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On motion mechanisms of freight train suspension systems.

机译:关于货车悬架系统的运动机理。

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摘要

In this dissertation, a freight train suspension system is presented for all possible types of motion. The suspension system experiences impacts and friction between wedges and bolster. The impacts cause the chatter motions between wedges and bolster, and the friction will cause the stick and non-stick motions between wedges and bolster. Due to the wedge effect, the suspension system may become stuck and not move, which cause the suspension lose functions. To discuss such phenomena in the freight train suspension systems, the theory of discontinuous dynamical systems is used, and the motion mechanism of impacting chatter with stick and stuck is discussed. The analytical conditions for the onset and vanishing of stick motions between the wedges and bolster are presented, and the condition for maintaining stick motion was achieved as well. The analytical conditions for stuck motion are developed to determine the onset and vanishing conditions for stuck motion. Analytical prediction of periodic motions relative to impacting chatter with stick and stuck motions in train suspension is performed through the mapping dynamics. The corresponding analyses of local stability and bifurcation are carried out, and the grazing and stick conditions are used to determine periodic motions. Numerical simulations are to illustrate periodic motions of stick and stuck motions. Finally, from field testing data, the effects of wedge angle on the motions of the suspension is presented to find a more desirable suspension response for design.
机译:本文针对所有可能的运动方式提出了一种货运列车悬架系统。悬架系统会受到楔块和垫块之间的冲击和摩擦。冲击会导致楔形和支撑之间的颤动运动,而摩擦会导致楔形和支撑之间的粘滞运动和不粘滞运动。由于楔形效应,悬架系统可能会卡住并且无法移动,从而导致悬架失去功能。为了讨论货运列车悬架系统中的这种现象,运用不连续动力系统理论,讨论了用棍棒和棍棒撞击颤振的运动机理。给出了楔块和垫枕之间的粘滞运动的开始和消失的分析条件,并且还获得了保持粘滞运动的条件。开发了卡住运动的分析条件,以确定卡住运动的开始和消失条件。通过映射动力学执行相对于撞击颤动的周期性运动的分析预测,其中该颤动具有在火车悬架中的粘滞和卡滞运动。进行了局部稳定性和分叉的相应分析,并使用掠食和粘滞条件确定了周期性运动。数值模拟将说明粘滞运动和粘滞运动。最后,根据现场测试数据,提出了楔角对悬架运动的影响,以找到更理想的悬架设计响应。

著录项

  • 作者

    O'Connor, Dennis Michael.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Mechanical.;Transportation.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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