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Comparison of methods of algebraic strain estimation from Rf/φ data: A unified theory of 2D strain analysis

机译:基于Rf /φ数据的代数应变估计方法的比较:二维应变分析的统一理论

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摘要

A unified development of the subject of the algebraic strain analysis methods using Rf/0 data is outlined, embodying the main features the theories of Shimamoto and Ikeda, Mulchrone et al. and Yamaji. It is shown that the theories yields an identical strain ellipse from the same data set. However, error estimation in that of Shimamoto and Ikeda is difficult owing to the distortion of its parameter space: Resolution of their method depends on the choice of a reference orientation in the plane where strain markers are observed. In this respect, the remaining two theories have advantages. The hyperbolic vector mean method was developed in the Minkowski 3-space, thereby linked seamlessly with the visualizing methods of Rf/φ data, optimal strain and its confidence region. In addition, the residuals of the optimal strain ellipse determined by this method have clear physical meanings concerning logarithmic strains needed to transform a unit circle to given ellipses.
机译:概述了使用Rf / 0数据的代数应变分析方法的主题的统一发展,体现了岛本和池田等理论的主要特征,Mulchrone等。和山治结果表明,这些理论从相同的数据集中得出相同的应变椭圆。但是,由于Shimamoto和Ikeda的参数空间失真,因此很难进行误差估计:其方法的分辨率取决于观察应变标记的平面中参考方向的选择。在这方面,其余两种理论都有优势。在Minkowski 3空间中发展了双曲向量均值方法,从而与Rf /φ数据,最佳应变及其置信区域的可视化方法无缝链接。此外,通过这种方法确定的最佳应变椭圆的残差具有明确的物理含义,涉及将单位圆转换为给定椭圆所需的对数应变。

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