Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures

© 2015 The Authors. Published by Elsevier Ltd. The objective of this research is to determine the effect on the flexural fatigue performance of asphalt mixtures of using granular Buton rock asphalt (BRA) modifier binder. A repeated flexural bending test under the controlled-strain mode of loading in...

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Main Authors: Karami, M., Nikraz, Hamid
Format: Conference Paper
Published: 2015
Online Access:http://hdl.handle.net/20.500.11937/39018
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author Karami, M.
Nikraz, Hamid
author_facet Karami, M.
Nikraz, Hamid
author_sort Karami, M.
building Curtin Institutional Repository
collection Online Access
description © 2015 The Authors. Published by Elsevier Ltd. The objective of this research is to determine the effect on the flexural fatigue performance of asphalt mixtures of using granular Buton rock asphalt (BRA) modifier binder. A repeated flexural bending test under the controlled-strain mode of loading in accordance with Austroads AG:PT/T233 test method was conducted to examine fatigue behaviour of the BRA modified asphalt mixtures and the unmodified asphalt mixtures (as control mixtures) for a dense grading of 10 mm. Beam specimens were tested at the temperatures of 20°C and three different peak tensile strain (400, 600 and 800 µe) and used classical and energy-stiffness ratio approach to analyse fatigue life of the asphalt mixtures. According to the test results, the fatigue lifes of the BRA modified asphalt mixtures were higher than that for the unmodified asphalt mixtures at the test temperature and tensile strain. Moreover, based on the initial flexure stiffness and phase angle values, BRA modified asphalt mixtures showed more elastic and less viscous behaviour than unmodified mixtures.
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spelling curtin-20.500.11937-390182017-09-13T14:22:50Z Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures Karami, M. Nikraz, Hamid © 2015 The Authors. Published by Elsevier Ltd. The objective of this research is to determine the effect on the flexural fatigue performance of asphalt mixtures of using granular Buton rock asphalt (BRA) modifier binder. A repeated flexural bending test under the controlled-strain mode of loading in accordance with Austroads AG:PT/T233 test method was conducted to examine fatigue behaviour of the BRA modified asphalt mixtures and the unmodified asphalt mixtures (as control mixtures) for a dense grading of 10 mm. Beam specimens were tested at the temperatures of 20°C and three different peak tensile strain (400, 600 and 800 µe) and used classical and energy-stiffness ratio approach to analyse fatigue life of the asphalt mixtures. According to the test results, the fatigue lifes of the BRA modified asphalt mixtures were higher than that for the unmodified asphalt mixtures at the test temperature and tensile strain. Moreover, based on the initial flexure stiffness and phase angle values, BRA modified asphalt mixtures showed more elastic and less viscous behaviour than unmodified mixtures. 2015 Conference Paper http://hdl.handle.net/20.500.11937/39018 10.1016/j.proeng.2015.11.120 fulltext
spellingShingle Karami, M.
Nikraz, Hamid
Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title_full Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title_fullStr Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title_full_unstemmed Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title_short Using advanced materials of granular BRA modifier binder to improve the flexural fatigue performance of asphalt mixtures
title_sort using advanced materials of granular bra modifier binder to improve the flexural fatigue performance of asphalt mixtures
url http://hdl.handle.net/20.500.11937/39018