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Phase-field modeling of multivariant martensitic transformation at finite-strain: Computational aspects and large-scale finite-element simulations

机译:有限菌株多变量马氏体变换的相现场建模:计算方面和大规模有限元模拟

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Large-scale 3D martensitic microstructure evolution problems are studied using a finite-element discretization of a finite-strain phase-field model. The model admits an arbitrary crystallography of transformation and arbitrary elastic anisotropy of the phases, and incorporates Hencky-type elasticity, a penalty-regularized double-obstacle potential, and viscous dissipation. The finite-element discretization of the model is performed in Firedrake and relies on the PETSc solver library. The large systems of linear equations arising are efficiently solved using GMRES and a geometric multigrid preconditioner with a carefully chosen relaxation. The modeling capabilities are illustrated through a 3D simulation of the microstructure evolution in a pseudoelastic CuAlNi single crystal during nano-indentation, with all six orthorhombic martensite variants taken into account. Robustness and a good parallel scaling performance have been demonstrated, with the problem size reaching 150 million degrees of freedom. (C) 2021 Elsevier B.V. All rights reserved.
机译:使用有限菌株相场模型的有限元离散化研究了大规模的3D马氏体微观结构演化问题。该模型承认转化的任意晶体学和阶段的任意弹性各向异性,并包含Hencky型弹性,罚款正则化的双障碍电位和粘性耗散。模型的有限元离散化在Firedare中执行并依赖于PETSC求解器库。产生的大型线性方程系统使用GMRES和几何多重脚轮预处理器有效地解决了具有精心挑选的放松。通过在纳米压痕期间伪弹性Cualni单晶的微观结构演化的3D模拟来说明建模能力,考虑所有六种正交马氏体的六个正畸马氏体变体。已经证明了稳健性和良好的并行缩放性能,问题规模达到了1.5亿度的自由度。 (c)2021 Elsevier B.v.保留所有权利。

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