大学物理 ›› 2018, Vol. 37 ›› Issue (12): 53-.doi: 10.16854 /j.cnki.1000-0712.180573

• "American Journal of Physics 论文选载" • 上一篇    下一篇

为什么列车能够保持在轨道上

沙亚克   

  1. 康乃尔大学力学与航空航天工程斯博利学院理论与应用力学系,伊萨卡纽约14853,美国
  • 收稿日期:2016-02-23 接受日期:2016-12-07 出版日期:2018-12-20 发布日期:2019-01-17

Why trains stay on tracks

B.Shayak   

  1. Department of Theoretical and Applied Mechanics,Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca,New York 14853
  • Received:2016-02-23 Accepted:2016-12-07 Online:2018-12-20 Published:2019-01-17

摘要: 在这篇文章中,我们给出了定性和定量解释,说明了在可能导致火车出轨的扰动存在下,一列火车为什么还能保持

在轨道上.列车的稳定性可溯源于车轮的圆锥形状,当有横向扰动时会产生法向回复力.我们首先考虑简单的情况,假设轨道

为无摩擦的并且忽略轮子的旋转.然后我们再建立一个更全面的模型,即全面考虑摩擦和旋转.我们证明了滚动摩擦使得旋转

运动与平移运动叠加,从而增强了整体稳定性.最后,我们找到获得稳定参数的近似公式,计算获得的结果与真实铁路客车的

参数非常一致.

Abstract: In this article,we give both qualitative and quantitative explanations of why a train stays on itstrack, in spite of

perturbations that could cause it to derail.We show that train stability originatesfrom the conical shape of the

wheels,which gives rise to a restoring normal force in response to alateral disturbance.We first demonstrate translational

stabilization in a simple situation where therails are assumed frictionless and the steering motion of the wheel

is neglected.We then develop amore comprehensive model, taking friction and steering into account.We show that

rolling frictioncouples the rotational motion to the translational motion,enhancing overall stability.Finally,we find

approximate formulae for the parameters governing stability,and show good agreement withparameters of a real railway

coach.