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Dynamic Investigation of the Hunting Motion of a Railway Bogie in a Curved Track via Bifurcation Analysis

机译:分叉分析法动态研究铁路转向架在弯轨中的绕行运动

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The main purpose of this paper is to analyze and compare the Hopf bifurcation behavior of a two-axle railway bogie and a dual wheelset in the presence of nonlinearities, which are yaw damping forces in the longitudinal suspension system and heuristic creep model of the wheel-rail contact including dead-zone clearance, while running on a curved track. Two-axle railway bogie and dual wheelset were modeled using 12-DOF and 8-DOF system with considering lateral, vertical, roll, and yaw motions. By utilizing Lyapunov's indirect method, the critical hunting speeds related to these models are evaluated as track radius changes. Hunting defined as the lateral vibration of the wheelset with a large domain was characterized by a limit cycle-type oscillation behavior. Influence of the curved track radius on the lateral displacement of the leading wheelset was also investigated through 2D bifurcation diagram, which is employed in the design of a stable model. Frequency power spectra at critical speeds, which are related to the subcritical and supercritical bifurcations, were represented by comparing the two-axle bogie and dual wheelset model. The evaluated accuracy to predict the critical hunting speed is higher and the hunting frequency in unstable region is lower compared to the dual wheelset model.
机译:本文的主要目的是在存在非线性的情况下分析和比较两轴铁路转向架和双轮对的Hopf分叉行为,这是纵向悬架系统中的偏航阻尼力和车轮的启发式蠕变模型。在弯曲的轨道上行驶时,轨道接触包括死区间隙。使用12自由度和8自由度系统对两轴铁路转向架和双轮对进行了建模,同时考虑了横向,垂直,侧倾和偏航运动。通过使用Lyapunov的间接方法,与这些模型相关的临界寻线速度将作为轨道半径的变化进行评估。被定义为具有大域的轮对的横向振动的亨廷顿运动以极限循环型振动行为为特征。还通过二维分叉图研究了弯道半径对前轮副横向位移的影响,该分叉图被用于稳定模型的设计中。通过比较两轴转向架和双轮对模型,可以得出与亚临界和超临界分叉有关的临界速度下的功率谱。与双轮对模型相比,用于预测临界摆动速度的评估精度更高,在不稳定区域的摆动频率更低。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第7期|8276245.1-8276245.15|共15页
  • 作者单位

    Istanbul Tech Univ, Grad Sch Sci Engn & Technol, Dept Mechatron Engn, Istanbul, Turkey;

    Istanbul Tech Univ, Fac Elect & Elect Engn, Control Engn Dept, Istanbul, Turkey;

    Istanbul Tech Univ, Fac Elect & Elect Engn, Control Engn Dept, Istanbul, Turkey;

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