Air path system and beauty atomization equipment

By designing adapters, switching components, and regulating components in the gas path system, the same device can simultaneously atomize liquids of varying viscosities, solving the single-pressure problem of existing equipment and improving the versatility of the device and user experience.

CN224207186UActive Publication Date: 2026-05-08SHENZHEN MOORE HEALTH MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN MOORE HEALTH MEDICAL TECH CO LTD
Filing Date
2024-12-23
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing beauty atomizing devices can only provide a single air pressure spray, and cannot atomize liquids with high or low viscosity at the same time. Furthermore, high air pressure can easily cause skin discomfort.

Method used

An air path system was designed, including an adapter, a switching component, and an adjustment component. It connects to the air pump, the adjustment component, and the switching component through multiple interfaces to achieve the regulation and control of gas pressure. It can simultaneously atomize liquids with high and low viscosity, and the airflow is precisely controlled by the switching component to ensure that the appropriate air pressure is sprayed onto the skin.

Benefits of technology

It improves the versatility and flexibility of beauty atomizing devices, meets different care needs, and enhances user experience and skin comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air path system and beauty atomization equipment, the air path system comprises an air pump, an adapter, a switch assembly and an adjusting assembly, the air pump is provided with an air outlet, the adapter is provided with a switching channel, a first interface, a second interface and at least one third interface, and the first interface, the second interface and the third interface are respectively communicated with the switching channel; the first connector is used for communicating the air outlet with the switching channel, the second connector is used for communicating with the atomizing end, the switch assembly is used for communicating or closing an air path between the second connector and the atomizing end, and the adjusting assembly is communicated with the third connector and used for adjusting the air pressure of air in the switching channel. According to the air path system provided by the embodiment of the invention, the switching channel can serve as a transition channel, and the pressure of the air conveyed to the atomization end of the beauty atomization equipment is adjusted through the adjusting assembly, so that the same equipment can atomize atomized liquid with high viscosity and atomized liquid with low viscosity at the same time, and the air pressure of mist sprayed to the skin can be relatively proper; the skin comfort is improved.
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Description

Technical Field

[0001] This application relates to the field of atomization technology, and in particular to an air path system and a beauty atomization device. Background Technology

[0002] Taking the application of an air path system in a beauty atomizing device as an example, the air path system includes an air pump. The air pump generates high-pressure gas and delivers it to the air channel at the atomizing end of the beauty atomizing device to atomize the liquid sprayed from the liquid channel at the atomizing end, thereby evenly covering the skin to achieve a beauty and skin care effect. However, in related technologies, beauty atomizing devices can only provide a single air pressure spray. The same device cannot simultaneously atomize liquids with high or low viscosity. Moreover, if the air pressure is too high, it can easily cause discomfort to the skin. Utility Model Content

[0003] In view of this, the embodiments of this application aim to provide an air path system and a beauty atomizing device, which can simultaneously atomize both high-viscosity and low-viscosity atomizing liquids, thereby improving the atomization versatility and flexibility of the beauty atomizing device.

[0004] This application provides an air path system for a beauty atomizing device, comprising:

[0005] An air pump with an air outlet;

[0006] An adapter has an adapter channel, a first interface, a second interface, and at least one third interface. The first interface, the second interface, and the third interface are respectively connected to the adapter channel. The first interface is used to connect the air outlet to the adapter channel, and the second interface is used to connect to the atomizing end of a beauty atomizing device to guide the gas in the adapter channel to the atomizing end.

[0007] A switch assembly is disposed in the air path between the second interface and the atomizing end, and is used to connect or close the air path between the second interface and the atomizing end;

[0008] An adjustment component, connected to the third interface, is used to adjust the gas pressure within the transfer channel.

[0009] In some implementations, the operating states of the switching component include a first state, a second state, and a third state. In the first state, the switching component is always disconnected from the air passage between the second interface and the atomizing end. In the second state, the switching component is always connected to the air passage between the second interface and the atomizing end. In the third state, the switching component alternately connects or disconnects the air passage between the second interface and the atomizing end at a preset frequency.

