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13%Cr-0.17%C 스테인리스강의 고온 가스질화에 미치는 Al 함량 변화의 영향

Effect of Al Content Variation on High Temperature Gas Nitriding in 13%Cr-0.16%C Stainless Steel

  • 박범태 (한국철강(주)) ;
  • 김정민 (동아대학교 대학원 금속공학과) ;
  • 강희재 (동아대학교 대학원 금속공학과) ;
  • 공정현 (동아대학교 신소형재가공청정공정개발 연구센터) ;
  • 강창룡 (부경대학교 금속공학과) ;
  • 성장현 (동아대학교 신소형재가공청정공정개발 연구센터)
  • Park, B.T. (KISCO) ;
  • Kim, J.M. (Department of Materials Science and Engineering, Dong-A University) ;
  • Kang, H.J. (Department of Materials Science and Engineering, Dong-A University) ;
  • Kong, J.H. (Center for Advanced Net Shape Manufacturing and Clean Process Dong-A University) ;
  • Kang, C.Y. (Dept. of Metallurgical Engineering, Pukyong National University) ;
  • Sung, J.H. (Center for Advanced Net Shape Manufacturing and Clean Process Dong-A University)
  • 투고 : 2011.08.30
  • 심사 : 2011.10.04
  • 발행 : 2011.11.30

초록

This study has been performed to investigate the effect of Al addition on High Temperature Gas Nitriding (HTGN) in 13%Cr-0.16%C stainless steel with different Al contents of 0.54%, 1.76% and 2.36%, respectively. HTGN treatment was carried out at $1100^{\circ}C$ for 1 hr, 5 hrs and 10 hrs. Nitrogen-permeated surface layers showed round type carbides of $Cr_{23}C_6$ and needle type nitrides of AlN in the matrix of martensite, representing 600~700 Hv. And the thickness of the surface layer increased with increasing Al content and HTGN treatment time. The inner region that was not permeated nitrogen showed chromium carbides in the mixed phase of martensite and ferrite for the 0.53% Al alloyed steel, however chromium carbides in the matrix of ferrite single phase were shown for the steels with the addition of 1.76%Al and 2.36%Al, representing the hardness of ~200 Hv. During nitrogen permeation from surface to the interior, substitutional elements of Cr, Al and Si moved toward the surface and interstitial element of carbon also moved from interior to the surface. This movement of alloying elements leads high concentration of these elements at the outmost surface, subsequently the lowest peak of substitutional elements were shown in the vicinity of near surface. After showing the lowest peak, the high concentration region of Al and C were formed due to the continuous movement of Al toward the surface. The long discontinuous precipitates of $Cr_{23}C_6$ and AlN were formed along the outmost surface owing to the high concentration of these alloying elements.

키워드

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피인용 문헌

  1. 고온 가스질화 된 STS 430 스테인리스강의 냉간 가공성에 미치는 항온변태 열처리 시간 변화의 영향 vol.27, pp.1, 2011, https://doi.org/10.12656/jksht.2014.27.1.15