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    Experimental and Statistical Investigation of the Effect of Nano Al2O3 on Asphalt Mixture Resistance against Low Temperature Cracking and Moisture Susceptibility

    Source: Journal of Materials in Civil Engineering:;2024:;Volume ( 036 ):;issue: 009::page 04024273-1
    Author:
    Milad Keneshlou
    ,
    Gholamali Shafabakhsh
    ,
    Mostafa Sadeghnejad
    DOI: 10.1061/JMCEE7.MTENG-18054
    Publisher: American Society of Civil Engineers
    Abstract: Improving asphalt mixtures has become increasingly important due to the rise in traffic volume, high maintenance costs, and the challenges associated with their implementation. Previous studies have examined various additives and modifiers. This study investigated the effect of nano Al2O3 on two significant potential damages in asphalt pavements: low-temperature cracking and moisture sensitivity. The results of this study can be used to propose a suitable solution to minimize the probability of these failures occurring in asphalt pavements. Moreover, this study examined the impact of loading modes, temperature, and crack type on the fracture toughness of asphalt mixtures. In addition to exploring pure mode I and pure mode II, four distinct mixed modes (I/II) were also studied because, usually, this mode is the critical mode of the asphalt mixture. Temperature was another variable observed to validate the elasticity of asphalt mixtures at low temperatures. Lastly, the study investigated the effect of incorporating nano Al2O3 on the fracture toughness of the asphalt mixture under different temperatures and crack geometries. To achieve the objectives of this study, the semicircular bending and indirect tensile tests were conducted. The results showed that adding 0.6% nano Al2O3 can increase the crack resistance of asphalt mixtures by up to 12%. Additionally, the study demonstrated that incorporating 0.6% nano Al2O3 can decrease the vulnerability of asphalt mixtures to moisture by 5.1%. The response surface method technique was employed to analyze the laboratory data statistically. A reduced cubic model was utilized to assess the relationship between independent factors (loading mode, temperature, crack type, and nano Al2O3 content) and fracture toughness due to its superior fit with the laboratory results Next, sensitivity analysis was used to find the effect value of each parameter on the fracture toughness of the asphalt mixture. The sensitivity analysis results showed that the loading mode, temperature, crack type, and use of nano Al2O3, respectively, will significantly impact the fracture toughness of the asphalt mixture.
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      Experimental and Statistical Investigation of the Effect of Nano Al2O3 on Asphalt Mixture Resistance against Low Temperature Cracking and Moisture Susceptibility

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4299348
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    contributor authorMilad Keneshlou
    contributor authorGholamali Shafabakhsh
    contributor authorMostafa Sadeghnejad
    date accessioned2024-12-24T10:40:28Z
    date available2024-12-24T10:40:28Z
    date copyright9/1/2024 12:00:00 AM
    date issued2024
    identifier otherJMCEE7.MTENG-18054.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4299348
    description abstractImproving asphalt mixtures has become increasingly important due to the rise in traffic volume, high maintenance costs, and the challenges associated with their implementation. Previous studies have examined various additives and modifiers. This study investigated the effect of nano Al2O3 on two significant potential damages in asphalt pavements: low-temperature cracking and moisture sensitivity. The results of this study can be used to propose a suitable solution to minimize the probability of these failures occurring in asphalt pavements. Moreover, this study examined the impact of loading modes, temperature, and crack type on the fracture toughness of asphalt mixtures. In addition to exploring pure mode I and pure mode II, four distinct mixed modes (I/II) were also studied because, usually, this mode is the critical mode of the asphalt mixture. Temperature was another variable observed to validate the elasticity of asphalt mixtures at low temperatures. Lastly, the study investigated the effect of incorporating nano Al2O3 on the fracture toughness of the asphalt mixture under different temperatures and crack geometries. To achieve the objectives of this study, the semicircular bending and indirect tensile tests were conducted. The results showed that adding 0.6% nano Al2O3 can increase the crack resistance of asphalt mixtures by up to 12%. Additionally, the study demonstrated that incorporating 0.6% nano Al2O3 can decrease the vulnerability of asphalt mixtures to moisture by 5.1%. The response surface method technique was employed to analyze the laboratory data statistically. A reduced cubic model was utilized to assess the relationship between independent factors (loading mode, temperature, crack type, and nano Al2O3 content) and fracture toughness due to its superior fit with the laboratory results Next, sensitivity analysis was used to find the effect value of each parameter on the fracture toughness of the asphalt mixture. The sensitivity analysis results showed that the loading mode, temperature, crack type, and use of nano Al2O3, respectively, will significantly impact the fracture toughness of the asphalt mixture.
    publisherAmerican Society of Civil Engineers
    titleExperimental and Statistical Investigation of the Effect of Nano Al2O3 on Asphalt Mixture Resistance against Low Temperature Cracking and Moisture Susceptibility
    typeJournal Article
    journal volume36
    journal issue9
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/JMCEE7.MTENG-18054
    journal fristpage04024273-1
    journal lastpage04024273-15
    page15
    treeJournal of Materials in Civil Engineering:;2024:;Volume ( 036 ):;issue: 009
    contenttypeFulltext
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