Liu Dan, Su Chengguang, Zhang Dawei, Lan Caihao
School of Highway, Chang'an University, Xi'an 710064, China.
China Railway First Survey and Design Institute Group Co., Ltd., Xi'an 710043, China.
Materials (Basel). 2024 Mar 21;17(6):1434. doi: 10.3390/ma17061434.
In order to study the influence of an unsupported sleeper on the vertical bearing characteristics of heavy-haul railway ballast, a three-dimensional discrete element model (DEM) was established for a ballasted track, by removing ballast particles that come into contact with the bottom of the sleeper from the model to simulate the unsupported sleeper. Vertical bearing characteristics for ballast on different types of unsupported sleepers were studied. The results showed that an unsupported sleeper could reduce the bearing area of the ballast below the sleeper and reduce the number of ballast particles that were in contact. It could also lead to an increase in the maximum contact force between the particles, accelerating the deterioration of the particles (thus affecting the overall performance of the ballast) and reducing the vertical stiffness of the ballast. As the unsupported length and width increased, vertical stiffness gradually decreased. The vertical ballast stiffness for an unsupported sleeper was then used in a dynamic coupled vehicle/track model, and the effect of the unsupported sleeper on wheel/rail interaction was analyzed. Results showed that increasing the unsupported length and width leads to a decrease in the supporting force on the unsupported sleeper and to an increase in the supporting force on the adjacent sleepers.
为研究无碴枕对重载铁路道碴竖向承载特性的影响,建立了有碴轨道的三维离散元模型,通过从模型中移除与枕底接触的道碴颗粒来模拟无碴枕。研究了不同类型无碴枕道碴的竖向承载特性。结果表明,无碴枕会减小枕下道碴的承载面积,减少接触的道碴颗粒数量。还会导致颗粒间最大接触力增大,加速颗粒劣化(从而影响道碴的整体性能),降低道碴的竖向刚度。随着无碴长度和宽度增加,竖向刚度逐渐降低。然后将无碴枕的竖向道碴刚度应用于车辆/轨道动态耦合模型,分析了无碴枕对轮轨相互作用的影响。结果表明,增加无碴长度和宽度会导致无碴枕上的支撑力减小,相邻枕上的支撑力增大。