Jan 11, 2021 Leave a message

Principle Of Ultrasonic Atomization

Principle of ultrasonic atomization


The ultrasonic atomizer uses electronic high-frequency oscillation (the oscillation frequency is 1.7MHz or 2.4MHz, which exceeds the range of human hearing, and the electronic oscillation is not harmful to humans and animals), through the high-frequency resonance of the ceramic atomizer, to remove liquid water molecules The structure breaks up to produce natural and elegant water mist, without heating or adding any chemical reagents. Compared with the heating atomization method, energy saving is 90%. In addition, a large number of negative ions will be released during the atomization process, which will react electrostatically with smoke and dust floating in the air to precipitate them. At the same time, it can effectively remove formaldehyde, carbon monoxide, bacteria and other harmful substances to purify the air. Reduce the occurrence of diseases. The ultrasonic atomizer uses electronic high-frequency oscillation (the oscillation frequency is 1.7MHz or 2.4MHz, which exceeds the range of human hearing, and the electronic oscillation is not harmful to humans and animals), and through the high-frequency resonance of the ceramic atomizer, the liquid water molecules The structure breaks up to produce natural and elegant water mist, without heating or adding any chemical reagents. Compared with the heating atomization method, energy saving is 90%. In addition, a large number of negative ions will be released during the atomization process, which will react electrostatically with smoke and dust floating in the air to precipitate them. At the same time, it can effectively remove formaldehyde, carbon monoxide, bacteria and other harmful substances to purify the air. Reduce the occurrence of diseases.


   Ultrasonic atomization process: The disc-shaped ceramic piezoelectric transducer converts electrical energy into mechanical energy. The transducer receives high-frequency electrical signals from the ultrasonic generator and converts them into mechanical vibrations of the same frequency. Two titanium cylinders amplify the movement and increase the vibration amplitude of the atomized surface. The converted vibration of the transducer generates a horizontal standing wave in the direction of the nozzle, and the sound wave is large when it reaches the atomization surface (the small diameter part at the front end of the nozzle). The liquid is introduced to the atomization surface through the nozzle. The liquid appearing on the atomizing surface absorbs the vibration energy to achieve atomization.



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