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首页> 外文期刊>Tribology Transactions >A Three-Dimensional Foil Bearing Performance Map Applied to Oil-Free Turbomachinery
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A Three-Dimensional Foil Bearing Performance Map Applied to Oil-Free Turbomachinery

机译:应用于无油涡轮机械的三维箔轴承性能图

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摘要

To effectively apply compliant foil gas bearings to increasingly larger and more challenging turbomachinery, a comprehensive method that compares a foil bearing’s capabilities with the application's operating requirements is needed. Extensive laboratory and field experience suggests that foil bearing failure is generally due to thermal stress brought on by excessive viscous power loss; therefore, a map that graphically relates component- and system-level parameters (bearing size, applied loads, and shaft rotational speeds) directly to bearing power loss is more elucidating than a map based on a lumped speed/load parameter like the Sommerfeld number. In this article we describe a performance map featuring a three-dimensional contour plot that illustrates the expected power loss in a foil bearing as a function of applied load and shaft speed. Using this performance map, bearing capabilities can be examined at the anticipated system operating conditions and safety margins between an operating point and incipient bearing failure can be ascertained. To demonstrate the concept's features and usefulness, we present a performance map generated from foil bearing power loss test data. We expect that these maps, combined with other predictive tools, will help evaluate a foil bearing's general suitability for a candidate rotor system and will lead to more robust and successful oil-free turbomachinery designs.
机译:为了有效地将兼容的箔式气体轴承应用于越来越大且更具挑战性的涡轮机械,需要一种综合方法将箔式轴承的性能与应用的运行要求进行比较。大量的实验室和现场经验表明,箔轴承的故障通常是由于过多的粘性功率损耗所带来的热应力所致。因此,与基于总速度/负载参数(如Sommerfeld数)的图相比,将图形化地将部件和系统级参数(轴承尺寸,施加的载荷和轴转速)直接与轴承功率损耗相关联的图更加清晰。在本文中,我们描述了一个具有三维轮廓图的性能图,该轮廓图说明了箔轴承中预期的功率损耗与所施加的载荷和轴速度的关系。使用该性能图,可以在预期的系统运行条件下检查轴承性能,并可以确定工作点与轴承初始故障之间的安全裕度。为了演示该概念的功能和实用性,我们展示了根据箔轴承功率损耗测试数据生成的性能图。我们希望这些地图与其他预测工具相结合,将有助于评估箔片轴承对候选转子系统的总体适用性,并将导致更加坚固和成功的无油涡轮机械设计。

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