DEVELOPMENT OF MELTED EXPANDED POLYSTYRENE AS ΒITUMEN MODIFIER FOR PAVEMENT CONSTRUCTION

A. T. Oriaje, B. Dahunsi, Kazeem Adekunle Adeyemo
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Abstract

This study was designed to investigate the Performance of melted Expanded Polystrene (EPS) wastes on the quality of bitumen used in asphaltic concrete. The EPS materials were ground and then melted (200-400 oC) to form a slurry. Specific gravity of the EPS and chemical composition were determined by AAS analyses. The melted EPS was used as a modifier in mix proportions of 0, 2.5, 5, 7.5 and 10% by weight of bitumen. The 5% unmodified bitumen content obtained from the Marshall mix design was used to prepare asphalt concrete samples with 0 to 10% contents of melted EPS. The products were tested for Marshall stability, specific gravity, penetration, softening point, ductility, loss on heating, viscosity, flash and fire points and the melting point tests using standard methods. The ground EPS was uniform and well-graded (4.750-0.010 mm) with a specific gravity of 0.012, having a styrene structure with methanol on the ring. The specimen prepared with the specified mix proportion of EPS produced results that ranged between 5598.71-16937.70 N for Marshal stability; 2.02-3.54 for specific gravity; 129-152 mm for penetration; 42.80-47.50 oC for softening point; 75.00-32.90 cm for ductility; 0-3.48% for loss on heating; 208-2204 sec.STV for viscosity; 243.3-269.0 oC for flash point; 196.1-211.0 oC for melting point. The results also showed that with correlation coefficients ranging from r = 0.658-0.999, there is a strong positive correlation between the improvement exhibited in the specimen tested properties and melted EPS used in bitumen. At the 5% bitumen with 5% EPS by weight of asphalt concrete, the results of stability, flow and optimum bitumen content satisfied the British Standard Specification framework for polymer-modified bitumen and it is therefore suitable for flexible pavement construction.
熔融膨胀聚苯乙烯路面施工Βitumen改性剂的研制
本研究旨在探讨熔融聚苯乙烯(EPS)废弃物对沥青混凝土用沥青品质的影响。将EPS材料研磨后熔化(200-400℃)形成浆料。采用原子吸收光谱法测定了EPS的比重和化学成分。将熔融后的EPS作为改性剂,在沥青质量比为0、2.5、5、7.5和10%的混合比例下使用。采用Marshall混合料设计获得的5%未改性沥青含量制备了熔融EPS含量为0 ~ 10%的沥青混凝土样品。采用标准方法测试了产品的马歇尔稳定性、比重、渗透、软化点、延展性、加热损失、粘度、闪点和着火点以及熔点测试。地面EPS均匀且分级良好(4.750-0.010 mm),比重为0.012,具有苯乙烯结构,环上有甲醇。EPS混合比例为5598.71 ~ 16937.70 N,为元帅稳定性;比重为2.02-3.54;129-152毫米的穿透;42.80-47.50℃为软化点;延展性为75.00-32.90 cm;供热损失0-3.48%;208-2204秒,粘度stv;闪点243.3-269.0℃;熔点为196.1-211.0℃。结果还表明,在r = 0.658-0.999的相关系数范围内,试件性能的改善与沥青中使用的熔融EPS之间存在很强的正相关关系。在5%的沥青和5%的EPS重量比沥青混凝土下,稳定性、流动性和最佳沥青含量的结果满足英国聚合物改性沥青标准规范框架,因此适用于柔性路面施工。
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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