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Finite element model of primary recrystallization in polycrystalline aggregates using a level set framework

机译:使用水平集框架的多晶团聚体初次再结晶的有限元模型

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The paper describes a robust finite element model of interface motion in media with multiple domains and junctions, as is the case in polycrystalline materials. The adopted level set framework describes each domain (grain) with a single level set function, while avoiding the creation of overlap or vacuum between these domains. The finite element mesh provides information on stored energies, calculated from a previous deformation step. Nucleation and growth of new grains are modelled by inserting additional level set functions around chosen nodes of the mesh. The kinetics and topological evolutions induced by primary recrystallization are discussed from simple test cases to more complex configurations and compared with the Johnson-Mehl-Avrami Kolmogorov theory.
机译:该论文描述了一种具有多畴和结的介质中界面运动的鲁棒有限元模型,多晶材料就是这种情况。采用的级别集框架使用单个级别集功能描述每个域(晶粒),同时避免在这些域之间创建重叠或真空。有限元网格提供有关存储能量的信息,该信息是根据先前的变形步骤计算得出的。通过在网格的选定节点周围插入其他级别集函数,可以对新晶粒的成核和生长进行建模。从简单的测试案例到更复杂的配置,都讨论了一次重结晶引起的动力学和拓扑演化,并与Johnson-Mehl-Avrami Kolmogorov理论进行了比较。

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