Analysis of Collision-induced Derailments of a Wheel-set Model Using MBD and FEM Simulation

MBD와 FEM을 이용한 단일윤축 모델의 충돌 후 탈선거동의 해석

  • 이준호 (서울과학기술대학교, 철도차량시스템공학과) ;
  • 구정서 (서울과학기술대학교, 철도차량시스템공학과)
  • Published : 2011.10.20

Abstract

In this paper, a theoretical formulation of a simplified wheel-set model for collision-induced derailments was evaluated by numerical simulations for the wheel-climb derailment and wheel-lift derailment types. The derailment types were classified into the wheel-climb derailment and the wheel-lift derailment according to the friction force direction of the wheel-flange. The wheel-climb derailment type was classified into Climb-up, Climb/Roll-over, and Roll-over-C, and wheel-lift derailment type was classified into Slip-up, Slip/Roll-over and Roll-over-L. To verify the theoretical equations derived for the wheel-climb derailment and the wheel-lift derailment, dynamic simulations using RecurDyn of Functionbay and Ls-Dyna of LSTC were performed and compared for some examples. The derailment predictions of the suggested theoretical formulation were in good agreement with those of the numerical simulations. The direction of the frictional force between the wheel-flange and the rail can be well predicted using the suggested derailment formulation at a initial derailment.

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