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Determination of the parameters of a linear-viscoelastic thin layer using the normally-incident ultrasonic waves
Authors:Yao Gui-Jin  Lü Wei-Guo  Song Ruo-Long  Cui Zhi-Wen  Zhang Xiang-Lin  Wang Ke-Xie
Affiliation:The School of Communication Engineering, Jilin University, Changchun 130012, China; The School of Physics, Jilin University, Changchun 130023, China
Abstract:This paper proposes a method of simultaneous determination of the four layer parameters (mass density, longitudinal velocity, the thickness and attenuation) of an immersed linear-viscoelastic thin layer by using the normally-incident reflected and transmitted ultrasonic waves. The analytical formula of the layer thickness related to the measured transmitted transfer functions is derived. The two determination steps of the four layer parameters are developed, in which acoustic impedance, time-of-flight and attenuation are first determined by the reflected transfer functions. Using the derived formula, it successively calculates and determines the layer thickness, longitudinal velocity and mass density by the measured transmitted transfer functions. According to the two determination steps, a more feasible and simplified measurement setups is described. It is found that only three signals (the reference waves, the reflected and transmitted waves) need to be recorded in the whole measurement for the determination of the four layer parameters. A study of the stability of the determination method against the experimental noises and the error analysis of the four layer parameters are made. This study lays the theoretical foundation of the practical measurement of a linear-viscoelastic thin layer.
Keywords:ultrasonic determination  normally-incident reflected/transmitted waves  layer parameters  linear-viscoelastic thin layer
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