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3D打印微机电系统技术——最新进展与应用

3D Printed MEMS Technology-Recent Developments and Applications.

作者信息

Blachowicz Tomasz, Ehrmann Andrea

机构信息

Institute of Physics-Center for Science and Education, Silesian University of Technology, 44-100 Gliwice, Poland.

Faculty of Engineering Sciences and Mathematics, Bielefeld University of Applied Sciences, 33619 Bielefeld, Germany.

出版信息

Micromachines (Basel). 2020 Apr 20;11(4):434. doi: 10.3390/mi11040434.

Abstract

Microelectromechanical systems (MEMS) are of high interest for recent electronic applications. Their applications range from medicine to measurement technology, from microfluidics to the Internet of Things (IoT). In many cases, MEMS elements serve as sensors or actuators, e.g., in recent mobile phones, but also in future autonomously driving cars. Most MEMS elements are based on silicon, which is not deformed plastically under a load, as opposed to metals. While highly sophisticated solutions were already found for diverse MEMS sensors, actuators, and other elements, MEMS fabrication is less standardized than pure microelectronics, which sometimes blocks new ideas. One of the possibilities to overcome this problem may be the 3D printing approach. While most 3D printing technologies do not offer sufficient resolution for MEMS production, and many of the common 3D printing materials cannot be used for this application, there are still niches in which the 3D printing of MEMS enables producing new structures and thus creating elements for new applications, or the faster and less expensive production of common systems. Here, we give an overview of the most recent developments and applications in 3D printing of MEMS.

摘要

微机电系统(MEMS)在近期的电子应用中备受关注。其应用范围涵盖从医学到测量技术,从微流体到物联网(IoT)。在许多情况下,MEMS元件用作传感器或致动器,例如在近期的手机中,也在未来的自动驾驶汽车中。与金属不同,大多数MEMS元件基于硅,硅在负载下不会发生塑性变形。虽然已经为各种MEMS传感器、致动器和其他元件找到了高度复杂的解决方案,但MEMS制造的标准化程度低于纯微电子,这有时会阻碍新想法的实现。克服这一问题的可能性之一可能是3D打印方法。虽然大多数3D打印技术无法为MEMS生产提供足够的分辨率,而且许多常见的3D打印材料不能用于此应用,但仍有一些细分领域,其中MEMS的3D打印能够制造新结构,从而为新应用创建元件,或者实现常见系统的更快、更廉价生产。在此,我们概述了MEMS 3D打印的最新发展和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c33e/7231376/dab253871f5f/micromachines-11-00434-g001.jpg

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