Validation of the impedance spectroscopy method (MSID2/3) for NDT and SHM research in the power industry

Zbigniew Hilary Żurek, B. Chmiela, T. Jasiński, Barbara Solecka
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Abstract

The article presents a method for diagnosing steel blades of a high pressure steam turbine by analyzing the frequency of the electrical and magnetic parameters of the material during its operation. The methodology is historically derived from the analysis of normalized impedance components for defect detection and material selection. It was developed by and his research team. The extended possibilities of diagnostic tests of Multipoint Impedance Spectroscopy (SID2/3) are described, including material degradation processes and not only con tinuity defects. The test results were compared with structural studies, scanning electron microscopy (SEM) and energy dispersive X ray spectrometry (EDS) and wavelength dispersive (WDS). Impedance spectroscopy takes a significant place in diagnostic tests (NDT and SHM) in domestic literature and, thanks to the author, also in foreign literature. The topic was also presented at the World NDT Congress in Munich in 2018 [23]. Articles on this topic can be found on the NDT.net website [24]. Impedance spectroscopy is the subjec t of two doctoral theses and the promotion of Doctors of Technical Sciences [27, 28]. The thematic area covered by this article is mainly aimed at comparing the results with several selected methods.
阻抗谱法(MSID2/3)在电力行业无损检测和SHM研究中的验证
本文介绍了一种通过分析高压汽轮机钢叶片在工作过程中电磁参数的频率来诊断叶片故障的方法。该方法从历史上推导自用于缺陷检测和材料选择的归一化阻抗分量的分析。它是由他的研究小组开发的。描述了多点阻抗谱(SID2/3)诊断测试的扩展可能性,包括材料降解过程,而不仅仅是连续性缺陷。将测试结果与结构研究、扫描电镜(SEM)、能量色散X射线能谱(EDS)和波长色散(WDS)进行比较。阻抗谱在诊断检测(无损检测和SHM)方面在国内文献中占有重要地位,在国外文献中也是如此。该主题也在2018年慕尼黑世界无损检测大会上提出[23]。关于这个话题的文章可以在ndt网站上找到[24]。阻抗谱是两篇博士论文和技术科学博士学位晋升的主题[27,28]。本文所涉及的主题领域主要是比较几种选定方法的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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