Associates personal mobile devices with exercise machine televisions to transmit specific channel audio signals wirelessly.
A rear-deploying mechanical broadhead uses a drive pin to secure stationary blades during flight.
Self-forming helical fins in the softer tail section generate angular momentum from airflow, preventing tumbling and stabilizing bullets in subsonic flight.
Biodegradable projectiles containing viable seeds replace plastic toys with compostable alternatives.
A skeletal frame mounting device holds articles inside munition cavities during explosive material curing.
Kinetic tension moves the lamp assembly away from battery contacts, eliminating complex manual switches and conserving power.
Magnetic GPS trackers transmit vehicle coordinates to enable safe remote monitoring without high-speed police pursuits.
Additively depositing metal layers creates interconnected fragments with voids for structural stiffness.
Radially protruding stress concentrators on a projectile body induce controlled fracture patterns in target materials.
A projectile shell uses snap-together sections with a high pressure angle to join components without tools.
Concentric powder filling creates a high-tungsten core and ductile sheath, preventing brittle breakage during oblique impacts without harmful etching.
Vented main charge holders balance gas propulsive forces in a multi-purpose grenade, eliminating ejectable fuze mechanisms that compromise reliability.
Compressed gas propulsion accelerates the projectile to high speed, resolving the contradiction between device simplicity and effective incapacitation force.
A segmented die assembly shapes firearm projectiles using independent punches to define complex external contours.
A colour marker projectile uses a ribbed front part and inserted stabilizing element to ensure accurate flight.
Segmented projectile body with rear stabilizing fins overcomes Magnus effect instability and loading inefficiencies while increasing substance volume capacity.
Segmenting the warhead from the motor reduces projectile weight, enabling higher speed and range while flechettes disperse to increase damage effectiveness.
A shaftless launcher uses resilient limbs and a sling to store potential energy for launching concentrated masses.
Hexagonal embossments on a drawn cup warhead case create uniform fragment shapes, resolving irregular distribution and low energy transfer efficiency.
Continuous conveyor belt circulates weapons past deflection points to eliminate retraction delays and accelerate reloading rates.
Segmented projectile nose with weakened portions absorbs kinetic energy to ensure controlled payload dispersion and reduced injury risk.
Alternating fused powder rings form a monolithic casing that eliminates assembly complexity while ensuring uniform fragment distribution.
A firearm handle with tactile reference features harnesses user proprioception to improve grip consistency.
A dart tail wing telescopes and rotates to absorb collision energy.
A dual exhaust passage system directs high-temperature sparks along a tortuous path for containment, preventing fire hazards in training environments.
Projectiles integrate oxygen filtration systems and variable geometry components for secure wall implantation.
A compacted metal fragment warhead structure uses high-pressure molding to deform and bond fragments into a rigid, void-free mass.
Metal injection molding forms stainless steel and brass cartridges with primer recesses and flash holes in a single near-net-shape step.
LD-Haack shaped nose reduces wave drag at supersonic speeds, improving ballistic efficiency.
A projectile with an adjustable leading portion acute angle controls tumbling frequency upon impact.
Rear insert thickening retards backward fragment velocity, reducing collateral damage to friendly forces in urban combat.
Optical guidance reduces collateral damage by replacing expensive mechanical systems with infrared seekers.
A silicone intermediate layer fixes the explosive charge inside the projectile body while absorbing thermal expansion stresses.
Segmented annular rings with varying spacings mitigate thermal loads without degrading RF signal transmission or aerodynamic performance.
Selective laser sintering creates a porous aluminum-polyamide warhead casing that prevents splinter-induced collateral damage while reducing weight.
Segmented bushings secure removable nock assemblies, allowing easy replacement of lighted units without altering arrow performance.
Stacked segmented flare pellets resolve structural integrity trade-offs while delivering high peak energy output and spectral signature matching.