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May 15, 2026Applied Sciences0 citationsOpen Access

Development of Lattice-Based Panels via Direct Metal Laser Sintering (DMLS) for Satellite Applications

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EAEmmanuel ArriolaJCJozal CarridoMSMark Francis Sedano

Key Points

  • This study aimed to develop lightweight, high-strength lattice-based panels for CubeSat satellites using Direct Metal Laser Sintering.
  • Evaluated three lattice configurations: Body-Centered Cubic, Octet, and Gyroid.
  • Conducted mechanical testing and Finite Element Analysis to verify structural integrity and performance.
  • Designed the final optimized panel based on manufacturability and weight reduction.
  • Gyroid lattices demonstrated the highest compressive strength at 13,825.8 N.
  • The selected BCC lattice design reduced weight by 11.4% compared to the rib-type design and 65.2% compared to a solid panel.
  • Finalized panel met all mechanical requirements for aerospace launch conditions.

Abstract

This study explored the development of lattice-based panels for satellite applications using Direct Metal Laser Sintering and aimed to optimize lightweight, high-strength structures suitable for CubeSat deployment. Three lattice configurations, namely Body-Centered Cubic, Octet, and Gyroid, were evaluated. While Gyroid lattices exhibited the highest compressive strength at 13,825.8 N, the BCC lattice was selected for the final design due to superior manufacturability and weight reduction potential. The final optimized panel weighed 185.7 g, achieving an 11.4% reduction from the initial rib-type design and a 65.2% reduction from a solid panel. Finite Element Analysis and mechanical testing confirmed that the fabricated structures met the necessary mechanical requirements for aerospace launch conditions.

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Cite This Study

Arriola et al. (2026) studied this question.

synapsesocial.com/papers/6a06b928e7dec685947abbd6https://doi.org/10.3390/app16104727
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