This paper presents the results of an experimental study of the high-energy materials combustion at subatmospheric pressures. Systems containing powders of micron-sized aluminum, ultrafine aluminum, boron and their mechanical mixtures were investigated. Effect of the replacement of aluminum by aluminum-boron mixtures in propellant systems on the burning rate law was determined
Boron and its compounds are considered as possible high efficiency fuel components for high-energy m...
The paper studies dispersion, oxidation degree, burning rate and combustion heat in high-energy mixt...
Energetic materials have been widely used for military purposes. Continuous research programs are pe...
This paper presents the results of an experimental study of the high-energy materials combustion at ...
Abstract. This paper presents the results of an experimental study of the high-energy materials comb...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
The use of metals as high-energy fuels has been for long time a common approach to increase performa...
Boron and its compounds are among the most promising metal fuel components to be used in solid prope...
Abstract: In order to extend the burning rate of boron-based, fuel-rich solid propellants with aggl...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The paper presents a physical-mathematical model for metallized solid propellant combustion under ac...
The use of metal fuel in high-energy materials (HEM) for propulsion is the most energy efficient met...
Aluminum powders are commonly used in solid propellants to enhance the performance of space propulsi...
Several HTPB/AP/Al-based composite propellant mixtures were prepared with and without the addition o...
Boron and its compounds are considered as possible high efficiency fuel components for high-energy m...
The paper studies dispersion, oxidation degree, burning rate and combustion heat in high-energy mixt...
Energetic materials have been widely used for military purposes. Continuous research programs are pe...
This paper presents the results of an experimental study of the high-energy materials combustion at ...
Abstract. This paper presents the results of an experimental study of the high-energy materials comb...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
Thermodynamic calculation of combustion parameters and equilibrium composition of HEMs combustion pr...
The use of metals as high-energy fuels has been for long time a common approach to increase performa...
Boron and its compounds are among the most promising metal fuel components to be used in solid prope...
Abstract: In order to extend the burning rate of boron-based, fuel-rich solid propellants with aggl...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The paper presents a physical-mathematical model for metallized solid propellant combustion under ac...
The use of metal fuel in high-energy materials (HEM) for propulsion is the most energy efficient met...
Aluminum powders are commonly used in solid propellants to enhance the performance of space propulsi...
Several HTPB/AP/Al-based composite propellant mixtures were prepared with and without the addition o...
Boron and its compounds are considered as possible high efficiency fuel components for high-energy m...
The paper studies dispersion, oxidation degree, burning rate and combustion heat in high-energy mixt...
Energetic materials have been widely used for military purposes. Continuous research programs are pe...