Fine-grained concrete with various types of fibers

This paper investigates the strength properties of the fine-grained concrete reinforced with the amorphous fiber based on the Fe-B-C system and obtained by the "spinning" method, and concretes reinforced with commercially available types of fibers: fiber based on mineral wool, basalt fiber...

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Main Authors: Yasmin Begich, Sergey Klyuev, Vladislav Jos, Artemiy Cherkashin
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2020-09-01
Series:Инженерно-строительный журнал
Subjects:
Online Access:https://engstroy.spbstu.ru/en/article/2020.97.2/
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spelling doaj-b6891d7062924bd2851d8c9f2be6ec722021-03-02T09:12:51ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-03052020-09-019759702970210.18720/MCE.97.2Fine-grained concrete with various types of fibersYasmin Begich0Sergey Klyuev1Vladislav Jos2https://orcid.org/0000-0003-2067-5585Artemiy Cherkashin3Peter the Great St. Petersburg Polytechnic UniversityBelgorod State technological University named after V.G. ShukhovPeter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityThis paper investigates the strength properties of the fine-grained concrete reinforced with the amorphous fiber based on the Fe-B-C system and obtained by the "spinning" method, and concretes reinforced with commercially available types of fibers: fiber based on mineral wool, basalt fiber, fiberglass, steel and polypropylene fibers. The flexural and compressive strength tests with the fiber-reinforced concrete specimens were carried out in accordance with the standard method corresponding to the Russian State Standard. The analysis of results was made by comparison with the characteristics of the control specimens without reinforcement. The best flexural strength characteristics were shown by specimens with the amorphous fiber, while the highest compressive strength was demonstrated with the steel fiber. The addition of the amorphous fibers leads to an increase of 56 % in the flexural strength, but decreases the compressive strength by 30 % compared to the control specimens, which proves the efficiency of this fiber working in bending. The addition of the steel fiber shows an increase of 20 % in flexural strength and an increase of 14 % in compressive strength, which confirms the positive effect of adding a commercially available fiber to the fine-grained concrete. The compounds of the fiber concrete with the compression strength limit up to 38 MPa and tensile strength in bending up to 12 MPa were developed, which allows to use amorphous fiber as a compound of fine-grained concrete in the construction industry.https://engstroy.spbstu.ru/en/article/2020.97.2/fiberfine-grained concreteamorphous fiberstrength propertiesfiber reinforced materialsfiber-reinforced concrete cementsbinders concretescementitious concretemechanical activation
collection DOAJ
language English
format Article
sources DOAJ
author Yasmin Begich
Sergey Klyuev
Vladislav Jos
Artemiy Cherkashin
spellingShingle Yasmin Begich
Sergey Klyuev
Vladislav Jos
Artemiy Cherkashin
Fine-grained concrete with various types of fibers
Инженерно-строительный журнал
fiber
fine-grained concrete
amorphous fiber
strength properties
fiber reinforced materials
fiber-reinforced concrete cements
binders concretes
cementitious concrete
mechanical activation
author_facet Yasmin Begich
Sergey Klyuev
Vladislav Jos
Artemiy Cherkashin
author_sort Yasmin Begich
title Fine-grained concrete with various types of fibers
title_short Fine-grained concrete with various types of fibers
title_full Fine-grained concrete with various types of fibers
title_fullStr Fine-grained concrete with various types of fibers
title_full_unstemmed Fine-grained concrete with various types of fibers
title_sort fine-grained concrete with various types of fibers
publisher Peter the Great St. Petersburg Polytechnic University
series Инженерно-строительный журнал
issn 2071-0305
publishDate 2020-09-01
description This paper investigates the strength properties of the fine-grained concrete reinforced with the amorphous fiber based on the Fe-B-C system and obtained by the "spinning" method, and concretes reinforced with commercially available types of fibers: fiber based on mineral wool, basalt fiber, fiberglass, steel and polypropylene fibers. The flexural and compressive strength tests with the fiber-reinforced concrete specimens were carried out in accordance with the standard method corresponding to the Russian State Standard. The analysis of results was made by comparison with the characteristics of the control specimens without reinforcement. The best flexural strength characteristics were shown by specimens with the amorphous fiber, while the highest compressive strength was demonstrated with the steel fiber. The addition of the amorphous fibers leads to an increase of 56 % in the flexural strength, but decreases the compressive strength by 30 % compared to the control specimens, which proves the efficiency of this fiber working in bending. The addition of the steel fiber shows an increase of 20 % in flexural strength and an increase of 14 % in compressive strength, which confirms the positive effect of adding a commercially available fiber to the fine-grained concrete. The compounds of the fiber concrete with the compression strength limit up to 38 MPa and tensile strength in bending up to 12 MPa were developed, which allows to use amorphous fiber as a compound of fine-grained concrete in the construction industry.
topic fiber
fine-grained concrete
amorphous fiber
strength properties
fiber reinforced materials
fiber-reinforced concrete cements
binders concretes
cementitious concrete
mechanical activation
url https://engstroy.spbstu.ru/en/article/2020.97.2/
work_keys_str_mv AT yasminbegich finegrainedconcretewithvarioustypesoffibers
AT sergeyklyuev finegrainedconcretewithvarioustypesoffibers
AT vladislavjos finegrainedconcretewithvarioustypesoffibers
AT artemiycherkashin finegrainedconcretewithvarioustypesoffibers
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