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首页> 外文期刊>Mathematical Problems in Engineering >Numerical Investigation into the Effect of Geometric Gap Idealisation on Wheel-Rail Rolling Contact in Presence of Yaw Angle
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Numerical Investigation into the Effect of Geometric Gap Idealisation on Wheel-Rail Rolling Contact in Presence of Yaw Angle

机译:偏航角存在下几何间隙理想化对轮轨滚动接触影响的数值研究

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摘要

For a fast calculation of vehicle-track dynamics and wheel-rail contact mechanics, wheel-rail contact geometric gap is usually idealised in elliptic or nonelliptic form. These two idealisations deviate from the actual one if the lateral combined curvature within the contact patch is not constant or the yaw angle of wheelset exists. The influence of these idealisations on contact solution has not yet been deeply understood, and thus the accuracy of simplified contact modelling applied to vehicle-track dynamics and wheel-rail contact mechanics remains uncertain. This paper presents a numerical methodology to treat 3D wheel-rail rolling contact, in which the asymmetric geometric gap due to yaw angle is fully taken into account. The attention of this work is placed on investigating the effect of geometric gap idealisation on wheel-rail contact force, rolling contact solution, and wear distribution. It can help with the effective wheel-rail contact modelling on the computation of both vehicle-track dynamics and wheel-rail contact mechanics.
机译:为了快速计算车辆轨道动力学和轮轨接触力学,轮轨接触几何间隙通常以椭圆或非椭圆形式理想化。如果接触面片内的横向组合曲率不是恒定的或轮对的偏航角存在,则这两个理想化方案会偏离实际的理想化方案。这些理想化对接触解决方案的影响尚未得到深入了解,因此,应用于车辆轨道动力学和轮轨接触力学的简化接触建模的准确性仍不确定。本文提出了一种处理3D轮轨滚动接触的数值方法,其中充分考虑了由于偏航角引起的不对称几何间隙。这项工作的重点放在研究几何间隙理想化对轮轨接触力,滚动接触解决方案和磨损分布的影响。它可以帮助有效地进行轮轨接触建模,以计算车辆轨道动力学和轮轨接触力学。

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