Сement based compositions with complex modifying additives based on glyoxal

Introduction. Due to the multicomponent composition, cement based concrete has a high potential for improving technical characteristics by controlling technological processes or the quality of raw materials, which makes it possible to develop composites with specified requirements for the constructi...

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Main Authors: A. I. Kudyakov, A. S. Simakova, A. B. Steshenko
Format: Article
Language:Russian
Published: Siberian State Automobile and Highway University 2022-01-01
Series:Вестник СибАДИ
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Online Access:https://vestnik.sibadi.org/jour/article/view/1374
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author A. I. Kudyakov
A. S. Simakova
A. B. Steshenko
author_facet A. I. Kudyakov
A. S. Simakova
A. B. Steshenko
author_sort A. I. Kudyakov
collection DOAJ
description Introduction. Due to the multicomponent composition, cement based concrete has a high potential for improving technical characteristics by controlling technological processes or the quality of raw materials, which makes it possible to develop composites with specified requirements for the construction of modern resource and energysaving buildings, including for the northern territories of Russia. With the transition to the micro level of the formation of the structure of cement based concretes, new opportunities open up for the directed regulation of properties. Based on this, in order to improve the quality of concrete by improving the structure of the hardened cement paste, a method was proposed for introducing modifiers into the mixture, which directly affect the new growths in the ‘cement-water’ system, which makes it possible to control the process of structure formation of the hardened cement paste.Materials and methods. Research has been carried out using test methods set out in national standards and physical and chemical analysis: thermal analysis and scanning electron microscopy. The results of a study of the effect of complex modifying additives (CMA) based on an aqueous solution of glyoxal and organic acids on the rheological and strength properties of hardened cement paste are presented, the regularities of the processes and the mechanism of structure formation of the modified cement paste are determined.Results. The optimal compositions of a cement based composition based on an aqueous solution of glyoxal have been determined. On the first day of hardening of hardened cement paste with CMA, including polylactic acid and an aqueous solution of glyoxal, as well as lactic acid and an aqueous solution of glyoxal, the strength increases by 23.5%, and at 28 days of age - up to 63% compared to the control composition. Physicochemical studies found that in hardened cement paste with CMA based on an aqueous solution of glyoxal and organic acids, the density and homogeneity of the structure increases, and the content of low-basic hydrosilicates also increases.Conclusion. The developed complex additives are recommended for use in the production of cement based concretes with the required rate of structure formation and high strength.
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spelling doaj-art-45938ed7cd3e42a88788d2f551502c692025-08-20T02:59:23ZrusSiberian State Automobile and Highway UniversityВестник СибАДИ2071-72962658-56262022-01-0118676077110.26518/2071-7296-2021-18-6-760-771715Сement based compositions with complex modifying additives based on glyoxalA. I. Kudyakov0A. S. Simakova1A. B. Steshenko2Tomsk State University of Architecture and BuildingTomsk State University of Architecture and BuildingTomsk State University of Architecture and BuildingIntroduction. Due to the multicomponent composition, cement based concrete has a high potential for improving technical characteristics by controlling technological processes or the quality of raw materials, which makes it possible to develop composites with specified requirements for the construction of modern resource and energysaving buildings, including for the northern territories of Russia. With the transition to the micro level of the formation of the structure of cement based concretes, new opportunities open up for the directed regulation of properties. Based on this, in order to improve the quality of concrete by improving the structure of the hardened cement paste, a method was proposed for introducing modifiers into the mixture, which directly affect the new growths in the ‘cement-water’ system, which makes it possible to control the process of structure formation of the hardened cement paste.Materials and methods. Research has been carried out using test methods set out in national standards and physical and chemical analysis: thermal analysis and scanning electron microscopy. The results of a study of the effect of complex modifying additives (CMA) based on an aqueous solution of glyoxal and organic acids on the rheological and strength properties of hardened cement paste are presented, the regularities of the processes and the mechanism of structure formation of the modified cement paste are determined.Results. The optimal compositions of a cement based composition based on an aqueous solution of glyoxal have been determined. On the first day of hardening of hardened cement paste with CMA, including polylactic acid and an aqueous solution of glyoxal, as well as lactic acid and an aqueous solution of glyoxal, the strength increases by 23.5%, and at 28 days of age - up to 63% compared to the control composition. Physicochemical studies found that in hardened cement paste with CMA based on an aqueous solution of glyoxal and organic acids, the density and homogeneity of the structure increases, and the content of low-basic hydrosilicates also increases.Conclusion. The developed complex additives are recommended for use in the production of cement based concretes with the required rate of structure formation and high strength.https://vestnik.sibadi.org/jour/article/view/1374structural and structural heat-insulating concretescement paste and hardened cement paste40% aqueous solution of glyoxallactic acidpolylactic acidnormal densitysetting timestructure formationcompressive strength of building compositions
spellingShingle A. I. Kudyakov
A. S. Simakova
A. B. Steshenko
Сement based compositions with complex modifying additives based on glyoxal
Вестник СибАДИ
structural and structural heat-insulating concretes
cement paste and hardened cement paste
40% aqueous solution of glyoxal
lactic acid
polylactic acid
normal density
setting time
structure formation
compressive strength of building compositions
title Сement based compositions with complex modifying additives based on glyoxal
title_full Сement based compositions with complex modifying additives based on glyoxal
title_fullStr Сement based compositions with complex modifying additives based on glyoxal
title_full_unstemmed Сement based compositions with complex modifying additives based on glyoxal
title_short Сement based compositions with complex modifying additives based on glyoxal
title_sort сement based compositions with complex modifying additives based on glyoxal
topic structural and structural heat-insulating concretes
cement paste and hardened cement paste
40% aqueous solution of glyoxal
lactic acid
polylactic acid
normal density
setting time
structure formation
compressive strength of building compositions
url https://vestnik.sibadi.org/jour/article/view/1374
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AT assimakova sementbasedcompositionswithcomplexmodifyingadditivesbasedonglyoxal
AT absteshenko sementbasedcompositionswithcomplexmodifyingadditivesbasedonglyoxal