Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations

Repeated load triaxial test is used to assess the deformation behaviour of unbound granular materials (UGMs) in flexible road pavements. Repeated load pulse characteristics (i.e. shape, loading period and rest period) are the stress configurations used in the experimental set-up to simulate the pass...

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Main Authors: Ali Alnedawi, Kali Prasad Nepal, Riyadh Al-Ameri, Mohanad Alabdullah
Format: Article
Language:English
Published: Elsevier 2019-02-01
Series:Journal of Rock Mechanics and Geotechnical Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S1674775518301252
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spelling doaj-92d04ccabafc4922ae689bf0693372452020-11-24T21:41:56ZengElsevierJournal of Rock Mechanics and Geotechnical Engineering1674-77552019-02-01111172180Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigationsAli Alnedawi0Kali Prasad Nepal1Riyadh Al-Ameri2Mohanad Alabdullah3Corresponding author.; School of Engineering, Deakin University, Geelong, Victoria, 3220, AustraliaSchool of Engineering, Deakin University, Geelong, Victoria, 3220, AustraliaSchool of Engineering, Deakin University, Geelong, Victoria, 3220, AustraliaSchool of Engineering, Deakin University, Geelong, Victoria, 3220, AustraliaRepeated load triaxial test is used to assess the deformation behaviour of unbound granular materials (UGMs) in flexible road pavements. Repeated load pulse characteristics (i.e. shape, loading period and rest period) are the stress configurations used in the experimental set-up to simulate the passing axle loads. Some researchers and standard testing protocols suggest a rest period of varying durations after a loading phase. A thorough review of existing literature and practises has revealed that there is no agreement about the effect of the rest period of vertical stress pulse on the deformation behaviour of the UGMs. Therefore, the main objective of this study is to investigate the effect of repeated stress rest period on the deformation behaviour of UGMs experimentally. Experiments are conducted, both with and without rest period, using basalt and granite crushed rocks from Victoria, Australia. Furthermore, in order to gain insight into the effect of the rest period, finite element modelling is also developed. Both the experimental and modelling results show that the rest period has a noticeable effect on both resilient and permanent deformation behaviours of UGMs. It is, therefore, recommended to take extra precautions while adopting a particular standard testing protocol and to supplement the results by additional tests with different loading configurations. Keywords: Flexible pavement, Unbound granular materials (UGMs), Repeated load triaxial test, Resilient modulus, Permanent deformation, Finite element modellinghttp://www.sciencedirect.com/science/article/pii/S1674775518301252
collection DOAJ
language English
format Article
sources DOAJ
author Ali Alnedawi
Kali Prasad Nepal
Riyadh Al-Ameri
Mohanad Alabdullah
spellingShingle Ali Alnedawi
Kali Prasad Nepal
Riyadh Al-Ameri
Mohanad Alabdullah
Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
Journal of Rock Mechanics and Geotechnical Engineering
author_facet Ali Alnedawi
Kali Prasad Nepal
Riyadh Al-Ameri
Mohanad Alabdullah
author_sort Ali Alnedawi
title Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
title_short Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
title_full Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
title_fullStr Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
title_full_unstemmed Effect of vertical stress rest period on deformation behaviour of unbound granular materials: Experimental and numerical investigations
title_sort effect of vertical stress rest period on deformation behaviour of unbound granular materials: experimental and numerical investigations
publisher Elsevier
series Journal of Rock Mechanics and Geotechnical Engineering
issn 1674-7755
publishDate 2019-02-01
description Repeated load triaxial test is used to assess the deformation behaviour of unbound granular materials (UGMs) in flexible road pavements. Repeated load pulse characteristics (i.e. shape, loading period and rest period) are the stress configurations used in the experimental set-up to simulate the passing axle loads. Some researchers and standard testing protocols suggest a rest period of varying durations after a loading phase. A thorough review of existing literature and practises has revealed that there is no agreement about the effect of the rest period of vertical stress pulse on the deformation behaviour of the UGMs. Therefore, the main objective of this study is to investigate the effect of repeated stress rest period on the deformation behaviour of UGMs experimentally. Experiments are conducted, both with and without rest period, using basalt and granite crushed rocks from Victoria, Australia. Furthermore, in order to gain insight into the effect of the rest period, finite element modelling is also developed. Both the experimental and modelling results show that the rest period has a noticeable effect on both resilient and permanent deformation behaviours of UGMs. It is, therefore, recommended to take extra precautions while adopting a particular standard testing protocol and to supplement the results by additional tests with different loading configurations. Keywords: Flexible pavement, Unbound granular materials (UGMs), Repeated load triaxial test, Resilient modulus, Permanent deformation, Finite element modelling
url http://www.sciencedirect.com/science/article/pii/S1674775518301252
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