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Performance evaluation of Hot Mix Asphalt (HMA) containing bitumen modified with Gilsonite

机译:Gilsonite改性沥青混合料的热拌沥青(HMA)的性能评估

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摘要

Iran-produced bitumen under the circumstances of severe temperature fluctuation, heavy traffic load and raining/freezing conditions show low efficiency; therefore, it is necessary to improve its properties accordingly. Existence of weakness in produced bitumen result in failure occurrence in asphalt pavements during service life of asphalt roads. Given the existence of considerable reserves of Gilsonite in Iran, its low costs compared with other additives and its remarkable properties, we can study asphalts modified by Gilsonite. At the present time, little research has been conducted on this modifier in the world and Iran (which its properties are still not quite evident for researchers). The most important failure in flexible pavements is permanent deformations which are known as rutting. Rutting is longitudinal depression in the wheel path in bituminous pavements. The rate and depth of rutting depend on the internal factors such as bitumen properties, aggregate, mixture properties and thickness of pavement layers. In this lab study, with regard to the technical and executive issues, common functional performance based tests of bitumen were performed on specimens through adding Gilsonite with 0, 2,4, 6, 8, 10 wt.% of made bitumen specimens. Then, the optimum percentage was calculated using the AHP. The specimens containing pure bitumen 60-70 and modified bitumen 60-70 with Gilsonite in two different aggregations (4 and 5) were made and the effects of adding Gilsonite in Marshall Stability and flow, indirect tensile strength and moisture sensitivity, as well as dynamic creep, and resilient modulus were evaluated by the UTM device. The research showed that adding Gilsonite to bitumen in hot asphalt mixtures considerably increases Marshall Stability and resilient modulus parameter in asphalt specimens. However, resilient modulus test indicated a significant reduction in flexibility property of asphalt mixtures made of modified bitumens. Moreover, increasing the flow number obtained from the dynamic creep test indicate the increase of rutting resistance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在温度剧烈波动,交通负荷大和降雨/冻结条件下,伊朗生产的沥青效率低;因此,有必要相应地改善其性能。在沥青道路的使用寿命期间,所产生的沥青的弱点的存在导致沥青路面的破坏发生。鉴于在伊朗存在大量的吉列石矿,与其他添加剂相比它的成本低,并且其卓越的性能,我们可以研究由吉列石石改性的沥青。目前,在全世界和伊朗,对该改性剂的研究很少(对于研究人员而言,其性质仍不十分明显)。柔性路面最重要的破坏是永久变形,这就是车辙。车辙是沥青路面的轮径的纵向凹陷。车辙的速率和深度取决于内部因素,例如沥青性质,集料,混合性质和路面层的厚度。在此实验室研究中,关于技术和执行问题,通过向吉尔尼石中添加0、2、4、6、8、10重量%的人造沥青样品,对基于沥青的普通功能性能测试进行了测试。然后,使用AHP计算最佳百分比。制备了包含两种不同聚集体(4和5)的纯沥青60-70和改性的沥青60-70的硅藻土样品,并添加了硅藻土对马歇尔稳定性和流动性,间接拉伸强度和湿度敏感性以及动态性的影响蠕变和弹性模量由UTM设备评估。研究表明,在高温沥青混合料中,将柏油石添加到沥青中会大大提高沥青样品的马歇尔稳定性和弹性模量参数。然而,弹性模量测试表明由改性沥青制成的沥青混合物的柔韧性显着降低。而且,从动态蠕变测试获得的流量增加表明耐车辙性增加。 (C)2016 Elsevier Ltd.保留所有权利。

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