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Electrostatically driven synthetic microjet arrays as a propulsion method for micro flight

机译:静电驱动的合成微喷射阵列作为微飞行的推进方法

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摘要

A propulsion system based on acoustic streaming generated by Helmholtz resonators is presented. High frequency (>60 kHz) electrostatically driven micromachined Helmholtz resonators constitute the basic unit of the system. Microjets produced at the exit of these resonators can be combined to form a distributed propulsion system. A high yield (>85%) fabrication process is introduced for fabrication of individual as well as arrays of resonators. The fabrication results for ten different designs are presented. About 1000 resonators of similar design cover the surface of a 4-in. wafer, effectively converting it to a distributed propulsion system. A number of characterization methods such as monitoring the harmonics of the drive current, laser interferometry, hot-wire anemometry, acoustic spectrum measurement and video particle imaging are used to determine the structural and fluidic behavior of different resonator designs. Collapse and recovery times of the diaphragm in the electrostatic actuator of the resonator are characterized and reduced to less than 10 μs by optimizing the perforation design. The occurrence of acoustic streaming in the micron-scale is verified via video particle imaging. The jet streams produced with pulse drive at low frequencies (~1 kHz) are spatially profiled and jet velocities exceeding 1 m/s are measured at the exit of the resonators. It has been verified that the resonance frequencies of the device at 50 and 175 kHz can be closely predicted by modeling.
机译:基于由亥姆霍兹共振器产生声流的推进系统被呈现。高频(> 60千赫)静电驱动微加工亥姆霍兹共振器构成的系统的基本单元。在这些谐振器的出口处产生微射流可以被组合以形成分布式推进系统。高的产率(> 85%)制造工艺引入的个人以及谐振器的阵列制造。十不同的设计制造结果。约1000的谐振器类似的设计的覆盖4英寸的表面上。晶片,从而有效地将其转换为一个分布式推进系统。一些表征方法诸如监视驱动电流,激光干涉,热线测速仪,声光谱测量和视频颗粒成像的谐波被用于确定不同的谐振器的设计的结构和流体行为。在谐振器的静电致动器隔膜的塌陷和恢复时间的特征和通过优化设计穿孔减小到小于10微秒。在微米级声流的发生被经由视频粒子成像验证。射流与在低频率(约1千赫兹)在空间轮廓和喷射速度超过1米脉冲驱动产生的流/ s的在谐振器的出口处测量的。已经证实,在50和175千赫设备的共振频率可以通过模拟来预测紧密。

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