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Evaluation of disbonds at various interfaces of adhesively bonded aluminum plates using all-optical excitation and detection of zero-group velocity Lamb waves

机译:使用全光激发和检测零群速度羊波的粘合粘结铝板各种界面对脱屑的抗拒评估

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摘要

Inspection of adhesively bonded metallic plates, commonly used in aircraft structures, remains challenging for modern non-destructive testing (NDT) techniques. When a probing ultrasound (US) wave interacts with the plate boundaries, it produces multiple propagating guided waves (or Lamb modes). Analysis of these waves can be complicated due to a strong geometrical dispersion. However, recent studies showed that for specific frequencies zero-group velocity (ZGV) modes exist. Any changes in a bounded structure, like delaminations, drastically alter the conditions for zero-group velocity waves, thus making this method highly sensitive for NDT applications. Laser ultrasound (LU) provides a very broad bandwidth of the generated waves, thus it is a feasible tool for a spectroscopy-based investigation of the ZGV modes. In this paper, we demonstrate an application of high-repetition rate LU with a non-contact fiber-optic Sagnac interferometer on receive for high resolution imaging of delaminations in a structure consisting of 3 epoxy-bonded aluminum plates. The investigation is supported by numerical analysis of Lamb waves existing in the structure to determine ZGV modes sensitive to delaminations at particular bonding interfaces. Tracking the selected modes permits imaging and identification of defects. We also show that mean frequency estimation of the ZGV modes can improve the contrast-to-noise ratio compared to an amplitude of the single ZGV frequency.
机译:粘粘密金属板的检测常用于飞机结构,对现代无损检测(NDT)技术仍然具有挑战性。当探测超声(US)波与板边界相互作用时,它产生多个传播导波(或羊肉模式)。由于强大的几何分散体,这些波的分析可以复杂。然而,最近的研究表明,对于特定的频率零组速度(ZGV)模式。有界结构的任何变化,如分层,大大改变了零群速度波的条件,从而使该方法对NDT应用具有高度敏感。激光超声(Lu)提供产生的波的带宽非常宽,因此它是一种可行的ZGV模式研究的基于光谱研究的工具。在本文中,我们通过在由3个环氧键合铝板组成的结构中,用非接触式光纤凸角干涉仪进行高重复率Lu的应用。通过结构中存在的羊羔波的数值分析来支持调查,以确定对特定粘合界面的分层敏感的ZGV模式。跟踪所选模式允许成像和识别缺陷。我们还表明,与单个ZGV频率的幅度相比,ZGV模式的平均频率估计可以提高对比度与噪声比。

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