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Physical Rheological and Morphological Properties of Asphalt Reinforced by Basalt Fiber and Lignin Fiber

机译:玄武岩纤维和木质素纤维增强沥青的物理流变和形态学性质

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摘要

Studies show that each kind of fiber has its own advantages in improving the properties of asphalt binders. However, there are very limited research studies about mixed fiber-reinforced asphalt (MFRA). In this study, two kinds of fibers, basalt fiber (BF) and lignin fiber (LF), were selected to reinforce SBS (styrene–butadiene–styrene triblock copolymer)-modified asphalt, which is now widely used in pavement engineering. MFRA samples with different fiber mix ratios (FMRs) were prepared for the tests of softening point, ductility, and rheological properties, the micromorphology of which was studied by using scanning electron microscope (SEM). The oil (asphalt) absorption rates of mixed fibers with different FMRs were also tested. The results show that the properties of MFRA were affected by the physical and chemical properties of fibers. Basalt fiber can better strengthen the physical properties of MFRA, while lignin fiber is good for improving the rheological properties, and the oil absorption rate of lignin fiber is higher than that of basalt fiber. Furthermore, the best FMR calculated by the efficacy coefficient method (ECM) was recommended as 1:2 (BF:LF). An interface layer between the fiber and asphalt was observed from the micro images, proving that the fibers bond well with the asphalt. Generally, mixing BF and LF together into SBS-modified asphalt could make full use of the advantages of different fibers and reinforce the comprehensive performance of MFRA better.
机译:研究表明,每种纤维在改善沥青粘合剂的性能方面都有其自身的优势。但是,关于混合纤维增强沥青(MFRA)的研究非常有限。在这项研究中,选择了两种纤维,玄武岩纤维(BF)和木质素纤维(LF)来增强SBS(苯乙烯-丁二烯-苯乙烯三嵌段共聚物)改性的沥青,目前已广泛用于路面工程中。制备了具有不同纤维混合比(FMR)的MFRA样品,用于测试软化点,延展性和流变性能,并使用扫描电子显微镜(SEM)研究了其微观形貌。还测试了具有不同FMR的混合纤维的油(沥青)吸收率。结果表明,MFRA的性能受纤维的物理和化学性能的影响。玄武岩纤维可以更好地增强MFRA的物理性能,而木质素纤维具有改善流变性能的作用,木质素纤维的吸油率高于玄武岩纤维。此外,建议通过功效系数法(ECM)计算的最佳FMR为1:2(BF:LF)。从显微图像观察到纤维和沥青之间的界面层,证明纤维与沥青结合良好。通常,将BF和LF混合到SBS改性沥青中可以充分利用不同纤维的优势,并更好地增强MFRA的综合性能。

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