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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >On the noninvasive determination of material parameters from a knowledge of elastic displacements theory and numerical simulation
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On the noninvasive determination of material parameters from a knowledge of elastic displacements theory and numerical simulation

机译:基于弹性位移理论和数值模拟的无创确定材料参数

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摘要

In this paper, we present a formulation and numerical simulation for the noninvasive determination of the material parameter ratios (i.e., the Lame parameters divided by density) of an isotropic, inhomogenous elastic medium subject to time harmonic vibration. Given a knowledge of the displacements throughout the medium, a novel implementation of a variational formulation is used to determine the ratios /spl lambda///spl rho/ and /spl mu///spl rho/. A theoretical formulation is presented and validated using numerical data obtained from a finite element method. The results indicate that the method may be applied locally within an inhomogenous medium, and that the corresponding material parameters can be recovered to a high degree of accuracy. In addition, the method does not appear to be subject to the typical wavelength constraints of previous methods.
机译:在本文中,我们提出了一种无创确定受时间谐波振动影响的各向同性非均质弹性介质的材料参数比率(即Lame参数除以密度)的公式和数值模拟。在了解整个介质的位移的情况下,采用变体公式的新颖实现方法确定比率/ spl lambda //// spl rho /和/ spl mu //// spl rho /。提出了理论公式,并使用了从有限元方法获得的数值数据进行了验证。结果表明,该方法可以在不均匀介质中局部应用,并且可以以较高的准确度恢复相应的材料参数。另外,该方法似乎不受先前方法的典型波长约束。

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