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Lunar In Situ Materials-Based Habitat Technology Development Efforts at NASA/MSFC

机译:NASA / MSFC的基于原位材料的居署技术开发努力

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For long duration missions on other planetary bodies, the use of in situ materials will become increasingly critical. As man's presence on these bodies expands, so must the structures to accommodate them including habitats, laboratories, berms, garages, solar storm shelters, greenhouses, etc. The use of in situ materials will significantly offset required launch upmass and volume issues. Under the auspices of the In Situ Fabrication & Repair (ISFR) Program at NASA/Marshall Space Flight Center (MSFC), the Habitat Structures project has been developing materials and construction technologies to support development of these in situ structures. This paper will report on the development of several of these technologies at MSFC's Prototype Development Laboratory (PDL). These technologies include, but are not limited to, development of extruded concrete and inflatable concrete dome technologies based on waterless and water-based concretes, development of regolith-based blocks with potential radiation shielding binders including polyurethane and polyethylene, pressure regulation systems for inflatable structures, production of glass fibers and rebar derived from molten lunar regolith simulant, development of regolithbag structures, and others, including automation design issues. Results to date and planned efforts for FY06 will also be presented.
机译:对于其他行星机构的长期任务,使用原位材料将变得越来越重要。随着人们在这些身体上的存在扩展,结构必须容纳它们,包括栖息地,实验室,巴塞尔斯,车库,太阳风暴避难所,温室等。使用原位材料的使用将大大抵消所需的发射上限和体积问题。在美国宇航局/马歇尔空间飞行中心(MSFC)的原位制造和维修(ISFR)计划的主持下,栖息地结构项目一直在开发材料和施工技术,以支持这些原位结构的发展。本文将报告MSFC的原型开发实验室(PDL)的几种技术的发展。这些技术包括但不限于基于无水和水基混凝土的挤出混凝土和充气混凝土圆顶技术的开发,具有潜在的辐射屏蔽粘合剂,包括聚氨酯和聚乙烯,可充气结构的压力调节系统的潜在辐射屏蔽块,生产玻璃纤维和钢筋衍生自熔融的月球重新熔断器模拟,促销结构的开发和其他,包括自动化设计问题。结果迄今为止和计划的2016财年的努力也将出现。

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