A compressed air type atomizer with sterilization function

By designing a sealed box structure and disinfection mechanism in the compressed air atomizer, the disinfection process after use is simplified, the problems of inconvenient component loading and unloading and wear are solved, the service life is extended, the cost is reduced, and the effectiveness of disinfection and the airtightness of the equipment are ensured.

CN121338176BActive Publication Date: 2026-05-19HEFEI MAIRUISI MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HEFEI MAIRUISI MEDICAL TECH CO LTD
Filing Date
2025-11-20
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing compressed air atomizers with built-in disinfection functions suffer from problems during use and disinfection, such as inconvenient component installation and removal, severe wear, poor sealing, short service life, and the risk of secondary infection.

Method used

A compressed air atomizer with built-in disinfection function was designed. After use, the medicine tank, mouthpiece, and mask are locked and fixed on the sealing box limit bracket. The sealing structure forms a sealed space. Combined with the air compressor and heating unit to dry the residual moisture, the dual-axis motor drives the components to discharge water vapor, the DC motor drives the disinfectant water to atomize, the flow guide device guides the flow of disinfection, and the ozone generator performs secondary disinfection. The process is simplified and repeated loading and unloading is avoided, ensuring sealing and disinfection effect.

Benefits of technology

It simplifies the disinfection process, reduces loading and unloading difficulties, extends the lifespan of the atomizer, lowers operating costs, ensures the effectiveness of disinfection and the airtightness of the equipment, and avoids secondary contamination.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a compressed air type atomizer with a disinfection function, relates to the technical field of atomizer disinfection, and discloses a compressed air type atomizer with a disinfection function, which comprises an air compressor and a disinfection mechanism, the disinfection mechanism is arranged on the outer side of the air compressor, the disinfection mechanism comprises a sealing box, a pressure relief hole cylinder and a sealing turntable, the sealing box is arranged on the outer side of the air compressor, the pressure relief hole cylinder is arranged on the inner side of the sealing box, and the sealing turntable is rotationally connected to the inner side of the sealing box, so that the situation that the atomizer cannot be used when standard installation is not performed on the atomizer is avoided, the problem that the sealing effect is deteriorated due to serious abrasion between components caused by multiple non-standard loading and unloading is further avoided, the overall use difficulty of the atomizer is reduced, the atomizer is convenient to maintain, the service life of the atomizer is prolonged, and the use cost is reduced.
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Description

Technical Field

[0001] This invention relates to the field of atomizer disinfection technology, specifically a compressed air atomizer with built-in disinfection function. Background Technology

[0002] A compressed air nebulizer is a medical device that uses a high-pressure airflow generated by a compressor to impact and break up the liquid medicine in the nebulizer cup, turning it into small, uniform droplets. This allows the medicine to be deposited in the lungs and then inhaled into the respiratory tract through a mask or mouthpiece to achieve local drug treatment.

[0003] In traditional nebulizers, components such as the nebulizer cup, mask, and air tubing that come into direct contact with the medication and respiratory tract are prone to residues of medication and saliva, which can breed bacteria and viruses. If not disinfected in a timely and effective manner, microbial contamination can easily occur, leading to respiratory infections when inhaled with the nebulized air. This poses a higher risk, especially to long-term users with weakened immune systems such as the elderly, children, and those with asthma. To avoid cross-infection, ensure medication safety, and improve ease of use, a compressed air nebulizer with built-in disinfection function is needed.

[0004] However, the existing compressed air atomizer with built-in disinfection function has the following shortcomings:

[0005] 1) Existing compressed air nebulizers with built-in disinfection functions use their own disinfection chamber. After nebulization, the nebulizer cup, mask, and mouthpiece are disassembled and placed into the disinfection chamber. The disinfection mechanism in the chamber automatically disinfects the nebulizer cup, mask, and mouthpiece. This method can achieve good disinfection. However, since the target audience of nebulizers is mostly the elderly and children, it is not convenient to assemble and disassemble the various parts of the nebulizer. If the parts are not installed in a standard manner, the nebulizer will not work. Moreover, repeated improper assembly and disassembly will cause severe wear between the parts, resulting in poor sealing effect, thereby reducing the service life of the nebulizer and increasing the cost of use.

