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On The Development of Additive Construction Technologies for Application to Development of Lunar/Martian Surface Structures Using In-Situ Materials

机译:基于原位材料开发应用于农历/火星表面结构的应用施工技术

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摘要

For long-duration missions on other planetary bodies, the use of in situ materials will become increasingly critical. As human presence on these bodies expands, so must the breadth of the structures required to accommodate them including habitats, laboratories, berms, radiation shielding for natural radiation and surface reactors, garages, solar storm shelters, greenhouses, etc. Planetary surface structure manufacturing and assembly technologies that incorporate in situ resources provide options for autonomous, affordable, pre-positioned environments with radiation shielding features and protection from micrometeorites, exhaust plume debris, and other hazards. The ability to use in-situ materials to construct these structures will provide a benefit in the reduction of up-mass that would otherwise make long-term Moon or Mars structures cost prohibitive. The ability to fabricate structures in situ brings with it the ability to repair these structures, which allows for the self-sufficiency and sustainability necessary for long-duration habitation. Previously, under the auspices of the MSFC In-Situ Fabrication and Repair (ISFR) project and more recently, under the jointly-managed MSFC/KSC Additive Construction with Mobile Emplacement (ACME) project, the MSFC Surface Structures Group has been developing materials and construction technologies to support future planetary habitats with in-situ resources. One such additive construction technology is known as Contour Crafting. This paper presents the results to date of these efforts, including development of novel nozzle concepts for advanced layer deposition using this process. Conceived initially for rapid development of cementitious structures on Earth, it also lends itself exceptionally well to the automated fabrication of planetary surface structures using minimally processed regolith as aggregate, and binders developed from in situ materials as well. This process has been used successfully in the fabrication of construction elements using lunar regolith simulant and Mars regolith simulant, both with various binder materials. Future planned activities will be discussed as well.
机译:对于其他行星机构的长期任务,原位材料的使用将变得越来越重要。随着人类在这些身体上的存在扩展,所以必须容纳它们所需的结构,包括栖息地,实验室,巴塞尔斯,自然辐射和表面反应器,车库,太阳风暴避难所,温室等行星表面结构制造和包含原位资源的组装技术为自主,实惠,预先定位环境提供了辐射屏蔽特征和免受微晶体,排气羽毛碎片和其他危害的选项。使用原位材料构建这些结构的能力将在减少容易质量的情况下提供益处,否则将使长期月亮或火星结构成本令人望而却步。制造原位结构的能力带来了修复这些结构的能力,这允许长期居住的自给自足和可持续性。此前,根据MSFC的主持和修复(ISFR)项目,最近,在具有移动施加(ACME)项目的联合管理的MSFC / KSC添加剂结构下,MSFC表面结构组一直在开发材料和建筑技术支持未来的行星栖息地具有原位资源。一种这样的添加剂施工技术被称为轮廓制备。本文介绍了这些努力的结果,包括使用此过程的高级层沉积的新型喷嘴概念的开发。最初构思的是,为了快速发展地球上的水泥结构,它还非常适合使用使用微量加工的石油作为骨料的行星表面结构的自动制造,以及由原位材料产生的粘合剂。该过程已成功使用了使用农历概略模拟剂和火星易氧性模拟器的构造元件的制造中,包括各种粘合剂材料。将来会讨论未来的计划活动。

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