[0010] In some implementations, the regulating component includes a pressure relief valve for relieving pressure on the gas within the transition channel.

[0011] In some embodiments, the regulating component includes a pressure regulating valve disposed downstream of the pressure relief valve in the direction of airflow, the pressure regulating valve being used to regulate the pressure relief amount of the pressure relief valve.

[0012] In some implementations, there are multiple third interfaces and multiple pressure relief valves. The multiple pressure relief valves include a first pressure relief valve and a second pressure relief valve. The first pressure relief valve is connected to one of the third interfaces, and the second pressure relief valve is connected to another of the third interfaces. The first pressure relief valve and / or the second pressure relief valve can be selectively opened or closed to relieve the pressure of the gas in the transfer channel.

[0013] In some implementations, the first pressure relief valve and the second pressure relief valve have the same pressure relief amount, or the first pressure relief valve and the second pressure relief valve correspond to different pressure relief amounts.

[0014] In some implementations, the adapter further includes a fourth interface connected to the adapter channel, and the gas path system includes a detection unit connected to the fourth interface for detecting the gas pressure in the adapter channel and generating a pressure signal, which is then transmitted to the main unit of the atomizing beauty device.

[0015] In some implementations, the first interface and the fourth interface are located at opposite ends of the adapter channel along the axial direction, and the second interface and the at least one third interface are located circumferentially in the adapter channel and are arranged side by side along the axial direction of the adapter channel.

[0016] This application provides a beauty atomizing device, including:

[0017] Host;

[0018] The atomizing handle is electrically connected to the main unit. The atomizing handle includes an atomizing end, which has an air passage, a liquid passage, and an atomizing area. The air passage and the liquid passage are not connected to each other, but are respectively connected to the atomizing area. The liquid passage is used to spray atomized liquid into the atomizing area.

[0019] And the gas path system described in any embodiment of this application, wherein the second interface is connected to the gas channel so that the gas channel sprays gas into the atomization zone to atomize the atomized liquid sprayed from the liquid channel.

[0020] In some implementations, the adapter further includes a fourth interface connected to the adapter channel, and the gas path system includes a detection unit and a controller. The detection unit is connected to the fourth interface and is used to detect the gas pressure in the adapter channel and generate a pressure signal.

[0021] The host includes a display system and a controller. The controller is connected to the detection unit and the display system. The controller can process the pressure signal and display it on the display system, and control the opening or closing of the air circuit system according to the pressure signal.

[0022] In some embodiments, the beauty atomizing device further includes an ultrasonic handle, which includes an ultrasonic atomizer electrically connected to the main unit for ultrasonically atomizing the atomizing liquid.

[0023] And / or, the beauty atomizing device includes a penetration-enhancing handle, the penetration-enhancing handle including a penetration-enhancing element, the penetration-enhancing element being electrically connected to the main unit for generating a photoelectric effect to enhance the penetration of the atomized liquid.

[0024] The air path system provided in this application embodiment features an adapter that connects an air pump, adjustment component, and switch component via multiple interfaces. The adapter channel acts as a central hub, allowing the adjustment component to regulate the gas pressure delivered to the atomizing end of the beauty atomizing device. This enables the same device to simultaneously atomize both high-viscosity and low-viscosity atomized liquids, enhancing the versatility and flexibility of the beauty atomizing device and meeting the needs of different treatments or care. The switch component opens or closes the air path between the atomizing end and the second interface, achieving precise control of the airflow. Furthermore, the air path system in this application embodiment ensures that the spray pressure applied to the skin is appropriate, improving skin comfort and enhancing the user experience. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the cooperation structure between the gas circuit system and the controller according to an embodiment of this application;

[0026] Figure 2 This is a schematic diagram of the structure of a beauty atomizing device according to an embodiment of this application;

[0027] Figure 3 for Figure 2 Another structural schematic diagram of the beauty atomizing device shown.

