A multi-phase field method using finite interface dissipation model proposed by Steinbach et al. is applied to simulate solidification microstructure evolution of stainless steel composition in the non-equilibrium condition of high cooling rate and temperature gradient of additive manufacturing. The calculation is performed for quinary system in order to simulate solidification of engineering composition. Thermodynamic calculation using CALPHAD database in this multi-phase field method calculation is replaced by machine learning prediction procedure to reduce calculation time. The microstructure evaluated by using machine learning parameter is good agreement with one directly coupled with CALPHAD database. This calculation is approxim...
peer reviewedexplanation of the framework defined in our team to model LPBF (SLM) proces
This paper shows how to move from a specification of free energy for the solidification of a binary ...
Fusion-based additive manufacturing of metal is particularly challenging to simulate due to the broa...
The multi-phase field method (MPFM) coupled with the database of calculation of phase diagrams (CAL...
peer reviewedDuring a Selective Laser Melting (SLM) process, applied thermal cycles and solidificati...
The multi-phase field method coupled with the thermodynamics database of calculation of phase diagra...
We employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and paralle...
The present work aims at refining existing models in SOLID® by developing capabilities for improved ...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
We give an overview of contributions made to the computational phase-field modelling of alloy solidi...
peer reviewedIn the last decade, machine learning is increasingly attracting researchers in several ...
The coupling of computational thermodynamics and kinetics has been the central research theme in Int...
AbstractWe present a method for coupling current phase field models of alloy solidification into gen...
We present a method for coupling current phase field models of alloy solidification into general con...
In order to simulate microstructure evolution during a solidification process, the Kobayashi model w...
peer reviewedexplanation of the framework defined in our team to model LPBF (SLM) proces
This paper shows how to move from a specification of free energy for the solidification of a binary ...
Fusion-based additive manufacturing of metal is particularly challenging to simulate due to the broa...
The multi-phase field method (MPFM) coupled with the database of calculation of phase diagrams (CAL...
peer reviewedDuring a Selective Laser Melting (SLM) process, applied thermal cycles and solidificati...
The multi-phase field method coupled with the thermodynamics database of calculation of phase diagra...
We employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and paralle...
The present work aims at refining existing models in SOLID® by developing capabilities for improved ...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
We give an overview of contributions made to the computational phase-field modelling of alloy solidi...
peer reviewedIn the last decade, machine learning is increasingly attracting researchers in several ...
The coupling of computational thermodynamics and kinetics has been the central research theme in Int...
AbstractWe present a method for coupling current phase field models of alloy solidification into gen...
We present a method for coupling current phase field models of alloy solidification into general con...
In order to simulate microstructure evolution during a solidification process, the Kobayashi model w...
peer reviewedexplanation of the framework defined in our team to model LPBF (SLM) proces
This paper shows how to move from a specification of free energy for the solidification of a binary ...
Fusion-based additive manufacturing of metal is particularly challenging to simulate due to the broa...