Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test
This paper presents determination of the Mohr-Coulomb material parameters for concrete under indirect tensile testing, design of experiments and numerical simulations. Experiments are designed to control input variables associated with inhomogeneous starting material, sample preparation and testing...
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Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek
2019-01-01
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Online Access: | https://hrcak.srce.hr/file/320426 |
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doaj-ae04fc97ccd44e88befcbf71d40c4efb2020-11-25T02:13:28ZengFaculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek Tehnički Vjesnik1330-36511848-63392019-01-01262412419Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile TestDejan Vasović0Dragoslav Stojić1Selimir Lelović2University of Belgrade, Faculty of Architecture, Bulevar kralja Aleksandra 73, 11000 Belgrade, SerbiaUniversity of Niš, Faculty of Civil Engineering and Architecture, Aleksandra Medvedeva 14, 18000 Niš, SerbiaUniversity of Belgrade, Faculty of Civil Engineering, Bulevar kralja Aleksandra 73, 11000 Belgrade, SerbiaThis paper presents determination of the Mohr-Coulomb material parameters for concrete under indirect tensile testing, design of experiments and numerical simulations. Experiments are designed to control input variables associated with inhomogeneous starting material, sample preparation and testing equipment. Statistical analysis of the experimental data is applied in order to correlate material's deformational behaviour with change in cement content. Presented paper discusses a simple method, based on experimental and theoretical framework, to determine two material parameters for concrete: cohesion (c) and angle of internal friction (φ) from indirect tensile test. Cohesion is obtained from experimental results using elastic and plastic theory of concrete deformation. Prandtl's theory is applied to obtain the angle of internal friction from measured bearing capacity and cohesion. Numerical analysis by finite-element method is used for verification of experimental results, employing step-by-step integration procedure for solving the boundary value problem.https://hrcak.srce.hr/file/320426angle of internal frictioncohesionconcretefinite element method (FEM)indirect tensile strengthMohr-Coulomb |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dejan Vasović Dragoslav Stojić Selimir Lelović |
spellingShingle |
Dejan Vasović Dragoslav Stojić Selimir Lelović Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test Tehnički Vjesnik angle of internal friction cohesion concrete finite element method (FEM) indirect tensile strength Mohr-Coulomb |
author_facet |
Dejan Vasović Dragoslav Stojić Selimir Lelović |
author_sort |
Dejan Vasović |
title |
Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test |
title_short |
Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test |
title_full |
Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test |
title_fullStr |
Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test |
title_full_unstemmed |
Determination of the Mohr-Coulomb Material Parameters for Concrete under Indirect Tensile Test |
title_sort |
determination of the mohr-coulomb material parameters for concrete under indirect tensile test |
publisher |
Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek |
series |
Tehnički Vjesnik |
issn |
1330-3651 1848-6339 |
publishDate |
2019-01-01 |
description |
This paper presents determination of the Mohr-Coulomb material parameters for concrete under indirect tensile testing, design of experiments and numerical simulations. Experiments are designed to control input variables associated with inhomogeneous starting material, sample preparation and testing equipment. Statistical analysis of the experimental data is applied in order to correlate material's deformational behaviour with change in cement content. Presented paper discusses a simple method, based on experimental and theoretical framework, to determine two material parameters for concrete: cohesion (c) and angle of internal friction (φ) from indirect tensile test. Cohesion is obtained from experimental results using elastic and plastic theory of concrete deformation. Prandtl's theory is applied to obtain the angle of internal friction from measured bearing capacity and cohesion. Numerical analysis by finite-element method is used for verification of experimental results, employing step-by-step integration procedure for solving the boundary value problem. |
topic |
angle of internal friction cohesion concrete finite element method (FEM) indirect tensile strength Mohr-Coulomb |
url |
https://hrcak.srce.hr/file/320426 |
work_keys_str_mv |
AT dejanvasovic determinationofthemohrcoulombmaterialparametersforconcreteunderindirecttensiletest AT dragoslavstojic determinationofthemohrcoulombmaterialparametersforconcreteunderindirecttensiletest AT selimirlelovic determinationofthemohrcoulombmaterialparametersforconcreteunderindirecttensiletest |
_version_ |
1724905021835837440 |