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Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization

The aim of this study is to assess the viscoelastic parameters (i.e., phase angle and dynamic modulus) of asphalt concrete-wearing course (AC-WC) and hot rolled sheet-wearing course (HRS-WC) mixtures obtained from the dynamic modulus test. This study was accomplished in four stages: determining opti...

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Autores principales: Harnaeni, Senja Rum, Pramesti, Florentina Pungky, Budiarto, Arif, Setyawan, Ary, Khan, Muhammad Imran, Sutanto, Muslich Hartadi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084968/
https://www.ncbi.nlm.nih.gov/pubmed/32143306
http://dx.doi.org/10.3390/ma13051133
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author Harnaeni, Senja Rum
Pramesti, Florentina Pungky
Budiarto, Arif
Setyawan, Ary
Khan, Muhammad Imran
Sutanto, Muslich Hartadi
author_facet Harnaeni, Senja Rum
Pramesti, Florentina Pungky
Budiarto, Arif
Setyawan, Ary
Khan, Muhammad Imran
Sutanto, Muslich Hartadi
author_sort Harnaeni, Senja Rum
collection PubMed
description The aim of this study is to assess the viscoelastic parameters (i.e., phase angle and dynamic modulus) of asphalt concrete-wearing course (AC-WC) and hot rolled sheet-wearing course (HRS-WC) mixtures obtained from the dynamic modulus test. This study was accomplished in four stages: determining optimum asphalt content using Marshall mix design procedure, stability and flow parameters from Marshall test, viscoelastic parameters from dynamic modulus testing and finally the generation of dynamic modulus master curves at a reference temperature of 25 °C. The results showed that at the same temperature, the dynamic modulus of AC-WC and HRS-WC mixtures tended to increase with escalating the loading frequency, while dynamic modulus decreases with an increase in the test temperature at constant loading frequency. Furthermore, the dynamic modulus of the AC-WC mixture was recorded as 100% higher than the HRS-WC asphalt mixture. The phase angle, however, showed contradictory behavior with that shown in dynamic modulus. The phase angle of the AC-WC mixture and HRS-WC asphalt mixture showed almost the same behavior. Similarly, the dynamic modulus master curves of AC-WC and HRS-WC asphalt mixtures can be used to predict the dynamic modulus at the frequency range of 0.01 to 10 Hz and a reference temperature of 25 °C. The results were also used to evaluate the rutting and fatigue performance of AC-WC and HRS-WC.
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spelling pubmed-70849682020-03-23 Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization Harnaeni, Senja Rum Pramesti, Florentina Pungky Budiarto, Arif Setyawan, Ary Khan, Muhammad Imran Sutanto, Muslich Hartadi Materials (Basel) Article The aim of this study is to assess the viscoelastic parameters (i.e., phase angle and dynamic modulus) of asphalt concrete-wearing course (AC-WC) and hot rolled sheet-wearing course (HRS-WC) mixtures obtained from the dynamic modulus test. This study was accomplished in four stages: determining optimum asphalt content using Marshall mix design procedure, stability and flow parameters from Marshall test, viscoelastic parameters from dynamic modulus testing and finally the generation of dynamic modulus master curves at a reference temperature of 25 °C. The results showed that at the same temperature, the dynamic modulus of AC-WC and HRS-WC mixtures tended to increase with escalating the loading frequency, while dynamic modulus decreases with an increase in the test temperature at constant loading frequency. Furthermore, the dynamic modulus of the AC-WC mixture was recorded as 100% higher than the HRS-WC asphalt mixture. The phase angle, however, showed contradictory behavior with that shown in dynamic modulus. The phase angle of the AC-WC mixture and HRS-WC asphalt mixture showed almost the same behavior. Similarly, the dynamic modulus master curves of AC-WC and HRS-WC asphalt mixtures can be used to predict the dynamic modulus at the frequency range of 0.01 to 10 Hz and a reference temperature of 25 °C. The results were also used to evaluate the rutting and fatigue performance of AC-WC and HRS-WC. MDPI 2020-03-04 /pmc/articles/PMC7084968/ /pubmed/32143306 http://dx.doi.org/10.3390/ma13051133 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Harnaeni, Senja Rum
Pramesti, Florentina Pungky
Budiarto, Arif
Setyawan, Ary
Khan, Muhammad Imran
Sutanto, Muslich Hartadi
Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title_full Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title_fullStr Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title_full_unstemmed Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title_short Study on Structural Performance of Asphalt Concrete and Hot Rolled Sheet Through Viscoelastic Characterization
title_sort study on structural performance of asphalt concrete and hot rolled sheet through viscoelastic characterization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084968/
https://www.ncbi.nlm.nih.gov/pubmed/32143306
http://dx.doi.org/10.3390/ma13051133
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