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反应堆压力容器安全端异种金属焊缝超声检查技术 被引量:4

The Investigation About the Ultrasonic Inspection of RPV Safe end Dissimilar Metal Weld
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摘要 堆焊层、奥氏体粗晶材料的存在以及焊缝几何结构的复杂性使得反应堆压力容器安全端异种金属焊缝的超声检查非常具有挑战性。为提高安全端异种金属焊缝超声检查的可靠性和检查效率,利用常规双晶纵波检查技术及相控阵检查技术开展了安全端异种金属焊缝超声检查技术研究。试验结果表明,常规双晶纵波检查技术及相控阵检查技术均可有效检出安全端异种金属焊缝中的缺陷,且缺陷定量精度满足相关规范要求。其中,常规双晶纵波检查技术现已应用到核电站的役前检查及在役检查中,相控阵检查技术的缺陷定量精度及检查效率均优于常规双晶纵波检查技术。 The ultrasonic inspection of reactor pressure vessel(RPV)safe end dissimilar metal welds is a challenging task because of the existence of cladding and austenitic coarse grain and complicated geometry of dissimilar metal welds.In order to improve the reliability and efficiency of ultrasonic inspection of safe end dissimilar metal welds,the conventional dual elements longitudinal wave(TRL)inspection technology and phased array(PA)inspection technology has been investigated in this paper.The results of examination indicated that TRL and PA inspection technology could detect the defects of dissimilar metal welds effectively,and the precision of defects sizing met the requirements of related rules.Hence,TRL inspection technology has been applied to the pre-service and inservice inspection of nuclear power plant;the accuracy of defect sizing and efficiency of PA inspection technology was better than that of TRL inspection technology.
出处 《无损检测》 2014年第4期8-13,共6页 Nondestructive Testing
基金 核电站反应堆压力容器安全端异种金属焊缝超声检验技术研究资助项目(CGNPC2007T077)
关键词 反应堆压力容器 异种金属焊缝 双晶纵波 超声相控阵 Reactor pressure vessel Dissimilar metal weld Dual elements longitudinal wave Ultrasonic phased array
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参考文献3

  • 1In-service inspection rules for the mechanical compo- nents of PWR nuclear islands(RSE-M, 2"d modifica- tion-February 2000) Binder I , Section B, B4200[S]. 被引量:1
  • 2HUIELL R J. Handbook on the ultrasonic examina- tion of austenitic clad steel eomponents[R]. European Commission, Joint Research Carter Institute of Ad- vanced Material, 1994. 被引量:1
  • 3EDELMANN X. Handbook on the ultrasonic exami- nation of austenitic welds[R]. European Commission, Joint Research Carter Institute of Advanced Material, 1984. 被引量:1

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