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Experimental Method for Determining Ball Bearing Lubricant Quantity Factor

机译:确定球轴承润滑剂数量因数的实验方法

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Ball bearing temperature prediction methods for spacecraft applications require, in part, a knowledge of thelubricant contribution to bearing drag torque. This can be estimated using a model derived by Palmgrenand Snare. When implemented in bearing analysis software, the viscous drag torque model depends on avariable known as the Lubricant Quantity Factor (LQF). This value is critical to understanding spacecraftball bearing temperatures for cases where motion is involved. In this paper, we describe the results ofexperiments that were conducted on a bearing test fixture that is capable of measuring bearing thermalparameters including heat generation of an operating bearing. The heat generation and speedmeasurements are used to determine bearing drag torque, which is then used to determine LQF. We showthat the LQF depends on operating conditions, and that this variability should be considered whencalculating bearing drag and operational temperature.
机译:航天器应用中的滚珠轴承温度预测方法部分需要了解润滑剂对轴承阻力转矩的贡献。可以使用Palmgren \ r \ n和Snare派生的模型进行估算。当在轴承分析软件中实施时,粘性阻力转矩模型取决于称为润滑剂量因子(LQF)的变量。对于涉及运动的情况,此值对于了解航天器\ n \ n滚珠轴承的温度至关重要。在本文中,我们描述了在轴承测试夹具上进行的实验结果,该夹具能够测量轴承的热参数,包括运行中的轴承的热量。热量和速度的测量值用于确定轴承阻力转矩,然后用于确定LQF。我们证明,LQF取决于运行条件,并且在计算轴承阻力和运行温度时应考虑此可变性。

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