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On the Lubricating Mechanism of Roller Skew in Cylindrical Roller Bearings

机译:圆柱滚子轴承中滚子偏斜的润滑机理

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摘要

Skewing is the motion of a roller as it turns about an axis normal to the roller-race interface in cylindrical roller bearings. With a special coordinate transformation technique, complete numerical solutions for the finite line elastohydrodynamic lubrication (EHL) contact formed between a roller and races were obtained to investigate the lubricatingmechanism of roller skew. The effects of skew angle, rotational speed, applied load, length of the roller, and radius of the outer race on the lubricating performance of skewed roller contact in rolling bearings is discussed. In addition, in order to weaken the end concentration of the pressure due to the skewing effect, a parabolic profile modification for the roller's generatrix was carried out. A coupled solution combining skewing and tilting effects was achieved. The results showed that when the roller is skewed, the maximum pressure appears at the end parts of the roller for a roller-outer race contact but in the middle part of the roller for a roller-inner race contact. For the roller-outer race contact, a more serious skewing effect on the lubrication can be generated by a larger skew angle, higher speed, lighter load, longer roller length, and larger radius of the outer race. The skewing effect can be reduced through the profile modification for a roller's generatrix. In general, local lubricating failure may easily occur when roller skew is coupled with the tilting effect in cylindrical roller bearings.
机译:偏斜是指滚子绕着垂直于圆柱滚子轴承中滚子-种族界面的轴线旋转时的运动。利用特殊的坐标变换技术,获得了滚子与滚道之间形成的有限元弹性流体动力润滑(EHL)接触的完整数值解,以研究滚子偏斜的润滑机理。讨论了偏斜角,转速,施加的载荷,滚子的长度和外圈的半径对滚动轴承中偏斜滚子接触润滑性能的影响。另外,为了减弱由于偏斜效应引起的压力的最终集中,对辊的母线进行了抛物线轮廓的修改。实现了一种结合了倾斜和倾斜效果的耦合解决方案。结果表明,当滚子偏斜时,对于滚子外圈接触,最大压力出现在滚子的端部,而对于滚子内圈接触,最大压力出现在滚子的中部。对于滚子-外圈接触,较大的偏斜角,更高的速度,更轻的负载,更长的滚子长度和更大的外座圈半径可以对润滑产生更严重的偏斜效果。可以通过修改滚子母线的轮廓来减少偏斜效果。通常,当滚子偏斜与圆柱滚子轴承的倾斜效应结合在一起时,很容易发生局部润滑故障。

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