The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms

In this paper, a simple method is proposed to estimate capacity of multilayered road structure including the degradation of the elastic and plastic properties of the constituent materials. In the study boundary value problem modeling interaction of wheels with road surface layer in the frame of larg...

Full description

Bibliographic Details
Main Authors: Marcin Gajewski, Stanisław Jemioło
Format: Article
Language:English
Published: RTU Press 2016-09-01
Series:The Baltic Journal of Road and Bridge Engineering
Subjects:
Online Access:https://bjrbe-journals.rtu.lv/article/view/3390
id doaj-b686e27066ec48918c8887c128e7edb1
record_format Article
spelling doaj-b686e27066ec48918c8887c128e7edb12020-11-25T02:58:23ZengRTU PressThe Baltic Journal of Road and Bridge Engineering1822-427X1822-42882016-09-0111310.3846/bjrbe.2016.211841The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure MechanismsMarcin Gajewski0Stanisław Jemioło1Road and Bridge Research Institute, ul. Instytutowa 1, 03–302 Warsaw, PolandDept of Civil Engineering, Warsaw University of Technology, al. Armii Ludowej 16, 00–637 Warsaw, PolandIn this paper, a simple method is proposed to estimate capacity of multilayered road structure including the degradation of the elastic and plastic properties of the constituent materials. In the study boundary value problem modeling interaction of wheels with road surface layer in the frame of large deformation theory for elastic-plastic materials was formulated. Plastic properties of the material were described by the flow rule un-associated with yield condition. The Coulomb-Mohr yield condition was assumed and the potential for plasticity is its smooth approximation. In addition, in constitutive modeling the dependence of the Young’s modulus and cohesion of the material from the number of cycles is taken into account. This paper presents qualitative findings in relation to mechanical behavior of the road structure, i.e., for example, the development of plastic zones with increasing load for un-degraded and degraded materials. In addition, a parametric study of the influence of the degradation ratio of the elasticity and plasticity properties for road structure failure mechanism (limit load value) was made.https://bjrbe-journals.rtu.lv/article/view/3390constitutive modelingdegradationfatiguefinite element method (fem)limit analysisroad materials characterization.
collection DOAJ
language English
format Article
sources DOAJ
author Marcin Gajewski
Stanisław Jemioło
spellingShingle Marcin Gajewski
Stanisław Jemioło
The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
The Baltic Journal of Road and Bridge Engineering
constitutive modeling
degradation
fatigue
finite element method (fem)
limit analysis
road materials characterization.
author_facet Marcin Gajewski
Stanisław Jemioło
author_sort Marcin Gajewski
title The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
title_short The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
title_full The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
title_fullStr The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
title_full_unstemmed The Influence of Pavement Degradation Caused by Cyclic Loading on its Failure Mechanisms
title_sort influence of pavement degradation caused by cyclic loading on its failure mechanisms
publisher RTU Press
series The Baltic Journal of Road and Bridge Engineering
issn 1822-427X
1822-4288
publishDate 2016-09-01
description In this paper, a simple method is proposed to estimate capacity of multilayered road structure including the degradation of the elastic and plastic properties of the constituent materials. In the study boundary value problem modeling interaction of wheels with road surface layer in the frame of large deformation theory for elastic-plastic materials was formulated. Plastic properties of the material were described by the flow rule un-associated with yield condition. The Coulomb-Mohr yield condition was assumed and the potential for plasticity is its smooth approximation. In addition, in constitutive modeling the dependence of the Young’s modulus and cohesion of the material from the number of cycles is taken into account. This paper presents qualitative findings in relation to mechanical behavior of the road structure, i.e., for example, the development of plastic zones with increasing load for un-degraded and degraded materials. In addition, a parametric study of the influence of the degradation ratio of the elasticity and plasticity properties for road structure failure mechanism (limit load value) was made.
topic constitutive modeling
degradation
fatigue
finite element method (fem)
limit analysis
road materials characterization.
url https://bjrbe-journals.rtu.lv/article/view/3390
work_keys_str_mv AT marcingajewski theinfluenceofpavementdegradationcausedbycyclicloadingonitsfailuremechanisms
AT stanisławjemioło theinfluenceofpavementdegradationcausedbycyclicloadingonitsfailuremechanisms
AT marcingajewski influenceofpavementdegradationcausedbycyclicloadingonitsfailuremechanisms
AT stanisławjemioło influenceofpavementdegradationcausedbycyclicloadingonitsfailuremechanisms
_version_ 1724706713048711168