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Category of Derailment Mechanism and Prevention for High-Speed Vehicle

机译:高速车辆脱轨机构的类别及预防

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摘要

Vehicle derailment is difficult to explore because accidents are caused by many factors. In this paper, derailment behaviors are divided into three categories: friction-type derailment, structure-type derailment, and nonlinear-type derailment. Each category has unique characteristics. Wheel climb is a frequent form of friction-type derailment, resulting from mechanical and generally dynamical behavior between wheel and rail. Dynamic simulation is an important tool for prediction of friction-type derailment. There exists a critical point during wheel climb, and lateral normal force primarily prevents the wheel's moving up. Structure-type derailment is a result of component failure, appearing as local, then developing into general derailment. Factors affecting the development process, such as failure modes, front wheelset derailment, and vehicle speed, are discussed. Nonlinear-type derailment commonly occurs as impact derailment when the vehicle loses stability beyond a nonlinear critical speed. The critical speed for derailment is derived, and the case of a bifurcation diagram is studied. Although nonlinear-type derailment is sensitive to initial conditions, the possibility of accurate prediction is discussed.
机译:由于事故是由多种因素引起的,因此难以进行车辆出轨。本文将脱轨行为分为三类:摩擦型脱轨,结构型脱轨和非线性型脱轨。每个类别都有其独特的特征。车轮爬升是摩擦型脱轨的一种常见形式,是由于车轮和轨道之间的机械行为以及通常的动力学行为造成的。动态模拟是预测摩擦式脱轨的重要工具。车轮爬升过程中存在一个临界点,横向法向力主要阻止车轮向上移动。结构型脱轨是组件故障的结果,出现在局部,然后发展为一般脱轨。讨论了影响开发过程的因素,例如故障模式,前轮对脱轨和车速。当车辆失去超出非线性临界速度的稳定性时,非线性脱轨通常作为冲击脱轨发生。得出了脱轨的临界速度,并研究了分叉图的情况。尽管非线性脱轨对初始条件敏感,但仍讨论了准确预测的可能性。

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