle cover 26, for liquid addition. This is convenient for daily use and improves the user experience. Preferably, the upper cover 25 has a plug that interferes with the addition guide groove 2211, thereby blocking the addition guide groove 2211, forming a sealed space, and preventing external liquid leakage.

[0047] Regarding the specific structural configuration of the flow guide 2221, the flow guide 2221 can be a through hole, a through groove, or a combination of both. It can be multiple sets of through holes evenly arranged on the cotton fixing column 222. External liquid inside the atomizing shell 21 enters the internal storage cotton 23 through these through holes and is temporarily stored there. The number, size, and spacing of the through holes can be set according to actual conditions to effectively control the speed at which external liquid enters the storage cotton 23 from the atomizing shell 21 and prevent overflow. Alternatively, it can be multiple sets of longitudinal through grooves. External liquid inside the atomizing shell 21 enters the internal storage cotton 23 through these through grooves and is temporarily stored there. The number, size, and spacing of the through grooves can be set according to actual conditions to effectively control the speed at which external liquid enters the storage cotton 23 from the atomizing shell 21 and prevent overflow. It can also be used in combination of through holes and through slots. For example, the upper end of the storage cotton 23 is a through slot and the lower end is a through hole. The amount of liquid entering the upper through slot is larger, and the amount entering the lower through hole is smaller, thereby effectively controlling the speed at which external liquid enters the storage cotton 23 from the atomizing shell 21, and preventing excessive external liquid from entering and causing overflow.

[0048] Regarding the specific method by which the atomizing mechanism 2 is fixed inside the hair dryer 1, such as... Figures 3 to 4 , Figures 8 to 11 , Figure 15 As shown, the atomizing blower 1 further includes at least one atomizing fixing air guide assembly 3, which is longitudinally inserted into the blower housing 11 and passes through the hollow air duct 13. The atomizing fixing air guide assembly 3 includes an atomizing fixing post 31, which is longitudinally inserted into the blower housing 11 and passes through the hollow air duct 13, and an atomizing air guide 32, which is arranged around the lower periphery of the atomizing fixing post 31 and connected to the hollow air duct 13. The atomizing housing 21 is inserted into the atomizing fixing post 31 to fix the atomizing mechanism 2. A second atomizing outlet 322 is formed at the lower middle part of the atomizing air guide 32, which is directly opposite the first atomizing outlet 211. Several intermediate air guides are provided on the inner wall of the atomizing air guide 32, which surround the atomizing fixing post 31. The air vent 321 has an air guide groove 311 on the atomizing fixing column 31, one end of which is connected to the hollow air duct 13 and extends laterally to the second atomizing outlet 322. The air flowing from the hollow air duct 13 passes through the hollow air vent 321 and is partly blown directly out of the hair dryer 1. The other part enters the atomizing fixing column 31 through the air guide groove 311 and is guided to blow out the external liquid that has been atomized on the first atomizing outlet 211 from the second atomizing outlet 322. The multi-outlet structure makes it easier to dry the hair. Furthermore, by blowing out the atomized external liquid through a concentrated second atomizing outlet 322, the atomized external liquid can be blown out more precisely to the designated location on the scalp or hair strands, which is beneficial for people to perform precise care.

[0049] Regarding the specific method by which the atomizing mechanism 2 is detachably installed on the hair dryer 1, as follows: Figure 3 and Figure 5 As shown, the atomizing shell 21 has an external thread on its exterior, and the atomizing fixing post 31 has an internal thread that matches the external thread on its inner wall. During installation, the atomizing shell 21 in the atomizing mechanism 2 is inserted into the atomizing fixing post 31 and then rotated accordingly to match the external and internal threads. The two structures of insertion and threading firmly fix the atomizing mechanism 2 in the atomizing fixing post 31, effectively preventing the atomizing mechanism 2 from detaching or shifting during use, and ensuring the normal use of this atomizing hair dryer 1.

[0050] Regarding the electrical connection method between the ultrasonic atomizing plate 24 and the blower 1, as follows: Figures 3 to 7 , Figure 11 As shown, the atomizing mechanism 2 further includes a first atomizing circuit board 28 disposed at the lower end of the atomizing shell 21 and electrically connected to the ultrasonic atomizing sheet 24. A second atomizing circuit board 33 electrically connected to the infrared circuit board 15 is disposed at the lower end of the atomizing fixing post 31. A Pogo Pin (spring probe) is disposed on the first atomizing circuit board 28 or the second atomizing circuit board 33. The Pogo Pin is pressed against the other side to realize the electrical connection between the first atomizing circuit board 28 and the second atomizing circuit board 33, thereby realizing the power supply and signal transmission of the ultrasonic atomizing sheet 24.

[0051] Preferably, the light-transmitting plate 16 has an air guide clearance groove that accommodates the atomizing air guide 32. The atomizing air guide 32 is placed in the air guide clearance groove, which facilitates the airflow from the atomizing air guide 32.

