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Structural health monitoring of fatigue crack growth in plate structures with ultrasonic guided waves

机译:超声波引导下板结构疲劳裂纹扩展的结构健康监测

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Fatigue crack growth in plate structures is monitored with ultrasonic guided waves generated from piezoelectric transducers. Cracks initiate in the vicinity of fastener holes due to cyclic in-plane loading. Ultrasonic guided waves that are partially obstructed by the fastener holes are investigated. Since fatigue crack growth increases the obstruction, these waves are effective for monitoring fatigue crack growth in a pitch-catch mode. The transmission coefficient (TC), which is defined essentially as the current-to-baseline amplitude ratio, and the transmission coefficient ratio (TCR), which is based on amplitude ratios from a single wave, are signal features used for crack characterization. The TCR is well suited for structural health monitoring. The excellent agreement between experimental results and finite element analysis of wave propagation corroborates the experiments. A sparse array of transducers is shown to effectively monitor a multi-fastener joint. The approach using obstructed ultrasonic guided waves has strong potential for prognostics-based structural health management due to the linear relationship between crack size and the TC.
机译:用压电换能器产生的超声波引导来监测板结构中的疲劳裂纹扩展。由于周期性的平面内载荷,在紧固件孔附近会产生裂纹。研究了被紧固件孔部分遮挡的超声波导波。由于疲劳裂纹的增长会增加障碍,因此这些波对于以俯仰捕捉模式监视疲劳裂纹的增长是有效的。透射系数(TC)(基本上定义为电流与基线的振幅比)和透射系数比(TCR)(基于来自单波的振幅比)是用于表征裂纹的信号特征。 TCR非常适合用于结构健康监测。实验结果与波传播的有限元分析之间的极好的一致性证实了该实验。稀疏的换能器阵列显示为可有效监视多紧固件接头。由于裂纹尺寸和TC之间呈线性关系,使用受阻的超声波导波的方法在基于预测的结构健康管理方面具有强大的潜力。

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