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Numerical and Experimental Analysis of Defect Detection in Jointed Electromagnetic Waveguides

机译:联合电磁波导中缺陷检测的数值和实验分析

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Electromagnetic waves in the microwave and millimeter-wave frequency range are used in non-destructive testing (NDT) and structural health monitoring (SHM) applications to detect material defects such as delaminations, cracks or inclusions. This work presents a sensing concept called jointed electromagnetic waveguide, in which the waveguide forms a union with the structure to be inspected. Exploiting ultra-wideband signals a surface defect in the area under the waveguide can be detected and accurately localized. This paper presents numerical and experimental results of the jointed electromagnetic waveguide technology with a focus on detecting through holes and cracks with different orientation. It was found that the numerical model qualitatively replicates the experimental S-parameter measurements for holes of different diameters. A parametric numerical study indicates that the crack parameters such as its orientation and width has a significant influence on the interaction of the incident wave with the structural defect.
机译:微波和毫米波频率范围内的电磁波用于无损检测(NDT)和结构健康监测(SHM)应用中,以检测材料缺陷,例如分层,裂纹或夹杂物。这项工作提出了一种称为联合电磁波导管的传感概念,其中波导管与要检查的结构形成结合体。利用超宽带信号,可以检测并准确定位波导下方区域的表面缺陷。本文介绍了联合电磁波导技术的数值和实验结果,重点是检测具有不同方向的通孔和裂缝。发现数值模型定性地复制了不同直径孔的实验S参数测量值。参数数值研究表明,裂纹参数(如裂纹的方向和宽度)对入射波与结构缺陷的相互作用有很大的影响。

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