Title of article
Phase field modeling of channel dislocation activity and γ′ rafting in single crystal Ni–Al Original Research Article
Author/Authors
N. Zhou، نويسنده , , C. Shen، نويسنده , , M.J. Mills، نويسنده , , Y. Wang، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2007
Pages
13
From page
5369
To page
5381
Abstract
Dislocation-precipitate interaction and directional coarsening (rafting) of γ′ precipitates in single crystal Ni–Al alloys under external load are investigated by three-dimensional computer simulations. The simulation technique is based on an integrated phase field model that characterizes simultaneously the spatiotemporal evolution of both precipitate microstructure and dislocations. The initial configurations consisting of cuboidal γ′ particles and dislocations in γ channels are constructed according to experimental observations and phase field simulations of the dislocation filling process in the γ channels. For a given state (sign and magnitude) of the lattice misfit and external load commensurate with experimental values, the predicted morphologies of the rafted γ′ precipitates and the rafting kinetics agree well with experimental observations. This indicates that plasticity plays a dominant role in the rafting process as compared to elastic modulus mismatch between γ and γ′ phases, which has been ignored in the present simulations. The spatial variation of chemical potential of solute atoms caused by the coupling between channel dislocations and misfit stress is evaluated from concentration and stress distributions, from which diffusion fluxes in the γ channels are analyzed.
Keywords
Directional coarsening , Creep , computer simulation , Work hardening , Ni-base superalloy
Journal title
ACTA Materialia
Serial Year
2007
Journal title
ACTA Materialia
Record number
1143219
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