Plain-language definitions for every proprietary system, material, and metric referenced in AEGIS-SKIN Mk.I documentation — written for investors, not engineers.
The flagship five-layer adaptive composite survivability underlayer developed by Aegis Materials Corporation.
The mass of a material per unit area (kg/m²), the primary metric for comparing protective textiles.
Cylindrical carbon allotropes with extraordinary tensile strength (~63 GPa) and electrical conductivity at near-zero weight.
Physical vapour deposition (PVD) titanium nitride (TiN) coating, 0.05 mm, providing chemical and environmental resistance.
Carbon nanotube lattice, 1.2 mm thick, that redistributes residual kinetic energy laterally across the material plane.
The percentage of incident kinetic energy converted to non-harmful forms (heat, deformation) rather than transmitted to the wearer.
The energy per unit volume a material can absorb before fracturing — the key property distinguishing protective materials from merely strong ones.
Ti-6Al-4V alloy framework, 2.1 mm thick, providing structural rigidity and edge-weapon cut resistance.
The ability of a single garment to simultaneously mitigate two or more distinct threat categories in a single wear event.
Outermost protective layer composed of an Al₂O₃ + SiC nanoparticle matrix, 0.8 mm thick.
A high-performance semi-crystalline thermoplastic with outstanding mechanical, thermal, and chemical resistance properties.
PEEK-reinforced elastomer core, 3.5 mm thick, that absorbs and dissipates residual impact energy as heat.
A vacuum coating process that deposits ultra-thin films of material at the atomic level onto a substrate surface.