Composite binders for concrete of protective structures

The composite binders, obtained as a result of joint mechanochemical activation of Portland cement, rice husk ash, quartz sand, screening of limestone crushing and plasticizing additive were considered. The type of binder influence to the rheological and mechanical characteristics of selfcompacting...

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Main Authors: Roman Fediuk, Valeriy Lesovik, Aleksandr Mochalov, Kamil Otsokov, Irina Lashina, Roman Timokhin
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2018-10-01
Series:Инженерно-строительный журнал
Subjects:
Online Access:https://engstroy.spbstu.ru/en/article/2018.82.19/
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spelling doaj-bfb81e71ef9848eda2764cb8160a939b2021-03-04T11:27:52ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-03052018-10-0182620821810.18720/MCE.82.19Composite binders for concrete of protective structuresRoman Fediuk0https://orcid.org/0000-0002-2279-1240Valeriy Lesovik1 Aleksandr Mochalov2Kamil Otsokov3Irina Lashina4 Roman Timokhin5Far Eastern Federal UniversityV.G. Shukhov Belgorod State Technological UniversityFar Eastern Federal UniversityDaghestan State Technical UniversityV.G. Shukhov Belgorod State Technological UniversityFar Eastern Federal UniversityThe composite binders, obtained as a result of joint mechanochemical activation of Portland cement, rice husk ash, quartz sand, screening of limestone crushing and plasticizing additive were considered. The type of binder influence to the rheological and mechanical characteristics of selfcompacting concrete mixtures and fiber-reinforced concrete is established. By scanning electron microscopy, it was revealed that the application of the developed binder leads to the compacting of the microstructure, with lamellar and acicular neoplasms filling the isometric and anisometric pores. This leades to the formation of a rigid matrix with a lower porosity, which in turn leads to an increase in the compressive strength of the formed cement stone above 70 MPa. The use of a composite binder increases the physical and mechanical characteristics of fine-grained concrete accordingly (Rcompr over 80 MPa, elastic modulus greater than 40 GPa). The studied rheological characteristics showed that all mixtures with the use of composite binder meet the requirements of fluidity and segregation resistance for self-compacting concrete mixtures. The revealed indexes of shock endurance of fiber-reinforced concrete (30 % higher than for standard reinforced concrete) allow using this material for protective structures.https://engstroy.spbstu.ru/en/article/2018.82.19/self-compacting concretecomposite binderpozzolanic materialstechnogenic raw materialsfresh propertiesmechanical properties
collection DOAJ
language English
format Article
sources DOAJ
author Roman Fediuk
Valeriy Lesovik
Aleksandr Mochalov
Kamil Otsokov
Irina Lashina
Roman Timokhin
spellingShingle Roman Fediuk
Valeriy Lesovik
Aleksandr Mochalov
Kamil Otsokov
Irina Lashina
Roman Timokhin
Composite binders for concrete of protective structures
Инженерно-строительный журнал
self-compacting concrete
composite binder
pozzolanic materials
technogenic raw materials
fresh properties
mechanical properties
author_facet Roman Fediuk
Valeriy Lesovik
Aleksandr Mochalov
Kamil Otsokov
Irina Lashina
Roman Timokhin
author_sort Roman Fediuk
title Composite binders for concrete of protective structures
title_short Composite binders for concrete of protective structures
title_full Composite binders for concrete of protective structures
title_fullStr Composite binders for concrete of protective structures
title_full_unstemmed Composite binders for concrete of protective structures
title_sort composite binders for concrete of protective structures
publisher Peter the Great St. Petersburg Polytechnic University
series Инженерно-строительный журнал
issn 2071-0305
publishDate 2018-10-01
description The composite binders, obtained as a result of joint mechanochemical activation of Portland cement, rice husk ash, quartz sand, screening of limestone crushing and plasticizing additive were considered. The type of binder influence to the rheological and mechanical characteristics of selfcompacting concrete mixtures and fiber-reinforced concrete is established. By scanning electron microscopy, it was revealed that the application of the developed binder leads to the compacting of the microstructure, with lamellar and acicular neoplasms filling the isometric and anisometric pores. This leades to the formation of a rigid matrix with a lower porosity, which in turn leads to an increase in the compressive strength of the formed cement stone above 70 MPa. The use of a composite binder increases the physical and mechanical characteristics of fine-grained concrete accordingly (Rcompr over 80 MPa, elastic modulus greater than 40 GPa). The studied rheological characteristics showed that all mixtures with the use of composite binder meet the requirements of fluidity and segregation resistance for self-compacting concrete mixtures. The revealed indexes of shock endurance of fiber-reinforced concrete (30 % higher than for standard reinforced concrete) allow using this material for protective structures.
topic self-compacting concrete
composite binder
pozzolanic materials
technogenic raw materials
fresh properties
mechanical properties
url https://engstroy.spbstu.ru/en/article/2018.82.19/
work_keys_str_mv AT romanfediuk compositebindersforconcreteofprotectivestructures
AT valeriylesovik compositebindersforconcreteofprotectivestructures
AT aleksandrmochalov compositebindersforconcreteofprotectivestructures
AT kamilotsokov compositebindersforconcreteofprotectivestructures
AT irinalashina compositebindersforconcreteofprotectivestructures
AT romantimokhin compositebindersforconcreteofprotectivestructures
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