[1] S.R. Collins and G.M. Michal, Metall Mater Trans A 24A (1993) 2701.[2] L.E. Iorio and W.M. Garrison, ISIJ Int 42 (2002) 545.[3] M.E. Valdez, Y. Wang and S. Sridhar, Steel Res 76 (2005) 306.[4] H. Takada, I. Bessho and T. Ito, Tetsu-to-Hagane 18 (1978) 564.[5] C.E. Cicutti, J. Madias and J.C. Gonzalez, Ironmaking and Steelmaking 24 (1997) 155.[6] M. Wintz, M. Bobadilla, J. Lehmann and H. Gaye, ISIJ Int 6 (1995) 715.[7] T. Yamashita, S. Torizuka and K. Nagai, ISIJ Int 11 (2003) 1833.[8] Z.B. Yang, PhD Dissertation (University of Science and Technology Beijing, Beijing, 2008).[9] E.B. Yue, PhD Dissertation (China Iron and Steel Research Institute, 2004).[10] E.T. Turkdogan, Fundamentals of Steelmaking (The University Press, Cambridge) p.298.[11] H.B. Yin, K. Blazek and O. Lanzi, ISIJ Int 10 (2009) 1561.[12] N. Yuki, H. Shibata and T. Emi, ISIJ Int 4 (1998) 317.[13] Y. Kashiwaya, Y. Yamaguchi, H. Kinoshita and K. Ishii, ISIJ Int 2 (2007) 226.[14] D.N. Crowther, P.S. Mitchell and W.B. Morrison, Proc 39th MWSP Conference (Indianapolis, USA, 1997).[15] E.J. Palmiere, G.I. Garcia and A.J. DeArdo, Metall Mater Trans A 27A (1996) 951.[16] S. Morito, H. Saito, T. Furuhara and T. Maki, ISIJ Int 45 (2005) 91.[17] R. Priestner, Mater Sci Forum 284 (1998) 95.[18] X.J. Shao, X.H. Wang and W.J. Wang, J Univ Sci Technol Beijing 5 (2010) 570.[19] Z. Guo, N. Kimura, S. Tagashira, T. Furuhara and T. Maki, ISIJ Int 42 (2002) 1033. |