Study on Thermal Characteristics of Angular Contact Ball Bearings Considering Roundness Error

Yongjian Yu, Ruixiang Ma, Yujun Xue, Yonggang Liu
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Abstract

To develop an angular contact ball bearing with low power consumption, a heat generation calculation model for angular contact ball bearings has been established based on bearing quasi dynamics, elastohydrodynamic lubrication theory, heat transfer theory, and Kirchhoff’s law of energy conservation, considering the effects of roundness error, bearing preload, centrifugal effect, and thermal expansion. The correctness of the model is verified through experiments. The influence of different operating conditions and roundness errors on the thermal characteristics of angular contact ball bearings is analyzed. The results of the calculation indicate that when the roundness error order is equal to the number of balls n/2 ± 2 (where n = 1, 2, 3, …), the overall heat generation of the bearing is lower than that without considering the roundness error. When the roundness error order is equal to (2n − 1)/4 ± 2 (where n = 1, 2, 3, …), the overall heat generation of the bearing is higher than that without considering the roundness error. At the same rotating speed, the overall heat generation fluctuates as the roundness error order changes, and the trend becomes more pronounced as the rotating speed increases. The maximum overall heat generation is achieved when the roundness error order equals (2n − 1)/4 times (where n = 1, 2, 3, …) the number of balls. When the roundness error order is equal to n/2 times the number of balls (where n = 1, 2, 3, …), the bearing’s overall heat generation is minimal. The variation in the total heat generated by the bearing is directly proportional to the amplitude of the roundness error. With the increase in roundness error harmonic order, the bearing integral heat generation shows a periodic change, and the change period has a mapping relationship with the number of balls.
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考虑圆度误差的角接触球轴承热特性研究
为了开发低功耗角接触球轴承,基于轴承准动力学、弹性流体动力润滑理论、传热理论和基尔霍夫能量守恒定律,并考虑了圆度误差、轴承预紧力、离心效应和热膨胀的影响,建立了角接触球轴承的发热计算模型。通过实验验证了模型的正确性。分析了不同工作条件和圆度误差对角接触球轴承热特性的影响。计算结果表明,当圆度误差阶数等于球数 n/2 ± 2 时(其中 n = 1、2、3、......),轴承的总体发热量低于不考虑圆度误差时的发热量。当圆度误差阶数等于 (2n - 1)/4 ± 2 时(其中 n = 1、2、3、...),轴承的总发热量高于不考虑圆度误差时的发热量。在相同转速下,随着圆度误差阶数的变化,轴承的总发热量也随之波动,随着转速的增加,这种趋势更加明显。当圆度误差阶数等于球数的 (2n - 1)/4 倍(其中 n = 1、2、3、...)时,总发热量最大。当圆度误差阶数等于球数的 n/2 倍(其中 n = 1、2、3、......)时,轴承的总发热量最小。轴承总发热量的变化与圆度误差的大小成正比。随着圆度误差谐波阶数的增加,轴承整体发热量呈周期性变化,且变化周期与滚珠数量呈映射关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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