Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening

We have investigated the influence of the ratio cement:fly-ash and the temperature of mixing water on the properties of aerated concrete mixes and aerated concrete. It was established that the rational cement-fly ash ratio is 1:1; the mixing water temperature is 40 °C. Experimental research confirme...

Full description

Bibliographic Details
Main Authors: Oksana Poznyak, Myroslav Sanytsky, Igor Zavadsky, Serhii Braichenko, Andriy Melnyk
Format: Article
Language:English
Published: PC Technology Center 2018-06-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/133594
id doaj-fee7db49b73d43ada71560b616d38ec7
record_format Article
spelling doaj-fee7db49b73d43ada71560b616d38ec72020-11-24T21:46:36ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612018-06-0136 (93)394610.15587/1729-4061.2018.133594133594Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardeningOksana Poznyak0Myroslav Sanytsky1Igor Zavadsky2Serhii Braichenko3Andriy Melnyk4Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Ferozit LTD Shevchenka str., 317, Lviv, Ukraine, 79069We have investigated the influence of the ratio cement:fly-ash and the temperature of mixing water on the properties of aerated concrete mixes and aerated concrete. It was established that the rational cement-fly ash ratio is 1:1; the mixing water temperature is 40 °C. Experimental research confirmed that the introduction of waste from salt processing and metakaolin to the formulation of binding compositions leads to the formation, rather than the metastable hexagonal calcium hydro-aluminates, of the stable compounds in the structure of partitions between pores of the hydrocalumite and hydrocarboaluminate type. That allowed the targeted structure formation of partitions between pores of the non-autoclaved aerated concrete, which improves the density of partitions and the strength of aerated concrete. It is shown that the introduction of polypropylene fibers to composition of aerated concrete does not affect the kinetics of swelling of the aerated concrete array. However, the introduction of polypropylene fibers improves the strength of aerated concrete based on the modified binding composition containing metakaolin by 47 %, the modified binding composition containing carbonate-containing waste ‒ by 32 %. For the aerated concrete of the В1.5–В2 class of strength, at a density within 615‒625 kg/m3, the estimated coefficient of thermal conductivity is 0.16 W/(m∙K), which makes it possible to reduce heat losses through external enclosures. Thus, there is reason to assert the possibility of the targeted control over the processes of forming a strong structure of partitions between pores using the modified binding compositions containing supplementary cementitious materials. The application of polypropylene fibers enables the reinforcement of aerated -concrete array, forming a strong structural frame of partitions between pores, and ensuring greater strength of the non-autoclaved aerated concrete.http://journals.uran.ua/eejet/article/view/133594non-autoclaved aerated concretekinetics of swellingdensitystrengthpolypropylene fiber
collection DOAJ
language English
format Article
sources DOAJ
author Oksana Poznyak
Myroslav Sanytsky
Igor Zavadsky
Serhii Braichenko
Andriy Melnyk
spellingShingle Oksana Poznyak
Myroslav Sanytsky
Igor Zavadsky
Serhii Braichenko
Andriy Melnyk
Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
Eastern-European Journal of Enterprise Technologies
non-autoclaved aerated concrete
kinetics of swelling
density
strength
polypropylene fiber
author_facet Oksana Poznyak
Myroslav Sanytsky
Igor Zavadsky
Serhii Braichenko
Andriy Melnyk
author_sort Oksana Poznyak
title Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
title_short Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
title_full Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
title_fullStr Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
title_full_unstemmed Research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
title_sort research into structure formation and properties of the fiber­reinforced aerated concrete obtained by the non­autoclaved hardening
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2018-06-01
description We have investigated the influence of the ratio cement:fly-ash and the temperature of mixing water on the properties of aerated concrete mixes and aerated concrete. It was established that the rational cement-fly ash ratio is 1:1; the mixing water temperature is 40 °C. Experimental research confirmed that the introduction of waste from salt processing and metakaolin to the formulation of binding compositions leads to the formation, rather than the metastable hexagonal calcium hydro-aluminates, of the stable compounds in the structure of partitions between pores of the hydrocalumite and hydrocarboaluminate type. That allowed the targeted structure formation of partitions between pores of the non-autoclaved aerated concrete, which improves the density of partitions and the strength of aerated concrete. It is shown that the introduction of polypropylene fibers to composition of aerated concrete does not affect the kinetics of swelling of the aerated concrete array. However, the introduction of polypropylene fibers improves the strength of aerated concrete based on the modified binding composition containing metakaolin by 47 %, the modified binding composition containing carbonate-containing waste ‒ by 32 %. For the aerated concrete of the В1.5–В2 class of strength, at a density within 615‒625 kg/m3, the estimated coefficient of thermal conductivity is 0.16 W/(m∙K), which makes it possible to reduce heat losses through external enclosures. Thus, there is reason to assert the possibility of the targeted control over the processes of forming a strong structure of partitions between pores using the modified binding compositions containing supplementary cementitious materials. The application of polypropylene fibers enables the reinforcement of aerated -concrete array, forming a strong structural frame of partitions between pores, and ensuring greater strength of the non-autoclaved aerated concrete.
topic non-autoclaved aerated concrete
kinetics of swelling
density
strength
polypropylene fiber
url http://journals.uran.ua/eejet/article/view/133594
work_keys_str_mv AT oksanapoznyak researchintostructureformationandpropertiesofthefiberreinforcedaeratedconcreteobtainedbythenonautoclavedhardening
AT myroslavsanytsky researchintostructureformationandpropertiesofthefiberreinforcedaeratedconcreteobtainedbythenonautoclavedhardening
AT igorzavadsky researchintostructureformationandpropertiesofthefiberreinforcedaeratedconcreteobtainedbythenonautoclavedhardening
AT serhiibraichenko researchintostructureformationandpropertiesofthefiberreinforcedaeratedconcreteobtainedbythenonautoclavedhardening
AT andriymelnyk researchintostructureformationandpropertiesofthefiberreinforcedaeratedconcreteobtainedbythenonautoclavedhardening
_version_ 1725901136225894400