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Remote monitoring of bond line defects between a composite panel and a stiffener using distributed piezoelectric sensors

机译:使用分布式压电传感器远程监控复合面板和加强件之间的粘合线缺陷

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摘要

Structural health monitoring (SHM) using ultrasonic guided waves has proven to be attractive for the identification of damage in composite plate-like structures, due to its realization of both significant propagation distances and reasonable sensitivity to defects. However, topographical features such as bends, lap joints, and bonded stiffeners are often encountered in these structures, and they are susceptible to various types of defects as a consequence of stress concentration and cyclic loading during the service life. Therefore, the health condition of such features has to be assessed effectively to ensure the safe operation of the entire structure. This paper proposes a novel feature guided wave (FGW) based SHM strategy, in which proper FGWs are exploited as a screening tool to rapidly interrogate the representative stiffener-adhesive bond-composite skin assembly. An array of sensors permanently attached to the vicinity of the feature is used to capture scattered waves from the localized damage occurring in the bond line. This technique is combined with an imaging approach, and the damage reconstruction is achieved by the synthetic focusing algorithm using these scattered signals. The proposed SHM scheme is implemented in both the 3D finite element simulation and the experiment, and the results are in good agreement, demonstrating the feasibility of such SHM strategy.
机译:使用超声波引导波的结构健康监测(SHM)已被证明是对识别复合板状结构的损坏的吸引力,因为它对这两种显着的传播距离和对缺陷的合理敏感性来说。然而,在这些结构中通常遇到弯曲,圈和接头和粘合加强物等地形特征,并且在使用寿命期间应力浓度和循环加载的结果,它们易受各种类型的缺陷。因此,必须有效地评估这些特征的健康状况,以确保整个结构的安全操作。本文提出了一种基于新颖的特征引导波(FGW)的SHM策略,其中适当的FGW被利用作为筛选工具,以迅速询问代表性加强粘合剂粘合剂复合胶片组装。永久连接到特征附近的传感器阵列用于捕获从键合线中发生的局部损坏的散射波。该技术与成像方法相结合,并且通过使用这些散射信号的合成聚焦算法实现了损坏重建。所提出的SHM方案在3D有限元模拟和实验中实施,结果非常一致,展示了这种SHM策略的可行性。

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