Stabilized semi-implicit time stepping can run AM phase-field grain growth simulations with two-orders-of-magnitude larger time steps than explicit Euler while maintaining a modified discrete energy stability.
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An efficient and energy stable framework for phase field simulations of grain growth in additive manufacturing
Stabilized semi-implicit time stepping can run AM phase-field grain growth simulations with two-orders-of-magnitude larger time steps than explicit Euler while maintaining a modified discrete energy stability.