A mask atomizer
Patent Information
- Application Number
- CN202423311093.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2034-12-31
AI Technical Summary
[0005]本实用新型提出一种口罩雾化器,解决了相关技术中的雾化口罩雾化效率低,防护效果差问题
本实用新型中,面罩可以通过例如卡扣或卡槽等可拆卸的连接方式安装在主体上或者直接固定在主体上,使用者戴上口罩之后,嘴巴位于放置腔内,脸与面罩接触,面罩的第一透口位置与雾化件的雾化出口相对应。雾化件可采用螺丝固定或卡槽卡接等方式固定在主体内。雾化气体从雾化出口喷出后,经过第一透口被使用者吸入。第一透口如果与雾化出口一样大小,防止杂质被吸入鼻腔中,如果比雾化出口大,既能保证放置腔内的压强稳定,又能方便吸入雾化气体。
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Figure CN224699495U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of atomized mask technology, specifically to a mask atomizer. Background Technology
[0002] Nebulization therapy is a crucial treatment for respiratory diseases. Compared to traditional nebulizers, mask-style nebulizers are more portable and easier to use, increasing the flexibility and convenience of treatment. Utilizing micromesh technology, medication is precisely dispersed into very fine particles, which helps the drug deposit better in different parts of the respiratory tract, delivering the medication more effectively to the target area and reducing waste. The mask-like design is likely more ergonomic, providing a better wearing experience. Simple and easy to use, requiring no special skills, it reduces the difficulty of use compared to other products. Mask-style micromesh nebulizers, by combining advanced nebulization technology with a comfortable design, offer more options for patients requiring respiratory therapy.
[0003] However, the micro-mesh atomizers currently on the market have disadvantages such as large residual liquid, easy clogging of the atomizing mesh, high heat generation effect, and excessively small atomized particle diameter.
[0004] Furthermore, this design represents an upgrade and optimization of existing mask products. In many regions, due to their unique geographical location, the local air quality is frequently quite poor. Especially in winter, the air is not only exceptionally dry and cold but also often accompanied by biting winds. When people have to go outside for walks or various activities, the instant this dry, cold air is inhaled through the nasal cavity, it strongly irritates the nasal mucosa and respiratory tract, causing discomfort. To alleviate this discomfort to some extent, people often habitually wear masks. Currently available masks do not have the ability to regulate air humidity and temperature. Atomizing masks, as an innovative product, have emerged to address this need. They organically combine atomization functionality with the basic protective function of a mask. However, existing atomizing masks suffer from low atomization efficiency and poor protective effect. Utility Model Content
[0005] This invention proposes a mask atomizer, which solves the problems of low atomization efficiency and poor protective effect in related atomized masks.
[0006] The technical solution of this utility model is as follows: A mask atomizer includes: main body; A face mask is disposed on the main body, the face mask having a placement cavity having a first opening; An atomizing element is disposed on the main body, the atomizing element having an atomizing outlet that leads to the first perforation.
[0007] Optionally, the main body includes: The outer casing, on which the face mask is disposed; A mounting bracket is disposed on the outer shell, forming an installation space between the mounting bracket and the outer shell. The atomizing element is disposed within the installation space. The mounting bracket has a second opening, and the atomizing outlet, the second opening, and the first opening are sequentially connected.
[0008] Optionally, the atomizing element includes: A water storage component is mounted on the mounting bracket. The water storage component has a water storage cavity, and the atomizing outlet is located on the water storage component and communicates with the water storage cavity. The atomizing plate is snapped into the atomizing outlet. A power supply unit is disposed on the mounting bracket, and the power supply unit is used to drive the atomizing plate to atomize. A control button is slidably mounted on the main body. When the control button is slidably moved, it is used to turn the power supply on or off.
[0009] Optionally, the outer casing has a water inlet leading to the water storage chamber, and further includes: A sealing plate is rotatably mounted on the outer casing. After rotation, the sealing plate is used to open or close the water storage chamber. The sealing plate has control protrusions.
[0010] Optionally, the installation space has a light-transmitting hole and further includes: The indicator light has one end mounted on the power supply unit and electrically connected to it, and the other end leads to the light-transmitting hole.
[0011] Optionally, it also includes: A light guide post is disposed inside the light-transmitting hole, and the other end of the indicator light passes through the light guide post to the light-transmitting hole; A focusing element is mounted on the light guide post.
