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The orientation and temperature dependence of the energies of coherent Al f.c.c). Al3Sc(L12) interphase boundaries were studied using atomistic simulation and a low temperature expansion (LTE) of the grand potential.
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The kinetics of nucleation-and-growth phase transformations for which nucleation occurs on the parent-phase grain boundaries was studied using mesoscopic microstructure simulations.
An ion-rich sheath, i.e., a positively charged boundary, and an electron-rich sheath, i.e., a negatively charged boundary, were studied using computer simulations and laboratory experiments.
Solute distributions in the vicinity of grain boundaries in Al Zn Mg Ag) alloys were studied using a three-dimensional atom probe, in order to elucidate the mechanism of formation of precipitate free zones (PFZs) and the fundamental role of Ag in controlling PFZ width.
Two boundary conditions and two conditions of m (the ratio of the equilibrium water concentration of the two phases on the boundary face), m=1 and m≠1, were studied using the PSS and US.
Growth of a microstructurally short edge crack in the neighbourhood of a grain boundary has been studied using a dislocation technique.
Flow inside this boundary can be studied using MHD models and is a type of stagnation flow.
Free flexural vibrations of homogeneous, thin, orthotropic plates of an arbitrary shape with mixed boundary conditions are studied using the R-function method.
The atomic scale interaction of solute with a migrating grain boundary has been studied using a binary phase field crystal (PFC) model.
Symmetrically laminated cross-ply and angle-ply skew plates subject to uniaxial buckling loads and various combinations of in-plane boundary restraints are studied using a shear deformable theory.
Especially, the effects of non-zero values of micro-gyration vector on the velocity and temperature fields across the boundary layer are studied, using the method of small perturbation approximation.
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