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Assessing the effects of RAP, RAS, and warm-mix technologies on fatigue performance of asphalt mixtures and pavements using viscoelastic continuum damage approach

机译:使用粘弹性连续体损伤方法评估RAP,RAS和热拌技术对沥青混合料和路面疲劳性能的影响

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摘要

The objective of this study was to evaluate the effects of incorporating recycled materials, i.e. reclaimed asphalt pavement (RAP) and recycled asphalt shingles, and the use of warm-mix technologies on fatigue performance of asphalt mixtures and pavement structures using the viscoelastic continuum damage (VECD) approach. Material characterisation involved dynamic modulus test and direct tension cyclic fatigue test. Two parameters, namely Material Fatigue Sensitivity (MFS) and Structure Fatigue Sensitivity (SFS), were developed to represent the fatigue resistance of asphalt mixtures and their performance in pavement structures, respectively. Validity of MFS and SFS were verified by the semi-circular bend test at intermediate temperature and the field fatigue performance, respectively. Based on the MFS results, increase in the content of recycled materials compromised fatigue resistance, implementation of warm-mix technologies brought about marginal improvements, and use of soft binder yielded pronounced fatigue benefits for hot-mix asphalt mixtures with high RAP content.
机译:这项研究的目的是评估掺入再生材料(即再生沥青路面(RAP)和再生沥青瓦)的影响,以及使用热混合技术使用粘弹性连续体损伤对沥青混合料和路面结构的疲劳性能的影响( VECD)方法。材料表征包括动态模量测试和直接拉伸循环疲劳测试。开发了两个参数,分别是材料疲劳敏感性(MFS)和结构疲劳敏感性(SFS),分别代表沥青混合料的抗疲劳性及其在路面结构中的性能。 MFS和SFS的有效性分别通过半圆形弯曲试验在中间温度和现场疲劳性能下进行验证。基于MFS的结果,增加回收材料的含量会损害耐疲劳性,采用温拌技术会带来一定程度的改善,对于高RAP含量的热拌沥青混合料,使用软粘结剂会产生明显的疲劳益处。

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