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Time-domain hybrid global-local concept for guided-wave propagation with piezoelectric wafer active sensor

机译:压电晶片有源传感器的导波传播的时域混合全局-局部概念

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摘要

This article presents a combined finite element method and analytical process to predict the one-dimensional guided-wave propagation for nondestructive evaluation and structural health monitoring application. Analytical methods can perform efficient modeling of wave propagation but are limited to simple geometries. In response to today's most complex cases not covered by the simulation tools available, we aim to develop an efficient and accessible tool for structural health monitoring application. This tool will be based on a hybrid coupling between analytical solution and time-domain numerical codes. Using the principle of reciprocity, global analytical calculation is coupled with local finite element method analysis to utilize the advantages of both methods and obtain a rapid and accurate simulation method. The phenomenon of interaction between the ultrasonic wave, the defect, and the structure, leading to a complex signature, is efficiently simulated by this hybrid global-local approach and is able to predict the specific response signal actually received by sensor. The finite element mesh is used to describe the region around the defects/flaws. In contrast to other hybrid models already developed, the interaction between Lamb waves and defects is computed in the time domain using the explicit solver of the commercial finite element method software ABAQUS.
机译:本文提出了一种结合有限元方法和分析过程来预测一维导波传播的方法,以进行无损评估和结构健康监测应用。分析方法可以对波传播进行有效的建模,但仅限于简单的几何形状。为了应对当今可用的仿真工具未涵盖的最复杂的情​​况,我们旨在为结构健康监测应用程序开发一种高效且可访问的工具。该工具将基于分析解决方案与时域数字代码之间的混合耦合。运用互惠原则,将全局分析计算与局部有限元方法分析相结合,以利用两种方法的优势,从而获得快速,准确的模拟方法。超声波,缺陷和结构之间的相互作用现象(导致复杂的特征)可以通过这种混合全局局部方法有效地模拟,并且能够预测传感器实际接收到的特定响应信号。有限元网格用于描述缺陷/缺陷周围的区域。与已经开发的其他混合模型相反,使用商业有限元方法软件ABAQUS的显式求解器在时域中计算了Lamb波和缺陷之间的相互作用。

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