[0006] 2) After disinfection, the nebulizer needs to be stored. Some nebulizers still need to be reassembled and stored after manual disinfection. During this period, there is still a risk of reinfection in the nebulizer.

[0007] Therefore, we propose a compressed air atomizer with built-in disinfection function to solve the problems mentioned above. Summary of the Invention

[0008] The purpose of this invention is to provide a compressed air nebulizer with a built-in disinfection function. After use, the remaining liquid in the medicine tank is poured out, and the medicine tank, mouthpiece, and mask are rinsed. Then, the three are locked onto the sealing box limit bracket and the conduit is connected. The sealing box is closed by rotating the base and the sealing box, forming a sealed space with the help of the sealing structure. The remaining sealing boxes are then locked together to form a sealed cylinder. After that, the air compressor and heating unit are turned on to dry the residual moisture. The dual-axis motor drives the components to discharge water vapor. Then, the DC motor drives the disinfectant water to atomize. The water is guided by the flow guide device to disinfect for 20 minutes. After disinfection, the residual disinfectant gas is discharged. The ozone generator disinfects the gaps a second time. Finally, ozone is discharged to complete the disinfection. This design simplifies the process, reduces the difficulty, avoids the inconvenience of repeated loading and unloading and the wear and tear on the components, extends the service life, and reduces the cost. The sealed structure ensures no leakage during disinfection. When the equipment is not in use, it is isolated from dust and moisture. After disinfection, the accessories can be directly stored in the disinfection space to avoid secondary pollution.

[0009] To achieve the above objectives, the present invention provides the following technical solution: a compressed air atomizer with built-in disinfection function, comprising an air compressor and a disinfection mechanism, wherein the disinfection mechanism is disposed on the outside of the air compressor;

[0010] The disinfection mechanism includes a sealing box, a pressure relief cylinder, and a sealing turntable. The sealing box is located outside the air compressor, the pressure relief cylinder is installed inside the sealing box, and the sealing turntable is rotatably connected to the inside of the sealing box. The pressure relief cylinder is used to adjust the air pressure inside the sealing box, and the sealing turntable is used to adjust the airflow through the pressure relief cylinder.

[0011] Preferably, the disinfection mechanism further includes a base, which is installed on the outside of the air compressor. The base has multiple air intake holes on its inner side. The outer side of the base is rotatably connected to the sealing box. A filter plate is provided on the inner bottom of the base. A baffle is provided at the bottom of the filter plate. The baffle engages with the base. An installation plate is installed on the top of the air compressor.

[0012] Preferably, a mounting bracket is provided on the inner side of the mounting plate, the bottom of the mounting bracket is installed on the top of the air compressor, a disinfection chamber is installed on the top of the mounting bracket, a sliding sealing plug is slidably connected to the inner side of the disinfection chamber, and a DC motor is installed on the inner side of the sliding sealing plug.

[0013] Preferably, the DC motor is installed on the outside of the disinfection chamber, the top of the disinfection chamber is provided with an inlet, the outside of the disinfection chamber is provided with an outlet, the inside of the outlet is connected to a connector, and the bottom of the connector is connected to a one-way solenoid valve.

[0014] Preferably, the one-way solenoid valve is connected to the air compressor, and a connecting conduit is connected to the top of the connector.

[0015] Preferably, a heating unit is provided on the outside of the connecting conduit, and a medicine container is installed at the other end of the connecting conduit, with the output end of the medicine container connected to a face mask.

