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Connections between chemical composition and rheology of aged base asphalt binders during repeated freeze-thaw cycles

机译:反复冻融循环过程中老化的基础沥青粘合剂的化学组成与流变学之间的关系

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摘要

The chemical composition and rheological properties of asphalt binder play a key role in the performance of the asphalt pavement. However, pavement diseases (cracks, pitted surface, potholes and slurry) caused by the degradation of pavement performance have shortened the service life of the asphalt pavement and increased maintenance and repair costs, seriously affected the smooth flow of traffic and traffic safety. In this study, the sum of the different absorption peak areas of the asphalt binder spectroscopy was selected as a reference. Fourier Transform Infrared Spectroscopy (FT-IR) quantitative analysis was carried out on the Rolling Thin Film Oven (RTFO) test with different aging cycles and Pressure Aging Vessel (PAV) test of the asphalt binder after aging. Based on the above analysis, the author tries to establish a reliable FT-IR quantitative analysis method. An FT-IR specimen which could be subjected to multiple freeze-thaw cycles could be prepared by the self-designed test sample preparation device. By carrying out the freeze-thaw cycle aging test of asphalt binder for 0, 3, 6, 9, 12, 15 and 18 times, combining FT-IR and Dynamic Shear Rheological (DSR) testing techniques, the author explored the relationship between chemical composition and rheological performance parameters of asphalt binder in cold region, which were based on the Levenberg-Macquarie method and test data of universal global optimization algorithm regression analysis. The results show that FT-IR can not only qualitatively analyze and study the structure and chemical composition of asphalt binder before and after aging on a micro level, but also quantitatively represent the changes of characteristic functional groups before and after aging of asphalt binder. It is feasible to calculate the absorption peak area for FT-IR quantitative analysis using the tangent at the lowest point on both sides of the spectral absorption peak as the calibration baseline. It is recommended to use the range of 2000-650 cm(-1) absorption peak area sum as a benchmark for FT-IR quantitative analysis. The complex shear modulus of the asphalt binder shows a linear growth with the increase of freeze thaw cycles, and phase angle of asphalt binder also shows a linear growth with the increase of Ln T. There is a multivariate linear relationship between the rheological index and chemical functional groups after the aging freeze-thaw cycle. (C) 2017 Elsevier Ltd. All rights reserved.
机译:沥青粘合剂的化学组成和流变特性在沥青路面的性能中起着关键作用。但是,由于路面性能下降而引起的路面病害(裂缝,凹坑表面,坑洼和泥浆),缩短了沥青路面的使用寿命,增加了维修成本,严重影响了交通通畅和交通安全。在这项研究中,选择沥青结合剂光谱的不同吸收峰面积之和作为参考。傅里叶变换红外光谱(FT-IR)定量分析是在具有不同老化周期的滚动薄膜烤箱(RTFO)试验和老化后的沥青粘合剂的压力老化容器(PAV)试验中进行的。基于以上分析,作者试图建立一种可靠的FT-IR定量分析方法。可以通过自行设计的试样制备装置制备可以经受多次冻融循环的FT-IR试样。通过对沥青胶结料进行0、3、6、9、12、15和18次冻融循环老化试验,结合FT-IR和动态剪切流变学(DSR)测试技术,探讨了化学与化学之间的关系。基于Levenberg-Macquarie方法和通用全局优化算法回归分析的测试数据,确定了寒冷地区沥青粘结剂的组成和流变性能参数。结果表明,FT-IR不仅可以微观地定性分析和研究沥青胶结剂老化前后的结构和化学组成,而且可以定量表征沥青胶结剂老化前后特征性官能团的变化。使用光谱吸收峰两侧最低点的切线作为校准基线,计算用于FT-IR定量分析的吸收峰面积是可行的。建议使用2000-650 cm(-1)吸收峰面积总和的范围作为FT-IR定量分析的基准。沥青粘结剂的复数剪切模量随冻融循环次数的增加呈线性增长,沥青粘结剂的相角随Ln T的增加也呈线性增长。流变指数与化学性质之间存在多元线性关系。老化冻融循环后的官能团。 (C)2017 Elsevier Ltd.保留所有权利。

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