Fiber concrete for the construction industry

The article considers the use of dispersed concrete reinforcement. The efficiency of reinforcing of concrete by a fiber is proved as its strength and deformative characteristics increase. For receiving composite binders were used: Portland cement of TsEM I 42.5H GOST 31108-2003 (Russian State Standa...

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Main Authors: Sergey Klyuev, Alexander Klyuev, Nikolai Vatin
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2018-12-01
Series:Инженерно-строительный журнал
Subjects:
Online Access:https://engstroy.spbstu.ru/en/article/2018.84.4/
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author Sergey Klyuev
Alexander Klyuev
Nikolai Vatin
author_facet Sergey Klyuev
Alexander Klyuev
Nikolai Vatin
author_sort Sergey Klyuev
collection DOAJ
description The article considers the use of dispersed concrete reinforcement. The efficiency of reinforcing of concrete by a fiber is proved as its strength and deformative characteristics increase. For receiving composite binders were used: Portland cement of TsEM I 42.5H GOST 31108-2003 (Russian State Standard), blast furnace granulated slag with Mo = 1.14 and Ma = 0.2, mineral plasticizer Tricosal 181 softener in essence supplementing particle size distribution knitting, waste of wet magnetic separation of ferruterous quartzites (WMS). Different types of composite binders were developed and their physicmechanical characteristics are defined. For disperse reinforcing alkaliproof glass fiber was chosen; it is produced in the form of a roving. The analysis of results showed positive influence of the composite binders on mixes strength characteristics. The microstructure of mixes on the basis of composite binders has significant effect on properties of a composite. The conducted researches showed that the most effective length of a glass fiber is 12 mm, percent of reinforcing – 4.5 % on weight at the relation of cement and sand equal 1:3. Optimum selection of filler and also use of fiber glass in an optimum dosage allowed to increase concrete durability by stretching at a bend for 172 % on a Portland сement and to 225 % on composite binders that allows to apply it to designs.
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spelling doaj.art-6a21e8194c9f4dd3a2d768cce8462bea2022-12-21T18:18:38ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-03052018-12-01848414710.18720/MCE.84.4Fiber concrete for the construction industrySergey Klyuev0Alexander Klyuev1Nikolai Vatin2https://orcid.org/0000-0002-1196-8004Sergey Klyuev Affiliation Belgorod State Technological University named after V.G. ShukhovSergey Klyuev Affiliation Belgorod State Technological University named after V.G. ShukhovPeter the Great St. Petersburg Polytechnic UniversityThe article considers the use of dispersed concrete reinforcement. The efficiency of reinforcing of concrete by a fiber is proved as its strength and deformative characteristics increase. For receiving composite binders were used: Portland cement of TsEM I 42.5H GOST 31108-2003 (Russian State Standard), blast furnace granulated slag with Mo = 1.14 and Ma = 0.2, mineral plasticizer Tricosal 181 softener in essence supplementing particle size distribution knitting, waste of wet magnetic separation of ferruterous quartzites (WMS). Different types of composite binders were developed and their physicmechanical characteristics are defined. For disperse reinforcing alkaliproof glass fiber was chosen; it is produced in the form of a roving. The analysis of results showed positive influence of the composite binders on mixes strength characteristics. The microstructure of mixes on the basis of composite binders has significant effect on properties of a composite. The conducted researches showed that the most effective length of a glass fiber is 12 mm, percent of reinforcing – 4.5 % on weight at the relation of cement and sand equal 1:3. Optimum selection of filler and also use of fiber glass in an optimum dosage allowed to increase concrete durability by stretching at a bend for 172 % on a Portland сement and to 225 % on composite binders that allows to apply it to designs.https://engstroy.spbstu.ru/en/article/2018.84.4/composite bindersfibre concreteblast furnace granulated slagfiberreinforcement
spellingShingle Sergey Klyuev
Alexander Klyuev
Nikolai Vatin
Fiber concrete for the construction industry
Инженерно-строительный журнал
composite binders
fibre concrete
blast furnace granulated slag
fiber
reinforcement
title Fiber concrete for the construction industry
title_full Fiber concrete for the construction industry
title_fullStr Fiber concrete for the construction industry
title_full_unstemmed Fiber concrete for the construction industry
title_short Fiber concrete for the construction industry
title_sort fiber concrete for the construction industry
topic composite binders
fibre concrete
blast furnace granulated slag
fiber
reinforcement
url https://engstroy.spbstu.ru/en/article/2018.84.4/
work_keys_str_mv AT sergeyklyuev fiberconcretefortheconstructionindustry
AT alexanderklyuev fiberconcretefortheconstructionindustry
AT nikolaivatin fiberconcretefortheconstructionindustry