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首页> 外文期刊>Acta Materialia >POLYCRYSTAL PLASTICITY MODELING OF INTRACRYSTALLINE BOUNDARY TEXTURES
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POLYCRYSTAL PLASTICITY MODELING OF INTRACRYSTALLINE BOUNDARY TEXTURES

机译:晶界线的多晶体塑性建模

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摘要

A finite element formulation is used to simulate and study the deformation response of face-cen- tered cubic polycrystals. The polycrystals consist of rhombic dodecahedral-shaped crystals, each finely dis- cretized with tetrahedral elements. Rhombic dodecahedra are twelve-sided, regular, space-filling polyhedra that are used to represent a microstructure with equiaxed grains. Material behavior is based on rate-depen- dent, crystallographic slip on a restricted number of slip systems. The numerical formulation maintains compatibility and equilibrium under the application of applied loads using an assumed-stress hybrid finite element methodology. Spatial variations in deformation arise in the polycrystal even under simple external loadings and lead to grain subdivision characterized by the formation of boundaries separating regions with differing lattice orientation. Particular attention is focused on the resulting crystallographic misorien- tation across these boundaries and their orientations relative to the applied loads. This evolving intragrain boundary texture is compared to published experimental data obtained using TEM and Kikuchi pattern analysis.
机译:有限元公式用于模拟和研究面心立方多晶的变形响应。多晶体由菱形十二面体形晶体组成,每个晶体都由四面体元素精细离散。菱形十二面体是十二面规则的,充满空间的多面体,用于表示具有等轴晶粒的微结构。材料行为是基于有限数量的滑移系统上与速率有关的结晶滑移。该数值公式使用假定应力混合有限元方法在施加载荷的情况下保持了兼容性和平衡。即使在简单的外部载荷下,多晶中也会产生变形的空间变化,并导致晶粒细分,其特征是形成了分隔具有不同晶格取向的区域的边界。特别要注意的是在这些边界上产生的晶体学取向错误以及它们相对于所施加载荷的取向。将这种不断发展的晶粒内边界纹理与使用TEM和菊池模式分析获得的已发表实验数据进行比较。

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