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USE OF ARCHARD'S WEAR LAW FOR THE CALCULATION OF UNIFORM WHEEL WEAR OF HIGH TONNAGE FREIGHT VEHICLES

机译:使用Archard的磨损法来计算高吨位货车均匀轮磨损

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Wheel profile evolution has a large influence on track and wheelset related maintenance costs. It influences important parameters such as equivalent conicity or contact point positioning, which will affect the dynamic behavior of the vehicle, in both tangent track and curve negotiation. High axle loads in freight wagons may increase both the wheel wear and the damage caused by vehicles with both new and already worn profiles. A common profile in Europe is the S1002 profile, developed for rail inclination 1/40. In Sweden rail inclination is 1/30, so contact conditions might not be optimal. The presented work uses Archard's wear law to analyze the profile wear evolution in a two axle freight vehicle with Unitruck running gear on the Swedish network. This wear calculation methodology has been successfully used to predict uniform wear in passenger vehicles. First, the vehicle model has been optimized in order to improve the speed of the wear simulations. Experimental measurements of wheel profiles have been performed in order to validate the simulations. The conclusion is that the wear methodology successfully used to predict uniform wheel wear in passenger vehicles cannot be directly applied for the calculation of wheel profile evolution in high tonnage freight vehicles. The influence of block brakes or switches and crossings cannot be dismissed when calculating uniform wheel wear in these cases.
机译:车轮轮廓的演化对轨道和轮麦相关的维护成本具有很大的影响。它影响了等同的曲线或接触点定位等重要参数,这将影响车辆的动态行为,在两条切线和曲线协商中。货车中的高轴载荷可能会增加车轮磨损和具有新的和已经磨损的型材的车辆造成的损坏。欧洲的共同简介是S1002简介,用于铁路倾角1/40。在瑞典轨道倾斜度是1/30,所以接触条件可能不是最佳的。所呈现的工作使用了Archard的磨损法,分析了瑞典网络上的Unitruck运行齿轮的两个轴货运车辆中的轮廓磨损演变。这种磨损计算方法已成功地用于预测乘用车均匀的磨损。首先,已经优化了车辆模型以提高磨损模拟的速度。已经执行了轮廓的实验测量以验证模拟。结论是,耐磨方法成功地预测乘用车中的均匀车轮磨损不能直接应用于高吨位货车的轮廓演进的计算。在这些情况下计算均匀的车轮磨损时,块制动器或开关和交叉的影响不能被忽略。

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