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EXPERIMENTAL METHODOLOGY FOR DETERMINING TURBOMACHINERY BLADE DAMPING USING MAGNETIC BEARING EXCITATION AND NON-CONTACTING OPTICAL MEASUREMENTS

机译:利用磁轴承激励和非接触式光学测量确定涡轮机叶片阻尼的实验方法

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Experiments to determine the effects of turbomachinery fan blade damping concepts such as passively shunted piezoelectric materials on blade response are ongoing at the NASA Glenn Research Center. A vertical rotor is suspended and excited with active magnetic bearings (AMBs) usually in a vacuum chamber to eliminate aerodynamic forces. Electromagnetic rotor excitation is superimposed onto rotor PD-controlled support and can be fixed to either a stationary or rotating frame of reference. The rotor speed is controlled with an air turbine system. Blade vibrations are measured using optical probes as part of a Non-Contacting Stress Measurement System (NSMS). Damping is calculated from these measurements. It can be difficult to get accurate damping measurements using this experimental setup and some of the details of how to obtain quality results are seemingly nontrivial. The intent of this paper is to present those details.
机译:美国国家航空航天局格伦研究中心正在进行有关确定涡轮机械风扇叶片阻尼概念(例如被动分流压电材料)对叶片响应的影响的实验。垂直转子通常通过真空室中的主动磁轴承(AMB)悬挂和激励,以消除空气动力。电磁转子的励磁叠加在转子PD控制的支架上,并且可以固定在固定的或旋转的参考系上。转子速度由空气涡轮机系统控制。刀片振动是使用光学探针作为非接触应力测量系统(NSMS)的一部分进行测量的。从这些测量值计算出阻尼。使用这种实验设置可能难以获得准确的阻尼测量值,并且如何获得质量结果的某些细节似乎并不重要。本文的目的是介绍这些细节。

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