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The analysis of a damaged component from the connection system of the wagons

机译:货车连接系统中损坏部件的分析

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The operation of passenger trains in different continents is still differentiated by different wagon connections systems. The predominant wagon connection in North America and Australia is the autocoupler system. The system of draw hooks and buffers is now rare. In Europe, draw hook and buffer systems are still in wide use. In particular, the majority of passenger trains in Romania have wagons connected by draw hook and buffer systems. This paper presents an unusual situation for analysis of a damaged component of draw hook system and where has been lost the basic information about the causes of failure. Due to the lack of information, the analysis has a high degree of assumptions, being based on failure scenarios. The broken component is a link plate made of forged steel. After an initial examination of the fracture surface, was observed the existence of a structural defect in the material from which was initiated a fatigue crack. The analysis involves an experi mental evaluation of the mechanical properties of the failed component material, followed by the modeling of the behavior of connection system according to the position where is mounted on the train. Based on the mode of fatigue crack propagation, correlated with the loading level of the connection system, different scenarios have been made about the time of propagation. Because important information about the failure causes was lost, the analysis was performed taking into account almost all factors that could influence the fatigue crack propagation.This analysis came in completing the expertise done by specialists in Traffic Safety on the Railways.
机译:不同大陆的客运列车的运行仍然通过不同的货车连接系统来区分。在北美和澳大利亚,主要的旅行车连接是自动连接器系统。绘图挂钩和缓冲区系统现在很少。在欧洲,牵引钩和缓冲系统仍在广泛使用。尤其是,罗马尼亚的大多数旅客列车都通过拉钩和缓冲系统将货车连接起来。本文提出了一种异常情况,用于分析吊钩系统的损坏组件,并且丢失了有关故障原因的基本信息。由于缺乏信息,因此基于故障场景的分析具有很高的假设。损坏的部件是由锻钢制成的链板。在对断裂表面进行初步检查后,观察到材料中存在结构缺陷,并由此引发了疲劳裂纹。分析包括对失效组件材料的机械性能进行实验评估,然后根据火车上安装位置对连接系统的行为进行建模。基于疲劳裂纹扩展的方式,与连接系统的负荷水平相关,已经针对扩展时间做出了不同的假设。由于丢失了有关故障原因的重要信息,因此在进行分析时考虑了几乎所有可能影响疲劳裂纹扩展的因素。此分析是为了完善铁路交通安全专家的专业知识。

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