Three-dimensional phase-field simulations show that non-planar temperature isotherm patterns significantly alter cellular spacing, mushy zone length, and microsegregation during additive-manufacturing-like solidification.
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Effects of isotherm patterns on cellular interface morphologies of melt pool origin
Three-dimensional phase-field simulations show that non-planar temperature isotherm patterns significantly alter cellular spacing, mushy zone length, and microsegregation during additive-manufacturing-like solidification.