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用于生物医学应用的基于聚合物的微机电系统电磁致动器:综述

Polymer-Based MEMS Electromagnetic Actuator for Biomedical Application: A Review.

作者信息

Yunas Jumril, Mulyanti Budi, Hamidah Ida, Mohd Said Muzalifah, Pawinanto Roer Eka, Wan Ali Wan Amar Fikri, Subandi Ayub, Hamzah Azrul Azlan, Latif Rhonira, Yeop Majlis Burhanuddin

机构信息

Institute of Microengineering and Nanoelectronics, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

Faculty of Engineering and Vocational Education, Universitas Pendidikan Indonesia, Jl. Dr. Setiabudhi 207, Bandung 40154, Indonesia.

出版信息

Polymers (Basel). 2020 May 22;12(5):1184. doi: 10.3390/polym12051184.

Abstract

In this study, we present a comprehensive review of polymer-based microelectromechanical systems (MEMS) electromagnetic (EM) actuators and their implementation in the biomedical engineering field. The purpose of this review is to provide a comprehensive summary on the latest development of electromagnetically driven microactuators for biomedical application that is focused on the movable structure development made of polymers. The discussion does not only focus on the polymeric material part itself, but also covers the basic mechanism of the mechanical actuation, the state of the art of the membrane development and its application. In this review, a clear description about the scheme used to drive the micro-actuators, the concept of mechanical deformation of the movable magnetic membrane and its interaction with actuator system are described in detail. Some comparisons are made to scrutinize the advantages and disadvantages of electromagnetic MEMS actuator performance. The previous studies and explanations on the technology used to fabricate the polymer-based membrane component of the electromagnetically driven microactuators system are presented. The study on the materials and the synthesis method implemented during the fabrication process for the development of the actuators are also briefly described in this review. Furthermore, potential applications of polymer-based MEMS EM actuators in the biomedical field are also described. It is concluded that much progress has been made in the material development of the actuator. The technology trend has moved from the use of bulk magnetic material to using magnetic polymer composites. The future benefits of these compact flexible material employments will offer a wide range of potential implementation of polymer composites in wearable and portable biomedical device applications.

摘要

在本研究中,我们对基于聚合物的微机电系统(MEMS)电磁(EM)致动器及其在生物医学工程领域的应用进行了全面综述。本综述的目的是全面总结用于生物医学应用的电磁驱动微致动器的最新进展,重点关注由聚合物制成的可移动结构的发展。讨论不仅聚焦于聚合物材料本身,还涵盖了机械驱动的基本机制、膜的发展现状及其应用。在本综述中,详细描述了用于驱动微致动器的方案、可移动磁膜的机械变形概念及其与致动器系统的相互作用。进行了一些比较以审视电磁MEMS致动器性能的优缺点。介绍了以往关于用于制造电磁驱动微致动器系统的聚合物基膜组件的技术研究和解释。本综述还简要描述了在致动器开发的制造过程中所采用的材料和合成方法的研究。此外,还描述了基于聚合物的MEMS EM致动器在生物医学领域的潜在应用。得出的结论是,致动器的材料开发已取得很大进展。技术趋势已从使用块状磁性材料转向使用磁性聚合物复合材料。这些紧凑灵活材料的应用未来将为聚合物复合材料在可穿戴和便携式生物医学设备应用中的广泛潜在应用提供支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8980/7284590/79ba42dcb46d/polymers-12-01184-g001.jpg

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