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Auxiliary bearings in support of magnetic bearings for turbine engines

机译:用于支撑涡轮发动机磁轴承的辅助轴承

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Active magnetic bearings (AMBs) while offering many unique design and operational advantages for high-speed rotor systems, still require that backup bearings be included to protect and/or catch the rotor in the event of a failure in the AMB. A Zero-Clearance Auxiliary Bearing (ZCAB) has recently been conceived and tested. The ZCAB incorporates a series of interconnected rollers that move radially inward when activated until the shaft is contacted by all rollers and the initial clearance is eliminated. Besides centering the shaft in the AMB and ZCAB clearance circles, the ZCAB design minimizes the potential for destructive backward whirl and introduces external damping for reduced sensitivity to unbalance and other rotor system vibrations. This paper presents the results of a preliminary ZCAB design study for a lightweight, high-speed rotor system and test results for a prototype ZCAB. In the design study, a flexible rotor system is employed such that operation above the first bending critical speed occurs. Time-transient analytical results for a series of different initial conditions at speeds in excess of 60,000 rpm and at different unbalance conditions are presented. Qualitative comparisons show a high degree of similarity between predictions and test results achieved with a prototype.
机译:主动磁性轴承(AMB),同时为高速转子系统提供许多独特的设计和操作优势,仍然需要包括备用轴承以在AMB中的发生故障时保护和/或捕获转子。最近被构思和测试了零间隙辅助轴承(ZCAB)。 Zcab包括一系列互连辊,当激活时径向向内移动直到轴通过所有辊接触并且消除初始间隙。除了在AMB和ZCAB间隙圈中将轴定为外,ZCAB设计最小化了破坏性后向旋转的可能性,并引入外部阻尼,以降低对不平衡和其他转子系统振动的敏感性。本文介绍了对轻量级,高速转子系统和原型Zcab的测试结果的初步ZCAB设计研究的结果。在设计研究中,采用柔性转子系统,使得发生高于第一弯曲临界速度的操作。提出了一系列不同初始条件的时间瞬态分析结果超过60,000rpm,并且在不同的不平衡条件下。定性比较显示使用原型实现的预测和测试结果之间的高度相似性。

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