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Crystalline-to-Amorphous Transitions in Ti-Ni Alloys

Published online by Cambridge University Press:  25 February 2011

R. Pelton
Affiliation:
Metallurgy and Ceramics Division, Ames Laboratory, Iowa State University, Ames, IA 50011
P. Moine
Affiliation:
Universite de Poitiers, Poitiers, France
M. A. Noack
Affiliation:
Metallurgy and Ceramics Division, Ames Laboratory, Iowa State University, Ames, IA 50011
R. Sinclair
Affiliation:
Dept. of Mat. Sci. and Engr., Stanford Univ., Stanford, CA 94305
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Abstract

Ti-Ni alloys have been made amorphous over a broad composition range by sputter deposition, ion implantation and electron irradiation. Structural analysis of these alloys was made by electron diffraction techniques. Microdensitometer traces of diffraction patterns produced scattering profiles from which radial distribution functions (RDF's) were derived. The results from this analysis were comparable to those from x-ray diffraction studies on similar alloys. It was found that the positions of the intensity maxima vary systematically with alloy composition. However, values of coordination number were less precise due to experimental uncertainties. Furthermore, no dramatic differences were observed in the RDF's of the samples amorphized by the three techniques.

Type
Articles
Copyright
Copyright © Materials Research Society 1986

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References

1. Tanner, L.E. and Ray, R., U.S. Patent Nos. 4,126,449 and 4,148,669.Google Scholar
2. Polk, D.E., Calka, A. and Giessen, B.C., Acta Metall. 26, 1097 (1978).Google Scholar
3. Pelton, A.R., Marshall, A.F., and Lee, Y.S., Proc. Ann. EMSA Meeting 48, 270 (1983).Google Scholar
4. Moine, P., Eymery, J.P., Gaboriaud, R.J. and Delafond, J., Nucl. Instr. and Methods 209/210, 267 (1983).Google Scholar
5. Brimhall, J.L., Kissinger, H.E., and Charlot, L.A., in Metastable Materials Formation by Ion Implantation, edited by Picraux, S.T. and Choyke, W.J. (North-Holland, New York, 1982), pp. 235242; P. Moine, M.P. Riviere, N. Junqua, and J. Delafond, in Metastable Materials Formation by Ion Implantation, edited by S.T. Picraux and W.J. Choyke (North-Holland, New York, 1982), pp. 243–251.Google Scholar
6. Thomas, G., Mori, H., Fujita, H., and Sinclair, R., Scripta Met. 16, 589 (1982).Google Scholar
7. Fujita, H., Mori, H., and Fujita, M., Proc. of the 7th Int. Conf. on HVEM, edited by Fisher, R.M., Gronsky, R., and Westmacott, K.H. (U.C. Berkeley Press, 1983), pp. 233238; A.R. Pelton, Proc. of the 7th Int. Conf. on HVEM, edited by R.M. Fisher, R. Gronsky, and K.H. Westmacott (U.C. Berkeley Press, 1983), pp. 245–250.Google Scholar
8. Turnbull, D., Met. Trans. 12A, 695 (1981).Google Scholar
9. Gabriel, T.A., Bishop, B.C., and Wiffen, F.W., ORNL Report ORNL/TM-6361.Google Scholar
10. Cargill, G.S., III, in Solid State Physics, edited by Seitz, F., Turnbull, D., and Ehrenreich, H. (Academic Press, New York, 30 1975), pp. 227320.Google Scholar
11. Nandra, S.S. and Grundy, P.J., J. Phys: Metal Phys. 7, 207 (1977).Google Scholar
12. Dove, D.B., in Physics of Thin Films, edited by Hass, G., Francombe, M.H., Hoffman, R.W. (Academic Press, New York, 1973), pp. 141.Google Scholar
13. Waseda, Y., The Structure of Non-crystalline Materials, (McGraw-Hill, New York, 1980), pp. 3440.Google Scholar
14. Wang, R. and Brimhall, J.L., MRS Symp. Proc. 27, 729 (1984).Google Scholar
15. Moine, P., Popoola, O., and Villain, J.P., submitted to Scripta Met.Google Scholar
16. Beyer, J., PhD Thesis, Technishe Hogeschool Twente, The Netherlands, 1982.Google Scholar
17. Kim, J.J., Stevenson, D.L., and Moine, P., Scripta Met., accepted for publication (1985).Google Scholar
18. Moine, P., Goo, E., and Sinclair, R., Scripta Met. 18, 1143 (1984).Google Scholar
19. Pelton, A.R., Moine, P., and Sinclair, R., Proc. Ann. EMSA Meeting 42, 508 (1984).Google Scholar
20. Wagner, C.N.J., Lee, D., Keller, L., Tanner, L.E., and Ruppersberg, H., Proc. Int. Conf. on Rapidly Quenched Metals 4, 331 (1981).Google Scholar
21. Wagner, C.N.J., Acta Met., accepted for publication (1985).Google Scholar
22. Brimhall, J.L., Kissinger, H.E., and Pelton, A.R., Proc. MRS 27, 163 (1983).Google Scholar