改性沥青粘结剂及多磷酸混合料的评价

M. Hilal
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摘要

车辙是大多数伊拉克沥青路面最常见的困扰。沥青粘合剂是通过添加添加剂和聚合物对其进行改性,以提高其物理质量和满足性能要求。多磷酸(PPA)已在许多国家用于增强沥青粘结剂和混合物的物理和机械特性,从而改善沥青路面的性能。本文通过对伊拉克沥青粘结剂和混合料的性能进行评价,采用按沥青粘结剂重量计算的3个百分比的多磷酸(PPA)(0.4、0.8和1.2)加入到(60-70)渗透级沥青粘结剂中,以表明PPA在伊拉克沥青路面中使用的适用性和适宜性。对原沥青粘结剂和改性沥青粘结剂进行传统的渗透、延性、软化点和粘度测试。结果表明,改性后的粘结剂性能较好,物理性能有所提高。其他测试是马歇尔稳定性和车轮轨迹测试。结果表明,PPA的加入增加了沥青混合料的马歇尔稳定性,提高了沥青路面混合料的性能。在40℃和50℃两种试验温度下对原混合料和改性混合料进行轮轨试验,结果表明,随着PPA添加量的增加,车辙深度减小。结果表明,掺加%PPA可以提高伊拉克沥青路面的性能,使混合料具有更强的抗车辙性,特别是在高温天气下。
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Evaluation of Modified Asphalt Binder and Mixtures with Polyphosphoric Acid
Rutting is the most common distress that most Iraqi asphalt pavements suffer from it. Asphalt binders are modified by using additives and polymers to enhance their physical qualities and fulfill the performance demands. Polyphosphoric acid (PPA) has been used in many countries to enhance the physical and mechanical characteristics of asphalt binders and mixtures that can improve the performance of asphalt pavements. In this paper, evaluation of the Iraqi asphalt binder and mixtures performance by using three percentages of Polyphosphoric acid (PPA) (0.4, 0.8, and 1.2) percent by asphalt binder weight and added to (60-70) penetration grade asphalt binder to show the applicability and suitability of using PPA in asphalt pavement in Iraq. Original asphalt binder and modified are subjected to traditional tests which are penetration, ductility, softening point, and viscosity. Results show better performance and enhancement of the physical properties of the modified binder. Other tests are Marshall Stability and wheel track tests. The results of the addition of PPA to the asphalt mixture show increases in the Marshall Stability and enhance the performance of the asphalt pavement mixtures. The wheel track test is applied to the original and modified mixture at two test temperatures 40 ?C and 50 ?C and the results show a decrease in the rut depth when the percentages of PPA increase. It is concluded that %PPA addition will enhance the performance of the Iraqi asphalt pavement and the mixture will be more rutting resistant, especially in high-temperature weather.
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