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Proposed procedure and trial simulation of rail profile evolution due to uniform wear

机译:均匀磨损引起的钢轨轮廓演变的拟议程序和试验模拟

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A procedure for numerical simulation of rail wear and the corresponding profile evolution has been formulated. The wear is assumed to be uniform in the sense that the profiles remain constant along the track portion to be investigated. A simulation set is selected defining the vehicles running on the track, their operating conditions, and contact parameters. Several variations of input data may be included together with the corresponding occurrence probability. Simulation of multi-body dynamics is used to calculate contact forces and positions, and Archard's wear equation is applied for the calculation of wear depth. Wear coefficients as a function of contact pressure and relative sliding velocity are collected from different test results. Trial calculations of four non-lubricated and two lubricated curves with radii from 303 to 802m show qualitatively reasonable results in terms of profile shape development and difference in wear mechanisms between gauge corner and rail head. The wear rates related to traffic tonnage are, however, overestimated and the lubrication efficiency underestimated. It is expected that model refinements in terms of environmental influence and contact stress calculation are useful to improve the quantitative results. [PUBLICATION ABSTRACT]
机译:制定了轨道磨损数值模拟和相应轮廓演变的程序。在轮廓沿着待研究的轨道部分保持恒定的意义上,假定磨损是均匀的。选择一个模拟集来定义在轨道上行驶的车辆,其运行状况和接触参数。可以包括输入数据的几种变化以及相应的出现概率。使用多体动力学模拟来计算接触力和位置,并使用Archard的磨损方程式来计算磨损深度。从不同的测试结果中收集了作为接触压力和相对滑动速度的函数的磨损系数。半径为303至802m的4条非润滑曲线和2条润滑曲线的试验计算表明,就轮廓形状的发展以及轨距和轨头之间的磨损机理的差异而言,定性的结果合理。但是,与交通吨位有关的磨损率被高估了,而润滑效率却被低估了。可以预期,在环境影响和接触应力计算方面对模型进行细化有助于提高定量结果。 [出版物摘要]

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    R Enblom M Berg;

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    R Enblom1,2* and M Berg11 Department of Aeronautical and Vehicle Engineering, Royal Institute of Technology (KTH), Stockholm, Sweden2 Department of Specialist Engineering, Bombardier Transportation, Vastevas, SwedenThe manuscript was received on 30 July 2007 and was accepted after revision for publication on 9 January 2008.DOI: 10.1243/09544097JRRT173* Corresponding author: Department of Specialist Engineering, Bombardier Transportation, Ostra Ringvagen 2,Vasteras,SE 72173, Sweden. email: roger.enblom@se.transport.bombardier.com;

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