首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Short-pitch rail corrugation: A possible resonance-free regime as a step forward to explain the 'enigma'?
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Short-pitch rail corrugation: A possible resonance-free regime as a step forward to explain the 'enigma'?

机译:短节距铁路波纹:一种可能的无共振方案可以作为解释“谜”的一步?

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摘要

Rail corrugation has been noticed at least for 100 years, but (particularly short pitch one in the range 20-80 mm) has been considered an enigma because measured corrugation wavelength did not relate well with wear-instability models. The apparently large number of governing parameters has resulted in many independent efforts to generate models, which do not entirely correspond to the collected experimental evidence, and therefore there is still some uncertainty over the possible critical factors dominating the phenomenon. We show in the paper that there is a simple possible mechanism of corrugation in longitudinal direction, apparently not noticed before in the literature by other authors, which does not necessarily correspond to a resonance in the system, not even the pinned-pinned resonance associated with the effect of discrete supports, but may depend on geometrical and loading conditions (normal load, creepage ratio, shape of the contact area, etc.), in general overall agreement with experiments. Additionally, some approximate calculations including discrete supports, using a typical concrete sleepers vertical receptance of BR use, show no evidence of corrugation mechanism at the pinned-pinned resonance, at least in the longitudinal direction. A full comparison between lateral and longitudinal mechanisms would depend on the particular value of the lateral creepage vs. longitudinal creepage, system-specific. The present "resonance-free" mechanism is a possible alternative for the data which fall outside the pinned-pinned resonance range.
机译:轨道波纹至少已经发现了100年,但是(特别是20-80 mm的短节距)被认为是一个谜,因为测量的波纹波长与磨损不稳定性模型没有很好的关系。明显的控制参数导致了许多独立的努力来生成模型,这些模型并不完全对应于所收集的实验证据,因此,对于主导该现象的可能关键因素仍然存在一些不确定性。我们在论文中表明,有一种简单的可能的纵向波纹形成机制,显然在其他作者之前的文献中未曾注意到,这不一定与系统中的谐振相对应,甚至与与之相关的钉扎共振也不相关。离散支撑的效果,但可能取决于几何和载荷条件(法向载荷,爬电比,接触区域的形状等),总体上与实验一致。此外,使用离散的支撑物进行的一些近似计算(使用典型的混凝土枕木,在垂直方向上使用BR)没有显示出至少在纵向上在钉扎共振时出现波纹机制的迹象。横向和纵向机制之间的全面比较取决于系统特定的横向爬电与纵向爬电的特定值。当前的“无共振”机制是落入固定共振范围之外的数据的可能替代方案。

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