Creep Damage Mechanisms in Structural Ceramics

Author:

Wilkinson D. S.

Publisher

Springer US

Reference40 articles.

1. Argon, A. S., Chen, I.-W. and Lau, C. W., 1980, Intergranular cavitation in creep: theory and experiments, in Creep-Fatigue-Interactions, eds. R. M. Pelloux and N. S. Stoloff, The Metallurgiacal Society of AIME, pp. 46–85.

2. Ashby, M. F., Gandhi, C., and Taplin, D. M. R., 1979, Overview no. 3, Fracture mechanism maps and their construction for f.c.c. metals and alloys, Acta Metall., 27, 699–729.

3. Carroll, D. F. and Tressler, R. E., 1985, Time-dependent strength of siliconized silicon carbide under stress at 1000°C and 1100°C, J. Amer. Ceram. Soc. 68, 143–46.

4. Carroll, D. F. and Tressler, R. E., 1987, Time dependent mechanical behaviour of silicon carbide ceramics at elevated temperatures, in High Tech Ceramics, ed P. Vincenzini, Elsevier, Amsterdam, 1335–44.

5. Carroll, D. F., R. E. Tressler, R. E., Tsai, Y. and Near, C., 1986, High temperature mechanical properties of siliconized silicon carbide composites, in Tailoring Multiphase and Composite Ceramics, eds. R. E. Tressler, G. L. Messing, C. G. Pantano and R. E. Newnham, Plenum, 775–88.

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1. Cavitational Strain Contribution to Tensile Creep in Vitreous Bonded Ceramics;Journal of the American Ceramic Society;2005-01-21

2. Long-Term Creep Damage Development in a Self-Reinforced Silicon Nitride;Engineering Ceramics ’96: Higher Reliability through Processing;1997

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