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Influence of modelling variables on the distribution of lattice strains in a deformed polycrystal, with reference to neutron diffraction experiments

机译:参考中子衍射实验,建模变量对变形多晶中晶格应变分布的影响

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摘要

The distribution of (elastic) lattice strains following plastic deformation of an aluminium alloy is examined using finite element simulations of aggregates with individually resolved crystals. The aggregates consist of face centred cubic crystals with initial orientations assigned by sampling the measured crystallographic texture. The simulations show that the lattice strains within the crystals are influenced by various microstructural features, material parameters and modelling assumptions. A hierarchy among these various effects is established, based on applications where low probability events are crucial, such as in fatigue or fracture problems. The simulation results are discussed in detail and compared with experimental data for the macroscopic stress, the lattice strains in the unloaded state and the associated uncertainties.
机译:使用具有单独解析的晶体的聚集体的有限元模拟,检查了铝合金塑性变形后的(弹性)晶格应变的分布。聚集体由面心立方晶体组成,其初始方向是通过对测得的晶体织构进行采样而指定的。仿真表明,晶体内的晶格应变受各种微结构特征,材料参数和建模假设的影响。基于低概率事件至关重要的应用(例如在疲劳或断裂问题中)的应用,建立了这些不同影响之间的层次结构。详细讨论了模拟结果,并将其与宏观应力,空载状态下的晶格应变以及相关不确定性的实验数据进行了比较。

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