Brahme, A. P., Inal, K., Mishra, R. K., & Saimoto, S. (2011). A new strain hardening model for rate-dependent crystal plasticity Computational Materials Science, 50, 2898-2908.
References
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Brahme, A. P., Inal, K., Mishra, R. K., & Saimoto, S. (2011). The backstress effect of evolving deformation boundaries in FCC polycrystals International Journal of Plasticity, 27, 1252-1266.
Dasappa, P., Inal, K., & Mishra, R. (2010). Simulations of forming limit diagrams for the aluminum sheet alloy 5754CC AIP Conference Proceedings, 1252, 972-980. American Institute of Physics.
Rossiter, J., Brahme, A., Simha, M., Inal, K., & Mishra, R. (2010). A new crystal plasticity scheme for explicit time integration codes to simulate deformation in 3D microstructures: Effects of strain path, strain rate and thermal softening on localized deformation in the aluminum alloy 5754 during simple shear International Journal of Plasticity, 26, 1702-1725.
Izadbakhsh, A., Inal, K., & Mishra, R. K. (2010). Numerical formability assessment in single crystals of magnesium Computational Materials Science, 50, 571-585.
Lévesque, J., Inal, K., Neale, K. W., & Mishra, R. (2010). Numerical modeling of formability of extruded magnesium alloy tubes International Journal of Plasticity, 26, 65-83.
Rossiter, J., Inal, K., & Mishra, R. (2010). Numerical modeling of failure in magnesium alloys during crush simulations Minerals, Metals and Materials Society/AIME, 420 Commonwealth Dr., P. O. Box …
Inal, K., Mishra, R. K., & Cazacu, O. (2010). Forming simulation of aluminum sheets using an anisotropic yield function coupled with crystal plasticity theory International Journal of Solids and Structures, 47, 2223-2233.
Simha, C., Inal, K., & Worswick, M. J. (2008). Orientation and path dependence of formability in the stress-and the extended stress-based forming limit curves Journal of Engineering Materials and Technology, 130.
Inal, K., & Mishra, R. K. (2008). Multiscale Modeling of Large Strain Phenomena in Polycrystalline Metals Multiscale Modeling of Heterogenous Materials: From Microstructure to Macro-Scale Properties, 37-54.