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首页> 外文期刊>Journal of Sound and Vibration >Nonlinear dynamic analysis of cylindrical roller bearing with flexible rings
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Nonlinear dynamic analysis of cylindrical roller bearing with flexible rings

机译:柔性圈圆柱滚子轴承的非线性动力学分析

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A nonlinear plan dynamic model for cylindrical bearings has been developed, predicting the interaction forces between the retainers and the rolling elements. Roller-race contacts are analyzed in detail and resulting forces and moments are determined. An elastohydrodynamic lubrication (EHL) model provides the traction components while a hydrodynamic formulation is used for the roller-cage interactions. Structural deformations of the rings are included in the geometrical equations linking the relative displacements between rings. The Newmark type implicit integration technique coupled with the Newton-Raphson method is used to solve the differential equation system iteratively. Time displacements and theirs FFT are used to illustrate and elucidate the diversity of the system response. Computations performed when considering the structural deformations of the rings show a low frequency shift, as higher harmonics are attenuated while the first are more pronounced. With an unbalanced rotor, the ball pass frequency (BPF) is modulated with this perturbation leading to an aperiodic response. This is particularly true for the counter-rotating bearing investigated. Finally, results for different cage materials show a significant influence only on the cage center location, whereas the inertia moment of the cage is of little impact on the global dynamics behavior.
机译:已经开发了用于圆柱轴承的非线性计划动力学模型,该模型预测了保持架和滚动元件之间的相互作用力。详细分析了滚道接触,并确定了产生的力和力矩。弹性流体动力润滑(EHL)模型提供了牵引力,而流体动力配方则用于滚子-保持架相互作用。环的结构变形包含在链接环之间的相对位移的几何方程式中。将Newmark型隐式积分技术与Newton-Raphson方法相结合,用于迭代求解微分方程组。时间位移及其FFT用于说明和阐明系统响应的多样性。考虑到环的结构变形时进行的计算显示出低频偏移,因为高次谐波被衰减,而前一次谐波则更为明显。对于不平衡的转子,滚珠通过频率(BPF)受到这种扰动的调制,从而导致非周期性响应。对于研究的反向旋转轴承尤其如此。最后,不同保持架材料的结果仅显示出对保持架中心位置的显着影响,而保持架的惯性矩对整体动力学行为影响很小。

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