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首页> 外文期刊>The Journal of the Acoustical Society of America >Ultrasonic guided wave monitoring of composite wing skin-to-spar bonded joints in aerospace structures
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Ultrasonic guided wave monitoring of composite wing skin-to-spar bonded joints in aerospace structures

机译:航空结构中复合机翼蒙皮梁结合节的超声导波监测

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摘要

The monitoring of adhesively bonded joints by ultrasonic guided waves is the general topic of this paper. Specifically, composite-to-composite joints representative of the wing skin-to-spar bonds of unmanned aerial vehicles (UAVs) are examined. This research is the first step towards the development of an on-board structural health monitoring system for UAV wings based on integrated ultrasonic sensors. The study investigates two different lay-ups for the wing skin and two different types of bond defects, namely poorly cured adhesive and disbonded interfaces. The assessment of bond state is based on monitoring the strength of transmission through the joints of selected guided modes. The wave propagation problem is studied numerically by a semi-analytical finite element method that accounts for viscoelastic damping, and experimentally by ultrasonic testing that uses small PZT disks preferably exciting and detecting the single-plate so mode. Both the models and the experiments confirm that the ultrasonic energy transmission through the joint is highly dependent on the bond conditions, with defected bonds resulting in increased transmission strength. Large sensitivity to the bond conditions is found at mode coupling points, as a result of the large interlayer energy transfer. (c) 2005 Acoustical Society of America.
机译:超声波引导下的粘合接头的监测是本文的主题。具体来说,研究了代表无人机的机翼至翼梁结合的复合材料到复合材料的接头。这项研究是开发基于集成超声传感器的无人机机翼机载结构健康监测系统的第一步。该研究调查了机翼蒙皮的两种不同的铺层以及两种不同类型的粘合缺陷,即固化不良的粘合剂和剥离的界面。结合状态的评估是基于监视通过选定引导模式的关节的传输强度的。通过考虑粘弹性阻尼的半解析有限元方法对波浪传播问题进行了数值研究,并通过使用小型PZT圆盘的超声测试进行了实验性试验,该实验优选地激发并检测了单板so模式。模型和实验均证实,通过接头的超声能量传输高度依赖于键合条件,键合缺陷会导致传输强度增加。由于层间能量转移较大,因此在模式耦合点处发现对键合条件的敏感性较高。 (c)2005年美国声学学会。

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