In this paper, intergranular cavity growth in regimes, where both surface diffusion and deformation enhanced grain boundary diffusion are important, is studied. In order to continuously simulate the cavity shape evolution and cavity growth rate, a fully-coupled numerical method is proposed. Based on the fully-coupled numerical method, a gradual cavity shape change is predicted and this leads to an adverse effect on the cavity growth rates. As the portion of the cavity volume growth due to jacking and viscoplastic deformation in the total cavity volume growth increases, the initially spherical cavity evolves to V-shaped cavity. The numerical results are physically more realistic compared to results in the previous studies. The present numerical results suggest that the cavity shape evolution and cavity growth rate based on an assumed cavity shape, whether spherical or crack-like, cannot be used in this regime due to transitional coupled growth mechanisms.
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ASME 2007 Pressure Vessels and Piping Conference
July 22–26, 2007
San Antonio, Texas, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
0-7918-4287-8
PROCEEDINGS PAPER
Numerical Analysis of the Effect of Diffusion and Creep Flow on Cavity Growth Available to Purchase
Frederick W. Brust,
Frederick W. Brust
Battelle Memorial Institute, Columbus, OH
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Joonyoung Oh
Joonyoung Oh
Samsung Electronics Company, Ltd., Korea
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Frederick W. Brust
Battelle Memorial Institute, Columbus, OH
Joonyoung Oh
Samsung Electronics Company, Ltd., Korea
Paper No:
CREEP2007-26631, pp. 143-159; 17 pages
Published Online:
August 20, 2009
Citation
Brust, FW, & Oh, J. "Numerical Analysis of the Effect of Diffusion and Creep Flow on Cavity Growth." Proceedings of the ASME 2007 Pressure Vessels and Piping Conference. Volume 9: Eighth International Conference on Creep and Fatigue at Elevated Temperatures. San Antonio, Texas, USA. July 22–26, 2007. pp. 143-159. ASME. https://doi.org/10.1115/CREEP2007-26631
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