[0052] Preferred, such as Figures 1 to 4 , Figures 12 to 15As shown, to ensure the atomized liquid adheres more precisely and effectively to the hair and scalp, the atomizing hair dryer 1 also includes at least one massage element 4 disposed on the blower housing 11 and directly opposite the atomizing mechanism 2. The massage element 4 is made entirely of silicone, and its overall periphery is radially shaped, resulting in a larger overall area. This allows the airflow to more evenly blow out the atomized liquid. A guide ring 41, protruding upwards and matching the diameter of the atomizing air guide 32, is formed at the upper center of the massage element 4. Several massage guide columns 42, conical in shape and located below the guide ring 41, are formed at the lower center of the massage element 4. A massage outlet groove 43 is formed in the middle of the outlet column 42, running longitudinally through it. The air guiding and limiting ring 41 is connected to the lower end of the atomizing air guide 32, so that the air blown out of the atomizing air guide 32 is precisely concentrated within itself and can only be blown out through the massage outlet groove 43. This effectively concentrates the air force, allowing people to achieve precise care for different parts of the scalp or hair by pressing the massage piece 4 against different parts of the scalp or hair. By setting the massage outlet column 42 into a conical structure and using its silicone material, people can use the massage outlet column 42 to perform a rubbing massage when the massage piece 4 is pressed against the scalp, improving the user experience. Preferably, the upper end of the massage component 4 is provided with a magnet 44 that is magnetically adsorbed onto the transparent plate of the fan housing 11. The massage component 4 is fixed to the hair dryer 1 by the magnetic adsorption of the magnet 44 onto the transparent plate of the fan housing 11. The operation is simple and convenient, and it is easy for people to disassemble and install. Its removal does not affect the normal use of the hair dryer 1 and the atomizing mechanism 2.

[0053] Preferred, such as Figures 1 to 4 , Figures 12 to 14 As shown, the massage component 4 is also provided with a light-transmitting part 45 surrounding the massage guide column 42 and allowing the light emitted by the display lamp and infrared lamp to pass through, so that the light emitted by the display lamp and infrared lamp can reach the scalp or hair through the light-transmitting part 45, allowing external liquids such as hair care oil to be better absorbed by the scalp.

[0054] Preferred, such as Figure 15 As shown, a massage mounting groove is formed on the light-transmitting plate 16 for the massage component 4 to be inserted into. The air guide limiting ring 41 of the massage component 4 is inserted into the massage mounting groove, making the massage component 4 more securely installed and easier to use.

[0055] The massage component 4 can also be configured as a comb structure, with massage outlet grooves on its comb teeth. Air and atomized external liquid are blown out from these grooves, allowing users to comb their hair, care for their scalp, and blow-dry their hair simultaneously, achieving a multi-functional effect and facilitating user convenience. Alternatively, the massage component 4 can be an integral structure covering the entire infrared circuit board 15, with all air and atomized external liquid from the atomizing mechanism 2 exiting from this entire massage head, thus achieving a unified design that facilitates installation and use. This massage component can be configured in various structures and can be interchanged, thereby enriching the practicality of this atomizing hair dryer and meeting the needs of different users.

[0056] Preferred, such as Figures 2 to 4 , Figure 8 , Figure 16 As shown, the atomizing blower 1 also includes a heating mechanism 5 disposed at the air inlet position of the hollow air duct 13 and electrically connected to the fan circuit board 14. The heating mechanism 5 includes a heating retaining ring 51 snapped into the air inlet position of the hollow air duct 13 near the high-speed fan 12, a heating fixing frame 52 disposed inside the heating retaining ring 51 and having an overall cross shape, and a heating wire 53 disposed on the heating fixing frame 52 and electrically connected to the fan circuit board 14. By arranging the heating bracket 52 into a cross structure, the air blown by the high-speed fan 12 can enter the hollow air duct 13 through the empty part of the cross. Furthermore, by placing the heating wire 53 in the middle of the heating bracket 52, the heat emitted by the heating wire 53 can be evenly distributed in the airflow flowing through the heating bracket 52, achieving uniform heating of the airflow and meeting the different temperature requirements of different people. This further improves the practicality of the atomizing hair dryer 1. In addition, in conjunction with the infrared lamp on the infrared circuit board, it makes it easier for the hair follicles to open, resulting in better absorption.

[0057] The external liquid added to the atomizing mechanism 2 can be hair oil, hair growth agent, purified water, etc., and can be selected according to the actual situation. Preferably, the external liquid can contain 5% minoxidil, the specific composition of which can be found in patent 2018116217806. It delivers growth factors to open the blood supply to the hair follicles and maintain their healthy state. The 5% concentration can effectively promote hair growth. Compared with the commonly used 2% concentration, its efficiency can be increased by 0.65 times. Combined with the penetration technology of the foaming agent, which can be found in patent 2024104260586, its penetration rate is even higher. Compared with the first-generation minoxidil tincture, the hair growth efficiency can be increased by 50%, and the cumulative penetration amount in 24 hours increases by 18.9 times, further improving the user experience.

