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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Stochastic modeling of discontinuous dynamic recrystallization at finite strains in hcp metals
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Stochastic modeling of discontinuous dynamic recrystallization at finite strains in hcp metals

机译:hcp金属中有限应变下的不连续动态再结晶的随机模型

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We present a model that aims to describe the effective, macroscale material response as well as the underlying mesoscale processes during discontinuous dynamic recrystallization under severe plastic deformation. Broadly, the model brings together two well-established but distinct approaches - first, a continuum crystal plasticity and twinning approach to describe complex deformation in the various grains, and second, a discrete Monte-Carlo-Potts approach to describe grain boundary migration and nucleation. The model is implemented within a finite-strain Fast Fourier Transform-based framework that allows for efficient simulations of recrystallization at high spatial resolution, while the grid-based Fourier treatment lends itself naturally to the Monte-Carlo approach. The model is applied to pure magnesium as a representative hexagonal closed packed metal, but is sufficiently general to admit extension to other material systems. Results demonstrate the evolution of the grain architecture in representative volume elements and the associated stress-strain history during the severe simple shear deformation typical of equal channel angular extrusion. We confirm that the recrystallization kinetics converge with increasing grid resolution and that the resulting model captures the experimentally observed transition from single-to multi-peak stress-strain behavior as a function of temperature and rate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们提出了一个模型,旨在描述严重塑性变形下不连续动态再结晶过程中有效的宏观材料响应以及潜在的中尺度过程。从广义上讲,该模型汇集了两种公认的但截然不同的方法:首先,连续晶体结晶和孪晶方法描述了各种晶粒中的复杂变形,其次,离散蒙特卡洛-珀茨方法描述了晶界迁移和成核。该模型是在基于有限应变快速傅立叶变换的框架内实现的,该框架允许在高空间分辨率下对重结晶进行有效的仿真,而基于网格的傅立叶处理自然适合于蒙特卡洛方法。该模型适用于纯镁,作为代表性的六角形密堆积金属,但具有足够的通用性,可以扩展到其他材料系统。结果表明,在等通道角挤压典型的严重的简单剪切变形过程中,代表性体积元素中晶粒结构的演变以及相关的应力-应变历史。我们确认,重结晶动力学随着网格分辨率的提高而收敛,并且所得模型捕获了实验观察到的从单峰到多峰应力应变行为随温度和速率变化的过渡。 (C)2018 Elsevier Ltd.保留所有权利。

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