Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer

Asphalt mixtures used in stress absorbing membrane interlayers (SAMIs) play a significant role in improving the performance of asphalt pavement. To investigate the rheological properties and phase transition characteristics of asphalt mixtures used in SAMI with temperature changes, twenty-seven cand...

Full description

Bibliographic Details
Published in:Materials
Main Authors: Guang Yang, Xudong Wang, Xingye Zhou, Yanzhu Wang
Format: Text
Language:English
Published: Multidisciplinary Digital Publishing Institute 2020
Subjects:
Online Access:https://doi.org/10.3390/ma13020474
_version_ 1821699321793347584
author Guang Yang
Xudong Wang
Xingye Zhou
Yanzhu Wang
author_facet Guang Yang
Xudong Wang
Xingye Zhou
Yanzhu Wang
author_sort Guang Yang
collection MDPI Open Access Publishing
container_issue 2
container_start_page 474
container_title Materials
container_volume 13
description Asphalt mixtures used in stress absorbing membrane interlayers (SAMIs) play a significant role in improving the performance of asphalt pavement. To investigate the rheological properties and phase transition characteristics of asphalt mixtures used in SAMI with temperature changes, twenty-seven candidate mixtures with different binders, gradation types and binder contents were selected in this research. During the study, dynamic mechanical analysis method was employed to evaluate their temperature-dependent properties and a series of wide-range temperature sweep tests were conducted under a sinusoidal loading. Some critical points and key indexes from the testing curves such as glass transition temperature (Tg) can be obtained. Test results show that phase transition characteristics can better reflect the rheological properties of asphalt mixtures at different temperatures. Crumb rubber modified asphalt mixtures (AR) provide a better performance at both high and low temperatures. Additionally, the range of AR asphalt mixtures’ effective functioning temperature ΔT is wider, and the slope K value is greater than the others, which indicates that AR asphalt mixtures are less sensitive to temperature changes. Additionally, gradation type and asphalt content also influence the properties: finer gradation and more asphalt content have a good effect on the low-temperature performance of the asphalt mixtures; while mixtures with a coarser gradation and less asphalt content perform better at high temperature and they are less sensitive to temperature changes. Finally, AR asphalt mixture is more suitable to be applied in the SAMI due to its phase transition characteristics from this method.
format Text
genre sami
genre_facet sami
id ftmdpi:oai:mdpi.com:/1996-1944/13/2/474/
institution Open Polar
language English
op_collection_id ftmdpi
op_doi https://doi.org/10.3390/ma13020474
op_relation Construction and Building Materials
https://dx.doi.org/10.3390/ma13020474
op_rights https://creativecommons.org/licenses/by/4.0/
op_source Materials; Volume 13; Issue 2; Pages: 474
publishDate 2020
publisher Multidisciplinary Digital Publishing Institute
record_format openpolar
spelling ftmdpi:oai:mdpi.com:/1996-1944/13/2/474/ 2025-01-17T00:36:28+00:00 Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer Guang Yang Xudong Wang Xingye Zhou Yanzhu Wang 2020-01-19 application/pdf https://doi.org/10.3390/ma13020474 EN eng Multidisciplinary Digital Publishing Institute Construction and Building Materials https://dx.doi.org/10.3390/ma13020474 https://creativecommons.org/licenses/by/4.0/ Materials; Volume 13; Issue 2; Pages: 474 stress absorbing membrane interlayer dynamic mechanical analysis temperature sweep test phase transition crumb rubber modified asphalt mixture Text 2020 ftmdpi https://doi.org/10.3390/ma13020474 2023-07-31T23:01:05Z Asphalt mixtures used in stress absorbing membrane interlayers (SAMIs) play a significant role in improving the performance of asphalt pavement. To investigate the rheological properties and phase transition characteristics of asphalt mixtures used in SAMI with temperature changes, twenty-seven candidate mixtures with different binders, gradation types and binder contents were selected in this research. During the study, dynamic mechanical analysis method was employed to evaluate their temperature-dependent properties and a series of wide-range temperature sweep tests were conducted under a sinusoidal loading. Some critical points and key indexes from the testing curves such as glass transition temperature (Tg) can be obtained. Test results show that phase transition characteristics can better reflect the rheological properties of asphalt mixtures at different temperatures. Crumb rubber modified asphalt mixtures (AR) provide a better performance at both high and low temperatures. Additionally, the range of AR asphalt mixtures’ effective functioning temperature ΔT is wider, and the slope K value is greater than the others, which indicates that AR asphalt mixtures are less sensitive to temperature changes. Additionally, gradation type and asphalt content also influence the properties: finer gradation and more asphalt content have a good effect on the low-temperature performance of the asphalt mixtures; while mixtures with a coarser gradation and less asphalt content perform better at high temperature and they are less sensitive to temperature changes. Finally, AR asphalt mixture is more suitable to be applied in the SAMI due to its phase transition characteristics from this method. Text sami MDPI Open Access Publishing Materials 13 2 474
spellingShingle stress absorbing membrane interlayer
dynamic mechanical analysis
temperature sweep test
phase transition
crumb rubber modified asphalt mixture
Guang Yang
Xudong Wang
Xingye Zhou
Yanzhu Wang
Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title_full Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title_fullStr Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title_full_unstemmed Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title_short Experimental Study on the Phase Transition Characteristics of Asphalt Mixture for Stress Absorbing Membrane Interlayer
title_sort experimental study on the phase transition characteristics of asphalt mixture for stress absorbing membrane interlayer
topic stress absorbing membrane interlayer
dynamic mechanical analysis
temperature sweep test
phase transition
crumb rubber modified asphalt mixture
topic_facet stress absorbing membrane interlayer
dynamic mechanical analysis
temperature sweep test
phase transition
crumb rubber modified asphalt mixture
url https://doi.org/10.3390/ma13020474