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Evaluating the Effect of Carbon Nanotube on Low Temperature Property of Asphalt Binder through Dissipated Energy-Based Approach

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dc.contributor.author ASHISH, PK
dc.contributor.author SINGH, D
dc.contributor.author JAIN, R
dc.date.accessioned 2021-03-19T16:51:10Z
dc.date.available 2021-03-19T16:51:10Z
dc.date.issued 2020
dc.identifier.citation JOURNAL OF MATERIALS IN CIVIL ENGINEERING 32(3) en_US
dc.identifier.issn 0899-1561
dc.identifier.issn 1943-5533
dc.identifier.uri https://doi.org/10.1061/(ASCE)MT.1943-5533.0003056
dc.identifier.uri http://localhost:8080/xmlui/handle/100/32058
dc.description.abstract Although many research works are available on evaluating the effect of carbon nanotube (CNT) on intermediate and high temperature performance of asphalt binder, limited studies have been reported for its effect on low temperature properties. Moreover, reported research work showed inconsistent conclusive remarks about its influence on the low temperature properties of asphalt binder. Therefore, along with the conventionally adopted technique, this study aimed at investigating the effect of CNT on low temperature properties of asphalt binder using the dissipated energy-based approach to make an appropriate conclusive remark. CNT content was varied as 0%, 0.75%, 1.5%, and 2.25% by the weight of asphalt binder. Initially, creep stiffness and creep rate corresponding to 60 s creep period were evaluated. Although CNT addition changed the creep stiffness and creep rate, the impact was not statistically significant at 0.75% CNT. However, a subsequently higher dose of 1.5% CNT significantly increased the creep stiffness and decreased the creep rate. A master curve for creep stiffness, relaxation modulus, creep stiffness rate, and creep relaxation rate was drawn to understand the effect of prolonged creep period on low temperature properties. The detrimental effect of CNT on low temperature properties of asphalt binder was found to be apparent, especially in a higher creep period zone. Subsequently, viscoelastic modeling of creep compliance data obtained from a bending beam rheometer (BBR) test was carried out using the Burgers model. Different energy components (stored and dissipative) were subsequently evaluated based on model parameters. Stored, as well as dissipated energy components, were found to be decreasing with an increase in CNT content to 1.5%. However, the degree of decrease in the dissipated energy component was found to be relatively higher compared to the corresponding decrease in the stored energy component. As a result, the dissipated energy ratio (DER), which is expected to be higher for better low temperature performance, was found to be decreasing with the incremental dosages of CNT. Although CNT addition decreased the DER value, the impact was not statistically significant at 0.75% CNT. However, a subsequently higher dose of 1.5% CNT showed a significant decrease in DER value. Such a response further reinforced that CNT addition may have a negative impact on low temperature properties of asphalt binder. en_US
dc.language.iso English en_US
dc.publisher ASCE-AMER SOC CIVIL ENGINEERS en_US
dc.subject CARBON NANOTUBE (CNT) en_US
dc.subject CREEP STIFFNESS en_US
dc.subject RELAXATION MODULUS en_US
dc.subject VISCOELASTIC MODELING en_US
dc.subject BURGERS MODEL en_US
dc.subject DISSIPATED ENERGY RATIO en_US
dc.subject MECHANICAL-PROPERTIES en_US
dc.subject LABORATORY EVALUATION en_US
dc.subject FATIGUE en_US
dc.subject PERFORMANCE en_US
dc.subject INTERCONVERSION en_US
dc.subject PARAMETERS en_US
dc.subject BITUMEN en_US
dc.subject NANOCLAY en_US
dc.subject BEHAVIOR en_US
dc.subject TUBE en_US
dc.title Evaluating the Effect of Carbon Nanotube on Low Temperature Property of Asphalt Binder through Dissipated Energy-Based Approach en_US
dc.type Article en_US


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