전기저항법에 의한 크리프 손상의 비파괴적 검출

Non-destructive Detection of Creep Damage Based on Electric Resistance Technique

  • 이해우 (한국표준과학연구원 소재특성평가센터) ;
  • 윤기봉 (한국표준과학연구원 소재특성평가센터) ;
  • 남승훈 (한국표준과학연구원 소재특성평가센터) ;
  • 소철호 (동신공과대학)
  • Lee, H.M. (Materials Evaluation Center, Korea Research Institute of Standards and Science) ;
  • Yoon, K.B. (Materials Evaluation Center, Korea Research Institute of Standards and Science) ;
  • Nahm, S.H. (Materials Evaluation Center, Korea Research Institute of Standards and Science) ;
  • Soh, C.H. (Dept. of Physics, DongShin Engineering College)
  • 발행 : 1994.09.30

초록

As Cr-Mo-V steels have excellent mechanical and creep properties at elevated temperatures, they are extensively used in power plants. However, the steam turbine components are supposed to have suffered material degradation during long-term service at elevated tenperatures. Many efforts have been made to assess the safety and residual life of these components by means of non-destructive methods such as plastic replication, hardness and electric resistance techniques. Recently, a parameter correlating hardness changes during long-term heating to those during creep was introduced and it was named 'G parameter'. The electric resistivity as well as hardness are affected by damage accumulation, but there have been no efforts to correlate G parameter to resistivity changes. In this study, relationship between G parameter and changes in electric resistivity was investigated using artificially aged Cr-Mo-V steel. It is well understood that G parameter can be applied to electric: resistance techmique.

키워드

과제정보

연구 과제 주관 기관 : 한국표준과학연구원