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An Innovative and Efficient Method for Reverse Design of Wheel-Rail Profiles

机译:车轮轨型材反向设计的一种创新高效方法

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摘要

Well-designed wheel-rail profiles are not only helpful in achieving expected dynamic vehicle performance but also in extending the service lives of wheels and rails. In this paper, a method for designing wheel-rail profiles is presented based on the rolling radius difference. This method consists of three parts, i.e., the reverse designs of wheel profiles, symmetric rail profiles and non-symmetric rail profiles. A reverse design method for wheel-rail profiles that can obtain smooth profile formed by quadratic curves is established according to the mapping relation between the rolling radius difference and the wheel-rail profile gradient. This reverse design method is verified and an example for optimizing the design of wheel profiles is introduced. Results show that the design method is effective and efficient. The static/dynamic indexes of the optimized wheel profiles matched with CHN60 can be greatly improved. According to the comparative analysis of wheel-rail contact and dynamic performance, when the lateral displacement reaches 6 mm, the maximum contact stress will be distributed evenly and can be decreased by 184.4 MPa compared to that of existing profiles, while the critical speed can be increased by 10.8% and the running stability can be improved by around 7%. It can be seen that this method is useful for the design of new wheel-rail profiles and optimization of existing wheel-rail profiles.
机译:精心设计的轮轨轮廓不仅有助于实现预期的动态车辆性能,也有助于延长车轮和轨道的服务生活。在本文中,基于轧制半径差来提出用于设计轮轨轮廓的方法。该方法由三个部分组成,即轮廓的反向设计,对称轨廓和非对称轨道配置文件。轮轨轮廓的反向设计方法,其可以根据滚动半径差和轮轨轮廓梯度之间的映射关系建立由二次曲线形成的平滑轮廓。介绍了这种反向设计方法,介绍了优化轮廓设计的示例。结果表明,设计方法是有效且有效的。可以大大提高与CHN60匹配的优化轮廓的静态/动态索引。根据车轮轨道接触和动态性能的比较分析,当横向位移达到6毫米时,与现有型材相比,最大接触应力均匀分布,可以减少184.4MPa,而临界速度可以降低增加10.8%,运行稳定性可提高约7%。可以看出,该方法可用于设计新的轮轨轮廓和现有轮轨轮廓的优化。

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