화학공학소재연구정보센터
Korean Journal of Materials Research, Vol.23, No.7, 385-391, July, 2013
준안정 오스테나이트계 Fe-18Cr-10Mn-N 합금의 연성-취성 천이 거동에 미치는 Cu와 Ni의 영향
Influence of Cu and Ni on Ductile-Brittle Transition Behavior of Metastable Austenitic Fe-18Cr-10Mn-N Alloys
The influence of Cu and Ni on the ductile-brittle transition behavior of metastable austenitic Fe-18Cr-10Mn-N alloys with N contents below 0.5 wt.% was investigated in terms of austenite stability and microstructure. All the metastable austenitic Fe-18Cr-10Mn-N alloys exhibited a ductile-brittle transition behavior by unusual low-temperature brittle fracture, irrespective of Cu and/or Ni addition, and deformation-induced martensitic transformation occasionally occurred during Charpy impact testing at lower temperatures due to reduced austenite stability resulting from insufficient N content. The formation of deformation-induced martensite substantially increased the ductile-brittle transition temperature(DBTT) by deteriorating lowtemperature toughness because the martensite was more brittle than the parent austenite phase beyond the energy absorbed during transformation, and its volume fraction was too small. On the other hand, the Cu addition to the metastable austenitic Fe-18Cr-10Mn-N alloy increased DBTT because the presence of δ-ferrite had a negative effect on low-temperature toughness. However, the combined addition of Cu and Ni to the metastable austenitic Fe-18Cr-10Mn-N alloy decreased DBTT, compared to the sole addtion of Ni or Cu. This could be explained by the fact that the combined addition of Cu and Ni largely enhanced austenite stability, and suppressed the formation of deformation-induced martensite and δ-ferrite in conjunction with the beneficial effect of Cu which may increase stacking fault energy, so that it allows cross-slip to occur and thus reduces the planarity of the deformation mechanism.
  1. Foct J, Hendry A, Proc. Conf. High Nitrogen Steels (HNS 88), Lille, France, 1988, The Institute of Metals, London. (1989)
  2. Uggowitzer pj, Magdowski R, Speidel MO, ISIJ Int., 26, 901 (1996)
  3. Gavriljuk VG, Berns H, High Nitrogen Steels, Springer, Berlin. (1999)
  4. Speidel MO, Kowanda C, Diener M, HNS 2003 (High Nitrogen Steels), Schaffhausen, Switzerland, Institute of Metallurgy, ETH, Zurich. (2003)
  5. Karjalainen LP, Taulavuori T, Sellman M, Kyrolainen A, Steel Res. Int., 79, 404 (2008)
  6. Harzenmoser MAE, Reed RP, Uggowitzer PJ, Speidel MO, in High Nitrogen Steels, eds. G. Stein, H. Witulski (Dusseldorf, Germany: Stahl&Eisen, 1990) p.197 (1990)
  7. Dulieu D, Nutting J, in Metallurgical Developments in High-Alloy Steels, London, The Iron and Steel Institute, Special Report, 86, 140 (1964). (1964)
  8. Milititsky M, Matlock DK, Regully A, Dewispelaere N, Penning J, Hanninen H, Mater. Sci. Eng. A, 496, 189 (2008)
  9. CAMP-ISIJ, 22, 1148 (2009)
  10. Hwang B, Lee TH, Park SJ, Oh CS, Kim SJ, Mater. Sci. Eng. A, 528, 7257 (2011)
  11. Frehn A, Ratte E, Bleck W, in Proc. 7th Int. Conf. High Nitrogen Steels (GRIPS media GmbH, Ostend, Belgium, Sept. 2004) p. 447 (2004)
  12. Sjoberg J, Wire, 23, 155 (1973)
  13. Biggs T, Knutsen RD, Journal de Physique IV, 5, 515 (1995)
  14. Talonen J, Hanninen HH, Acta Mater., 55, 6108 (2007)
  15. Defilippi JD, Brickner KG, Gilbert EM, Trans. Metall. Soc. AIME, 245, 2141 (1969)
  16. Tobler RL, Meyn D, Metall. Trans. A, 19, 1626 (1988)
  17. Tomota Y, Xia Y, Inoue K, Acta Mater., 46, 1577 (1998)
  18. Hamano S, Koga T, Shimizu T, Katsurai T, Nishiyama T, in Proc. 7th Int. Conf. High Nitrogen Steels (GRIPS media GmbH, Ostend, Belgium, Sept. 2004) p.411 (2004)
  19. Narita S, Hamano S, Shimizu T, Noda T, in Proc. Int. Conf. High Nitrogen Steels 2006 (Metallurigical Industry Press, Sichuan, China, 2006) p. 174.. (2006)
  20. Bernauer J, Saller G, Speidel MO, in Proc. 7th Int. Conf. High Nitrogen Steels (GRIPS media GmbH, Ostend, Belgium, Sept. 2004). p. 529.. (2004)
  21. Stringfellow RG, Parks DM, Olson GB, Acta Metall. Mater., 40, 1703 (1992)
  22. Gonzalez BM, Castro CSB, Buono VTL, Vilela JMC, Andrade MS, Moraes JMD, Mantel MJ, Mater. Sci. Eng., A, 343, 51 (2003)