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Smart Missile Fins with Active Spoiler using a Piezoelectric Actuator

机译:主动式扰流板的智能导弹鳍,采用压电致动器

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摘要

In this work, smart missile fins with trailing-edge-mounted retractable wedge are investigated. The wedge stretches back or forth in the chordwise direction in a means to reduce the applied pitching moment acting on the missile fins. An actuator system, which is composed of a one-way clutch bearing, driving shaft with thread and sliding nut and a piezo-bimorph beam, has been built and tested to verify the concept of the actuator. This actuator is designed to translate the rotational motion of the shaft into the linear motion of the sliding nut to generate a desired stroke. When a voltage signal is applied at a given frequency to the piezo-element, it will bend up and down. This bending action induces an angular input to the shaft, which is then rectified with the clutch bearing to the rotational output of the shaft. Preliminary tests showed that the proposed actuator system can be very effective in generating large stroke output with relatively small voltage inputs: Nearly 19mm of actuator displacement was obtained under an input voltage of 75 V_(rms) at a frequency level of 700 Hz. A series of experimental tests as well as CFD calculations for missile aerodynamics have been performed to investigate the effectiveness of the actuator.
机译:在这项工作中,研究了带有安装在后缘的可伸缩楔形物的智能导弹鳍。楔形件在弦向方向上来回拉伸,以减小作用在导弹鳍上的俯仰力矩。已经构建并测试了由单向离合器轴承,带螺纹和滑动螺母的驱动轴以及压电双压电晶片梁组成的执行器系统,以验证执行器的概念。该致动器被设计成将轴的旋转运动转换成滑动螺母的线性运动以产生期望的行程。当以给定的频率向压电元件施加电压信号时,它将上下弯曲。这种弯曲作用将角度输入感应到轴上,然后通过离合器轴承将其校正到轴的旋转输出上。初步测试表明,所提出的执行器系统在以较小的电压输入产生较大的行程输出时会非常有效:在输入电压为75 V_(rms),频率为700 Hz的情况下,获得了接近19mm的执行器位移。已经进行了一系列的实验测试以及导弹空气动力学的CFD计算,以研究执行器的有效性。

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