首页> 外文会议>International Conference on Recrystallization and Grain Growth(ReX amp; GG III); 20070610-15; Jeju Island(KR) >Numerical modelling of plastic deformation and subsequent recrystallization in polycrystalline materials, based on a Digital Material framework
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Numerical modelling of plastic deformation and subsequent recrystallization in polycrystalline materials, based on a Digital Material framework

机译:基于数字材料框架的多晶材料塑性变形和随后再结晶的数值模型

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The development of a digital material framework is presented, allowing to build virtual microstructures in agreement with experimental data. The construction of the virtual material consists in building a multi-level Voronoie tessellation. A polycrystalline microstructure made of grains and sub-grains can be obtained in a random or deterministic way. A corresponding finite element mesh can be generated automatically in 3D, and used for the simulation of mechanical testing under large strain. In the examples shown in this work, the initial mesh was non uniform and anisotropic, taking into account the presence of interfaces between grains and sub-grains. Automatic remeshing was performed due to the large strains, and maintained the non uniform and anisotropic character of the mesh. A level set approach was used to follow the grain boundaries during the deformation. The grain constitutive law was either a viscoplastic power law, or a crystallographic formulation based on crystal plasticity. Stored energies and precise grain boundary network geometries were obtained directly from the deformed digital sample. This information was used for subsequent modelling of grain growth with the level set approach, on the same mesh.
机译:提出了数字材料框架的开发,该框架允许建立与实验数据一致的虚拟微结构。虚拟材料的构建包括构建多层Voronoie细分。可以通过随机或确定性方式获得由晶粒和亚晶粒组成的多晶微观结构。可以在3D中自动生成相应的有限元网格,并将其用于模拟大应变下的机械测试。在这项工作所示的示例中,考虑到晶粒和亚晶粒之间存在界面,初始网格是不均匀且各向异性的。由于应变大,因此进行了自动重新网格化,并保持了网格的不均匀和各向异性。在变形过程中,使用水平集方法来遵循晶界。晶粒本构定律可以是粘塑性幂定律,也可以是基于晶体可塑性的晶体学公式。储存的能量和精确的晶界网络几何形状直接从变形的数字样本获得。该信息用于在同一网格上使用水平集方法对晶粒生长进行后续建模。

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