[0028] Explanation of reference numerals in the attached figures

[0029] 1-Beauty atomization equipment;

[0030] 10-Pneumatic system; 101-Air pump; 102-Adapter; 102a-First interface; 102b-Second interface; 102c-Third interface; 102d-Fourth interface; 103-Switch assembly; 104-Regulating assembly; 1041-First pressure relief valve; 1042-Second pressure relief valve; 1043-Pressure regulating valve; 105-Detection unit;

[0031] 11-Main unit; 111-Controller; 112-Display system; 12-Atomizing handle; 121-Atomizing end; 13-Ultrasonic handle; 14-Permeation-enhancing handle. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0033] The specific technical features described in the specific embodiments can be combined in any suitable manner without contradiction. For example, different combinations of specific technical features can form different embodiments and technical solutions. To avoid unnecessary repetition, the various possible combinations of the specific technical features in this invention will not be described separately.

[0034] In the following description, the terms "first," "second," etc., are used merely to distinguish different objects and do not indicate that the objects have the sameness or relationship. It should be understood that the directional descriptions "above," "below," "outside," and "inside" refer to the orientation under normal use conditions, while "left" and "right" refer to the left and right directions shown in the corresponding diagrams, which may or may not be the left and right directions under normal use conditions.

[0035] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. "A plurality of" means two or more.

[0036] This application provides a gas path system 10.

[0037] The application fields of the air path system 10 are not limited. In this embodiment, the air path system 10 is used as an example of beauty atomization device 1.

[0038] This application also provides a beauty atomizing device 1. Please refer to... Figure 2 and Figure 3 The beauty atomizing device 1 includes a main unit 11, an atomizing handle 12, and an air circuit system 10 according to any embodiment of this application. The atomizing handle 12 is electrically connected to the main unit 11, and the atomizing handle 12 includes an atomizing end 121.

[0039] Please see Figure 1 The air circuit system 10 includes an air pump 101, an adapter 102, a switch assembly 103, and an adjustment assembly 104.

[0040] The air pump 101 has an air outlet.

[0041] The adapter 102 has an adapter channel, a first interface 102a, a second interface 102b, and at least one third interface 102c. The first interface 102a, the second interface 102b, and the third interface 102c are respectively connected to the adapter channel. The first interface 102a is used to connect the air outlet to the adapter channel, and the second interface 102b is used to connect to the atomizing end 121 of the beauty atomizing device 1 to guide the gas in the adapter channel to the atomizing end 121.

[0042] The switch assembly 103 is disposed in the air passage between the second interface 102b and the atomizing end 121, and is used to connect or close the air passage between the second interface 102b and the atomizing end 121.

[0043] The regulating component 104 is connected to the third interface 102c and is used to regulate the gas pressure in the transfer channel.

[0044] The atomizing end 121 has an air channel, a liquid channel, and an atomizing zone. The air channel and the liquid channel are not connected to each other, but are connected to the atomizing zone. The liquid channel is used to spray atomized liquid into the atomizing zone. The second interface 102b is connected to the air channel so that the air channel sprays gas into the atomizing zone to atomize the atomized liquid sprayed from the liquid channel.

[0045] Air pump 101 (also known as compressor or air compressor) is used to compress air into high-pressure gas. Specifically, air pump 101 also includes an air inlet. Air pump 101 draws air or other gas into the equipment through the air inlet, and after compression, discharges high-temperature and high-pressure gas from the air outlet.

[0046] The first interface 102a is used to connect the gas outlet and the transfer channel, that is, the high temperature and high pressure gas discharged from the gas outlet can enter the transfer channel through the first interface 102a.

