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Elastic responses of texturized microscale materials using FEM simulations and stochastic material properties

机译:使用有限元模拟和随机材料特性的变形微观材料的弹性响应

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摘要

A simulation model for the mechanical responses of texturized materials is presented. The model is based on the construction of stochastic elastic properties and the FEM simulation of material aggregates. The stochastic nature of the texture is used in the aggregates for the different grains and allows the FEM to include material anisotropies arising from both the texture main directions and the stochastic variations among the different grains in the aggregate.This method makes possible the simulation of stochastic variations in the stress response for texturized materials. It combines the texture parameters for the single-crystals and computations in representative volume elements to generate extended elastic properties which can be used in macro-simulations.The method is presented and exemplified with Aluminium foil. Finally, some ideas for a two-scaled simulation using these results are discussed and illustrated.
机译:提出了组织化材料力学响应的仿真模型。该模型基于随机弹性特性的构造和材料聚集体的FEM模拟。纹理的随机性用于不同晶粒的聚集体中,并允许FEM包括由纹理主方向和聚集体中不同晶粒之间的随机变化引起的材料各向异性。这种方法使得随机模拟成为可能变形材料的应力响应的变化。它结合了单晶的织构参数和代表性体积元素中的计算,以生成可用于宏观模拟的扩展弹性特性。该方法以铝箔为例进行了举例说明。最后,讨论和说明了使用这些结果进行两尺度模拟的一些想法。

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