Cargando…

Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete

The widespread use of aerated concrete in construction has led to the emergence of many types and compositions. However, additional research should fill theoretical gaps in the phenomenon of gas release during the formation of the structure of aerated concrete. Based on theoretical analysis and expe...

Descripción completa

Detalles Bibliográficos
Autores principales: Shcherban’, Evgenii M., Stel’makh, Sergey A., Beskopylny, Alexey, Mailyan, Levon R., Meskhi, Besarion, Shuyskiy, Anatoly, Beskopylny, Nikita, Dotsenko, Natal’ya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000561/
https://www.ncbi.nlm.nih.gov/pubmed/35407974
http://dx.doi.org/10.3390/ma15072642
_version_ 1784685464462032896
author Shcherban’, Evgenii M.
Stel’makh, Sergey A.
Beskopylny, Alexey
Mailyan, Levon R.
Meskhi, Besarion
Shuyskiy, Anatoly
Beskopylny, Nikita
Dotsenko, Natal’ya
author_facet Shcherban’, Evgenii M.
Stel’makh, Sergey A.
Beskopylny, Alexey
Mailyan, Levon R.
Meskhi, Besarion
Shuyskiy, Anatoly
Beskopylny, Nikita
Dotsenko, Natal’ya
author_sort Shcherban’, Evgenii M.
collection PubMed
description The widespread use of aerated concrete in construction has led to the emergence of many types and compositions. However, additional research should fill theoretical gaps in the phenomenon of gas release during the formation of the structure of aerated concrete. Based on theoretical analysis and experimental studies, the article proposes a mathematical model of the swelling process based on the physicochemical laws of convection and molecular diffusion of hydrogen from a mixture and the conditions of swelling, precipitation, and stabilization of the mixture. An improved method for the manufacture of aerated concrete is proposed, which consists of introducing cement pre-hydrated for 20–30 min into the composition of the aerated concrete mixture and providing improved gas-holding capacity and increased swelling of the mixture, reducing the average density of aerated concrete up to 29% and improving heat-shielding properties up to 31%. At the same time, the small dynamics of a decrease in the strength properties of aerated concrete were observed, which is confirmed by an increased structural quality factor (CSQ) of up to 13%. As a result, aerated concrete has been obtained that meets the requirements of environmental friendliness and has improved mechanical and physical characteristics. Economic efficiency is to reduce the cost of production of aerated concrete and construction in general by about 15%.
format Online
Article
Text
id pubmed-9000561
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-90005612022-04-12 Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete Shcherban’, Evgenii M. Stel’makh, Sergey A. Beskopylny, Alexey Mailyan, Levon R. Meskhi, Besarion Shuyskiy, Anatoly Beskopylny, Nikita Dotsenko, Natal’ya Materials (Basel) Article The widespread use of aerated concrete in construction has led to the emergence of many types and compositions. However, additional research should fill theoretical gaps in the phenomenon of gas release during the formation of the structure of aerated concrete. Based on theoretical analysis and experimental studies, the article proposes a mathematical model of the swelling process based on the physicochemical laws of convection and molecular diffusion of hydrogen from a mixture and the conditions of swelling, precipitation, and stabilization of the mixture. An improved method for the manufacture of aerated concrete is proposed, which consists of introducing cement pre-hydrated for 20–30 min into the composition of the aerated concrete mixture and providing improved gas-holding capacity and increased swelling of the mixture, reducing the average density of aerated concrete up to 29% and improving heat-shielding properties up to 31%. At the same time, the small dynamics of a decrease in the strength properties of aerated concrete were observed, which is confirmed by an increased structural quality factor (CSQ) of up to 13%. As a result, aerated concrete has been obtained that meets the requirements of environmental friendliness and has improved mechanical and physical characteristics. Economic efficiency is to reduce the cost of production of aerated concrete and construction in general by about 15%. MDPI 2022-04-03 /pmc/articles/PMC9000561/ /pubmed/35407974 http://dx.doi.org/10.3390/ma15072642 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shcherban’, Evgenii M.
Stel’makh, Sergey A.
Beskopylny, Alexey
Mailyan, Levon R.
Meskhi, Besarion
Shuyskiy, Anatoly
Beskopylny, Nikita
Dotsenko, Natal’ya
Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title_full Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title_fullStr Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title_full_unstemmed Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title_short Mathematical Modeling and Experimental Substantiation of the Gas Release Process in the Production of Non-Autoclaved Aerated Concrete
title_sort mathematical modeling and experimental substantiation of the gas release process in the production of non-autoclaved aerated concrete
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000561/
https://www.ncbi.nlm.nih.gov/pubmed/35407974
http://dx.doi.org/10.3390/ma15072642
work_keys_str_mv AT shcherbanevgeniim mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT stelmakhsergeya mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT beskopylnyalexey mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT mailyanlevonr mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT meskhibesarion mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT shuyskiyanatoly mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT beskopylnynikita mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete
AT dotsenkonatalya mathematicalmodelingandexperimentalsubstantiationofthegasreleaseprocessintheproductionofnonautoclavedaeratedconcrete