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首页> 外文期刊>IEEE Transactions on Magnetics >Eddy-current testing by flexible microloop magnetic sensor array
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Eddy-current testing by flexible microloop magnetic sensor array

机译:柔性微环磁传感器阵列进行涡流测试

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A flexible microloop magnetic sensor array has been developed for nondestructive evaluation in nuclear power plants and its fundamental characteristics have been investigated. A flexible micro-eddy current testing (micro-ECT) probe consists of a pancake-type exciting coil of the diameter of 3.2 /spl mu/m and a flexible microloop magnetic sensor array with an area of 14/spl times/14 mm/sup 2/ and a thickness of 125 /spl mu/m. The array has 16 microloop sensors made of copper formed on a flexible polyimide film by sophisticated photolithography. Each coil has 40 turns (8 /spl mu/m line and 8 /spl mu/m space) within an area of 2/spl times/2 mm/sup 2/. The flexible sensor array enables the micro-ECT probe to be applied to an arbitrary geometric configuration. The purpose of this work is to detect and reconstruct flaws in conductive tubing of a steam generator in a pressurized nuclear power reactor by using the flexible micro-ECT probe with higher spatial resolution than that of a conventional ECT probe. The spatial resolution of flaw detection was 3 mm and the detectability of an outer 20% flaw made by electric discharge machining was confirmed. The reconstruction of circumferential and axial flaws using the electromotive force and phase measured with the sensor array is described. Three-dimensional eddy current and magnetic field analysis was also performed for comparison with measured data. Finally, a design study of a practical and robust micro-ECT for a realistic tube configuration with respect to detectability was carried out.
机译:已经开发了用于核电厂无损评估的柔性微环磁传感器阵列,并且已经研究了其基本特性。柔性微涡流测试(micro-ECT)探头由直径为3.2 / spl mu / m的薄煎饼型励磁线圈和面积为14 / spl倍/ 14 mm /的柔性微环磁传感器阵列组成sup 2 /厚度为125 / spl mu / m。该阵列具有16个由铜制成的微环传感器,这些传感器通过复杂的光刻技术在柔性聚酰亚胺膜上形成。每个线圈在2 / spl次/ 2 mm / sup 2 /的面积内有40匝(8 / spl mu / m线和8 / spl mu / m的空间)。灵活的传感器阵列使micro-ECT探头可应用于任意几何结构。这项工作的目的是通过使用具有比传统ECT探针更高的空间分辨率的柔性micro-ECT探针来检测和重建加压核动力反应堆中蒸汽发生器的导电管中的缺陷。缺陷检测的空间分辨率为3mm,并且确认了通过放电加工制成的外部20%缺陷的可检测性。描述了利用传感器阵列测量的电动势和相位来重建圆周和轴向缺陷。还进行了三维涡流和磁场分析,以与测量数据进行比较。最后,针对可检测性,针对实际的管配置进行了实用且强大的micro-ECT设计研究。

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