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Time reversed Lamb wave for damage detection in a stiffened aluminum plate

机译:时间逆时兰姆波,用于在刚性铝板上检测损坏

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摘要

According to the concept of time reversibility of the Lamb wave, in the absence of damage, a Lamb wave signal can be reconstructed at the transmitter location if a time reversed signal is sent back from the receiver location. This property is used for baseline-free damage detection, where the presence of damage breaks down the time reversibility and the mismatch between the reconstructed and the input signal is inferred as the presence of damage. This paper presents an experimental and a simulation study of baseline-free damage detection in a stiffened aluminum plate by time reversed Lamb wave (TRLW). In this study, single Lamb wave mode (A_0) is generated and sensed using piezoelectric (PZT) transducers through specific transducer placement and amplitude tuning. Different stiffening configurations such as plane and T-stiffeners are considered. Damage cases of disbonding of stiffeners from the base plate, and vertical and embedded cracks in the stiffened plate, are studied. The results show that TRLW based schemes can efficiently identify the presence of damage in a stiffened plate.
机译:根据兰姆波的时间可逆性的概念,在没有损坏的情况下,如果从接收器位置发回时间反转的信号,则可以在发射器位置重构兰姆波信号。此属性用于无基线损坏检测,其中损坏的存在破坏了时间可逆性,并且将重构信号与输入信号之间的不匹配推断为损坏的存在。本文介绍了通过时间逆向Lamb波(TRLW)检测刚性铝板中的无基线损伤的实验和模拟研究。在这项研究中,通过特定的换能器放置和幅度调整,使用压电(PZT)换能器生成并感测单个兰姆波模式(A_0)。考虑了不同的加强配置,例如平面和T型加强筋。研究了加强筋从基板上脱开的损坏情况,以及加强筋中的垂直裂缝和嵌入裂缝。结果表明,基于TRLW的方案可以有效地识别加劲板中是否存在损坏。

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