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Experimental verification and validation of nonlocal peridynamic approach for simulating guided Lamb wave propagation and damage interaction

机译:模拟局部Lamb波传播与损伤相互作用的非局部绕动力学方法的实验验证与确认

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摘要

In this article, experimental verification and validation of a peridynamics-based simulation technique, called peri-elastodynamics, are presented while simulating the guided Lamb wave propagation and wave-damage interaction for ultrasonic nondestructive evaluation and structural health monitoring applications. Peri-elastodynamics is a recently developed elastodynamic computation tool where material particles are assumed to interact with the neighboring particles nonlocally, distributed within an influence zone. First, in this article, peri-elastodynamics was used to simulate the Lamb wave modes and their interactions with the damages in a three-dimensional plate-like structure, while the accuracy and the efficacy of the method were verified using the finite element simulation method (FEM). Next, the peri-elastodynamics results were validated with the experimental results, which showed that the newly developed method is more accurate and computationally cheaper than the FEM to be used for computational nondestructive evaluation and structural health monitoring. Specifically, in this work, peri-elastodynamics was used to accurately simulate the in-plane and out-of-plane symmetric and anti-symmetric guided Lamb wave modes in a pristine plate and was extended to investigate the wave-damage interaction with damage (e.g. a crack) in the plate. Experiments were designed keeping all the simulation parameters consistent. The accuracy of the proposed technique is confirmed by performing error analysis on symmetric and anti-symmetric Lamb wave modes compared to the experimental results for pristine and damaged plates.
机译:本文介绍了一种基于周动力学的模拟技术(称为周弹性动力学)的实验验证和验证,同时为超声无损评估和结构健康监测应用模拟了引导的Lamb波传播和波-损伤相互作用。围弹动力学是最近开发的一种弹力计算工具,其中假定材料粒子与分布在影响区域内的相邻粒子非局部地相互作用。首先,在本文中,利用周弹性动力学模拟了Lamb波模式及其与三维板状结构中的损伤的相互作用,同时使用有限元模拟方法验证了该方法的准确性和有效性。 (FEM)。接下来,利用实验结果验证了周弹性动力学结果,结果表明,新开发的方法比用于计算无损评估和结构健康监测的有限元法更准确,计算更便宜。具体而言,在这项工作中,周弹性动力学被用来精确模拟原始板中平面内和平面外对称和反对称的Lamb波模式,并被扩展以研究波浪波与损伤的相互作用(板中有裂纹)。设计实验时要使所有模拟参数保持一致。与原始和受损板的实验结果相比,通过对对称和反对称Lamb波模式进行误差分析,可以验证所提出技术的准确性。

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