Literature DB >> 28686286

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

W-A Kahl1, N Dilissen2, K Hidas2, C J Garrido2, V López-Sánchez-Vizcaíno3, M J Román-Alpiste2.   

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.
© 2017 The Authors Journal of Microscopy © 2017 Royal Microscopical Society.

Entities:  

Keywords:  3-D microstructure; X-ray micro computed tomography (μ-CT); electron backscatter diffraction (EBSD); geomaterials; sample preparation

Year:  2017        PMID: 28686286     DOI: 10.1111/jmi.12598

Source DB:  PubMed          Journal:  J Microsc        ISSN: 0022-2720            Impact factor:   1.758


  1 in total

1.  Application of microtomography and petrography techniques for the characterization of porosity of synthetic carbonatic rock minerals before and after acidification processes.

Authors:  Katia Galindo; Cecília Lins; Leonardo Guimarães; Analice Lima; Katarina Silva; Abraão Nova
Journal:  Sci Rep       Date:  2022-10-11       Impact factor: 4.996

  1 in total

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