Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface

Objective. The aim of the study is to find rational ways to change the total energy consumption spent on cement production in terms of 1 m3 of concrete.Method. To obtain reliable data, experimental and laboratory methods for testing cement were used.Result. Tests have shown that at constant concrete...

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Main Authors: A. A. Krutilin, T. V. Krapchetova, N. A. Inkova, O. K. Pakhomova
Format: Article
Language:Russian
Published: Dagestan State Technical University 2022-05-01
Series:Вестник Дагестанского государственного технического университета: Технические науки
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Online Access:https://vestnik.dgtu.ru/jour/article/view/1047
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author A. A. Krutilin
T. V. Krapchetova
N. A. Inkova
O. K. Pakhomova
author_facet A. A. Krutilin
T. V. Krapchetova
N. A. Inkova
O. K. Pakhomova
author_sort A. A. Krutilin
collection DOAJ
description Objective. The aim of the study is to find rational ways to change the total energy consumption spent on cement production in terms of 1 m3 of concrete.Method. To obtain reliable data, experimental and laboratory methods for testing cement were used.Result. Tests have shown that at constant concrete strength, the consumption of cement per 1 m3 of concrete decreases with an increase in the specific surface of the binder, especially significantly in the case of Portland slag cement. The calculation results show that with an increase in the specific surface area of cements, the total energy consumption for their production, referred to 1 m3 of concrete of the same strength, decreases, and most significantly with an increase in the specific surface area of cements from 300 to 400 m2 /kg and less from 400 to 500 m2 /kg.Conclusion. To reduce the energy intensity of concrete, it is necessary to use cements ground much thinner than they are ground at cement plants in open-type mills, despite the increase in energy consumption. Cements with high fineness of grinding can reduce the cycle of heat and moisture treatment of concrete products. Reducing the cycle allows to increase the turnover of molds and labor productivity at precast concrete plants, as well as further reduce energy consumption for the production of prefabricated reinforced concrete structures.
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language Russian
publishDate 2022-05-01
publisher Dagestan State Technical University
record_format Article
series Вестник Дагестанского государственного технического университета: Технические науки
spelling doaj-art-0f8b66fb879c4e7f8ca752b0939cb3d62025-08-04T13:03:21ZrusDagestan State Technical UniversityВестник Дагестанского государственного технического университета: Технические науки2073-61852542-095X2022-05-0149113313910.21822/2073-6185-2022-49-1-133-139689Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surfaceA. A. Krutilin0T. V. Krapchetova1N. A. Inkova2O. K. Pakhomova3Volgograd State Technical University (Sebryakov Branch)Sebryakovtsement JSCVolgograd State Technical University (Sebryakov Branch)Volgograd State Technical University (Sebryakov Branch)Objective. The aim of the study is to find rational ways to change the total energy consumption spent on cement production in terms of 1 m3 of concrete.Method. To obtain reliable data, experimental and laboratory methods for testing cement were used.Result. Tests have shown that at constant concrete strength, the consumption of cement per 1 m3 of concrete decreases with an increase in the specific surface of the binder, especially significantly in the case of Portland slag cement. The calculation results show that with an increase in the specific surface area of cements, the total energy consumption for their production, referred to 1 m3 of concrete of the same strength, decreases, and most significantly with an increase in the specific surface area of cements from 300 to 400 m2 /kg and less from 400 to 500 m2 /kg.Conclusion. To reduce the energy intensity of concrete, it is necessary to use cements ground much thinner than they are ground at cement plants in open-type mills, despite the increase in energy consumption. Cements with high fineness of grinding can reduce the cycle of heat and moisture treatment of concrete products. Reducing the cycle allows to increase the turnover of molds and labor productivity at precast concrete plants, as well as further reduce energy consumption for the production of prefabricated reinforced concrete structures.https://vestnik.dgtu.ru/jour/article/view/1047finely ground cementsincrease in fineness of grindingportland slag cement,granulated slagincrease in the specific surface of the binderspecific energy consumption
spellingShingle A. A. Krutilin
T. V. Krapchetova
N. A. Inkova
O. K. Pakhomova
Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
Вестник Дагестанского государственного технического университета: Технические науки
finely ground cements
increase in fineness of grinding
portland slag cement,
granulated slag
increase in the specific surface of the binder
specific energy consumption
title Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
title_full Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
title_fullStr Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
title_full_unstemmed Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
title_short Dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
title_sort dependence of energy consumption in terms of 1 m 3 of concrete when using cements of different specific surface
topic finely ground cements
increase in fineness of grinding
portland slag cement,
granulated slag
increase in the specific surface of the binder
specific energy consumption
url https://vestnik.dgtu.ru/jour/article/view/1047
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