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首页> 外文期刊>Journal of Cleaner Production >Full-scale validation of bio-recycled asphalt mixtures for road pavements
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Full-scale validation of bio-recycled asphalt mixtures for road pavements

机译:道路路面生物再生沥青混合物的全规模验证

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摘要

Recycling of asphalt has become a well-established practice in many countries, however the road pavement industry remains a bulk consumer of extracted raw materials. Novel solutions that find root in circular economy concepts and life-cycle approaches are needed in order to enable optimisation of infrastructure resource efficiency, starting from the design stage and spanning the whole value chain in the construction sector. It is within this framework that the present study presents a full-scale validation of asphalt mixtures specifically designed to ensure durability of flexible road pavements and at the same time enabling the reuse of reclaimed asphalt pavement (RAP) through the incorporation of bio-materials as recycling agent. These bio-recycled asphalt mixtures have been first designed in laboratory and subsequently validated in a real scale experiment conducted at the accelerated pavement testing facilities at IFSTTAR. Four pavement sections were evaluated: three test sections with innovative bio-materials, and a reference section with a conventional, high modulus asphalt mix (EME2). Two tests were realized: a rutting test and a fatigue test and for each of them the evolution of bio-recycled asphalt mixtures properties as well as the pavement deteriorations were recorded and studied. Evolution of the bio-asphalt mixtures was monitored for a 5 months period after paving by a bespoke nondestructive micro-coring, extracting and recovering methodology developed at the Western Research Institute (WRI). The structural health of the pavement sections was monitored through periodic falling weight deflectometer (FWD) as well as with strain gages and temperature sensors. As a result the three tailored bio-asphalt mixtures performed similarly or better than the control mixture, both in terms of property evolutions and durability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:沥青的回收已成为许多国家的既定实践,然而,道路路面行业仍然是批量消费的原材料。需要在循环经济概念和生命周期方法中找到根系的新解决方案,以便从设计阶段开始优化基础设施资源效率,并从建筑业的整个价值链跨越整个价值链。在本框架内,本研究提出了专门设计的沥青混合物的全规模验证,以确保柔性道路路面的耐用性,同时通过将再生沥青路面(RAP)掺入Bio-Materials作为回收剂。这些生物再循环沥青混合物首先在实验室设计,随后在IFSTTAR的加速路面试验设施进行的实际规模实验中验证。评估四个路面部分:三个试验部分,具有创新的生物材料,以及具有常规的高模量沥青混合物(EME2)的参考截面。实现了两次测试:记录和研究并研究了两种试验和疲劳试验,以及各自的生物再循环沥青混合物的演变以及路面劣化。通过在西部研究所(WRI)中开发的定制无损微型胶,提取和回收方法,监测生物沥青混合物的进化5个月。通过周期性下降重量偏转仪(FWD)以及应变计和温度传感器来监测路面部分的结构健康。结果,在性能演进和耐久性方面,三种定制的生物沥青混合物同样或比对照混合物更好地进行。 (c)2019 Elsevier Ltd.保留所有权利。

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