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Evaluation of Rheological Behavior, Resistance to Permanent Deformation, and Resistance to Fatigue of Asphalt Mixtures Modified with Nanoclay and SBS Polymer

机译:流变行为评价,对纳米铬和SBS聚合物改性沥青混合物的抗性永久变形,抗抗脂肪的抗性

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摘要

Fatigue cracking and rutting are among the main distresses identified in flexible pavements. To reduce these problems and other distresses, modified asphalt mixtures have been designed and studied. In this regard, this paper presents the results of a study on rheological behavior and resistance to permanent deformation and to fatigue of four different asphalt mixtures: (1) with conventional asphalt binder (CAP 50/70); (2) with binder modified by nanoclay (3% NC); (3) with binder modified by styrene−butadiene−styrene polymer (SBS 60/85); and (4) with binder modified by nanoclay and SBS (3% NC + 2% SBS). For this analysis, the mixtures were evaluated based on complex modulus, permanent deformation tests, and fatigue tests (4PB, in the four-point bending apparatus), with the subsequent application of numerical simulations. The results obtained show a better rheological behavior related to greater resistance to permanent deformation for the mixture 3% NC + 2% SBS, which could represent an alternative for roads where a high resistance to rutting is required. Otherwise, on fatigue tests, higher resistance was observed for the SBS 60/85 mixture, followed by the 3% NC + 2% SBS mixture. Nevertheless, based on the results of the numerical simulations and considering the possibility of cost reduction for the use of the 3% NC + 2% SBS mixture, it is concluded that this modified material has potential to provide improvements to the road sector around the world, especially in Brazil.
机译:疲劳开裂和车辙是柔性路面中鉴定的主要苦难之一。为了减少这些问题和其他痛苦,设计和研究了改进的沥青混合物。在这方面,本文介绍了对流变行为和对永久性变形的抗性以及四种不同沥青混合物的疲劳的研究结果:(1)与常规沥青粘合剂(第50/70/70); (2)用纳米粘土改性的粘合剂(3%NC); (3)通过苯乙烯 - 丁二烯 - 苯乙烯聚合物(SBS 60/85)改性粘合剂; (4)用纳米粘土和SBS改性的粘合剂(3%NC + 2%SBS)。对于该分析,基于复杂模量,永久变形试验和疲劳试验(在四点弯曲设备中4pb,在四点弯曲设备中的疲劳试验(在四点弯曲设备中)评估混合物,随后施加数值模拟。获得的结果显示出与混合物3%NC + 2%SBS的永久性变形抗性相关的更好的流变行为,这可以代表需要高抗栅格的道路的替代方案。否则,在疲劳试验中,对SBS 60/85混合物观察到较高的阻力,然后观察到3%NC + 2%SBS混合物。然而,基于数值模拟的结果,考虑到使用3%NC + 2%SBS混合物的成本降低的可能性,得出的结论是,这种改进的材料有可能为世界各地的道路行业提供改进,特别是在巴西。

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