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首页> 外文期刊>Journal of Applied Crystallography >A direct method for the determination of the mean orientation-dependent elastic strains and stresses in polycrystalline materials from strain pole figures
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A direct method for the determination of the mean orientation-dependent elastic strains and stresses in polycrystalline materials from strain pole figures

机译:从应变极图确定多晶材料中平均取向相关弹性应变和应力的直接方法

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A salient manifestation of anisotropy in the mechanical response of polycrystalline materials is the inhomogeneous partitioning of elastic strains over the aggregate. For bulk samples, the distributions of these intergranular strains are expected to have a strong functional dependence on grain orientations. It is then useful to formulate a mean lattice strain distribution function (LSDF) over the orientation space, which serves to characterize the micromechanical state of the aggregate. Orientation-dependent intergranular stresses may be recovered from the LSDF via a constitutive assumption, such as anisotropic linear elasticity. While the LSDF may be determined directly from simulation data, its experimental determination relies on solving an inverse problem that is similar in character to the fundamental problem of texture analysis. In this paper, a versatile and robust direct method for determining an LSDF from strain pole figures is presented. The effectiveness of this method is demonstrated using synthetic strain pole figures from a model LSDF obtained from the simulated uniaxial deformation of a 1000-crystal aggregate.
机译:多晶材料机械响应中各向异性的一个显着表现是弹性应变在聚集体上的不均匀分配。对于散装样品,这些晶间应变的分布预计对晶粒取向具有很强的功能依赖性。然后,有用的是在取向空间上制定平均晶格应变分布函数(LSDF),以表征骨料的微机械状态。可以通过诸如各向异性线性弹性的本构假设从LSDF中恢复与方向有关的晶间应力。尽管可以直接从仿真数据确定LSDF,但其实验确定取决于解决与纹理分析的基本问题相似的反问题。在本文中,提出了一种从应变极图确定LSDF的通用且鲁棒的直接方法。使用从LSDF模型获得的合成应变极图可以证明该方法的有效性,该模型是通过模拟1000晶体聚集体的单轴变形获得的。

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