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Original Articles

Study on the Effect of the Modeling Method of Railway Fastener on Rail Corrugation Prediction Model

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Pages 180-191 | Received 09 Apr 2021, Accepted 06 Nov 2021, Published online: 16 Dec 2021

References

  • Grassie, S. L. (2009), “Rail Corrugation: Characteristics, Causes, and Treatments,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail & Rapid Transit, 207(6), pp 57–68.doi: 10.1243/09544097JRRT264
  • Grassie, S. L. and Kalousek, J. (1993), “Rail Corrugation: Characteristics, Causes and Treatments,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail and Rapid Transit, 207(1), pp 57–68. doi:10.1243/PIME_PROC_1993_207_227_02
  • Lewis, R., Evans, G., Singleton, M., and Matthew, B. (2015), “Rail Grinding for the 21st Century—Taking a Lead from the Aerospace Industry,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail and Rapid Transit, 229(5), pp 457–465. doi:10.1177/0954409714527929
  • Yan, Z., Gu, A., Liu, W., Markine, V. L., and Liang, Q. (2012), “Effects of Wheelset Vibration on Initiation and Evolution of Rail Short-Pitch Corrugation,” Journal of Central South University, 19, pp 2681–2688. doi:10.1007/s11771-012-1327-4
  • Jin, X. S., Wen, Z. F., and Wang, K. Y. (2005), “Effect of Track Irregularities on Initiation and Evolution of Rail Corrugation,” Journal of Sound & Vibration, 285(1–2), pp 121–148.
  • Wen, Z. and Jin, X. (2005), “Effect of Track Lateral Geometry Defects on Corrugations of Curved Rails,” Wear, 259(7), pp 1324–1331. doi:10.1016/j.wear.2005.01.044
  • Wen, Z., Jin, X., Xiao, X., and Zhou, Z. (2008), “Effect of a Scratch on Curved Rail on Initiation and Evolution of Plastic Deformation Induced Rail Corrugation,” International Journal of Solids and Structures, 45(7), pp 2077–2096. doi:10.1016/j.ijsolstr.2007.11.013
  • Eadie, D. T., Santoro, M., Oldknow, K., and Oka, Y. (2008), “Field Studies of the Effect of Friction Modifiers on Short Pitch Corrugation Generation in Curves,” Wear, 265(9), pp 1212–1221. doi:10.1016/j.wear.2008.02.028
  • Yan, Z., Markine, V., Gu, A., and Liang, Q. (2014), “Optimisation of the Dynamic Properties of Ladder Track to Minimise the Chance of Rail Corrugation,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail and Rapid Transit, 228(3), pp 285–297. doi:10.1177/0954409712472329
  • Jin, X., Xiao, X., Wen, Z., and Zhou, Z. (2008), “Effect of Sleeper Pitch on Rail Corrugation at a Tangent Track in Vehicle Hunting,” Wear, 265(9–10), pp 1163–1175. doi:10.1016/j.wear.2008.01.028
  • Jin, X. S. and Wen, Z. F. (2008), “Effect of Discrete Track Support by Sleepers on Rail Corrugation at a Curved Track,” Journal of Sound & Vibration, 315(1–2), pp 279–300.
  • Hiensch, M., Nielsen, J. C. O., and Verheijen, E. (2002), “Rail Corrugation in The Netherlands—Measurements and Simulations,” Wear, 253(1), pp 140–149. doi:10.1016/S0043-1648(02)00093-5
  • Egana, J. I., Vinolas, J., and Seco, M. (2006), “Investigation of the Influence of Rail Pad Stiffness on Rail Corrugation on a Transit System,” Wear, 261(2), pp 216–224. doi:10.1016/j.wear.2005.10.004
  • Wu, T. X. (2011), “Effects on Short Pitch Rail Corrugation Growth of a Rail Vibration Absorber/Damper,” Wear, 271(1–2), pp 339–348. doi:10.1016/j.wear.2010.10.040
  • Li, W., Wang, H., Wen, Z., Du, X., Wu, L., Li, X., and Jin, X. (2016), “An Investigation into the Mechanism of Metro Rail Corrugation Using Experimental and Theoretical Methods,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail & Rapid Transit, 230(4), pp 1025–1039.
  • Xia, L. (2016), “Study on the Rail Corrugation of the Ladder-Type Sleepers Track Based on the Track Vibration Theory,” Journal of Mechanical Engineering, 52(22), pp 121–128.
  • Chen, G., Cui, X., Yang, H., Ouyang, H., and Yan, W. (2017), “A Case Study of Rail Corrugation Phenomenon Based on the Viewpoint of Friction-Induced Oscillation of a Wheelset–Track System,” Journal of Vibroengineering, 19(6), pp 4516–4530.
