The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash

The paper presents the results of nanohardness (HB) in the Interfacial Transition Zones (ITZ) of concretes with the addition of 0, 20 and 30% siliceous fly ashes (FA). A compact platform CSM Instruments was used in the testing. An area in the ITZ of coarse aggregates with paste was analysed in the...

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Main Author: Grzegorz Golewski
Format: Article
Language:English
Published: Lublin University of Technology 2014-06-01
Series:Budownictwo i Architektura
Subjects:
Online Access:https://ph.pollub.pl/index.php/bia/article/view/1882
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spelling doaj-fb85791febe948ccb053dd580cb848572020-11-25T02:32:37ZengLublin University of TechnologyBudownictwo i Architektura1899-06652544-32752014-06-0113210.35784/bud-arch.1882The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ashGrzegorz Golewski0Department of Civil Engineering Structures, Faculty of Civil Engineering and Architecture, Lublin University of Technology The paper presents the results of nanohardness (HB) in the Interfacial Transition Zones (ITZ) of concretes with the addition of 0, 20 and 30% siliceous fly ashes (FA). A compact platform CSM Instruments was used in the testing. An area in the ITZ of coarse aggregates with paste was analysed in the five measurement points during the experiments, i.e. at the distance of: 5, 25, 50, 100 and 150 µm from the grain boundary. The indents in concrete were create by Berkovich indenter using DSI technique. Analysis of the results revealed that the 20% additive of FA causes a few percent increase in nanohardness, while 30% FA additive leads to between ten and twenty percent drop of HB. On the basis of nanohardness distributions in particular concretes, it was found that the most heterogeneous one is the ITZ zone within the distance of 25µm from the aggregate grain. https://ph.pollub.pl/index.php/bia/article/view/1882concretefly ashinterfacial transition zonenanohardness
collection DOAJ
language English
format Article
sources DOAJ
author Grzegorz Golewski
spellingShingle Grzegorz Golewski
The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
Budownictwo i Architektura
concrete
fly ash
interfacial transition zone
nanohardness
author_facet Grzegorz Golewski
author_sort Grzegorz Golewski
title The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
title_short The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
title_full The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
title_fullStr The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
title_full_unstemmed The Application of Berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
title_sort application of berkovich nanoindenter to the study of interfacial transition zone in concretes containing fly-ash
publisher Lublin University of Technology
series Budownictwo i Architektura
issn 1899-0665
2544-3275
publishDate 2014-06-01
description The paper presents the results of nanohardness (HB) in the Interfacial Transition Zones (ITZ) of concretes with the addition of 0, 20 and 30% siliceous fly ashes (FA). A compact platform CSM Instruments was used in the testing. An area in the ITZ of coarse aggregates with paste was analysed in the five measurement points during the experiments, i.e. at the distance of: 5, 25, 50, 100 and 150 µm from the grain boundary. The indents in concrete were create by Berkovich indenter using DSI technique. Analysis of the results revealed that the 20% additive of FA causes a few percent increase in nanohardness, while 30% FA additive leads to between ten and twenty percent drop of HB. On the basis of nanohardness distributions in particular concretes, it was found that the most heterogeneous one is the ITZ zone within the distance of 25µm from the aggregate grain.
topic concrete
fly ash
interfacial transition zone
nanohardness
url https://ph.pollub.pl/index.php/bia/article/view/1882
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AT grzegorzgolewski applicationofberkovichnanoindentertothestudyofinterfacialtransitionzoneinconcretescontainingflyash
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