线性地铁轮轨磨损预测及动态性能分析

IF 1.5 Q3 MECHANICS
Long Chen, D. Feng, Y. Yu, Yunfeng Zeng
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引用次数: 0

摘要

为了提高直线电机地铁运行的安全性,对直线电机地铁轮轨磨损进行了预测和动态性能分析。首先,分析了直线电机的工作原理和演化过程,计算了直线电机的行波磁场和滑移比。其次,分析了轮轨之间的摩擦原理,并利用MiniProf系列剖面仪采集了轮轨区域的运行数据。通过计算轮轨接触面的磨损能流密度和磨损质量流密度,得到磨损系数与能量流密度的关系,得到轮轨磨损面积,从而完成对轮轨磨损的预测。最后对地铁的运行阻力进行了分析,包括机械阻力和气动阻力。结合地铁的动能和电磁计算结果,采用模态叠加法得到直线电机在弹性坐标系中的位置,构建直线电机地铁的动力学方程,完成地铁的动态性能分析。实验结果表明,该研究方法能准确预测直线电机地铁的磨损情况,并能从水平稳定性和脱轨系数两个方面研究地铁的运行稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wheel Rail Wear Prediction and Dynamic Performance Analysis of Linear Metro
In order to improve the safety of linear motor metro operation, the wheel rail wear prediction and dynamic performance analysis of linear motor metro are carried out. Firstly, the working principle and evolution process of the linear motor are analyzed, and the traveling wave magnetic field and slip ratio of the linear motor are calculated. Secondly, the friction principle between wheel and rail is analyzed, and the running data of wheel and rail area are collected by MiniProf series profiler. By calculating the wear energy flow density and wear mass flow density of wheel rail contact surface, the relationship between wear coefficient and energy flow density is obtained, and the wheel rail wear area is obtained, so as to complete the prediction of wheel rail wear. Finally, the running resistance of Metro is analyzed, including mechanical resistance and aerodynamic resistance. Combined with the calculation results of Metro kinetic energy and electromagnetic, the position of linear motor is obtained by modal superposition method in the elastic coordinate system, and the dynamic equation of linear motor Metro is constructed to complete the dynamic performance analysis of Metro. The experimental results show that this research method can accurately predict the wear of linear motor metro, and can study the running stability of Metro from the two aspects of horizontal stability and derailment coefficient.
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来源期刊
CiteScore
1.70
自引率
8.30%
发文量
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