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Structural Health Monitoring of Composite Structures using Guided Lamb Waves

机译:导引兰姆波对复合结构的结构健康监测

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摘要

Structural Health Monitoring (SHM) of aircrafts is of great relevance in the present age aircraft industry. The present study demonstrates three techniques that have the potential for the SHM of multi-layered composite structures. The first technique is based on multi-transmitter-multi-receiver (MTMR) technique with tomographic methods used for data reconstruction. In the MTMR, the possibility of SHM using algebraic reconstruction techniques (ART) for tomographic imaging with Lamb wave data measured in realistic materials is examined. Defects (through holes and low velocity impact delaminations) were synthetic and have been chosen to simulate impact damage in composite plates. The second technique is a single-transmitter-multi-receiver (STMR) technique that is more compact and uses reconstruction techniques that are analogous to synthetic aperture techniques. The reconstruction algorithm uses summation of the phase shifted signals to image the location of defects, portions of the plate edges, and any reflectors from inherent structural features of the component. The third technique involves a linear array of sensors across a stiffener for the detection of disbanded regions.
机译:飞机的结构健康监测(SHM)在当今飞机工业中具有重要意义。本研究表明了三种技术,可以用于多层复合结构的SHM。第一种技术是基于多发射器多接收器(MTMR)技术以及用于数据重建的断层摄影方法。在MTMR中,研究了使用代数重建技术(ART)在真实材料中测量的Lamb波数据进行断层成像的SHM可能性。缺陷(通孔和低速冲击分层)是合成的,已被选择来模拟复合板的冲击损伤。第二种技术是单发送器多接收器(STMR)技术,它更紧凑,并使用类似于合成孔径技术的重建技术。重建算法使用相移信号的总和来成像缺陷的位置,板边缘的部分以及组件固有结构特征中的任何反射器。第三种技术涉及跨过加劲肋的传感器线性阵列,用于检测解散区域。

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