The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties
Delayed ettringite formation (DEF) is a chemical reaction with proven damaging effects on the mechanical properties of hydrated cementitious composite (concrete). Ettringite crystals can cause cracks and the widening of cracks due to pressure on the crack walls caused by the positive volume differen...
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doaj-eecb2432caf444b4ac853b08bdfeea7f2021-09-05T14:00:28ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592016-05-0123332533410.1515/secm-2012-0107The effect of delayed ettringite formation on fine grained aerated concrete mechanical propertiesLubej Samo0Anžel Ivan1Jelušič Primož2Kosec Ladislav3Ivanič Andrej4Faculty of Civil Engineering, University of Maribor, Maribor, SloveniaFaculty of Mechanical Engineering, University of Maribor, Maribor, SloveniaFaculty of Civil Engineering, University of Maribor, Maribor, SloveniaFaculty of Natural Science and Engineering, University of Ljubljana, Ljubljana, SloveniaFaculty of Civil Engineering, University of Maribor, Maribor, SloveniaDelayed ettringite formation (DEF) is a chemical reaction with proven damaging effects on the mechanical properties of hydrated cementitious composite (concrete). Ettringite crystals can cause cracks and the widening of cracks due to pressure on the crack walls caused by the positive volume difference in the reaction. In this paper, we investigated the potential to utilise the positive volume difference in DEF in order to improve the mechanical properties of hydrated fine grained aerated concrete. Fine dispersed crystallisation nuclei, achieved by adding air-entraining agent (AEA) and by short vibration of specimens, are presented as the main requirement for such improvements. Control tests of expansion and mechanical properties were performed on samples of concrete with and without AEA by inducing DEF. The microstructure of fine grained aerated concrete was examined with an optical microscope and scanning electron microscope. We found that the controlled DEF, which is guaranteed by adding AEA and with the formation of uniformly dispersed air bubbles, which are crystallisation sites for ettringite crystals, improves the mechanical properties. The specimens with induced DEF were measured and found to have a 6.8% increase of compressive strength.https://doi.org/10.1515/secm-2012-0107aerated concreteconcretedelayed ettringite formation (def)mechanical propertiesmicrostructure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lubej Samo Anžel Ivan Jelušič Primož Kosec Ladislav Ivanič Andrej |
spellingShingle |
Lubej Samo Anžel Ivan Jelušič Primož Kosec Ladislav Ivanič Andrej The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties Science and Engineering of Composite Materials aerated concrete concrete delayed ettringite formation (def) mechanical properties microstructure |
author_facet |
Lubej Samo Anžel Ivan Jelušič Primož Kosec Ladislav Ivanič Andrej |
author_sort |
Lubej Samo |
title |
The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
title_short |
The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
title_full |
The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
title_fullStr |
The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
title_full_unstemmed |
The effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
title_sort |
effect of delayed ettringite formation on fine grained aerated concrete mechanical properties |
publisher |
De Gruyter |
series |
Science and Engineering of Composite Materials |
issn |
0792-1233 2191-0359 |
publishDate |
2016-05-01 |
description |
Delayed ettringite formation (DEF) is a chemical reaction with proven damaging effects on the mechanical properties of hydrated cementitious composite (concrete). Ettringite crystals can cause cracks and the widening of cracks due to pressure on the crack walls caused by the positive volume difference in the reaction. In this paper, we investigated the potential to utilise the positive volume difference in DEF in order to improve the mechanical properties of hydrated fine grained aerated concrete. Fine dispersed crystallisation nuclei, achieved by adding air-entraining agent (AEA) and by short vibration of specimens, are presented as the main requirement for such improvements. Control tests of expansion and mechanical properties were performed on samples of concrete with and without AEA by inducing DEF. The microstructure of fine grained aerated concrete was examined with an optical microscope and scanning electron microscope. We found that the controlled DEF, which is guaranteed by adding AEA and with the formation of uniformly dispersed air bubbles, which are crystallisation sites for ettringite crystals, improves the mechanical properties. The specimens with induced DEF were measured and found to have a 6.8% increase of compressive strength. |
topic |
aerated concrete concrete delayed ettringite formation (def) mechanical properties microstructure |
url |
https://doi.org/10.1515/secm-2012-0107 |
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