In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing signals, pressures were measured in four different liquids contained in vessels with a frequency mode in resonance with the forcing signal. The pressure field in liquid metal was quantified for the first time, with maximum pressures of the order of 10–15MPa measured in liquid aluminium. These high pressures are presumed to be responsible for deagglomeration and fragmentation of dendritic intermetallics and other inclusions. Numerical modelling showed that acoustic shielding attenuates pressure far from the sonotrode and it is prominent in the transparent liquids studied but less so in aluminium, suggesting that aluminium behaviour is different....
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
Currently, fundamental experimental studies in liquid metals are limited as there are very few avail...
Currently, fundamental experimental studies in liquid metals are limited as there are very few avail...
The application of ultrasound to industrial casting processes has attracted research interest during...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
The application of ultrasound to casting processes is a subject of great interest: the resulting deg...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
In an attempt to quantify the instantaneous pressure field in cavitating liquids at large forcing si...
Currently, fundamental experimental studies in liquid metals are limited as there are very few avail...
Currently, fundamental experimental studies in liquid metals are limited as there are very few avail...
The application of ultrasound to industrial casting processes has attracted research interest during...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
The application of ultrasound to casting processes is a subject of great interest: the resulting deg...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...