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Damage assessment in layered composites using spectral analysis and Lamb wave

机译:使用光谱分析和兰姆波评估层状复合材料的损伤

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Piezo-ceramic transducers of the surface mounted type are commonly used for structural health monitoring (SHM) techniques. But, there is a disadvantage to use piezo-ceramic transducers of the surface mounted type in Lamb wave application. Due to the symmetric and antisymmetric Lamb wave modes generated by the surface mounted piezo-ceramic transducers simultaneously, the received signals are very complex and it is difficult to extract damage information from the signals.rnIn this paper, the practical method for SHM was proposed using piezo-ceramic transducers of the surface mounted type and Lamb wave. In order to overcome the difficulties in the signal processing of the simultaneous modes, the symmetric and antisymmetric modes were separated by using the two sensors bonded on the opposite surfaces at the same point. Also, spectral analyses of the separated symmetric and antisymmetric Lamb waves showed that each mode propagated with different frequency characteristics in the exciting frequency range.rnBy making use of these findings, the changes of power spectrum density in characteristic frequency band of symmetric and antisymmetric modes are proportional to the delamination size in quasi-isotropic Gr/Ep laminates. Therefore, this paper presents the damage assessment technique to extract damage information from the complicated PZT signals that could not be interpreted in time domain.
机译:表面安装类型的压电陶瓷换能器通常用于结构健康监测(SHM)技术。但是,在兰姆波应用中使用表面安装型的压电陶瓷换能器是不利的。由于表面贴装式压电陶瓷换能器同时产生对称的和反对称的兰姆波模式,因此接收到的信号非常复杂,并且很难从信号中提取损伤信息。表面安装型和兰姆波型的压电陶瓷换能器。为了克服同时模式信号处理中的困难,通过使用在同一点相对表面上键合的两个传感器来分离对称模式和反对称模式。此外,对分离的对称和反对称Lamb波的频谱分析表明,每个模式在激励频率范围内以不同的频率特性传播。rn利用这些发现,对称和反对称模式的特征频带中的功率谱密度变化为与准各向同性Gr / Ep层压板的分层尺寸成正比。因此,本文提出了一种损伤评估技术,以从无法在时域中解释的复杂PZT信号中提取损伤信息。

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