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A homogenisation scheme for ultrasonic Lamb wave dispersion in textile composites through multiscale wave and finite element modelling

机译:通过多尺度波和有限元模拟纺织复合材料中超声羔羊波分散的均化方案

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摘要

In this work, homogenisation of textile composite models is studied in order to increase the accuracy of wave dispersion predictions in such complex structures. A multiscale methodology is formed involving (i) calculation of the ultrasonic wave propagation through a detailed mesoscale finite element model of the textile and (ii) updating the mechanical properties of a semi-analytical finite element (SAFE) model to match the accurate mesoscale predictions. The speeds of the first shear (SH0) and Lamb wave modes (A(0) and S-0) are used to define the objective function to minimise in an inversion process based on genetic algorithms. The algorithm is tested on an orthotropic plate structure whose all nine unknown elastic moduli are successfully reconstructed and is then applied to three different numerical models. We demonstrate both numerically and experimentally that the proposed scheme provides more accurate dispersion characteristics compared to the ones obtained through the statically measured mechanical properties.
机译:在这项工作中,研究了纺织复合模型的均匀化,以提高这种复杂结构中波色散预测的准确性。形成多尺度方法,涉及(i)通过纺织品的详细Mesoscale有限元模型计算超声波传播,并更新半分析有限元(Safe)模型的机械性能以匹配准确的Mesoscale预测。第一剪切(SH0)和LAMB波动模式(A(0)和S-0)的速度用于定义目标函数以最小化基于遗传算法的反转过程。该算法在正交板结构上测试,其所有九个未知弹性模量成功重建,然后将其施加到三种不同的数值模型。我们在数值上和实验中展示了所提出的方案,与通过静态测量的机械性能获得的相比提供了更准确的分散特性。

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