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Development of In-Series Piezoelectric Bimorph Bending Beam Actuators for Active Flow Control Applications

机译:用于有源流控制应用的串联压电双压电晶片弯曲梁致动器的开发

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Piezoelectric materials have long been used for active flow control purposes in aerospace applications to increase the effectiveness of aerodynamic surfaces on aircraft, wind turbines, and more. Piezoelectric actuators are an appropriate choice due to their low mass, small dimensions, simplistic design, and frequency response. This investigation involves the development of piezoceramic-based actuators with two bimorphs placed in series. Here, the main desired characteristic was the achievable displacement amplitude at specific driving voltages and frequencies. A parametric study was performed, in which actuators with varying dimensions were fabricated and tested. These devices were actuated with a sinusoidal waveform, resulting in an oscillating platform on which to mount active flow control devices, such as dynamic vortex generators. The main quantification method consisted of driving these devices with different voltages and frequencies to determine their free displacement, blocking force, and frequency response. It was found that resonance frequency increased with shorter and thicker actuators, while free displacement increased with longer and thinner actuators. Integration of the devices into active flow control test modules is noted. In addition to physical testing, a quasi-static analytical model was developed and compared with experimental data, which showed close correlation for both free displacement and blocking force.
机译:压电材料长期以来一直用于航空航天应用中的主动流量控制目的,以提高飞机,风力涡轮机等飞机上空气动力学表面的效率。压电执行器因其质量轻,尺寸小,设计简单和频率响应而成为合适的选择。这项研究涉及具有两个双压电晶片串联放置的基于压电陶瓷的致动器的开发。在此,主要的期望特性是在特定的驱动电压和频率下可获得的位移幅度。进行了参数研究,其中制造并测试了尺寸不同的执行器。这些设备以正弦波形进行驱动,从而形成一个振荡平台,在该平台上安装有源流量控制设备(例如动态涡流发生器)。主要的量化方法包括以不同的电压和频率驱动这些设备,以确定它们的自由位移,阻塞力和频率响应。已经发现,随着执行器的变短和变厚,共振频率增加,而随着执行器的变长和变薄,自由位移增加。注意将设备集成到活动的流量控制测试模块中。除了物理测试之外,还开发了一个准静态分析模型并将其与实验数据进行比较,该模型显示出自由位移和阻挡力都密切相关。

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