[0047] The second interface 102b is used to communicate with the atomizing end 121. That is, the gas entering the transfer channel can flow through the second interface 102b to the air passage of the atomizing end 121 and be ejected from the air passage to atomize the atomized liquid ejected from the liquid passage of the atomizing end 121. The high-speed gas and the atomized liquid meet in the atomization zone and generate strong shear force, which tears the atomized liquid into liquid film, liquid filament, liquid band and fine particles, thereby realizing atomization.

[0048] The atomized liquid can be a medicinal liquid, a beauty serum, etc. Taking a beauty serum as an example, the beauty serum can be an essence, toner, lotion, base serum, hydrogel, whitening water, etc. By spraying gas from the airway to atomize the beauty serum, it helps the skin absorb the beauty serum and enhances the skin care effect.

[0049] The host 11 can serve as the control center of the entire beauty atomizing device 1. While providing power to the atomizing handle 11, the host 11 can, for example, provide power to the liquid pushing mechanism inside the atomizing handle 11 so that the liquid pushing mechanism can push the atomized liquid to the liquid channel of the atomizing end 121. Of course, the host 11 can also control the operating status of the entire air circuit system 10.

[0050] The switch assembly 103 is used to connect or close the gas passage between the second interface 102b and the atomizing end 121. That is, when it is necessary to supply gas to the atomizing end 121, the switch assembly 103 opens the gas passage between the second interface 102b and the atomizing end 121, so that the gas in the transfer channel can flow to the gas passage of the atomizing end 121 through the second interface 102b. When it is not necessary to supply gas to the atomizing end 121, the switch assembly 103 closes the gas passage between the second interface 102b and the atomizing end 121, and stops supplying gas to the atomizing end 121.

[0051] The specific structure of the atomizing end 121 is not limited. For example, the atomizing end 121 can be an atomizing nozzle.

[0052] The specific construction of the switching assembly 103 is not limited; for example, the switching assembly 103 may be a solenoid valve.

[0053] It is understandable that the switch assembly 103 is used to open or close the airflow passage and will not affect the airflow pressure.

[0054] In this embodiment, an adjustment component 104 is provided to regulate the air pressure in the transfer channel, so that the air pressure output from the transfer channel to the second interface 102b is within the required range. For example, when atomizing a liquid with a high viscosity is required, the adjustment component 104 can be deactivated, allowing the switch component 103 to open the air passage between the second interface 102b and the atomizing end 121. When atomizing a liquid with a low viscosity is required, the adjustment component 104 can be activated to adjust the air pressure in the transfer channel, reducing it to the required range. Then, the switch component 103 allows the pressure-regulated gas to flow into the air passage of the atomizing end 121.

[0055] The number of third interfaces 102c can be one, two or more, that is, the number of adjustment components 104 can be one or more. Multiple adjustment components 104 can realize the adjustment of various air pressure levels.

[0056] The air path system 10 provided in this embodiment, with the adapter 102, can connect the air pump 101, the adjustment component 104, and the switch component 103 through multiple interfaces. The adapter channel can act as a central hub, adjusting the gas pressure delivered to the atomizing end 121 of the beauty atomizing device 1 through the adjustment component 104. This allows the same device to simultaneously atomize both high-viscosity and low-viscosity atomized liquids, improving the atomization versatility and flexibility of the beauty atomizing device 1 and meeting the needs of different treatments or care. The switch component 103 opens or closes the air path between the atomizing end 121 and the second interface 102b, achieving precise control of the airflow. At the same time, the air path system 10 in this embodiment can also make the spray pressure sprayed onto the skin more suitable, improving skin comfort and enhancing the user experience.

[0057] In some embodiments, the operating states of the switch assembly 103 include a first state, a second state, and a third state. In the first state, the switch assembly 103 is always disconnected from the air passage between the second interface 102b and the atomizing end 121. In the second state, the switch assembly 103 is always connected to the air passage between the second interface 102b and the atomizing end 121. In the third state, the switch assembly 103 alternately connects or disconnects the air passage between the second interface 102b and the atomizing end 121 at a preset frequency.

