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Microstructures of Rapidly Solidified Ti-15Al-11Mo Alloy

Published online by Cambridge University Press:  28 February 2011

A. G. Jackson
Affiliation:
Systems Research Laboratories, Inc., 2800 Indian Ripple Rd., Dayton, OH 45440
K. Teal
Affiliation:
AFWAL Materials Laboratory, Wright-Patterson AFB, OH 45433
F. H. Froes
Affiliation:
AFWAL Materials Laboratory, Wright-Patterson AFB, OH 45433
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Abstract

The microstructural development in a Ti3Al alloy modified with an addition ofil w/o Mo has been studied. Under equilibrium conditions (arcmelted) a two phase ordered hexagonal and ordered bcc structure is present. Evidence of omega phase was alsoobserved. By rapid solidification the hexagonal structure is suppressed, which contrastswith the behavior of a Ti3Al alloy modified with a similar amount of Nb. The mechanism by which the phases present form is discussed in terms of the atomic movements required.

Type
Research Article
Copyright
Copyright © Materials Research Society 1987

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References

REFERENCES

1. Eylon, D., Postans, P. J., Fujishiro, S. and Froes, F. H., JOM, Nov. 1984, pp. 5562.CrossRefGoogle Scholar
2. Lipsitt, H. A., MRS, 1984.Google Scholar
3. Ward, C., Kaufman, M., Rowe, R. G., Broderick, T. F., Jackson, A. G. and Froes, F. H., work in progress.Google Scholar
4. Broderick, T. F., Jackson, A. G., Jones, H. and Froes, F. H., Met. Trans, 16A, 1951 (1985).CrossRefGoogle Scholar
5. Strychor, R., Williams, J. C. and Soffa, W A., accepted for publication in Met. Trans., 1987.Google Scholar
6. Sikka, S. K., Vohra, Y. K. and Chidambaram, R., “Omega Phase in MaterialsProg. in Mat. Sci., 27, 245310 (1982).Google Scholar
7. Dubertret, A. and Fayard, M., “Ordering Phenomena in Omega Phases,” in Titanium and Titanium Alloys, Volume 2, Eds: Williams, J. C. and Belov, A. F., Plenum Press, New York, 1982, p. 1403.Google Scholar
8. Duerig, T. W., Terlinde, G. T., and Williams, J. C., “The Omega-Phase Reaction in Titanium Alloys,” in Titanium '80, Volume 2, Eds: Kimura, H. and Izumi, O., The Metallurgical Society of IME, Warrendale, PA, 1980, p. 1299.Google Scholar
9. Ward, C., Broderick, T., Jackson, A. G. and Froes, F. H., TMS-AIME Symposium, Fall meeting, Orlando, FL, October, 1986.Google Scholar
10. Murray, J. L., Bulletin of Alloy Phase Diagrams, 2(1), 185 (1981) and 2(2), 53 (1981).CrossRefGoogle Scholar