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PHASED ARRAY ULTRASONIC INSPECTION TECHNIQUE FOR CAST AUSTENITIC STAINLESS STEEL PARTS OF NUCLEAR POWER PLANTS

机译:核电厂铸型奥氏体不锈钢零件的相控阵超声检查技术

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For safety operation of nuclear power plants, soundness assurance of structures has been strongly required. In order to evaluate properties of inner defects at plant structures quantitatively, non-destructive inspection using ultrasonic testing (UT) has performed an important role for plant maintenances. At nuclear power plants, there are many structures made of cast austenitic stainless steel (e.g. casings, valve gages, pipes and so on). However, UT has not achieved enough accuracy measurement at cast stainless steels due to the noise from large grains. In order to overcome the problem, we have developed comprehensively analyzable phased array ultrasonic testing (PAUT) system. We have been noticing that dependency of echo intensity from defect is different from grain noises when PAUT conditions (for example, ultrasonic incident angles and focal depths) were continuously changed. Analyzing the tendency of echoes from comprehensive PAUT conditions, defect echoes could be distinguished from the noises. Meanwhile, in order to minimize the inspection time on-site, we have developed the algorithms and the full matrix capture (FMC) data acquisition system. In this paper, the authors confirmed the detectability of the PAUT system applying cast austenitic stainless steel (316 stainless steel) specimens which have sand-blasted surface and 3 slits which made by electric discharge machining (EDM).
机译:为了核电站的安全运行,强烈要求结构的安全性。为了定量评估植物结构内部缺陷的特性,使用超声波测试(UT)进行的非破坏性检查在植物维护中发挥了重要作用。在核电站中,有许多由铸造奥氏体不锈钢制成的结构(例如,壳体,阀规,管道等)。但是,由于大晶粒的噪声,UT在铸造不锈钢上无法实现足够的精度测量。为了解决该问题,我们开发了可综合分析的相控阵超声测试(PAUT)系统。我们已经注意到,当连续改变PAUT条件(例如,超声入射角和焦深)时,缺陷对回波强度的依赖性与颗粒噪声不同。通过分析综合PAUT条件下的回声趋势,可以将缺陷回声与噪声区分开。同时,为了减少现场检查时间,我们开发了算法和全矩阵捕获(FMC)数据采集系统。在本文中,作者确认了使用浇铸的奥氏体不锈钢(316不锈钢)试样的PAUT系统的可检测性,该试样具有喷砂表面和3个由放电加工(EDM)制成的狭缝。

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