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Effect of Plastic and Tire Wastes on Marshall Properties, Density and Water Absorption of Polymer Pavement

机译:塑料和轮胎废弃物对聚合物路面马歇尔性能,密度和吸水的影响

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The amount of plastic wastes and tire wastes were continuously increasing. The old tires and polymer which was low-density polyethylene (LDPE) were used to create polymer-modified pavement to get rid of plastic wastes and tire wastes replacing asphalt road. LDPE of 15 wt% was the main matrix material of the modified road pavement instead of aspha moreover, ground tire rubber (GTR) at various concentration of 3, 5, 7 and 10 phr was used as the additive mixed with mineral aggregates of 85 wt%. In this study, the Marshall method was used to prepare the sample. The properties of Marshall stability, Marshall flow, bulk specific gravity and voids of the polymer-modified pavement were studied for comparing to commercial asphalts. The results showed that the strength of the modified pavement increased which was higher than commercial asphalts although void concentration increased. The bulk specific gravity decreased as increasing amount of GTR. The percentage of water absorption increased as addition of GTR content. This study might be benefits in reduction of waste and valuable resources as bitumen, and also recovery an environment.
机译:塑料废物和轮胎废物的数量不断增加。使用低密度聚乙烯(LDPE)的旧轮胎和聚合物用于产生聚合物改性的路面,以摆脱更换沥青道路的塑料废物和轮胎废物。 LDPE为15wt%是改进的道路路面代替沥青的主要基质材料;此外,在不同浓度为3,5,7和10phr的地轮胎橡胶(GTR)用作与85wt%的矿物聚集体混合的添加剂。在这项研究中,马歇尔方法用于制备样品。研究了Marshall稳定性,马歇尔流,散装比重和聚合物改性路面的空隙的性质,用于比较商业沥青。结果表明,由于空隙浓度增加,改性路面的强度增加到商业沥青的增加。散装比重力减少为增加的GTR量。吸水率的百分比随着GTR含量的添加而增加。这项研究可能是减少废物和宝贵资源的益处,也可以恢复环境。

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