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基于SLM的模拟月壤原位成形技术

Translated title of the contribution: In-situ forming of lunar regolith simulant via selective laser melting
  • Wen Li*
  • , Kening Xu
  • , Yong Huang
  • , Wenying Hu
  • , Daokuan Wang
  • , Siqi Yao
  • *Corresponding author for this work
  • Aero Engine Academy of China
  • University of Science and Technology Beijing
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

Selective laser melting (SLM) technique in combination with the in-situ resource utilization (ISRU) concept can be an off-world manufacturing solution to the significant engineering challenge on the large-scale construction for extra-terrestrial bases. The feasibility of SLM process applied to the additive manufacturing of lunar in-situ resource was investigated by utilizing lunar regolith simulant. A laser source was utilized to melt the powder locally in a layer-wise manner. In order to successfully fuse the powder into parts with low laser power, high efficiency and high geometrical accuracy, the SLM process parameters were investigated and evaluated by laser volume energy density. The results show that the simulant can be successfully fused into parts with high geometrical accuracy using SLM process with low laser power due to its high absorbance and low mass loss. The fabricated part quality depends on the laser volume energy density: increase of laser volume energy density input results in better mechanical properties of parts; however, excessive laser volume energy density input leads to high distortion of parts. Poor powder fluidity of the raw simulant is observed due to its complex particulate shape and a wide range of particle size distribution. The powder fluidity of the simulant is improved by optimizing its particle size range, resulting in a denser and more uniform powder bed, which can avoid defects within fabricated parts.

Translated title of the contributionIn-situ forming of lunar regolith simulant via selective laser melting
Original languageChinese (Traditional)
Pages (from-to)1931-1937
Number of pages7
JournalBeijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics
Volume45
Issue number10
DOIs
StatePublished - 1 Oct 2019

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