Ultrafine-grained (UFG) aluminium alloys are strong candidates for space structures: their dense grain-boundary network acts as sinks that absorb radiation-induced defects (more in our perspective review https://doi.org/10.1021/acsmaterialsau.5c00139). But that advantage only survives if the microstructure does — and in Low-Earth Orbit, sunlit components reach ~200 °C, right where severely deformed aluminium begins to recrystallise. The … Continue reading One-grain-at-a-time: how in situ EBSD rewrote sink-strength theory for space aluminium
Tag: low-Earth orbit
Celebrating Sandra’s Successful Master’s Thesis Defense
On October 1, 2024, Sandra Gonzaga, our Master Student, reached an impressive milestone in her academic journey, successfully defending her Master's thesis with the highest grade of “Sehr gut” (1). Her remarkable research has broken new ground in the study of aluminium alloys within the Al–Mg–Si system, designed specifically for space applications. Prof. Pogatscher, Sandra, … Continue reading Celebrating Sandra’s Successful Master’s Thesis Defense


