A warhead system generates high-velocity blade projectiles via explosive forming to intercept short-range rockets.
A multi-portion liner uses segmented powder materials to optimize jet formation and perforation performance.
A propellant system merges an explosive charge with a liquid to amplify propulsion through compression and evaporation.
An amorphous-based material liner enhances jet stretch and maintains coherence during detonation.
Multi-shot explosive charges use shared walls and colliding forces to increase perforation density while reducing gun size.
Boron intermetallic mixtures in shaped charge liners ensure complete energy release by avoiding adverse oxidation effects during detonation.
Segmenting the power supply into distinct communication and firing outputs prevents inadvertent actuation while enabling reliable remote blasting operations.
Modified sizing mandrel with thinner walls and larger inner diameter accelerates explosive emulsion packaging throughput.
Segmented housing and inserts allow on-site explosive metering, eliminating inhomogeneities that cause inconsistent penetration power.
Construct energetic components with internal voids and distinct material layers to achieve precise penetration effects in wellbore perforations.
A central initiating charge uses a longitudinal void to direct detonation waves via the channeling effect.