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Investigation on High Temperature Rheological Behaviors and Fatigue Performance of Trans-Polyoctenamer-Activated Crumb Rubber Modified Asphalt Binder

机译:反霉菌活化碎屑改性沥青粘合剂高温流变行为及疲劳性能研究

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Asphalt binders have been modified with Crumb rubber (CR) as an effort to fulfil the demand for the development of eco-friendly and sustainable pavements. The objective of this study was to investigate the high temperature rheological behaviors and fatigue performance of crumb rubber modified asphalt (CRMA) binder activated using trans-polyoctenamer (TOR). Long-term and short-term aging tests were performed on samples by thin film oven test (TFOT) and pressure aging vessel (PAV). Rotational viscosity (RV), softening point, and dynamic shear rheometer (DSR) tests were conducted to characterize the rheological and physical performance. A linear amplitude sweep (LAS) test was employed to evaluate the fatigue performance. The results show that TOR-activated CRMA is more capable of hardening the matrix bitumen and improving its high-temperature viscoelastic properties after TFOT. The high temperature viscoelasticity is significantly better than styrene-butadiene-styrene block (SBS) modified asphalt (SBSMA) and CRMA. TOR-activated CRMA exhibits strong rutting resistance, but it is more likely to generate fatigue cracks under the violent advancement of complex modulus. Therefore, TOR active agent has a negative impact on the fatigue performance of CRMA. SBSMA exhibited superior fatigue resistance. The viscosity temperature index (VTS) of TOR-activated CRMA and CRMA was basically identical; the TOR did not significantly improve the temperature sensitivity of CRMA.
机译:沥青粘合剂已用Crumb橡胶(CR)改性,以满足对环保和可持续路面的发展的需求。本研究的目的是研究使用反式聚蛋白(TOR)激活Crumb橡胶改性沥青(CRMA)粘合剂的高温流变行为和疲劳性能。通过薄膜烘箱试验(TFOT)和压力老化容器(PAV)对样品进行长期和短期老化试验。进行旋转粘度(RV),软化点和动态剪切流变仪(DSR)测试以表征流变和物理性能。采用线性振幅扫描(LAS)试验来评估疲劳性能。结果表明,TOR-活化的CRMA更能够在TFOT后改善其高温粘弹性性能并改善其高温粘弹性。高温粘弹性明显优于苯乙烯 - 丁二烯 - 苯乙烯嵌段(SBS)改性沥青(SBSMA)和CrMA。 TOR-活化的CRMS表现出强烈的车辙抗性,但在复杂模量的剧烈进步下,更有可能产生疲劳裂缝。因此,Tor活性剂对CRMA的疲劳性能产生负面影响。 SBSMA表现出优异的疲劳性。 TOR激活CRMA和CRMA的粘度温度指数(VTS)基本相同; TOR没有显着提高CRMA的温度敏感性。

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