Effect of reinforcement on the crack resistance of concrete slabs

A preliminary analysis of the available publications devoted to the study of crack resistance of reinforced concrete structures showed the absence of established general patterns of influence of important geometric parameters inherent in reinforced concrete elements on the distribution of the charac...

Full description

Bibliographic Details
Main Authors: A. Kutsenko, O. Kutsenko
Format: Article
Language:English
Published: National University of Life and Environmental Sciences of Ukraine 2022-08-01
Series:Machinery & Energetics
Subjects:
Online Access:https://technicalscience.com.ua/journals/t-13-3-2022/vpliv-armuvannya-na-trishchinostiykist-byetonnikh-plit
_version_ 1797260933386469376
author A. Kutsenko
O. Kutsenko
author_facet A. Kutsenko
O. Kutsenko
author_sort A. Kutsenko
collection DOAJ
description A preliminary analysis of the available publications devoted to the study of crack resistance of reinforced concrete structures showed the absence of established general patterns of influence of important geometric parameters inherent in reinforced concrete elements on the distribution of the characteristics of fracture mechanics along the crack front. Based on the analysis, the purpose of the study was formulated: to establish these regularities for a concrete slab reinforced with a system of longitudinal steel rods. When conducting the research, a linear and elastic model of concrete was used, and the stress intensity factor was considered as a characteristic of the fracture mechanics. A surface crack of constant depth located in the cross-section of the slab was postulated. It was assumed that its faces completely cover the cross-section of reinforcing rods. The crack depth, the depth of reinforcing rods, their diameter, and the distance between adjacent rods were chosen as dimensionless geometric parameters relative to the thickness of the slab. The slab was loaded with two types of loads applied to its ends: constant tensile stresses (pure tension) and linearly variable axial stresses (pure bending). The problem of determining the stress intensity coefficient depending on geometric parameters was reduced to the boundary problem of elasticity theory. The CalculiX finite element analysis package was used to solve it and obtain the stress-strain state of the slab. More than four hundred finite element models were constructed for various combinations of parameters. Based on the known displacements of the crack face points, the values of the stress intensity factor along the crack front were calculated using the relation obtained in the study. It is established that its values significantly depend on the diameter of the reinforcement, and therefore, when conducting practical calculations, it is not recommended to replace the action of reinforcement on concrete with concentrated force. Polynomial approximations with a relative error of 10% are obtained for extreme values of the stress intensity factor. The materials of the study can be useful in the design of reinforced concrete structures, and when studying or teaching a course in fracture mechanics
first_indexed 2024-03-07T23:01:54Z
format Article
id doaj.art-26a6188d22f84b9ab982a637d0db49ca
institution Directory Open Access Journal
issn 2663-1334
2663-1342
language English
last_indexed 2024-04-24T23:33:12Z
publishDate 2022-08-01
publisher National University of Life and Environmental Sciences of Ukraine
record_format Article
series Machinery & Energetics
spelling doaj.art-26a6188d22f84b9ab982a637d0db49ca2024-03-15T14:27:34ZengNational University of Life and Environmental Sciences of UkraineMachinery & Energetics2663-13342663-13422022-08-011333442https://doi.org/10.31548/machenergy.13(3).2022.34-42449Effect of reinforcement on the crack resistance of concrete slabsA. KutsenkoO. KutsenkoA preliminary analysis of the available publications devoted to the study of crack resistance of reinforced concrete structures showed the absence of established general patterns of influence of important geometric parameters inherent in reinforced concrete elements on the distribution of the characteristics of fracture mechanics along the crack front. Based on the analysis, the purpose of the study was formulated: to establish these regularities for a concrete slab reinforced with a system of longitudinal steel rods. When conducting the research, a linear and elastic model of concrete was used, and the stress intensity factor was considered as a characteristic of the fracture mechanics. A surface crack of constant depth located in the cross-section of the slab was postulated. It was assumed that its faces completely cover the cross-section of reinforcing rods. The crack depth, the depth of reinforcing rods, their diameter, and the distance between adjacent rods were chosen as dimensionless geometric parameters relative to the thickness of the slab. The slab was loaded with two types of loads applied to its ends: constant tensile stresses (pure tension) and linearly variable axial stresses (pure bending). The problem of determining the stress intensity coefficient depending on geometric parameters was reduced to the boundary problem of elasticity theory. The CalculiX finite element analysis package was used to solve it and obtain the stress-strain state of the slab. More than four hundred finite element models were constructed for various combinations of parameters. Based on the known displacements of the crack face points, the values of the stress intensity factor along the crack front were calculated using the relation obtained in the study. It is established that its values significantly depend on the diameter of the reinforcement, and therefore, when conducting practical calculations, it is not recommended to replace the action of reinforcement on concrete with concentrated force. Polynomial approximations with a relative error of 10% are obtained for extreme values of the stress intensity factor. The materials of the study can be useful in the design of reinforced concrete structures, and when studying or teaching a course in fracture mechanicshttps://technicalscience.com.ua/journals/t-13-3-2022/vpliv-armuvannya-na-trishchinostiykist-byetonnikh-plitfracture mechanicsstress intensity factorreinforced concrete structuresfinite element methodcalculix package
spellingShingle A. Kutsenko
O. Kutsenko
Effect of reinforcement on the crack resistance of concrete slabs
Machinery & Energetics
fracture mechanics
stress intensity factor
reinforced concrete structures
finite element method
calculix package
title Effect of reinforcement on the crack resistance of concrete slabs
title_full Effect of reinforcement on the crack resistance of concrete slabs
title_fullStr Effect of reinforcement on the crack resistance of concrete slabs
title_full_unstemmed Effect of reinforcement on the crack resistance of concrete slabs
title_short Effect of reinforcement on the crack resistance of concrete slabs
title_sort effect of reinforcement on the crack resistance of concrete slabs
topic fracture mechanics
stress intensity factor
reinforced concrete structures
finite element method
calculix package
url https://technicalscience.com.ua/journals/t-13-3-2022/vpliv-armuvannya-na-trishchinostiykist-byetonnikh-plit
work_keys_str_mv AT akutsenko effectofreinforcementonthecrackresistanceofconcreteslabs
AT okutsenko effectofreinforcementonthecrackresistanceofconcreteslabs