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首页> 外文期刊>International Journal of Solids and Structures >Subsurface initiated rolling contact fatigue of railway wheels as generated by rail corrugation
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Subsurface initiated rolling contact fatigue of railway wheels as generated by rail corrugation

机译:铁路瓦楞产生的地下引发的铁路车轮滚动接触疲劳

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A fracture mechanics based fatigue index for rolling contact fatigue (RCF) initiated at deep (10-25 mm) defects is derived and employed together with a fatigue index for more shallow (4-10 mm) subsurface RCF initiation. Integrated simulations of high-frequency dynamic train-track interaction and prediction of RCF impact are then carried out to evaluate the influence of short-pitch rail corrugation on RCF of railway wheels. Parametric studies are carried out to identify operational conditions likely to generate high RCF impact. Simulation results show how rail corrugation causes a major increase in RCF impact at high-speed operations and that corrugation magnitudes measured in-field are sufficient to generate subsurface initiated RCF. At high speeds the main cause for increased fatigue impact is the increase in dynamic load magnitudes. At lower speeds and higher axle loads also the effect of poor contact geometry will have an influence. (C) 2007 Elsevier Ltd. All rights reserved.
机译:推导了基于断裂力学的深(10-25 mm)缺陷引发的滚动接触疲劳(RCF)疲劳指数,并将其与疲劳指数一起用于更浅(4-10 mm)的地下RCF引发。然后进行了高频动态列车-轨道相互作用的综合仿真以及RCF冲击的预测,以评估短节距铁路波纹对铁路车轮RCF的影响。进行参数研究以识别可能产生高RCF影响的运行条件。仿真结果表明,铁路波纹如何在高速运行中引起RCF影响的大幅增加,并且现场测量的波纹幅度足以产生地下引发的RCF。在高速下,疲劳影响增加的主要原因是动载荷大小的增加。在较低的速度和较高的轴负载下,不良的接触几何形状也会产生影响。 (C)2007 Elsevier Ltd.保留所有权利。

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