저탄소 고망간강의 기계적 거동에 미치는 역변태 처리의 영향

Effect of Reverse Transformation on Mechanical Behavior of Low Carbon High Manganese Steels

  • 홍호 (전북대학교 공과대학 금속공학과, 신소재개발연구소) ;
  • 이오연 (전북대학교 공과대학 금속공학과, 신소재개발연구소) ;
  • 이규복 (전북대학교 공과대학 금속공학과, 신소재개발연구소)
  • Hong, H. (Research Institute of Advanced Materials Development, Department of Metallurgical Engineering, Chonbuk National University) ;
  • Lee, O.Y. (Research Institute of Advanced Materials Development, Department of Metallurgical Engineering, Chonbuk National University) ;
  • Lee, K.B. (Research Institute of Advanced Materials Development, Department of Metallurgical Engineering, Chonbuk National University)
  • 발행 : 1997.12.31

초록

The TRIP behavior in tensile deformation of retained austenite formed by reverse transformation treatment in 0.15%C-6%Mn-(Ti, Nb) steels has been investigated. The shape of retained austenite was almost a fine lath type with $0.1{\sim}0.3{\mu}m$ width and the two distinctly different transformation sequences of retained austenite, i) retained austenite${\rightarrow}$martensite and ii) retained austenite${\rightarrow}$deformation twin${\rightarrow}$martensite were revealed. The strength-elongation combination was increased with increasing the holdig time at low temperatures ($625^{\circ}C$) but decreased abruptly with increasing holding time at high temperatures ($675^{\circ}C$), owing to the lowering of ductility. The strength-elongation combination and TRIP effect was lower in tensile deformation in the range of $100{\sim}250^{\circ}C$ than room temperature. The tensile strengh and elongation of a reverse transformed steels with addition of Ti or Nb was 93kg/, 40% respectively, which is higher over 10% of strength without ductility loss than in 0.15%C-6%Mn steels.

키워드

과제정보

연구 과제 주관 기관 : 포항종합제철주식회사