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The influence of the lubricant film on the stiffness and damping characteristics of a deep groove ball bearing

机译:润滑膜对深沟球轴承的刚度和阻尼特性的影响

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This paper experimentally investigates the formation of a lubricant film in a deep groove ball bearing and its effect on the bearing dynamics. A novel test rig is introduced, which allows testing different types and sizes of bearings in real-life conditions. The test rig dynamics are optimised such that the dynamic properties of the bearing are measured in a frequency range below the resonances of the flexible modes. Two properties of the bearing, both its stiffness and damping value in the direction of the static bearing load, are identified. The behaviour of the lubricant film between the rolling elements and raceways is measured based on the electrical resistance through the bearing. For this purpose, the bearing housing is electrically isolated from the surrounding structure. The electrical resistance, stiffness and damping of the test bearing are identified during a speed run-up. The influence of the bearing temperature is analysed as well. During a run-up at constant bearing temperature, the measurement of the electrical resistance describes the formation of the lubricant film. Due to the formation of the lubricant film, the bearing stiffness increases by 3.2% while the damping increases by 24%. During a warm-up of the bearing, the viscosity of the lubricant film decreases strongly. A resulting decrease in electrical resistance, stiffness and damping is measured. Finally, the electrical resistance, stiffness and damping are identified at different speeds, after the bearing has reached a stable temperature at each speed. A combined effect of both rotation and temperature is observed and discussed.
机译:本文通过实验研究了深沟球轴承中润滑膜的形成及其对轴承动力学的影响。引入了一种新颖的测试台,可以在现实条件下测试不同类型和尺寸的轴承。优化了试验台的动力学特性,以便在低于弹性模态共振的频率范围内测量轴承的动力学特性。确定了轴承的两个特性,即在轴承静态载荷方向上的刚度和阻尼值。滚动体和滚道之间的润滑膜行为基于通过轴承的电阻进行测量。为此,轴承箱与周围的结构电气隔离。在加速过程中可以识别测试轴承的电阻,刚度和阻尼。还分析了轴承温度的影响。在轴承温度恒定的情况下,电阻的测量描述了润滑膜的形成。由于形成了润滑膜,轴承刚度增加了3.2%,而阻尼增加了24%。在轴承预热期间,润滑膜的粘度会大大降低。测量了由此导致的电阻,刚度和阻尼的降低。最后,在轴承达到每种速度的稳定温度之后,以不同的速度识别电阻,刚度和阻尼。观察到并讨论了旋转和温度的综合作用。

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