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The influence of rail lubrication on wear and energy dissipation in wheel/rail contact

机译:轨道润滑对轮轨接触磨损和能量耗散的影响

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摘要

Abstract: This work investigates the energy dissipation in a wheel/rail system with field measurements and friction work modelling. Friction and contact conditions are measured and analyzed in order to calculate the power saving of one vehicle running over a curve of a metro line. For modelling the contact forces, creepages and spin between the wheels and rails are determined via simulations of a train travelling in a curve of the track. Next the contact stress and the micro-slip in the contact area are computed from the forces, creepages and spin as well as the measured friction coefficient and profiles of wheels and rail. Three friction conditions are tested: dry, lubricated with a friction modifier and a post lubricated condition. The total frictional work is obtained by integrating local frictional dissipation over the contact area. The wear is also analyzed according to the Tγ method including the spin, in combination with Kalker’s simplified theory, assuming that the wear is proportional to the frictional work. The frictional work is then related to the energy consumptions under the different friction conditions, which allows evaluating the effectiveness of the friction modifier and its influence on the wear of the wheel/rail system.
机译:摘要:这项工作通过现场测量和摩擦功建模研究了轮轨系统中的能量耗散。测量和分析摩擦条件和接触条件,以计算一辆在地铁线路弯道上行驶的车辆的节电情况。为了建模接触力,通过模拟在轨道曲线中行驶的火车来确定车轮和铁轨之间的爬电距离和旋转。接下来,根据力,爬电距离和旋转以及所测得的摩擦系数以及车轮和轨道的轮廓,计算出接触区域中的接触应力和微滑动。测试了三种摩擦条件:干燥,用摩擦改进剂润滑和后润滑条件。总摩擦功是通过在接触面积上积分局部摩擦耗散而获得的。假定磨损与摩擦功成正比,还根据包括旋转在内的Tγ方法分析了磨损,并结合了Kalker的简化理论。然后,摩擦功与不同摩擦条件下的能量消耗相关,这允许评估摩擦改进剂的有效性及其对轮/轨系统磨损的影响。

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