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Nonlinear Lamb waves for fatigue damage identification in FRP-reinforced steel plates

机译:FRP加筋钢板疲劳损伤识别非线性羊羔波

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摘要

A nonlinear Lamb-wave-based method for fatigue crack detection in steel plates with and without carbon fibre reinforcement polymer (CFRP) reinforcement is presented in this study. Both numerical simulation and experimental evaluation were performed for Lamb wave propagation and its interaction with a fatigue crack on these two steel plate types. With the generation of the second harmonic, the damage induced wave nonlinearities were identified by surface-bonded piezoelectric sensors. Numerical simulation revealed that the damage-induced wave component at the second harmonic was slightly affected by the existence of CFRP laminate, although the total wave energy was decreased because of wave leakage into the CFRP laminate. Due to unavoidable nonlinearity from the experimental environments, it was impractical to directly extract the time-of-flight of the second harmonic for locating the crack. To this end, the correlation coefficient of benchmark and signal with damage at double frequency in the time domain was calculated, based on which an imaging method was introduced to locate the fatigue crack in steel plates with and without CFRP laminates. (C) 2017 Elsevier B.V. All rights reserved.
机译:本研究提出了一种基于非线性Lamb波的钢板疲劳裂纹检测方法(CFRP)加固。对羊波传播进行数值模拟和实验评估,并在这两种钢板类型上与疲劳裂缝的相互作用进行。随着第二次谐波的产生,通过表面键合压电传感器识别损伤感应波非线性。数值模拟显示,第二次谐波的损伤引起的波分量略有受CFRP层压板的存在影响,尽管由于波泄漏到CFRP层压板中的波漏,总波能量降低。由于实验环境中不可避免的非线性,直接提取用于定位裂缝的第二次谐波的飞行时间是不切实际的。为此,计算基于时域中的双倍频率损坏的基准和信号的相关系数,基于引入成像方法以定位钢板中的疲劳裂纹,无需CFRP层压板。 (c)2017 Elsevier B.v.保留所有权利。

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