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Simulation and full-scale measurement of the wear in curved tracks

机译:弯曲轨道磨损的仿真和满量程测量

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Rail wear is extremely intensive in curved tracks. In this paper, rail wear condition in curves is discussed. To test, the most critical curve of the second line of Tehran subway was selected. Track, from the viewpoints of either geometrical properties or mechanical properties was modeled in ADAMS/RAIL/spl copy/ software according to actual situation. After simulation, wear trend was determined for different parts of the curve. The accuracy of results was proved by comparing them with field measurements, measured during three years by Miniprof/spl copy/. It was discovered that in curves instead of one critical point (midpoint), there is a critical region, near the middle of the curve, regarding wear. Also parts of curve that rail probably will face RCF were determined. Determining critical points of rail will result in several important issues such as specifying parts of rail that need specific heat treatment, and choosing suitable kind of lubricants (liquid or solid) and their places, and better rail maintenance. It is also possible to determined optimum operational parameters (acceleration, speed...) to reduce rail wear.
机译:轨道磨损在弯曲轨道上非常密集。本文讨论了曲线中的轨道磨损条件。为了测试,选择了德黑兰地铁第二行最关键的曲线。追踪,从几何特性或机械性能的观点来看,根据实际情况,在ADAMS / RAIL / SPL复制/软件中建模。在模拟之后,针对曲线的不同部位确定磨损趋势。通过将它们与现场测量进行比较来证明了结果的准确性,通过MiniPROF / SPL拷贝/在三年内测量。被发现,在曲线而不是一个关键点(中点),关于磨损,存在临界区域,靠近曲线的中间。还确定了轨道可能会面临RCF的曲线的一部分。确定轨道的关键点将导致几个重要的问题,例如指定需要特定热处理的轨道部分,并选择合适的润滑剂(液体或固体)及其地点,以及更好的铁路维护。还可以确定最佳的操作参数(加速,速度......)以减少轨道磨损。

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