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Fabrication and testing of habitat components using In-situ materials for Martian exploration

机译:使用原位材料进行Martian探索的栖息地组件的制造和测试

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The development of Mars for human activity will require the utilization of Martian materials in building habitats and working structures. One approach is to use polymer binders with regolith to form structural elements. Not only can useful composite materials be produced in this way but the radiation protection properties are also increased. This is important since only modest protection from space radiation is provided by the Martian atmosphere. We have studied composites fabricated using Martian regolith simulant and polymers which can be synthesized from local Martian materials for their potential use as radiation shields for manned Mars missions. To validate shielding effectiveness, composites are irradiated with a 55 MeV proton beam and neutron beams up to 800 MeV. Shielding effects on microelectronic devices are measured by placing them behind samples of the composites during irradiation. To measure structural properties of the composites, preliminary characterization and mechanical testing are made for the composites.
机译:人类活动的发布需要利用Martian材料在建筑栖息地和工作结构中。一种方法是使用具有uTOOLITH的聚合物粘合剂形成结构元件。不仅可以通过这种方式生产有用的复合材料,但辐射保护性能也增加。这是重要的,因为火星氛围仅提供空间辐射的适度保护。我们研究了使用Martian RegoLith模拟器和聚合物制造的复合材料,该聚合物可以从本地火星材料合成,以潜在用作载人火星任务的辐射屏蔽。为了验证屏蔽有效性,用55mev质子束和最高可达800 mev的中子束照射复合材料。通过将复合材料的样品放置在照射期间来测量对微电子器件的屏蔽效果。为了测量复合材料的结构性能,对复合材料进行初步表征和机械测试。

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