首页> 外文会议>9th International Power Transmission and Gearing Conference >SIMULATIONS OF GEAR-ROLLING ELEMENT BEARING INTERACTIONS IN GEARED TRANSMISSIONS
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SIMULATIONS OF GEAR-ROLLING ELEMENT BEARING INTERACTIONS IN GEARED TRANSMISSIONS

机译:齿轮传动中齿轮滚动轴承相互作用的仿真

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摘要

The modular model of geared systems presented in this paper makes it possible to simultaneously account for the contact conditions in gears and rolling element bearings. Gears are modeled as two rigid cylinders connected by distributed mesh stiffnesses while ball and roller bearings contribute to the equations of motion as time -varying, non-linear external forces. Solutions are obtained by combining a Newmark time-step integration scheme, a Newton-Raphson method for ball bearing non-linearity and a normal contact algorithm that deals with the contact proble m between the teeth. It is found that the static gear-bearing couplings are generally more important than the dynamic couplings with a significant influence of the gear on the bearing response. Finally, it is shown that, in certain conditions, bearings can generate non-linear parametric excitations of the same orders of magnitude as those associated with the meshing of helical gears.
机译:本文介绍的齿轮系统的模块化模型可以同时考虑齿轮和滚动轴承的接触条件。齿轮被建模为通过分布的网格刚度连接的两个刚性圆柱体,而滚珠和滚子轴承则作为随时间变化的非线性外力参与运动方程。解决方案是通过结合Newmark时间步积分方案,用于轴承非线性的Newton-Raphson方法和处理牙齿之间接触问题的正常接触算法来获得的。已经发现,静态齿轮轴承联轴器通常比动态齿轮联轴器更重要,因为齿轮对轴承响应的影响很大。最后,结果表明,在某些情况下,轴承会产生与参量斜齿轮啮合相关的非线性参数激励,其数量级相同。

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