Water ingress detection in an aluminum honeycomb sandwich structure using laser ultrasonics based on mode conversion behaviors

Zeyu Dong, Weikun Chen, Osamu Saito, Fengming Yu, Yoji Okabe
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Abstract

This paper investigates the method for water ingress detection in an aluminum honeycomb sandwich structure by laser ultrasonics. To clarify the propagation of Scholte waves generated at the solid-liquid interface, the theoretical dispersion curves in the water-aluminum layered structure are calculated by the global matrix method. Using a laser ultrasonic visualizing inspector, the guided wave propagation in the wavefields has been visualized, which shows the mode conversion behaviors occurring in the water ingress area. The clarification of mode conversion is then investigated by the finite element method. The Scholte modes at the solid-fluid interface and the Lamb modes in the face sheet are interconverted because of the change in the waveguide structure. Wavenumber filter reconstruction and the resulting energy maps are applied to illustrate the mode conversion in the wavefields and to detect the water ingress area. Results show that the appearance of the water layer contributes to the mode conversion behaviors during the guided wave propagation in the honeycomb sandwich structure, which offers the potential for water ingress detection based on the mode conversion behaviors.
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基于模态转换行为的激光超声检测铝蜂窝夹层结构进水
研究了用激光超声检测铝蜂窝夹层结构进水的方法。为了阐明在固液界面处产生的Scholte波的传播规律,采用全局矩阵法计算了水铝层状结构中的理论色散曲线。利用激光超声可视化探测仪,对导波在波场中的传播过程进行了可视化,揭示了导波在入水区发生的模态转换行为。然后用有限元法对模态转换的澄清进行了研究。由于波导结构的改变,固液界面处的Scholte模态和面片处的Lamb模态相互转换。利用波数滤波重建和得到的能量图来说明波场的模式转换和探测入水区域。结果表明,水层的出现影响了导波在蜂窝夹层结构中传播过程中的模态转换行为,为基于模态转换行为的进水检测提供了可能。
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