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Review of Electromagnetic-Based Crack Sensors for Metallic Materials (Recent Research and Future Perspectives)

机译:基于电磁的金属材料裂纹传感器的综述(最新研究和未来展望)

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Evaluation and non-destructive identification of stress-induced cracks or failures in metals is a vital problem in many sensitive environments, including transportation (steel railway tracks, bridges, car wheels, etc.), power plants (steam generator tubing, etc.) and aerospace transportation (landing gear, aircraft fuselages, etc.). There are many traditional non-destructive detection and evaluation techniques; recently, near-field millimeter waves and microwave methods have shown incredible promise for augmenting currently available non-destructive techniques. This article serves as a review of developments made until now on this topic; it provides an overview of microwave scanning techniques for crack detection. This article summarizes the abilities of these methods to identify and evaluate cracks (including describing their different physical properties). These methods include applying filters based on dual-behavior resonators (DBRs), using complementary split-ring resonators (CSRRs) for the perturbation of electric fields, using waveguide probe-loaded CSRRs and using a substrate-integrated-waveguide (SIW) cavity for the detection of sub-millimeter surface and subsurface cracks.
机译:在许多敏感环境中,包括运输(钢轨,桥梁,车轮等),发电厂(蒸汽发生器管等),评估和无损识别应力导致的金属裂纹或失效是一个至关重要的问题。和航空航天运输(起落架,飞机机身等)。有许多传统的无损检测和评估技术。最近,近场毫米波和微波方法显示出令人难以置信的前景,可用于增强当前可用的非破坏性技术。本文是对迄今为止在该主题上取得的进展的回顾。它概述了用于裂纹检测的微波扫描技术。本文总结了这些方法识别和评估裂纹的能力(包括描述其不同的物理特性)。这些方法包括应用基于双行为谐振器(DBR)的滤波器,使用互补裂环谐振器(CSRR)来扰动电场,使用加载有波导探针的CSRR以及将衬底集成波导(SIW)腔用于亚毫米表面和亚表面裂缝的检测。

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