The influence of particle size and contents of aluminum powder on burning rate of condensed systems
| Parent link: | Высокоэнергетические материалы: демилитаризация, антитерроризм и гражданское применение : тезисы VI Международной конференции "HEMs-2012", 5-7 сентября 2012 года (Горный Алтай).— 2012.— С. 24-26 |
|---|---|
| Corporate Author: | Национальный исследовательский Томский политехнический университет (ТПУ) Энергетический институт (ЭНИН) Кафедра атомных и тепловых электростанций (АТЭС) |
| Other Authors: | Архипов В. А. Владимир Афанасьевич, Korotkikh A. G. Aleksandr Gennadievich, Vorozhtsov A. B., Pevchenko B. V. |
| Summary: | В фонде НТБ ТПУ отсутствует |
| Language: | English |
| Published: |
2012
|
| Subjects: | |
| Format: | Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=602302 |
Similar Items
Effect of the addition of ultrafine aluminum powders on the rheological properties and burning rate of energetic condensed systems; Combustion, Explosion and Shock Waves; Vol. 9, № 5
Published: (2007)
Published: (2007)
The influence of ammonium perchlorate on the activity of aluminum powders of different particle size; Energy Fluxes and Radiation Effects (EFRE-2016)
Published: (2016)
Published: (2016)
Influence of aluminum particle size on ignition and nonstationary combustion of heterogeneous condensed systems; Combustion, Explosion, and Shock Waves; Vol. 48, iss. 5
Published: (2012)
Published: (2012)
Particle Size Distribution of Aluminum Powders Obtained by Electric Explosion of Wires; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)
Published: (2016)
Published: (2016)
Effect of the passivating coating type, particle size, and storage time on oxidation and nitridation of aluminum powders; Combustion, Explosion and Shock Waves; Vol. 42, № 2
Published: (2006)
Published: (2006)
Influence of Dispersivity of Micron-Sized Aluminum Powders on their Resistance to Water Vapor; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)
Published: (2016)
Published: (2016)
Влияние размера частиц и содержания порошка алюминия на скорость горения конденсированных систем; Высокоэнергетические материалы: демилитаризация, антитерроризм и гражданское применение : тезисы VI Международной конференции "HEMs-2012", 5-7 сентября 2012 года (Горный Алтай)
Published: (2012)
Published: (2012)
Characterization of Aluminum powders I. Parameters of reactivityof Aluminum powders; Propellants, Explosives, Pyrotechnics; Vol. 27, № 6
Published: (2002)
Published: (2002)
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
Published: (2011)
Published: (2011)
Calculation of nonstationary burning rate in context of phenomenological theory; Transient Combustion and Detonation Phenomena: Fundamentals and Applications
by: Korotkikh A. G. Aleksandr Gennadievich
Published: (2014)
by: Korotkikh A. G. Aleksandr Gennadievich
Published: (2014)
Research and syntesis of aluminum nitride by burning of aluminum nanopowder with additives of gallium oxide; Ресурсоэффективным технологиям - энергию и энтузиазм молодых
by: Soboleva D. R.
Published: (2016)
by: Soboleva D. R.
Published: (2016)
Effect of organic coatings of nanoaluminum on the burning rate of mixed compositions; Thermal Science; Vol. 23, № 2
Published: (2019)
Published: (2019)
Effect of Particle Size on the Microstructure and Magnetic Properties of Nickel–Zinc Ferrite Powder; Bulletin of the Russian Academy of Sciences: Physics; Vol. 88, iss. 4
Published: (2024)
Published: (2024)
Effect of particle size on the diffuse reflection coefficient of titanium dioxide powder; IOP Conference Series: Materials Science and Engineering; Vol. 81 : Radiation-Thermal Effects and Processes in Inorganic Materials
by: Vlasov V. A. Vitaliy Anatolievich
Published: (2015)
by: Vlasov V. A. Vitaliy Anatolievich
Published: (2015)
The effect of boron, copper, and magnesium on the ignition of HEM containing aluminum powder; Journal of Physics: Conference Series; Vol. 1675 : Thermophysics and Physical Hydrodynamics
by: Sorokin I. V. Ivan Viktorovich
Published: (2020)
by: Sorokin I. V. Ivan Viktorovich
Published: (2020)
Content of intermediate air combustion products of aluminum nanopowder; The 6th International Forum on Strategic Technology (IFOST-2012), Aug. 22-24, 2011
Published: (2011)
Published: (2011)
Reactivity of Aluminum Powders; Combustion, Explosion, and Shock Waves; Vol. 37, № 4
by: Ilyin A. P. Aleksandr Petrovich
Published: (2001)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2001)
Investigation of the Characteristics of AluminumPowder Obtained in Argon with Addition of Oxygen; The 7th International Forum on Strategic Technology (IFOST-2012), September 18-21, 2012, Tomsk
Published: (2012)
Published: (2012)
Air and water oxidation of aluminum flake particles; Advanced Powder Technology; Vol. 307
Published: (2017)
Published: (2017)
Реакционная способность воздуха в условиях горения при высоких температурах; Высокоэнергетические материалы: демилитаризация, антитерроризм и гражданское применение
Published: (2016)
Published: (2016)
Influence of dispersion aluminum powders on the regularities of their interaction with nitrogen; Russian Journal of Physical Chemistry A; Vol. 85, iss. 7
by: Korshunov A. V. Andrey Vladimirovich
Published: (2011)
by: Korshunov A. V. Andrey Vladimirovich
Published: (2011)
