Stress-Strain Analysis of Sand Subjected to Triaxial Loading

An influence of the end boundary conditions to distribution of stress and strains in a soil specimen during conventional compression triaxial tests is analyzed by the experimental and numerical methods. An evaluation of actual stress state is important when determining the shear strength parameters...

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Main Authors: Neringa Dirgėlienė, Arnoldas Norkus, Jonas Amšiejus, Šarūnas Skuodis, Daiva Žilionienė
Format: Article
Language:English
Published: RTU Press 2013-03-01
Series:The Baltic Journal of Road and Bridge Engineering
Subjects:
Online Access:https://bjrbe-journals.rtu.lv/article/view/3534
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spelling doaj-949ced8a246a48b7b2b867482c1245df2020-11-25T03:08:05ZengRTU PressThe Baltic Journal of Road and Bridge Engineering1822-427X1822-42882013-03-0181253110.3846/bjrbe.2013.041957Stress-Strain Analysis of Sand Subjected to Triaxial LoadingNeringa Dirgėlienė0Arnoldas Norkus1Jonas Amšiejus2Šarūnas Skuodis3Daiva Žilionienė4Dept of Geotechnical Engineering, Vilnius Gediminas Technical University, Saulėtekio al.11, 10223 Vilnius, LithuaniaDept of Geotechnical Engineering, Vilnius Gediminas Technical University, Saulėtekio al.11, 10223 Vilnius, LithuaniaDept of Geotechnical Engineering, Vilnius Gediminas Technical University, Saulėtekio al.11, 10223 Vilnius, LithuaniaDept of Geotechnical Engineering, Vilnius Gediminas Technical University, Saulėtekio al.11, 10223 Vilnius, LithuaniaDept of Roads, Vilnius Gediminas Technical University, Saulėtekio al.11, 10223 Vilnius, LithuaniaAn influence of the end boundary conditions to distribution of stress and strains in a soil specimen during conventional compression triaxial tests is analyzed by the experimental and numerical methods. An evaluation of actual stress state is important when determining the shear strength parameters of soil. These methods are used in this paper to investigate and simulate the contact between the testing equipment and ends of sand specimen during the test. Two different conditions of sample boundaries are analyzed: the first case, when the friction between the sample ends and testing machine is not eliminated (fixed ends); the second case, when the friction between the sample ends and testing machine is eliminated (free ends). The friction is eliminated by allowing the sample base to move freely in any horizontal direction. Simulation results of stress-strain distribution in the sample by using the finite element method show that the shear stress at the contact plane increases for the sample with fixed ends. The stress restricts the displacement of sample ends in the horizontal direction. In the case of free ends the horizontal displacement of sample base occurs. Similar to simulation results have been obtained from the laboratory tests performed with triaxial compression apparatus.https://bjrbe-journals.rtu.lv/article/view/3534triaxial testeffect of end restraintfree endssoil shear strength parametersangle of internal frictionnumerical simulation
collection DOAJ
language English
format Article
sources DOAJ
author Neringa Dirgėlienė
Arnoldas Norkus
Jonas Amšiejus
Šarūnas Skuodis
Daiva Žilionienė
spellingShingle Neringa Dirgėlienė
Arnoldas Norkus
Jonas Amšiejus
Šarūnas Skuodis
Daiva Žilionienė
Stress-Strain Analysis of Sand Subjected to Triaxial Loading
The Baltic Journal of Road and Bridge Engineering
triaxial test
effect of end restraint
free ends
soil shear strength parameters
angle of internal friction
numerical simulation
author_facet Neringa Dirgėlienė
Arnoldas Norkus
Jonas Amšiejus
Šarūnas Skuodis
Daiva Žilionienė
author_sort Neringa Dirgėlienė
title Stress-Strain Analysis of Sand Subjected to Triaxial Loading
title_short Stress-Strain Analysis of Sand Subjected to Triaxial Loading
title_full Stress-Strain Analysis of Sand Subjected to Triaxial Loading
title_fullStr Stress-Strain Analysis of Sand Subjected to Triaxial Loading
title_full_unstemmed Stress-Strain Analysis of Sand Subjected to Triaxial Loading
title_sort stress-strain analysis of sand subjected to triaxial loading
publisher RTU Press
series The Baltic Journal of Road and Bridge Engineering
issn 1822-427X
1822-4288
publishDate 2013-03-01
description An influence of the end boundary conditions to distribution of stress and strains in a soil specimen during conventional compression triaxial tests is analyzed by the experimental and numerical methods. An evaluation of actual stress state is important when determining the shear strength parameters of soil. These methods are used in this paper to investigate and simulate the contact between the testing equipment and ends of sand specimen during the test. Two different conditions of sample boundaries are analyzed: the first case, when the friction between the sample ends and testing machine is not eliminated (fixed ends); the second case, when the friction between the sample ends and testing machine is eliminated (free ends). The friction is eliminated by allowing the sample base to move freely in any horizontal direction. Simulation results of stress-strain distribution in the sample by using the finite element method show that the shear stress at the contact plane increases for the sample with fixed ends. The stress restricts the displacement of sample ends in the horizontal direction. In the case of free ends the horizontal displacement of sample base occurs. Similar to simulation results have been obtained from the laboratory tests performed with triaxial compression apparatus.
topic triaxial test
effect of end restraint
free ends
soil shear strength parameters
angle of internal friction
numerical simulation
url https://bjrbe-journals.rtu.lv/article/view/3534
work_keys_str_mv AT neringadirgeliene stressstrainanalysisofsandsubjectedtotriaxialloading
AT arnoldasnorkus stressstrainanalysisofsandsubjectedtotriaxialloading
AT jonasamsiejus stressstrainanalysisofsandsubjectedtotriaxialloading
AT sarunasskuodis stressstrainanalysisofsandsubjectedtotriaxialloading
AT daivazilioniene stressstrainanalysisofsandsubjectedtotriaxialloading
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