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首页> 外文期刊>Journal of Micromechanics and Microengineering >High-speed bearings for micro gas turbines: stability analysis of foil bearings
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High-speed bearings for micro gas turbines: stability analysis of foil bearings

机译:微型燃气轮机用高速轴承:箔轴承的稳定性分析

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Mesoscopic or microscopic gas turbines can be an interesting replacement for batteries as mobile energy supplies. A difficult consequence of small-scale turbomachinery is an increased rotor speed, in the order of 500 000 rpm and higher, turning bearing design into a challenging task. Air bearings are the only bearing type able to withstand the severe conditions of high speed and high temperature. However air bearings and more, in particular, aerodynamic bearings are prone to dynamic instabilities. Therefore unconventional bearing types such as foil bearings may present an interesting solution. This paper presents and discusses simulation techniques to predict the steady behaviour of a foil bearing. Furthermore, a method to calculate the dynamic properties is proposed. Using these dynamic stiffnesses and damping coefficients, a stability analysis is carried out. This analysis shows that, even without additional damping, a foil bearing is more stable than a rigid surface aerodynamic journal bearing with similar geometry but not as stable as is hitherto believed. However, due to its flexible nature, it is possible to improve the stability by simple means.
机译:介观或微观的燃气轮机可以替代电池作为移动能源。小型涡轮机械的一个困难后果是转子转速增加到500 000 rpm或更高,这使轴承设计成为一项艰巨的任务。空气轴承是唯一能够承受高速和高温恶劣条件的轴承类型。然而,空气轴承,尤其是空气动力轴承容易发生动态不稳定。因此,非常规轴承类型(例如箔轴承)可能会提出一个有趣的解决方案。本文介绍并讨论了预测箔轴承稳定性能的仿真技术。此外,提出了一种计算动力特性的方法。利用这些动态刚度和阻尼系数,进行了稳定性分析。该分析表明,即使没有附加的阻尼,箔片轴承也比具有类似几何形状的刚性表面空气动力学轴颈轴承更稳定,但不如以往所认为的那样稳定。但是,由于其柔韧性,可以通过简单的方法来提高稳定性。

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