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Transient elastic wave propagation and scattering in plates: comparison between pulsed TV-holography measurements and finite element method predictions

机译:板中的瞬态弹性波传播和散射:脉冲电视全息测量与有限元方法预测之间的比较

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摘要

Pulsed TV-holography (PTVH) can be used for obtaining two-dimensional maps of instantaneous out-of-plane displacements in plates. In particular, our group has demonstrated that scattering patterns generated by the interaction of elastic waves with defects can be measured with PTVH and employed for quantitative characterization of damage in non-destructive inspection in plate structures. Recently, we have succeeded in obtaining a quantitative description of experimental scattering patterns produced by holes in harmonic regime using a finite element method (FEM) applied to a two-dimensional model based on the scalar wave equation, avoiding the standard and more complex vector approach based on the rigorous linear elasticity theory. In this work, a similar scheme is employed to characterize equivalent scattering phenomena but in transient regime. Simulated propagation and scattering patterns are tried with the scalar FEM and the corresponding experimental propagation and interaction of Rayleigh-Lamb waves with artificial defects in plates are measured using our specifically developed PTVH system. On this basis, a comparison between experimental maps and FEM simulated maps is developed.
机译:脉冲电视全息(PTVH)可用于获取板中瞬时平面外位移的二维图。特别是,我们的小组已经证明,可以用PTVH测量由弹性波与缺陷相互作用产生的散射图样,并将其用于板结构无损检测中损伤的定量表征。最近,我们成功地使用了基于标量波方程的二维模型的有限元方法(FEM),获得了由谐波在空穴中产生的实验散射图的定量描述,从而避免了标准方法和更复杂的矢量方法基于严格的线性弹性理论。在这项工作中,采用了类似的方案来表征等效散射现象,但是处于瞬态状态。使用标量有限元法尝试模拟传播和散射模式,并使用我们专门开发的PTVH系统测量相应的实验传播和瑞利-兰姆波与板中人工缺陷的相互作用。在此基础上,比较了实验图和有限元模拟图。

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