Segmented propellant modules decouple perforation and stimulation events to eliminate debris blockages and improve flow capacity.
A projectile priming device separates the electronic firing module from the safety and arming rotor to standardize pyrotechnic components across calibers.
Screwing two tanks together pierces separating walls to mix liquids, eliminating manual handling of hazardous materials.
A fuel-rich monolithic grain inflator uses a shock wave to open a burst disc, allowing stored oxidant gas to mix with combustion products for rapid inflation.
A sealable short-pathlength liquid transmission cell uses silver-soldered stainless steel tubing to maintain a permanent leak-free connection.
A metal securing structure and welded lid create a hermetic seal on a plastic housing, preventing moisture ingress that degrades secondary explosives.
Segmenting initiator devices into isolated charges prevents cross-triggering while enabling independent control of energetic outputs.
A double-layer detonation tube incorporates a magnetic material mixture to enable automated removal of remnants from mined stone.
Photolithographic masking eliminates laser-induced edge damage during physical vapor deposition, ensuring homogeneous material distribution.