Early Fatigue Damage Evaluation of Nonlinear Guided Wave Imaging in Hyperelastic Materials

Cheng-hai Zhao, Sunia Tanweer, Jian Li, Min Lin, Xiang Zhang, Yang Liu
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Abstract

Nonlinear ultrasonic guided waves have superior sensitivity of the early fatigue damage. This paper investigates the analysis of the second harmonics of Lamb waves in a free boundary aluminum plate, and the internal resonance conditions between the Lamb wave primary modes and the second harmonics. The Murnaghan’s model is implemented in a finite element (FE) analysis to describe the hyperelastic constitutive relation for nonlinear acoustic modeling. The second harmonics of s0 mode are actuated by a 60kHz Hanning-windowed tone burst. A guided wave signal processing platform is developed for tomographic imaging. The different stages of fatigue are reflected by the changes of third-order elastic constants (TOECs) in Murnaghan’s model. The reconstructed damage locations match well with the actual ones cross different degrees and depths of fatigue.
超弹性材料非线性导波成像的早期疲劳损伤评估
非线性超声导波对早期疲劳损伤具有较好的敏感性。本文研究了自由边界铝板中兰姆波的二次谐波分析,以及兰姆波主模与二次谐波之间的内部共振条件。在有限元分析中采用Murnaghan模型描述非线性声学模型的超弹性本构关系。50模式的二次谐波是由一个60kHz汉宁窗音爆发驱动的。研制了用于层析成像的导波信号处理平台。在Murnaghan模型中,三阶弹性常数(TOECs)的变化反映了疲劳的不同阶段。在不同程度和深度的疲劳作用下,重建的损伤位置与实际损伤位置吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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