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An inverse shape design method for railway wheel profiles

机译:铁路车轮轮廓的反造型设计方法

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摘要

Optimisation of a railway vehicle–track system is a complex process. The paper presents a procedure for optimal design of a wheel profile based on geometrical wheel/rail contact characteristics such as the rolling radii difference (RRD). The procedure uses optimality criteria based on an RRD function. The criteria account for stability of wheelset, cost efficiency, minimum wear of wheels and rails as well as safety requirements. The shape of the wheel profile approximated by a piecewise cubic Hermite interpolating polynomial is varied during the optimisation process to satisfy the optimality criteria. A numerical technique called multipoint approximations based on response surface fitting (MARS) has been chosen as an optimisation method. The proposed optimum design procedure has been applied to improve the performance of metro trains in Rotterdam (RET), The Netherlands. The trains were suffering from severe wheel tread wear and as a result of that from lateral vibrations (hunting). Using the proposed procedure, a new wheel profile has been obtained and applied to the RET metro trains. The results of the optimisation have shown that the performance of a railway vehicle can be improved by improving the contact properties of the wheel and rail. After the application of the optimised wheel profile, the instability of the metro trains has been eliminated and the lifetime of the wheels has been increased from 15,000 to 120,000 km.
机译:铁路车辆轨道系统的优化是一个复杂的过程。本文提出了一种基于几何车轮/轨道接触特性(例如滚动半径差(RRD))的车轮轮廓优化设计的程序。该过程使用基于RRD函数的最优性标准。该标准考虑了轮对的稳定性,成本效率,车轮和轨道的最小磨损以及安全要求。在优化过程中,通过分段三次Hermite插值多项式近似的车轮轮廓形状会发生变化,以满足最佳性标准。选择了一种基于响应表面拟合(MARS)的称为多点近似的数值技术作为优化方法。拟议的最佳设计程序已应用于改善荷兰鹿特丹(RET)地铁列车的性能。火车正遭受着严重的轮面磨损,并且由于侧向振动(摆动)而遭受了磨损。使用建议的过程,已经获得了新的车轮轮廓并将其应用于RET地铁列车。优化结果表明,可以通过改善车轮与轨道的接触特性来提高铁路车辆的性能。应用优化的车轮轮廓后,地铁列车的不稳定性已经消除,车轮的使用寿命从15,000 km增加到120,000 km。

著录项

  • 来源
    《Structural and Multidisciplinary Optimization 》 |2007年第3期| 243-253| 共11页
  • 作者单位

    Section of Road and Railway Engineering Faculty of Civil Engineering and Geosciences Delft University of Technology Stevinweg 1 2628 CN Delft The Netherlands;

    Section of Road and Railway Engineering Faculty of Civil Engineering and Geosciences Delft University of Technology Stevinweg 1 2628 CN Delft The Netherlands;

    Section of Road and Railway Engineering Faculty of Civil Engineering and Geosciences Delft University of Technology Stevinweg 1 2628 CN Delft The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shape optimisation; Wheel/rail contact; Vehicle dynamics; Approximations;

    机译:形状优化;车轮/轨道接触;车辆动力学;近似值;

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