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Introduction of a simple method for prediction of the rutting resistance factor of nanoclay-modified bitumen

机译:介绍预测纳米粘土改性沥青的车辙电阻因子的简单方法

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摘要

This research proposes an experimental approach which can be used to determine the rutting performance named 'G*/Sinδ'; for original and nanoclay-modified bitumen binder. The experimental approach was conducted using 44 unique nanoclay-modified bitumen samples in which nanoclay was varied at 1% intervals between 3 and 7%. Using experimental data, a simple method for estimation of rutting performance of nanoclay-modified bitumen over a range of temperatures and nanoclay content was proposed. Addition of nanoclay led to modified bitumen which was stiffer compared to non-modified bitumen; as a result, the yielding temperature of bitumen increased. In this paper, a simple methodology was also proposed in terms of nanoclay content. The nanoclay coefficient was identified as a significant parameter to estimate G*/Sinδ with the addition of nanoclay. So, the nanoclay coefficient has the highest effect on rutting susceptibility and G*/Sinδ value of the modified bitumen. Also, the results show that the effect of Cloisite-15A has more efficiently improved rutting resistant compared to Nanofill-15.
机译:该研究提出了一种实验方法,可用于确定名为'G * /SINΔ'的车辙性能;用于原始和纳米粘土改性的沥青粘合剂。使用44个独特的纳米粘土改性的沥青样品进行实验方法,其中纳米粘土在3%至7%之间以1%的间隔变化。提出了一种提出了一种在一系列温度和纳米粘土含量估计纳米粘土改性沥青的车辙性能的简单方法。与未改性沥青相比,加入纳米粘土导致改性沥青;结果,沥青的屈服温度增加。在本文中,还提出了一种简单的方法在纳米粘土含量方面提出。纳米粘土系数被鉴定为估计纳米粘土的G * /Sinδ的重要参数。因此,纳米粘土系数对喷射易感性和改性沥青的G * /Sinδ值具有最高影响。此外,结果表明,与纳米菌属-15相比,Cloisite-15a的效果更有效地改善了抗置的车辙抗性。

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