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Time-variant reliability analysis of motor-hancjer connecting bolts in electric trains

机译:电动火车电机汉语连接螺栓的时变可靠性分析

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摘要

Due to variables in design, manufacturing and working conditions, the working loads of connecting bolts for motor hangers in electric-multiple-unit trains are uncertain. To reduce this uncertainty and improve the reliability of connecting bolts, a novel time-variant reliability analysis method has been developed. First, a parametric finite-element model of a motor hanger was established. The probability distribution of working loads for connecting bolts was then obtained by Monte Carlo simulation. Second, a one-dimensional Brownian differential equation considering the uncertainty of bolt working loads was derived based on Ito's lemma, and expressions of the mean and variance of bolt stresses under time-variant conditions were given. The time-variant reliability model of the bolts was then constructed based on a time-variant stress-strength interference model and solved by the most-probable-point method. The results showed that the reliability calculated by this method was lower than that of the traditional method and therefore safer. It was concluded that the uncertainty of the working load has a great impact on reliability.
机译:由于设计,制造和工作条件中的变量,电动多单元列车中的电机衣架连接螺栓的工作负载是不确定的。为减少这种不确定性并提高连接螺栓的可靠性,开发了一种新的时变可靠性分析方法。首先,建立了马达衣架的参数有限元模型。然后通过Monte Carlo仿真获得连接螺栓的工作负荷的概率分布。其次,考虑螺栓工作载荷的不确定性的一维褐色微分方程是基于ITO的引理来推导出来的,并且给出了螺栓应力在时变条件下的平均值和方差的表达。然后基于时变应力强度干扰模型构建螺栓的时变可靠性模型,并通过最理想的点方法解决。结果表明,该方法计算的可靠性低于传统方法的可靠性,因此更安全。结论是,工作负荷的不确定性对可靠性产生了很大影响。

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