Creep behavior of an aligned Ag3Mg-AgMg eutectic

Author:

Kim Y. G.,Stoloff N. S.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference26 articles.

1. H. Bibring:Proc. Conf. on In Situ Composites, Lakeville, Conn., vol. II, p. 1, National Academy of Science-National Academy of Engineering, Washington, D.C., 1973.

2. F. D. Lemkey and E. R. Thompson:Proc. Conf. on In Situ Composites, Lakeville, Conn., vol. II, p. 105, National Academy of Engineering, Washington, D.C., 1973.

3. M. F. Henry:Proc. Conf. on In Situ Composites, Lakeville, Conn., p. 173, National Academy of Sciences-National Academy of Engineering, Washington, D.C., 1973.

4. B. J. Shaw:Acta Met, 1967, vol. 15, p. 1169.

5. E. R. Thompson, F. D. George, and E. M. Breinan:Proc. Conf. on In Situ Composites, Lakeville, Conn., vol. II, p. 71, National Academy of Sciences-National Academy of Engineering, Washington, D.C., 1973.

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1. Microstructure, strength and creep of aluminium-nickel open cell foam;Philosophical Magazine;2009-05

2. Creep regimes for directionally solidified Al-Al3Ni eutectic composite;Metallurgical and Materials Transactions A;1993-12

3. Creep of Al-(Rich)-Ni Eutectic;Canadian Metallurgical Quarterly;1984-10

4. Creep of the lamellar AlCuAl2 Composite. II. Stress and Temperature dependence;Physica Status Solidi (a);1979-02-16

5. High temperature deformation of the Pb-Sn eutectic;Acta Metallurgica;1977-01

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