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Impact of asphalt aging temperature on chemo-mechanics

机译:沥青老化温度对化学力学的影响

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As the use of warm and cold asphalt mixing technologies provides an opportunity to save energy during production, it is important to determine if this lower mixing temperature also has a long-term effect on the binder chemical and rheological properties and performance. In this study, a link between the chemistry and rheology of bituminous binders with a focus on short-term aging temperature is proposed. This link is made using a rheological aging index (RAI), the crossover temperature and a chemical aging index (CAI). The RAI is calculated using the difference in the integration areas under shear modulus master curves generated from Dynamic Shear Rheometer (DSR) data on unaged and aged bitumen. The cross over temperature is defined as that when the material transitions from elastic to viscous behaviour. The CAI is obtained from Fourier-transform infrared spectroscopy (FTIR) measurements by combining the carbonyl and sulfoxide indices. In addition, the effect of aging on the molecular size distribution of the binders was evaluated using Gel Permeation Chromatography (GPC). Two asphalt binders from two sources at two RTFOT aging temperatures 123 °C and 163 °C corresponding to warm mixing and hot mix mixing temperatures respectively were used. The rheological aging index, the chemical aging index and GPC delivered the same trends, showing that the short-term aging temperature has a significant effect on long-term chemical and rheological properties. The extent of this depends on the source as some binders were identified as being more aging resistant.
机译:由于使用冷,热沥青混合技术提供了在生产过程中节省能源的机会,因此确定这种较低的混合温度是否也对粘合剂的化学和流变性能以及性能具有长期影响非常重要。在这项研究中,提出了以短期老化温度为重点的沥青粘结剂的化学和流变学之间的联系。使用流变老化指数(RAI),交叉温度和化学老化指数(CAI)进行此链接。 RAI是使用由未老化和老化沥青的动态剪切流变仪(DSR)数据生成的剪切模量主曲线下积分面积的差异来计算的。穿越温度定义为材料从弹性行为转变为粘性行为时的温度。通过结合羰基和亚砜指数,通过傅里叶变换红外光谱(FTIR)测量获得CAI。另外,使用凝胶渗透色谱法(GPC)评估了老化对粘合剂的分子大小分布的影响。使用两种来源的两种沥青粘合剂,分别在两个RTFOT老化温度123°C和163°C下分别对应于温拌和热拌混合温度。流变老化指数,化学老化指数和GPC表现出相同的趋势,表明短期老化温度对长期化学和流变性能具有重大影响。其程度取决于来源,因为一些粘合剂被确定为更耐老化。

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