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Concrete on Mars: Options, challenges, and solutions for binder-based construction on the Red Planet

机译:MARS上的具体:红色星球上基于粘合剂建筑的选择,挑战和解决方案

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摘要

As humans prepare to colonize Mars, there will be a need for locally-sourced concrete to build durable, habitable structures. However, conventional terrestrial formulations would not be well suited to the unique resources and conditions prevalent on the Martian surface and near-surface. Plaster of Paris or water (which would bind by freezing) would be the most appropriate binders. Water for concrete would be produced from ice or by condensation out of the atmosphere, and local aggregates could be used in a similar manner to those on Earth. Unique mixing, casting, compaction, and curing methods will be required for the low-temperature, low-gravity, low-pressure conditions. Concrete elements could effectively support gravitational, wind, seismic, and micrometeoric loads. Concrete structures would preferably be buried under a 7-10 m layer of Martian regolith in order to counter-balance aerostatic loads and to protect against the hazards of cosmic and solar radiation, wide temperature swings, and deliquescent salts.
机译:随着人类准备殖民火星,将需要局部采购的混凝土来构建耐用,可居住的结构。然而,传统的陆地配方不会很好地适用于火星表面和近表面上普遍的独特资源和条件。巴黎或水的膏药(通过冷冻束缚)将是最合适的粘合剂。混凝土的水将由冰或通过大气中的冷凝制造,局部聚集体可以以与地球上类似的方式使用。低温,低重力,低压条件将需要独特的混合,铸造,压实和固化方法。混凝土元件可以有效地支持引力,风,地震和微荷载。混凝土结构优选地埋在7-10米的火星巨石上,以便对抗航空载荷并防止宇宙和太阳辐射,宽温度波动和潮解盐的危险。

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