首页> 外文会议>9th biennial conference on engineering systems design and analysis 2008 >SIMULATED PLANAR POLYCRYSTALLS WITH PLANAR AND SPATIAL RANDOM LATTICE ORIENTATIONS
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SIMULATED PLANAR POLYCRYSTALLS WITH PLANAR AND SPATIAL RANDOM LATTICE ORIENTATIONS

机译:具有平面和空间随机晶格方向的模拟平面多晶

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A planar multiscale model of a polycrystalline aggregate was employed in this paper to arrive at new and interesting results. The model accounted for the most important mesoscopic features including explicitly modeled random grain structure with crystal grains represented as randomly oriented monocrystals obeying anisotropic elasticity and crystal plasticity (Schmid resolved shear stress) constitutive models.rnThe results presented include the illustrative description of simulated mesoscopic strain fields, including the development of shear bands, and a sensitivity analysis of the equivalent macroscopic response at various sizes of polycristalls smaller than Representative Volume Element (RVE). Columnar grain structure is assumed in a planar (plane strain) finite element model. The presentation of results includes the comparison of aggregate responses obtained assuming 2-D only and full 3-D random grain orientations. The material properties have been chosen to represent the German nuclear reactor pressure vessel steel 22 NiMoCr 3 7.
机译:本文采用了多晶团聚体的平面多尺度模型来获得新的有趣结果。该模型具有最重要的介观特征,包括显式建模的随机晶粒结构,其中晶粒表示为服从各向异性弹性和晶体塑性(Schmid解析剪切应力)本构模型的随机取向的单晶。rn所提供的结果包括对模拟介观应变场的说明。 ,包括剪切带的发展,以及对各种尺寸小于代表体积元素(RVE)的多晶聚苯乙烯的等效宏观响应的敏感性分析。在平面(平面应变)有限元模型中假设圆柱状晶粒结构。结果的表示包括假设仅2维和完整3维随机晶粒取向获得的聚集响应的比较。选择的材料性能代表德国核反应堆压力容器钢22 NiMoCr 3 7。

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