[0058] In this embodiment, the switch assembly 103 can have three operating modes: in the first state, the air passage between the second interface 102b and the atomizing end 121 is continuously disconnected, and the atomizing end 121 does not receive air; in the second state, the air passage between the second interface 102b and the atomizing end 121 is continuously connected, and the atomizing end 121 receives air continuously; in the third state, the air passage between the second interface 102b and the atomizing end 121 is alternately connected and disconnected, and the atomizing end 121 receives air intermittently.

[0059] Specifically, when there is no need to supply gas to the atomizing end 121, the switching component 103 is in the first state to close the airflow passage between the second interface 102b and the atomizing end 121. When it is necessary to supply gas to the atomizing end 121, two modes can be selected: constant connection and alternating connection disconnection. In the second state, the atomized liquid is continuously sprayed onto the skin after atomization to maintain the continuity of atomization. In the third state, different breathing rhythms or other natural phenomena can be simulated to achieve pulsed atomization and enhance the atomization experience.

[0060] The specific construction of the regulating component 104 is not limited. For example, the regulating component 104 may include an electronically controlled proportional valve, that is, a valve whose opening is controlled by an electrical signal. The valve opening is adjusted according to the input electrical signal, thereby regulating the pressure.

[0061] In some embodiments, the regulating assembly 104 includes a pressure relief valve for relieving pressure on the gas in the transfer channel.

[0062] In this embodiment, the gas in the transfer channel can be depressurized by the pressure relief valve, reducing the gas pressure of the gas to be delivered from the second interface 102b to the atomizing end 121. This facilitates the adjustment of gas pressure for atomizing liquids of different viscosities, achieving effective atomization and ensuring that the gas pressure sprayed onto the skin is appropriate, thereby increasing the atomization effect. At the same time, the pressure relief valve can regulate the pressure by releasing the gas pressure to the outside, which is low-cost and safe.

[0063] The pressure relief valve can be a pressure relief solenoid valve, which can be opened or closed to achieve the delivery of gas at different pressure levels.

[0064] In some embodiments, please refer to Figure 1 The regulating component 104 includes a pressure regulating valve 1043, which is located downstream of the pressure relief valve along the airflow direction. The pressure regulating valve 1043 is used to regulate the pressure relief amount of the pressure relief valve.

[0065] It is understandable that when the pressure relief valve is open, it releases pressure on the gas in the transfer channel. However, if the pressure relief valve remains open for a long time, it is easy to over-release pressure, causing the gas pressure in the transfer channel to be lower than the required pressure, which will affect the atomization effect.

[0066] In this embodiment, a pressure regulating valve 1043 is set to adjust and control the pressure relief amount of the pressure relief valve, so that the pressure relief amount of the pressure relief valve is within the set range, thereby ensuring that the gas pressure in the adjusted transfer channel is within the required range, reducing the probability of excessive pressure relief and improving atomization efficiency.

[0067] In some embodiments, please refer to Figure 1 There are multiple third ports 102c and multiple pressure relief valves. The multiple pressure relief valves include a first pressure relief valve 1041 and a second pressure relief valve 1042. The first pressure relief valve 1041 is connected to one of the third ports 102c, and the second pressure relief valve 1042 is connected to another of the third ports 102c. The first pressure relief valve 1041 and / or the second pressure relief valve 1042 can be selectively opened or closed to relieve the gas in the transfer channel.

[0068] Here, the first pressure relief valve 1041 and the second pressure relief valve 1042 can be selectively opened or closed to adjust the pressure relief of the transfer channel, including multiple states.

[0069] The first configuration involves opening both the first pressure relief valve 1041 and the second pressure relief valve 1042. Here, the first pressure relief valve 1041 and the second pressure relief valve 1042 work together to relieve pressure on the gas in the transfer channel. The amount of pressure relief in the transfer channel is the sum of the pressure relief amounts of the first pressure relief valve 1041 and the second pressure relief valve 1042.

