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Characterization of physical & mechanical properties of asphalt concrete containing low- & high-density polyethylene waste as aggregates

机译:沥青混凝土物理与力学性能的表征,含有低密度聚乙烯废弃物作为聚集体

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摘要

Coarse aggregate is one of the main ingredients of asphalt concrete as it plays a vital role in the serviceability and durability of a flexible pavement. This study aimed at evaluating the effect of partially adding waste plastic aggregates in asphalt mix and studying its influence on different physical and mechanical properties. For this purpose, plastic waste was collected from landfill sites and classified into low density polyethylene (LDPE) and high-density polyethylene (HDPE), and, shredded into aggregates of desired size. Natural aggregates were replaced with these synthetic aggregates in different proportions such as 5%, 15% and 25%. Results showed that the incorporation of both types of plastic wastes reduced the density of asphalt mixture due to increase in air voids. The stability and flow values increased up to 15% partial replacement of natural aggregates with LDPE and HDPE. Similarly, LDPE-25 samples had lowest rut depth followed by HDPE-25. HDPE-15 sample showed the highest value of resilient modulus with a percentage increase of about 168.5% as compared to control sample. The dynamic modulus of asphalt also improved with plastic aggregates. However, the dynamic modulus values reduced with the increase in frequency for all study samples.
机译:粗骨料是沥青混凝土的主要成分之一,因为它在柔性路面的可维护性和耐久性中起着重要作用。本研究旨在评估部分加入沥青混合中的废塑料聚集体并研究其对不同物理和力学性能的影响。为此目的,从垃圾填埋场收集塑料废物,并分为低密度聚乙烯(LDPE)和高密度聚乙烯(HDPE),并分为所需尺寸的聚集体。用这些合成聚集体替换自然聚集体,以不同的比例,例如5%,15%和25%。结果表明,由于空隙增加,两种类型的塑料废物的掺入降低了沥青混合料的密度。稳定性和流量值高达15%的局部替代天然骨料与LDPE和HDPE。类似地,LDPE-25样品具有最低的车辙深度,然后是HDPE-25。与对照样品相比,HDPE-15样品显示出可弹性模量的最高值,百分比增加约168.5%。沥青的动态模量也用塑料聚集体改善。然而,动态模量值随着所有研究样本的频率的增加而减小。

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