A coated catalyst controls hydrogen peroxide decomposition to form precise gas bubbles, enabling delayed emulsion sensitization with stable detonation.
A perchlorate oxidizer and insoluble polymer electrolyte binder support controlled ignition and stable operation without aqueous solvents.
This case uses compatible tackifier resin to reduce plasticizer and bonding-agent use while improving adhesion, homogeneity, and density.
Coated catalysts control bubble formation for stable peroxide emulsion sensitization.
Schiff base bonding agents reduce ammonia production in solid propellants by forming stable imines with ammonium perchlorate.
Low amine amounts accelerate thiol-ene curing, resolving speed versus stability trade-offs for robust polymer binders.
In-situ synthesis chemically conjugates polymer molecules to transition metal oxide nanoparticle surfaces for uniform dispersion.
A gas generating pyrotechnic composition combines elemental carbon with cupric oxide to produce high yield inflation gas.
Ultra-fine amorphous carbon black at 0.05-0.25 wt% dissipates static charges in HTPB propellants without compromising rheology or breakdown voltage.
Organic bismuth salt catalyst accelerates polyol polymer crosslinking at lower temperatures, reducing thermal shrinkage and heating costs.
Fiber-shaped combustion modifiers enhance thermal conductivity within energetic binder matrices to accelerate solid propellant burning rates.
Low-loss powder simulants eliminate trial-and-error iterations by matching complex relative permittivity for accurate detector response.
Optimized water-in-oil emulsion explosives reduce toxic NOx and CO emissions while maintaining high energy content for safer underground mining operations.
Potassium salt anti-glow agents suppress post-combustion flames in composite propellants, maintaining energy performance at 16 MPa.
A composite propellant uses bismuth citrate as a combustion catalyst within a polyglycidyl azide binder to achieve high burning rates.
A crosslinked energy polymer binder with optimized catalyst levels enhances mechanical rigidity in composite pyrotechnic compositions.