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通过相关X射线μ-CT和电子背散射衍射(EBSD)分析重建复杂地质材料中橄榄石的三维微观结构。

3-D microstructure of olivine in complex geological materials reconstructed by correlative X-ray μ-CT and EBSD analyses.

作者信息

Kahl W-A, Dilissen N, Hidas K, Garrido C J, López-Sánchez-Vizcaíno V, Román-Alpiste M J

机构信息

Department of Geosciences, University of Bremen, Bremen, Germany.

Instituto Andaluz de Ciencias de la Tierra, CSIC & Universidad de Granada, Armilla (Granada), Spain.

出版信息

J Microsc. 2017 Nov;268(2):193-207. doi: 10.1111/jmi.12598. Epub 2017 Jul 7.

DOI:10.1111/jmi.12598
PMID:28686286
Abstract

We reconstruct the 3-D microstructure of centimetre-sized olivine crystals in rocks from the Almirez ultramafic massif (SE Spain) using combined X-ray micro computed tomography (μ-CT) and electron backscatter diffraction (EBSD). The semidestructive sample treatment involves geographically oriented drill pressing of rocks and preparation of oriented thin sections for EBSD from the μ-CT scanned cores. The μ-CT results show that the mean intercept length (MIL) analyses provide reliable information on the shape preferred orientation (SPO) of texturally different olivine groups. We show that statistical interpretation of crystal preferred orientation (CPO) and SPO of olivine becomes feasible because the highest densities of the distribution of main olivine crystal axes from EBSD are aligned with the three axes of the 3-D ellipsoid calculated from the MIL analyses from μ-CT. From EBSD data we distinguish multiple CPO groups and by locating the thin sections within the μ-CT volume, we assign SPO to the corresponding olivine crystal aggregates, which confirm the results of statistical comparison. We demonstrate that the limitations of both methods (i.e. no crystal orientation data in μ-CT and no spatial information in EBSD) can be overcome, and the 3-D orientation of the crystallographic axes of olivines from different orientation groups can be successfully correlated with the crystal shapes of representative olivine grains. Through this approach one can establish the link among geological structures, macrostructure, fabric and 3-D SPO-CPO relationship at the hand specimen scale even in complex, coarse-grained geomaterials.

摘要

我们运用X射线显微计算机断层扫描(μ-CT)和电子背散射衍射(EBSD)相结合的方法,重建了来自阿尔米雷斯超镁铁质岩体(西班牙东南部)岩石中厘米级橄榄石晶体的三维微观结构。这种半破坏性的样品处理方法包括对岩石进行地理定向钻孔压制,并从μ-CT扫描的岩芯中制备用于EBSD分析的定向薄片。μ-CT结果表明,平均截距长度(MIL)分析为不同结构的橄榄石组的形状优选取向(SPO)提供了可靠信息。我们发现,对橄榄石的晶体优选取向(CPO)和SPO进行统计解释变得可行,因为EBSD分析得出的主要橄榄石晶体轴分布的最高密度与μ-CT的MIL分析计算出的三维椭球体的三个轴对齐。通过EBSD数据,我们区分了多个CPO组,并通过在μ-CT体积内定位薄片,将SPO分配给相应的橄榄石晶体聚集体,这证实了统计比较的结果。我们证明,两种方法的局限性(即μ-CT中没有晶体取向数据,EBSD中没有空间信息)都可以被克服,并且不同取向组的橄榄石晶体学轴的三维取向可以成功地与代表性橄榄石颗粒的晶体形状相关联。通过这种方法,即使在复杂的粗粒地质材料中,也可以在手持标本尺度上建立地质结构、宏观结构、组构和三维SPO-CPO关系之间的联系。

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