[0016] Preferably, a limiting bracket is provided on the outside of the medicine compartment, the bottom of the limiting bracket is fixedly connected to the inside of the sealed box, a suction nozzle is provided on the inside of the sealed box, and a flow guiding device is provided on the outside of the suction nozzle.

[0017] Preferably, an ozone generator is provided on the outside of the flow guiding device, a channel is provided on the inside of the sealing box, a pressure relief cylinder is provided on the inside of the channel, an exhaust fan is provided on the inside of the pressure relief cylinder, a dual-shaft motor is provided on the outside of the exhaust fan, and a sealing turntable is provided on the other output end of the dual-shaft motor.

[0018] Preferably, the sealing turntable is in close contact with the channel, a sealing ball is installed on the top of the base, a spherical sealing groove is opened on the top of the sealing box, and strip-shaped sealing grooves are opened on both sides of the outer side of the sealing box. A sealing strip is installed on the inner side of one side of the strip-shaped sealing groove, and the outer side of the sealing strip is in close contact with the strip-shaped sealing groove on the other side.

[0019] Preferably, the mounting plate is composed of multiple splicing plates, each with holes and grooves. The holes and grooves are respectively sealed to their corresponding mounting brackets and one-way solenoid valves. Sliding grooves are provided on the inner sides of the splicing plates on both sides, and elastic sealing rods are slidably connected to the inner sides of the sliding grooves.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. After using the compressed air nebulizer, the remaining liquid in the medicine tank is first poured out. The medicine tank, mouthpiece, and mask are then rinsed with running tap water. These three components are then secured to the limiting bracket of the sealing box and connected to the connecting tubing. The sealing box is then closed by rotating the base and the two side sealing boxes. A sealed space is formed by the cooperation of the strip sealing groove, sealing strip, and elastic sealing rod. The remaining sealing boxes are then secured to form a sealed cylinder. The air compressor and heating unit are then turned on to evaporate any remaining moisture with hot air. After drying, the dual-axis motor is started, driving the sealing disc and exhaust fan to expel water vapor. Then, a DC motor pushes disinfectant water to the connector, where it is compressed and atomized by air and guided by the flow guiding device. Disinfection lasts for twenty minutes. After disinfection, the dual-axis motor and air compressor are restarted to expel residual disinfectant gas. The ozone generator is then turned on for secondary disinfection of the gaps. Finally, ozone is released to complete the disinfection process. This method of disinfecting the atomizer simplifies the process and reduces the difficulty of disinfection. It avoids the inconvenience of repeatedly assembling and disassembling the atomizer components and eliminates the possibility of the atomizer becoming unusable due to improper installation. Furthermore, it avoids the problem of severe wear between components caused by repeated improper assembly and disassembly, which leads to poor sealing. This reduces the overall difficulty of using the atomizer, facilitates maintenance, extends its service life, and lowers operating costs.

[0022] 2. The compressed air atomizer of the present invention forms a sealed cylindrical structure through a combination of sealed boxes, so that the disinfection process is in a controllable and sealed space inside the equipment throughout, ensuring that the disinfectant spray and ozone do not leak, maintaining an effective disinfection concentration and disinfection efficiency. When the equipment is not in use, it isolates external dust and moisture, protecting the air compressor main unit and precision components. At the same time, the medicine tank and nozzle are left directly in the sealed equipment after disinfection, avoiding secondary pollution problems. Attached Figure Description

[0023] Figure 1 This is a perspective view of the main structure of a compressed air atomizer with built-in disinfection function according to the present invention.

[0024] Figure 2 This is a three-dimensional structural view of a compressed air atomizer with built-in disinfection function according to the present invention.

[0025] Figure 3 This is a three-dimensional exploded view of the disinfection mechanism in a compressed air atomizer with built-in disinfection function according to the present invention.

[0026] Figure 4 for Figure 3 Enlarged view of point A in the image;

[0027] Figure 5 for Figure 4 Enlarged view of point B in the image;

[0028] Figure 6 This is a diagram illustrating a compressed air atomizer with built-in disinfection function of the present invention when the air compressor is closed.

