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The properties and performance of polymer fibre reinforced bituminous mixtures

机译:聚合物纤维增强沥青混合物的性能和性能

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The low tensile strength of bituminous mixtures has been recognized as a source of its poor performance, particularly that which relates to cracking. Laboratory investigations into improving their tensile properties have been performed utilizing polypropylene and polyester fibres which were added to Hot Rolled Asphalt (HRA) bituminous mixtures as partial replacement of Ordinary Portland Cement (OPC) used as the filler material. The incorporation of the polymer fibres into the bituminous mixtures altered the rheological properties and behaviour of the resulting binder whilst resulting in a higher optimum bitumen content for the mixture. Laboratory tests showed that the fibres reduced the density, stability and stiffness of the resulting mixture while increasing its porosity and permeability. Bituminous mixtures containing the fibres displayed lower susceptibility to moisture induced damage. Even though these mixtures have a higher void content than the base mixture, the additional bitumen in the fibre mixtures increased the film thickness on the aggregate particles thus affording greater protection from moisture. The addition of the fibres into the bituminous mixtures caused a slight decrease in the tensile strength and a slight increase in the tensile strain (elongation) at failure, indicating that the additional bitumen added flexibility or extensibility to the mixtures. This was manifested in the higher toughness and energy that was obtained in the mixtures, thus improving its resistance to cracking. This was supported by the fatigue tests which showed improved fatigue performance of the mixtures. The fatigue properties of the fibre mixtures were not enhanced at low strain levels; but at high strain levels, the fibre mixtures provided a far superior performance than the base mixture, making it appealing for use as a base-course in highway construction.
机译:沥青混合物的低拉伸强度已被认为是其性能差的源,特别是涉及开裂的源。实验室研究已经利用聚丙烯和聚酯纤维进行改善的拉伸性能,该聚丙烯和聚酯纤维将加入热轧沥青(HRA)沥青混合物中作为填充材料的普通波特兰水泥(OPC)的部分替代。将聚合物纤维掺入沥青混合物中改变了所得粘合剂的流变性质和行为,同时产生较高的混合物的最佳沥青含量。实验室测试表明,纤维降低了所得混合物的密度,稳定性和刚度,同时提高其孔隙率和渗透性。含有纤维的沥青混合物显示对水分诱导的损伤的敏感性较低。尽管这些混合物具有比基础混合物更高的空隙含量,但纤维混合物中的附加沥青增加了骨料颗粒上的膜厚度,从而得到更大的保护。将纤维加入沥青混合物中引起抗拉强度的略微降低和抗拉菌株(伸长率)的略微增加,表明附加沥青增加了对混合物的柔韧性或可伸展性。这表明在混合物中获得的较高的韧性和能量,从而提高其对裂化的抗性。这是通过疲劳试验的支持,显示出改善混合物的疲劳性能。低应变水平不增强纤维混合物的疲劳性能;但在高菌株水平下,纤维混合物提供的性能远远优于基础混合物,使其有吸引力作为公路建设中的基础过程。

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