首页> 外文会议>World Conference on Non-Destructive Testing >EDDY CURRENT TECHNOLOGY FOR HEAT EXCHANGER AND STEAM GENERATOR TUBE INSPECTION
【24h】

EDDY CURRENT TECHNOLOGY FOR HEAT EXCHANGER AND STEAM GENERATOR TUBE INSPECTION

机译:涡流热交换器和蒸汽发生器管检查技术

获取原文

摘要

A variety of degradation modes can affect the integrity of both heat exchanger (HX) and balance of plant tubing, resulting in expensive repairs, tube plugging or replacement of tube bundles. One key component for ensuring tube integrity is inspection and monitoring for detection and characterization of the degradation. In-service inspection of HX and balance of plant tubing is usually carried out using eddy current (EC) bobbin coils, which are adequate for the detection of volumetric degradations. However, detection and quantification of additional modes of degradation such as pitting, intergranular attack (IGA), axial cracking and circumferential cracking require specialized probes. The need for timely, reliable detection and characterization of these modes of degradation is especially critical in Nuclear Generating Stations. Transmit-receive single-pass array probes, developed by AECL, offer high defect detectability in conjunction with fast and reliable inspection capabilities. They have strong directional properties, permitting probe optimization for circumferential or axial crack detection. Compared to impedance probes, they offer improved performance in the presence of variable lift-off. This EC technology can help resolve critical detection issues at susceptible areas, such as the rolled-joint transitions at the tubesheet, U-bends and tube-support intersections. This paper provides an overview of the operating principles and the capabilities of advanced ET inspection technology available for HX tube inspection. Examples of recent application of this technology in Nuclear Generating Stations (NGSs) are discussed.
机译:各种劣化模式可以影响散热器(HX)和植物管的平衡的完整性,导致昂贵的维修,管堵塞或替换管束。用于确保管完整性的一个关键部件是检测和监测劣化的检测和表征。使用涡流(EC)线圈线圈通常进行HX和植物管的平衡的服务中的在职检查,这足以检测体积降解。然而,检测和定量额外的降解模式,例如点蚀,晶间攻击(IgA),轴向裂缝和周向裂缝需要专门的探针。对这些劣化模式的及时,可靠的检测和表征的需求在核发电站尤其重要。通过AECL开发的传输接收单通阵列探针,结合快速可靠的检测能力提供高缺陷可检测性。它们具有强大的定向性能,允许探针优化用于圆周或轴向裂纹检测。与阻抗探头相比,它们在可变剥离情况下提供了改进的性能。该EC技术可以帮助解决易感区域的关键检测问题,例如管板的滚动关节过渡,U形弯和管 - 支撑交叉点。本文概述了高级ET检测技术的操作原理和可用于HX管检查的功能。讨论了核发生站(NGSS)在核发生站(NGSS)中近期应用该技术的实例。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号