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Nonlinear Ultrasound: A Novel Approach to Flaw Detection and Imaging

机译:非线性超声:一种探测和成像的新方法

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摘要

Conventional ultrasonic NDT equipment is normally a mono-frequency instrument which makes use of the amplitude and phase variations of the input signal due to its scattering by defects. The nonlinear approach to ultrasonic NDT (NNDT) is concerned with the nonlinear response of defects, which is related to extreme frequency changes of the original input signal. These spectral changes are caused by a high nonlinearity of micro- and macro-scale defects. In the paper, basic mechanisms responsible for frequency conversion by nonlinear defects are discussed and major features of the nonlinear spectra derived. Experimental methodologies of nonlinear scanning laser vibrometry (NSLV) and nonlinear air-coupled emission (NACE) are used to study nonlinear elastic wave-defect interactions. Applications for defect-selective imaging and NNDT are demonstrated for a series of hi-tech materials and industrial components.
机译:传统的超声波NDT设备通常是单频仪器,其由于其缺陷散射而利用输入信号的幅度和相位变化。超声波NDT(NNDT)的非线性方法涉及缺陷的非线性响应,其与原始输入信号的极频变化有关。这些光谱变化是由微观和宏观缺陷的高度非线性引起的。本文讨论了由非线性缺陷的频率转换负责的基本机制,并导出的非线性谱的主要特征。非线性扫描激光振动器(NSLV)和非线性空气耦合发射(NACE)的实验方法用于研究非线性弹性波缺陷相互作用。用于缺陷选择性成像和NNDT的应用,用于一系列高科技材料和工业部件。

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