진공침탄(眞空浸炭) 열처리(熱處理) 기술개발(技術開發)에 관한 연구(硏究)

A Study on Vacuum Cargurizing Developments

  • 이상길 (형제열처리공업사) ;
  • 강순배 (부산공업대학 금속공학과) ;
  • 정병호 (부산공업대학 금속공학과) ;
  • 김한군 (부산공업대학 금속공학과)
  • Lee, Sang-Gil (Hyung-Je Heat Treatment Co.) ;
  • Kang, Sun-Bae (Department of Metall, Pusan National University of Technology) ;
  • Jung, Byong-Ho (Department of Metall, Pusan National University of Technology) ;
  • Kim, Han-Goon (Department of Metall, Pusan National University of Technology)
  • 발행 : 1990.09.29

초록

SCM 21 and D.P steel were carburized in vacuum using prophane at a temperature ranging from 1228k to 1308k under a gas pressure ranging from 21.3kpa to 61.8kpa, and the following results were obrained. 1) D.P. steel has considerable efficiency in depressing the grain growth during the high temperature carburizing and it has fine structure even at 1268k for 14.4ks when carburizied. Therefore this steel is expected to be suitable for vacuum carburizing at a high temperature. 2) Case depth was increased as the carburizing temperature increases and it was 3.2mm at max, temperature of 1308k, for max, time of 14.4ks and under max, pressure of 61.8kpa. Thus vacuum-carburizing was considered effective for the materials which need case depth, which is necessary for machine structure use. 3) The rate of case depth of SCM 21 was faster than D.P. steel under same carburizing conditions and the increasing rate of the case depth was constant. 4) Case depth was increased as the gas pressure becomes high under same carburizing temperature. 5) Case carbon concentration, $C_s$, of SCM 21 obeys to a formula, $$C_s=kt^{1/2}+C_0$$ Where k is $2.15{\times}10^{-2}$($wt%.S^{-1/2}$) and this value is a little bit lower than that of SNCM 815.

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과제정보

연구 과제 주관 기관 : 산학협동재단