[0070] The second method involves opening the first pressure relief valve 1041 and closing the second pressure relief valve 1042. Here, the first pressure relief valve 1041 relieves pressure on the gas in the transfer channel, while the second pressure relief valve 1042 remains inactive. The amount of pressure relief in the transfer channel is equal to the amount of pressure relief provided by the first pressure relief valve 1041.

[0071] The third method: the first pressure relief valve 1041 is closed, and the second pressure relief valve 1042 is open. Here, the second pressure relief valve 1042 relieves the pressure of the gas in the transfer channel, the first pressure relief valve 1041 does not work, and the amount of pressure relief of the gas in the transfer channel is the amount of pressure relief of the second pressure relief valve 1042.

[0072] The fourth type: The first pressure relief valve 1041 is closed, and the second pressure relief valve 1042 is closed. Here, neither the first pressure relief valve 1041 nor the second pressure relief valve 1042 relieves the pressure of the gas in the transfer channel, and the amount of pressure relief in the gas in the transfer channel is zero.

[0073] It is understood that the pressure relief amount of the first pressure relief valve 1041 and the second pressure relief valve 1042 can be determined, that is, as long as the first pressure relief valve 1041 and the second pressure relief valve 1042 are opened, the first pressure relief valve 1041 and / or the second pressure relief valve 1042 will relieve pressure according to the predetermined pressure relief amount.

[0074] In this embodiment, by selectively opening or closing the first pressure relief valve 1041 and / or the second pressure relief valve 1042, the air pressure in the transfer channel can have at least three air pressure levels, which facilitates atomization of different atomizing liquids to act on various parts of the user's face as needed, thereby achieving a variety of skin care or beauty functions.

[0075] In some embodiments, the pressure relief amounts of the first pressure relief valve 1041 and the second pressure relief valve 1042 are the same.

[0076] Here, "consistent pressure relief" means that the pressure released by the first pressure relief valve 1041 through the transition channel is the same as the pressure released by the second pressure relief valve 1042 through the transition channel. That is, opening the first pressure relief valve 1041 and the second pressure relief valve 1042 can release the same amount of pressure.

[0077] In this embodiment, when the pressure relief amount of the first pressure relief valve 1041 and the second pressure relief valve 1042 is the same, the two pressure relief valves can be used to deliver gas at three different pressure levels, increasing the atomization adaptability. When only one of the pressure relief valves needs to be opened for pressure relief, there is no need to distinguish between the first pressure relief valve 1041 and the second pressure relief valve 1042; either one can be opened, increasing the ease of operation.

[0078] In other embodiments, the first pressure relief valve 1041 and the second pressure relief valve 1042 correspond to different pressure relief amounts.

[0079] In this embodiment, when the pressure relief amounts of the first pressure relief valve 1041 and the second pressure relief valve 1042 are the same, the gas delivery of four pressure levels can be achieved through the two pressure relief valves, further increasing the atomization adaptability. While simplifying the structure of the gas path system 10, it also increases the flexibility of the gas path system 10, and further enables the delivery of gas at different pressures for different atomizing liquids.

[0080] It is understandable that the number of third interfaces 102c can be two, three or more, and one third interface 102c can correspond to one pressure relief valve and one pressure regulating valve 1043.

[0081] In some embodiments, please refer to Figure 1 The adapter 102 also includes a fourth interface 102d, which is connected to the adapter channel. The gas path system 10 includes a detection unit 105, which is connected to the fourth interface 102d. The detection unit 105 is used to detect the gas pressure in the adapter channel and generate a pressure signal, which is then transmitted to the host 11 of the atomizing beauty device.

[0082] In this embodiment, the detection unit 105 can detect the gas pressure in the transfer channel and transmit the pressure signal to the host 11 of the beauty atomizing device 1. When the pressure signal indicates that the current gas pressure exceeds a safety threshold, the host 11 can shut down the entire gas path system 10 according to the pressure signal to increase atomization safety. Here, the safety threshold is the maximum pressure of the transfer channel required to keep the spray pressure sprayed onto the skin in a safe state.

