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Experimental investigation of effect of Nano TiO2/SiO2 modified bitumen on the rutting and fatigue performance of asphalt mixtures containing steel slag aggregates

机译:纳米TiO2 / SiO2改性沥青对含钢渣集料沥青混合料车辙和疲劳性能影响的试验研究。

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Nanotechnology has been widely used in recent years due to its unique properties in improving the characteristics of many different kinds of materials, including asphalt binders. As an economically efficient material, hot mix asphalt (HMA) has a long history of being used as pavement. However, as they are viscoelastic materials, HMA mixtures experience different modes of failure when they undergo different temperature profiles and loading stress through the time. In pavements made of HMA, three types of distress are commonly observed, which include rutting, fatigue cracking and thermal cracking. Such distresses result in poor service conditions as well as shortening its service life. In almost all climate conditions, rutting in asphalt pavements is regarded as the most important distress factor, specifically in high temperature regions where pavement flexibility becomes a major problem and negatively affects the performance. Premature deterioration and high costs of restoration are among the adverse consequences of rutting. In addition, to improve the characteristics of asphalt mixture, Steel slag is selected because of its good physical properties. This research aims to analyze the results of laboratory tests that was performed on modified steel slag asphalt mixture (SSAM) containing TiO2 and Nano SiO2 particles, the materials that are added to improve the rutting resistance of Nano modified asphalt mixtures. Different tests for asphalt binder properties including penetration grade, softening point, ductility, rotational viscosity (RV) and dynamic shear rheometer (DSR) were used in a basic study to investigate the rheological characteristics of modified bitumen. In addition, to determine the optimum bitumen content in conventional and modified asphalt mixture, Marshal Test was used; and then, to determine the resistance against rutting as well as fatigue life, two tests including repeated load axial (RLA) test and Fatigue Test on asphalt concrete mixtures containing steel slag were conducted. Test results showed that adding Nano TiO2 and Nano SiO2 boost the bitumen rheological characteristics and improve toughness and viscosity by an average of 30% and 109%, respectively, while reduce penetration grade. In addition, the asphalt's rutting resistance and fatigue life was improved. (C) 2015 Elsevier Ltd. All rights reserved.
机译:近年来,由于纳米技术在改善许多不同类型的材料(包括沥青粘合剂)的特性方面的独特性能,纳米技术已被广泛使用。作为一种经济高效的材料,热拌沥青(HMA)用作铺路已有很长的历史。但是,由于HMA混合物是粘弹性材料,因此当它们经历不同的温度曲线和随时间的加载应力时,它们会经历不同的破坏模式。在由HMA制成的人行道中,通常会观察到三种类型的故障,包括车辙,疲劳裂纹和热裂纹。这种困扰导致不良的服务条件以及缩短其使用寿命。在几乎所有气候条件下,沥青路面的车辙都被认为是最重要的困扰因素,特别是在高温地区,其中路面的柔韧性成为主要问题,并对性能产生负面影响。过早的恶化和高昂的修复成本是车辙的不利后果之一。另外,为了改善沥青混合料的特性,选择钢渣是因为其具有良好的物理性能。这项研究旨在分析对包含TiO2和纳米SiO2颗粒的改性钢渣沥青混合物(SSAM)进行的实验室测试的结果,这些材料是为提高纳米改性沥青混合物的抗车辙性而添加的。在基础研究中,对沥青粘合剂的性能进行了不同的测试,包括渗透等级,软化点,延展性,旋转粘度(RV)和动态剪切流变仪(DSR),以研究改性沥青的流变特性。此外,为了确定常规沥青和改性沥青混合物中的最佳沥青含量,还使用了Marshal试验;然后,为了确定抗车辙性和疲劳寿命,对含钢渣的沥青混凝土混合物进行了两次试验,包括反复载荷轴向(RLA)试验和疲劳试验。测试结果表明,添加纳米TiO2和纳米SiO2可分别提高沥青流变特性和韧性和黏度,分别降低30%和109%,同时降低渗透等级。另外,改善了沥青的耐车辙性和疲劳寿命。 (C)2015 Elsevier Ltd.保留所有权利。

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