Modeling displacive–diffusional coupled dislocation shearing of c0 precipitates in Ni-base superalloys
نویسندگان
چکیده
In Ni-base superalloys, superlattice extrinsic stacking fault (SESF) shearing of c0 precipitates involves coupled dislocation glide and atomic diffusion. A phase-field model is developed to study this process, in which the free energy of the system is formulated as a function of both displacement and long-range order parameter. The free energy surface is fitted to various fault energy data obtained from experiments and ab initio calculations. Three-dimensional simulations at experimentally relevant length scales are carried out to investigate systematically the influence of microstructural features on the critical resolved shear stress. The simulations reveal that the critical resolved shear stress for SESF shearing is determined not only by the SESF energy itself, but also by the complex stacking fault energy and by the shape (interface curvature) and spacing of c0 precipitates. The effect of reordering kinetics (i.e. temperature effect) is also investigated. It is found that viscous deformation can only occur within certain domain of intermediate temperatures. 2011 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
منابع مشابه
Microtwinning and other shearing mechanisms at intermediate temperatures in Ni-based superalloys
0079-6425/$ see front matter 2009 Elsevier Lt doi:10.1016/j.pmatsci.2009.03.010 * Corresponding author. E-mail address: [email protected] (L. Kovarik). In Ni-based superalloys, microtwinning is observed as an important deformation mechanism at intermediate temperature and low stress and strain rate conditions. Current knowledge concerning this unusual deformation mode is comprehensively reviewe...
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