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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Friction in wheel-rail contact: A model comprising interfacial fluids, surface roughness and temperature
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Friction in wheel-rail contact: A model comprising interfacial fluids, surface roughness and temperature

机译:轮轨接触中的摩擦:包含界面流体,表面粗糙度和温度的模型

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摘要

A profound description of friction in wheel-rail contact plays an essential role for optimization of traction control strategies, as input quantity for railway simulations in general and for the estimation of wear and rolling contact fatigue. A multitude of wheel-rail contact models exists, however, traction-creepage curves obtained from measurements show quantitative and qualitative deviations. There are several phenomena which influence the traction-creepage characteristics: Mechanisms resulting from surface roughness, frictional heating or the presence of interfacial fluids can have a dominating influence on friction. In this paper, a new wheel-rail contact model, accounting for these influential parameters, will be presented. The presented model accounts for the interaction of an interfacial fluid model for combined boundary and mixed lubrication of rough surfaces with a wheel-rail contact model that additionally accounts for frictional heating. A quantitative comparison with measurements found in the literature is not conducted, since the exact conditions of the measurements are mostly unknown and parameters can easily be adjusted to fit the measurements. Emphasis is placed on the qualitative behavior of the model with respect to the measurements and good agreement is found. The dependence of the maximum traction coefficient on rolling velocity, surface roughness and normal load is studied under dry and water lubricated conditions.
机译:轮轨接触摩擦的深刻描述对于优化牵引力控制策略,作为一般铁路模拟的输入量以及估计磨损和滚动接触疲劳至关重要。存在许多轮轨接触模型,但是,通过测量获得的牵引力-蠕变曲线显示出定量和定性偏差。有几种现象会影响牵引-蠕变特性:由表面粗糙度,摩擦加热或界面流体的存在引起的机理可能对摩擦产生主要影响。在本文中,将提出一个考虑这些影响参数的新的轮轨接触模型。提出的模型考虑了用于粗糙表面的边界润滑和混合润滑的界面流体模型与另外考虑了摩擦加热的轮轨接触模型之间的相互作用。没有进行与文献中发现的测量值的定量比较,因为测量的确切条件几乎是未知的,并且可以轻松调整参数以适合测量值。重点放在模型相对于测量的定性行为上,并找到了很好的一致性。研究了在干润滑和水润滑条件下最大牵引系数对轧制速度,表面粗糙度和法向载荷的依赖性。

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