Hostname: page-component-586b7cd67f-t8hqh Total loading time: 0 Render date: 2024-11-29T07:36:53.422Z Has data issue: false hasContentIssue false

Chemical and Structural Characterization of ɣ(Ni)/ɣ'(Ni3 Al) Diffusion Bonded Interfaces

Published online by Cambridge University Press:  26 February 2011

M. Dupeux
Affiliation:
Laboratoire de Thermodynamique et Physico-Chimie Métallurgiques, Institut National Polytechnique de Grenoble, E.N.S.E.E.G., B.P.75, 38402 - Saint Martin d'Hères (France)
H. Rouault-Rogez
Affiliation:
Laboratoire de Thermodynamique et Physico-Chimie Métallurgiques, Institut National Polytechnique de Grenoble, E.N.S.E.E.G., B.P.75, 38402 - Saint Martin d'Hères (France)
P. Willemin
Affiliation:
Département Etudes et Recherches, IMPHY S.A., 58160 - Imphy (France)
Get access

Abstract

ɣ(Ni)/ɣ'(Ni3Al) diffusion bonded specimens are prepared under experimental conditions whose effect is confirmed by modelling the bonding process. The migration of the interphase boundary and the chemical concentration profiles are described and analysed. Some T.E.M. observations of these synthetic phase boundaries and their structural features are also reported.

Type
Research Article
Copyright
Copyright © Materials Research Society 1988

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

1. Dupeux, M., J. Cryst. Growth, 66, 169 (1984).Google Scholar
2. Dupeux, M., Rouault-Rogez, H. and Willemin, P., Scripta Metall., 21, 507 (1987).Google Scholar
3. Garmong, G., Paton, N.E. and Argon, A.S., Met. Trans. A, 6A, 1269 (1975).Google Scholar
4. Rouault-Rogez, H., Doctorate Thesis, Institut National Polytechnique de Grenoble (France), in the press (1987).Google Scholar
5. Gittus, J., Creep, Viscoelasticity and Creep Fracture in Solids, (Applied Science Publishers, London, 1975), pp 278279.Google Scholar
6. Flinn, P.A., Trans AIME, 218, 145 (1960).Google Scholar
7. Shah, D.M., Scripta Metall., 17, 997 (1983).Google Scholar
8. Eustathopoulos, N., Joud, J.C., Desré, P., J. Chim. Phys., 1, 42 (1973).Google Scholar
9. Bfckle, H., La Recherche Aéronautique, 12, 45, (1949), and 16, 61, (1950).Google Scholar
10. Hansen, M., Constitution of binary alloys, (McGraw-Hill, New York, 1958).Google Scholar
11. Adda, Y., Philibert, J., La diffusion dans les solides, I.N.S.T.N. (Presses Universitaires de France, Paris, 1966).Google Scholar
12. Jost, W., Diffusion in Solids, Liquids and Gases (Academic Press, 1960).Google Scholar
13. Blavette, D., Bostel, A., Acta Metall., 32, 811 (1984).Google Scholar
14. Hopgood, A.A., Martin, J.W., Mat. Sc. Eng., 82, 27 (1986).Google Scholar
15. Lasalmonie, A., Strudel, J.L., Phil. Mag., 322, 937 (1975).Google Scholar
16. Brooks, H., Metal Interfaces (American Society for Metals)p 20.Google Scholar
17. Mishima, Y., Ochiai, S., Suzuki, T., Acta Metall., 33, 1161(1985).CrossRefGoogle Scholar