Moon Dust Meets Recycled Space-Grade Plastic in New Lunar 3D Printing Study
Concordia University researchers have shown that recycled space-grade PEKK thermoplastic blended with simulated lunar soil can be 3D printed into ...
Concordia University researchers have shown that recycled space-grade PEKK thermoplastic blended with simulated lunar soil can be 3D printed into ...
A new lifecycle cost analysis finds that lunar-derived oxygen could be worth roughly $286,000 per kilogram to early Moon Base ...
A new review maps how terrestrial grid engineering, failure modes, and autonomous control schemes could be adapted to build the ...
Researchers have developed a sealed flexible containment strategy that enables long-term storage and low-outgassing of frontally polymerizable composites for in-space ...
A new analysis of decades of meteorite and rover data finds that Mars likely hosts ore-grade deposits of copper, nickel, ...
Researchers have developed a living building material made from Martian rock, gelatin, and engineered yeast that can be 3D printed ...
A new review outlines how structural health monitoring sensors, tested from Alaskan pipelines to space rockets, could detect damage and ...
Researchers have outlined a dedicated lunar payload and mission scenario designed to generate the first in situ datasets on how ...
Researchers have shown that oxygen transfer through hollow fiber membranes remains statistically unchanged across Earth, Martian, Lunar and microgravity conditions, ...
Researchers have shown that additive manufacturing can turn lunar regolith into reconfigurable building blocks for future Moon habitats.
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© 2025 Scienmag - Science Magazine