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Towards Better Combustion of Lunar Regolith with Magnesium

机译:利用镁的月球推杆更好地燃烧

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It has been shown recently that lunar regolith forms combustible, thermite-type mixtures with magnesium. Combustion of these mixtures could be used for the production of construction materials on the Moon. The present paper focuses on decreasing magnesium content in mixtures based on JSC-1A lunar regolith simulant and increasing the density and strength of the combustion products of these mixtures. Combustion of JSC-1A/Mg mixture pellets was studied in argon gas and in silica powder. Preheating to 100°C decreased the minimum concentration of magnesium, required for combustion, from 10 wt% to 8 wt%. Submerging the pellets into silica increased the product strength. SHS compaction experiments were conducted, which involved quasi-isostatic pressing of the products immediately after the end of the combustion process. This resulted in a significant increase in the product density. The compressive strength exceeded 10 MPa, i.e., was higher than that of common bricks (5 MPa).
机译:最近已经表明,月球重新旋转性形成可燃,热型混合物与镁。这些混合物的燃烧可用于生产月球上的建筑材料。本文侧重于基于JSC-1A月状概述模拟剂的混合物中的混合物中的镁含量和增加这些混合物的燃烧产物的密度和强度。在氩气和二氧化硅粉末中研究了JSC-1A / Mg混合粒料的燃烧。预热至100℃降低燃烧所需的镁的最小浓度,从10wt%至8wt%。将颗粒浸没到二氧化硅增加产品强度。进行了Chcaction实验,这涉及在燃烧过程结束后立即对产品进行准方位静压。这导致产品密度显着增加。抗压强度超过10MPa,即高于常见砖(5MPa)的MPa。

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