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EVALUATION OF FATIGUE FAILURE RISK BASED ON ON-TRACK TESTS

机译:基于轨道测试的疲劳失效风险评估

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摘要

When a mechanical component of a railway vehicle experiences failure due to fatigue, it is necessary to determine whether it has been an isolated failure or it is a systematic failure that may affect the whole fleet. The present work presents the methodology to be followed for the application of on-track tests to determine the probability of fatigue failure. By simulating a normal commercial service in one or multiple conditions, the stress levels experienced by the component are recorded. These stress levels are combined and extrapolated in order to determine the typical global stress history that the component will experience during its operational life. From this stress history, the risk of fatigue failure can be estimated by means of the cumulative damage method also known as Miner's rule. For this calculation the measured stress levels have to be compared with an S-N curve. The problem arises because the S-N curves presented in the standards correspond to stresses in the direction perpendicular or longitudinal to the weld. The peculiarities of on-track tests imply that the direction of principal stress may vary continuously and the maximum stress value may be present in specific points of the record with directions that do not represent the normal behaviour of the piece. Different forms of dealing with the projection of the rosettes have been analyzed, and the influence of these considerations on the damage calculation has been studied.
机译:当铁路车辆的机械部件由于疲劳而经历失败时,有必要确定是否已被隔离失败,或者是可能影响整个舰队的系统性失败。目前的工作介绍了在轨道上进行追踪的方法,以确定疲劳失败的可能性。通过在一个或多个条件下模拟正常的商业服务,记录组件经历的应力水平。这些应力水平被组合并推断,以确定组件在其运营生活中会经历的典型全球压力历史。从这种压力历史来看,疲劳失效的风险可以通过累积损伤方法估计,累积损伤方法也称为矿工规则。对于该计算,必须与S-N曲线进行比较测量的应力水平。出现了问题,因为标准中呈现的S-N曲线对应于垂直或纵向焊缝方向的应力。在轨道测试的特点意味着主应力的方向可以连续变化,并且最大应力值可以在记录的特定点中存在,其方向不代表该部件的正常行为。已经分析了不同形式的处理玫瑰花丝的投影,研究了这些考虑对损伤计算的影响。

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