利用自由飞行卫星进行大型结构的增材制造

Declan Jonckers, O. Tauscher, Aditya Thakur, L. Maywald
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引用次数: 2

摘要

太空制造(ISM)正在被研究作为一种生产更大、更便宜、更有能力的航天器和空间站的方法。增材制造(AM)由于其固有的灵活性和低浪费,是最有前途的制造技术之一。研究了自由飞行的小型航天器使用带有AM末端执行器的机械臂制造大型结构的可行性。这些大型结构将有助于建造大型空间站或宇宙飞船。利用布伦瑞克工业大学空间系统研究所的近距离操作和空间态势感知实验实验室(ELISSA),设计并测试了一个能够产生任意长度结构的过程。通过使用自由漂浮的移动机器人制造无限长度的支撑自由桁架元件,证明了这一过程。讨论了进一步扩展该过程以在三维空间中产生任何尺寸的结构的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Additive Manufacturing of Large Structures Using Free-Flying Satellites
In-Space Manufacturing (ISM) is being investigated as a method for producing larger, cheaper, and more capable spacecraft and space stations. One of the most promising manufacturing techniques is additive manufacturing (AM) due to its inherent flexibility and low waste. The feasibility of a free-flying small spacecraft to manufacture large structures using a robotic arm with an AM end effector has been examined. These large structures would aid the construction of a large space station or spacecraft. Using the Experimental Lab for Proximity Operations and Space Situational Awareness (ELISSA) at the Institute of Space Systems at TU Braunschweig, a process has been designed and tested which is capable of producing structures with arbitrary length. This process was demonstrated by manufacturing support free truss elements of unlimited length using a free-floating mobile robot. Avenues for further extending the process to produce structures of any size in 3D space are discussed.
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