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Misalignment In Gas Foil Journal Bearings: An Experimental Study

机译:翼型轴颈轴承的不对中:实验研究

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摘要

Ax gas foil journal bearings become more prevalent in production machines, such as small gas turbine propulsion systems and microturbines, system level performance issues must be identified and quantified in order to provide for successful design practices. Several examples of system level design parameters that are not fully understood in foil bearing systems are thermal management schemes, alignment requirements, balance requirements, thrust load balancing, and others. In order to address some of these deficiencies and begin to develop guidelines, this paper presents a preliminary experimental investigation of the misalignment tolerance of gas foil journal bearing systems. Using a notional gas foil bearing supported rotor and a laser-based shaft alignment system, increasing levels of misalignment are imparted to the bearing supports while monitoring temperature, at the bearing edges. The amount of misalignment that induces bearing failure is identified and compared with other conventional bearing types such as cylindrical roller bearings and angular contact ball bearings. Additionally, the dynamic response of the rotor indicates that the gas foil bearing force coefficients may be affected by misalignment.
机译:轴瓦箔轴颈轴承在生产机械(例如小型燃气轮机推进系统和微型涡轮机)中越来越普遍,必须识别和量化系统级性能问题,以提供成功的设计实践。箔轴承系统中尚未完全理解的系统级设计参数的一些示例是热管理方案,对齐要求,平衡要求,推力负载平衡等。为了解决其中的一些不足并开始制定指南,本文对气箔轴颈轴承系统的不对中公差进行了初步的实验研究。使用名义气箔轴承支撑的转子和基于激光的轴对中系统,在监控轴承边缘温度的同时,会给轴承支撑带来更多程度的未对准。确定导致轴承故障的不对中量,并将其与其他常规轴承类型(例如圆柱滚子轴承和角接触球轴承)进行比较。另外,转子的动态响应表明气箔轴承力系数可能会受到未对准的影响。

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