The dendritic growth of pure materials in undercooled melts is critical to understanding the fundamentals of solidification. This work investigates two new insights, the first is an advanced definition for the two-dimensional stability criterion of dendritic growth and the second is the viability of the enthalpy method as a numerical model. In both cases, the aim is to accurately predict dendritic growth behavior over a wide range of undercooling. An adaptive cell size method is introduced into the enthalpy method to mitigate against `narrow-band features' that can introduce significant error. By using this technique an excellent agreement is found between the enthalpy method and the analytic theory for solidification of pure nickel
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...
Morphology and size of dendritic microstructures sensitively depend on the solidification conditions...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
International audienceThe dendritic growth of pure materials in undercooled melts is critical to und...
The kinetics of dendritic solidification in a ternary Ni98Zr1Al1 alloy is investigated experimentall...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
A stable growth mode of a single dendritic crystal solidifying in an undercooled ternary (multicompo...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Growth of dendritic crystals in undercooled Ni-Zr samples is studied by experimental, analytical an...
We are interested in modelling the dendritic growth occurring during the ...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
During rapid solidification of undercooled melts deviations from local equilibrium occur at the soli...
Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to...
Melt flow is often quoted as the reason for a discrepancy between experiment and theory on dendritic...
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...
Morphology and size of dendritic microstructures sensitively depend on the solidification conditions...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
International audienceThe dendritic growth of pure materials in undercooled melts is critical to und...
The kinetics of dendritic solidification in a ternary Ni98Zr1Al1 alloy is investigated experimentall...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
A stable growth mode of a single dendritic crystal solidifying in an undercooled ternary (multicompo...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Growth of dendritic crystals in undercooled Ni-Zr samples is studied by experimental, analytical an...
We are interested in modelling the dendritic growth occurring during the ...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
During rapid solidification of undercooled melts deviations from local equilibrium occur at the soli...
Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to...
Melt flow is often quoted as the reason for a discrepancy between experiment and theory on dendritic...
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...
Morphology and size of dendritic microstructures sensitively depend on the solidification conditions...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...