Activation Energies in the Diffusional Creep of Polycrystalline Ceramics

Author:

HODGE J. D.,LESSING P. A.,GORDON R. S.

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

Reference11 articles.

1. 1R. S. Gordon; A. R. Cooper, and A. H. Heuer . pp.445 -64 inMass Transport Phenomena in Ceramics (Materials Science Research, Vol. 9). Plenum, New York, 1975 .

2. Mass Transport in the Diffusional Creep of Ionic Solids

3. 3R. T. Tremper, R. A. Giddings, J. D. Hodge, and R. S. Gordon , "Creep of Polycrystalline MgO-FeO-Fe2O3Solid Solutions ," ibid., 57 [10 ] 421 -28 (1974 ).

4. 4R. S. Gordon, P. A. Lessing, and J. D. Hodge , "Impurity Effects on the Creep of Polycrystalline Magnesium and Aluminum Oxides at Elevated Temperatures," U.S. ERDA Tech. Rept. C00-1591-29, 1975 ; 78 pp.

5. 5P. A. Lessing, R. S. Gordon; R. C. Bradt, and R. E. Tressler . pp.271 -96 inDeformation of Ceramic Materials. Plenum, New York, 1975 .

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2. Molecular dynamics study of diffusional creep in nanocrystalline UO2;Acta Materialia;2008-09

3. Creep of polycrystalline SrCo0.8Fe0.2O3−δ;Acta Materialia;2000-05

4. Theories of Creep in Ceramics;Critical Reviews in Solid State and Materials Sciences;1996-01

5. Comment on "Comparison of Diffusion Data and of Activation Energies";Journal of the American Ceramic Society;1983-11

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