End combustion products of mixtures of ultrafine aluminum powder with zirconium-aluminum alloy powder in air; Combustion, Explosion, and Shock Waves; Vol. 36, № 2
Published: (2000)
Published: (2000)
Исследование горения и агломерации ВЭМ, содержащих порошки биметаллов; Высокоэнергетические и специальные материалы: демилитаризация, антитерроризм и гражданское применение
Published: (2018)
Published: (2018)
Control of the particle size distribution and the investigation of the crystal structure of the titanium oxide powders, obtained by plasmadynamic method; Gas Discharge Plasmas and Their Applications (GDP 2019)
Published: (2019)
Published: (2019)
Применение высокоэнергетических воздействий для увеличения удельного теплового эффекта окисления нанопорошка алюминия; Высокоэнергетические материалы: демилитаризация, антитерроризм и гражданское применение
by: Мостовщиков А. В. Андрей Владимирович
Published: (2016)
by: Мостовщиков А. В. Андрей Владимирович
Published: (2016)
Efficiency Dependence of Radiation-Assisted Ceramic Synthesis Based on Metal Oxides and Fluorides on Initial Powder Particle Sizes; Photonics; Vol. 10, iss 10
Published: (2023)
Published: (2023)
Study of aluminum nitride formation by superfine aluminum powder combustion in air; Journal of the European Ceramic Society; Vol. 24, iss. 9
by: Gromov А. Alexander
Published: (2004)
by: Gromov А. Alexander
Published: (2004)
Synthesis of titanium and zirconium nitrides by burning mixtures of their oxides with aluminum nanopowder in air; Refractories and Industrial Ceramics; Vol. 48, iss. 6
Published: (2007)
Published: (2007)
Исследование поведения капсулированного алюминия при горении в смесевых композициях; Высокоэнергетические материалы: демилитаризация, антитерроризм и гражданское применение : тезисы X Международной конференции "HEMs-2014", 3-5 сентября 2014 года (г. Бийск Алтайского края)
Published: (2014)
Published: (2014)
Hygroscopic Properties of Industrial Aluminum Powders; Russian Journal of Physical Chemistry A; Vol. 99, iss. 9
by: Tereshchenko A. G. Anatoly Georgievich
Published: (2025)
by: Tereshchenko A. G. Anatoly Georgievich
Published: (2025)
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
by: Ilyin A. P. Aleksandr Petrovich
Published: (2009)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2009)
Characterization of Aluminum Powders: II. AluminumNanopowders Passivated by Non-Inert Coatings; Propellants, Explosives, Pyrotechnics; Vol. 31, iss. 5
by: Gromov A. A. Aleksandr Aleksandrovich
Published: (2006)
by: Gromov A. A. Aleksandr Aleksandrovich
Published: (2006)
Influence of additives on combustion of ultradisperse aluminum powder and chemical binding of air nitrogen; Combustion, Explosion, and Shock Waves; Vol. 32, iss. 2
by: Ilyin A. P. Aleksandr Petrovich
Published: (1996)
by: Ilyin A. P. Aleksandr Petrovich
Published: (1996)
Structure simulation of the alone Al particle burning in the gas flow; III International seminar on flame structure, September 18-22, 1989, Alma-Ata : book of abstracts
by: Vorozhtsov A. B.
Published: (1989)
by: Vorozhtsov A. B.
Published: (1989)
Synthesis of mullite in the presence of nanodisperse aluminum powder; Refractories and Industrial Ceramics; Vol. 46, N 1
by: Vereshchagin (Vereschagin, Vereshagin) V. I. Vladimir Ivanovich
Published: (2005)
by: Vereshchagin (Vereschagin, Vereshagin) V. I. Vladimir Ivanovich
Published: (2005)
Combustion of agglomerated ultrafine aluminum powders in air; Combustion, Explosion, and Shock Waves; Vol. 38, № 6
Published: (2002)
Published: (2002)
Effect of volume compression on the thresholds of laser pulse initiation of PETN mixtures at various concentrations of nano-sized carbon and aluminum particles; Russian Physics Journal; Vol. 67, iss. 12
Published: (2024)
Published: (2024)
Effect machining of batch on linear particle sizes; Физико-технические проблемы в науке, промышленности и медицине
by: Kasatkin D. D.
Published: (2015)
by: Kasatkin D. D.
Published: (2015)
Influence of the Composition and Particle Sizes of the Fuel Mixture of Coal and Biomass on the Ignition and Combustion Characteristics; Applied Sciences; Vol. 13, iss. 19
Published: (2023)
Published: (2023)
Microwave pyrolysis of agricultural waste: Influence of catalysts, absorbers, particle size and blending components; Journal of Analytical and Applied Pyrolysis; Vol. 171
Published: (2023)
Published: (2023)
Similar Items
-
Effect of the addition of ultrafine aluminum powders on the rheological properties and burning rate of energetic condensed systems; Combustion, Explosion and Shock Waves; Vol. 9, № 5
Published: (2007) -
The influence of ammonium perchlorate on the activity of aluminum powders of different particle size; Energy Fluxes and Radiation Effects (EFRE-2016)
Published: (2016) -
Influence of aluminum particle size on ignition and nonstationary combustion of heterogeneous condensed systems; Combustion, Explosion, and Shock Waves; Vol. 48, iss. 5
Published: (2012) -
Particle Size Distribution of Aluminum Powders Obtained by Electric Explosion of Wires; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)
Published: (2016) -
Effect of the passivating coating type, particle size, and storage time on oxidation and nitridation of aluminum powders; Combustion, Explosion and Shock Waves; Vol. 42, № 2
Published: (2006)