TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE

One of the main ways to improve physical and mechanical properties of cement concrete is an introduction of ash obtained due to burning of fossil fuels into concrete mix. The concrete mixes with ash are characterized by high cohesion, less water gain and disintegration. At the same time the concrete...

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Main Authors: G. D. Liakhevich, A. G. Liakhevich, D. V. Ortner
Format: Article
Language:Russian
Published: Belarusian National Technical University 2015-05-01
Series:Nauka i Tehnika
Subjects:
Online Access:https://sat.bntu.by/jour/article/view/807
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spelling doaj-d360366c419241ca910cfa34153fb9342021-07-29T08:29:33ZrusBelarusian National Technical UniversityNauka i Tehnika2227-10312414-03922015-05-01021623799TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETEG. D. Liakhevich0A. G. Liakhevich1D. V. Ortner2Belarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityOne of the main ways to improve physical and mechanical properties of cement concrete is an introduction of ash obtained due to burning of fossil fuels into concrete mix. The concrete mixes with ash are characterized by high cohesion, less water gain and disintegration. At the same time the concrete has high strength, density, water resistance, resistance to sulfate corrosion. The aim of this paper is to explore the possibility to use peat ash and slag of peat enterprises of the Republic of Belarus in the concrete for improvement of its physical and mechanical properties and characteristics of peat ash, slag, micro-silica, cement, superplasticizing agent. Compositions and technology for preparation of concrete mixes have been developed and concrete samples have been have been fabricated and tested in the paper. It has been shown that the concrete containing ash, slag obtained due to burning of peat in the industrial installations of the Usiazhsky and Lidsky Peat Briquette Plants and also MK-85-grade micro-silica NSPKSAUsF-1-grade superplasticizing agent have concrete tensile strength within 78–134 MPa under axial compression and 53 MPa – for the control composition. This index is 1.5–2.5 times more than for the sample containing no additives.The usage of peat ash, slag together with MK-85-grade micro-silica and NSPKSAUsF-1-grade superplasticizing agent for fabrication of concrete and reinforced bridge and tunnel structures will provide the following advantages: reduction of cross-sectional area of structures while maintaining their bearing capacity due to higher value of tensile strength in case of axial compression; higher density, waterand gas tightness due to low water cement ratio; high resistance to aggressive environment due to lower content of capillary pores that ensures bridge structure longevity; achievement of environmental and social impacts.https://sat.bntu.by/jour/article/view/807peat ashslagmixescement concretephysical and mechanical propertiesefficiency of usageconcrete and reinforced structures
collection DOAJ
language Russian
format Article
sources DOAJ
author G. D. Liakhevich
A. G. Liakhevich
D. V. Ortner
spellingShingle G. D. Liakhevich
A. G. Liakhevich
D. V. Ortner
TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
Nauka i Tehnika
peat ash
slag
mixes
cement concrete
physical and mechanical properties
efficiency of usage
concrete and reinforced structures
author_facet G. D. Liakhevich
A. G. Liakhevich
D. V. Ortner
author_sort G. D. Liakhevich
title TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
title_short TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
title_full TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
title_fullStr TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
title_full_unstemmed TECHNOLOGY AND EFFICIENCY OF PEAT ASH USAGE IN CEMENT CONCRETE
title_sort technology and efficiency of peat ash usage in cement concrete
publisher Belarusian National Technical University
series Nauka i Tehnika
issn 2227-1031
2414-0392
publishDate 2015-05-01
description One of the main ways to improve physical and mechanical properties of cement concrete is an introduction of ash obtained due to burning of fossil fuels into concrete mix. The concrete mixes with ash are characterized by high cohesion, less water gain and disintegration. At the same time the concrete has high strength, density, water resistance, resistance to sulfate corrosion. The aim of this paper is to explore the possibility to use peat ash and slag of peat enterprises of the Republic of Belarus in the concrete for improvement of its physical and mechanical properties and characteristics of peat ash, slag, micro-silica, cement, superplasticizing agent. Compositions and technology for preparation of concrete mixes have been developed and concrete samples have been have been fabricated and tested in the paper. It has been shown that the concrete containing ash, slag obtained due to burning of peat in the industrial installations of the Usiazhsky and Lidsky Peat Briquette Plants and also MK-85-grade micro-silica NSPKSAUsF-1-grade superplasticizing agent have concrete tensile strength within 78–134 MPa under axial compression and 53 MPa – for the control composition. This index is 1.5–2.5 times more than for the sample containing no additives.The usage of peat ash, slag together with MK-85-grade micro-silica and NSPKSAUsF-1-grade superplasticizing agent for fabrication of concrete and reinforced bridge and tunnel structures will provide the following advantages: reduction of cross-sectional area of structures while maintaining their bearing capacity due to higher value of tensile strength in case of axial compression; higher density, waterand gas tightness due to low water cement ratio; high resistance to aggressive environment due to lower content of capillary pores that ensures bridge structure longevity; achievement of environmental and social impacts.
topic peat ash
slag
mixes
cement concrete
physical and mechanical properties
efficiency of usage
concrete and reinforced structures
url https://sat.bntu.by/jour/article/view/807
work_keys_str_mv AT gdliakhevich technologyandefficiencyofpeatashusageincementconcrete
AT agliakhevich technologyandefficiencyofpeatashusageincementconcrete
AT dvortner technologyandefficiencyofpeatashusageincementconcrete
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