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On 'macroscopic' characterization of mixed grain boundaries

机译:关于混合晶界的“宏观”表征

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摘要

Grain boundaries having no special geometric features are referred to as mixed. Mixed boundaries constitute a large class, and the need for a finer differentiation arises. A mixed boundary can be characterized by linking it to the nearest boundaries with special geometric attributes, in particular, by its decomposition into twist and tilt components. We investigate and compare the quantitative methods and parameters used for description of mixed boundaries. The considered methods are based either on decomposition or on some other measures of deviations from pure-twist or pure-tilt boundaries. Furthermore, the methods are either limited to boundary representations with the smallest misorientation angles or take into account all symmetrically equivalent boundary representations, and these two approaches differ in their meaning, physical significance and conclusions. The relationships between the methods of mixed boundary characterization are clarified and the suitability of particular parameters for analysis of experimental data is assessed. These issues are important for a thorough understanding of grain boundary distributions in the space of macroscopic boundary parameters. The considered techniques and parameters are used to examine mixed boundaries in the Ni-based superalloy IN100.
机译:没有特殊几何特征的晶界称为混合边界。混合边界构成了一个大类,因此需要更精细的区分。混合边界的特征是将其与具有特殊几何属性的最近边界联系起来,特别是将其分解为扭曲和倾斜分量。我们研究并比较了用于描述混合边界的定量方法和参数。所考虑的方法要么基于分解,要么基于与纯扭曲或纯倾斜边界偏差的其他一些度量。此外,这些方法要么局限于具有最小取向偏角的边界表示,要么考虑所有对称等效的边界表示,这两种方法在含义、物理意义和结论上有所不同。阐明了混合边界表征方法之间的关系,并评估了特定参数对实验数据分析的适用性。这些问题对于全面理解宏观边界参数空间中的晶界分布具有重要意义。所考虑的技术和参数用于检查镍基高温合金IN100中的混合边界。

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