Effect of austenization temperature on the microstructure evolution of the medium manganese steel (0.2C-5Mn) during ART-annealing

  • XU Hai-Feng ,
  • DIAO Jie ,
  • YU Chang ,
  • YU Cun-Yu ,
  • SHI Cha ,
  • CAO Wen-Quan ,
  • LI Jian ,
  • DONG Han
Expand
  • 1. National Engineering Research Center of Advanced Steel Technology, Central Iron and Steel Research Institute, Beijing 100081, China
    2. School of Materials Science and Engineering, State Key Laboratory of Material Processing and Die &  Mould Technology, Huazhong University of Science and Technology, Wuhan 430074, China

Received date: 2011-08-22

  Revised date: 2011-12-12

  Online published: 2012-04-11

Abstract

Microstructure evolution during ART-annealing (austenite reverted transformation annealing) of 0.2C-5Mn steel processed by austenitation at different temperatures was examined by SEM, TEM and XRD. It was demonstrated that the initial microstructures resulted from austenization at different temperatures strongly affect the microstructure evolution during followed ART-annealing, even the ultrafine grained ferrite/austenite duplex structure with about 30% austenite could be obtained after long time ART-annealing in all cases. Austenization in the intercritical region (between Ac1 and Ac3) gave a duplex structure after quenching, which was nearly not affected by followed annealing process. However, high temperature austenization (above Ac3) resulted in a full martensite structure after quenching, which gradually transformed into a ferrite/austenite duplex structure during the following annealing process. Based on the analysis of austenite fraction and carbon concentrate, it was found that not only carbon partitioning but also manganese partitioning in the austenite affected the stability of austenite and even dominated the development of lamellar ferrite and austenite duplex structure during intercritical annealing with different times. At last an austenite lath nucleation and thickening model was proposed to describe the microstructure evolution of medium mangenese steel during ART-annealing.

Cite this article

XU Hai-Feng , DIAO Jie , YU Chang , YU Cun-Yu , SHI Cha , CAO Wen-Quan , LI Jian , DONG Han . Effect of austenization temperature on the microstructure evolution of the medium manganese steel (0.2C-5Mn) during ART-annealing[J]. Acta Metallurgica Sinica (English Letters), 2012 , 25(2) : 111 -123 . DOI: 10.11890/1006-7191-122-111

References

[1] K. Sugimoto, T. Iida, J. Sakaguchi and K.Takahiro,  ISIJ Int  40(9)  (2000) 902

[2] S. Curtze, V.T. Kuokkala, M. Hokka and P. Peura,  Mater Sci Eng A  57(1-2)  (2009) 124

[3] S.J. Kim, C.G. Lee, I.D. Choi and S. Lee,  Metall Mater Trans A  32(2)  (2001) 505

[4] J. Zrnik, O. Stejskal, Z. Novy and P. Hornak,  J Mater Process Technol  192-193  (2007) 367

[5] H. Ding, Z.Y. Tang, W. Li, M. Wang and D. Song,  J Iron Steel Res Int  13(6)  (2006) 66

[6] T. Chandra, K. Tsuzaki, M. Militzer and C. Ravindran,  Mater Sci Forum  539-543  (2006) 242

[7] A.Z. Hanzaki, P.D. Hodgson and S. Yue,  Metall Mater Trans A  28(11)  (1997) 2405

[8] M.Y. Sherif, C. Mateo Garcia, T. Sourmail and H.K.D.H.Bhadeshia,  Mater Sci Technol  20  (2004) 319

[9] V.F. Zackay, E.R. Pacher and D. Fahr,  Trans ASM  60 (1967) 252

[10] Y. Sakuma, O. Matsumuta and H. Takechi,  Metall Mater Trans A  22(2)  (1991) 489

[11] Y.G. Zhang, Y.L. Chen, H.B. Wu, A.M. Zhao, G.M. Liu and A.M. Xiong,  J Iron Steel Res  20(5)  (2008) 33

[12] J. Shi, X.J. Sun, M.Q. Wang, W.J. Hui, H. Dong and W.Q.Cao,  Scr Mater  63(8)  (2010) 815

[13] J. Shi, W.Q. Cao and H. Dong,  Mater Sci Forum  654-656  (2010) 238

[14] C. Wang, J. Shi, C.Y. Wang, W.J. Hui, M.Q. Wang, H. Dong and W.Q. Cao,  ISIJ Int  51(4)  (2011) 651

[15] K.T. Park, E.G. Lee and C.S. Lee,  ISIJ Int  47(2) (2007) 294

[16] D.S. Leem, Y.D. Lee, J.H. Jun and C.S. Choi,  Scr Mater 45(7)  (2001) 767

[17] W.Q. Cao, C. Wang, J. Shi, M.Q. Wang and H. Dong,  Mater Sci Eng A  528(22-23)  (2011) 6661

[18] C.Y. Wang, J. Shi, W.Q. Cao and H. Dong,  Mater Sci Eng A  527  (2010) 3442

[19] G. Miramoto, N. Takayama and T. Furuhara,  Scr Mater 60(12)  (2009) 1113

[20] Y.K. Lee, H.C. Shin, D.S. Leem, J.Y. Choi, W. Jin and C.S.Choi,  Mater Sci Technol  19(3)  (2003) 393

[21] N. Nakada, T. Tsuchiyama, S. Takaki and S. Hashizume,  ISIJ Int  47(10)  (2007) 1527

[22] M.E. Jimenez, L. Zhao, J. Sietsma, S.E. Offerman, J.P.Wright and S. van der Zwaag,  Acta Mater  55(20)  (2007)6713

[23] K. Sugimoto, B.Z. Yu, Y. Mukai and S. Ikeda,  ISIJ Int 45(8)  (2005) 1194
Outlines

/