Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach

In recent years, extensive studies have been conducted on the effect of different nanomaterials on the performance of asphalt mixtures. Also, in the present study, Nano graphene oxide (GO) in the amounts of 0.2, 0.5, and 0.8% by weight of bitumen was used to improve the fracture resistance of HMA as...

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Main Authors: ehsan shahryari, Mahdi Akbari, Amir Mohammad Hamedipour
Format: Article
Language:fas
Published: University of Qom 2023-02-01
Series:پژوهش‌های زیرساخت‌های عمرانی
Subjects:
Online Access:https://cer.qom.ac.ir/article_2173_764f067a6cd170f8b75dba6b3673de3b.pdf
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author ehsan shahryari
Mahdi Akbari
Amir Mohammad Hamedipour
author_facet ehsan shahryari
Mahdi Akbari
Amir Mohammad Hamedipour
author_sort ehsan shahryari
collection DOAJ
description In recent years, extensive studies have been conducted on the effect of different nanomaterials on the performance of asphalt mixtures. Also, in the present study, Nano graphene oxide (GO) in the amounts of 0.2, 0.5, and 0.8% by weight of bitumen was used to improve the fracture resistance of HMA asphalt mixture against cracking at negative temperatures. Nano graphene oxide (GO) has been introduced as the material of the century due to its very unique and excellent properties. For this purpose, to investigate the effect of this nanomaterial on the fracture resistance of the asphalt mixtures, the semi-circular bending (SCB) fracture test at temperatures of -5 and -15°C and four different loading modes have been used. In addition, conventional bitumen tests were performed to investigate the effect of Nano GO on pure bitumen in this study. The conventional bitumen tests showed that the addition of Nano GO to pure bitumen increased the softening point, viscosity, and specific gravity and reduced the penetration and ductility in pure bitumen. Also, the semi-circular bending (SCB) fracture test results indicate that using Nano graphene oxide increases the fracture energy of asphalt mixtures and improves the resistance of asphalt specimens to cracking. So that mixtures containing 0.5% of this additive have the best performance. The results show that the use of this amount of additive in the asphalt mixture at -5°C and pure loading mode I increases by 105% and at -15°C and pure loading mode II increases by 60% in the fracture energy.
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spelling doaj.art-93d80bd2a3344829817a555d47fe9eb62024-03-31T19:58:49ZfasUniversity of Qomپژوهش‌های زیرساخت‌های عمرانی2783-140X2023-02-018211710.22091/cer.2022.8028.13772173Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approachehsan shahryari0Mahdi Akbari1Amir Mohammad Hamedipour2Master of Science, Department of Civil Engineering, K. N. Toosi University of Technology, Tehran, Iran.Faculty of Civil Engineering, Semnan University, Semnan, IranMaster of Science, Department of Civil Engineering, Semnan University, Semnan, Iran.In recent years, extensive studies have been conducted on the effect of different nanomaterials on the performance of asphalt mixtures. Also, in the present study, Nano graphene oxide (GO) in the amounts of 0.2, 0.5, and 0.8% by weight of bitumen was used to improve the fracture resistance of HMA asphalt mixture against cracking at negative temperatures. Nano graphene oxide (GO) has been introduced as the material of the century due to its very unique and excellent properties. For this purpose, to investigate the effect of this nanomaterial on the fracture resistance of the asphalt mixtures, the semi-circular bending (SCB) fracture test at temperatures of -5 and -15°C and four different loading modes have been used. In addition, conventional bitumen tests were performed to investigate the effect of Nano GO on pure bitumen in this study. The conventional bitumen tests showed that the addition of Nano GO to pure bitumen increased the softening point, viscosity, and specific gravity and reduced the penetration and ductility in pure bitumen. Also, the semi-circular bending (SCB) fracture test results indicate that using Nano graphene oxide increases the fracture energy of asphalt mixtures and improves the resistance of asphalt specimens to cracking. So that mixtures containing 0.5% of this additive have the best performance. The results show that the use of this amount of additive in the asphalt mixture at -5°C and pure loading mode I increases by 105% and at -15°C and pure loading mode II increases by 60% in the fracture energy.https://cer.qom.ac.ir/article_2173_764f067a6cd170f8b75dba6b3673de3b.pdfsemi-circle bending (scb) fracture testnano graphene oxidefracture energylow-temperature crackinghot mix asphalt
spellingShingle ehsan shahryari
Mahdi Akbari
Amir Mohammad Hamedipour
Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
پژوهش‌های زیرساخت‌های عمرانی
semi-circle bending (scb) fracture test
nano graphene oxide
fracture energy
low-temperature cracking
hot mix asphalt
title Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
title_full Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
title_fullStr Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
title_full_unstemmed Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
title_short Investigation of the Effect of Nano Graphene Oxide on Fracture Resistance of Asphalt Mixtures with a Fracture Energy Approach
title_sort investigation of the effect of nano graphene oxide on fracture resistance of asphalt mixtures with a fracture energy approach
topic semi-circle bending (scb) fracture test
nano graphene oxide
fracture energy
low-temperature cracking
hot mix asphalt
url https://cer.qom.ac.ir/article_2173_764f067a6cd170f8b75dba6b3673de3b.pdf
work_keys_str_mv AT ehsanshahryari investigationoftheeffectofnanographeneoxideonfractureresistanceofasphaltmixtureswithafractureenergyapproach
AT mahdiakbari investigationoftheeffectofnanographeneoxideonfractureresistanceofasphaltmixtureswithafractureenergyapproach
AT amirmohammadhamedipour investigationoftheeffectofnanographeneoxideonfractureresistanceofasphaltmixtureswithafractureenergyapproach