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首页> 外文期刊>Journal of Tribology >Prediction of the Pantograph/Catenary Wear Using Nonlinear Multibody System Dynamic Algorithms
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Prediction of the Pantograph/Catenary Wear Using Nonlinear Multibody System Dynamic Algorithms

机译:使用非线性多体系系统动态算法预测电压仪/裂缝磨损

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摘要

In this investigation, computational multibody system (MBS) algorithms are used to develop detailed railroad vehicle models for the prediction of the wear resulting from the pantograph/catenary dynamic interaction. The wear is predicted using MBS algorithms for different motion scenarios that include constant-speed curve negotiation and acceleration and deceleration on a tangent (straight) track. The effect of the vehicle vibration in these different motion scenarios on the contact force is further used to study the wear rates of the contact wire. The wear model used in this investigation accounts for the electrical and the mechanical effects. The nonlinear finite element (FE) absolute nodal coordinate formulation (ANCF), which is suitable for implementation in MBS algorithms, is used to model the flexible catenary system, thereby eliminating the need for using incremental-rotation procedures and co-simulation techniques. In order to obtain efficient solutions, both the overhead contact line and the messenger wire are modeled using the gradient-deficient ANCF cable element. The pantograph/catenary elastic contact formulation employed in this study allows for separation between the pantograph panhead and the contact wire, and accounts for the effect of friction due to the sliding between the pantograph panhead and the catenary cable. The approach proposed in this investigation can be used to evaluate the electrical contact resistance, contribution of the arcing resulting from the panhead/catenary separation, mechanical and electrical wear contributions, and the effect of the pantograph mechanism uplift force on the wear rate. Numerical results are presented and analyzed to examine the wear rates for different motion scenarios.
机译:在该研究中,计算多体系系统(MBS)算法用于开发详细的铁路车辆模型,用于预测由受电弓/凸起的动态相互作用引起的磨损。使用MBS算法预测磨损,用于不同的运动场景,其包括在切线(直)轨道上的恒定速度曲线协商和加速度和减速度。车辆振动在这些不同运动场景中的效果进一步用于研究接触线的磨损率。本研究中使用的磨损模型占电气和机械效果。适用于MBS算法中的非线性有限元(Fe)绝对节点坐标配方(ANCF)用于模拟柔性关联系统,从而消除了使用增量旋转过程和共模技术的需求。为了获得有效的解决方案,使用梯度缺陷的ANCF电缆元件建模开销接触线和Messenger线。本研究采用的电弓/膨胀弹性接触配方允许在诱导仪Panhead和接触线之间分离,并且由于Pantograph Panhead和延网电缆之间的滑动而造成摩擦的影响。本研究中提出的方法可用于评估电接触电阻,由Panhead /延伸分离,机电磨损贡献产生的电弧贡献,以及受诱导机构隆起力对磨损率的影响。提出和分析了数值结果以检查不同运动场景的磨损率。

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