Additive Manufacturing Under Lunar Gravity and Microgravity
Аддитивное производство в условиях лунной гравитации и микрогравитации
2021-03-24
SCID: 54.1/8fc7jhhz
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additive manufacturinglunar gravitymicrogravityregolith simulantselective laser melting
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Abstract (AI)
Abstract Mankind is setting to colonize space, for which the manufacturing of habitats, tools, spare parts and other infrastructure is required. Commercial manufacturing processes are already well engineered under standard conditions on Earth, which means under Earth’s gravity and atmosphere. Based on the literature review, additive manufacturing under lunar and other space gravitational conditions have only been researched to a very limited extent. Especially, additive manufacturing offers many advantages, as it can produce complex structures while saving resources. The materials used do not have to be taken along on the mission, they can even be mined and processed on-site. The Einstein-Elevator offers a unique test environment for experiments under different gravitational conditions. Laser experiments on selectively melting regolith simulant are successfully conducted under lunar gravity and microgravity. The created samples are characterized in terms of their geometry, mass and porosity. These experiments are the first additive manufacturing tests under lunar gravity worldwide.
Key Findings
1
Additive manufacturing could enable resource-efficient production of complex habitats, tools, spare parts, and infrastructure in space.
2
Additive manufacturing under lunar and other space gravitational conditions has been investigated only to a very limited extent.
3
Laser-based selective melting experiments successfully produced regolith-simulant samples under lunar gravity and microgravity; samples were characterized by geometry, mass, and porosity.
4
Materials for space-based additive manufacturing could potentially be mined and processed on-site rather than transported from Earth.
5
The Einstein-Elevator provides an experimental environment for testing additive manufacturing under lunar gravity and microgravity.
6
These experiments are reported as the first additive manufacturing tests under lunar gravity worldwide.
Research Object
Additive manufacturing of regolith simulant under lunar gravity and microgravity
Research Subject
Selective laser melting behavior and the resulting sample geometry, mass, and porosity under lunar gravity and microgravity
Publication Details
Publication Date
2021-03-24
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