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Control of Fan Blade Vibrations Using Piezoelectrics and Bi-Directional Telemetry

机译:使用压电和双向遥测控制风扇叶片振动

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摘要

A novel wireless device which transfers supply power through induction to rotating operational amplifiers and transmits low voltage AC signals to and from a rotating body by way of radio telemetry has been successfully demonstrated in the NASA Glenn Research Center (GRC) Dynamic Spin Test Facility. In the demonstration described herein, a rotating operational amplifier provides controllable AC power to a piezoelectric patch epoxied to the surface of a rotating Ti plate. The amplitude and phase of the sinusoidal voltage command signal, transmitted wirelessly to the amplifier, was tuned to completely suppress the 3rd bending resonant vibration of the plate. The plate's 3rd bending resonance was excited using rotating magnetic bearing excitation while it spun at slow speed in a vacuum chamber. A second patch on the opposite side of the plate was used as a sensor. This paper discusses the characteristics of this novel device, the details of a spin test, results from a preliminary demonstration, and future plans.
机译:NASA Glenn研究中心(GRC)动态自旋测试设备已成功展示了一种新颖的无线设备,该设备通过感应将电能传输到旋转的运算放大器,并通过无线电遥测技术向旋转的身体和从旋转的身体传输低压AC信号。在本文所述的演示中,旋转运算放大器向可旋转的Ti板表面贴附的压电贴片提供可控的交流电。对正弦电压指令信号的幅度和相位进行无线调谐,以完全抑制极板的第三弯曲共振振动。板的第三弯曲共振通过旋转的磁轴承激励被激发,同时在真空室中以慢速旋转。平板相对侧的第二个贴片用作传感器。本文讨论了这种新型设备的特性,旋转测试的细节,初步演示的结果以及未来的计划。

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