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Detection and characterization of delaminations in composite plates via air-coupled probes and warped-domain filtering

机译:通过空气耦合探头和翘曲域滤波检测和表征复合板中的分层

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摘要

In this work, a novel baseline-free procedure aimed at detecting and sizing delaminations in composite plates is proposed. To such a purpose an air-coupled probe is used to measure the sound pressure in air that is generated by leaky guided waves traveling along the plate and scattered by defects. In particular, by scanning the plate surface with a proper probe tilt angle and lift-off, wavefields dominated by a single guided mode can be obtained. Then, a processing procedure based on warped time-frequency operators is used to filter out the main wavefield generated by the acoustic source in order to enhance the one scattered by defects. Such operators are designed basing on the dispersion curves of the dominant guided mode considered. Finally, it is shown how the scattered wavefield can be further processed to infer the defect position and size by means of the Circular Hough Transform.
机译:在这项工作中,提出了一种新颖的无基线程序,旨在检测和确定复合板中的分层。为此目的,使用空气耦合探头来测量空气中的声压,该声压是由沿板传播并因缺陷而散射的漏导波产生的。特别地,通过以适当的探针倾斜角和剥离力扫描板表面,可以获得由单一引导模式主导的波场。然后,基于扭曲的时频算子的处理过程被用来滤除声源产生的主波场,以增强由缺陷散射的主波场。这些算子是根据所考虑的主导导模的色散曲线设计的。最后,显示了如何通过圆霍夫变换进一步处理散射波场以推断缺陷位置和大小。

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