Experimental of verification of alternative hydraulic binders flexural and compressive strength

The paper deals with the investigation of alternative binders, namely the two available samples N6 and N7 with comparison from the reference sample CEM I 42.5R. Both testing binders are provided by company Destro. It is a product that contains different ratios of fly ash and slag. By examining the...

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Main Authors: Aleš Palička, Zdeněk Prošek, Pavel Tesárek
Format: Article
Language:English
Published: Czech Technical University in Prague 2024-11-01
Series:Acta Polytechnica CTU Proceedings
Subjects:
Online Access:https://ojs.cvut.cz/ojs/index.php/APP/article/view/10210
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author Aleš Palička
Zdeněk Prošek
Pavel Tesárek
author_facet Aleš Palička
Zdeněk Prošek
Pavel Tesárek
author_sort Aleš Palička
collection DOAJ
description The paper deals with the investigation of alternative binders, namely the two available samples N6 and N7 with comparison from the reference sample CEM I 42.5R. Both testing binders are provided by company Destro. It is a product that contains different ratios of fly ash and slag. By examining the properties, the mix was compared in different proportions and subsequently tested for flexural strength and compressive strength. The results showed the effect of curing time and cement to binder ratio after 28 and 84 days.
format Article
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institution Matheson Library
issn 2336-5382
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publishDate 2024-11-01
publisher Czech Technical University in Prague
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series Acta Polytechnica CTU Proceedings
spelling doaj-art-48aaafa038f04433b7186763cbb21cec2025-08-02T06:59:35ZengCzech Technical University in PragueActa Polytechnica CTU Proceedings2336-53822024-11-014910.14311/APP.2024.49.0060Experimental of verification of alternative hydraulic binders flexural and compressive strengthAleš Palička0Zdeněk Prošek1Pavel Tesárek2Czech Technical University in Prague, Faculty of Civil Engineering, Department of Mechanics, Thákurova 7, 166 29 Prague, Czech RepublicCzech Technical University in Prague, Faculty of Civil Engineering, Department of Mechanics, Thákurova 7, 166 29 Prague, Czech Republic; Czech Technical University in Prague, University Centre for Energy Efficient Buildings, Třinecká 1024, 273 43 Buštěhrad, Czech RepublicCzech Technical University in Prague, Faculty of Civil Engineering, Department of Mechanics, Thákurova 7, 166 29 Prague, Czech Republic The paper deals with the investigation of alternative binders, namely the two available samples N6 and N7 with comparison from the reference sample CEM I 42.5R. Both testing binders are provided by company Destro. It is a product that contains different ratios of fly ash and slag. By examining the properties, the mix was compared in different proportions and subsequently tested for flexural strength and compressive strength. The results showed the effect of curing time and cement to binder ratio after 28 and 84 days. https://ojs.cvut.cz/ojs/index.php/APP/article/view/10210alternative binderfly ashcement pastescompressive strengthflexural strength
spellingShingle Aleš Palička
Zdeněk Prošek
Pavel Tesárek
Experimental of verification of alternative hydraulic binders flexural and compressive strength
Acta Polytechnica CTU Proceedings
alternative binder
fly ash
cement pastes
compressive strength
flexural strength
title Experimental of verification of alternative hydraulic binders flexural and compressive strength
title_full Experimental of verification of alternative hydraulic binders flexural and compressive strength
title_fullStr Experimental of verification of alternative hydraulic binders flexural and compressive strength
title_full_unstemmed Experimental of verification of alternative hydraulic binders flexural and compressive strength
title_short Experimental of verification of alternative hydraulic binders flexural and compressive strength
title_sort experimental of verification of alternative hydraulic binders flexural and compressive strength
topic alternative binder
fly ash
cement pastes
compressive strength
flexural strength
url https://ojs.cvut.cz/ojs/index.php/APP/article/view/10210
work_keys_str_mv AT alespalicka experimentalofverificationofalternativehydraulicbindersflexuralandcompressivestrength
AT zdenekprosek experimentalofverificationofalternativehydraulicbindersflexuralandcompressivestrength
AT paveltesarek experimentalofverificationofalternativehydraulicbindersflexuralandcompressivestrength