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Surface Waves for Anisotropic Material Characterization-A Computer Aided Evaluation System

机译:各向异性材料表征的表面波-计算机辅助评估系统

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摘要

Along with a wide application of nondestructive evaluation methods by ultrasonic techniques, Rayleigh surface waves are being studied for their applications in material characterization. Because surface waves can offer some sensitive measurement features of wave propagation, it is suggested that surface waves be conveniently used as an experimental technique for the solution of the inverse problem of determining elastic constants and/or other characteristics in materials [1–3]. The most common direct problem is to obtain wave propagation features by theoretical analysis, experimental measurement, or numerical calculation. A desired problem in material evaluation however, is to solve an inverse problem to find material characteristics from a set of field measurement data. In surface wave problems, the closed form solutions may not even exist for some direct problems. Moreover, often material constants collectively influence the ultrasonic wave propagation in anisotropic medium, and we can not decouple them and evaluate them individually by each single ultrasonic measurement. Therefore, a numerical computational procedure is proposed.
机译:随着超声技术对无损评估方法的广泛应用,正在研究瑞利表面波在材料表征中的应用。因为表面波可以提供一些敏感的波传播测量特性,所以建议将表面波方便地用作一种实验技术,以解决确定材料中的弹性常数和/或其他特征的反问题[1-3]。最常见的直接问题是通过理论分析,实验测量或数值计算来获得波传播特征。然而,材料评估中的期望问题是解决反问题以从一组现场测量数据中找到材料特性。在表面波问题中,对于某些直接问题,甚至可能不存在闭合形式的解。而且,材料常数通常会共同影响超声波在各向异性介质中的传播,因此我们无法将其解耦并通过每次超声波测量分别对其进行评估。因此,提出了一种数值计算程序。

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