Publications

Found 20 results
Author Title [ Type(Desc)] Year
Filters: Author is Hunter, Abigail  [Clear All Filters]
Journal Article
Szajewski, Benjamin Alexander, Abigail Hunter, Darby Jon Luscher, and Irene Jane Beyerlein. "An Analytical Model for the Effect of Elastic Anisotropy on the Core Structure of Dislocations in FCC Materials." Modelling and Simulation in Materials Science and Engineering 26 (2018).
Albrecht, Claire, Anil Kumar, Shuozhi Xu, Abigail Hunter, and Irene J. Beyerlein. "Asymmetric equilibrium core structures of pyramidal-II $\ensuremath\langlec+a\ensuremathångle$ dislocations in ten hexagonal-close-packed metals." Phys. Rev. Mater. 5 (2021): 043602.
Szajewski, B. A., A. Hunter, and I. J. Beyerlein. "The core structure and recombination energy of a copper screw dislocation: a Peierls study." Philosophical Magazine 97 (2017): 2143-2163.
A. Hunter, R.F. Zhang, and I.J. Beyerlein. "The core structure of dislocations and their relationship to the material γ-surface." Journal of Applied Physics 115 (2014): 134314.
A. Hunter, R.F. Zhang, I.J. Beyerlein, T.C. Germann, and M. Koslowski. "Dependence of equilibrium stacking fault width in fcc metals on the γ-surface." Modelling and Simulation in Materials Science and Engineering 21 (2013): 025015.
A. Hunter, I.J. Beyerlein, T.C. Germann, and M. Koslowski. "Influence of the stacking fault energy surface on partial dislocations in fcc metals with a three-dimensional phase field dislocations dynamics model." Physical Review B 84 (2011): 144108.
I.J. Beyerlein, J.S. Carpenter, A. Hunter, L.S. Tóth, and W. Skrotzki. "Nano-enabled orientation alignment via extreme shear strains." Scripta Materialia 98 (2015): 52-55.
Y. Zeng, A. Hunter, I.J. Beyerlein, and M. Koslowski. "A phase field dislocation dynamics model for a bicrystal interface system: An investigation into dislocation slip transmission across cube-on-cube interfaces." International Journal of Plasticity 79 (2016): 293-313.
Albrecht, C., A. Hunter, A. Kumar, and I.J. Beyerlein. "A phase field model for dislocations in hexagonal close packed crystals." Journal of the Mechanics and Physics of Solids 137 (2020): 103823.
Kim, Hyojung, Alexandra Zimmerman, Irene J. Beyerlein, and Abigail Hunter. "Phase field modeling of dislocations and obstacles in InSb." Journal of Applied Physics 132 (2022): 025702.
Fey, Lauren T. W., Abigail Hunter, and Irene J. Beyerlein. "Phase-field dislocation modeling of cross-slip." Journal of Materials Science 57 (2022): 10585-10599.
A. Hunter, and I.J. Beyerlein. "Predictions of an alternative pathway for grain-boundary driven twinning." Applied Physics Letters 104 (2014): 233112.
A. Hunter, and I.J. Beyerlein. "Relationship between monolayer stacking faults and twins in nanocrystals." Acta Materialia 88 (2015): 207-217.
Hunter, Abigail, Brandon Leu, and Irene J. Beyerlein. "A review of slip transfer: applications of mesoscale techniques." Journal of Materials Science 53 (2018): 5584-5603.
L. Cao, A. Hunter, I.J. Beyerlein, and M. Koslowski. "The role of partial mediated slip during quasi-static deformation of 3D nanocrystalline metals." Journal of the Mechanics and Physics of Solids 78 (2015): 415-426.
A. Hunter, and I.J. Beyerlein. "Stacking fault emission from grain boundaries: Material dependencies and grain size effects." Materials Science and Engineering A 600C (2014): 200-210.
J.R. Mianroodi, A. Hunter, I.J. Beyerlein, and B. Svendsen. "Theoretical and computational comparison of models for dislocation dissociation, stacking fault and core formation, in fcc systems." Journal of the Mechanics and Physics of Solids 95 (2016): 719-741.
Fey, Lauren T. W., Shuozhi Xu, Yanqing Su, Abigail Hunter, and Irene J. Beyerlein. "Transitions in the morphology and critical stresses of gliding dislocations in multiprincipal element alloys." Phys. Rev. Mater. 6 (2022): 013605.
I.J. Beyerlein, and A. Hunter. "Understanding dislocation mechanics at the mesoscale using phase field dislocation dynamics." Philosophical Transactions Royal Society A 374 (2016): 20150166.
A. Hunter, and I.J. Beyerlein. "Unprecedented grain size effect on stacking fault width." Applied Physics Letters Materials 1 (2013): 032109.