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Accurate prediction method of initial value of high-speed ball bearing model and gyroscopic torque analysis

机译:高速滚珠轴承模型初值和陀螺扭矩分析准确预测方法

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摘要

An accurate prediction method of initial value of high-speed ball bearing model is studyed and its gyroscopic torque is analyzed. First, a new iterative algorithm for high-speed ball bearings is proposed, in which the effects of gyroscopic torque and centrifugal force are considered. Then, to accurately predict the initial values for the proposed iterative algorithm, the combined displacements of bearings are calculated as the initial values according to the deformation superposition principle. The general applicability of this new iterative algorithm for high-speed ball bearings is demonstrated. Subsequently, the effects of combined loads, rotational speed, moment, and raceway groove curvature radius on the gyroscopic torque are discussed in detail. The results provide valuable guidelines for the reasonable selection of combined loads, rotational speed, and raceway groove curvature radii.
机译:研究了高速滚珠轴承模型初始值的精确预测方法,分析了陀螺扭矩。 首先,提出了一种新的高速滚珠轴承迭代算法,其中考虑了陀螺扭矩和离心力的效果。 然后,为了准确地预测所提出的迭代算法的初始值,根据变形叠加原理计算轴承的组合位移作为初始值。 对高速滚珠轴承进行了这种新的迭代算法的一般适用性。 随后,详细讨论了组合负载,转速,时刻和滚道槽曲率半径的效果。 结果为合理选择的组合负载,转速和滚道槽曲率半径提供了有价值的指导。

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