Morkvenaite-Vilkonciene Inga, Bucinskas Vytautas, Subaciute-Zemaitiene Jurga, Sutinys Ernestas, Virzonis Darius, Dzedzickis Andrius
Department of Mechatronics, Robotics and Digital Manufacturing, Vilnius Gediminas Technical University, 10257 Vilnius, Lithuania.
Laboratory of Electrochemical Energy Conversion, State Research Institute Centre for Physical Sciences and Technology, Sauletekio 3, 10257 Vilnius, Lithuania.
Micromachines (Basel). 2022 Aug 4;13(8):1256. doi: 10.3390/mi13081256.
The implementation of electrostatic microactuators is one of the most popular technical solutions in the field of micropositioning due to their versatility and variety of possible operation modes and methods. Nevertheless, such uncertainty in existing possibilities creates the problem of choosing suitable methods. This paper provides an effort to classify electrostatic actuators and create a system in the variety of existing devices. Here is overviewed and classified a wide spectrum of electrostatic actuators developed in the last 5 years, including modeling of different designs, and their application in various devices. The paper provides examples of possible implementations, conclusions, and an extensive list of references.
静电微致动器的应用是微定位领域最受欢迎的技术解决方案之一,这得益于其多功能性以及多种可能的操作模式和方法。然而,现有可能性中的这种不确定性带来了选择合适方法的问题。本文致力于对静电致动器进行分类,并在各种现有设备中创建一个系统。这里概述并分类了过去五年中开发的广泛的静电致动器,包括不同设计的建模及其在各种设备中的应用。本文提供了可能的实现示例、结论以及大量参考文献。