[0083] In some embodiments, please refer to Figure 3 The host 11 includes a display system 112 and a controller 111. The controller 111 is connected to the detection unit 105 and the display system 112. The controller 111 can process the pressure signal and display it on the display system 112, and control the opening or closing of the air circuit system 10 according to the pressure signal.

[0084] In other words, the controller 111 receives the pressure signal and then displays the pressure signal on the display system 112, so that the operator can obtain the current pressure information. When the current pressure information exceeds the safety threshold, the controller 111 can also issue a warning through the display system 112 and control the gas circuit system 10 to shut down, so that the operator can be informed.

[0085] In some embodiments, please refer to Figure 1 The first interface 102a and the fourth interface 102d are located at opposite ends of the adapter channel along the axial direction, and the second interface 102b and at least one third interface 102c are located in the circumferential direction of the adapter channel and are arranged side by side along the axial direction of the adapter channel.

[0086] In this embodiment, the arrangement of the various interfaces of the adapter 102 facilitates the connection between the adapter 102 and the air pump 101, the adjustment component 104, the detection unit 105, the atomizing end 121, etc., and increases the rationality of the layout.

[0087] The second interface 102b and at least one third interface 102c are arranged side by side along the axial direction of the transfer channel, so that the second interface 102b and at least one third interface 102c can be connected to the air passage from one point around the circumference of the transfer channel without having to connect from different directions, thus increasing the convenience of operation.

[0088] For example, the second interface 102b is located at the end of the at least one third interface 102c that is away from the first interface 102a. This facilitates the adjustment component 104 to adjust the gas pressure in the transfer channel before delivering the gas to the atomizing end 121 via the second interface 102b. It also facilitates the detection unit 105 to detect the gas pressure in the transfer channel via the fourth interface 102d, thereby increasing the detection accuracy.

[0089] In some embodiments, please refer to Figure 2 The beauty atomizing device 1 also includes an ultrasonic handle 13, which includes an ultrasonic atomizer. The ultrasonic atomizer is electrically connected to the main unit 11 and is used to ultrasonically atomize the atomizing liquid.

[0090] For example, an ultrasonic atomizer can emit ultrasonic waves through a ceramic electrode plate, and the ultrasonic waves of different frequencies overlap in the skin to create different levels of pressure and rate of change, thereby improving the extracellular structure of cells and connective tissues and maximizing the lifting and firming effect.

[0091] In some embodiments, please refer to Figure 2 The beauty atomizing device 1 includes a penetration-enhancing handle 14, which includes a penetration-enhancing element. The penetration-enhancing element is electrically connected to the main unit 11 and is used to generate a photoelectric effect to enhance the penetration of the atomized liquid.

[0092] In this embodiment, the penetration-enhancing handle 14 can utilize the photoelectric effect to enhance penetration. It uses light of a specific wavelength to irradiate the skin, effectively opening the skin pores and facilitating the penetration of the atomized liquid into the skin. Then, by applying a microcurrent, it uses the principle of electrophoresis to drive charged molecules (such as active ingredients in cosmetics) through the stratum corneum of the skin, thereby significantly improving the penetration efficiency of charged molecules and facilitating the effective absorption of atomized liquids such as lotions and gels.

[0093] In the description of this application, the terms "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the embodiments of this application. In this application, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Furthermore, without contradiction, those skilled in the art can combine different embodiments or examples described in this application, as well as features of different embodiments or examples.

[0094] The above description is merely a preferred embodiment of this application and is not intended to limit the application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.

