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Damage Identification and Assessment in Tapered Sandwich Structures Using Guided Waves

机译:锥形夹心结构在导波作用下的损伤识别与评估

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Damage detection using guided waves in the inspection of tapered sandwich structures with high density foam core (Dyvinicell HP100) is investigated. Characterisation of the fundamental symmetric and anti-symmetric Lamb wave modes is carried out in terms of their velocity and magnitude variation as they encounter a change in the thickness of a composite sandwich plate, aiming at optimising the mode selection to improve the capability and increase the sensitivity of guided waves in inspection of tapered sandwich structures. In addition, an imaging algorithm based on time reversal is developed to detect multiple debonding and artificial damage in tapered sandwich panels based guided waves from an active sensor network. The correlation coefficients between the original and reconstructed time reversal signals are calculated to define a damage index for individual sensing paths, which are used later in the fusion process, identifying the presence of damage in the monitoring area enclosed by the active sensor network. The results confirm that the incident wave signals and their reconstructed time-reversed counterparts can be used to accurately detect the debonding/damage in tapered sandwich structures.
机译:研究了在高密度泡沫芯(Dyvinicell HP100)的锥形夹心结构检查中使用导波进行的损伤检测。基本对称和反对称Lamb波模式的特征在于它们遇到复合夹心板厚度变化时的速度和幅度变化,旨在优化模式选择以提高性能并增加在检查锥形夹层结构时导波的灵敏度。另外,开发了一种基于时间反转的成像算法,以检测基于主动传感器网络的导波的锥形夹心板中的多次剥离和人为损坏。计算原始时间反转信号与重建时间反转信号之间的相关系数,以定义各个感应路径的损坏指数,然后在融合过程中使用这些损坏指数,以识别在主动传感器网络所包围的监视区域中是否存在损坏。结果证实,入射波信号及其重建的时间反向对应物可用于精确检测锥形夹层结构中的剥离/损伤。

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