Structure and Hardness of Al-Fe-Ti Alloys

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Abstract:

It is the intention of this paper to present the results of a study of Al-Fe-Ti (26-50Fe-2wt%Ti) cast alloys. We have examined the solidification structure over a wide range of iron contents. Using X-ray diffraction and quantitative microstructural analysis, we have characterized the alloy microstructure and identified second-phase crystallographic structures. The hardness of the alloys was also determined. The solidification structure was modified by the addition of Ti to Al1-xFex alloys.

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Defect and Diffusion Forum (Volumes 305-306)

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23-32

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October 2010

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© 2010 Trans Tech Publications Ltd. All Rights Reserved

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[1] R. S. Diehm, D. E. Mikkola. Mater. Res . Soc Symp Proc 1987; 81: 329. system.

Google Scholar

[2] M. Palm , G. Sauthoff . Intermetallics 2004; 12: 1345.

Google Scholar

[3] U. R. Kattner, T. B. Massalski, editor. Binary alloy phase diagrams, vol. 1. Materials Park: ASM Int; 1990. p.147.

Google Scholar

[4] U. Zwicker , J. Breme , K. Nigge , Mikrochim Acta Suppl 1985; 11: 333.

Google Scholar

[5] A. O, Mekhrabov, M. V Akdeniz. Acta Mater 1999; 47: (2067).

Google Scholar

[6] R. Ducher, F. Stein, B. Viguier, M. Palm and J. Lacaze, Z Metallkd 94 (2003), p.396.

Google Scholar

[7] R. Kainuma, I. Ohnuma, K. Ishikawa and K. Ishida, Intermetallics 8 (2000), p.869.

Google Scholar

[8] R. Kainuma, Y. Fujita, H. Mitsui, I. Ohnuma and K. Ishida, Intermetallics 8 (2000), p.855.

Google Scholar

[9] R. Banerjee, S. Amancherla, S. Banerjee and H.L. Fraser, Acta Mater 50 (2002), p.633.

Google Scholar

[10] I. Ohnuma, C.G. Schön, R. Kainuma, G. Inden and K. Ishida, Acta Mater 46 (1998), p. (2083).

Google Scholar

[11] M. G. Mendiratta, S.K. Ehlers and H.A. Lipsitt, Metall Trans A18 (1987), p.509.

Google Scholar

[12] Y. Nishino, C. Kumada and S. Asano, Scripta Mater 36 (1997), p.461.

Google Scholar

[13] G. Athanassiadis, G. Le Caer, J. Foct and L. Rimlinger, Phys Status Solidi A40 (1977), p.425.

DOI: 10.1002/pssa.2210400208

Google Scholar

[14] R. N. Wright, J.K. Wright, T.A. Hyde, C.M. Sellers and Y. Mishima In: A.F. Giamei and K. Inoue, Editors, Mechanical properties and phase transformations of multi-phase intermetallic alloys, TMS, Warrendale (1995), p.49.

Google Scholar

[15] Z. Q. Sun, W.Y. Yang, L.Z. Shen, Y.D. Huang, B.S. Zhang and J.L. Yang, Mater. Sci. Eng. A258 (1998), p.69.

Google Scholar

[16] A. Grytsiv, P. Rogl, G. Giester and V. Pomjakushin, Intermetallics 13 (2005), p.497.

DOI: 10.1016/j.intermet.2004.09.004

Google Scholar

[17] K. Yamashita, Y. Watanabe, N. Yamanaka, Y. Fukui and A. Sato: Proc. JIMIS-8, (1996), p.371.

Google Scholar