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Inverse determination of thickness and elastic properties of thin layers and graded materials using generalized Love waves

机译:使用广义洛夫波反演确定薄层和渐变材料的厚度和弹性特性

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Determination of the mechanical and geometrical parameters of thin coatings and surface layers in materials is of great practical importance in engineering and technology. In this work the authors present a novel inversion procedure for simultaneous determination of thickness, shear elastic constant and density of thin coating layers in materials. The inversion procedure is based on measurements of the dispersion curve for Love surface acoustic waves. The inverse problem is formulated as an optimization problem with the appropriately designed objective function, depending on the material parameters of the coating layer, ultrasonic frequency, and the experimental data, i.e., measured phase velocity of the surface Love wave. The minimization of the objective function provides three parameters of a thin layer, i.e., its thickness, shear elastic constant and density. The agreement between the results of calculations with the proposed inversion method and the experimental data was good.
机译:确定材料中的薄涂层和表面层的机械和几何参数在工程和技术中具有重要的实践意义。在这项工作中,作者提出了一种新颖的反演程序,可以同时测定材料中薄涂层的厚度,剪切弹性常数和密度。反转过程基于洛夫表面声波的色散曲线的测量值。根据涂层的材料参数,超声频率和实验数据(即测得的表面洛夫波的相速度),将反问题公式化为具有适当设计目标函数的优化问题。目标函数的最小化提供了薄层的三个参数,即其厚度,剪切弹性常数和密度。所提出的反演方法的计算结果与实验数据吻合良好。

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