Pei Zhaohui, Lou Keke, Kong Heyu, Wu Bangwei, Wu Xing, Xiao Peng, Qi Yanjuan
College of Civil Science and Engineering, Yangzhou University, Yangzhou 225100, China.
Research Center for Basalt Fiber Composite Construction Materials, Yangzhou 225127, China.
Materials (Basel). 2021 Dec 3;14(23):7426. doi: 10.3390/ma14237426.
It is now more popular to use basalt fibers in the engineering programs to reinforce the crack resistance of asphalt mixtures. However, research concerning the impact of the basalt fiber diameter on the macro performance of AC-13 mixtures is very limited. Therefore, in this paper, basalt fibers with three diameters, including 7, 13 and 25 μm, were selected to research the influences of fiber diameter on the crack resistance of asphalt mixtures. Different types of crack tests, such as the low temperature trabecular bending test (LTTB), the indirect tensile asphalt cracking test (IDEAL-CT), and the semi-circular bend test (SCB), were conducted to reveal the crack resistance of AC-13 mixtures. The entire cracking process was recorded through the digital image correlation (DIC) technique, and the displacement cloud pictures, strain, average crack propagation rate (V) and fracture toughness (FT) indicators were used to evaluate the crack inhibition action of the fiber diameter on the mixture. The results showed that the incorporation of basalt fiber substantially improved the crack resistance, slowed down the increase of the displacement, and delayed the fracture time. Basalt fiber with a diameter of 7 μm presented the best enhancement capability on the crack resistance of the AC-13 mixture. The flexibility index (FI) of the SCB test showed a good correlation with V and FT values of DIC test results, respectively. These findings provide theoretical advice for the popularization and engineering application of basalt fibers in asphalt pavement.
在工程项目中使用玄武岩纤维来增强沥青混合料的抗裂性现在更受欢迎。然而,关于玄武岩纤维直径对AC - 13混合料宏观性能影响的研究非常有限。因此,本文选择了三种直径分别为7μm、13μm和25μm的玄武岩纤维,研究纤维直径对沥青混合料抗裂性的影响。进行了不同类型 的裂缝试验,如低温小梁弯曲试验(LTTB)、间接拉伸沥青开裂试验(IDEAL - CT)和半圆弯曲试验(SCB),以揭示AC - 13混合料的抗裂性。通过数字图像相关(DIC)技术记录整个开裂过程,并使用位移云图、应变、平均裂缝扩展速率(V)和断裂韧性(FT)指标来评估纤维直径对混合料的抗裂作用。结果表明,掺入玄武岩纤维显著提高了抗裂性,减缓了位移的增加,并延迟了断裂时间。直径为7μm的玄武岩纤维对AC - 13混合料的抗裂性增强能力最佳。SCB试验的柔韧性指数(FI)分别与DIC试验结果的V值和FT值具有良好的相关性。这些研究结果为玄武岩纤维在沥青路面中的推广和工程应用提供了理论建议。