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Characterizing the elastic shear modulus of a soft medium via a thermally induced elastic shear wave in thermodynamic equilibrium
Journal article   Peer reviewed

Characterizing the elastic shear modulus of a soft medium via a thermally induced elastic shear wave in thermodynamic equilibrium

Sheng-Yi Chang, Sanboh Lee, Wei-Ru Chen, Ming-Yih Lee and Chien Chou
Measurement science & technology, Vol.29(3), pp.035104/1-035104/8
01/03/2018

Abstract

Engineering Engineering, Multidisciplinary Instruments & Instrumentation Science & Technology Technology
A novel method to characterize the elastic shear modulus of an isotropic, homogeneous and extremely soft material based on a thermally induced elastic shear wave (TIESW) under thermodynamic equilibrium at room temperature is proposed. The temporal evolution of the TIESW on the surface of a squared polyvinyl acetate (PVA) specimen is observed, while the oscillation frequency of the TIESW is measured by using a two-frequency polarized heterodyne interferometer. In experiments, the oscillation frequency of the TIESW in PVA specimens is in the range of 10(-3) Hz, which is equivalent to mu Pa on the elastic shear modulus. The features and advantages of the TIESW-based method in comparison to conventional methods are discussed.

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