Publication | Closed Access
Localized Microstructures Induced by Fluid Flow in Directional Solidification
62
Citations
11
References
2001
Year
EngineeringFluid MechanicsMechanical EngineeringMicrostructure LocalizationActive FluidSoft MatterSolidificationCrystal FormationMaterials ScienceSolid MechanicsMultiphase FlowThermomechanical ProcessingMicrostructureInterfacial PhenomenonApplied PhysicsFluid-solid InteractionAlloy PhaseAlloy CastingTransparent Alloy
The dynamical process of microstructure localization by multiscale interaction between instabilities is uncovered in directional solidification of transparent alloy. As predicted by Chen and Davis, morphological instability of the interface is observed at inward flow-stagnation regions of the cellular convective field. Depending on the driving force of fluid flow, focus-type and honeycomb-type localized patterns form in the initial transient of solidification, that then evolves with time. In the case of solute-driven flow, the analysis of the onset of thermosolutal convection in initial transient of solidification enables a complete understanding of the dynamics and of the localization of morphological instability.
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