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Experimental investigation on the influence of interfacial effects of limestone and fly ash filler particles in asphalt binder on mastic aging behaviors

机译:沥青粘合剂在棉花老化行为对沥青粘合剂中近磷酸煤填料颗粒界面影响的实验研究

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The incorporation of mineral filler has significant influence on the rheological response of asphalt binders over oxidative aging. This study focuses on understanding the physicochemical interaction of filler particles (i.e., fly ash and limestone) to asphalt binders and how fillers affect oxidative aging of binder by using Atomic Force Microscopy (AFM) and Fourier Transform Infrared (FTIR). The microstructural and chemical characteristics regarding base asphalt as well as different asphalt adsorbed films of fly ash and limestone asphalt mastics were obtained before and after aging process via AFM and FTIR, respectively. The results show that significant differences in terms of surface morphology were obtained for binders with different fillers. The typical "bee-like" structure was not found but instead "flake-like" or round shape dispersed phases appeared on the surface various asphalt adsorbed samples. As approaching the filler surface, the size and number of these dispersed phases changed under the asphalt-filler interaction effect. The infrared peaks of carbonyl and sulfoxide bands are used to evaluate the extent of oxidative aging. Compared to the base asphalt, the oxidation resistance of binder was improved by adding fly ash and limestone filler. Moreover, the I-C=O and I-S=O aging indexes of each asphalt adsorbed film of fly ash asphalt mastics were lower than that of corresponding sample of limestone asphalt mastic. (C) 2021 Elsevier Ltd. All rights reserved.
机译:矿物填料的掺入对氧化衰老的沥青粘合剂的流变反应产生了显着影响。该研究侧重于理解填料颗粒(即粉煤灰和石灰石)对沥青粘合剂的物理化学相互作用以及填充剂通过使用原子力显微镜(AFM)和傅里叶变换红外(FTIR)影响粘合剂的氧化老化。通过AFM和FTIR在老化过程之前和之后获得了碱基沥青以及粉煤灰和石灰石沥青胶芯的不同沥青吸附薄膜的微观结构和化学特性。结果表明,用不同填料的粘合剂获得了表面形态方面的显着差异。未发现典型的“蜂状”结构,而是“薄片”或圆形分散相出现在表面各种沥青吸附样品上。作为接近填充物表面,这些分散相的尺寸和数量在沥青填料相互作用效果下变化。羰基和亚砜带的红外峰用于评估氧化老化的程度。与碱沥青相比,通过添加粉煤灰和石灰石填料,改善了粘合剂的抗氧化性。此外,粉煤灰沥青胶芯的每种沥青吸附薄膜的I-C = O和I-S = O老化指数低于石灰石沥青乳香样品的相应样品。 (c)2021 elestvier有限公司保留所有权利。

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