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Piezoelectrically actuated insect scale flapping wing

机译:压电致动昆虫鳞片拍翼

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An energy method is used in order to derive the non-linear equations of motion of a smart flapping wing. Flapping wing is actuated from the root by a PZT unimorph in the piezofan configuration. Dynamic characteristics of the wing, having the same size as dragonfly Aeshna Multicolor, are analyzed using numerical simulations. It is shown that flapping angle variations of the smart flapping wing are similar to the actual dragonfly wing for a specific feasible voltage. An unsteady aerodynamic model based on modified strip theory is used to obtain the aerodynamic forces. It is found that the smart wing generates sufficient lift to support its own weight and carry a small payload. It is therefore a potential candidate for flapping wing of micro air vehicles.
机译:使用能量方法以导出智能拍翼的运动的非线性方程。通过压电通配置中的PZT单身振荡翼翼致动。使用数值模拟分析具有与蜻蜓Aeshna多色的尺寸相同的机翼的动态特性。结果表明,智能拍打翼的张开角度变化类似于实际的蜻蜓机翼,用于特定可行电压。基于改性条带理论的不稳定空气动力学模型用于获得空气动力。结果发现,智能机翼产生足够的提升以支撑其自身的重量并携带小的有效载荷。因此,它是微型空气车辆的扑翼翼的潜在候选者。

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