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Research of the Brake Pad Eccentric Wear Simulation of Medium-low Speed Maglev Train Based on RecurDyn

机译:基于RecurDyn的中低速磁悬浮列车刹车片偏心磨损仿真研究

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The medium-low speed maglev trains occupy an important position in urban rail transit due to their unique advantages. However, the eccentric wear of the brake pads in the field seriously affects the safety and operating costs of trains operation. The paper based on the working principle of train brake and multi-body dynamics theory, and the degree of eccentric wear of brake pads is evaluated by the distribution of contact force on the surface of brake pads. Firstly, the RecurDyn which is multi-body dynamics simulation software is used to establish the brake multi-rigid body model, and the reliability of the model is verified based on the comparison of field data and simulation model output values. Then, the brake pads are equipped with no initial eccentric wear and initial eccentric wear, and the dynamic braking simulation experiments are carried out respectively. Finally, the change curve of contact forces during braking and the distribution of contact forces after steady state of brake pads are obtained. The results of simulation show that under the condition of no initial eccentric wear, the lower end eccentric wear will occur. After the initial eccentric wear of brake pads, the degree of partial wear will be aggravated. The method can provide theoretical basis and technical support for the eccentric wear prediction of brake pads of medium-low speed maglev trains.
机译:中低速磁悬浮列车由于其独特的优势而在城市轨道交通中占有重要地位。但是,在现场,制动衬块的偏心磨损严重影响了列车运行的安全性和运行成本。本文基于列车制动的工作原理和多体动力学理论,通过制动衬块表面的接触力分布来评估制动衬块的偏心磨损程度。首先,利用多体动力学仿真软件RecurDyn建立制动器多刚体模型,并通过现场数据与仿真模型输出值的比较,验证了模型的可靠性。然后,刹车片没有初始偏心磨损和初始偏心磨损,并分别进行了动态制动仿真实验。最后,得出制动过程中接触力的变化曲线以及制动片稳定后的接触力分布。仿真结果表明,在没有初始偏心磨损的条件下,将发生下端偏心磨损。制动片初次偏心磨损后,局部磨损的程度将加剧。该方法可以为中低速磁悬浮列车制动片的偏心磨损预测提供理论依据和技术支持。

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