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Effect of Corrosion on the Fatigue Life of Aged EMU under Fatigue Loading

机译:疲劳对腐蚀对老化动车组疲劳寿命的影响

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摘要

It is very useful to know in advance the remaining life of long life span structure for the reasons of safety assurance or setting up cost effective overhaul strategy. A railroad car is designed to have a very long life span over 40 years, and therefore corrosion and fatigue damage on the major components of the structure are known to big problems. The fatigue damage is accelerated with the growth of corrosion due to the falling-off in strength. For this reason, the railroad industry performs diagnosis of the remaining life of aged railroad cars considering fatigue and corrosion effects on the structure. In this study, the remaining fatigue life of aged railroad cars was calculated by considering the effectivity of corrosion on the static and dynamic strength of the car-body For this purpose, a series of finite element analyses was performed to quantify) the effectivity of corrosion. And the results were implemented for the fatigue life prediction of aged car bodies. The fatigue life was reduced by about 20% at the corrosion thickness of 0.3 mm, the measured thickness on the 23 years aged car, and about 40% at the corrosion thickness of 0.72 mm, the predicted thickness on the 40 years aged car, compared to the base thickness of the car-body. Therefore it can be concluded that consideration of the corrosion effect is very important in prediction of the remaining fatigue life.
机译:出于安全保证或建立具有成本效益的大修策略的原因,提前了解长寿命结构的剩余寿命非常有用。有轨电车被设计为具有超过40年的非常长的使用寿命,因此众所周知,结构的主要部件受到腐蚀和疲劳损坏是个大问题。由于强度的下降,腐蚀的加剧会加速疲劳损伤。因此,铁路行业考虑到疲劳和腐蚀对结构的影响,对老化的有轨电车的剩余寿命进行诊断。在这项研究中,通过考虑腐蚀对车体静态和动态强度的影响来计算老化铁路车辆的剩余疲劳寿命。为此,进行了一系列有限元分析以量化腐蚀的影响。并将结果用于预测老化车身的疲劳寿命。与之相比,在使用了23年老车的腐蚀厚度为0.3 mm时,疲劳寿命降低了约20%;在使用了40年老车的腐蚀厚度为0.72 mm时,疲劳寿命降低了约40%。到车身的基础厚度。因此可以得出结论,在预测剩余疲劳寿命时,考虑腐蚀作用非常重要。

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