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首页> 外文期刊>Journal of intelligent material systems and structures >A supersonic broadband micro jet actuator using piezohydraulic actuation
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A supersonic broadband micro jet actuator using piezohydraulic actuation

机译:使用压电液压驱动的超音速宽带微喷射执行器

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摘要

A supersonic piezohydraulic microjet flow control actuator has been developed using a 400-u.m-diameter micronozzle capable of producing pulsed microjet flow over a broad frequency range from quasi-static to 1.6 kHz. Such flow control actuators are useful in providing ideal control inputs for controlling flow properties to improve aerodynamic performance, for example, reduce or eliminate flow separation and mitigate noise from propulsion systems and other aircraft components. The design of the piezohydraulic microjet is presented in combination with experimental results to quantify the internal system dynamic characteristics in comparison with the microjet flow. The microjet actuator couples a piezoelectric stack actuator and a hydraulic circuit to amplify the 20-μm stack actuator displacement to an amplitude that is necessary to throttle flow through the 400-μm-diameter micronozzle. Unsteady pressure measurements at the microjet exit are correlated with the piezoelectric stack actuator displacement and voltage input to provide comparisons between the internal electromechanical actuation and external pulsed flow behavior. Phase-conditioned micro-Schlieren imagery is also utilized to quantify the flow field. The results illustrate broadband supersonic pulsed microjet actuation frequencies that approach I kHz: frequencies that are much higher than currently achieved with broadband actuators with this control authority.
机译:使用直径为400μm的微喷嘴开发了一种超声波压电液压微喷流控制执行器,该微喷管能够在从准静态到1.6 kHz的宽频率范围内产生脉冲微喷流。这样的流量控制致动器可用于提供理想的控制输入,以控制流量特性以改善空气动力学性能,例如,减少或消除流量分离并减轻来自推进系统和其他飞机部件的噪声。与实验结果相结合,介绍了压电液压微喷头的设计,以量化与微喷流相比内部系统的动态特性。微型喷射致动器将压电叠堆致动器和液压回路耦合,以将20-μm叠堆致动器的位移放大到一定程度,该振幅是节流通过400-μm直径微喷嘴的流量所必需的。微喷口出口处的非定常压力测量值与压电堆致动器的位移和电压输入相关联,以提供内部机电致动与外部脉冲流行为之间的比较。经过相位调节的微Schlieren图像也可用于量化流场。结果表明,宽带超音速脉冲微射流致动频率接近1 kHz:该频率远高于具有此控制权限的宽带致动器目前所达到的频率。

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  • 作者单位

    Florida Center for Advanced Aero-Propulsion (FCAAP), Department of Mechanical Engineering, Florida A & M and Florida State University, Tallahassee, FL, USA;

    Florida Center for Advanced Aero-Propulsion (FCAAP), Department of Mechanical Engineering, Florida A & M and Florida State University, Tallahassee, FL, USA;

    Florida Center for Advanced Aero-Propulsion (FCAAP), Department of Mechanical Engineering, Florida A & M and Florida State University, 2525 Pottsdamer Street, Tallahassee, FL 32310, USA;

    Florida Center for Advanced Aero-Propulsion (FCAAP), Department of Mechanical Engineering, Florida A & M and Florida State University, Tallahassee, FL, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ferroelectric; piezoceramics; active flow control; microjets;

    机译:铁电压电陶瓷;主动流量控制;微型射流;

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