期刊文献+

Analysis of wheel-rail adhesion redundancy considering the thirdbody medium on the rail surface

下载PDF
导出
摘要 Purpose–In response to the problem of insufficient traction/braking adhesion force caused by the existence of the third-body medium on the rail surface,this study aims to analyze the utilization of wheel-rail adhesion coefficient under different medium conditions and propose relevant measures for reasonable and optimized utilization of adhesion to ensure the traction/braking performance and operation safety of trains.Design/methodology/approach–Based on the PLS-160 wheel-rail adhesion simulation test rig,the study investigates the variation patterns of maximum utilized adhesion characteristics on the rail surface under different conditions of small creepage and large slip.Through statistical analysis of multiple sets of experimental data,the statistical distribution patterns of maximum utilized adhesion on the rail surface are obtained,and a method for analyzing wheel-rail adhesion redundancy based on normal distribution is proposed.The study analyzes the utilization of traction/braking adhesion,as well as adhesion redundancy,for different medium under small creepage and large slip conditions.Based on these findings,relevant measures for the reasonable and optimized utilization of adhesion are derived.Findings–When the third-body medium exists on the rail surface,the train should adopt the low-level service braking to avoid the braking skidding by extending the braking distance.Compared with the current adhesion control strategy of small creepage,adopting appropriate strategies to control the train’s adhesion coefficient near the second peak point of the adhesion coefficient-slip ratio curve in large slip can effectively improve the traction/braking adhesion redundancy and the upper limit of adhesion utilization,thereby ensuring the traction/braking performance and operation safety of the train.Originality/value–Most existing studies focus on the wheel-rail adhesion coefficient values and variation patterns under different medium conditions,without considering whether the rail surface with different medium can provide sufficient traction/braking utilized adhesion coefficient for the train.Therefore,there is a risk of traction overspeeding/braking skidding.This study analyzes whether the rail surface with different medium can provide sufficient traction/braking utilized adhesion coefficient for the train and whether there is redundancy.Based on these findings,relevant measures for the reasonable and optimized utilization of adhesion are derived to further ensure operation safety of the train.
出处 《Railway Sciences》 2024年第2期156-176,共21页 铁道科学(英文)
  • 相关文献

参考文献3

二级参考文献23

  • 1王文健,刘启跃.车轮剥离性能试验研究[J].西南交通大学学报,2005,40(2):228-231. 被引量:15
  • 2孙翔.机车的传动、驱动、控制与粘着[J].铁道学报,1994,16(A06):8-16. 被引量:6
  • 3邓之明.高速动车组制动系统设计探讨[J].铁道车辆,2006,44(11):15-20. 被引量:7
  • 4CHEN H, BAN T, ISHIDA M, et al. Experimental Investigation of Influential Factors on Adhesion between Wheel and Rail under Wet Conditions [J]. Wear, 2008, 265: 1504-1511.
  • 5GALLARDO-HERNANDEZ E A, LEWIS R. Twin Disc Assessment of Wheel/Rail Adhesion [J]. Wear, 2008, 265 : 1309-1316.
  • 6OHYAMA T. Tribological Studies on Adhesion Phenomena between Wheel and Rail at Higher Speed [J]. Wear, 1991, 144: 263-275.
  • 7CHEN H, ISHIDA M, NAKAHARA T. Analysis of Adhesion under Wet Conditions for Three-Dimensional Contact Considering Surface Roughness [J]. Wear, 2005, 258: 1209-1216.
  • 8CHEN H, BAN T, ISHIDA M, et al. Adhesion between Rail/Wheel under Water Imbricated Contact [J]. Wear, 2002, 253: 75-81.
  • 9CHEN H, YOHSIMURA A, OHYAMA T. Numerical Analysis for the Influence of Water Film on Adhesion between Rail and Wheel [J]. Proceedings of the Institution of Mechanical Engineers, 1998, 212: 359-368.
  • 10И.А.ЖАРОВ,高路(译) 李培署(校).防滑器的工作指标[J].国外铁道车辆,2008,45(2):35-38. 被引量:4

共引文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部