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Modeling Solidification and Grain Structures in Electroslag Remelting Chris Szczepanski Advisor: Prof. Krane August 1, 2002
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Recap – Phase 1 Monte Carlo method determines solidification based on interfacial energy Monte Carlo method with temperature dependence
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Video of Isotherm MC
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Recap – Phase 2 Cellular Automaton method determines depression of the liquidus temperature based on curvature
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Δx/Δt ratio This determines the rate of solidification Large Ratio – s/l interface travels closer to liquidus isotherm Too small – solidification front can’t keep up
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Δx/Δt Ratio Cooled walls will not be able to pull heat out at as fast as melting temp isotherm moves Solid-liquid interface will close in on T m
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Results Solid-liquid interface will close in on T m
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Undercooling
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Temperature Gap
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Grain Density
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A o Studies
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Future Studies More in-depth analysis of Δx/Δt ratio Analysis of physical basis for various constants Crystallographic orientation model
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