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各向同性材料中瑞利波的非线性相互作用:数值与实验研究。

Nonlinear interaction of Rayleigh waves in isotropic materials: Numerical and experimental investigation.

作者信息

Gartsev Sergey, Zuo Peng, Rjelka Marek, Mayer Andreas, Köhler Bernd

机构信息

Fraunhofer IKTS, Maria Reiche Str. 2, 01109 Dresden, Germany.

Imperial College London, City and Guilds Building, London SW7 2AZ, UK.

出版信息

Ultrasonics. 2022 May;122:106664. doi: 10.1016/j.ultras.2021.106664. Epub 2022 Feb 2.

Abstract

Surface treatment intensity monitoring is still an open and challenging nondestructive testing problem. For the estimation of residual stress with ultrasonic measurements, local linear and nonlinear elastic constants are needed as input. In this paper, nonlinear elastic-wave interactions (also called wave mixing or scattering) - namely, the generation of secondary ultrasonic waves in a nonlinear medium - are considered as a prospective means for near-surface nonlinear elastic parameter evaluation. The allowed interactions between bulk and surface waves, as well as the dependence of the scattering efficiency on the frequency and angle between source waves, were investigated through an analytical model, then compared with FEM simulations and experimental results. Finally, possible future steps for the development of the applied methods for the determination of near-surface higher-order elastic constants are discussed. In addition, several problem-relevant data processing procedures are presented.

摘要

表面处理强度监测仍然是一个开放且具有挑战性的无损检测问题。对于通过超声测量来估计残余应力,需要局部线性和非线性弹性常数作为输入。在本文中,非线性弹性波相互作用(也称为波混频或散射)——即在非线性介质中产生二次超声波——被视为近表面非线性弹性参数评估的一种潜在手段。通过一个解析模型研究了体波与表面波之间允许的相互作用,以及散射效率对源波之间频率和角度的依赖性,然后与有限元模拟和实验结果进行了比较。最后,讨论了用于确定近表面高阶弹性常数的应用方法未来可能的发展步骤。此外,还介绍了一些与问题相关的数据处理程序。

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