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Application of Regolith Polymer Composite Fused Granular Fabrication Construction in Simulated Lunar Conditions

Nathan J. Gelino, Evan Bell, David I. Malott, Steven E. Pfund, Matt W. Nugent, Marco A. Gudino

发表年份
2024
引用次数
2

摘要

NASA’s Artemis program has the goal of creating a sustained lunar presence to provide unprecedented opportunities for scientific discovery and to ensure industry’s access to the unlimited resources and commercial potential in space. To achieve this goal, NASA must incrementally develop and expand its capabilities beyond the short lunar stays of the Apollo program to a robust continued presence with infrastructure and equipment to reduce mission risk. Kennedy Space Center’s Granular Mechanics and Regolith Operations laboratory (a.k.a. Swamp Works) has partnered with SpaceFactory and LERA Consulting Structural Engineers to develop the architectural and structural design of a robotically constructable unpressurized shelter. The shelter, called Lunar Infrastructure Asset (LINA), is designed to protect astronauts and surface assets from radiation, meteoroid impact, thermal gradients, and to withstand moonquakes. A fused granular fabrication (FGF) construction process using regolith polymer composites was developed. The construction system and associated print parameters are discussed along with the environmental simulation equipment and a summary of test conditions. Test samples were printed in dirty thermal vacuum conditions (∼10−3 torr, ∼−200°C), and subscale versions of LINA were printed on a regolith simulant substrate in vacuum (∼10−4 torr). Full scale LINA design optimization, simulation, and construction concept of operations are discussed.

关键词

RegolithFabricationComposite numberPolymerAstrobiologyMaterials scienceComposite materialAerospace engineeringEngineeringPhysics

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