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Finite element and experimental study on multiaxial fatigue analysis of rail clip failures

机译:轨道夹故障多轴疲劳分析的有限元和实验研究

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The rail clip fastening system is an important structural component of railway track systems providing flexibility and turnover resistance for running rails. High replacement frequency of fasteners was observed compared with other components because of fatigue failures of rail clips. In this study, implicit and explicit finite element (FE) models were developed for E-clip and Fast-clip with material and fatigue properties obtained from experimental testing. The fatigue loading experiments were conducted to determine the strain-life relationship. The assessments of the fatigue damage and fatigue life were analysed using the FE results for the rail clip strain/stress components with the Fatemi-Socie multiaxial fatigue criterion. A time-efficient smallest enclosing circle algorithm was developed to search the critical plane orientation and the maximum shear strain amplitude for fatigue analysis. This work provides a method for FE and experimental study of multiaxial fatigue analysis of rail clip failures subjected to dynamic loading.
机译:轨道夹紧固系统是铁路轨道系统的重要结构组件,可为运行轨道提供灵活性和周转性。由于轨道夹的疲劳失效,与其他部件相比,观察到紧固件的高替代频率。在本研究中,用于E-Clip和具有从实验测试获得的材料和疲劳性能的E-Clip和Fast-Clip开发了隐式和显式有限元模型。进行疲劳载荷实验以确定应变寿命关系。利用FATEMI-SOCIE多轴疲劳标准,使用FE结果分析了对疲劳损伤和疲劳寿命的评估。开发了一种时间效率最小的封闭圈算法,以搜索临界平面方向和用于疲劳分析的最大剪切应变幅度。该工作提供了一种Fe和实验研究对动态载荷进行的轨道夹故障的多轴疲劳分析的实验研究。

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