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Boundary element modelling of ultrasonic Lamb waves for structural health monitoring

机译:超声羔羊波用于结构健康监测的边界元模拟

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摘要

In this paper, a novel boundary element plate formulation is proposed to model ultrasonic Lamb waves in both pristine and cracked plates for structural health monitoring (SHM) applications. Lamb waves are generated and sensed by piezoelectric discs. An equivalent pin-force model is newly proposed to represent the actuation effect of piezoelectric discs, which is more accurate than the classical pin-force model. The boundary element formulation is presented in the Laplace-transform domain based on plate theories, which allows three-dimensional analysis of Lamb wave behaviours, such as propagation and interaction with cracks, in thin-walled structures. A damage detection algorithm is used for crack localization alongside the BEM-simulated data. The BEM solutions show excellent agreement with both 3D finite element simulation and experimental results.
机译:本文提出了一种新型边界元板制剂,用于模拟超声波λ,用于模拟原始和裂纹板的结构健康监测(SHM)应用。 通过压电盘产生和感测羊光波。 新提出了一种等效的销力模型以表示压电盘的致动效果,该致动效果比经典销力模型更精确。 基于板理论的Laplace变换畴内呈现边界元件制剂,其允许羔羊波行为的三维分析,例如与裂缝的传播和相互作用,在薄壁结构中。 损坏检测算法用于沿BEM模拟数据的裂缝定位。 BEM解决方案与3D有限元模拟和实验结果显示出很好的一致性。

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