Two-dimensional simulations of the evolution of dendrite microstructure during isothermal and non-isothermal solidifications of a Ni-0.41Cu binary alloy are carried out using the phase-field method. The governing evolution equation for the phase field variable, the solute mole fraction and the temperature are formulated and numerically solved using an explicit finite difference scheme. To make the computations tractable, parallel computing is employed. The results obtained show that under lower cooling rates, the solidification process is controlled by partitioning of the solute between the solid and the liquid at the solid/liquid interface. At high cooling rates, on the other hand, solute trapping takes place and solidification is controll...
A modelling approach is presented for the prediction of microstructure evolution during directional ...
The paper presents the cellular automaton (CA) model for tracking the development of dendritic struc...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Thanks to the recent progress in high-performance computational environ-ments, the range of applicat...
We are interested in modelling the dendritic growth occurring during the solidification process of a...
The Phase-Field method was applied to simulate the solidification of pure nickel dendrites and the r...
A modelling approach is presented for the prediction of microstructure evolution during directional ...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
A phase field model is used to numerically simulate the solidification of a pure material. We employ...
A modelling approach is presented for the prediction of microstructure evolution during directional ...
The paper presents the cellular automaton (CA) model for tracking the development of dendritic struc...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Thanks to the recent progress in high-performance computational environ-ments, the range of applicat...
We are interested in modelling the dendritic growth occurring during the solidification process of a...
The Phase-Field method was applied to simulate the solidification of pure nickel dendrites and the r...
A modelling approach is presented for the prediction of microstructure evolution during directional ...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
A phase field model is used to numerically simulate the solidification of a pure material. We employ...
A modelling approach is presented for the prediction of microstructure evolution during directional ...
The paper presents the cellular automaton (CA) model for tracking the development of dendritic struc...
A phase field model describing the solidification of a binary alloy is investigated. The location of...