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Lateral Stability Analysis of Heavy-Haul Vehicle on Curved Track Based on Wheel/Rail Coupled Dynamics

机译:基于轮/轨耦合动力学的重型载重车辆弯道横向稳定性分析

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Being viewed from the standpoint of whole system, the hunting stability of a heavy-haul railway vehicle on a curved track is investigated in this paper. First, a model to simulate dynamic performance of the heavy-haul vehicle on the elastic track is developed. Secondly, the reason of the hunting motion is analyzed, and a bifurcation diagram for the vehicle on the curved track is put forward to simulate the nonlinear critical speed. Results show that the hunting motion of the heavy-haul vehicle will appear due to the larger conicity, the initial lateral shift and the wheelset angle of attack. With the hunting motion appearing, the lateral shift and force of the wheelset are changed sharply and periodically with a wave of circa 3.6 m. There is obvious difference in the bifurcation diagram between on a curved track and on a tangent track. Relative to the centerline of the track, each vehicle body on the curved track has two stable cycles. As for the curved track with a radius of 600 m and a superelevation of 55 mm, the nonlinear critical speed of the heavy-haul vehicle is 76.4 km/h.
机译:从整个系统的角度来看,本文研究了重型铁路车辆在弯道上的行驶稳定性。首先,建立了一个模拟重型运输车辆在弹性轨道上动态性能的模型。其次,分析了摆动运动的原因,并提出了弯道上车辆的分叉图,以模拟非线性临界速度。结果表明,由于较大的锥度,初始侧移和轮对的迎角,重型卡车会出现摆动运动。随着摆动运动的出现,轮对的侧向移动和力会以大约3.6 m的波动周期性地急剧变化。在曲线轨迹和切线轨迹上的分叉图中存在明显差异。相对于轨道的中心线,弯曲轨道上的每个车身具有两个稳定的周期。对于半径为600 m,超高为55 mm的弯曲轨道,重型运输车辆的非线性临界速度为76.4 km / h。

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