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Lamb wave-based quantitative crack detection using a focusing array algorithm

机译:基于聚焦阵列算法的基于兰姆波的定量裂纹检测

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摘要

Cracks are common defects in aluminum plate-like components that are in widespread use in aerospace, shipbuilding, and other industries. Ultrasonic detection using Lamb waves has proven to be an efficient method for crack detection and localization. However, quantitative information regarding crack size or orientation is of paramount importance for damage diagnosis and life prediction. In this article, employing a sparsely arranged piezoelectric sensor array, a quantitative crack detection and imaging approach using a Lamb wave-focusing array algorithm is developed and presented. Additionally, Lamb wave propagation on thin-wall plates and wave interaction with crack damage was studied using three-dimensional elastodynamic finite integration technique. The focusing array imaging algorithm was then developed and applied to both simulation and experimental data to generate intensity images of the structure under interrogation. Experimentally, wafer-type piezoelectric actuators/sensors are permanently installed on the testing structure to generate Lamb waves as well as to measure the waves propagating through the structures. Our results show that when applied to either experimental or simulated data, the focusing array algorithms yield images containing quantitative damage information. The results also demonstrate that three-dimensional elastodynamic finite integration technique can be used for future simulation-based investigations of sensing optimization for various damage scenarios.
机译:裂纹是铝板状部件的常见缺陷,已广泛用于航空航天,造船和其他行业。使用兰姆波的超声波检测已被证明是一种有效的裂纹检测和定位方法。但是,有关裂纹尺寸或方向的定量信息对于损伤诊断和寿命预测至关重要。在本文中,采用稀疏排列的压电传感器阵列,开发并提出了使用Lamb波聚焦阵列算法的定量裂纹检测和成像方法。此外,使用三维弹力有限积分技术研究了兰姆波在薄壁板上的传播以及波与裂纹损伤的相互作用。然后开发了聚焦阵列成像算法,并将其应用于仿真和实验数据,以生成在询问下结构的强度图像。在实验上,将晶片型压电致动器/传感器永久性地安装在测试结构上,以产生兰姆波,并测量在结构中传播的波。我们的结果表明,将聚焦阵列算法应用于实验数据或模拟数据时,会生成包含定量损伤信息的图像。结果还表明,三维弹力有限积分技术可用于未来基于模拟的各种损伤场景下传感优化研究。

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