[0012] Optionally, the face mask includes: The cover has the placement cavity and the first opening; A mask is disposed on the mask body, the mask having an opening that communicates with the placement cavity, the mask fitting against the face, the opening sealing around the mouth and nose, and the cross-sectional area of the opening being smaller than the cross-sectional area of the placement cavity.
[0013] Optionally, the cover has a protrusion that fits against the face.
[0014] Optionally, the main body has a plurality of first ventilation holes, and the cover also has a second ventilation hole, wherein the first ventilation holes and the second ventilation holes are in communication.
[0015] Optionally, it further includes: first retaining rings on both sides of the outer casing, and also includes: The straps are wrapped around the two first fixing rings; The buckle has a second fixing ring, and the two ends of the strap are correspondingly snapped into the two second fixing rings.
[0016] The working principle and beneficial effects of this utility model are as follows: In this invention, the mask can be detachably attached to the main body using methods such as clips or slots, or directly fixed to the main body. After the user puts on the mask, their mouth is inside the placement cavity, and their face is in contact with the mask. The first opening of the mask corresponds to the atomizing outlet of the atomizing component. The atomizing component can be fixed inside the main body using screws or slots. After the atomized gas is ejected from the atomizing outlet, it is inhaled by the user through the first opening. If the first opening is the same size as the atomizing outlet, it prevents impurities from being inhaled into the nasal cavity. If it is larger than the atomizing outlet, it ensures stable pressure within the placement cavity while facilitating the inhalation of the atomized gas.
[0017] This structural design allows the atomizer mask to deliver atomized substances through the atomization outlet and the first opening to the user's mouth and nose, facilitating inhalation of the atomized substance, such as nebulized medication. This reduces waste of the atomized substance and can be used for healthcare or air humidification. A detachable mask facilitates replacement and cleaning, and maintains hygiene. A structure where the mask is fixed to the main body prevents it from falling off. The mask fits snugly against the user's face, and the design of the first opening being the same size as the atomization outlet prevents the user from inhaling other external impurities. Attached Figure Description
[0018] The preferred embodiments will be described below in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages and implementation methods of this utility model.
[0019] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional view of the present invention; Figure 3 for Figure 2 Enlarged view of point A; Figure 4 This is a schematic diagram of the air vent structure of this utility model; Figure 5 This is a schematic diagram of the accommodating space structure of this utility model; Figure 6 This is a schematic diagram of the placement cavity structure of this utility model; Figure 7 This is a schematic diagram of the mounting frame structure of this utility model; Figure 8 This is a schematic diagram of the light-concentrating component structure of this utility model.
[0020] In the diagram: 1. Main body, 11. Outer shell, 2. Mask, 21. First opening, 20. Placement cavity, 201. Opening, 22. Protrusion, 23. Second vent, 24. Cover body, 25. Cover surface, 3. Atomizing component, 31. Atomizing outlet, 4. Mounting bracket, 41. Installation space, 42. Second opening, 32. Water storage component, 33. Water storage cavity, 34. Atomizing plate, 35. Power supply component, 12. Water inlet, 5. Sealing plate, 13. Light transmission hole, 6. Indicator light, 7. Light guide column, 8. Focusing component, 71. Control protrusion, 9. Control button, 14. Vent, 15. First fixing ring, 10. Strap, 110. Buckle, 112. Second fixing ring. Detailed Implementation
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the accompanying drawings described below are merely some embodiments of this utility model. For those skilled in the art, they can be understood as further technical solutions without creative effort. In some drawings, components with the same structure or function are only schematically illustrated, or only one is marked. In this document, "a" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."
[0022] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0023] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0024] Reference Figures 1-8 The first embodiment of this utility model proposes a mask atomizer, including a main body 1; a face mask 2 is disposed on the main body 1, the face mask 2 has a placement cavity 20, the placement cavity 20 has a first opening 21; an atomizing element 3 is disposed on the main body 1, the atomizing element 3 has an atomizing outlet 31, the atomizing outlet 31 leads to the first opening 21.
[0025] In this embodiment, the mask 2 can be detachably installed on the main body 1 using a connection method such as a buckle 110 or a slot, or directly fixed to the main body 1. After the user puts on the mask, their mouth is located in the placement cavity 20, and their face is in contact with the mask 2. The first opening 21 of the mask 2 corresponds to the atomizing outlet 31 of the atomizing component 3. The atomizing component 3 can be fixed in the main body 1 by means of screws or slots. After the atomized gas is sprayed out from the atomizing outlet 31, it is inhaled by the user through the first opening 21. If the first opening 21 is the same size as the atomizing outlet 31, it prevents impurities from being inhaled into the nasal cavity. If it is larger than the atomizing outlet 31, it can ensure the pressure stability in the placement cavity 20 and facilitate the inhalation of the atomized gas.
