Microstructure, hydration and nanomechanical properties of concrete containing metakaolin

© 2015 Elsevier Ltd. All rights reserved. This paper presents the results of an experimental investigation carried out to evaluate the microstructure, hydration and nanomechanical properties of concrete containing metakaolin. The properties of concrete containing metakaolin at 0%, 5%, 10% and 15% by...

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Main Authors: Barbhuiya, Salim, Chow, P., Memon, S.
Format: Journal Article
Published: 2015
Online Access:http://hdl.handle.net/20.500.11937/38059
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author Barbhuiya, Salim
Chow, P.
Memon, S.
author_facet Barbhuiya, Salim
Chow, P.
Memon, S.
author_sort Barbhuiya, Salim
building Curtin Institutional Repository
collection Online Access
description © 2015 Elsevier Ltd. All rights reserved. This paper presents the results of an experimental investigation carried out to evaluate the microstructure, hydration and nanomechanical properties of concrete containing metakaolin. The properties of concrete containing metakaolin at 0%, 5%, 10% and 15% by mass of cement were studied for their compressive strength, sorptivity and carbonation resistance at two different water-binder ratios. It was found that 10% of the Portland cement could be beneficially replaced with the metakaolin to improve the sorptivity and carbonation resistance of concrete. In order to have a better understanding of the microstructure, hydration and nanomechanical properties various analytical techniques such as XRD, MIP and nanoindentation studies were carried on cement paste samples (with and without 10% MK). Test results showed that the incorporation of metakaolin modifies the cement paste in four different ways. Firstly, by transforming portlandite into C-S-H gel by means of pozzolanic reaction, secondly by reducing the porosity, thirdly by creating nucleation sites for hydration and finally, by modifying the relative proportions various phases of C-S-H gel.
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spelling curtin-20.500.11937-380592017-09-13T14:12:16Z Microstructure, hydration and nanomechanical properties of concrete containing metakaolin Barbhuiya, Salim Chow, P. Memon, S. © 2015 Elsevier Ltd. All rights reserved. This paper presents the results of an experimental investigation carried out to evaluate the microstructure, hydration and nanomechanical properties of concrete containing metakaolin. The properties of concrete containing metakaolin at 0%, 5%, 10% and 15% by mass of cement were studied for their compressive strength, sorptivity and carbonation resistance at two different water-binder ratios. It was found that 10% of the Portland cement could be beneficially replaced with the metakaolin to improve the sorptivity and carbonation resistance of concrete. In order to have a better understanding of the microstructure, hydration and nanomechanical properties various analytical techniques such as XRD, MIP and nanoindentation studies were carried on cement paste samples (with and without 10% MK). Test results showed that the incorporation of metakaolin modifies the cement paste in four different ways. Firstly, by transforming portlandite into C-S-H gel by means of pozzolanic reaction, secondly by reducing the porosity, thirdly by creating nucleation sites for hydration and finally, by modifying the relative proportions various phases of C-S-H gel. 2015 Journal Article http://hdl.handle.net/20.500.11937/38059 10.1016/j.conbuildmat.2015.07.101 restricted
spellingShingle Barbhuiya, Salim
Chow, P.
Memon, S.
Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title_full Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title_fullStr Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title_full_unstemmed Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title_short Microstructure, hydration and nanomechanical properties of concrete containing metakaolin
title_sort microstructure, hydration and nanomechanical properties of concrete containing metakaolin
url http://hdl.handle.net/20.500.11937/38059