[0058] It should be noted that the novel atomizing hair dryer disclosed in this invention is an improvement on the specific structure, but the specific control method is not the innovation of this invention. The ultrasonic atomizing plate, circuit board, infrared lamp, LED lamp, magnet, high-speed fan, heating wire, and other components involved in this invention can be general standard parts or components known to those skilled in the art. Their structure, principle, and control method are all known to those skilled in the art through technical manuals or conventional experimental methods.

[0059] The above description is merely a preferred embodiment of the present invention and does not constitute any limitation on the technical scope of the present invention. Therefore, other structures obtained by using the same or similar technical features as the above embodiments of the present invention are all within the protection scope of the present invention.

Claims

1. A novel atomizing hair dryer, comprising a hair dryer, the hair dryer including a fan housing, a high-speed fan disposed within the fan housing, a hollow air duct disposed within the fan housing and located at the air outlet position of the high-speed fan, and a fan circuit board disposed within the fan housing, characterized in that: It also includes at least one atomizing mechanism that is longitudinally inserted into the fan housing and passes through the hollow air duct. The atomizing mechanism includes an atomizing shell that is detachably screwed into the fan housing and the hollow air duct, a storage chamber formed in the atomizing shell, a storage cotton disposed in the middle of the storage chamber, and an ultrasonic atomizing plate disposed in the atomizing shell at the front end of the storage cotton and electrically connected to the fan circuit board. The ultrasonic atomizing plate atomizes the liquid entering the storage cotton in the atomizing shell and blows it outward.

2. The novel atomizing hair dryer according to claim 1, characterized in that: The hair dryer also includes an infrared circuit board disposed at the lower part of the hollow air duct and electrically connected to the fan circuit board, the infrared circuit board being provided with at least one indicator light and at least one infrared lamp.

3. The novel atomizing hair dryer according to claim 2, characterized in that: The storage chamber is T-shaped and includes a back cover that is snapped onto the upper end of the atomizing shell and a cotton fixing post formed at the lower end of the back cover. The storage cotton is placed inside the cotton fixing post and its lower end protrudes out of the cotton fixing post and presses against the ultrasonic atomizing plate.

4. The novel atomizing hair dryer according to claim 3, characterized in that: The atomizing mechanism further includes an upper cover disposed at the top of the atomizing shell and a middle cover disposed between the upper cover and the atomizing shell. The middle cover has at least one filling port, and the rear cover has at least one filling guide groove extending upward to below the filling port. The cotton fixing column has at least one guide portion. The tail end of the atomizing shell has a first atomizing outlet facing the ultrasonic atomizing plate. The storage cotton protrudes beyond the first atomizing outlet. External liquid flows into the filling guide groove from the filling port and then into the atomizing shell. It then enters the storage chamber through the guide portion and is absorbed and stored by the storage cotton. The ultrasonic atomizing plate atomizes the external liquid absorbed and stored by the storage cotton and blows it out through the first atomizing outlet.

5. The novel atomizing hair dryer according to claim 4, characterized in that: The flow guide is a through hole, a through groove, or a combination of both.

6. The novel atomizing hair dryer according to claim 4, characterized in that: It also includes at least one atomizing and fixing air guide assembly that is longitudinally inserted into the fan housing and passes through the hollow air duct. The atomizing and fixing air guide assembly includes an atomizing fixing column that is longitudinally inserted into the fan housing and passes through the hollow air duct, and an atomizing air guide component that is arranged around the lower periphery of the atomizing fixing column and connected to the hollow air duct. The atomizing mechanism is inserted into the atomizing fixing column. Several hollow ventilation openings are provided on the inner wall of the atomizing air guide component that surround the outside of the atomizing fixing column. A second atomizing outlet is formed at the lower middle part of the atomizing air guide component that is directly opposite the first atomizing outlet. An air guide groove is provided on the atomizing fixing column, with one end connected to the hollow air duct and extending laterally to the second atomizing outlet.

7. The novel atomizing hair dryer according to claim 7, characterized in that: It also includes at least one massage element disposed on the fan housing and directly opposite the atomizing mechanism. The massage element is radially shaped, and an upwardly protruding air-guiding and limiting ring is formed at the upper center of the massage element, with a diameter matching that of the atomizing air-guiding element. Several massage outlet columns, which are cone-shaped and located below the air-guiding and limiting ring, are formed at the lower center of the massage element. A massage outlet groove is formed in the middle of each massage outlet column, penetrating longitudinally. A magnet is provided at the upper end of the massage element and magnetically adsorbed onto the fan housing.

8. The novel atomizing hair dryer according to claim 8, characterized in that: The massage component also has a light-transmitting part inside that surrounds the massage guide column and allows light from the display lamp and infrared lamp to pass through.

9. The novel atomizing hair dryer according to claim 1, characterized in that: It also includes a heating mechanism disposed at the air inlet position of the hollow air duct and electrically connected to the fan circuit board. The heating mechanism includes a heating retaining ring that is snapped into the air inlet position of the hollow air duct near the high-speed fan, a heating fixing frame disposed inside the heating retaining ring and having an overall cross shape, and a heating wire disposed on the heating fixing frame and electrically connected to the fan circuit board.