首页> 外文会议>STLE/ASME international joint tribology conference 2010 >ROLLER-RACEWAY SLIP SIMULATIONS OF WIND TURBINE GEARBOX BEARINGS USING DYNAMIC BEARING MODEL
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ROLLER-RACEWAY SLIP SIMULATIONS OF WIND TURBINE GEARBOX BEARINGS USING DYNAMIC BEARING MODEL

机译:基于动态轴承模型的风轮机齿轮箱滚子-滑移仿真

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A six degree of freedom dynamic bearing model (DBM) has been used to simulate roller-raceway slip for a cylindrical roller bearing used in an intermediate shaft location of a wind turbine gearbox. The DBM simulates the motion of bearing components such as an inner raceway, a cage, and cylindrical rollers. Radial internal clearance and operating conditions such as load and speed were varied in order to identify the most critical parameters governing roller-raceway slip. The results indicate that significant slip occurs during rapid transient accelerations and decelerations, but these high slip conditions decay to a much lower level of slip at steady state. The results also demonstrate that extreme slip occurs for low load and high speed conditions because of concomitant contact area reduction and traction loss at the roller-raceway interfaces.
机译:六自由度动态轴承模型(DBM)已用于模拟在风力涡轮机变速箱的中间轴位置中使用的圆柱滚子轴承的滚道滑移。 DBM模拟轴承组件的运动,例如内部滚道,保持架和圆柱滚子。改变径向内部游隙和运行条件(例如负载和速度),以便确定控制滚子-滚道滑移的最关键参数。结果表明,在快速瞬态加速和减速期间会发生明显的滑动,但是这些高滑动条件会在稳态下衰减到更低的滑动水平。结果还表明,由于在滚子-滚道界面处接触面积的减少和牵引力的损失,在低负载和高速条件下会发生极端滑移。

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