4.7 Article

New method for a SEM-based quantitative microstructural clay analysis-MiCA

期刊

APPLIED CLAY SCIENCE
卷 214, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.clay.2021.106248

关键词

Image analysis; Computer vision; Quantitative analysis; Clay particles orientation; SEM; Clay porosity

资金

  1. DTU Cen (Center for Electron Nanoscopy)

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The soil microstructure has a significant impact on the mechanical behavior of soil, and researchers have developed the MiCA code for quantitative analysis of particle orientation and pore shape, with validation showing good accuracy in the results.
The soil microstructure is recognised to strongly influence the mechanical behaviour of both coarse and fine geomaterials. Proper identification and tracking of the shape and position of the particles has become more and more critical to form a link between the micro and macro behaviour. Scanning Electron Microscopy (SEM) has been widely used in the last decades to study the clay fabric variation with its mechanical behaviour and physical properties. However, the particles orientation has so far been discussed only from a qualitative point of view due to the lack of updated, automatised quantification tools. Consequently, developing constitutive models that correlate the soil micro structure to its mechanical behaviour is not feasible. In order to make a step forward in this direction, an Image Analysis based code called MiCA (microstructural clay analyser) capable of quantifying the particle orientation and the porosity of clay samples through the analysis of SEM micrographs was developed in this study. The code reliability was first validated through the application to geometrical reference patterns, then to textbook micrographs illustrating typical clay fabrics (dispersed, honeycomb, flocculated and aggregated), and finally to high quality images. MiCA showed good accuracy in the results obtained, regardless of the number of lines in the image, the complexity of the geometrical shapes and the pixel size of the analysed graphs. Therefore, MiCA can be considered suitable for quantitative analysis of the particle orientation and/or pores shape in clay materials.

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