Phase Formation of Fe-Mn Binary Alloy During Sub-Rapid Solidification

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Abstract:

An experimental study on the influence of cooling rate and manganese content on the structures and phase formation of Fe-Mn alloy was carried out during sub-rapid solidification process. BCC structures were obtained for samples with manganese content ranging from 2pct to 11pct, and a HCP phase was obtained when the manganese content is up to 15pct. The micro- hardness increases with cooling rate and manganese content increasing.

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Advanced Materials Research (Volumes 391-392)

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741-744

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December 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Berndt Feuerbacher: Materials Science Reports Vol. 4 (1989), p.1.

Google Scholar

[2] Seung-Han Baik: Nuclear Engineering and Design Vol. 198 (2000), p.241.

Google Scholar

[3] Young-Kook Lee, Joong-Hwan Jun and Chong-Sool Choi: ISIJ International Vol. 37 (1997), p.1023.

Google Scholar

[4] Seung-Han Baik, Jung-Chul Kim, Dong-Woon Han, Tai-Hoon Kim, Jin-Hyun Back and Young-Kook Lee: Materials Science and Engineering A Vol. 438-440 (2006), p.1101.

Google Scholar

[5] S.K. Huang, N. Li, Y.H. Wen, J. Teng, Y.G. Xu and S. Ding: Journal of Alloys and Compounds Vol. 455 (2008), p.225.

Google Scholar

[6] T. Gebhardt, T. Music, D. Ekholm, I.A. Abrikosov, J. Appen, R. Dronskowski, D. Wagner, J. Mayer, J.M. Schneider: Acta Materialia Vol. 59 (2011), p.1493.

DOI: 10.1016/j.actamat.2010.11.013

Google Scholar

[7] N.P. Lyakishev: Phase Diagrams of Metellic Binary Alloys (Chemical Industry Press, Beijing 2008).

Google Scholar

[8] N. Cabanas, N. Akdut, J. Penning, B.C. De Cooman: Metallurgical and Materials Transactions A Vol. 37A (2006), p.3305.

Google Scholar

[9] O. Sahin, A. Calik, A.E. Ekinci, N. Ucar: Materials Characterization Vol. 58 (2007), p.571.

Google Scholar