Generating aerosol droplets via the atomization of thin aqueous films with high frequency surface acoustic waves (SAWs) offers several advantages over existing nebulization methods, particularly for pulmonary drug delivery, offering droplet sizes in the 1-5-μm range ideal for effective pulmonary therapy. Nevertheless, the physics underlying SAW atomization is not well understood, especially in the context of thin liquid film formation and spreading and how this affects the aerosol production. Here, we demonstrate that the film geometry, governed primarily by the applied power and frequency of the SAW, indeed plays a crucial role in the atomization process and, in particular, the size of the atomized droplets. In contrast to the continuous s...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
The ability to excite instabilities in free fluid surfaces via acoustic excitation is well known, ev...
Ultrasonic atomization of liquids results from the unstable surface waves generated at the level of ...
Generating aerosol droplets via the atomization of thin aqueous films with high frequency surface ac...
Generating aerosol droplets via the atomization of thin aqueous films with high frequency surface ac...
Surface acoustic wave atomization is promising in various kinds of industrial and pharmaceutical pro...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Surface acoustic wave atomization is a rapid means for generating micron and submicron aerosol dropl...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
Ultrasonic waves generated by piezoelectric devices produce forces on fluids and particles that can ...
The interaction of surface acoustic waves (SAWs) with liquids enables the production of aerosols wit...
Ultrasonic surface acoustic wave (SAW) actuation is a promising technique for generating fluid flow ...
The atomisation of liquids by means of low-frequency ultrasonic atomisers results from unstable surf...
This paper presents an analytical model for surface acoustic waves (SAW) in actuating a single liqui...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
The ability to excite instabilities in free fluid surfaces via acoustic excitation is well known, ev...
Ultrasonic atomization of liquids results from the unstable surface waves generated at the level of ...
Generating aerosol droplets via the atomization of thin aqueous films with high frequency surface ac...
Generating aerosol droplets via the atomization of thin aqueous films with high frequency surface ac...
Surface acoustic wave atomization is promising in various kinds of industrial and pharmaceutical pro...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Surface acoustic wave atomization is a rapid means for generating micron and submicron aerosol dropl...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
Ultrasonic waves generated by piezoelectric devices produce forces on fluids and particles that can ...
The interaction of surface acoustic waves (SAWs) with liquids enables the production of aerosols wit...
Ultrasonic surface acoustic wave (SAW) actuation is a promising technique for generating fluid flow ...
The atomisation of liquids by means of low-frequency ultrasonic atomisers results from unstable surf...
This paper presents an analytical model for surface acoustic waves (SAW) in actuating a single liqui...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
The ability to excite instabilities in free fluid surfaces via acoustic excitation is well known, ev...
Ultrasonic atomization of liquids results from the unstable surface waves generated at the level of ...