The use of aluminum borides is a promising direction in the development of modern propellant compositions and aerial vehicles. We present experimental data on the kinetics of oxidation of microscale powders of aluminum, amorphous boron, and the aluminum borides AlB2 and AlB12 in air upon heating at a constant rate of 10°C/min and the results of laser-assisted ignition of high-energy materials that contain these metal powders and are based on ammonium perchlorate, ammonium nitrate, and an inert binder or an energetic combustible binder. We show that the use of the boron-containing powders enables us to lower the onset temperature of oxidation and the temperature of intense oxidation, while increasing their oxidation effectiveness, compared t...
The results of combustion study for high-energy compositions (HECs) based on ammonium perchlorate (A...
Aluminum added to propellants, explosives, and pyrotechnics, boosts their energy density. Different ...
The study of the ignition characteristics of highenergy materials (HEMs) is important in solving a n...
Boron and its compounds are among the most promising metal fuel components to be used in solid prope...
Boron-containing substances are known to have high gravimetric and volumetric heats of oxidation in ...
The high heat of oxidation makes boron and borides attractive as a metal fuels additive in composite...
Boron and its compounds are considered as possible high efficiency fuel components for high-energy m...
The use of metal fuel in high-energy materials (HEM) for propulsion is the most energy efficient met...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
A promising way to synthesize new energy materials based on refactory inorganic compounds is self-pr...
The possibility of creating high-energy materials with increased ecological purity of combustion pro...
Boron-containing substances are known to have high gravimetric and volumetric heats of oxidation in ...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Boron has received much attention as a potential additive to explosives and propellants due to its h...
The results of combustion study for high-energy compositions (HECs) based on ammonium perchlorate (A...
Aluminum added to propellants, explosives, and pyrotechnics, boosts their energy density. Different ...
The study of the ignition characteristics of highenergy materials (HEMs) is important in solving a n...
Boron and its compounds are among the most promising metal fuel components to be used in solid prope...
Boron-containing substances are known to have high gravimetric and volumetric heats of oxidation in ...
The high heat of oxidation makes boron and borides attractive as a metal fuels additive in composite...
Boron and its compounds are considered as possible high efficiency fuel components for high-energy m...
The use of metal fuel in high-energy materials (HEM) for propulsion is the most energy efficient met...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
A promising way to synthesize new energy materials based on refactory inorganic compounds is self-pr...
The possibility of creating high-energy materials with increased ecological purity of combustion pro...
Boron-containing substances are known to have high gravimetric and volumetric heats of oxidation in ...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Boron has received much attention as a potential additive to explosives and propellants due to its h...
The results of combustion study for high-energy compositions (HECs) based on ammonium perchlorate (A...
Aluminum added to propellants, explosives, and pyrotechnics, boosts their energy density. Different ...
The study of the ignition characteristics of highenergy materials (HEMs) is important in solving a n...