NASA NTRS · 20120015591
TEMHD Effects on Solidification Under Microgravity Conditions
Abstract
An unexplored potential exists to control microstructure evolution through the use of external DC magnetic fields. Thermoelectric currents form during solidification and interact with this external field to drive microscopic fluid dynamics within the inter-dendritic region. The convective heat and mass transport can lead to profound changes on the dendritic structure. In this paper the effect of high magnetic fields is demonstrated through the use of both 3-dimensional and 2-dimensional numerical models. The results show that the application of a magnetic field causes significant disruption to the dendritic morphology. Investigation into the underlying mechanism gives initial indicators of how external magnetic fields can either lead to unexpected growth behaviour, or alternatively can be used to control the evolution of microstructure in undercooled melts as encountered in levitated droplet solidification.
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Kao, Andrew, Pericleous, Koulis. 2012-09-01. TEMHD Effects on Solidification Under Microgravity Conditions. https://ntrs.nasa.gov/citations/20120015591
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