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Performance evaluation of stone mastic asphalt mixture with different high viscosity modified asphalt based on laboratory tests

机译:基于实验室测试的不同高粘度改性沥青石乳胶沥青混合料的性能评估

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摘要

To seek the optimum asphalt binder used in stone mastic asphalt (SMA) mixture of steel deck pavement, the common modified asphalt in the SMA-13 mixture was replaced with high viscosity modified (HVM) asphalt, and the four kinds of HVM asphalts were selected in this paper. The different test methods such as experimental device of mixing power at different velocities, rutting test, Hamburg wheel tracking device(HWTD) test, bending test at low temperature and indirect tensile fatigue test were conducted to evaluate the construction workability, temperature stability, water stability and fatigue performance of HVM asphalt mixture. Besides the performance difference of various HVM asphalt mixture was also discussed. The results show that construction workability of SMA-13 mixture is significantly affected by the asphalt type and mixing temperature, and the influence of mixing temperature on construction workability is more obvious. Besides it is proved that the construction workability of asphalt mixture is influenced by asphalt viscosity and mineral aggregate. The SMA mixture with self-developed HVM asphalt composed by the linear and star styrene-butadienestyrene block copolymer (SBS) modifier has advantages in construction workability and comprehensive properties. Thus the above asphalt can be selected to prepare SMA mixture applied in steel deck pavement. The construction workability, high temperature performance and fatigue performance of HVM asphalt mixture with SBS compound modified asphalt are close to HVM asphalt mixture with TPS additive or HVM asphalt mixture with SINOTPS, and the the former low temperature performance and water stability are superior to HVM asphalt mixture with TPS additive and HVM asphalt mixture with SINOTPS. The dosage of SBS compound modifier in HVM asphalt is just 6.0%, and the blending ratio of linear SBS modifier and star SBS modifier in the compound modifier is 2:1. It means that the self-developed HVM asphalt with SBS compound modifier has the high performance-price ratio. The reduction of key modified materials in HVM asphalt will be conducive to saving the construction cost of pavement, which will promote the HVM asphalt with SBS compound modifier applying in SMA mixture of steel deck pavement. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了寻找用于钢甲板路面的石乳香沥青(SMA)混合物的最佳沥青粘合剂,将SMA-13混合物中的普通改性沥青替换为高粘度改性(HVM)沥青,并选择了四种HVM沥青在本文中。进行了不同速度的混合动力实验装置,车辙试验,汉堡车轮跟踪装置(HWTD)试验,低温弯曲试验和间接拉伸疲劳试验等不同的试验方法,以评估施工可加工性,温度稳定性,水稳定性。和HVM沥青混合料的疲劳性能。此外,还讨论了各种HVM沥青混合料的性能差异。结果表明,沥青类型和拌和温度对SMA-13混合料的施工可加工性有显着影响,搅拌温度对施工可加工性的影响更为明显。证明沥青混合料的施工可施工性受沥青黏度和矿物骨料的影响。由线性和星形苯乙烯-丁二烯苯乙烯嵌段共聚物(SBS)改性剂组成的SMA与自行开发的HVM沥青混合料在施工可加工性和综合性能方面具有优势。因此,可以选择上述沥青以制备用于钢甲板铺面的SMA混合物。 HVM沥青与SBS复合改性沥青混合料的施工可加工性,高温性能和疲劳性能接近TPS添加剂的HVM沥青混合料或SINOTPS的HVM沥青混合料,并且前者的低温性能和水稳定性优于HVM沥青与TPS添加剂和HVM沥青与SINOTPS的混合物。 HVM沥青中SBS复合改性剂的用量仅为6.0%,线性SBS改性剂和星形SBS改性剂在复合改性剂中的混合比例为2:1。这意味着具有SBS复合改性剂的自行开发的HVM沥青具有较高的性能价格比。减少HVM沥青中的关键改性材料,将有利于节省路面的建设成本,这将促进SBS复合改性剂将HVM沥青应用于钢桥面路面的SMA混合料中。 (C)2019 Elsevier Ltd.保留所有权利。

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