Simulation of the contact pair “wheel-rail” of the experimental design of the flexible rail in the lightweight tracks of the uST string transport system

A. E. Unitsky, Aliaksandr S. Khlebus, E. Ivanova, Aliaksandr E. Shashko, M. I. Tsyrlin
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Abstract

Rationale: Development of string rails with low weight per meter and high-performance characteristics that determine durability, wear resistance, reliable grip of vehicle wheels to the rail rolling surface is a vital task. Objective: to investigate impact of the geometric parameters of the steel wheel and the flexible string rail with a polymer coating on the performance characteristics; to choose the most optimal parameters of the contact pair wheel-rail. Methods: The calculation was made using the ANSYS finite element analysis software package. Results: in order to reduce the level of contact pressures, it is more expedient to lower the load on the wheel or increase the width of the contact, rather than to increase the radius of the wheel; the most optimal is the contact pair, where the modulus of elasticity of the polymer rail head is equal to the modulus of elasticity of the wheel material, that is, materials similar in elasticity are used in the contact pair.
uST串输运系统轻量化轨道中柔性轨道实验设计的接触副“轮-轨”仿真
理论基础:开发每米重量低的串轨和高性能的特性,这些特性决定了耐久性、耐磨性、车辆车轮对轨道滚动表面的可靠抓地力,这是一项至关重要的任务。目的:研究涂覆聚合物的钢轮和柔性弦轨几何参数对其性能特性的影响;选择轮轨接触副的最优参数。方法:采用ANSYS有限元分析软件包进行计算。结果:为了降低接触压力水平,降低车轮负荷或增加接触宽度比增加车轮半径更有利;最优的是接触副,其中聚合物轨头的弹性模量等于车轮材料的弹性模量,即在接触副中使用弹性相似的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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