Edge-accommodated connectors let ballistic shields carry removable accessories without drilling the panel, preserving protection and maneuverability.
Elastic connectors and a poly-aramid shield enable retractable ballistic coverage that absorbs projectile energy across varied mounting surfaces.
Air gaps between offset shield layers destabilize projectiles, enabling closer shot spacing with less weight and thickness.
A weighted non-slip base anchors chalk lines for one-person layout work, reducing slippage, labor strain, and framing errors.
A resilient roll-up shield pairs ballistic fabric with elastic recovery to enable compact carry, one-hand deployment, and handgun protection.
Nested wheeled ballistic panels form a protective barrier in seconds without winches, improving mobility and deployment in buildings.
A panel retention system and retractable bracket support a firearm on a portable ballistic shield without weakening the ballistic panel.
An underside-mounted aramid or UHMWPE shield converts classroom desks into quickly accessible barriers against ballistic threats.
This case uses a clamshell cavity and manual retention members to hold removable panels while preserving ballistic panel integrity.
This case combines flexible ballistic fabric, elastic recovery, and rib stability for a compact shield that deploys rapidly.
This case shows how modular shields and rotatable wheel axles preserve ballistic protection while improving movement over uneven terrain.
Segmenting graphene lattices into cyclic nodes and compliant bridges resolves brittleness while maintaining high in-plane stiffness.
Segmented armored plates pivot between locked and collapsed states to resolve the trade-off between ballistic protection and transport weight.
Gravity-driven deployment of hinged rectangular panels eliminates gaps and reduces wear time compared to form-fitting body armor systems.
Hinged panels fold the shield into a compact form, resolving the contradiction between bulky storage volume and rapid deployment speed.
A mobile protective wall uses an energy-absorbing deformation zone in its connecting module to dissipate impact energy.
Segmenting the heavy ballistic body from a wheeled base reduces manual weight, allowing large shields to slide laterally on rollerballs or roll forward.
Graphene and aerogel composite layers reduce shield weight while interlocking connectors enable rapid manual deployment of group protection barriers.
Articulated side panels pivot relative to a body assembly to expand protective surface area, resolving the trade-off between mobility and threat coverage.
A retractable shield extends to cover the gap between a ballistic barrier and the supporting surface.
Ball turret uses guide rods to absorb recoil shock while mounting a weapon system inside a protective shell.
Hinged panels pivot to shield military vehicle equipment from blast damage while maintaining mobility.
Segmented blank firing attachments with press-fit inserts eliminate vibration loosening during rapid configuration changes.