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A New Eddy Current 3-D Profilometry for a Quantitative Measurement of Geometric Anomaly in Steam Generator Tubes of Nuclear Power Plants

机译:定量测量核电站蒸汽发生器管道几何异常的新型涡流3-D轮廓仪

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摘要

Most of the corrosive degradations in steam generator tubes of nuclear power plants are closely related to the residual stress existing in the local region of a geometric change, that is, an expansion transition, u-bend, ding, dent, bulge, etc. Therefore, accurate information on a geometric anomaly in a tube is a prerequisite to the activity of a non destructive inspection for a precise and earlier detection of a defect in order to prevent a failure during an operation, and also for a root cause analysis of a failure. In this paper, a newly developed eddy current technique of a three-dimensional profilometry is introduced and the proof for the applicability of the technique to a plant inspection is provided. The quantitative profile measurement using a new eddy current probe was performed on steam generator expansion mock-up tubes with various geometric anomalies typically observed in the operating power plants, and the accuracy of the measured data was compared with those from the laser profilometry.
机译:核电厂蒸汽发生器管中的大多数腐蚀降解与几何变化局部区域中存在的残余应力密切相关,即,膨胀转变,u形弯曲,丁氏,凹痕,凸出等。因此, ,关于管中几何异常的准确信息是进行非破坏性检查的前提,以进行精确,更早的缺陷检测,以防止操作过程中的故障,并进行故障的根本原因分析。本文介绍了一种新开发的三维轮廓测量涡流技术,并为该技术在植物检验中的适用性提供了证明。使用新的涡流探头对蒸汽发生器膨胀模型管进行了定量分布测量,该管具有通常在运行中的电厂中观察到的各种几何异常,并且将测量数据的准确性与激光轮廓仪的准确性进行了比较。

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