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Published in: Journal of Materials Science 20/2011

01-10-2011

Micromechanical multiscale model for alkali activation of fly ash and metakaolin

Authors: Vít Šmilauer, Petr Hlaváček, František Škvára, Rostislav Šulc, Lubomír Kopecký, Jiří Němeček

Published in: Journal of Materials Science | Issue 20/2011

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Abstract

The process of alkali activation of fly ash and metakaolin is examined in the view of micromechanics. Elasticity is predicted via semi-analytical homogenization methods, using a combination of intrinsic elastic properties obtained from nanoindentation, evolving volume fractions and percolation theory. A new quantitative model for volume fraction is formulated, distinguishing the evolution of unreacted aluminosilicate material, solid gel particles of N-A-S-H gel, and open porosity, which is partially filled with the activator. The stiffening of N-A-S-H gel is modeled by increasing the fraction of solid gel particles. Their packing density and intrinsic elasticity differ in N-A-S-H gels synthesized from both activated materials. Percolation theory helps to address the quasi-solid transition at early ages and explains a long setting time and the beneficial effect of thermal curing. The low ability of N-A-S-H gel to bind water chemically explains the high porosity of Ca-deficient activated materials. Micromechanical analysis matches well the elastic experimental data during the activation and elucidates important stages in the formation of the microstructure.

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Metadata
Title
Micromechanical multiscale model for alkali activation of fly ash and metakaolin
Authors
Vít Šmilauer
Petr Hlaváček
František Škvára
Rostislav Šulc
Lubomír Kopecký
Jiří Němeček
Publication date
01-10-2011
Publisher
Springer US
Published in
Journal of Materials Science / Issue 20/2011
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-011-5601-x

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