[0026] This structural design allows the atomizer mask to deliver atomized substances through the atomization outlet 31 and the first opening 21 to the user's mouth and nose, facilitating the inhalation of atomized substances such as nebulized medications. This reduces waste of atomized substances and can be used for medical care or air humidification. If the mask 2 is detachable, it facilitates replacement and cleaning, and maintains mask hygiene. If the mask 2 is fixed to the main body 1, it prevents it from falling off. The mask 2 fits snugly against the user's face, and the design of the first opening 21 being the same size as the atomization outlet 21 prevents the user from inhaling other external impurities.
[0027] Furthermore, the mask 2 is disposed on the outer shell 11; the mounting bracket 4 is disposed on the outer shell 11, and an installation space 41 is formed between the mounting bracket 4 and the outer shell 11. The atomizing component 3 is disposed in the installation space 41. The mounting bracket 4 has a second opening 42, and the atomizing outlet 31, the second opening 42 and the first opening 21 are sequentially connected.
[0028] In this embodiment, a mounting bracket 4 is installed on the outer casing 11. The mounting bracket 4 can be fixed to the outer casing 11 by welding, screw connection, or other methods. A second opening 42 is provided on the mounting bracket 4 to ensure that after the atomizing element 3 is installed in the installation space 41, the atomizing outlet 31, the second opening 42, and the first opening 21 can form an airflow channel. When the atomizing element 3 is installed in the installation space 41, it can be fixed to the mounting bracket 4 using structures such as slots and brackets. The mounting bracket 4 provides a dedicated mounting position for the atomizing component 3, making its installation more secure. At the same time, the design of the second opening 42 further optimizes the transmission path of the atomized material, making the atomization effect more uniform, reducing the condensation or loss of atomized material inside the mask, improving atomization efficiency, and allowing users to better inhale the atomized material.
[0029] Furthermore, the water storage component 32 is mounted on the mounting frame 4. The water storage component 32 has a water storage cavity 33. The atomizing outlet 31 is located on the water storage component 32 and communicates with the water storage cavity 33. The atomizing plate 34 is snapped into the atomizing outlet 31. The power supply component 35 is mounted on the mounting frame 4 and is used to drive the atomizing plate 34 to atomize.
[0030] In this embodiment, the water storage component 32 is mounted on the mounting bracket 4. The water storage component 32 can be made of plastic. An atomizing outlet 31 is provided at an appropriate position on the water storage component 32. The atomizing plate 34 is snapped into the atomizing outlet 31, so that the atomizing plate 34 can be securely and easily installed and replaced. The power supply component 35 is mounted on the mounting bracket 4. The power supply component 35 is connected to the atomizing plate 34 through wires or other means to provide the energy required for atomization, so that the atomizing plate 34 can atomize the liquid in the water storage chamber 33 and spray it out from the atomizing outlet 31.
[0031] The water storage chamber 33 of the water storage component 32 can store a certain amount of atomized liquid, such as drug solution or purified water, for convenient long-term use. The atomizing plate 34 is snapped into the atomization outlet 31 for easy replacement and maintenance. When the atomizing plate 34 malfunctions or needs cleaning, it can be quickly disassembled. The power supply component 35 can effectively drive the atomizing plate 34 to work, realizing the atomization of the liquid and providing users with a stable atomized airflow to meet different usage needs, such as drug atomization in medical treatment or air humidification in dry environments. In this embodiment, the installation of the outer shell 11, mounting bracket 4, atomizing component 3, and water storage component 32 is simple, eliminating some unnecessary connection structures and reducing production costs.
[0032] Furthermore, the main body 1 has a water inlet 12, which leads to the water storage chamber 33. The sealing plate 5 is rotatably mounted on the main body 1. After the sealing plate 5 rotates, it is used to open or close the water storage chamber 33.
[0033] In this embodiment, a water inlet 12 is provided on the main body 1, and the water inlet 12 is connected to the water storage chamber 33. The sealing plate 5 is installed on the main body 1 through a rotating structure, so that the sealing plate 5 can rotate around an axis. When water needs to be added to the water storage chamber 33, the sealing plate 5 is rotated to the open position, and water or atomized liquid is injected into the water storage chamber 33 through a syringe or other water injection tool; after the water injection is completed, the sealing plate 5 is rotated to the closed position to seal the water inlet 12 and prevent liquid leakage from the water storage chamber 33.
