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Effect of basalt fiber on the low-temperature performance of an asphalt mixture in a heavily frozen area

机译:玄武岩纤维对沥青混合物低温性能的影响重冷冻区

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摘要

In the present study, basalt fiber was used to enhance the low-temperature performance of asphalt mixtures in heavily frozen areas. By conducting three-point bending tests at various temperatures (-10 degrees C, -20 degrees C and -30 degrees C) and basalt fiber contents (0.2-0.5%), the changing trends of the bending stress, bending strain, and strain energy density were investigated and discussed. The fracture type of each asphalt mixture was distinguished based on the bending coefficient, and the micromorphology and microstructures of each basalt fiber-reinforced asphalt mixture were observed via scanning electron microscopy. The results show that basalt fiber effectively improves the low-temperature performance of an asphalt mixture and enhances its adaptability to a lower-temperature environment. The optimum fiber content of an AC-13 asphalt mixture is 0.4% based on its low-temperature performance, whereas that of an AC-20 mixture is 0.3%. Under the optimum fiber content, the low-temperature failure type of an asphalt mixture changes from brittle failure to flexible failure at -20 degrees C. The basalt fiber network enhances the integrity of the asphalt mixture and delays the extension of microcracks. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本研究中,使用玄武岩纤维来增强沥青混合物在冰冻区域中的低温性能。通过在各种温度下进行三点弯曲试验(-10℃,-20℃和-30℃)和玄武岩纤维含量(0.2-0.5%),弯曲应力,弯曲应变和菌株的变化趋势研究和讨论了能量密度。基于弯曲系数,区分每种沥青混合物的断裂型,通过扫描电子显微镜观察每个玄武岩纤维增强沥青混合物的微晶和微观结构。结果表明,玄武岩纤维有效提高了沥青混合物的低温性能,并提高了其对较低温度环境的适应性。 AC-13沥青混合物的最佳纤维含量为0.4%,基于其低温性能,而AC-20混合物的最佳纤维含量为0.3%。在最佳纤维含量下,沥青混合物的低温破坏型从脆性失败变化到-20℃的柔性失效。玄武岩纤维网络增强了沥青混合物的完整性,并延迟了微裂纹的延伸。 (c)2020 elestvier有限公司保留所有权利。

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