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Quantitative assessment of through-thickness crack size based on Lamb wave scattering in aluminium plates

机译:基于兰姆波散射的铝板全厚度裂纹尺寸定量评估

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摘要

The interaction of Lamb wave modes at varying frequencies with a through-thickness crack of different lengths in aluminium plates was analysed in terms of finite element method and experimental study. For oblique-wave incidence, both numerical and experimental results showed that the wave scattering from a crack leads to complicated transmission, reflection and diffraction accompanied by possible wave-mode conversion. A dual-PZT actuation scheme was therefore applied to generate the fundamental symmetrical mode (S_0) with enhanced energy to facilitate the identification of crack-scattered wave components. The relationship between crack length and the reflection/transmission coefficient obtained with the aid of the Hilbert transform was established, through which the crack length was quantitatively evaluated. The effects of wavelength of Lamb waves and wave diffraction on the properties of the reflection and transmission coefficients were analysed.
机译:通过有限元法和实验研究,分析了铝板上不同长度的兰姆波模式与不同长度的贯穿厚度裂纹的相互作用。对于斜波入射,数值和实验结果均表明,裂纹产生的波散射导致复杂的透射,反射和衍射,并可能伴随波模转换。因此,采用双PZT激励方案来生成具有增强能量的基本对称模式(S_0),以便于识别裂纹散射波分量。建立了裂纹长度与借助于希尔伯特变换获得的反射/透射系数之间的关系,从而定量评估了裂纹长度。分析了兰姆波的波长和波衍射对反射系数和透射系数性质的影响。

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