Artemis Suit Material Optical Property Testing of Dust Exposed FabricsThis paper highlights one aspect of NASA’s ongoing technology-infusion effort to design, fabricate, and test a next-generation outer shell fabric for a lunar Extravehicular Activity (EVA) space suit, a critical component of sustained lunar exploration. Managing thermal loads on the Moon is essential for astronaut safety and suit performance. The suit’s exterior fabric directly influences heat gain and loss through its optical properties: low solar absorptivity minimizes sunlight absorption, while high infrared emissivity aids radiative cooling. Lunar regolith complicates this balance. Its fine, abrasive particles possess unique optical behavior that can lower reflectivity and raise emissivity when embedded in or adhered to fabric surfaces, degrading thermal control and increasing the risk of overheating or cooling inefficiency. To quantify these effects, the Artemis Suit Materials (ASM) team measured solar absorptance and infrared emissivity of clean and dust-soiled Ortho Fabric, establishing beginning-of-life (BOL) and end-of-life (EOL) benchmarks. EOL conditions were simulated with a rotary tumbler abrasion process using lunar dust simulant and ceramic media to reproduce cumulative wear expected during surface operations. Tests also included unmodified fabrics and a fabric/film laminate system containing titanium dioxide to evaluate potential improvements in dust resistance and optical performance. Results from these evaluations provide critical insight into how lunar dust alters fabric thermal behavior and inform the design of bespoke suit materials that maintain required optical properties throughout mission life, supporting safe and effective long-duration EVA on the lunar surface.
Document ID
20260002937
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Robert J Jones (Leidos (United States) Reston, United States)
Shane McFarland (Aegis Aerospace (United States) Houston, Texas, United States)
Stephanie Rodgers-Ahnen (Textile Made Howell, Michigan, United States)
Colton Peabody (Barrios Technology Houston, Texas, United States)
Felix Arwen (Nexus Solutions Arlington, Virginia, United States)
Date Acquired
April 10, 2026
Publication Date
July 12, 2026
Publication Information
Publisher: International Conference on Environmental Systems
Subject Category
Man/System Technology and Life Support
Report/Patent Number
ICES-2026-164
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES)