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Reliability and Parametric Sensitivity Analysis of Railway Vehicle Bogie Frame Based on Monte-Carlo Numerical Simulation

机译:基于蒙特卡罗数值模拟的铁路车辆转向架构架可靠性和参数灵敏度分析

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In order to study the structure reliability more exactly, the probability analysis method, instead of the traditional constant value analysis method, can be applied to overcome the uncertainty problem of the strength model. The reliability of railway vehicle bogie frame is influenced by many factors. In order to ensure the high reliability of bogie frame design, the precondition is found to be the dominating factor. In this paper, the parametric finite element model of bogie frame was established using the probability analysis method. The plate thicknesses, the service loads and material constants of bogie frame were set as the random variables and the distributed parameter values were obtained by statistics. The functions of failure state were established by allowed fatigue strength value and maximum principle stress of parent material or weld location of welded bogie frame. The reliability and parametric sensitivities of the random variables were simulated by Monte Carlo Method. Based on the analysis results, the random variables which are sensitive to the reliability of bogie frame can be controlled and optimized in practice so as to design high reliable bogie frame. The method applied in this paper provided an efficient way to evaluate the reliability and parametric sensitivity of the load bearing structure of high speed trains.
机译:为了更准确地研究结构可靠性,可以采用概率分析方法代替传统的常数值分析方法来克服强度模型的不确定性问题。铁路车辆转向架框架的可靠性受许多因素影响。为了确保转向架框架设计的高可靠性,前提条件是主导因素。本文采用概率分析方法建立了转向架框架的参数化有限元模型。将转向架框架的板厚,使用载荷和材料常数设置为随机变量,并通过统计获得分布参数值。通过允许的疲劳强度值和母材的最大主应力或转向架框架的焊接位置来建立失效状态的函数。通过蒙特卡罗方法对随机变量的可靠性和参数敏感性进行了仿真。根据分析结果,可以对实际对转向架框架敏感的随机变量进行控制和优化,从而设计出高可靠性的转向架框架。本文所采用的方法为评估高速列车承重结构的可靠性和参数灵敏度提供了一种有效的方法。

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  • 会议地点 Shanghai(CN);Shanghai(CN)
  • 作者单位

    Traction Power State Key Laboratory, Southwest Jiaotong University,Chengdu 610031, China School of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, China;

    Traction Power State Key Laboratory, Southwest Jiaotong University, Chengdu 610031, China;

    Traction Power State Key Laboratory, Southwest Jiaotong University, Chengdu 610031, China;

    Traction Power State Key Laboratory, Southwest Jiaotong University, Chengdu 610031, China;

    Traction Power State Key Laboratory, Southwest Jiaotong University, Chengdu 610031, China;

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