The coarsening of secondary dendrite arms is discussed in terms of two different driving forces, which are the curvature effect and the temperature gradient zone melting (TGZM) effect. It is shown that the driving force due the TGZM effect can be higher than that due to the curvature effect at high temperature gradients and equal to each other at medium temperature gradients. For such high and medium temperature gradients, simple analytical models are proposed to predict the coarsening kinetics of secondary arms during solidification in a binary alloy. The prediction of the present analytical model agrees with experimental data obtained from the solidification of Fe - 1.6 wt.% Mn - 0.75 wt. % C steel
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformati...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
In-situ isothermal coarsening experiments have been carried out by high-resolution tomography on a d...
The coarsening of secondary dendrite arms is discussed in terms of two different driving forces, whi...
Coarsening of secondary dendrite arms in binary and multi-component alloys has been investigated the...
Approximate but simple expressions for the rate of isothermal coarsening of secondary dendrite arms ...
A pure macroscopic two-dimensional numerical model has been developed, capable of capturing the effe...
Mechanical property of cast metals is strongly dependent on solidification structure, in particular ...
A simple analytical model of microsegregation for the solidification of multicomponent steel alloys ...
In this study, simple analytical microsegregation models for constant cooling and parabolic growth a...
Chapter I contains a summary of solidification theory, including theories of the interface...
A set of experimental data of Dendritic Arm Spacing evolution during solidification fo ASTM F75 Allo...
Chapter I contains a summary of solidification theory, including theories of the interface...
A two-dimensional quantitative cellular automaton (CA) model is employed to simulate dendrite arm fr...
In this study, two semi-analytical models of microsegregation were developed to predict the concentr...
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformati...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
In-situ isothermal coarsening experiments have been carried out by high-resolution tomography on a d...
The coarsening of secondary dendrite arms is discussed in terms of two different driving forces, whi...
Coarsening of secondary dendrite arms in binary and multi-component alloys has been investigated the...
Approximate but simple expressions for the rate of isothermal coarsening of secondary dendrite arms ...
A pure macroscopic two-dimensional numerical model has been developed, capable of capturing the effe...
Mechanical property of cast metals is strongly dependent on solidification structure, in particular ...
A simple analytical model of microsegregation for the solidification of multicomponent steel alloys ...
In this study, simple analytical microsegregation models for constant cooling and parabolic growth a...
Chapter I contains a summary of solidification theory, including theories of the interface...
A set of experimental data of Dendritic Arm Spacing evolution during solidification fo ASTM F75 Allo...
Chapter I contains a summary of solidification theory, including theories of the interface...
A two-dimensional quantitative cellular automaton (CA) model is employed to simulate dendrite arm fr...
In this study, two semi-analytical models of microsegregation were developed to predict the concentr...
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformati...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
In-situ isothermal coarsening experiments have been carried out by high-resolution tomography on a d...