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A novel piezo-actuated flapping mechanism based on inertia drive

机译:基于惯性驱动的新型压电致动机构

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摘要

In this article, a novel piezo-actuated flapping mechanism based on inertia drive is proposed and developed. In comparison with the existing flapping mechanisms, the proposed one has a more direct driving form simply via a frictional contact without using any transmission mechanism like crank-rocker or crank-slider, making it easier for miniaturization. In addition, it could principally allow for an arbitrary form of flapping motion with unlimited stroke. The flapping principle and the rationale for an arbitrary form of flapping motion with unlimited stroke are presented. A prototype of the proposed flapping mechanism was constructed and tested. The ability in various modulations of flapping motion, including flapping amplitude, position, asymmetry between downstroke and upstroke flapping speeds, and frequency, is demonstrated.
机译:在本文中,提出并开发了一种基于惯性驱动器的新型压电致动型拍打机制。与现有的扑振机构相比,所提出的一个简单地通过摩擦触点具有更直接的驱动形式,而不使用曲柄摇杆或曲柄滑块等任何传动机构,使小型化更容易。此外,它可以主要允许具有无限制中风的任意形式的拍打运动。展示了扑振原理和任意形式的拍打运动,具有无限制中风。构建和测试了所提出的拍打机构的原型。证明了各种拍打运动的调节的能力,包括拍打幅度,位置,下间拍摄速度和频率之间的不对称性和频率。

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