COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES

Development of nanotechnologies allows to solve a number of problems of construction materials science: increase in strength, durability, abrasion and corrosion resistance that determines operational reliability of building constructions. Generally it is achieved due to nanoparticles that modify the...

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Main Authors: B. M. Khroustalev, S. N. Leonovich, V. V. Potapov, E. N. Grushevskaya
Format: Article
Language:Russian
Published: Belarusian National Technical University 2017-11-01
Series:Nauka i Tehnika
Subjects:
Online Access:https://sat.bntu.by/jour/article/view/1274
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spelling doaj-752729b6034245bfb425d19fabb18e3e2021-07-29T08:29:35ZrusBelarusian National Technical UniversityNauka i Tehnika2227-10312414-03922017-11-0116645946510.21122/2227-1031-2017-16-6-459-4651199COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVESB. M. Khroustalev0S. N. Leonovich1V. V. Potapov2E. N. Grushevskaya3Belarusian National Technical UniversityBelarusian National Technical UniversityScience Scientific Research Geotechnological Center Far Eastern Branch of Russian Academy of SciencesScience Scientific Research Geotechnological Center Far Eastern Branch of Russian Academy of SciencesDevelopment of nanotechnologies allows to solve a number of problems of construction materials science: increase in strength, durability, abrasion and corrosion resistance that determines operational reliability of building constructions. Generally it is achieved due to nanoparticles that modify the structure and properties of the existing materials or products and are entered into their volume or on a surface layer. It’s theoretically and experimentally proved that the modified water has the bigger activity owing to the change of the ionic composition influencing the рН size and other parameters. As nanoparticles have a high level of surface energy, they show the increased tendency to agglomeration, meanwhile the size of agglomerates can reach several micrometers. In this regard an urgent task is to equally distribute and disaggregate the nanoparticles in the volume of tempering water. The experiments on studying of influence of the nanoparticles of silica distributed in volume of liquid by means of ultrasonic processing on characteristics of cement and sand solution and heavy concrete have been conducted. Nanoadditive influence on density, speed of strength development, final strength under compression of materials on the basis of cement depending on nanoadditive mass percent has been established.https://sat.bntu.by/jour/article/view/1274hydrothermal solutionmodifiersnanosilicaequal distributiondurability
collection DOAJ
language Russian
format Article
sources DOAJ
author B. M. Khroustalev
S. N. Leonovich
V. V. Potapov
E. N. Grushevskaya
spellingShingle B. M. Khroustalev
S. N. Leonovich
V. V. Potapov
E. N. Grushevskaya
COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
Nauka i Tehnika
hydrothermal solution
modifiers
nanosilica
equal distribution
durability
author_facet B. M. Khroustalev
S. N. Leonovich
V. V. Potapov
E. N. Grushevskaya
author_sort B. M. Khroustalev
title COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
title_short COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
title_full COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
title_fullStr COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
title_full_unstemmed COMPOSITE MATERIALS BASED ON CEMENT BINDERS MODIFIED WITH SiO2 NANOADDITIVES
title_sort composite materials based on cement binders modified with sio2 nanoadditives
publisher Belarusian National Technical University
series Nauka i Tehnika
issn 2227-1031
2414-0392
publishDate 2017-11-01
description Development of nanotechnologies allows to solve a number of problems of construction materials science: increase in strength, durability, abrasion and corrosion resistance that determines operational reliability of building constructions. Generally it is achieved due to nanoparticles that modify the structure and properties of the existing materials or products and are entered into their volume or on a surface layer. It’s theoretically and experimentally proved that the modified water has the bigger activity owing to the change of the ionic composition influencing the рН size and other parameters. As nanoparticles have a high level of surface energy, they show the increased tendency to agglomeration, meanwhile the size of agglomerates can reach several micrometers. In this regard an urgent task is to equally distribute and disaggregate the nanoparticles in the volume of tempering water. The experiments on studying of influence of the nanoparticles of silica distributed in volume of liquid by means of ultrasonic processing on characteristics of cement and sand solution and heavy concrete have been conducted. Nanoadditive influence on density, speed of strength development, final strength under compression of materials on the basis of cement depending on nanoadditive mass percent has been established.
topic hydrothermal solution
modifiers
nanosilica
equal distribution
durability
url https://sat.bntu.by/jour/article/view/1274
work_keys_str_mv AT bmkhroustalev compositematerialsbasedoncementbindersmodifiedwithsio2nanoadditives
AT snleonovich compositematerialsbasedoncementbindersmodifiedwithsio2nanoadditives
AT vvpotapov compositematerialsbasedoncementbindersmodifiedwithsio2nanoadditives
AT engrushevskaya compositematerialsbasedoncementbindersmodifiedwithsio2nanoadditives
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