The resource-saving technology of aluminum nitride obtaining during the combustion of aluminum nanopowder in air has been analyzed in the article. The investigation of the crystal phases of aluminum nanopowder combustion products obtained under the magnetic field exposure has been made. The experimental results showed the increase of aluminum nitride content up to 86 wt. % in comparison with the aluminum nitride content in combustion products without any exposure. The mechanism of aluminum nitride formation and stabilization in air was due to the oxygen molecules deactivation by light emission during combustion
Tez (Yüksek Lisans) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2002Thesis (M.Sc.) -- ...
The results of the study of oscillograms of voltage, current, pulsed electric power and energy input...
The results of study for the influence of metallic and nonmetallic nanopowders on the combustion par...
The resource-saving technology of aluminum nitride obtaining during the combustion of aluminum nanop...
The phase formation sequences, intermediate and final products of aluminum nanopowder combustion are...
The characteristics and phase composition of intermediate synthesis products has been studied by bur...
In this work, the process for obtaining aluminum nitride in the combustion mode of co-flow filtratio...
An innovative method has been developed for synthesizing aluminum-aluminum nitride nanocomposite mat...
Aluminum nitride is widely-used material for semiconductor devices and ceramics production. Despite ...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The chapter summarizes the features of the combustion synthesis for nano- and micron-sized metal pow...
Synthesis, processing and characterization of nanocrystalline aluminum nitride has been systematical...
Oxidation of copper and aluminium nanopowders obtained by the method of electric explosion of wire i...
To improve combustion efficiency and anti-oxidation property of aluminum nanoparticles (ANs), surfac...
Al nanopowders (ANP) produced by plasma electrical explosion method possess an increased reactivity ...
Tez (Yüksek Lisans) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2002Thesis (M.Sc.) -- ...
The results of the study of oscillograms of voltage, current, pulsed electric power and energy input...
The results of study for the influence of metallic and nonmetallic nanopowders on the combustion par...
The resource-saving technology of aluminum nitride obtaining during the combustion of aluminum nanop...
The phase formation sequences, intermediate and final products of aluminum nanopowder combustion are...
The characteristics and phase composition of intermediate synthesis products has been studied by bur...
In this work, the process for obtaining aluminum nitride in the combustion mode of co-flow filtratio...
An innovative method has been developed for synthesizing aluminum-aluminum nitride nanocomposite mat...
Aluminum nitride is widely-used material for semiconductor devices and ceramics production. Despite ...
Aluminum is a promising metal fuel for solid propellants due to the high heat of combustion and prop...
The chapter summarizes the features of the combustion synthesis for nano- and micron-sized metal pow...
Synthesis, processing and characterization of nanocrystalline aluminum nitride has been systematical...
Oxidation of copper and aluminium nanopowders obtained by the method of electric explosion of wire i...
To improve combustion efficiency and anti-oxidation property of aluminum nanoparticles (ANs), surfac...
Al nanopowders (ANP) produced by plasma electrical explosion method possess an increased reactivity ...
Tez (Yüksek Lisans) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2002Thesis (M.Sc.) -- ...
The results of the study of oscillograms of voltage, current, pulsed electric power and energy input...
The results of study for the influence of metallic and nonmetallic nanopowders on the combustion par...