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Transformation Kinetics for Crystalline, Quasicrystalline, and Glassy Alloys in the Binary Al100-xMnx and Pseudobinary Al84-ySiyMn16Systems

Published online by Cambridge University Press:  26 February 2011

B. G. Bagley
Affiliation:
Bell Communications Research Red Bank, New Jersey 07701
H. S. Chent
Affiliation:
AT&T Bell Laboratories Murray Hill, New Jersey 07974
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Abstract

The condensed state phase transition energetics and kinetics are reported for specific compositions within the Al-Si-Mn system which demonstrate crystal → crystal, quasicrystal→ crystal, and glass.→crystal structural transformations. Our observations, and their interpretation, for the solid state crystalline AI(Mn)→Al+Al6 Mn reaction and the crystallization of glassy Al54Si 30Mn16 are consistent with the anticipated mode for these transformations. The nature of the quasicrystal→ crystal transformation, consistent with our observations, is an enigma.

Type
Research Article
Copyright
Copyright © Materials Research Society 1987

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References

Avrami, M. (1941). J. Chem. Phys. 9, 177184.CrossRefGoogle Scholar
Bagley, B. G., and Vogel, E. M. (1975). J. Non-Cryst. Solids 18, 2932.CrossRefGoogle Scholar
Chen, C. H. and Chen, H. S. (1986). Phys. Rev. B 33, 28142816.Google Scholar
Chen, H. S., Chen, C. H., Inoue, A., and Krause, J. T. (1985). Phys. Rev. B 32, 19401944.CrossRefGoogle Scholar
Chen, H. S. and Chen, C. H. (1986). Phys. Rev. B 33, 668671.CrossRefGoogle Scholar
Chou, C.-P. P., and Turnbull, D. (1975). J. Non-Cryst. Solids 17, 169188.Google Scholar
Christian, J. W. (1975). “The Theory of Transformations in Metals and Alloys”; second edition. Pergamon Press, Oxford.Google Scholar
Funakoshi, N., Kanamori, T., and Manabe, T. (1977). Japan J. Appl. Phys. 16, 515516.CrossRefGoogle Scholar
Guyot, P., and Audier, M. (1985). Phil. Mag. B 52, L15–L19.Google Scholar
Johnson, W. A., and Mehl, R. F. (1939). Trans. AIME 135, 416458.Google Scholar
Kimura, K., Hashimoto, T., Suzuki, K., Nagayama, K., Ino, H., and Takeuchi, S. (1985). J. Phys. Soc. Japan 54, 32173219.Google Scholar
Schaefer, R. J., Bendersky, L. A., Shechtman, D., Boettinger, W. J., and Biancaniello, F. S. (1985), National Bureau of Standards preprint; (1986) Met. Trans. 17A, 21172125.Google Scholar
Scott, M. G. (1978). J. Mat. Sci. 13, 291296.Google Scholar
Shechtman, D., Blech, I., Gratias, D., and Cahn, J. W. (1984).Phys. Rev. Lett. 53, 19511953.CrossRefGoogle Scholar
Turnbull, D. (1956). In “Solid State Physics – Advances in Research and Applications” (Seitz, F. and Turnbull, D., Eds.), Vol.3, pp. 225306. Academic Press, New York.Google Scholar