Intelligent sensing for non-destructive testing using eddy currents

J. Mercklé , D. Sauter , J. Ragot , J.-B. Lajournade , J.-M. Watrinet
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Abstract

When a metallic surface is tested by the eddy-current technique, defects produce events on the electrical signal coming from the sensor whose particular signature is a function of different factors such as the shape, size and position of any defects. Thanks to the introduction of modern digital signal processing methods, the quality of detection of events in the signal may be appreciably improved. The reliability of the decision mechanism, entrusted with reducing non-detection and limiting false alarms, is then increased and allows consideration of automatic testing. The work presented here was done jointly by the Institut de Recherches de la Sidérurgie Française (IRSID) of the Usinor-Sacilor group and the aboratoire d' Automatique et de Recherche Appliquée (LARA) of the Centre de Recherche en Automatique de Nancy (CRAN).

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涡流无损检测的智能传感
当通过涡流技术测试金属表面时,缺陷在来自传感器的电信号上产生事件,该事件的特定特征是不同因素的函数,例如任何缺陷的形状、大小和位置。由于引入了现代数字信号处理方法,可以显著提高信号中事件的检测质量。决策机制的可靠性被赋予减少未检测和限制错误警报的任务,然后被提高,并允许考虑自动测试。这里介绍的工作是由Usinor Sacilor集团的法国科学研究所(IRSID)和南希自动化研究中心的自动化与应用研究所(LARA)共同完成的。
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Analysis of the remote-field eddy current effect in nonmagnetic tubes Effect of misalignment of the layers of a bimetal cylinder of the EMF of a feedthrough eddy-current transducer The effect of an external tube on the remote field eddy current effect Surface flaws detection of graphite materials using eddy current testing (In Japanese: English abstract) Solution of inverse problems in eddy-current nondestructive evaluation (NDE)
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