Composition design and properties forecasting architectural reactive powder concrete with blast furnace granulated slag

The article is devoted to the study of the possibility of obtaining reactive powder concrete for the construction of difficult configuration and increased architectural expressiveness structures by completely replacing silica fume and other active mineral admixture with blast-furnace granular slag....

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Hauptverfasser: Zhitkovsky, Vadim, Dvorkin, Leonid, Bordiuzhenko, Oleh, Marchuk, Vitaliy, Fursovych, Mykhailo
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creator Zhitkovsky, Vadim
Dvorkin, Leonid
Bordiuzhenko, Oleh
Marchuk, Vitaliy
Fursovych, Mykhailo
description The article is devoted to the study of the possibility of obtaining reactive powder concrete for the construction of difficult configuration and increased architectural expressiveness structures by completely replacing silica fume and other active mineral admixture with blast-furnace granular slag. On the basis of experimental data showing the influence of technological factors on the waterdemand of the concrete mixture and the strength characteristics of the concrete under study at different ages, mathematical models of the main parameters were obtained. Using a set of models, a method is proposed for determining the composition of such concrete, which makes it possible to predict the properties of the concrete mixture and the strength of the reactive powder concrete at different ages. A numerical example of the design of the reactive powder concrete composition by the proposed method is given.
doi_str_mv 10.1063/5.0123195
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subjects Admixtures
Blast furnace slags
Composition
Granulation
Mathematical models
Silica fume
Slag
Ultra high performance concrete
title Composition design and properties forecasting architectural reactive powder concrete with blast furnace granulated slag
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