[0029] Figure 7 This is a demonstration of a compressed air atomizer with built-in disinfection function during disinfection, according to the present invention.

[0030] In the diagram: 1. Air compressor; 2. Disinfection mechanism; 201. Base; 202. Intake port; 203. Filter plate; 204. Baffle; 205. Sealing box; 206. Spherical sealing groove; 207. Strip sealing groove; 208. Sealing strip; 209. Mounting plate; 210. Mounting bracket; 211. DC motor; 212. Sliding sealing plug; 213. Disinfection chamber; 214. Addition port; 215. Exhaust. 216. Outlet; 217. Connector; 218. One-way solenoid valve; 219. Connecting conduit; 220. Medicine tank; 221. Mask; 222. Nozzle; 222. Heating unit; 223. Limiting bracket; 224. Flow guiding device; 225. Ozone generator; 226. Elastic sealing rod; 227. Sealing ball; 228. Pressure relief cylinder; 229. Exhaust fan; 230. Dual-shaft motor; 231. Sealing turntable. Detailed Implementation

[0031] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0032] Example 1, according to Figure 1 - Figure 3As shown, a compressed air atomizer with built-in disinfection function includes an air compressor 1 and a disinfection mechanism 2. The disinfection mechanism 2 is located outside the air compressor 1 and includes a sealing box 205, a pressure relief cylinder 228, and a sealing turntable 231. The sealing box 205 is located outside the air compressor 1, the pressure relief cylinder 228 is installed inside the sealing box 205, and the sealing turntable 231 is rotatably connected to the inside of the sealing box 205. The pressure relief cylinder 228 is used to adjust the air pressure inside the sealing box 205, and the sealing turntable 231 is used to adjust the airflow through the pressure relief cylinder 228. The disinfection mechanism 2 also includes a base 201, which is installed on the air compressor 1. Multiple air intake holes 202 are provided on the outer side of the compressor 1 and the inner side of the base 201. The outer side of the base 201 is rotatably connected to the sealing box 205. A filter plate 203 is provided on the inner bottom of the base 201. A baffle 204 is provided at the bottom of the filter plate 203 and engages with the base 201. An installation plate 209 is installed on the top of the air compressor 1. An installation bracket 210 is provided on the inner side of the installation plate 209. The bottom of the installation bracket 210 is installed on the top of the air compressor 1. A disinfection chamber 213 is installed on the top of the installation bracket 210. A sliding sealing plug 212 is slidably connected to the inner side of the disinfection chamber 213. A DC motor 211 is installed on the inner side of the sliding sealing plug 212.

[0033] The overall effect of Embodiment 1 is as follows: After the compressed air nebulizer is used, the remaining liquid in the medicine tank 219 is poured out, and the medicine tank 219, mouthpiece 221, and mask 220 are rinsed with running tap water. After rinsing, the three are respectively engaged and fixed with the corresponding limiting brackets 223 in the sealing box 205, and the connecting conduit 218 is connected. Then, using the rotational connection between the base 201 and the two sealing boxes 205, the two sealing boxes 205 are combined and closed towards the base 201, so that the strip sealing groove 207 and sealing strip 208 on the base 201 are engaged and sealed with the corresponding parts on the sealing box 205. At this time, the elastic sealing rods 226 on both sides of the mounting plate 209 are pressed against the top of the inner side of the two sealing boxes 205 and slid inward, thus achieving elastic sealing. The rod 226 achieves a tight seal through its own elasticity, thereby forming a sealed space with the base 201, the two side sealing boxes 205, and the mounting plate 209 to enclose the air compressor 1 main unit. Finally, the remaining sealing boxes 205 are sequentially locked together, making the entire device a nearly sealed cylinder. This maintains a sealed environment inside the device during the subsequent disinfection stage, ensuring that the disinfectant spray and ozone do not leak, thereby increasing the disinfection concentration and efficiency. When not in use, it isolates external dust and moisture from entering the device, preventing the air compressor 1 main unit and precision components from getting damp and accumulating dust, reducing the risk of failure. Furthermore, during the disinfection stage and after the disinfection work is completed, there is no need to store the medicine tank 219, the nozzle 221, and the mask 220 separately; they can be stored directly inside the sealed device, avoiding secondary contamination.

