Cheng Yongchun, Yu Di, Gong Yafeng, Zhu Chunfeng, Tao Jinglin, Wang Wensheng
College of Transportation, Jilin University, Changchun 130025, China.
College of Transportation, Jilin Jianzhu University, Changchun 130021, China.
Materials (Basel). 2018 Nov 28;11(12):2400. doi: 10.3390/ma11122400.
This study proposed an asphalt mixture modified by basalt fiber and diatomite. Performance of diatomite modified asphalt mixture (DAM), basalt fiber modified asphalt mixture (BFAM), diatomite and basalt fiber compound modified asphalt mixture (DBFAM), and control asphalt mixture (AM) were investigated by experimental methods. The wheel tracking test, low-temperature indirect tensile test, moisture susceptibility test, fatigue test and freeze⁻thaw cycles test of four kinds of asphalt mixtures were carried out. The results show that the addition of basalt fiber and diatomite can improve the pavement performance. Diatomite has a significant effect on the high temperature stability, moisture susceptibility and resistance to moisture and frost damage under freeze⁻thaw cycles of asphalt mixture. Basalt fiber has a significant effect on low-temperature cracking resistance of asphalt mixture. Composed modified asphalt mixture has obvious advantages on performance compared to the control asphalt mixture. It will provide a reference for the design of asphalt mixture in seasonal frozen regions.
本研究提出了一种由玄武岩纤维和硅藻土改性的沥青混合料。通过试验方法研究了硅藻土改性沥青混合料(DAM)、玄武岩纤维改性沥青混合料(BFAM)、硅藻土与玄武岩纤维复合改性沥青混合料(DBFAM)以及对照沥青混合料(AM)的性能。对四种沥青混合料进行了车辙试验、低温间接拉伸试验、水稳定性试验、疲劳试验和冻融循环试验。结果表明,玄武岩纤维和硅藻土的加入可改善路面性能。硅藻土对沥青混合料的高温稳定性、水稳定性以及冻融循环下的抗水损害和抗冻融破坏能力有显著影响。玄武岩纤维对沥青混合料的低温抗裂性能有显著影响。相比对照沥青混合料,复合改性沥青混合料在性能上具有明显优势。这将为季节性冰冻地区沥青混合料的设计提供参考。