Hostname: page-component-76fb5796d-9pm4c Total loading time: 0 Render date: 2024-04-29T18:11:11.755Z Has data issue: false hasContentIssue false

Icosahedral ordering in quasicrystals and metallic glasses

Published online by Cambridge University Press:  03 March 2011

J. C. Phillips
Affiliation:
AT&T Bell Laboratories, Murray Hill, New Jersey 07974
Get access

Abstract

Many workers have recently conjectured that the underlying forces responsible for icosahedral clustering in crystals may also explain the origin of metallic glass formation. Critical examination of thermochemical structural diagrams and radial distribution functions of good metallic glasses shows that this assertion is unfounded.

Type
Rapid Communications
Copyright
Copyright © Materials Research Society 1986

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1Shectman, D., Blech, I., Gratias, D., and Cahn, J. W., Phys. Rev. Lett. 53,1951 (1984); Shectman, D., Bull. Am. Phys. Soc. 30, 507 (1985).Google Scholar
2Tammann, G., Der Glasszustand (Voss, Leipzig, 1933), Sec. IV, Chap. 12; Hoare, M., Ann. N. Y. Acad. Sci. 279, 186 (1976).Google Scholar
3Bernal, J. D., Proc. R. Soc. London Ser. A 280, 299 (1964).Google Scholar
4Frank, F. C., Proc. R. Soc. London Ser. A 215, 43 (1952).Google Scholar
5MacKay, A., Acta Crystallogr. 15, 916 (1962).CrossRefGoogle Scholar
6Sadoc, J. F., Dixmier, J., and Guinier, A., J. Non-Cryst. Sol. 12, 46 (1973).CrossRefGoogle Scholar
7Sachdev, S. and Nelson, D. R., Phys. Rev. Lett. 53, 1947 (1984); Nelson, D. R., Bull. Am. Phys. Soc. 30, 588 (1985).CrossRefGoogle Scholar
8Phillips, J. C., J. Non-Cryst. Sol. 34, 153 (1979).CrossRefGoogle Scholar
9Donald, I. W. and Davies, H. A., J. Non-Cryst. Sol. 30, 77 (1978).CrossRefGoogle Scholar
10Villars, P., J. Less-Common Met. 109, 93 (1985). Also Villars, P. (unpublished) has shown that the structural diagrams are equally successful for 7200 ternary systems and has predicted compound formation in 96 446 ternary systems.CrossRefGoogle Scholar
11Davies, H. A., in Amorphous Metallic Alloys (Butterworths, London, 1983), p. 8 and, especially, pp. 11 and 15.CrossRefGoogle Scholar
12Gaskell, P. H., J. Non-Cryst. Sol. 32, 207 (1979).CrossRefGoogle Scholar
13Dubois, J. M., LeCoer, G., Chieux, P., and Goulon, J., Nucl. Instrum. 199, 307 (1982).CrossRefGoogle Scholar
14Cocco, G., Enzo, S., Sampoli, M., and Schiffini, L., J. Non-Cryst. Sol. 61–62, 577 (1984).CrossRefGoogle Scholar
15Nelson, D. R., Phys. Rev. B 28, 5515 (1983). I am grateful to Professor Nelson for clarifying the relation between this work and Ref. 12.CrossRefGoogle Scholar
16Cohen, C., Benyagoub, A., Bernas, H., Chaumont, J., Thomé, L., Berti, M., and Drigo, A. V., Phys. Rev. B 31, 5 (1985).CrossRefGoogle Scholar