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Regolith stabilization and building materials for the lunar surface

机译:稳定稳定和月球表面的建筑材料

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During lunar exploration, regolith is both the major available resource and a substantial obstacle in establishing a long term presence. The fine surface dust is highly abrasive and can both be a health hazard for the crew and the main contributor to equipment failure. On the other hand, regolith is the only material readily available to build protective shelters, stabilize slopes, form roads or engineer landing pads. To achieve this, methods had to be developed to convert regolith into a stable building material with minimal need for terrestrial supplies The approach described in this paper uses urethane resins to produce concrete-like materials on the lunar surface from minimal earth-supplied materials. The binder had to be capable of wetting regolith material both for optimal consolidation into bricks and to allow spray application for road formation. At the same time the resin had to have a very low vapor pressure to avoid contamination of the environment via outgassing. The program optimized a urethane formulation capable of penetrating and binding dense lunar surface particles under conditions consistent with the lunar surface. The urethane was capable of agglomerating lunar surface material into densely packed blocks capable of acting as a building material at a 20:1 regolith to binder ratio. The blocks were sufficiently strong to act as structural members of a habitat designed to shield inhabitants from dangerous solar radiation events. The blocks were tested for mechanical stress to ensure that their strength would not preclude their use in wall and habitat construction. Compression strength values of over 1000 psi were achieved. A prototype brickmaker to fabricate building blocks without exposure of personnel or moving parts to the mixed resin was designed and built, along with an automated spray system for surface stabilization.
机译:在农历勘探期间,概述是在建立长期存在时的主要可用资源和大幅障碍。精细的表面粉尘是高度磨蚀性的,并且既可以为机组人员身份危害,以及设备故障的主要贡献者。另一方面,概述是唯一可用于构建保护避难所的材料,稳定斜坡,形成道路或工程垫垫。为实现这一目标,必须开发方法以将稳定的建筑材料转换成稳定的建筑材料,需要最小的地面供应本文中描述的方法使用聚氨酯树脂,从最小的地面供应材料中产生混凝土状材料。粘合剂必须能够润湿石油石材,以便最佳地固结成砖块,并允许喷涂用于道路形成。同时树脂必须具有非常低的蒸气压,以避免通过排出污染环境。该程序优化了能够在与月球表面一致的条件下穿透和结合致密月状颗粒的氨基甲酸酯配方。氨基甲酸酯能够将月球表面材料凝聚到密集的封装块中,该嵌段能够用作20:1标记的建筑材料以粘合剂比例。该块足够强大,以充当栖息地的结构成员,旨在屏蔽危险的太阳辐射事件的居民。测试块用于机械应力,以确保它们的强度不会排除在墙壁和栖息地建筑中的使用。实现了超过1000psi的压缩强度值。设计并建造了一种原型炸砖制造商,用于制造没有曝光的人员或移动部件到混合树脂的移动部件,以及用于表面稳定的自动喷涂系统。

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