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Evaluation of modified asphalt mixtures with APP and IPP polymers by fatigue distress criteria

机译:通过疲劳窘迫标准评估应用和IPP聚合物的改性沥青混合物

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In the present, a lot of distress is shown on the highway; this has been happened due to the increase in the numbers and loads of vehicles, and poor strength of asphalt pavement. The main objective of this research is to study the effect of adding atactic polypropylene (APP) and isotactic polypropylene (IPP) polymers as an additive to the asphalt mixture on the life of the highway. The polymers had been added to the asphalt mixture at (2%, 4%, and 6% by the weight of asphalt content with performance grade PG 64-16 at (5.2 +/- 0.5%) by weight of asphalt mixture. The SUPPERPAVE design had been used to prepare 100 cylinder and 288 beam samples to test indirect tensile strength, punching shear strength, and four-point bending beams with temperatures (10, 25, and 40 degrees C) and two micro-strains (400, and 750 mu s). The study observed that 2% of APP and IPP of the modified mixture gave the best result for all tests and also found that the fatigue life has a positive relationship with the increase in asphalt content and temperature, while it has a negative relationship with the increase in micro-strain. The study achieved that the use of APP polymer has the best effect on the asphalt mixture. Finally, it has concluded that all modified asphalt tests have got better results than the reference mixture. Consequently, the improved asphalt with both polymers gave an increase in the service life of the highway by increasing the resistance of the asphalt mixture to stresses.
机译:在现在,公路上显示了很多困难;由于车辆的数量和负载增加,并且沥青路面的强度差,这已发生这种情况。本研究的主要目的是研究将attactiC聚丙烯(APP)和全同立构聚丙烯(IPP)聚合物添加为高速公路寿命的沥青混合物添加剂的效果。通过在(5.2 +/- 0.5%)重量的沥青混合物中,在(5.2 +/- 0.5%)的沥青含量重量(5.2 +/- 0.5%)中加入(2%,4%和6%的沥青混合物中的聚合物。设计已被用来制备100个气缸和288个光束样品以测试间接拉伸强度,冲压剪切强度和四点弯曲梁,温度(10,25和40℃)和两个微菌株(400和750 MU S)。该研究观察到,修饰混合物的2%的APP和IPP对所有测试产生了最佳结果,并且还发现疲劳寿命与沥青含量和温度的增加具有阳性关系,而它具有负面关系与微菌株增加的关系。该研究达到了应用聚合物的使用对沥青混合物具有最佳效果。最后,总结,所有改性沥青试验都比参考混合物的结果更好。因此,改善了两种聚合物的沥青均给了一个增量通过将沥青混合物的抗性提高到胁迫来缓解高速公路的使用寿命。

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