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A Sharp-Interface Phase Field Method
Alphonse Finel,Yasunori Yamada,Yann Le Bouar,Benoît Dabas,Benoît Appolaire,Tetsuo Mohri +5 more
- 15 Mar 2018
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TL;DR: In this article, the interfaces are resolved with essentially one grid point with no pinning on the grid and an accurate rotational invariance, improving drastically the numerical capabilities of the method.
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Abstract: Phase field modelling offers an extremely general framework to predict microstructural evolutions in complex systems. However, its computational implementation requires a discretisation scheme with a grid spacing small enough to preserve the continuous character of the theory. We present here a new formulation, which is intrinsically discrete, in which the interfaces are resolved with essentially one grid point with no pinning on the grid and an accurate rotational invariance, improving drastically the numerical capabilities of the method. We show that interfacial kinetic properties are reproduced with a high accuracy. Finally, we apply the model to a situation where conserved and non-conserved fields are coupled.
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Citations
Instabilities in the periodic arrangement of elastically interacting precipitates in nickel-base superalloys
TL;DR: In this paper, the authors use a stability analysis and 3D phase field simulations to show that a regular array of precipitates organized on a simple cubic macro-lattice is in fact unstable.
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