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Laser ultrasonic inspection of plates using zero-group velocity lamb modes

机译:使用零群速度Lamb模式对板进行激光超声检查

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A noncontact laser-based ultrasonic technique is proposed for detecting small plate thickness variations caused by corrosion and adhesive disbond between two plates. The method exploits the resonance at the minimum frequency of the S1 Lamb mode dispersion curve. At this minimum frequency, the group velocity vanishes, whereas the phase velocity remains finite. The energy deposited by the laser pulse generates a local resonance of the plate. This vibration is detected at the same point by an optical interferometer. First experiments show the ability to image a 1.5-;C;m deep corroded area on the back side of a 0.5-mm-thick duralumin plate. Because of the finite wavelength of the S1- zero group velocity (ZGV) mode, the spatial resolution is limited to approximately twice the plate thickness. With the same technique we investigate the state of adhesive bonds between duralumin and glass plates. The S1-Lamb mode resonance is strongly attenuated when plates are rigidly bonded. In the case of thin adhesive layers, we observed other resonances, associated with ZGV modes of the multi-layer structure, whose frequencies and amplitudes vary with adhesive thickness. Experiments were carried out on real automotive adhesively bonded structures and the results were compared with images obtained by X-ray radiography.
机译:提出了一种基于非接触激光的超声技术,用于检测由腐蚀和两块板之间的粘合剂脱落引起的小板厚度变化。该方法利用了S1 Lamb模式色散曲线的最小频率下的共振。在此最小频率下,组速度消失,而相速度保持有限。激光脉冲沉积的能量产生板的局部共振。光学干涉仪在同一点检测到该振动。最初的实验表明,可以对厚0.5毫米的硬铝板背面1.5微米深的腐蚀区域成像。由于S1-零群速度(ZGV)模式的有限波长,空间分辨率被限制为大约是板厚度的两倍。使用相同的技术,我们研究了硬铝与玻璃板之间的粘合状态。当板牢固结合时,S1-Lamb模式共振会大大衰减。在薄粘合剂层的情况下,我们观察到了与多层结构的ZGV模式相关的其他共振,其共振频率和振幅随粘合剂厚度而变化。在真实的汽车粘合结构上进行了实验,并将结果与​​X射线射线照相获得的图像进行了比较。

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