Motion and morphology of triple junction during peritectic reaction process is analyzed for a model alloy system based on a quantitative-phase-field simulation for two-phase solidification involving diffusion in the solid. It is demonstrated that the dominative process controlling the motion of the reaction front gradually changes from the solid–solid transformation to the secondary solid solidification as the moving velocity of solid–solid interface decreases. On the other hand, the local shape of the triple junction is mainly determined by the balance between the interfacial energies regardless of the difference in the moving velocity of solid–solid interface
Effects of dispersion of insolvable particles on peritectic transformation kinetics in Fe–C binary a...
A simple diffusional analysis of peritectic transformat-ion based on the linearized concentrati...
We adopt a thermodynamically consistent multi-phase, multi-component phase-field model to investigat...
The pentectic reaction process in carbon steel, L + δ → γ, has been analyzed by a quantitative phase...
We discuss a simple model of the melting kinetics along the solid-solid interface in eutectic and pe...
International audienceWhile they are known for years to be the main source of equiaxed grains in met...
A phase-field model for a general class of binary three-phase metallic alloys is presented which des...
The present investigation focuses on the solidification of peritectic binary alloys in the systems F...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
Peritectic reaction process in iron-carbon system has been computer-simulated based on the diffusion...
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformati...
In this paper, we extend the multi-phase-field concept, recently developed to model pure systems inv...
AbstractThe present investigation shows quantitative results for the peritectic phase transformation...
Some experimental observations on the Al-Al3Ti and Cd-Cd3Ag peritectic systems are discussed in rela...
The peritectic reaction consists in the growth of the peritectic solid phase along the metastable in...
Effects of dispersion of insolvable particles on peritectic transformation kinetics in Fe–C binary a...
A simple diffusional analysis of peritectic transformat-ion based on the linearized concentrati...
We adopt a thermodynamically consistent multi-phase, multi-component phase-field model to investigat...
The pentectic reaction process in carbon steel, L + δ → γ, has been analyzed by a quantitative phase...
We discuss a simple model of the melting kinetics along the solid-solid interface in eutectic and pe...
International audienceWhile they are known for years to be the main source of equiaxed grains in met...
A phase-field model for a general class of binary three-phase metallic alloys is presented which des...
The present investigation focuses on the solidification of peritectic binary alloys in the systems F...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
Peritectic reaction process in iron-carbon system has been computer-simulated based on the diffusion...
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformati...
In this paper, we extend the multi-phase-field concept, recently developed to model pure systems inv...
AbstractThe present investigation shows quantitative results for the peritectic phase transformation...
Some experimental observations on the Al-Al3Ti and Cd-Cd3Ag peritectic systems are discussed in rela...
The peritectic reaction consists in the growth of the peritectic solid phase along the metastable in...
Effects of dispersion of insolvable particles on peritectic transformation kinetics in Fe–C binary a...
A simple diffusional analysis of peritectic transformat-ion based on the linearized concentrati...
We adopt a thermodynamically consistent multi-phase, multi-component phase-field model to investigat...