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Effects of bearing clearance and atmospheric temperature on performance of pinion bearings of railway vehicles

机译:轴承间隙和大气温度对铁路车辆齿轮轴承性能的影响

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In Japan, most of the gear units for transmitting driving force in railway vehicles employ one-stage speed reducers. The gear unit is composed of a pinion connected to a traction motor via a coupling mechanism, a gear installed on an axle, and a gear case that covers them. In their rotating parts, tapered roller bearings are mainly used, and are lubricated by gear oil splashed by the rotating gear. In order to prevent seizure of the bearings and to improve the reliability of the gear units, it is important to appropriately adjust the bearing clearance. The bearing clearance can change from its initial value during the travel of the vehicles due to an atmospheric temperature and its initial value when assembling the gear unit, and can affect the performance of bearings. In this research, an actual gear unit was subjected to bench rotation tests under various bearing clearances and various atmospheric temperatures. The bearing temperature and torque were measured, and changes in bearing clearance were estimated. As a result, it is found that the bearing clearance decreases immediately after the rotation starts, and this tendency becomes more remarkable as the initial bearing clearance is smaller and as the atmospheric temperature is lower.
机译:在日本,大多数用于在铁路车辆中传递驱动力的齿轮单元采用一级减速器。齿轮单元由连接到牵引电动机的小齿轮组成,通过联接机构,安装在轴上的齿轮以及覆盖它们的齿轮箱。在其旋转部件中,主要使用锥形滚子轴承,并且通过旋转齿轮溅起的齿轮油润滑。为了防止抓握轴承并提高齿轮单元的可靠性,重要的是适当地调节轴承间隙。由于大气温度及其初始值在组装齿轮单元时,轴承间隙可以从车辆行驶期间从其初始值改变,并且可以影响轴承的性能。在该研究中,在各种轴承间隙和各种大气温度下进行实际齿轮圈旋转试验。测量轴承温度和扭矩,估计轴承间隙的变化。结果,发现轴承间隙在旋转开始后立即降低,并且随着初始轴承间隙较小并且随着大气温度较低,这种趋势变得更加显着。

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