A linear-stability analysis is performed on the interface formed during the directional solidification of a dilute binary alloy in the presence of a time-periodic flow. In general, the flow is generated by the elliptical motion of the crystal parallel to the interface. The presence of the flow can either stabilize or destabilize the system relative to the case without flow with the result depending on the frequency and amplitude of the oscillations as well as the properties of the material. In the particular, we find that the morphological instability present in the absence of flow can be entirely suppressed with respect to disturbances of the same frequency as the oscillation
The thermodynamic analysis of the morphological stability of a planar solidification front during th...
We study, for directional solidification or fusion of binary mixtures, the stability of planar front...
The morphologoical stability of the solid-liquid interface in the solidification of a dilute binary ...
A linear morphological stability of the solid-liquid interface is analyzed for a binary alloy in the...
We examine a rapidly solidifying binary alloy under directional solidification with nonequilibrium i...
In this paper, a linear analysis of dynamic stability of the directional solidification process with...
The linear perturbation analysis of morphological and thermosolutal instabilities at the growth fron...
Solidification from solutions is of great interest in several practical processes. In crystal growth...
The effects of the coupling between the morphological stability of a planar, horizontal crystal-melt...
We investigate the nonlinear evolution of the morphological deformation of a solid-liquid interface ...
Compositional fluctuations of the binary alloy result in the corresponding fluctuations of the therm...
We study the effect of the coupling between front deformation and solutal convection on the position...
We examine a rapidly solidifying binary alloy under directional solidification with nonequilibrium i...
We consider the stability of a horizontal, planar solid-melt interface during the solidification of ...
Quantitative directional solidification experiments have been carried out in transparent metal analo...
The thermodynamic analysis of the morphological stability of a planar solidification front during th...
We study, for directional solidification or fusion of binary mixtures, the stability of planar front...
The morphologoical stability of the solid-liquid interface in the solidification of a dilute binary ...
A linear morphological stability of the solid-liquid interface is analyzed for a binary alloy in the...
We examine a rapidly solidifying binary alloy under directional solidification with nonequilibrium i...
In this paper, a linear analysis of dynamic stability of the directional solidification process with...
The linear perturbation analysis of morphological and thermosolutal instabilities at the growth fron...
Solidification from solutions is of great interest in several practical processes. In crystal growth...
The effects of the coupling between the morphological stability of a planar, horizontal crystal-melt...
We investigate the nonlinear evolution of the morphological deformation of a solid-liquid interface ...
Compositional fluctuations of the binary alloy result in the corresponding fluctuations of the therm...
We study the effect of the coupling between front deformation and solutal convection on the position...
We examine a rapidly solidifying binary alloy under directional solidification with nonequilibrium i...
We consider the stability of a horizontal, planar solid-melt interface during the solidification of ...
Quantitative directional solidification experiments have been carried out in transparent metal analo...
The thermodynamic analysis of the morphological stability of a planar solidification front during th...
We study, for directional solidification or fusion of binary mixtures, the stability of planar front...
The morphologoical stability of the solid-liquid interface in the solidification of a dilute binary ...