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酸雨侵蚀抗性沥青混合料耐久性研究

Study on the Durability of Acid Rain Erosion-Resistant Asphalt Mixtures.

作者信息

Wei Jiatuo, Chen Quansheng, Du Jiaying, Liu Kefei, Jiang Kang

机构信息

School of Civil Engineering, Central South University of Forestry & Technology, Changsha 410004, China.

Guangzhou Highway Engineering Group Co., Ltd., Guangzhou 510030, China.

出版信息

Materials (Basel). 2022 Mar 1;15(5):1849. doi: 10.3390/ma15051849.

Abstract

Acid erosion can accelerate the process of early damage of asphalt pavement and decrease the durability of asphalt pavement. However, there are limited research results for asphalt mixtures that can resist acid rain erosion. To systematically evaluate the impact and action law of acid rain erosion on the durability of asphalt mixtures, three gradation schemes were used: periodic dry-wet cycle immersion test, contact angle test and road performance test. The acid rain erosion resistance of epoxy asphalt mixture, SBS-modified asphalt mixture and 70# matrix asphalt mixture were tested from three aspects of anti-aging performance, freeze-thaw cycle performance and fatigue performance. The results show that the erosion of acid rain can significantly decrease the adhesion between asphalt and aggregate, and affects the road performance of the asphalt mixture. Acid rain erosion can significantly decrease the mechanical properties, adhesion and durability of asphalt mixtures. Epoxy asphalt has better physical properties, adhesion and acid rain erosion resistance than 70# matrix asphalt and SBS-modified asphalt. Epoxy asphalt has excellent adhesion due to its polar group, high cohesion and thermosetting resin with low shrinkage, which can effectively resist moisture erosion, spalling and temperature stress cracking, thereby effectively resisting the erosion of acid rain. Epoxy asphalt mixture has the strongest acid rain erosion resistance, which can be further enhanced when used together with waste rubber powder and modified bamboo fiber. On the whole, asphalt mixture with high-density structure and thicker asphalt film can effectively resist acid rain erosion. The durability of asphalt concrete (AC)-type gradation mixture and stone mastic asphalt (SMA)-type gradation mixture are equivalent, and both are superior to open-graded friction courses (OGFC)-type gradation mixture. The gradation of asphalt mixtures and the type of asphalt binder have great influence on their acid rain erosion resistance and durability. In order to realize the directional control of the acid rain erosion resistance and durability of different asphalt mixtures, a multi-parameter comprehensive assessment indicator system between the type and property of asphalt, the gradation of asphalt mixture, and the acid rain resistance and durability of the mixture need to be established in the future.

摘要

酸蚀会加速沥青路面早期损坏的进程,降低沥青路面的耐久性。然而,针对能抵抗酸雨侵蚀的沥青混合料的研究成果有限。为系统评估酸雨侵蚀对沥青混合料耐久性的影响及作用规律,采用了三种级配方案:周期性干湿循环浸泡试验、接触角试验和路用性能试验。从抗老化性能、冻融循环性能和疲劳性能三个方面对环氧沥青混合料、SBS改性沥青混合料和70#基质沥青混合料的抗酸雨侵蚀性能进行了测试。结果表明,酸雨侵蚀会显著降低沥青与集料之间的黏附性,影响沥青混合料的路用性能。酸雨侵蚀会显著降低沥青混合料的力学性能、黏附性和耐久性。环氧沥青比70#基质沥青和SBS改性沥青具有更好的物理性能、黏附性和抗酸雨侵蚀性能。环氧沥青因其极性基团、高内聚力和低收缩率的热固性树脂而具有优异的黏附性,能有效抵抗水分侵蚀、剥落和温度应力开裂,从而有效抵抗酸雨侵蚀。环氧沥青混合料具有最强的抗酸雨侵蚀性能,与废橡胶粉和改性竹纤维一起使用时,其性能可进一步提高。总体而言,具有高密度结构和较厚沥青膜的沥青混合料能有效抵抗酸雨侵蚀。密级配沥青混凝土(AC)型混合料和沥青玛蹄脂碎石(SMA)型混合料的耐久性相当,且均优于开级配磨耗层(OGFC)型混合料。沥青混合料的级配和沥青结合料类型对其抗酸雨侵蚀性能和耐久性有很大影响。为实现对不同沥青混合料抗酸雨侵蚀性能和耐久性的定向控制,未来需要建立沥青类型与性能、沥青混合料级配以及混合料抗酸雨侵蚀性能和耐久性之间的多参数综合评价指标体系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27e1/8911858/f39cf0364db2/materials-15-01849-g001.jpg

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