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A fast wheel-rail contact model for application to damage analysis in vehicle dynamics simulation

机译:快速轮轨接触模型在车辆动力学仿真中的损伤分析中的应用

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摘要

A novel wheel-rail contact model is proposed to be implemented for multi-body dynamics simulation, in order to facilitate accurate online calculation of damage phenomena such as wear and rolling contact fatigue. The normal contact, i.e. contact patch and pressure distribution, is calculated using a fast non elliptic algorithm called ANALYN. The tangential contact, i.e. tangential stress distribution, stick-slip division and creep force calculation, is treated using an alternative to the FASTSIM algorithm that is based on a strip theory which extends the two-dimensional solution of rolling contact to three-dimensional contacts. The proposed contact model is compared to the Hertz+FASTSIM model and evaluated using the CONTACT code in terms of contact patch and stress distribution as well as creep force curves. The results show that the proposed model can significantly improve the estimation of the contact solution both in terms of creep force estimation and contact details, such as stress distribution, needed for damage predictions. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种新颖的轮-轨接触模型,用于多体动力学仿真,以便于精确在线计算损坏现象,例如磨损和滚动接触疲劳。使用称为ANALYN的快速非椭圆算法来计算法线接触,即接触斑块和压力分布。使用基于带状理论的FASTSIM算法的替代方法来处理切向接触(即切向应力分布,粘滑滑动划分和蠕变力计算),该算法将滚动接触的二维解扩展为三维接触。将建议的接触模型与Hertz + FASTSIM模型进行比较,并使用CONTACT代码在接触斑块和应力分布以及蠕变力​​曲线方面进行评估。结果表明,所提出的模型可以在蠕变力估计和损伤预测所需的接触细节(例如应力分布)方面显着改善接触解决方案的估计。 (C)2016 Elsevier B.V.保留所有权利。

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