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Effects of Do3 Transitions on the Yield Behavior of Fe-Al Alloys*

Published online by Cambridge University Press:  21 February 2011

H. Inouye*
Affiliation:
Metals and Ceramics Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831
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Abstract

The effect of DO3 transitions on the yield behavior of alloys near the Fe3 Al composition was investigated by tensile tests. Above 400°C, DO3 (Fe3 Al) ordered alloys exhibited an anomalous increase in yield strength with temperature with a peak value around 560 to 600°C which was not observed if the DO3 ordered alloys were also aged before testing. This yield behavior is explained by the precipitation of a (disordered solid solution) and the formation of B2 (FeAl) via the sequential reactions: DO3→α+DO3→α+B2.

Type
Research Article
Copyright
Copyright © Materials Research Society 1985

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Footnotes

*

Research sponsored by the Office of Naval Research under Interagency Agreement DOE No. 40-1241-82, U.S. Department of Energy under Contract No. DE-ACO5-840R21400 with Martin Marietta Energy Systems, Inc.

References

REFERENCES

[1]. Kayser, F. X., “Iron-Aluminum Systems, Part I, Fundamental Studies and Alloy Development” WADCT echnical Report 57–298 (May 1957).Google Scholar
[2]. Stoloff, N. S. and Davies, R. G., Acta Metall. 12, 473 (May 1964).Google Scholar
[3]. Lawley, A., Vidoz, E. A., Cahn, R. W., Acta Metall. 9, 287 (April 1961).Google Scholar
[4]. Oki, K., Hasaka, M., Eguchi, T., Jap. J. Appl. Phys. 12(10), 1522 (October 1973).Google Scholar
[5]. Swann, P. W., Duff, W. R., and Fisher, R. M., Trans. AIME 245, 851 (April 1964).Google Scholar
[6]. Okamoto, H. and Beck, P. A., Metall. Trans. 2, 569 (February 1971).Google Scholar
[7]. Allen, S. A. and Cahn, J. W., Acta Metall. 23, 1017 (September 1975).Google Scholar
[8]. Allen, S. A. and Cahn, J. W., Acta Metall. 24, 425 (1976).Google Scholar
[9]. Oki, K., Sagane, H., Eguchi, T., Jap. J. Appl. Phys. 13(5), 753 (May 1974).Google Scholar
[10]. Yamanaka, K., Ino, H., Fugita, F., J. Jap. Inst. of Metals 35, 566 (1971).Google Scholar