Tu Botao, Yang Xinkui, Xu Shi, Liang Xuhui, Liu Chen, Jiang Jian, Fan Lulu, Tu Liangliang
Guangdong Hongye Building Materials Technology Co., Ltd., Yunfu 527121, China.
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2023 Nov 14;16(22):7158. doi: 10.3390/ma16227158.
Using solid waste to replace limestone filler in asphalt concrete can not only reduce the cost of road construction, but also improve the utilization rate of solid waste. In this study, PHC pile waste concrete (PPWC) was innovatively used to replace limestone filler in asphalt mixture and its effect on the physical and rheological properties of asphalt mastics was studied. Firstly, PPWC was ground into filler particles with a diameter less than 0.075 mm. The physical properties, particle characteristics and chemical composition of PPWC filler and limestone filler were compared. Asphalt mastics were prepared with different filler-asphalt volume ratios (20%, 30% and 40%) and the physical properties, high-temperature rheological properties and low-temperature cracking resistance of asphalt mastics were tested. The experimental results showed that the surface of PPWC filler is rougher and has lower density and smaller particle size than limestone filler. When the filler content is the same, PPWC filler asphalt mastics have lower penetration and ductility, higher softening point than limestone filler asphalt mastics, and the viscosity of PPWC filler asphalt mastics is more sensitive than limestone filler asphalt mastics. PPWC filler asphalt mastics demonstrated superior high-temperature stability, but poorer low-temperature cracking resistance compared to limestone filler asphalt mastics. In conclusion, PPWC fillers can be used to replace limestone fillers in asphalt mixtures. The finding of this study will provide a new solution for the construction of eco-friendly roads.
利用固体废弃物替代沥青混凝土中的石灰石填料,不仅可以降低道路建设成本,还能提高固体废弃物的利用率。本研究创新性地采用PHC桩废弃混凝土(PPWC)替代沥青混合料中的石灰石填料,并研究其对沥青胶浆物理和流变性能的影响。首先,将PPWC磨碎成直径小于0.075mm的填料颗粒。对比了PPWC填料和石灰石填料的物理性能、颗粒特性及化学成分。制备了不同填料-沥青体积比(20%、30%和40%)的沥青胶浆,并测试了沥青胶浆的物理性能、高温流变性能和低温抗裂性能。试验结果表明,PPWC填料的表面比石灰石填料更粗糙,密度更低,粒径更小。当填料含量相同时,PPWC填料沥青胶浆的针入度和延度较低,软化点高于石灰石填料沥青胶浆,且PPWC填料沥青胶浆的粘度比石灰石填料沥青胶浆更敏感。与石灰石填料沥青胶浆相比,PPWC填料沥青胶浆具有优异的高温稳定性,但低温抗裂性能较差。综上所述,PPWC填料可用于替代沥青混合料中的石灰石填料。本研究结果将为生态友好型道路建设提供新的解决方案。