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Lamb Wave Interaction with Adhesively Bonded Stiffeners and Disbonds Using 3D Vibrometry

机译:兰姆波与胶粘加强筋的相互作用以及使用3D振动测定法的剥离

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There are many advantages to adhesively bonding stiffeners onto aircraft structures rather than using traditional mechanical fastening methods. However there is a lack of confidence of the structural integrity of adhesively bonded joints over time. Acousto-ultrasonic Lamb waves have shown great potential in structural health monitoring applications in both metallic and composite structures. This paper presents an experimental investigation of the use of acousto-ultrasonic Lamb waves for the monitoring of adhesively bonded joints in metallic structures using 3D scanning laser vibrometry. Two stiffened panels were manufactured, one with an intentional disbonded region. Lamb wave interaction with the healthy and disbonded stiffeners was investigated at three excitation frequencies. A windowed root-mean-squared technique was applied to quantify where Lamb wave energy was reflected, attenuated and transmitted across the structure enabling the size and shape of the defect to be visualised which was verified by traditional ultrasonic inspection techniques.
机译:将加强件粘接到飞机结构上而不是使用传统的机械紧固方法有许多优点。但是,随着时间的推移,人们对胶粘接头的结构完整性缺乏信心。超声波-兰姆波在金属和复合材料结构的健康监测应用中显示出巨大的潜力。本文介绍了使用超声超声波兰姆波通过3D扫描激光振动法监测金属结构中胶合接头的实验研究。制造了两块加劲板,其中一个有意剥离的区域。在三个激发频率下研究了兰姆波与健康的和剥离的加强筋的相互作用。窗口均方根技术用于量化Lamb波能量在结构上的反射,衰减和传输位置,从而使缺陷的大小和形状可视化,这已通过传统的超声检查技术进行了验证。

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