  • Chen, G. X., Zhou, Z. R., Ouyang, H., Jin, X. S., Zhu, M. H., and Liu, Q. Y. (2010), “A Finite Element Study on Rail Corrugation Based on Saturated Creep Force–Induced Self-Excited Vibration of a Wheelset–Track System,” Journal of Sound and Vibration, 329(22), pp 4643–4655.
  • Cui, X. L., Chen, G. X., Yang, H. G., Zhang, Q., Ouyang, H., and Zhu, M. H. (2016), “Study on Rail Corrugation of a Metro Tangential Track with Cologne-Egg Type Fasteners,” Vehicle System Dynamics, 54(3), pp 353–369. doi:10.1080/00423114.2015.1137955
  • Kurzeck, B. and Hecht, M. (2010), “Dynamic Simulation of Friction-Induced Vibrations in a Light Railway Bogie While Curving Compared with Measurement Results,” Vehicle System Dynamics, 48(Suppl. 1), pp 121–138.
  • Beshbichi, O. E., Wan, C., Bruni, S., and Kassa, E. (2019), “Complex Eigenvalue Analysis and Parameters Analysis to Investigate the Formation of Railhead Corrugation in Sharp Curves,” Wear, 450–451(9), pp 203150. doi:10.1016/j.wear.2019.203150
  • Chen, G., Zhang, S., Wu, B., Zhao, X., Wen, Z., Ouyang, H., and Zhu, M. (2020), “Field Measurement and Model Prediction of Rail Corrugation,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail and Rapid Transit, 234(4), pp 381–392. doi:10.1177/0954409719877318
  • Yan, Z., Gu, A., Liu, W., Markine, V. L., and Liang, Q. (2012), “Effects of Wheelset Vibration on Initiation and Evolution of Rail Short-Pitch Corrugation,” Journal of Central South University, 19(9), pp 2681–2688. doi:10.1007/s11771-012-1327-4
  • Qian, W. J., Chen, G. X., Ouyang, H., Zhu, M. H., Zhang, W. H., and Zhou, Z. R. (2014), “A Transient Dynamic Study of the Self-Excited Vibration of a Railway Wheel Set–Track System Induced by Saturated Creep Forces,” Vehicle System Dynamics, 52(9), pp 1115–1138. doi:10.1080/00423114.2014.924629
  • Cui, X., Chen, G., and Ouyang, H. (2019), “Study on the Effect of Track Curve Radius on Friction-Induced Oscillation of a Wheelset–Track System,” Tribology Transactions, 62(4), pp 1–30.
  • Wu, B. W., Chen, G. X., Kang, X., and Zhu, Q. “Study on the Origin of Rail Corrugation at a Long Downhill Braking Section Based on Friction-Excited Oscillation,” Tribology Transactions, 63(6), pp 1–23.
  • Kaewunruen, S. (2018), “Monitoring of Rail Corrugation Growth on Sharp Curves for Track Maintenance Prioritisation,” International Journal of Acoustics and Vibration, 23(1), pp 35–43.
  • Remennikov, A. M. and Kaewunruen, S. (2008), “A Review of Loading Conditions for Railway Track Structures Due to Train and Track Vertical Interaction,” Structural Control and Health Monitoring, 15(2), pp 207–234. doi:10.1002/stc.227
  • Cui, X., Huang, B., Du, Z., Yang, H., and Jiang, G. (2020), “Study on the Mechanism of the Abnormal Phenomenon of Rail Corrugation in the Curve Interval of a Mountain City Metro,” Tribology Transactions, 63(6), pp 996–1007. doi:10.1080/10402004.2020.1782551
  • Qian, X., Feng-tao, L., Cheng-guo, W., and Yu-xiang, C. (2012), “Analysis on Wheel–Rail Rolling Contact Characteristics with Variable Friction Coefficient,” Journal of the China Railway Society, 34(6), pp 24–28.
  • Oregui, M., Li, Z., and Dollevoet, R. (2015), “An Investigation into the Modeling of Railway Fastening,” International Journal of Mechanical Sciences, 92, pp 1–11. doi:10.1016/j.ijmecsci.2014.11.019
  • Li, T., Su, Q., and Kaewunruen, S. (2020), “Influences of Dynamic Material Properties of Slab Track Components on the Train–Track Vibration Interactions,” Engineering Failure Analysis, 115, pp 104633. doi:10.1016/j.engfailanal.2020.104633
  • Abubakar, A. R. and Ouyang, H. (2006), “Complex Eigenvalue Analysis and Dynamic Transient Analysis in Predicting Disc Brake Squeal,” International Journal of Vehicle Noise & Vibration, 2(2), pp 143–155.
  • Wu, B., Qiao, Q., Chen, G., Lv, J., Zhu, Q., Zhao, X., and Ouyang, H. (2020), “Effect of the Unstable Vibration of the Disc Brake System of High-Speed Trains on Wheel Polygonalization,” Proceedings of the Institution of Mechanical Engineers - Part F: Journal of Rail and Rapid Transit, 234(1), pp 80–95.

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