[0034] Example 2, according to Figure 2 - Figure 7 As shown, a DC motor 211 is installed on the outside of the disinfection chamber 213. A filling port 214 is located at the top of the disinfection chamber 213, and an outlet 215 is located on the outside of the chamber. A connector 216 is connected to the inside of the outlet 215, and a one-way solenoid valve 217 is connected to the bottom of the connector 216. The one-way solenoid valve 217 is connected to the air compressor 1. A connecting conduit 218 is connected to the top of the connector 216, and a heating unit 222 is located on the outside of the connecting conduit 218. A medicine chamber 219 is installed at the other end of the connecting conduit 218, and a face mask 220 is connected to the output end of the medicine chamber 219. A limit bracket 223 is located on the outside of the medicine chamber 219, and the bottom of the limit bracket 223 is fixedly connected to the inside of the sealing box 205. A suction nozzle 221 is located inside the sealing box 205, and a flow guiding device 224 is located on the outside of the suction nozzle 221. An ozone generator 225 is located on the outside of the flow guiding device 224. A channel is provided inside the box 205. A pressure relief cylinder 228 is installed inside the channel. An exhaust fan 229 is provided inside the pressure relief cylinder 228. A dual-shaft motor 230 is installed outside the exhaust fan 229. A sealing turntable 231 is installed at the output end of the other side of the dual-shaft motor 230. The sealing turntable 231 is sealed to the channel. A sealing ball 227 is installed on the top of the base 201. A spherical sealing groove 206 is opened on the top of the sealing box 205. The outer sides of the 5 are provided with strip-shaped sealing grooves 207. A sealing strip 208 is installed on the inner side of one side of the strip-shaped sealing groove 207. The outer side of the sealing strip 208 is in close contact with the other side of the strip-shaped sealing groove 207. The mounting plate 209 is composed of multiple splicing plates. Each of them has holes and grooves. The holes and grooves are in close contact with their corresponding mounting brackets 210 and one-way solenoid valves 217. The inner side of the splicing plates on both sides is provided with sliding grooves. The inner side of the sliding grooves is slidably connected to the elastic sealing rods 226.

[0035] The effect achieved by the entire embodiment 2 is as follows: the air compressor 1 is then turned on to blow air into the connecting duct 218 and the heating unit 222 is started. The residual moisture in the equipment is evaporated by the heated airflow. After drying, the dual-axis motor 230 is turned on to drive the sealing turntable 231 and the exhaust fan 229 to rotate. The slots on the sealing turntable 231 and the channels on the sealing box 205 alternately seal and connect to release the sealing state. The exhaust fan 229 discharges water vapor. Then, the DC motor 211 is turned on to drive the sliding sealing plug 212 to push the disinfectant water in the disinfection chamber 213 to the connector 216. The air compressor 1 blows the disinfectant water into the medicine chamber 219 and atomizes it. At the same time, the flow guiding device 224 is turned on to guide the spray flow. This method is maintained for twenty minutes. After the disinfection is completed, the dual-axis motor 230 is turned on again and the air compressor 1 is started to discharge the residual disinfectant water gas in the connecting duct 218 and the equipment. Then, the ozone generator 225 is turned on to perform secondary disinfection on the gaps not covered by the disinfectant water. Finally, the ozone is discharged by the exhaust fan 229 driven by the dual-axis motor 230 to complete the disinfection.

