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Statistical effects in X-ray diffraction lattice strain measurements of ferritic steel using crystal plasticity

机译:利用晶体可塑性测量铁素体钢X射线衍射晶格应变的统计效应

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The influence of statistics on calculated lattice strains has been studied by comparing crystal plasticity finite element (CPFE) calculations with strains measured experimentally. Experimentally, when Bragg's law is obeyed, a plane normal must lie within a narrow orientation range (similar to 0.02 degrees for synchrotron diffraction), or Bragg tolerance. However, CPFE models consider only a small number of grains compared to experiments, necessitating a justification of the statistically representative volume. It also becomes necessary to assess the threshold of Bragg tolerance allowable for the determined statistically representative volume. In this study, an 8 x 8 x 8 model was deemed as statistically representative such that only small benefits are obtained in terms of lattice strain calculations by adopting larger models such as 10 x 10 x 10. Based on the selected model, an allowable Bragg tolerance of approximately 5 degrees was calculated. Also highlighted was the coupling between lattice strain, texture, hardening and applied boundary condition which are discriminators that will affect the choice of model size and Bragg tolerance threshold. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过将晶体可塑性有限元(CPFE)计算与实验测得的应变进行比较,研究了统计学对计算晶格应变的影响。实验上,当遵循布拉格定律时,平面法线必须位于狭窄的取向范围内(对于同步加速器衍射,近似于0.02度)或布拉格公差。但是,与实验相比,CPFE模型只考虑了少量的晶粒,因此有必要证明统计上具有代表性的体积。还需要评估确定的统计代表性体积所允许的布拉格公差阈值。在这项研究中,一个8 x 8 x 8模型被认为具有统计学上的代表性,因此,采用较大的模型(例如10 x 10 x 10),在晶格应变计算方面仅能获得很小的收益。在选定模型的基础上,允许使用布拉格计算出约5度的公差。还强调了晶格应变,织构,硬化和施加的边界条件之间的耦合,这些因素将影响模型尺寸和布拉格公差阈值的选择。 (C)2018 Elsevier Ltd.保留所有权利。

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