Diana Farkas
Affiliations: | Materials Science & Engineering | Virginia Polytechnic Institute and State University, Blacksburg, VA, United States |
Area:
Materials Science EngineeringGoogle:
"Diana Farkas"Children
Sign in to add traineeBrian Hyde | grad student | 2004 | Virginia Tech |
Joshua D. Monk | grad student | 2007 | Virginia Tech |
Arun K. Nair | grad student | 2008 | Virginia Tech |
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Publications
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Pasianot R, Farkas D. (2020) Atomistic modeling of dislocations in a random quinary high-entropy alloy Computational Materials Science. 173: 109366 |
Beets N, Stuckner J, Murayama M, et al. (2020) Fracture in nanoporous gold: An integrated computational and experimental study Acta Materialia. 185: 257-270 |
Farkas D. (2020) Grain boundary structure in high-entropy alloys Journal of Materials Science. 55: 9173-9183 |
Kuhr B, Farkas D. (2019) Dislocation content in random high angle grain boundaries Modelling and Simulation in Materials Science and Engineering. 27: 045005 |
Bertolino G, Ruda M, Farkas D. (2019) Fracture resistance of textured polycrystalline Zr: A simulation study Computational Materials Science. 162: 304-313 |
Beets N, Cui Y, Farkas D, et al. (2019) Mechanical response of a bicontinuous copper–molybdenum nano-composite: Experiments and simulations Acta Materialia. 178: 79-89 |
Johnson D, Kuhr B, Farkas D, et al. (2019) Quantitative linkage between the stress at dislocation channel – Grain boundary interaction sites and irradiation assisted stress corrosion crack initiation Acta Materialia. 170: 166-175 |
Beets N, Farkas D, Corcoran S. (2019) Deformation mechanisms and scaling relations in the mechanical response of nano-porous Au Acta Materialia. 165: 626-637 |
Kuhr B, Farkas D, Robertson IM, et al. (2019) Stress Localization Resulting from Grain Boundary Dislocation Interactions in Relaxed and Defective Grain Boundaries Metallurgical and Materials Transactions A. 51: 667-683 |
Zhang Z, Ódor É, Farkas D, et al. (2019) Dislocations in Grain Boundary Regions: The Origin of Heterogeneous Microstrains in Nanocrystalline Materials Metallurgical and Materials Transactions A. 51: 513-530 |