Evaluation of Structural and Thermal Properties of Rubber and HDPE for Utilization as Binder Modifier

F. Tahmoorian, B. Samali, J. Yeaman
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引用次数: 4

Abstract

Today, high-performance requirements for asphalt pavements demand enhanced properties for bitumen to withstand the environmental condition and traffic demand. On the other hand, the rapid growth in population and economy results in a continuously increased material consumption, and subsequently waste generation. Among various waste materials, rubber and plastic, including high-density polyethylene (HDPE), constitute some part of the non-biodegradable solid wastes worldwide. Because of the great difficulties in managing the non-biodegradable wastes and the required volume of bitumen, the idea of using plastic and rubber as bitumen modifier in new asphalt mixtures appears to be an effective and meaningful utilization of these materials. As binder plays an important role in the final performance of the asphalt mixture, an understanding of modified binder properties is essential in designing an asphalt mixture. To this point, since compatibility of asphalt mixture with polymer is the most important factor in the blend of polymers and asphalt, the properties of the waste polymers were evaluated in this ongoing research by means of advanced thermal analysis and scanning electron microscope (SEM). This chapter presents the results of this experimental study to evaluate the properties of polymers as potential modifier for virgin bitumen in asphalt mixture.
橡胶和HDPE作为粘结剂的结构和热性能评价
今天,对沥青路面的高性能要求要求增强沥青的性能,以承受环境条件和交通需求。另一方面,人口和经济的快速增长导致物质消耗不断增加,随之而来的是废物的产生。在各种废物中,橡胶和塑料,包括高密度聚乙烯(HDPE),构成了世界范围内不可生物降解的固体废物的一部分。由于管理不可生物降解废物的巨大困难和所需的沥青量,在新的沥青混合物中使用塑料和橡胶作为沥青改性剂的想法似乎是对这些材料的有效和有意义的利用。由于粘结剂对沥青混合料的最终性能起着重要作用,因此在设计沥青混合料时,了解改性粘结剂的性能是必不可少的。为此,由于沥青混合料与聚合物的相容性是聚合物与沥青混合料中最重要的因素,因此在本正在进行的研究中,通过先进的热分析和扫描电子显微镜(SEM)来评估废弃聚合物的性能。本章介绍了本实验研究的结果,以评估聚合物作为沥青混合料中原始沥青的潜在改性剂的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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