Hubei Key Laboratory of Power System Design and Test for Electrical Vehicle, Hubei University of Arts and Science, Xiangyang, Hubei, China.
School of Civil Engineering and Architecture, Hubei University of Arts and Science, Xiangyang, Hubei, China.
PLoS One. 2022 Mar 8;17(3):e0265097. doi: 10.1371/journal.pone.0265097. eCollection 2022.
The influence of compaction methods such as the Marshall compaction method (MCM), vibration compaction method (VCM) and gyration compaction method (GCM), on the performance of stone mastic asphalt (SMA-13) mixture has yet to be explored. Therefore, to compare the influences of compaction methods and work on the physical and mechanical properties of SMA-13 mixture, the volume parameters, mechanical properties, and gradation changes of SMA-13 mixture specimens prepared under different vibration compaction times, Marshall double-compaction numbers, and gyration compaction numbers were studied. The compaction method for SMA-13 mixture design was also proposed under the principle of optimum properties. Results demonstrate that the asphalt aggregate ratio and compaction work directly affect the volumetric properties (VV, VFA, and VMA) of asphalt mixture specimens while the raw material and mineral aggregate gradation were fixed. The influence of compaction work on physical properties is greater than that of asphalt aggregate ratio. The mechanical strength of VCM and GCM specimens is higher than that of MCM specimens under the same compaction work and the optimum asphalt aggregate ratio. With the increase in compaction work, the mechanical properties of SMA-13 mixture are improved at the same compaction method and the optimum asphalt aggregate ratio. The aggregate gradation of the SMA-13 mixture before and after compacted using VCM and GCM changes minimally compared with that of the SMA-13 mixture compacted by MCM. Thus, the compaction methods of VCM65 and GCM130 were recommended for SMA-13 mixture design.
压实方法(如马歇尔击实法(MCM)、振动压实法(VCM)和旋转压实法(GCM))对玛蹄脂碎石混合料(SMA-13)性能的影响尚未得到充分研究。因此,为了比较压实方法和工作对 SMA-13 混合料物理力学性能的影响,研究了在不同振动压实时间、马歇尔双面击实次数和旋转压实次数下制备的 SMA-13 混合料试件的体积参数、力学性能和级配变化。还提出了基于最佳性能的 SMA-13 混合料设计的压实方法。结果表明,在原材料和矿料级配固定的情况下,沥青用量和压实功直接影响沥青混合料试件的体积特性(VV、VFA 和 VMA),而压实功对物理性能的影响大于沥青用量的影响。在相同压实功和最佳沥青用量下,VCM 和 GCM 试件的力学强度高于 MCM 试件。随着压实功的增加,在相同的压实方法和最佳沥青用量下,SMA-13 混合料的力学性能得到提高。与 MCM 压实的 SMA-13 混合料相比,VCM 和 GCM 压实的 SMA-13 混合料的集料级配变化较小。因此,推荐 VCM65 和 GCM130 作为 SMA-13 混合料的设计压实方法。