Wu Zhengguang, Zhang Chen, Xiao Peng, Li Bo, Kang Aihong
College of Civil Science and Engineering, Yangzhou University, Yangzhou 225127, China.
Research Center for Basalt Fiber Composite Construction Materials, Yangzhou University, Yangzhou 225127, China.
Materials (Basel). 2020 Jul 15;13(14):3145. doi: 10.3390/ma13143145.
Incorporating reclaimed asphalt pavement (RAP) into asphalt mixtures achieves astonishingly environmental and economic benefits. However, there is hesitation to use higher RAP content due to the concern regarding the deterioration in pavement performance, especially the cracking resistance. Basalt fiber has been considered an effective additive to reinforce the performance of asphalt mixtures and, subsequently, the reinforcement effect is also expected for high-RAP content mixtures. Therefore, this study investigated the effect of basalt fiber on the pavement performance of asphalt mixtures with 0%, 30%, 40%, and 50% RAP contents against high-temperature performance, moisture susceptibility, low-temperature and intermediate-temperature cracking resistance, based on the wheel-tracking test, the uniaxial penetration test, the freeze-thaw splitting test, the low-temperature bending beam test, the semicircular bend fracture test and the indirect tensile asphalt cracking test, respectively. In addition, a performance-space diagram was developed to determine the mixture performance shift caused by basalt fiber. The results showed that adding basalt fiber compensated for the detrimental effect caused by RAP, leading to significant enhancement in moisture susceptibility and low- and intermediate-temperature cracking resistance of mixtures with high RAP content, along with the enhancement in high-temperature performance, indicating that basalt fiber can contribute to the use of high RAP content.
将回收沥青路面(RAP)掺入沥青混合料中可带来惊人的环境和经济效益。然而,由于担心路面性能下降,尤其是抗裂性,人们对使用更高的RAP含量存在犹豫。玄武岩纤维被认为是一种有效的添加剂,可增强沥青混合料的性能,因此,对于高RAP含量的混合料,也期望其具有增强效果。因此,本研究基于车轮跟踪试验、单轴贯入试验、冻融劈裂试验、低温弯曲梁试验、半圆弯曲断裂试验和间接拉伸沥青开裂试验,分别研究了玄武岩纤维对RAP含量为0%、30%、40%和50%的沥青混合料在高温性能、水敏感性、低温和中温抗裂性方面的路面性能的影响。此外,还绘制了性能空间图,以确定由玄武岩纤维引起的混合料性能变化。结果表明,添加玄武岩纤维弥补了RAP造成的不利影响,显著提高了高RAP含量混合料的水敏感性以及低温和中温抗裂性,同时提高了高温性能,这表明玄武岩纤维有助于高RAP含量的应用。