金属学报英文版 ›› 2020, Vol. 33 ›› Issue (5): 716-730.DOI: 10.1007/s40195-019-00988-y
收稿日期:
2019-09-27
修回日期:
2019-10-20
出版日期:
2020-05-10
发布日期:
2020-05-25
Jian Han1, Zhixiong Zhu2(), Gang Wei2, Xingxu Jiang2, Qian Wang1, Yangchuan Cai1, Zhengyi Jiang3(
)
Received:
2019-09-27
Revised:
2019-10-20
Online:
2020-05-10
Published:
2020-05-25
Contact:
Zhixiong Zhu,Zhengyi Jiang
. [J]. 金属学报英文版, 2020, 33(5): 716-730.
Jian Han, Zhixiong Zhu, Gang Wei, Xingxu Jiang, Qian Wang, Yangchuan Cai, Zhengyi Jiang. Microstructure and Mechanical Properties of Nb- and Nb + Ti-Stabilised 18Cr-2Mo Ferritic Stainless Steels[J]. Acta Metallurgica Sinica (English Letters), 2020, 33(5): 716-730.
Fig. 1 Calculated equilibrium molar fractions of phases of Nb-stabilised steel: aY-axis from 0 to 1 mol; bY-axis from 0 to 0.20 mol. N#: 1 ferrite (BCC_A2); 2 Nb precipitate (FCC_A1#2); 3 laves phase (LAVES_PHASE_C14); 4 Z phase (Z_PHASE); 5 liquid (LIQUID); 6 sigma; 7 ferrite (BCC_A2#2)
Fig. 2 Calculated equilibrium molar fractions of phases of (Nb + Ti)-stabilised steel: aY-axis from 0 to 1 mol; bY-axis from 0 to 0.20 mol. NT#: 1 ferrite (BCC_A2); 2 Nb/Ti precipitate (FCC_A1#2); 3 laves phase (LAVES_PHASE_C14); 4 liquid (LIQUID); 5 sigma phase (SIGMA); 6 ferrite (BCC_A2#2)
Fig. 8 TEM images and EDS analyses of precipitates for Nb-stabilised steel: a TEM images of precipitates 1-1a, 1-1, 1-2, 1-3 and b-e EDS analyses of precipitates 1-1a, 1-1, 1-2, 1-3; f TEM image of precipitate 2-1 and g EDS analysis of precipitate 2-1
Fig. 9 TEM images and EDS analyses of precipitates for (Nb + Ti)-stabilised steel: a, c TEM images of precipitates (Ti, Nb)N and b, d EDS analyses of precipitates (Ti, Nb)N; e TEM image of precipitates 3-1, 3-2 and f, g EDS analyses of precipitates 3-1, 3-2
Fig. 10 Orientation maps and misorientation-angle distributions of studied steels: a orientation map of Nb-stabilised steel; b grain boundary map of Nb-stabilised steel; c comparison of misorientation-angle distribution of two studied steels; d orientation map of (Nb + Ti)-stabilised steel; e grain boundary map of (Nb + Ti)-stabilised steel; f appendix
Fig. 14 Overall fracture appearances of Nb-stabilised specimens impacted at: a 40 °C; d 0 °C; g - 40 °C and SEM fractographs of Nb-stabilised specimens impacted at: b, c 40 °C; e, f 0 °C; h - 40 °C
Fig. 15 Overall fracture appearances of (Nb + Ti)-stabilised specimens impacted at: a 40 °C; c 0 °C; e - 40 °C and SEM fractographs of NT# specimens impacted at: b 40 °C; d 0 °C; f - 40 °C
Fig. 16 (Ti, Nb)N/TiN particles appearing at initiation of cleavage fractures and corresponding EDS analyses for (Nb + Ti)-stabilised specimens impacted at: a, b 40 °C; c, d 0 °C; e, f - 40 °C
[1] | Y. Shan, X. Luo, X. Hu, S. Liu, J. Mater. Sci. Technol. 27, 352 (2011) |
[2] | W. Du, L. Jiang, Q. Sun, Z. Liu, X. Zhang , J. Iron. Steel Res. Int. 17, 47 (2010) |
[3] | J. Shu, H. Bi, X. Li, Z. Xu, J. Mater. J. Mater. Process. Technol. 212, 59 (2012) |
