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Overview of Steam Generator Tube-Inspection Technology

机译:蒸汽发生器管道检查技术概述

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摘要

Degradation of steam generator (SG) tubing due to both mechanical and corrosion modes has resulted in extensive repairs and replacement of SGs around the world. The variety of degradation modes challenges the integrity of SG tubing and, therefore, the stations' reliability. Inspection and monitoring aimed at timely detection and characterization of the degradation is a key element for ensuring tube integrity. Up to the early-70's, the in-service inspection of SG tubing was carried out using single-frequency eddy current testing (ET) bobbin coils, which were adequate for the detection of volumetric degradation. By the mid-80's, additional modes of degradation such as pitting, intergranular attack, and axial and circumferential inside or outside diameter stress corrosion cracking had to be addressed. The need for timely, fast detection and characterization of these diverse modes of degradation motivated the development in the 90's of inspection systems based on advanced probe technology coupled with versatile instruments operated by fast computers and remote communication systems.
机译:由于机械和腐蚀方式导致的蒸汽发生器(SG)管道性能下降,导致对SG进行了广泛的维修和更换。各种降级模式都对SG管的完整性以及站的可靠性提出了挑战。旨在及时检测和表征降解的检查和监控是确保管完整性的关键因素。直到70年代初,使用单频涡流测试(ET)线轴线圈进行了SG管的在役检查,这足以检测体积退化。到80年代中期,必须解决其他的降解模式,例如点蚀,晶间腐蚀以及轴向和圆周内部或外部直径应力腐蚀开裂。及时,快速地检测和表征这些不同的降解模式的需求,促使了基于先进探针技术以及由快速计算机和远程通信系统操作的多功能仪器的90年代检测系统的发展。

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