GUO Zhen-xing, ZHANG Hong-bing. Analysis of the Dynamic Characteristics of a Lateral Wheel-Rail Impact Vibration System for Trains[J]. Mechanical Research & Application, 2025, 38(3): 108-110,114. DOI: 10.16576/j.ISSN.1007-4414.2025.03.029
Citation: GUO Zhen-xing, ZHANG Hong-bing. Analysis of the Dynamic Characteristics of a Lateral Wheel-Rail Impact Vibration System for Trains[J]. Mechanical Research & Application, 2025, 38(3): 108-110,114. DOI: 10.16576/j.ISSN.1007-4414.2025.03.029

Analysis of the Dynamic Characteristics of a Lateral Wheel-Rail Impact Vibration System for Trains

  • This study focused on the lateral wheel-rail collision vibration system and established a two-degree-of-freedom dynamic model of the train wheel-rail system with clearance.The system's dynamic response was numerically solved using the fourth-order Runge-Kutta method.Bifurcation diagrams, phase trajectories, and Poincaré sections obtained through simulation were used for an in-depth analysis of the system's dynamic behavior.The results revealed complex nonlinear dynamic phenomena, such as period-doubling bifurcation and Hopf bifurcation. Furthermore, the dynamic characteristics of the wheel-rail lateral collision vibration system under different excitation frequencies were analyzed. The analysis provides a theoretical basis for the prediction and control of chaos in the design of lateral suspension parameters, thereby helping to improve the running stability and ride comfort of trains.
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