[4] | H.F.G. De Abreu, A.D.S. Bruno, S.S.M. Tavares, R.P. Santos, S.S. Carvalho , Mater. Charact. 57, 342 (2006) |
[5] | R. Paton , ISIJ Int. 38, 1007 (1998) |
[6] | J. Han, H. Li, H. Xu , Mater. Des. 58, 518 (2014) |
[7] | A.C.T.M. Van Zwieten, J.H. Bulloch , Int. J. Press. Vessels Pip. 56, 69 (1993) |
[8] | A.C.T.M. Van Zwieten, J.H. Bulloch , Int. J. Press. Vessels Pip. 56, 1 (1993) |
[9] | F. Gao, Z. Liu, H. Liu, G. Wang, J. Alloys Compd. 567, 141 (2013) |
[10] | J.D. Gates, R.A. Jago , Mater. Sci. Technol. 3, 450 (1987) |
[11] | V. Kuzucu, M. Aksoy, M.H. Korkut, M.M. Yildirim , Mater. Sci. Eng. A 230, 75 (1997) |
[12] | M. Aksoy, V. Kuzucu, M.H. Korkut, M.M. Yildirim, J. Mater. Process. Technol. 91, 172 (1999) |
[13] | D. Min, S. Liu, H. Hong, P. Tao, P. Zhang , Mater. Des. 52, 353 (2013) |
[14] | J. Du, M. Strangwood, C.L. Davis, J. Mater. Sci. Technol. 28, 878 (2012) |
[15] | I.M. Wolff, A. Ball , Acta Metall. Mater. 39, 2759 (1991) |
[16] | S. Anttila, L.P. Karjalainen, D. Porter , Mater. Sci. Forum 762, 562 (2013) |
[17] | W. Yan, Y.Y. Shan, K. Yang , Metall. Mater. Trans. A 38, 1211 (2007) |
[18] | W. Gordon, A. van Bennekom , Mater. Sci. Technol. 12, 126 (1996) |
[19] | M.A.A. Tullmin, M.J. Witcomb, M.B. Cortie, F.P.A. Robinson , Br. Corros. J. 25, 191 (1990) |
[20] | L. Ma, J. Han, J. Shen, S. Hu , Acta Metall. Sin. (Eng. Lett.) 7, 407 (2014) |
[21] | B. Mintz, J. Kolahi-Aval , Mater. Sci. Technol. 2, 1046 (1986) |
[22] | O. Yoo, Y.J. Oh, B.S. Lee, S.W. Nam , Mater. Sci. Eng. A 405, 147 (2005) |
[23] | H.K. Danielsen, J. Hald , Z-phase in 9-12% Cr Steels (Technical University of Denmark, 2005) |
[24] | A. Kashiwar, N.P. Vennela, S.L. Kamath, R.K. Khatirkar , Mater. Charact. 74, 55 (2012) |
[25] | D.M. Escriba, E. Materna-Morris, R.L. Plaut, A.F. Padilha , Mater. Charact. 60, 1214 (2009) |
[26] | M.P. Sello, W.E. Stumpf , Mater. Sci. Eng. A 527, 5194 (2010) |
[27] | H. Yan, H. Bi, X. Li, Z. Xu , Mater. Charact. 60, 204 (2009) |
[28] | K. Tokuno, K. Hamada, R. Uemori, T. Takeda, K. Itoh , Scr. Metall. Mater. 25, 871 (1991) |
[29] | T. Gladman , The Physical Metallurgy of Microalloyed Steels (Maney Publishing, Leeds, 2002) |
[30] | J. Han, H.J. Li, Z.X. Zhu, F. Barbaro, L.Z. Jiang, H.G. Xu, L. Ma , Mater. Des. 63, 238 (2014) |
[31] | N.J. Petch , Philos. Mag. 3, 1089 (1958) |
[32] | Q.L. Yong , Second Phase in Steel Materials (Metallurgical Industry Press, Beijing, 2006) |
[33] | L. Ma, S.S. Hu, J.Q. Shen, J. Han, Z.X. Zhu, J. Mater. Sci. Technol. 32, 552-560 (2016) |
[34] | T. Watanabe, S. Tsurekawa , Acta Mater. 47, 4171 (1999) |
[35] | J. Han, H.J. Li, Z.X. Zhu, L.Z. Jiang, H.G. Xu, L. Ma , Mater. Sci. Eng. A 616, 20 (2014) |
[36] | T. Watanabe, T. Hirano, T. Ochiai, H. Oikawa , Mater. Sci. Forum 157, 1103 (1994) |
[37] | J. Moon, C. Lee, S. Uhm, J. Lee , Acta Mater. 54, 1053 (2006) |
[38] | P. Ghosh, R.K. Ray, C. Ghosh, D. Bhattacharjee , Scr. Mater. 58, 939 (2008) |
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