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http://dx.doi.org/10.12656/jksht.2014.27.1.15

Effect of Isothermal Transformation Heat-treatment Time on Cold Workability of STS 430 Stainless Steel after High Temperature Gas Nitriding  

Kim, J.M. (Korea Institute of Materials Science (KIMS))
Hyun, Y.K. (Korea Institute of Materials Science (KIMS))
Song, S.W. (Korea Institute of Materials Science (KIMS))
Kim, G.D. (Korea Institute of Materials Science (KIMS))
Son, Y.H. (Korea Institute of Materials Science (KIMS))
Sung, J.H. (Center for Advanced Net Shape Manufacturing and Clean Process, Dong-A University)
Publication Information
Journal of the Korean Society for Heat Treatment / v.27, no.1, 2014 , pp. 15-22 More about this Journal
Abstract
This study is to investigate the phase changes and cold workability after isothermal transformation at $780^{\circ}C$ by using the high temperature gas nitrided (HTGN) STS 430 ferritic stainless steel specimens. The phase diagram of STS 430 steel obtained by calculation showed that the phase appeared at $1100^{\circ}C$ showed as ${\alpha}+{\gamma}{\rightarrow}{\gamma}{\rightarrow}{\gamma}+Cr_2N{\rightarrow}{\gamma}+Cr_2N+CrN$ with increasing nitrogen concentration. Also, the transformation of ${\gamma}{\rightarrow}Cr_2N$ during heat treatment isothermally at $780^{\circ}C$, nitrogen pearlite with lamellar type was fully formed at the nitrogen permated surface layer for 10 hrs. However, this transformation was not completed for 1 hr, resulting nitrogen pearlite plus martensite. The cold rolled specimen of isothermally transformed at $780^{\circ}C$ for 10 hrs after high temperature gas nitriding decreased the layer thickness of nitrogen pearlite inducing the deformation of hard $Cr_2N$ phase. the dissolution rate of $Cr_2N$ phase increased rapidly with increasing cold rolling ratio. Specimens with the microstructure of nitrogen pearlite (isothermally transformed at $780^{\circ}C$ for 10 hrs) were possible to cold rolling without crack formation. However, the mixed structures of nitrogen pearlite + martensite (isothermally transformed at $780^{\circ}C$ for 1 hr) were impossible to cold deformation without cracking.
Keywords
High temperature gas nitriding; Isothermal heat-treatment Nitrogen pearlite; Cold rolling; $Cr_2N$;
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Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 I. D. Park and K. W. Nam : J. Kor. Inst. Met. & Mater 40(5) (2002) 478.
2 J. H. Kong, D. J. Lee, H. Y. On, S. H. Lee, J. H. Sung and H. W. Lee : Met. Mater. Int 15(2) (2009) 179.   DOI   ScienceOn
3 이수진, 조정기, 지무성 : 강의 열처리도해와 조직, 원장출판사 15.
4 M. B. Horovita, F. Beneduceneto and A. Garbogini : ISIJ international 36(7) (1996) 840.   DOI   ScienceOn
5 J. Foct and N. Akdut : Scripta Metallurgical 29(2) (1993) 153.   DOI   ScienceOn
6 이성범 : 금속강도학, 문운당 (2006).
7 B. J. Park, C. U. Lee, G. S. Shin and Y. D. Lee : 5th Steel symposium (1999) 363.
8 K. Oda, N. Kondo and K. Shibata : ISIJ International 30(8) (1990) 625.   DOI
9 P. J. Uggowitzer, R. Magdowski and M. O. Speidel : ISIJ international 36(7) (1996) 901.   DOI   ScienceOn
10 H. Berns : ISIJ international 36(7) (1996) 909.   DOI   ScienceOn
11 J. Charles : Forth International Conference DUPLEX STAINLESS STEEL (1994) paper KI.
12 J. H. Kong, C. Y. Kang and J. H. Sung : 열처리공학회지 22(5) (2009) 282.
13 D. K. Yoo, D. W. Joo, I. S. Kim, C. Y. Kang and J. H. Sung : 열처리공학회지 15(2) (2002) 57.
14 J. H. Sung, J. H. Kong, D. K. Yoo, H. Y. On, D. J. Lee and H. W. Lee : Materials Science and Engineering A 489 (2008) 38.   DOI
15 S. J. Park, J. M. Kim, H. J. Kang, C. Y. Kang, Y. H. Kim and J. H. Sung : 열처리공학회지 25(3) (2012) 115.
16 D. K. Yoo and J. H. Sung : 열처리공학회지 19(2) (2006) 83.
17 B. T. Park, J. M. Kim, H. J. Kang, J. H. Kong, C. Y. Kang and J. H. Sung : 열처리공학회지 24(6) (2011) 318.
18 D. K. Yoo, J. H. Kong, H. W. Lee, C. Y. Kang, Y. H. Kim and J. H. Sung : 열처리공학회지 21(5) (2008) 244.
19 V. G. Garvriljuk and H. Berns : "High Nitrogen Steels" (1999) 215.
20 M. L. G. Byrnes, M. Grujicic and W. S. Owen : Acta Metal 35(7) (1987) 1853.   DOI   ScienceOn
21 D. K. Yoo, H. J. Lee, C. Y. Kang, K. H. Kim, Y. H. Kim and J. H. Sung : Solid State Pheomena 118 (2006) 149.   DOI