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Cost-effectiveness of rubber and polymer modified asphalt mixtures as related to sustainable fatigue performance

机译:橡胶和聚合物改性沥青混合物的成本效果与可持续疲劳性能有关

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Load associated fatigue cracking is one of the major distress types occurring in flexible pavements. Flexural bending beam fatigue laboratory test has been used for several decades and is considered an integral part of the Superpave advanced characterization procedure. One of the most significant solutions to sustain the fatigue life for an asphaltic mixture is to add sustainable materials such as rubber or polymers to the asphalt mixture. A laboratory testing program was performed on three gap-graded mixtures: unmodified, Asphalt Rubber (AR) and polymer-modified. Strain controlled fatigue tests were conducted according to the AASHTO T321 procedure. The results from the beam fatigue tests indicated that the AR and polymer-modified gap graded mixtures would have much longer fatigue lives compared to the reference (unmodified) mixture. In addition, a mechanistic analysis using 3D-Move software coupled with a cost-effectiveness analysis study based on the fatigue performance on the three mixtures were performed. Overall, the analysis showed that the AR and polymer-modified asphalt mixtures exhibited significantly higher cost-effectiveness compared to unmodified HMA mixture. Although AR and polymer-modification increases the cost of the material, the analysis showed that they are more cost effective than the unmodified mixture.
机译:负载相关的疲劳裂解是柔性路面中发生的主要遇险类型之一。弯曲弯曲梁疲劳实验室测试已经使用了几十年,被认为是SuperPave高级表征程序的组成部分。维持沥青混合物的疲劳寿命最重要的解决方案之一是将可持续材料添加到沥青混合物中的橡胶或聚合物。在三个间隙分级混合物中进行实验室测试程序:未改性,沥青橡胶(Ar)和聚合物改性。根据AAPTO T321程序进行应变控制的疲劳试验。光束疲劳试验的结果表明,与参考(未改性)混合物相比,Ar和聚合物改性间隙分级混合物将具有更长的疲劳寿命。另外,使用基于三种混合物上的疲劳性能的基于疲劳性能的成本效益分析研究的3D移动软件进行机械分析。总体而言,分析表明,与未修饰的HMA混合物相比,Ar和聚合物改性的沥青混合物表现出显着更高的成本效益。尽管AR和聚合物改性增加了材料的成本,但分析表明它们比未修饰的混合物更具成本效益。

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