Claims

1. An air path system for use in a beauty atomizing device, characterized in that, include: An air pump with an air outlet; An adapter has an adapter channel, a first interface, a second interface, and at least one third interface. The first interface, the second interface, and the third interface are respectively connected to the adapter channel. The first interface is used to connect the air outlet to the adapter channel, and the second interface is used to connect to the atomizing end of a beauty atomizing device to guide the gas in the adapter channel to the atomizing end. A switch assembly is disposed in the air path between the second interface and the atomizing end, and is used to connect or close the air path between the second interface and the atomizing end; An adjustment component, connected to the third interface, is used to adjust the gas pressure within the transfer channel.

2. The gas path system according to claim 1, characterized in that, The operating states of the switching component include a first state, a second state, and a third state; in the first state, the switching component is always disconnected from the air passage between the second interface and the atomizing end; In the second state, the switching assembly is always connected to the air passage between the second interface and the atomizing end; In the third state, the switching assembly alternately connects or disconnects the air path between the second interface and the atomizing end at a preset frequency.

3. The gas path system according to claim 1, characterized in that, The regulating component includes a pressure relief valve for relieving pressure on the gas in the transfer channel.

4. The gas path system according to claim 3, characterized in that, The regulating component includes a pressure regulating valve, which is located downstream of the pressure relief valve along the airflow direction, and is used to regulate the pressure relief amount of the pressure relief valve.

5. The gas path system according to claim 3, characterized in that, The number of the third interfaces is multiple, and the number of the pressure relief valves is multiple. The multiple pressure relief valves include a first pressure relief valve and a second pressure relief valve. The first pressure relief valve is connected to one of the third interfaces, and the second pressure relief valve is connected to another of the third interfaces. The first pressure relief valve and / or the second pressure relief valve are selectively opened or closed to relieve the pressure of the gas in the transfer channel.

6. The gas path system according to claim 5, characterized in that, The first pressure relief valve and the second pressure relief valve have the same pressure relief amount, or the first pressure relief valve and the second pressure relief valve have different pressure relief amounts.

7. The gas path system according to claim 1, characterized in that, The adapter also includes a fourth interface, which is connected to the adapter channel. The gas path system includes a detection unit, which is connected to the fourth interface, for detecting the gas pressure in the adapter channel and generating a pressure signal, which is then transmitted to the host of the atomizing beauty device.

8. The gas path system according to claim 7, characterized in that, The first interface and the fourth interface are located at opposite ends of the adapter channel along the axial direction, and the second interface and the at least one third interface are located in the circumferential direction of the adapter channel and are arranged side by side along the axial direction of the adapter channel.

9. A beauty atomizing device, characterized in that, include: Host; The atomizing handle is electrically connected to the main unit. The atomizing handle includes an atomizing end, which has an air passage, a liquid passage, and an atomizing area. The air passage and the liquid passage are not connected to each other, but are respectively connected to the atomizing area. The liquid passage is used to spray atomized liquid into the atomizing area. And the gas path system according to any one of claims 1-8, wherein the second interface is connected to the gas passage so that the gas passage sprays gas into the atomizing zone to atomize the atomizing liquid sprayed from the liquid passage.

10. The beauty atomizing device according to claim 9, characterized in that, The adapter also includes a fourth interface, which is connected to the adapter channel. The gas path system includes a detection unit and a controller. The detection unit is connected to the fourth interface and is used to detect the gas pressure in the adapter channel and generate a pressure signal. The host includes a display system and a controller. The controller is connected to the detection unit and the display system. The controller can process the pressure signal and display it on the display system, and control the opening or closing of the air circuit system according to the pressure signal.

11. The beauty atomizing device according to claim 9, characterized in that, The beauty atomization device also includes an ultrasonic handle, which includes an ultrasonic atomizer. The ultrasonic atomizer is electrically connected to the main unit and is used to ultrasonically atomize the atomizing liquid. And / or, the beauty atomizing device includes a penetration-enhancing handle, the penetration-enhancing handle including a penetration-enhancing element, the penetration-enhancing element being electrically connected to the main unit for generating a photoelectric effect to enhance the penetration of the atomized liquid.