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Fatigue design of railway wheels: a probabilistic approach

机译:铁路车轮的疲劳设计:一种概率方法

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This paper deals with a method to evaluate and optimize the design of railway wheels subjected to multiparameter variable fatigue loading. The fatigue loads are statistically evaluated from in-service measurements. Representative realistic loading paths are built from the knowledge of the influence of various factors (such as train speed and track curvature). Using these paths, the method combines finite element computations and the fatigue equivalence method for damage evaluation in the structure. An extension of the Dang Van fatigue criterion in the high-cycle fatigue finite life domain associated with a damage accumulation law is adopted. The probability of failure of the structure is directly obtained from the interference between a local fatigue equivalent stress and fatigue strength distributions (based on the stress-strength interference approach). The result is useful for the optimization during the design stage or the validation of the fatigue strength of structures.
机译:本文提出了一种评估和优化承受多参数可变疲劳载荷的铁路车轮设计的方法。疲劳载荷通过在役测量进行统计评估。具有代表性的现实装载路径是根据各种因素(例如火车速度和轨道曲率)的影响而建立的。使用这些路径,该方法将有限元计算和疲劳等效方法相结合,以评估结构中的损伤。采用Dang Van疲劳准则在与损伤累积定律相关的高周疲劳有限寿命域中进行扩展。结构的失效概率是直接从局部疲劳等效应力与疲劳强度分布之间的干涉获得的(基于应力-强度干涉法)。该结果对于设计阶段的优化或结构疲劳强度的验证很有用。

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