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沥青质改性沥青结合料的高温性能评价。

High-Temperature Performance Evaluation of Asphaltenes-Modified Asphalt Binders.

机构信息

Department of Civil and Environmental Engineering, University of Alberta, Edmonton, AB T6G 1H9, Canada.

出版信息

Molecules. 2020 Jul 22;25(15):3326. doi: 10.3390/molecules25153326.

Abstract

Asphalt binder comprises four main fractions-asphaltenes (A), saturates (S), aromatics (A), and resins (R)-referred to as "SARA". Asphaltenes plays an important role in determining the linear viscoelastic behavior of asphalt binders. In this research, asphaltenes are added as a distinct modifier to improve the performance properties of asphalt binder. The modified binders are aged using a rolling thin film oven. A dynamic shear rheometer is then used to measure the rheological properties of the binders at high temperatures. Changes in the chemical composition of the modified binders are also studied through the determination of SARA fractions, using precipitation and gravity-driven chromatography methods. The rheological results show that asphaltenes improve the stiffness and elasticity of asphalt binder. It is also shown that the addition of asphaltenes raises the high Performance grade (PG) temperature of the asphalt binder, with every 6% of asphaltenes added resulting in a one-interval increase in high PG temperature grade. SARA analysis shows that the increase in polar fraction content due to the addition of asphaltenes causes the stiffness, elasticity, and viscosity of asphalt binders to increase. The results indicate that asphaltenes are an effective yet inexpensive additive to improve asphalt binder properties at high temperatures.

摘要

沥青结合料由四个主要馏分组成——沥青质(A)、饱和分(S)、芳烃(A)和树脂(R),通常被称为“SARA”。沥青质在决定沥青结合料的线性黏弹行为方面起着重要作用。在这项研究中,沥青质作为一种独特的改性剂添加到沥青结合料中,以改善其性能。采用旋转薄膜烘箱对改性沥青结合料进行老化。然后使用动态剪切流变仪在高温下测量结合料的流变性能。通过沉淀和重力驱动色谱法测定 SARA 馏分,研究了改性结合料的化学成分变化。流变结果表明,沥青质提高了沥青结合料的刚度和弹性。结果还表明,添加沥青质会提高沥青结合料的高性能等级(PG)温度,每添加 6%的沥青质,PG 温度等级就会提高一个间隔。SARA 分析表明,由于添加沥青质导致极性馏分含量增加,从而使沥青结合料的刚度、弹性和黏度增加。结果表明,沥青质是一种有效且廉价的添加剂,可改善高温下沥青结合料的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b39/7439123/982d340a6200/molecules-25-03326-g001.jpg

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