Influence of Austenitizing Conditions on the Mechanical Properties in 420J1 Martensitic Stainless Steel

420J1 마르텐사이트계 스테인리스강의 오스테나이트화 조건이 기계적 성질에 미치는 영향

  • Kim, Y.J. (Dept. of Metallurgical Engineering, Dong-A University) ;
  • Joo, D.W. (Dept. of Metallurgical Engineering, Dong-A University) ;
  • Park, S.H. (Bureau of Inspection, Industrial Advancement Adminstration) ;
  • Kim, G.D. (Research Institute of Industrial Science and Technology) ;
  • Sung, J.H. (Dept. of Metallurgical Engineering, Dong-A University)
  • 김영주 (동아대학교 금속공학과) ;
  • 주동원 (동아대학교 금속공학과) ;
  • 박성훈 (공업진흥청 소요량 관리과) ;
  • 김기돈 (산업 과학 기술연구소) ;
  • 성장현 (동아대학교 금속공학과)
  • Published : 1994.03.31

Abstract

To investigate the effect of austenitizing tempratures on the mechanical properties and corrosion resistance of 0.19%C-13.6%Cr martensitic stainless steel, the changes in martensitic trasformation temperatures, mechanical properties and anodic polarization curve were examined after changing the austenitizing temperatures and tempering temperatures. On increasing heating rate at the same austenitizing temperatures, $A_s$, $A_r$ and $M_s$ increased. And the $M_s$ temperature showed to be decreased with increasing austenitizing temperature. With increasing tempering temperature up to $500^{\circ}C$, strength, hardness and impact value were not changed remarkably, on the other hand the tensile strength and hardness decreased and impact value increased after tempering above $550^{\circ}C$ owing to the $M_{23}C_6$ carbide precipitation. The abrupt decrease in elongation at the tempering temperture of $500^{\circ}C$ proved to the precipitation of $M_7C_3$ carbide. The effect of austenitizing temperature on the mechanical properties of the tempered specimen showed to be decreased in impact value and elongation at the austenitizing temperature of $1150^{\circ}C$. At low tempering temperatures the corrosion resistance of the tempered specimen was not changed obviously with increasing tempering temperature. On the other hand, the resistance decreased above the tempering temperature of $600^{\circ}C$ due to the precipitation of $M_{23}C_6$ carbides. The corrosion resistance showed to be improved with increasing the austenitizing temperature owing to the dissolution of carbides.

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