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Effect of Lubricating Oils on Cage Failure of Ball Bearings

机译:润滑油对球轴承保持架失效的影响

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Ball Speed Variation (BSV) and cage clearances affect the cage life of ball bearings. Vibration and impact of the moving surfaces of a bearing under high-pressure conditions also affects the cage life. Moreover, large forces at the cage-ball and cage-race contacts cause cage failure. Therefore, cage design is improved by increasing the looseness at the ball pocket and race. However, in many cases, cage failure still is occurring. To investigate the causes of cage failure, thrust ball bearing life testing was done using eight kinds of lubricant. The general feature found was that bearing life with synthetic naphthenic oils, polybutene and fluoro silicon oil increases with increasing film parameter in the ball-race contacts. Flaking occurred in the inner and outer ring and hall. In the case of dimethyl silicon oil that has mechanical shear thinning (permanent viscosity loss), poor oil film formation and poor boundary lubrication performance, all stoppage of the experiments occurred due to cage damage. Cage-ball contact fluid film characteristics were investigated by testing the high-pressure rheology of the lubricants under the impact of a ball on a lubricated surface. Impact indentations were analyzed and compared with the bearing life experiment results. It was found that abrasion of the cage at the ball-cage contact was not the only determining factor. Surface chemistry also had a great influence on the cage failure.
机译:球速变化(BSV)和保持架间隙会影响球轴承的保持架寿命。轴承在高压条件下的运动表面的振动和冲击也会影响保持架的寿命。而且,在保持架球和保持架-种族接触处的巨大作用力会导致保持架故障。因此,通过增加球兜和座圈的松度来改善球笼的设计。但是,在许多情况下,笼式故障仍在发生。为了研究保持架故障的原因,使用八种润滑剂进行了推力球轴承寿命测试。发现的一般特征是,随着球面接触中膜参数的增加,合成环烷油,聚丁烯和氟硅油的轴承寿命会增加。内圈和外圈和大厅都发生剥落。在二甲基硅油具有机械剪切稀化(永久粘度损失),油膜形成不良和边界润滑性能不良的情况下,所有实验停止都是由于保持架损坏而发生的。通过测试球在润滑表面上的冲击下润滑剂的高压流变性,研究了保持架-球接触流体膜的特性。分析了冲击压痕并与轴承寿命试验结果进行了比较。已经发现,保持架在球笼接触处的磨损不是唯一的决定因素。表面化学性质对保持架故障也有很大的影响。

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