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EFFECT OF LONGITUDINAL FASTENER STIFFNESS ON FASTENING SYSTEM LOADING - INITIAL FINDINGS

机译:纵向紧固件刚度对紧固系统载荷的影响 - 初始发现

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Over the past 20 years, there have been at least 10 derailments due to spike fatigue failures in North America. Researchers believe that fatigue failure is caused by a combination of lateral and longitudinal spike loading. The literature indicates the vertical load and fastener friction must be considered when estimating failure locations. Though the in-track vertical, lateral, and longitudinal fastener forces have been quantified at a location that has experienced spike failures, there is a need to account for additional fasteners and track locations. Fastening systems can affect track stiffness, thus, laboratory experimentation was performed to quantify stiffness of multiple fastening systems. This data was input into an analytical model which quantified the effect of stiffness on longitudinal fastener loading. The data indicate there is significant variance in fastening system stiffness within, and between, systems. However, this variation in fastener stiffness has a reduced effect on the load transferred to the fastening system. More work is needed to validate this in the lab or field given variability within a system could lead to stress concentrations that are not fully captured using the current idealized analytical method.
机译:在过去的20年里,由于北美的尖峰疲劳失败,至少有10个脱轨。研究人员认为,疲劳失败是由横向和纵向尖峰装载的组合引起的。文献表示在估计失效位置时必须考虑垂直载荷和紧固件摩擦。虽然在具有经历尖峰故障的位置的轨道垂直,横向和纵向紧固件的情况下,需要考虑额外的紧固件和轨道位置。紧固系统可以影响轨道刚度,因此,进行实验室实验以量化多个紧固系统的刚度。该数据被输入到分析模型中,该模型量化了刚度对纵向紧固件负载的影响。数据表明在系统内部和之间的紧固系统刚度存在显着方差。然而,紧固件刚度的这种变化具有对传送到紧固系统的负载的效果减小。需要更多的工作来验证在实验室中,在实验室中,在系统内给出的鉴定性可变性可能导致不完全捕获的应力集中,这些方法不会使用当前的理想化分析方法完全捕获。

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