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一种高力密度鱼骨形静电梳齿驱动微致动器的建模

Modeling of a high force density fishbone shaped electrostatic comb drive microactuator.

作者信息

Megat Hasnan Megat Muhammad Ikhsan, Mohd Sabri Mohd Faizul, Mohd Said Suhana, Nik Ghazali Nik Nazri

机构信息

Department of Electrical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia.

Department of Mechanical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia.

出版信息

ScientificWorldJournal. 2014;2014:912683. doi: 10.1155/2014/912683. Epub 2014 Jul 21.

Abstract

This paper presents the design and evaluation of a high force density fishbone shaped electrostatic comb drive actuator. This comb drive actuator has a branched structure similar to a fishbone, which is intended to increase the capacitance of the electrodes and hence increase the electrostatic actuation force. Two-dimensional finite element analysis was used to simulate the motion of the fishbone shaped electrostatic comb drive actuator and compared against the performance of a straight sided electrostatic comb drive actuator. Performances of both designs are evaluated by comparison of displacement and electrostatic force. For both cases, the active area and the minimum gap distance between the two electrodes were constant. An active area of 800 × 300 μm, which contained 16 fingers of fishbone shaped actuators and 40 fingers of straight sided actuators, respectively, was used. Through simulation, improvement of drive force of the fishbone shaped electrostatic comb driver is approximately 485% higher than conventional electrostatic comb driver. These results indicate that the fishbone actuator design provides good potential for applications as high force density electrostatic microactuator in MEMS systems.

摘要

本文介绍了一种高力密度鱼骨形静电梳齿驱动致动器的设计与评估。这种梳齿驱动致动器具有类似于鱼骨的分支结构,旨在增加电极的电容,从而增加静电力。采用二维有限元分析来模拟鱼骨形静电梳齿驱动致动器的运动,并与直边静电梳齿驱动致动器的性能进行比较。通过比较位移和静电力来评估两种设计的性能。对于这两种情况,有效面积和两个电极之间的最小间隙距离是恒定的。使用了一个800×300μm的有效面积,其中分别包含16个鱼骨形致动器的指状结构和40个直边致动器的指状结构(手指)。通过模拟,鱼骨形静电梳齿驱动器的驱动力提高比传统静电梳齿驱动器高出约485%。这些结果表明,鱼骨形致动器设计作为MEMS系统中高力密度静电微致动器具有良好的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa58/4140127/3a1d5140428c/TSWJ2014-912683.001.jpg

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