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用于航天应用的复合材料增材制造:综述

Composites Additive Manufacturing for Space Applications: A Review.

作者信息

Paek Sung Wook, Balasubramanian Sivagaminathan, Stupples David

机构信息

School of Science & Technology, City University London, Northampton Square, London EC1V 0HB, UK.

Samsung R&D Institute India, Karnataka 560037, India.

出版信息

Materials (Basel). 2022 Jul 5;15(13):4709. doi: 10.3390/ma15134709.

Abstract

The assembly of 3D printed composites has a wide range of applications for ground preparation of space systems, in-orbit manufacturing, or even in-situ resource utilisation on planetary surfaces. The recent developments in composites additive manufacturing (AM) technologies include indoor experimentation on the International Space Station, and technological demonstrations will follow using satellite platforms on the Low Earth Orbits (LEOs) in the next few years. This review paper surveys AM technologies for varied off-Earth purposes where components or tools made of composite materials become necessary: mechanical, electrical, electrochemical and medical applications. Recommendations are also made on how to utilize AM technologies developed for ground applications, both commercial-off-the-shelf (COTS) and laboratory-based, to reduce development costs and promote sustainability.

摘要

3D打印复合材料的组装在空间系统地面准备、在轨制造甚至行星表面原位资源利用等方面有着广泛的应用。复合材料增材制造(AM)技术的最新进展包括在国际空间站上进行的室内实验,未来几年还将在低地球轨道(LEO)上利用卫星平台进行技术演示。本文综述了用于各种地外目的的增材制造技术,在这些应用中,由复合材料制成的部件或工具变得必不可少,包括机械、电气、电化学和医疗应用。同时还就如何利用为地面应用开发的增材制造技术提出了建议,这些技术既有现成的商业产品(COTS),也有基于实验室的产品,以降低开发成本并促进可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f626/9267820/aba10a46131e/materials-15-04709-g001a.jpg

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