[0034] The design of the inlet 12 and the sealing plate 5 facilitates the replenishment of liquid into the water storage chamber 33, allowing users to add appropriate atomizing liquid as needed. The sealing plate 5 effectively closes the water storage chamber 33, preventing liquid leakage during use and ensuring the normal use of the mask. It also prevents accidental liquid leakage from causing inconvenience or damage to the user.
[0035] Furthermore, the installation space 41 has a light-transmitting hole 13 and also includes: Indicator light 6 has one end mounted on the power supply unit 35 and electrically connected to the power supply unit 35, and the other end leads to the light-transmitting hole 13.
[0036] In this embodiment, a light-transmitting hole 13 is opened at a suitable position on the main body 1. The light-transmitting hole 13 can be circular, square, or other shapes. One end of the indicator light 6 is connected to the circuit of the power supply component 35, so that the indicator light 6 can reflect the working status of the power supply component 35. The other end of the indicator light 6 leads to the light-transmitting hole 13 through a channel in the mounting space 41, ensuring that the light emitted by the indicator light 6 can be seen by the user through the light-transmitting hole 13.
[0037] The indicator light 6 visually displays the operating status of the power supply unit 35. For example, the indicator light 6 illuminates when the power supply unit 35 is working normally, and flashes or goes out when the power supply unit 35 malfunctions or has insufficient power. Users can observe the status of the indicator light 6 at the light-transmitting hole 13 to understand the working condition of the atomizer mask in a timely manner, so as to perform maintenance or adjustments when necessary, thus improving the convenience and safety of use.
[0038] Furthermore, the light guide post 7 is set inside the light-transmitting hole 13, and the other end of the indicator light 6 passes through the light guide post 7 to the light-transmitting hole 13; the light-concentrating element 8 is sleeved on the light guide post 7, and the light-concentrating element 8 is made of rubber.
[0039] In this embodiment, a light guide post 7 is inserted into the light-transmitting hole 13. The light guide post 7 can be made of transparent plastic or glass, with one end in contact with or close to the other end of the indicator light 6, ensuring that the light emitted by the indicator light 6 can be effectively guided into the light guide post 7. Then, a light-concentrating element 8 is fitted onto the light guide post 7. The light-concentrating element 8 is black in color to effectively prevent scattering, so that the light is concentrated inside the light guide post 7 and emitted more concentratedly from the light-transmitting hole 13, improving the visibility of the indicator light 6.
[0040] The light guide column 7 transmits the light from the indicator light 6 to the light-transmitting hole 13, reducing light scattering and loss during transmission. The light-concentrating element 8 further enhances the concentration of the light, making the indicator light 6 display clearer and brighter.
[0041] Furthermore, the sealing plate 5 has a control protrusion 71.
[0042] In this embodiment, a control protrusion 71 is provided on the surface or edge of the sealing plate 5. The control protrusion 71 can be a circular, square, or other shaped protrusion. The position and size of the control protrusion 71 should facilitate user operation. For example, a larger protrusion can be provided on one side of the sealing plate 5 to facilitate the user to rotate the sealing plate 5 with their fingers.
[0043] The presence of the control protrusion 71 provides the user with a convenient operating point. The user can more easily rotate the sealing plate 5 and open or close the water storage chamber 33 by controlling the protrusion 71, which improves the convenience and accuracy of operation and makes the use of the mask more convenient.
[0044] Furthermore, control button 9 is slidably mounted on the main body 1. When control button 9 is slidably mounted, it is used to turn the power supply 35 on or off.
[0045] In this embodiment, the control button 9 can slide along a set direction. The control button 9 is connected to the power supply unit 35 via a wire or other electrical connection. When the control button 9 is pressed, the circuit of the power supply unit 35 is turned on or off, thereby turning the power supply unit 35 on or off. The control button 9 can be made of plastic or metal, with a non-slip texture or raised surface for easy operation by the user.
[0046] The design of control button 9 provides users with a simple and intuitive way to control the power supply component 35. Users can press control button 9 to start or stop the atomizing function of the atomizer mask as needed, without complicated operating procedures, thus improving ease of use.
[0047] Furthermore, the main body 1 has several first ventilation holes 14, and the cover 24 also has second ventilation holes 23, with the first ventilation holes 14 and the second ventilation holes 23 connected.
