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Performance of lunar sulfur concrete in lunar environments

机译:月球环境下月球硫磺混凝土的性能

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This study explores an alternative to hydraulic concrete by replacing the binding mix of concrete (cement and water) with sulfur. Sulfur is a volatile element on the lunar surface that can be extracted from lunar soils by heating. Sulfur concrete mixes were prepared to investigate the effect of extreme environmental conditions such as impact and space radiation on the properties of sulfur concrete. A hypervelocity impact test was conducted, having as its target small sulfur concrete samples. The lunar concrete samples have been prepared using JSC-1 lunar simulant, produced by Johnson Space Center, as an aggregate addition. The sample was placed in the MSFC Impact Test Facility's Micro Light Gas Gun' target chamber, and was struck by a 1-mm diameter (~1.4e 03 g) aluminum projectile at 5.85 km/s. A detailed analysis of the damage caused by a catastrophic event could help design the size, shape, and placement of individual structures in the base to minimize detrimental effects. The effectiveness of sulfur concrete subjected to space radiation was analyzed using HZETRN mathematical code, provided by NASA. A concrete wall made of sulfur and JSC-1 simulant would need to be thicker than a wall made of plain JSC-1 simulant to provide the same amount of protection. Test results were presented, discussed and put into the context of the lunar environments.
机译:本研究通过用硫代替混凝土(水泥和水)的粘结混合物,探索了液压混凝土的替代方法。硫是月球表面的一种挥发性元素,可以通过加热从月球土壤中提取出来。制备了硫磺混凝土混合物,以研究极端环境条件(例如撞击和空间辐射)对硫磺混凝土性能的影响。进行了超高速冲击试验,以小硫磺混凝土样品为目标。月球混凝土样品是使用约翰逊航天中心生产的JSC-1月球模拟物作为总添加物制备的。样品被放置在MSFC冲击试验设施的Micro Light Gas Gun靶室中,并以5.85 km / s的速度被直径为1毫米(约1.4e 03 g)的铝弹击中。对灾难性事件造成的破坏的详细分析可以帮助设计底座中各个结构的大小,形状和位置,以最大程度地减少有害影响。使用美国国家航空航天局(NASA)提供的HZETRN数学代码分析了硫磺混凝土在空间辐射下的有效性。用硫和JSC-1模拟物制成的混凝土墙要比用普通JSC-1模拟物制成的墙要厚,以提供相同数量的保护。测试结果被提出,讨论并置于月球环境中。

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