See how MXene coating layers conduct charges across spacesuit fabric to neutralize regolith-ind
See how serial adsorbent bed filtration removes amphipathic organics from feed water to prevent
See how inflatable seals, lap bars, and garment chambers solve microgravity waste management fa
See how an adsorbent bed filter removes organic compounds from feed water to prevent adherent m
A water-absorbing evaporator cools spaceborne coolant with low-purity feedwater, avoiding porous plate clogging and complex purification.
Shear thickening fluid intercalated textiles boost composite impact resistance and damage tolerance without adding impractical suit weight.
Real-time electronic cleanliness measurements guide automated spacesuit cleaning protocols to remove debris more consistently than visual inspection.
Hybrid A/X race geometry and a magnetic ferrofluid seal cut friction, wear, and leakage in space suit joints under radial and axial loads.
Pressure-responsive hollow fibers let space fabric expand in vacuum, replacing heavy bladders and deployment mechanisms with a simpler structure.
AC-driven conductive fibers embedded in fabric repel and remove dust, addressing flexible spacesuit contours and lunar EVA contamination.
AC-driven piezoelectric transducers vibrate space suit surfaces to expel regolith dust without slow manual cleaning.
Controlled AC vibration from piezoelectric transducers dislodges regolith dust while limiting cleaning time and power use.