Comparison of Simulation Models for Train Buffer Couplings

연결기용 완충기의 시뮬레이션 모델 비교

  • Jang, Hyeon-Mog (Graduate School of Railroad, Seoul National University of Technology) ;
  • Kim, Nam-Wook (School of Mechanical and Aerospace Engineering, Seoul National University) ;
  • Park, Yeong-Il (School of Mechanical Design and Automation Engineering, Seoul National University of Technology)
  • 장현목 (서울산업대학교 철도전문대학원) ;
  • 김남욱 (서울대학교 기계항공공학부) ;
  • 박영일 (서울산업대학교 기계설계자동화공학부)
  • Received : 2009.10.14
  • Accepted : 2010.03.10
  • Published : 2010.07.01

Abstract

Coupling systems for trains need more complicated buffer equipments than existing systems because the recent tendency of the regulations enforces trains to be safe for collisions even when the driving speed is higher than before. Using hydraulic buffer is an effective way to satisfy the requirement while it causes the increase of the cost for the coupling system. In this study, we introduce the methodology to build a simulation model for the hydraulic buffer, which could be installed into the coupling systems. In the simulation model of the hydraulic buffer, the reacting force is determined by both buffer stroke and speed whereas the elastic buffer model is designed by using only the buffer stroke in other studies. The simulation results with the advanced hydraulic buffer model shows that the simulating results can be close the real experimental results around 10%, and, if we considers friction forces, the simulation calculates the maximum force within 10% comparing to the experimental.

Keywords

References

  1. K. N. Kim, T. H. Ko and Y. I. Park, "System Design of Buffer Coupling of Tilting Train for Improving the Crash Energy Absorbing Capacity," Proceeding of KSME Conference, pp.545-550, 2006.
  2. Y. H. Kim, K. N. Kim, H. M. Jang and Y. I. Park, "Modeling of Coupling Device for Crash Analysis of an Electric Vehicle," Proceeding of the KSR Conference, pp.640-645, 2004.
  3. H. M. Jang, N. W. Kim, S. W. Yang, K. N. Kim and Y. I. Park, "Crash Simulation of Train Buffer Coupling," Proceeding of KSAE Conference, pp.2008-2014, 2007.
  4. Schaku Co., Incheon Airport EFG2 with Rubber 40-3538.07-8 Revised Simulation, 2003.