Mixed compositions based on ammonium perchlorate, inert fuel-binder and nanosized aluminum, encapsulated with organic compounds, have been experimentally studied. The study of aluminum powders using scanning electron microscopy and transmission electron microscopy was carried out. The oxidation of aluminum powders was investigated by differential thermal and thermogravimetric methods. The chemical composition of the condensed products was determined by X-ray diffraction. The laws of mixed composition combustion were determined in a wide pressure range. The possibility of controlling the burning rate and the content of condensed combustion products by using encapsulated nanoaluminum is shown
Several industrial- and research – type fuel rich solid rocket propellants containing nano-metric al...
Several composite propellant mixtures of hydroxyl-terminated polybutadiene, ammonium perchlorate, an...
The currently used micrometric Al powders (30-50 μm nominal size) were replaced by nanometric powde...
Mixed compositions based on ammonium perchlorate, inert fuel-binder and nanosized aluminum, encapsul...
The results of study for the influence of metallic and nonmetallic nanopowders on the combustion par...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The effects of coated nano-sized aluminum (Al) powder (n-Al) and micron-sized Al powder(g-Al) in pro...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
Nano-aluminized propellants are investigated and compared with micro-aluminized propellants in order...
The ballistic characteristics of the mixture compositions containing aluminum powder ASD-6M have bee...
Results of DTA-TG investigation and chemical analysis of electro-exploded aluminum nanopowders, pass...
Several composite propellant mixtures of hydroxyl-terminated polybutadiene, ammonium perchlorate, an...
A characterization of differently sized aluminum powders, by using BET (specific surface measurement...
Aluminum combustion in solid propellants generates condensed products leaving the burning surface. T...
Several industrial- and research – type fuel rich solid rocket propellants containing nano-metric al...
Several composite propellant mixtures of hydroxyl-terminated polybutadiene, ammonium perchlorate, an...
The currently used micrometric Al powders (30-50 μm nominal size) were replaced by nanometric powde...
Mixed compositions based on ammonium perchlorate, inert fuel-binder and nanosized aluminum, encapsul...
The results of study for the influence of metallic and nonmetallic nanopowders on the combustion par...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The effects of coated nano-sized aluminum (Al) powder (n-Al) and micron-sized Al powder(g-Al) in pro...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
Nano-aluminized propellants are investigated and compared with micro-aluminized propellants in order...
The ballistic characteristics of the mixture compositions containing aluminum powder ASD-6M have bee...
Results of DTA-TG investigation and chemical analysis of electro-exploded aluminum nanopowders, pass...
Several composite propellant mixtures of hydroxyl-terminated polybutadiene, ammonium perchlorate, an...
A characterization of differently sized aluminum powders, by using BET (specific surface measurement...
Aluminum combustion in solid propellants generates condensed products leaving the burning surface. T...
Several industrial- and research – type fuel rich solid rocket propellants containing nano-metric al...
Several composite propellant mixtures of hydroxyl-terminated polybutadiene, ammonium perchlorate, an...
The currently used micrometric Al powders (30-50 μm nominal size) were replaced by nanometric powde...