Application of the ultrasonic characterization methods for highly attenuating plastic materials
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Condensed Matter Physics,General Materials Science
Reference27 articles.
1. Determination of transport parameters in air-saturated porous materials via reflected ultrasonic waves;Fellah;J Acoust Soc Am,2003
2. An equation for acoustic propagation in inhomogeneous media with relaxation losses;Nachman;J Acoust Soc Am,1990
3. Simulation of ultrasound pulse propagation in lossy media obeying a frequency power law;He;IEEE Trans Ultrason Ferroelect Freq Contr,1998
4. Kramers–Kronig relationship between ultrasonic attenuation and phase velocity;O’Donell;J Acoust Soc Am,1981
5. Causal theories and data for acoustic attenuation obeying a frequency power law;Szabo;J Acoust Soc Am,1995
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