Effects of V Addition on Tensile and Impact Properties in Low Carbon 1.1Mn Steels

저탄소 1.1 Mn 강의 인장 및 충격 성질에 미치는 V첨가의 영향

  • Yang, H.R. (Department of Mechanical Engineering, Incheon City College) ;
  • Cho, K.S. (School of Advanced Materials Engineering, Kookmin University) ;
  • Choi, J.H. (School of Advanced Materials Engineering, Kookmin University) ;
  • Sim, H.S. (Technical Research Lab., Dongkuk Steel Mill Co.) ;
  • Lee, K.B. (School of Advanced Materials Engineering, Kookmin University) ;
  • Kwon, H. (School of Advanced Materials Engineering, Kookmin University)
  • 양형렬 (시립인천전문대학 기계공학과) ;
  • 조기섭 (국민대학교 신소재공학부) ;
  • 최정현 (국민대학교 신소재공학부) ;
  • 심호섭 (동국제강 중앙연구소) ;
  • 이건배 (국민대학교 신소재공학부) ;
  • 권훈 (국민대학교 신소재공학부)
  • Received : 2008.09.30
  • Accepted : 2008.10.15
  • Published : 2008.11.30

Abstract

In the 1.1 Mn steel containing boron, effects of the 0.1 V addition and processing condition were studied. In the $550^{\circ}C$ interrupted cooling where the main structure is (ferrite + pearlite), the impact toughness decreased as the tensile strength increased by the 0.1 V addition. The $800^{\circ}C$ rolling including two step rolling of $800-770^{\circ}C$, exhibited better strength-toughness balance, as compared to the $770^{\circ}C$ rolling. This seems to be kind of conditioning effect at higher temperature, e.g., more uniform deformation effect. In the accelerated cooling after the $750^{\circ}C$ rolling in a dual phase range, the impact toughness was enhanced, despite a large increase in tensile strength. This is believed to be related to the change of main structure from (ferrite + pearlite) to (ferrite + bainite).

Keywords

References

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