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High Frequency Guided Waves for Disbond Detection in Multi-Layered Structures

机译:多层结构中的用于剥离检测的高频导向波

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Aerospace structures often contain multi-layered metallic components where hidden defects such as localized disbonds can develop, necessitating non-destructive testing. Model structures consisting of two adhesively bonded aluminium plates and artificial defects in the bond layer weremanufactured. Immersion ultrasonic C- scans were used to check the uniformity of the bond layer and the manufactured defects. Employing standard wedge transducers, high frequency guided ultrasonic waves that penetrate through the complete specimen thickness were generated. Interference occursbetween the wave modes during propagation along the structure, resulting in a frequency dependent variation of the energy through the thickness with distance. Significant propagation distance with a strong, non-dispersive main wave pulse was achieved. The interaction of the high frequencyguided ultrasonic waves with small disbonds in the sealant layer and lack of sealant in the multilayer structure was investigated. Guided wave pulse-echo measurements were conducted to verify the detection sensitivity and the influence of the stand-off distance predicted from the finite elementsimulations. The results demonstrated the potential of high frequency guided waves for hidden defect detection at critical and difficult to access locations in aerospace structures from a stand-off distance.
机译:航空航天结构通常含有多层金属部件,其中隐藏缺陷如局部禁用可以发展,需要进行无损检测。由两个粘接铝板组成的模型结构和粘结层中的人工缺陷。浸入超声C-扫描用于检查粘合层的均匀性和制造的缺陷。采用标准楔形换能器,产生穿过完全样本厚度的高频引导超声波。干扰在沿着结构的传播期间发生波动模式,导致通过距离的厚度频率取决于能量的变化。实现了具有强大的非分散主波脉冲的显着传播距离。研究了高频率的超声波在密封剂层中具有小禁用的相互作用以及多层结构中缺少密封剂。进行引导波脉冲回波测量以验证从有限元素升量预测预测的检测灵敏度和脱扣距离的影响。结果证明了高频导向波的潜力,用于隐藏的缺陷检测,在关键且难以从脱扣距离到航空航天结构中的位置。

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