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An Integrated Model to Characterize Comprehensive Stiffness of Angular Contact Ball Bearings

机译:一种集成模型,以表征角触头滚珠轴承综合刚度

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The bearing dynamic behaviors will be complicated due to the changes in the geometric sizes and relative positions of the bearing components at high speed. In this paper, based on the Hertz contact theory, elastohydrodynamic lubrication (EHL) model, and Jones’ bearing theory, the comprehensive stiffness model of the angular contact ball bearing is proposed in consideration of the effects of elastic deformation, centrifugal deformation, thermal deformation, and the ball spinning motion. The influences of these factors on bearing dynamic stiffness are investigated in detail. The calculation results show that the centrifugal deformation and thermal deformation increase with the increase in rotation speed. When the centrifugal deformation and thermal deformation are considered, the bearing radial contact stiffness increases as the speed increases, whereas the axial contact stiffness and the angular contact stiffness decrease. When the deformations and the EHL are all considered, the comprehensive bearing stiffness decreases with the increasing speed. It is also found that the spinning motion of the ball causes the comprehensive bearing stiffness to increase.
机译:由于高速的几何尺寸和相对位置的变化,轴承动态行为将变得复杂。本文基于赫斯茨接触理论,弹性流体润滑(EHL)模型和琼斯轴承理论,考虑到弹性变形,离心变形,热变形的影响,提出了角接触球轴承的综合刚度模型和球旋转运动。详细研究了这些因素对轴承动态刚度的影响。计算结果表明,离心变形和热变形随着旋转速度的增加而增加。当考虑离心变形和热变形时,随着速度的增加,轴承径向接触刚度增加,而轴向接触刚度和角度接触刚度降低。当变形和EHL都考虑时,综合轴承刚度随着速度的增加而降低。还发现球的纺纱运动导致综合轴承刚度增加。

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