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首页> 外文期刊>Journal of Vibration and Acoustics >On Design and Analysis of Electrostatic Arch Micro-Tweezers
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On Design and Analysis of Electrostatic Arch Micro-Tweezers

机译:静电拱微型镊子的设计与分析

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This article provides criteria for the design of electrostatic arch micro-tweezers. The tweezers can be operated in two modes: a traditional quasi-static mode where a direct current voltage commands the tweezers arms along a trajectory to manipulate objects and dynamic mode where a harmonic signal commands release or characterization of objects. While the arms are rigid and move in tandem in the static mode, this is not guaranteed in the dynamic mode. To satisfy this, we carried out modal analysis of the tweezers using a finite element model (FEM) and a reduced-order model (ROM). The results show that the arms kinetic and potential energies divide the beam span into a middle sub-span between the arms and two outer sub-spans and result in significant changes in the relative compliance of the sub-spans. The changes in the platform compliance place limitation on the tweezers dynamic operation, such that only the first symmetrical mode shape of the tweezers satisfies the design criteria. We also investigate the adequacy of an ROM using straight unbuckled beam mode shapes as basis functions to represent the tweezers response by comparing its results with those of FEM. A five-mode ROM is found adequate to represent small motions in the vicinity of the tweezers initial curvature. It is inadequate for larger motions involving snap-though motions between the initial and counter curvatures. To capture larger motions, ROM should be improved by incorporating higher order straight beam modes or using the actual tweezers modes.
机译:本文为静电拱微镊子设计提供了标准。镊子可以以两种模式操作:传统的准静态模式,其中直流电压沿轨迹命令镊子臂以操纵对象和动态模式,其中谐波信号命令释放或表征对象。虽然手臂在静态模式下刚性并在串联移动时,但在动态模式下不保证这一点。为了满足这一点,我们使用有限元模型(FEM)和减少阶模型(ROM)对镊子进行了模态分析。结果表明,臂动力学和潜在能量将光束跨度除以臂和两个外部跨跨度之间的中间跨度,并导致子跨越相对符合性的显着变化。平台合规性的变化对镊子动态操作的限制,使得只有镊子的第一个对称模式形状满足设计标准。我们还使用直的羽绒光束模式来研究ROM的充分性,作为基础函数,通过将其与FEM的结果进行比较来表示镊子响应。发现一个五型ROM足以表示镊子初始曲率附近的小运动。对于涉及初始和柜台曲率之间的卡扣的动作的较大运动是不充分的。为了捕获更大的动作,应通过加入更高阶的直梁模式或使用实际的镊子模式来改善ROM。

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