[0036] The working principle of the entire device is as follows: When the nebulizer is finished, first pour out the remaining liquid from the medicine tank 219. Then rinse the medicine tank 219, mouthpiece 221, and mask 220 with running tap water. After rinsing, place the medicine tank 219, mouthpiece 221, and mask 220 directly into the sealing box 205. Secure the connecting tube 218, medicine tank 219, mouthpiece 221, and mask 220 to their corresponding limiting brackets 223. Then, assemble the sealing boxes 205 on both sides of the base 201. Since the base 201 is rotatably connected to the sealing boxes 205 on both sides, simply close the sealing boxes 205 onto the base 201. The strip sealing groove 207 and sealing strip 208 on the base 201 respectively connect to the sealing... The strip sealing groove 207 and sealing strip 208 on box 205 engage and seal tightly. At this time, the inner top of the two sealing boxes 205 contacts the elastic sealing rods 226 on both sides of the mounting plate 209, and pushes the elastic sealing rods 226 inward toward the mounting plate 209 to make them slide. Due to the elasticity of the elastic sealing rods 226, they seal tightly with the inner top of the two sealing boxes 205. Combined with the sealing relationship between the strip sealing groove 207 and the sealing strip 208, the base 201, the sealing boxes 205 on both sides of the base 201, and the mounting plate 209 are sealed, and the air compressor 1 main unit is sealed inside. After completing the sealing work of the air compressor 1 main unit, the remaining sealing boxes 205 are engaged sequentially to make The entire device is approximately a sealed cylinder. After completing the above preparations, the air compressor 1 is turned on to blow air into the connecting conduit 218, and the heating unit 222 is turned on simultaneously to raise the temperature of the airflow blown out of the connecting conduit 218, thereby increasing the temperature inside the entire device. This evaporates the water remaining in the components during rinsing. Then, the dual-shaft motor 230 is turned on, simultaneously driving the sealing disc 231 and the exhaust fan 229 to rotate. As the sealing disc 231 rotates, the slots on it alternately seal and connect with the channels on the sealing box 205, thereby releasing the seal on the inside of the device. With the synchronously rotating exhaust fan 229, the internal water vapor is discharged. Finally, the DC motor 21 is turned on. 1. The sliding sealing plug 212 moves, causing it to push the disinfectant in the disinfection chamber 213 to the connector 216. The continuously running air compressor 1 blows the disinfectant into the medicine chamber 219, where it is sprayed out in aerogel form according to the atomizer's principle. During this process, the flow guiding device 224 is activated to allow the disinfectant spray to circulate inside the device, increasing the coverage area. This process is maintained for twenty minutes. After disinfection, the dual-axis motor 230 is activated again, and simultaneously, the air compressor 1 blows out the disinfectant gas in the connecting conduit 218, thus removing any residual disinfectant gas from the device. Finally, the ozone generator 225 is activated to perform secondary disinfection on any gaps not reached by the disinfectant spray.Finally, the disinfection process is completed when the dual-shaft motor 230 drives the exhaust fan 229 to expel the ozone gas inside.

