Xue Yongjie, Zhao Hui, Wei Xintong, Niu Yunya
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2019 Aug 14;12(16):2588. doi: 10.3390/ma12162588.
A new treatment method of combined crumb rubber and steel slag modifier for asphalt binders was proposed in this work. The viscosity, rheological properties, and thermogravimetric analysis of modified asphalt mortar were then investigated. The modified asphalt composite was prepared in laboratory by two steps. Rubber powder was firstly added into hot asphalt flux to make rubber modified asphalt (RA), and then RA binders were wrapped with steel slag powder by granulation machine to make compound rubber and steel slag filler modified asphalt composite (RSAC). Test results showed that the viscosity-temperature susceptibility of RSAC was superior to that of modified asphalt binder with only one additive. The softening point differences of RSAC was 2.1 °C. The complex modulus and phase angle were significantly influenced by the addition of steel slag fillers. Creep tests show that a better anti-permanent deformation performance of RSAC can be obtained, which means a better low temperature performance could be predictable. The CAM (Christensen-Anderson-Marasteanu) and Burgers models can be used to describe the change of complex modulus and viscous-elasticity performance of RSCA. The lower value of (0.6344) and (0.1862) from the CAM model indicated that RSAC was slightly related to the sensibility of frequency. The higher value of and of RSAC indicated a better ability of shear-creep resistance.
本研究提出了一种将橡胶粉和钢渣作为沥青结合料改性剂的新型处理方法。随后对改性沥青胶浆的粘度、流变性能和热重分析进行了研究。改性沥青复合材料在实验室分两步制备。首先将橡胶粉加入热沥青熔液中制成橡胶改性沥青(RA),然后通过造粒机用钢渣粉包裹RA粘结剂,制成复合橡胶和钢渣填料改性沥青复合材料(RSAC)。试验结果表明,RSAC的粘温敏感性优于单一添加剂改性沥青结合料。RSAC的软化点差为2.1℃。钢渣填料的加入对复数模量和相位角有显著影响。蠕变试验表明,RSAC可获得更好的抗永久变形性能,这意味着可以预测其具有更好的低温性能。CAM(Christensen-Anderson-Marasteanu)模型和Burgers模型可用于描述RSCA复数模量和粘弹性性能的变化。CAM模型中较低的 值(0.6344)和 值(0.1862)表明RSAC与频率敏感性略有相关。RSAC较高的 值和 值表明其具有更好的抗剪切蠕变能力。