By Grant Steven, Qing Li, Zhongpu Zhang
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H. A. Saif, Plastic Deformation Recovery in Freestanding Nanocrystalline Aluminum and Gold Thin Films. Science. 315(5820) (2007). 1831-1834. J. C. Pond, On the interaction of crystal dislocations with grain boundaries. Acta Metallurgica. 27(4) (1979). 667-682. J. M. Ghoniem, Dislocation dynamics. I. A proposed methodology for deformation micromechanics. Physical Review B. 41(10) (1990). 6958-6967. , Mesoscopic simulations of plastic deformation. Materials Science and Engineering: A. 309–310(0) (2001).
Stacking faults originating at the GB were also sometimes observed to nucleate during deformation. At the 6000fs time step, only the metastable GB in Fig. 6C exhibited this response. However, when the next 5000 time steps were reviewed, cases E, G and H were also found to nucleate stacking faults from the GB. Unusually, Fig. 6F did not exhibit the same dislocation nucleation response, despite having a relatively high initial potential energy and qualitative features which were quite similar to those in Fig.
18 (1980) 1385-1397. Applied Mechanics and Materials Vol. S. S. Machlin, Dislocation theory as applied by NACA to the creep of metals, J. Appl. , 18 (1947) 79-87. Z. I. , 88 (1991) 91-111. Q. Y. Jiang, A cyclic plasticity model for single crystals, Int. J. , 20 (2004) 2161-2178. O. J. Armstrong, A mathematical representation of the multiaxial Bauschinger effect, Mater. , 24 (2007) 11-26.  F. J. -G. F. Rauch, G. Vincze, An alternative to kinematic hardening in classical plasticity, Int. J. , 27 (2011) 1309-1327.
Advances in Computational Mechanics by Grant Steven, Qing Li, Zhongpu Zhang