Phenomenon of Chemical Binding of Air Nitrogen with the Formation of Nitrides Crystal Phases in the Process of Burning of Metals, Boron and Silicon Powders; Applied Particle Technology
| Parent link: | Applied Particle Technology.— 2009.— P. 34-37 |
|---|---|
| المؤلف الرئيسي: | Ilyin A. P. Aleksandr Petrovich |
| مؤلفون آخرون: | Tolbanova L. O. Lyudmila Olegovna, Mostovshchikov A. V. Andrey Vladimirovich |
| الملخص: | The research stages of nitrogen chemical accumulation during metals, boron and silicon powders burning in air,with the formation of independent crystal phases of nitrides are presented in the paper. The extraordinarycharacteristic of this phenomenon is connected with a contradiction: thermodynamic calculations show that nitridesare being oxidized by oxygen. It has been shown that the phenomenon is interdisciplinary: its manifestations areapplicable in many spheres of science and technique. A probable mechanism is proposed regarding the formation ofnitrides under high temperature conditions in the presence of air oxygen. В фонде НТБ ТПУ отсутствует |
| اللغة: | الإنجليزية |
| منشور في: |
2009
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| الموضوعات: | |
| التنسيق: | فصل الكتاب |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=599507 |
مواد مشابهة
Influence of additives on combustion of ultradisperse aluminum powder and chemical binding of air nitrogen; Combustion, Explosion, and Shock Waves; Vol. 32, iss. 2
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1996)
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1996)
The mechanism of nitride phases formation at burning of metal powders in air; The 6th International Forum on Strategic Technology (IFOST-2012), Aug. 22-24, 2011
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Applied aspects of nitrogen fixation by superfine powders (SFP) combustion in air phenomenon using; Modern Techniques and Technology (MTT' 2000)
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حسب: Ilyin A. P. Aleksandr Petrovich
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منشور في: (2002)
حسب: Grinyaev S. N. Sergey Nikolaevich
منشور في: (2002)
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منشور في: (2004)
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منشور في: (2007)
منشور في: (2007)
Production of nitride containing charge upon oxidation of powder-aluminum in air; Steklo i Keramika; № 3
منشور في: (1998)
منشور في: (1998)
Structural specifics of powdered nitride-containing materials (aluminum and boron combustion products); Glass and Ceramics; Vol. 56, N 5-6
منشور في: (1999)
منشور في: (1999)
Study of aluminum nitride formation by superfine aluminum powder combustion in air; Journal of the European Ceramic Society; Vol. 24, iss. 9
حسب: Gromov А. Alexander
منشور في: (2004)
حسب: Gromov А. Alexander
منشور في: (2004)
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منشور في: (2011)
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منشور في: (2011)
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حسب: Strokova Yu. I.
منشور في: (2008)
حسب: Strokova Yu. I.
منشور في: (2008)
Nitride formation during combustion of ultrafine Aluminum powders in Air. I. effect of additives; Combustion, Explosion, and Shock Waves; Vol. 41, № 3
منشور في: (2005)
منشور في: (2005)
Properties of rhombohedral pyrolytic boron nitride; Inorganic Materials; Vol. 32, № 6
منشور في: (1996)
منشور في: (1996)
Polymer Brushes on Hexagonal Boron Nitride; Small; Vol. 15, iss. 19
منشور في: (2019)
منشور في: (2019)
Macrodefects of pyrolytic boron nitride structure; Physica status solidi (a); Vol. 98, Iss. 1
حسب: Arefyev (Afef'ev, Arefiev) K. P. Konstantin Petrovich
منشور في: (1986)
حسب: Arefyev (Afef'ev, Arefiev) K. P. Konstantin Petrovich
منشور في: (1986)
Oxidation of aluminum in ultradispersed state in air; Powder Metallurgy and Metal Ceramics; Vol. 29, iss. 9
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1990)
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1990)
Production of nitride containing mixture in oxidation of aluminum powder in air; Glass and Ceramics; Vol. 55, iss. 3-4
منشور في: (1998)
منشور في: (1998)
Physical properties of polycrystalline cubic boron nitride; Inorganic Materials; Vol. 32, № 2
منشور في: (1996)
منشور في: (1996)
The influence of air on the characteristics of the trapping and recombination centers of boron nitride irradiated with ions; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 16, № 5
حسب: Konusov F. V. Fedor Valerievich
منشور في: (2001)
حسب: Konusov F. V. Fedor Valerievich
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منشور في: (2016)
Receptor Binding
منشور في: (1986)
منشور في: (1986)
Trapping centers and recombination in pyrolytic boron nitride; Russian Physics Journal; Vol. 32, iss. 11
حسب: Galanov Yu. I. Yury Ivanovich
منشور في: (1989)
حسب: Galanov Yu. I. Yury Ivanovich
منشور في: (1989)
Dielectric properties of boron nitride after high temperature implantation with ions; Korus 2004; Vol. 3
منشور في: (2004)
منشور في: (2004)
Energetic states in the boron nitride band gap; Journal of Physics and Chemistry of Solids; Vol. 53, iss. 6
حسب: Lopatin V. V. Vladimir Vasilyevich
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حسب: Lopatin V. V. Vladimir Vasilyevich
منشور في: (1992)
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منشور في: (2000)
منشور في: (2000)
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منشور في: (2008)
منشور في: (2008)
Receptor Binding Techniques
منشور في: (2012)
منشور في: (2012)
Receptor Binding Techniques
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Spark plasma sintering of ceramics based on silicon nitride and titanium nitride; 11th International Forum on Strategic Technology (IFOST 2016); Pt. 1
منشور في: (2016)
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Continuous solid-phase synthesis of nanostructured lithium iron phosphate powders in air; Ceramics International; Vol. 44, iss. 7
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مواد مشابهة
-
Influence of additives on combustion of ultradisperse aluminum powder and chemical binding of air nitrogen; Combustion, Explosion, and Shock Waves; Vol. 32, iss. 2
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1996) -
The mechanism of nitride phases formation at burning of metal powders in air; The 6th International Forum on Strategic Technology (IFOST-2012), Aug. 22-24, 2011
منشور في: (2011) -
Applied aspects of nitrogen fixation by superfine powders (SFP) combustion in air phenomenon using; Modern Techniques and Technology (MTT' 2000)
منشور في: (2000) -
Effect of additives on combustion of an ultradispersed aluminum powder and the chemical fixing of air nitrogen; Fizika Goreniya i Vzryva; Vol. 32, № 2
حسب: Ilyin A. P. Aleksandr Petrovich
منشور في: (1996) -
On the mechanism of zirconium nitride formation by zirconium, zirconia and yttria burning in air; Journal of Solid State Chemistry; Vol. 230
منشور في: (2015)