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Mechanical Properties of Crumb Rubber and Basalt Fiber Composite Modified Porous Asphalt Concrete with Steel Slag as Aggregate

机译:基屑橡胶和玄武岩纤维复合改性多孔沥青混凝土钢渣的机械性能

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摘要

This paper studies the mechanical properties of porous asphalt concrete with styrene-butadiene-styrene (SBS) polymer modified bitumen as the binder, steel slag as the aggregate and crumb rubber and basalt fiber as modifiers. First, the appearance, mechanics, chemical composition and high-temperature stability of steel slag were studied by some equipment. Then, three kinds of porous asphalt concrete with SBS polymer modified bitumen as binder were produced, Namely, crumb rubber modified porous asphalt concrete (CR-PAC), basalt fiber modified porous asphalt concrete (BF-PAC), and basalt fiber and crumb rubber composite modified asphalt concrete (CM-PAC). Finally, the properties of the three kinds of modified PACs were studied through the Marshall test, freeze-thaw splitting test, low-temperature splitting test, permeability test, and creep test. The results showed that the crush value and abrasion value of steel slag are 15.1% and 13.5%, respectively; it has excellent strength and abrasion. In addition, the steel slag shows a porous structure and it provides an interface basis for a better bond with bitumen. For the three PACs, the results showed that the Marshall stability, water stability, and low-temperature crack resistance of CM-PAC are all the best Furthermore, CM-PAC has better rutting resistance than two single modified PACs, based on creep test results. The CM-PAC in this study can be used as a new type of pavement material.
机译:本文研究了多孔沥青混凝土用苯乙烯 - 丁二烯 - 苯乙烯(SBS)聚合物改性沥青作为粘合剂,钢渣作为骨料和纤维纤维作为改性剂的粘合剂。首先,一些设备研究了钢渣的外观,力学,化学成分和高温稳定性。然后,制备了三种具有SBS聚合物改性沥青作为粘合剂作为粘合剂的多孔沥青混凝土,即面包屑橡胶改性多孔沥青混凝土(CR-PAC),玄武岩纤维改性多孔沥青混凝土(BF-PAC),以及玄武岩纤维和面包屑橡胶复合改性沥青混凝土(CM-PAC)。最后,通过马歇尔试验,冻融分裂试验,低温分裂试验,渗透性试验和蠕变试验研究了三种改性PACs的性质。结果表明,钢渣的挤压值和磨损值分别为15.1%和13.5%;它具有出色的力量和磨损。此外,钢渣显示多孔结构,它为沥青更好的粘合提供了界面基础。对于三植物,结果表明,CM-PAC的马歇尔稳定性,水稳定性和低温裂纹抗性,CM-PAC基于蠕变试验结果,CM-PAC具有比两个单一改性PAC的更好的抵抗抵抗力。本研究中的CM-PAC可用作新型的路面材料。

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