H2020 opticon WP5 overview: investigating the use of additive manufacturing AM) for the design and build of multifunctional integrated astronomical components

H2020 opticon WP5 overview: investigating the use of additive manufacturing AM) for the design and build of multifunctional integrated astronomical components
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H2020 opticon WP5 概述:研究增材制造(AM)在多功能集成天文组件设计和构建中的使用

DOI:
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发表时间:
2020
期刊:
Astronomical Telescopes + Instrumentation
影响因子:
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通讯作者:
Joris Dufils
Joris Dufils
中科院分区:
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文献类型:
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作者:
H. Schnetler;Bart van de Vorst;Robert Snell;C. Atkins;Christopher Miller;K. Morris;Szigfrid Farkas;G. Mező;M. Roulet;E. Hugot;Afrodisio Vega Moreno;F. Tenegi;Joris Dufils

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增材制造(AM)方法和后处理技术是很有前途的方法,考虑到现在可以使用比20年前最初可用的工艺更精细的工艺在各种材料上进行打印。迄今为止,与其他应用领域相比,天文学中AM的吸收相对较低,航空就是这样一个例子。由于增材制造的快速发展以及天文学中缺乏增材制造的应用,因此有很多机会部署新的制造工艺。在本文中,我们概述了该项目并报告了我们的研究结果,利用增材制造和新材料制造适合在低温环境和空间应用中使用的多功能集成部件。
Additive manufacturing (AM) methods and post processing techniques are promising methodologies considering that it is now possible to print in a wide variety of materials using processes much refined from those originally available twenty years ago. To date the uptake of AM in Astronomy is relatively low compared to other application areas, aviation being one such example. Due to the rapid progress made in additive manufacturing and the lack of its adoption in Astronomy, there are many opportunity to deploy new fabrication processes. In this paper, we outline the project and report the results of our investigation to make use of additive manufacturing and novel materials in the fabrication of multi-functional integrated components fit for use in astronomy instrumentation, which can operate in cryogenic environments and space application.