[0037] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A compressed air atomizer with built-in disinfection function, comprising an air compressor (1) and a disinfection mechanism (2), characterized in that: The disinfection mechanism (2) is located outside the air compressor (1); The disinfection mechanism (2) includes a sealing box (205), a pressure relief cylinder (228), and a sealing turntable (231). The sealing box (205) is located on the outside of the air compressor (1), the pressure relief cylinder (228) is installed on the inside of the sealing box (205), and the sealing turntable (231) is rotatably connected to the inside of the sealing box (205). The pressure relief cylinder (228) is used to adjust the air pressure inside the sealing box (205), and the sealing turntable (231) is used to adjust the pressure relief cylinder. The airflow communication of (228) is adjusted. The disinfection mechanism (2) also includes a base (201). The base (201) is installed on the outside of the air compressor (1). The inner side of the base (201) is provided with a plurality of air intake holes (202). The outer side of the base (201) is rotatably connected to the sealing box (205). A filter plate (203) is provided on the inner side of the bottom of the base (201). A baffle (204) is provided at the bottom of the filter plate (203). Engaged with the base (201), the air compressor (1) is provided with a mounting plate (209) on its top. A mounting bracket (210) is provided on the inner side of the mounting plate (209). The bottom of the mounting bracket (210) is mounted on the top of the air compressor (1). A disinfection chamber (213) is mounted on the top of the mounting bracket (210). A sliding sealing plug (212) is slidably connected to the inner side of the disinfection chamber (213). A DC motor (211) is mounted on the inner side of the sliding sealing plug (212). After washing, place the medicine chamber (219), suction nozzle (221) and mask (220) directly into the sealed box (205). Utilize the rotational connection between the base (201) and the two sealed boxes (205) on both sides to close the two sealed boxes (205) towards the base (201), so that the base (201), the two sealed boxes (205) on both sides and the mounting plate (209) form a sealed space to enclose the air compressor (1) main unit. Finally, lock the remaining sealed boxes (205) in sequence to make the entire device form an approximately sealed cylinder.

2. The compressed air atomizer with built-in disinfection function according to claim 1, characterized in that: The DC motor (211) is installed on the outside of the disinfection chamber (213). The top of the disinfection chamber (213) is provided with an inlet (214). The outside of the disinfection chamber (213) is provided with an outlet (215). The inside of the outlet (215) is connected to a connector (216). The bottom of the connector (216) is connected to a one-way solenoid valve (217).

3. The compressed air atomizer with built-in disinfection function according to claim 2, characterized in that: The one-way solenoid valve (217) is connected to the air compressor (1), and the top of the connector (216) is connected to a connecting conduit (218).

4. The compressed air atomizer with built-in disinfection function according to claim 3, characterized in that: A heating unit (222) is provided on the outside of the connecting conduit (218), and a medicine container (219) is installed at the other end of the connecting conduit (218). The output end of the medicine container (219) is connected to a mask (220).

5. The compressed air atomizer with built-in disinfection function according to claim 4, characterized in that: The outer side of the medicine container (219) is provided with a limiting card holder (223), the bottom of the limiting card holder (223) is fixedly connected to the inner side of the sealing box (205), the inner side of the sealing box (205) is provided with a suction nozzle (221), and the outer side of the suction nozzle (221) is provided with a flow guiding device (224).

6. The compressed air atomizer with built-in disinfection function according to claim 5, characterized in that: An ozone generator (225) is provided on the outside of the flow guiding device (224). A channel is provided on the inside of the sealing box (205). A pressure relief cylinder (228) is installed on the inside of the channel. An exhaust fan (229) is provided on the inside of the pressure relief cylinder (228). A dual-axis motor (230) is installed on the outside of the exhaust fan (229). A sealing turntable (231) is installed on the other output end of the dual-axis motor (230).

7. The compressed air atomizer with built-in disinfection function according to claim 6, characterized in that: The sealing turntable (231) is in close contact with the channel. A sealing ball (227) is installed on the top of the base (201). A spherical sealing groove (206) is opened on the top of the sealing box (205). Strip sealing grooves (207) are opened on both sides of the outer side of the sealing box (205). A sealing strip (208) is installed on the inner side of one side of the strip sealing groove (207). The outer side of the sealing strip (208) is in close contact with the strip sealing groove (207) on the other side.

8. The compressed air atomizer with built-in disinfection function according to claim 7, characterized in that: The mounting plate (209) is composed of multiple splicing plates, each with holes and grooves. The holes and grooves are respectively sealed to their corresponding mounting brackets (210) and one-way solenoid valves (217). The inner sides of the splicing plates on both sides are provided with sliding grooves, and the inner sides of the sliding grooves are slidably connected to elastic sealing rods (226).