[0048] In this embodiment, the cover 24 is fitted snugly to the mounting bracket 4. To maintain pressure balance within the placement cavity 20 as much as possible, several second ventilation holes 23 are designed on the cover 24. These second ventilation holes 23 are connected to the first ventilation holes 14, ensuring that the pressure inside the placement cavity 20 remains consistent with the external atmospheric pressure. This facilitates better diffusion and transmission of the atomized material, allowing the user to inhale it more evenly. Furthermore, it prevents negative pressure from forming or excessive heat from accumulating within the placement cavity 20, ensuring a normal working environment for the atomizer mask, improving atomization efficiency and product stability, and also enhancing user comfort.
[0049] Furthermore, the main body 1 has first fixing rings 15 on both sides, and the strap 10 is wrapped around the two first fixing rings 15; the buckle 110 has second fixing rings 112, and the two ends of the strap 10 are correspondingly snapped into the two second fixing rings 112.
[0050] In this embodiment, first fixing rings 15 are installed at both sides of the main body 1. The first fixing rings 15 can be made of plastic and are fixed to the main body 1 by means of integral molding or other methods. The strap 10 is passed through the two first fixing rings 15. The strap 10 can be made of elastic or non-elastic material, and the appropriate width and length are selected as needed. The end of the strap 10 is inserted into the second fixing ring 112 of the buckle 110, and the tightness of the strap 10 is adjusted by adjusting the position of the buckle 110.
[0051] The design of the first fixing ring 15 and the strap 10 facilitates wearing the atomizer mask on the user's head, ensuring a tight fit to the face and preventing leakage of atomized substances. The buckle 110 and the second fixing ring 112 allow adjustment of the tightness of the strap 10 to accommodate different user head sizes and wearing needs, improving the comfort and stability of the mask and ensuring a good seal for effective inhalation of atomized substances.
[0052] Furthermore, the cover 24 has a placement cavity 20 and a first opening 21; the cover surface 25 is disposed on the cover 24, the cover surface 25 has an opening 201, the opening 201 communicates with the placement cavity 20, the cover surface 25 fits against the face, the opening 201 seals around the mouth and nose, and the cross-sectional area of the opening 201 is smaller than the cross-sectional area of the placement cavity 20.
[0053] In this embodiment, in order to make the mask fit the face better and prevent the atomized liquid from being wasted, the mask 2 is designed as a structure of a mask body 24 and a mask surface 25. The mask body 24 and the mask surface 25 are integrally formed. The mouth enters the placement cavity 20 through the opening 201. Since the opening 201 is small, it can fit around the mouth and nose to maximize the use of the atomized liquid. The structure of the opening 201 in this embodiment prevents the atomized liquid from flowing out of the face and causing waste.
[0054] Furthermore, the cover 25 has a protrusion 22 that fits against the face.
[0055] In this embodiment, the protrusion 22 is a flexible structure. The structure of the protrusion 22 can fit the face of most people. People who are thin have smaller faces, and the heightened structure of the protrusion 22 can make the protrusion 22 fit the face of thinner people. People who are overweight have larger faces. After wearing the mask, the protrusion 22 is squeezed. The flexible protrusion 22 will not cause pressure to the wearer. At the same time, the squeezed protrusion 22 fits the face more closely.
[0056] The nebulization control function of the mask-type micro-mesh nebulizer is crucial, directly affecting the nebulization effect of medication and the patient's treatment experience. Precise control of the nebulizer's operating state meets the needs of different patients. The power supply circuit board outputs a control signal at a specific frequency, which matches the resonant frequency of the nebulizer for optimal nebulization. The required PCB output excitation frequency is 108kHz, with an error of ±10%. This basic version operates in continuous nebulization mode, with a continuous nebulization time ≥20 minutes.
[0057] Power management is essential for the normal operation of this mask-style micro-mesh atomizer. It manages battery charging and monitors battery level to ensure a stable power supply at all times. The power management requirements for this motherboard design are as follows: Voltage: 3.7V for the built-in battery; Charging: DC 5V (450mA), compatible with common DC 5V output chargers; The product has a built-in lithium battery with a USB Type-C charging interface; The battery and atomizer interfaces use quick-connect connectors for easy assembly and maintenance. The product does not support atomization while charging; when charging while the device is powered on, the product will automatically disable atomization and enter charging mode.
[0058] The signal acquisition and processing function can monitor the atomizer's operating status in real time, providing users with accurate information and feedback. It uses indicator lights and sounds to display and prompt the device's operating status. The operating mode is real-time acquisition, ensuring users can promptly understand the device's operating status. The signal acquisition and processing function requirements for this motherboard design are as follows: 1. Power on: Press and hold the power on / off button for more than 3 seconds. The buzzer will sound twice and the blue indicator light will light up. Release the button to power on the product. The blue indicator light will remain on. 2. After powering on, briefly press the power on / off button. The nebulizer will sound once and the indicator light will change from solid blue to solid green. The nebulizer will then begin atomizing and spraying the medicine.
