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Quantitative analysis of EBSD data in rocks and other crystalline materials: investigation of strain induced recrystallisation and growth of new phases

机译:岩石和其他晶体材料中EBSD数据的定量分析:应变诱导的重结晶和新相的生长研究

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Misorientation can be calculated over large datasets and a theme of this paper is the usefulness of examining the results statistically. Comparing the statistics of misorientations calculated from neighbouring pixels (or grains) with those calculated from pairs of pixels (or grains) selected at random helps to indicate deformation and recrystallisation mechanisms. Taking boundary length into account provides a link to grain boundary energy, and boundary length versus misorientation data should be used to examine how boundaries with different misorientations evolve through time. "Time lapse" misorientation maps indicate how orientation changes through time at particular points in a microstructure during in situ experiments. The size of areas which have changed orientation by particular amounts can be linked to boundary length and boundary migration velocities. When dealing with different phases, the statistics of angular relationships, akin to intraphase misorientation analysis, can indicate orientation relationships in the absence of prior knowledge, which is advantageous in investigating the plethora of minerals that make up the Earth.
机译:错误取向可以在大型数据集上计算,本文的主题是统计检验结果的有用性。将根据相邻像素(或颗粒)计算出的取向错误的统计数据与根据随机选择的成对像素(或颗粒)计算出的取向错误的统计数据进行比较,有助于指示变形和再结晶机制。考虑边界长度可提供与晶界能的联系,边界长度与取向错误数据应用于检查具有不同取向错误的边界如何随时间演变。 “时间流逝”取向错误图指示在原位实验过程中,取向如何随时间在微观结构中特定点处变化。方向改变了特定数量的区域的大小可以与边界长度和边界迁移速度相关联。当处理不同的相时,类似于相内取向错误分析的角关系统计数据可以在没有先验知识的情况下指示取向关系,这对于研究构成地球的大量矿物是有利的。

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