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ANALYSIS OF HIGH-SPEED CYLINDRICAL ROLLER BEARING WITH FLEXIBLE RINGS MOUNTED IN A SQUEEZE FILM DAMPER

机译:挤压膜阻尼器上装有挠性环的高速圆柱滚子轴承的分析

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For high-precision mechanical systems such as gas-turbine engines, which operate under extreme conditions, it is particularly important to accurately predict the behavior of the mainshaft rolling bearings. This prediction includes, among others, the load distribution, stiffness and power dissipation. Although shaft speeds tend to increase, rings and shaft walls are becoming thinner due to size and weight constraints. Thus, bearing behavior is no longer independent of the housing and ring stiffness. Furthermore, since forty years, the use of squeeze film damper is largely widespread in gas-turbine engines to significantly reduce the vibratory levels. Due to the flexibility of the ring providing the interface between the roller bearing and the fluid film, it appears an elastic coupling which modifies the behavior of the bearing-squeeze film damper system. This paper presents first a squeeze film damper model with a flexible inner ring (i.e. outer ring of the roller bearing). An analytical stop model is introduced to reproduce the interference between the inner ring of the squeeze film damper and its housing. In a second part, an elastic coupling between the presented squeeze film damper model and an existing roller bearing model is proposed. Finally, the results presented show that this coupling has a first order influence on the behavior of the bearing-squeeze film damper system. It is also shown that the coupling between a roller bearing and a squeeze film damper when linked by a flexible ring introduces a dissymmetry of the load distribution with respect to the applied load direction. Moreover, in certain cases, the position of the bearing in its housing can reach eccentricities larger than the radial clearance of the squeeze film damper.
机译:对于在极端条件下运行的高精度机械系统(例如燃气涡轮发动机),准确预测主轴滚动轴承的性能尤为重要。该预测除其他外包括负载分布,刚度和功耗。尽管轴速趋于增加,但是由于尺寸和重量的限制,环和轴壁变得越来越薄。因此,轴承性能不再独立于轴承座和环刚度。此外,自四十年以来,挤压膜阻尼器在燃气涡轮发动机中的使用已广泛普及,以显着降低振动水平。由于在滚动轴承和流体膜之间提供界面的环的柔韧性,似乎出现了一种弹性联轴节,该弹性联轴节改变了轴承挤压膜阻尼系统的性能。本文首先介绍一种带挠性内圈(即滚子轴承的外圈)的压膜阻尼器模型。引入分析止动模型以重现挤压油膜阻尼器内圈与其外壳之间的干扰。在第二部分中,提出了所提出的挤压膜阻尼器模型与现有的滚子轴承模型之间的弹性耦合。最后,给出的结果表明,这种耦合对轴承挤压膜阻尼器系统的性能具有一级影响。还显示出,当滚动轴承和挤压膜阻尼器之间通过挠性环连接时,其联接相对于施加的载荷方向引起载荷分布的不对称性。此外,在某些情况下,轴承在其外壳中的位置可以达到大于挤压膜阻尼器径向间隙的偏心距。

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