[0059] 3. After starting atomization, briefly press the power button to pause atomization. The buzzer will sound once and the indicator light will change from solid green to solid blue. The atomizer will then stop atomizing and spraying the medicine.
[0060] 4. Power Off: After stopping atomization, press and hold the power on / off button for more than 3 seconds until the buzzer sounds a long beep and all indicator lights go out. Release the button to power off the product. In any mode, if the atomization function is not triggered within 2 minutes from the start of atomization, the product will automatically power off with a 10% margin of error. 5. Low voltage warning function: When the voltage is low (3.4V±0.1V), atomization will stop, the blue indicator light will flash, and the buzzer will sound once.
[0061] 6. Liquid level warning function: When the liquid level in the nebulizer is ≤0.4mL, nebulization will stop, a buzzer will sound once, and a green indicator light will flash as a reminder; 7. During the product charging process, the red indicator light will remain on. After charging is complete, the red indicator light will turn off.
[0062] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A mask atomizer, characterized in that, include: Main body (1); A face mask (2) is disposed on the main body (1), the face mask (2) having a placement cavity (20) having a first opening (21); An atomizing element (3) is disposed on the main body (1), the atomizing element (3) having an atomizing outlet (31) that leads to the first through-hole (21). The main body (1) includes: The outer shell (11) is provided with the mask (2) on the outer shell (11); Mounting bracket (4) is mounted on housing (11), and mounting space (41) is formed between mounting bracket (4) and housing (11). Atomizing component (3) is mounted in mounting space (41). Mounting bracket (4) has second opening (42). Atomizing outlet (31), second opening (42) and first opening (21) are connected in sequence. The atomizing element (3) includes: A water storage component (32) is mounted on the mounting bracket (4). The water storage component (32) has a water storage cavity (33). The atomizing outlet (31) is located on the water storage component (32) and communicates with the water storage cavity (33). Atomizing plate (34) is snapped into the atomizing outlet (31); A power supply unit (35) is disposed on the mounting bracket (4), and the power supply unit (35) is used to drive the atomizing plate (34) to atomize; A control button (9) is slidably disposed on the main body (1). The control button (9) is used to turn the power supply (35) on or off after being slid.
2. A mask atomizer according to claim 1, characterized in that, The outer casing (11) has a water inlet (12) leading to the water storage chamber (33), and further includes: A sealing plate (5) is rotatably mounted on the outer shell (11). After the sealing plate (5) is rotated, it is used to open or close the water storage cavity (33). The sealing plate (5) has a control protrusion (71).
3. A mask atomizer according to claim 1, characterized in that, The installation space (41) has a light-transmitting hole (13) and also includes: The indicator light (6) has one end mounted on the power supply component (35) and electrically connected to the power supply component (35), and the other end leads to the light-transmitting hole (13).
4. A mask atomizer according to claim 3, characterized in that, Also includes: A light guide post (7) is disposed inside the light-transmitting hole (13), and the other end of the indicator light (6) passes through the light guide post (7) to the light-transmitting hole (13). A light-concentrating element (8) is fitted onto the light guide post (7).
5. A mask atomizer according to claim 1, characterized in that, The face mask (2) includes: The cover (24) has the placement cavity (20) and the first opening (21); A mask (25) is disposed on the mask body (24). The mask (25) has an opening (201) that communicates with the placement cavity (20). The mask (25) fits the face and the opening (201) is sealed around the mouth and nose. The cross-sectional area of the opening (201) is smaller than the cross-sectional area of the placement cavity (20).
6. A mask atomizer according to claim 5, characterized in that, The cover (25) has a protrusion (22) that fits against the face.
7. A mask atomizer according to claim 5, characterized in that, The main body (1) has a plurality of first ventilation holes (14), and the cover (24) also has a second ventilation hole (23), wherein the first ventilation hole (14) and the second ventilation hole (23) are connected.
8. A mask atomizer according to claim 1, characterized in that, Also includes: The outer casing (11) has first fixing rings (15) on both sides, and also includes: The strap (10) is wrapped around the two first fixing rings (15); The buckle (110) has a second fixing ring (112), and the two ends of the strap (10) are correspondingly snapped into the two second fixing rings (112).