A 2D Front-Tracking Lagrangian Model for the Modeling of Anisotropic Grain Growth

Author:

Florez SebastianORCID,Fausty JulienORCID,Alvarado KarenORCID,Murgas BrayanORCID,Bernacki MarcORCID

Abstract

Grain growth is a well-known and complex phenomenon occurring during annealing of all polycrystalline materials. Its numerical modeling is a complex task when anisotropy sources such as grain orientation and grain boundary inclination have to be taken into account. This article presents the application of a front-tracking methodology to the context of anisotropic grain boundary motion at the mesoscopic scale. The new formulation of boundary migration can take into account any source of anisotropy both at grain boundaries as well as at multiple junctions (MJs) (intersection point of three or more grain boundaries). Special attention is given to the decomposition of high-order MJs for which an algorithm is proposed based on local grain boundary energy minimisation. Numerical tests are provided using highly heterogeneous configurations, and comparisons with a recently developed Finite-Element Level-Set (FE-LS) approach are given. Finally, the computational performance of the model will be studied comparing the CPU-times obtained with the same model but in an isotropic context.

Funder

Agence Nationale de la Recherche

Publisher

MDPI AG

Subject

General Materials Science

Reference34 articles.

1. The Structure and Energy of Grain Boundaries

2. Grain boundary engineering: historical perspective and future prospects

3. A new level set-finite element formulation for anisotropic grain boundary migration;Fausty;arXiv,2020

4. Comparative study and limits of different level-set formulations for the modeling of anisotropic grain growth;Murgas;arXiv,2021

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