Interdiffusion in hypothetical ternary single-phase and two-phase diffusion couples are examined using a phase-field model by numerically solving the nonlinear Cahn-Hilliard and Ginzburg-Landau equations. For diffusion couples assembled with a regular single-phase solution, constant chemical mobilities were used to examine the development of concentration profiles including uphill diffusion and zero-flux plane. Zero-flux plane for a component was observed to develop for a diffusion couple at the composition that corresponds to the activity of that component in one of the terminal alloys. Experimental thermodynamic parameters and composition-dependent chemical mobilities were used to examine the morphological evolution of the interphase boun...
The diffusion couple technique is a valuable experimental approach in studying phase relations in mu...
Interdiffusion induced microstructure evolution in binary multi-phase alloys was investigated using ...
The diffuse-interface phase-field model is a powerful method to simulate and predict mesoscale micro...
Interdiffusion in hypothetical ternary single-phase and two-phase diffusion couples are examined usi...
Evolution of interdiffusion microstructures was examined in ternary Ni-Cr-Al solid-to-solid diffusio...
Evolution of interdiffusion microstructures was examined for binary Ni-Al solid-to-solid diffusion c...
Evolution of interdiffusion microstructures was examined for binary Ni-Al solid-to-solid diffusion c...
A physico-chemical approach is developed, which can be used in binary diffusion couples to determine...
In order to illustrate the physical meaning of the four independent interdiffusion coefficients whic...
A general treatment of a diffusion-controlled growth of a stoichiometric intermetallic in reaction b...
Several two-phase, solid-solid diffusion couples from diffusion studies in the ternary Cu-Ni-Zn, Fe-...
A general treatment of a diffusion-controlled growth of a stoichiometric intermetallic in reaction b...
The initial goal of this research program was to model and to simulate phase transformations in syst...
A phase field model was developed and employed to simulate the interdiffusion microstructure evoluti...
A phase field model was developed and employed to simulate the interdiffusion microstructure evoluti...
The diffusion couple technique is a valuable experimental approach in studying phase relations in mu...
Interdiffusion induced microstructure evolution in binary multi-phase alloys was investigated using ...
The diffuse-interface phase-field model is a powerful method to simulate and predict mesoscale micro...
Interdiffusion in hypothetical ternary single-phase and two-phase diffusion couples are examined usi...
Evolution of interdiffusion microstructures was examined in ternary Ni-Cr-Al solid-to-solid diffusio...
Evolution of interdiffusion microstructures was examined for binary Ni-Al solid-to-solid diffusion c...
Evolution of interdiffusion microstructures was examined for binary Ni-Al solid-to-solid diffusion c...
A physico-chemical approach is developed, which can be used in binary diffusion couples to determine...
In order to illustrate the physical meaning of the four independent interdiffusion coefficients whic...
A general treatment of a diffusion-controlled growth of a stoichiometric intermetallic in reaction b...
Several two-phase, solid-solid diffusion couples from diffusion studies in the ternary Cu-Ni-Zn, Fe-...
A general treatment of a diffusion-controlled growth of a stoichiometric intermetallic in reaction b...
The initial goal of this research program was to model and to simulate phase transformations in syst...
A phase field model was developed and employed to simulate the interdiffusion microstructure evoluti...
A phase field model was developed and employed to simulate the interdiffusion microstructure evoluti...
The diffusion couple technique is a valuable experimental approach in studying phase relations in mu...
Interdiffusion induced microstructure evolution in binary multi-phase alloys was investigated using ...
The diffuse-interface phase-field model is a powerful method to simulate and predict mesoscale micro...