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用于复杂固体损伤水平全局评估的非线性尾波干涉测量法。

Nonlinear coda wave interferometry for the global evaluation of damage levels in complex solids.

作者信息

Zhang Yuxiang, Tournat Vincent, Abraham Odile, Durand Olivier, Letourneur Stéphane, Le Duff Alain, Lascoup Bertrand

机构信息

LUNAM Université, LAUM, CNRS UMR 6613, Université du Maine, Av. O. Messiaen, 72085 Le Mans Cedex 9, France; LUNAM Université, IFSTTAR, MACS, CS4, 44344 Bouguenais Cedex, France.

LUNAM Université, LAUM, CNRS UMR 6613, Université du Maine, Av. O. Messiaen, 72085 Le Mans Cedex 9, France.

出版信息

Ultrasonics. 2017 Jan;73:245-252. doi: 10.1016/j.ultras.2016.09.015. Epub 2016 Sep 17.

Abstract

A nonlinear acoustic method to assess the damage level of a complex medium is discussed herein. Thanks to the highly nonlinear elastic signatures of cracks or, more generally, internal solid contacts, this method is able to distinguish between contributions from linear wave scattering by a heterogeneity and contributions from nonlinear scattering by a crack or unbounded interface. The coda wave interferometry (CWI) technique is applied to reverberated and scattered waves in glass plate samples featuring various levels of damage. The ultrasonic coda signals are recorded in both the absence and presence of an independent and lower-frequency elastic "pump" wave, before being analyzed by CWI. The monitored CWI parameters quantifying changes in these coda signals, which therefore quantify the nonlinear wave-mixing effects between the coda and pump waves, are found to be dependent on the damage level in the sample. A parametric study is also performed to analyze the influence of sensor positions and average temperature on the method's output. The reported results could be applied to the non-destructive testing and evaluation of complex-shape materials and multiple scattering samples, for which conventional ultrasonic methods show strong limitations.

摘要

本文讨论了一种用于评估复杂介质损伤程度的非线性声学方法。由于裂纹或更一般的内部固体接触具有高度非线性弹性特征,该方法能够区分由不均匀性引起的线性波散射贡献和由裂纹或无界界面引起的非线性散射贡献。将尾波干涉测量(CWI)技术应用于具有不同损伤程度的玻璃板样品中的混响波和散射波。在通过CWI进行分析之前,在不存在和存在独立的低频弹性“泵浦”波的情况下记录超声尾波信号。发现用于量化这些尾波信号变化的监测CWI参数,因此量化了尾波与泵浦波之间的非线性波混频效应,取决于样品中的损伤程度。还进行了参数研究,以分析传感器位置和平均温度对该方法输出的影响。所报道的结果可应用于复杂形状材料和多重散射样品的无损检测与评估,而传统超声方法在这些方面存在很大局限性。

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