An inflatable expansion member separates forward and aft modules to achieve optimal standoff distance while maintaining compact storage dimensions.
A projectile round uses an explosive layer to deploy shrapnel and chaff while destroying a piezoelectric core.
Segmented delay tubes prevent pressure gradient cross-contamination, ensuring reliable sequential ignition of flash charges.
Active chaff emits isotropic signals to divert radar attention, countering range-gating penetration of passive clouds.
A partitioned projectile uses a hard base and soft nose to rotate accurately in the barrel.
Rupturing cartridges inject coolants into gun barrels to eliminate cook off and extend barrel life.
A remote weapon station measures muzzle velocity to automatically adjust barrel elevation for subsequent volleys.
A projectile with electrodes pierces mine casings to deliver electrical discharge for detonation.
A sliding ignition device maintains contact with the explosive charge inside a penetrator envelope during high-speed impact.
Front-mounted tip canister shifts weight distribution to stabilize flight while periodic flashing extends battery life for reliable tracking.
A segmented warhead uses a removable piston to compress explosive layers into a continuous mass for reliable detonation.
An adjacent reactive layer generates heat via exothermic reactions to permanently eliminate sensitive information from electronic devices.
Segmented chambers with universal rims resolve weight and lethality trade-offs across varying air gun models.
Polymer-bound metal powder compacts cure at low temperatures to form frangible projectiles without high-energy sintering.
Separable breech plug containing pre-packaged propellant charge minimizes barrel fouling and improves ballistic accuracy.
Nested concentric warhead sleeves place smaller fragments interstitially within larger ones, containing expanding gases to increase kinetic energy transfer.
A 40 mm projectile round uses a mechanical timer to deploy frangible shot over a wide impact area.
Segmented pellets with radial slots allow linear stacking for adaptable payloads, resolving complexity in remote medical delivery systems.
Layered spherical projectiles with ferrous cores and biodegradable mantles reduce environmental contamination while supporting high-volume automated loading.
A floating die draws an extrudable outer sheath with natural oil lubrication, reducing wall thickness variation to 0.03 mm and lowering rejection rates.
Low rear rigidity in a segmented sabot absorbs lateral disturbances during separation, reducing impulsive forces and initial projectile oscillation.
Replacing mechanical firing mechanisms with pneumatics eliminates accidental discharge risks while maintaining deterrent effectiveness.
A sub-caliber arrow projectile uses a timed breakable link to detach its stabilizing fin during flight.
Tethered projectiles wrap around limbs to restrict movement, resolving safety concerns in non-lethal engagement.
Retracting the air scoop reduces drag and noise, extending aircraft range and lowering detection risk.
Reusable interdiction apparatus uses high-intensity LED lights and acoustic emitters for non-lethal sensory overload.
An off-center light emitting element on an arrow shaft provides focused rearward illumination, resolving light dispersion caused by nock geometry.
A tracer ammunition design uses a light metal and carbon substrate mixture ignited by atmospheric oxygen during flight.
A biased equivalent strength threaded joint joins dissimilar structural members using asymmetric thread thicknesses to optimize shear capacity.
A projectile body with a bore system deforms upon impact to expand the penetrator.