[1] NIELSEN J C O,JOHANSSON A. Out-of-round railway wheels-a literature survey[J]. Proceedings of the Institution of Mechanical Engineers,Part F:Journal of Rail and Rapid Transit,2003,217(2):135-146. [2] WU X W,CHI M R,WU P B. Influence of polygonal wear of railway wheels on the wheel set axle stress[J].Vehicle System Dynamics,2015,53(11):1535-1554. [3] CHEN M,SUN Y,GUO Y,et al. Study on effect of wheel polygonal wear on high-speed vehicle-track-subgrade vertical interactions[J]. Wear,2019,432:102914. [4] BARKE D W,CHIU W K. A review of the effects of out-of-round wheels on track and vehicle components[J].Journal of Rail and Rapid Transit,2005,219(3):157-175. [5] NIELSEN J C O,LUNDEN R,JOHANSSON A,et al.Train-track interaction and mechanisms of irregular wear on wheel and rail surfaces[J]. Vehicles System Dynamics,2003,40(1-3):3-54. [6] 金学松,吴越,梁树林,等.车轮非圆化磨耗问题研究进展[J].西南交通大学学报,2018,53(1):1-14.JIN Xuesong,WU Yue,LIANG Shulin,et al. Mechanisms and countermeasures of out-of-roundness wear on railway vehicle wheels[J]. Journal of Southwest Jiaotong University,2018,53(1):1-14. [7] 朱海燕,胡华涛,尹必超,等.轨道车辆车轮多边形研究进展[J].交通运输工程学报,2020,20(1):102-119.ZHU Haiyan,HU Huatao,YIN Bichao,et al. Research progress on wheel polygons of rail vehicles[J]. Journal of Traffic and Transportation Engineering,2020,20(1):102-119. [8] JIN X S,WU L,FANG J Y,et al. An investigation into the mechanism of the polygonal wear of metro train wheels and its effect on the dynamic behaviour of a wheel/rail system[J]. Vehicle System Dynamics,2012,50(12):1817-1834. [9] TAO G Q,WEN Z F,CHEN G S,et al. Locomotive wheel polygonisation due to discrete irregularities:Simulation and mechanism[J]. Vehicle System Dynamics,2020,DOI:10.1080/00423114.2020.1737148. [10] TAO G Q,WEN Z F,JIN X S,et al. Polygonisation of railway wheels:A critical review[J]. Railway Engineering Science,2020,DOI:10.1007/s40534-020-00222-x. [11] FRÖHLING R,SPANGENBERG U. Root cause analysis of locomotive wheel tread polygonisation[J]. Wear. 2019,432-433:102911. [12] PENG B,IWNICKI S,SHACKLETON P,et al. The influence of wheelset flexibility on polygonal wear of locomotive wheels[J]. Wear,2019,432-433:102917. [13] PENG B, IWNICKI S, SHACKLETON P, et al.Comparison of wear models for simulation of railway wheel polygonization[J]. Wear,2019,436-437:203010. [14] TAO G Q,WANG L F,WEN Z F,et al. Measurement and assessment of out-of round electric locomotive wheels[J].Proceedings of Institution of Mechanical Engineers,Part F:Journal of Rail and Rapid Transit,2018,232(1):1-13. [15] LIU X Y,ZHAI W M. Analysis of vertical dynamic wheel/rail interaction caused by polygonal wheels on high-speed trains[J]. Wear,2014,314(1-2):282-290. [16] YANG Y F,LING L,LIU P F,et al. Experimental investigation of essential feature of polygonal wear of locomotive wheels[J]. Measurement,2020,166:108199. [17] YANG Y F,LING L,WANG C,et al. Wheel/rail dynamic interaction induced by polygonal wear of locomotive wheels[J]. Vehicle System Dynamics, 2020, DOI:10.1080/00423114.2020.1807572. [18] LAN Q Q,DHANSEKAR M,HANDOKO Y A. Wear damage of out-of-round wheels in rail wagons under braking[J]. Engineering Failure Analysis,2019,102:170-186. [19] 翟婉明.车辆-轨道耦合动力学[M]. 4版.北京:科学出版社,2015.ZHAI Wanming. Vehicle-track coupled dynamics[M]. 4th ed. Beijing:Science Press,2015. [20] POLACH O. Creep forces in simulations of traction vehicles running on adhesion limit[J]. Wear,2005,258:992-1000. [21] SPIRYAGIN M,POLACH O,COLE C. Creep force modelling for rail traction vehicles based on the Fastsim algorithm[J]. Vehicle System Dynamics,2013,51(11):1765-1783. [22] DIRKS B,ENBLOM R. Prediction model for wheel profile wear and rolling contact fatigue[J]. Wear,2011(271):210-217. |