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Strain Localization Conditions Under True Triaxial Stress States
This work uses a bifurcation approach to develop theoretical predictions for deformation band formation for a suite of true triaxial tests on Castlegate sandstone. In particular, the influence of the intermediate principal stress on strain localization is examined. Using common simplifying assumptions (localization occurs at peak stress, and the failure surface is similar to the yield surface), theoretical predictions captured the overall trends observed experimentally. However, agreement between predicted and observed band orientations for individual specimens was varied. This highlights the importance of detailed data analyses to accurately determine key material parameter values at the inception of localization.
Strain Localization Conditions Under True Triaxial Stress States
This work uses a bifurcation approach to develop theoretical predictions for deformation band formation for a suite of true triaxial tests on Castlegate sandstone. In particular, the influence of the intermediate principal stress on strain localization is examined. Using common simplifying assumptions (localization occurs at peak stress, and the failure surface is similar to the yield surface), theoretical predictions captured the overall trends observed experimentally. However, agreement between predicted and observed band orientations for individual specimens was varied. This highlights the importance of detailed data analyses to accurately determine key material parameter values at the inception of localization.
Strain Localization Conditions Under True Triaxial Stress States
Bonelli, Stéphane (editor) / Dascalu, Cristian (editor) / Nicot, François (editor) / Issen, Kathleen A. (author) / Ingraham, Mathew D. (author) / Dewers, Thomas A. (author)
2011-05-28
6 pages
Article/Chapter (Book)
Electronic Resource
English
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