Monitoring of Aluminum Nanopowder Combustion Ignited by Laser Radiation; Progress In Electromagnetics Research Letters; Vol. 75
| Parent link: | Progress In Electromagnetics Research Letters Vol. 75.— 2018.— [P. 125-130] |
|---|---|
| Corporate Authors: | Национальный исследовательский Томский политехнический университет Инженерная школа ядерных технологий Научно-исследовательская лаборатория СВЧ-технологии, Национальный исследовательский Томский политехнический университет Исследовательская школа химических и биомедицинских технологий |
| Other Authors: | Li Lin, Mostovshchikov A. V. Andrey Vladimirovich, Ilyin A. P. Aleksandr Petrovich, Gubarev F. A. Fedor Aleksandrovich |
| Summary: | Title screen The paper presents the results of observing, in a real time, the process of combustion in air of aluminum nanopowder ignited by laser radiation. The obtained results convincingly evidence the possibility and perspective of visualization of ignition process by means of laser monitor. The video images allow observing the main stages of the combustion process including starting of combustion in the place of laser radiation focusing, spreading of the heat wave and appearance of the second combustion wave. For quantitative analysis of the combustion process, we suggest to analyze the average intensity of images registered by laser monitor. |
| Language: | English |
| Published: |
2018
|
| Subjects: | |
| Online Access: | http://www.jpier.org/PIERL/pier.php?paper=18022102 |
| Format: | Electronic Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=665876 |
Similar Items
Laser Monitor for Studying the Combustion of Thin Layers of Metal Nanopowders; Progress In Electromagnetics Research M; Vol. 101
Published: (2021)
Published: (2021)
Monitoring of Nanopowder Combustion Ignited by Laser Radiation; Progress in Electromagnetics Research Symposium (PIERS-Toyama)
Published: (2018)
Published: (2018)
Investigation of the Aluminum Nitride Formation During the Aluminum Nanopowder Combustion in Air; Physics Procedia; Vol. 84 : Synchrotron and Free electron laser Radiation: generation and application" (SFR-2016)
Published: (2016)
Published: (2016)
Laser speckle correlation technique application for study of aluminum nanopowder combustion; Applied Optics; Vol. 59, iss. 5
Published: (2020)
Published: (2020)
Aluminum Nanopowder Combustion Monitoring Using an Optical System with Brightness Amplification; 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS)
Published: (2018)
Published: (2018)
Copper Bromide Laser Monitor for Combustion Processes Visualization; 2016 Progress in Electromagnetic Research Symposium (PIERS)
Published: (2016)
Published: (2016)
Ignition by laser radiation and combustion of composite solid propellants with bimetal powders; Journal of Physics: Conference Series; Vol. 830 : Energy Fluxes and Radiation Effects 2016
Published: (2017)
Published: (2017)
The effect of aluminum particles dispersity on characteristics of ammonium perchlorate-aluminum composition laser ignition; Journal of Physics: Conference Series; Vol. 830 : Energy Fluxes and Radiation Effects 2016
Published: (2017)
Published: (2017)
Effect of electron beam irradiation on the thermal properties of the aluminum nanopowder; Radiation Physics and Chemistry; Vol. 153
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2018)
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2018)
A Two-Channel Laser Monitor for Observing Processes of High-Temperature Combustion of Metal Nanopowders; Technical Physics Letters; Vol. 47, iss. 4
Published: (2021)
Published: (2021)
Laser speckle correlation technique application for remote characterization of metal nanopowder combustion; Applied Optics; Vol. 60, iss. 22
Published: (2021)
Published: (2021)
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)
A Laser Monitor with Independent Lighting and Brightness Amplification for Imaging High-Temperature Combustion of Metal Nanopowders; Technical Physics Letters; Vol. 47, iss. 5
Published: (2021)
Published: (2021)
Incomplete Bessel Polynomials: A New Class of Special Polynomials for Electromagnetics; Progress In Electromagnetics Research M; Vol. 84
Published: (2019)
Published: (2019)
High-Speed Visualization of Nanopowder Combustion in Air; Optica Pura y Aplicada; Vol. 51, iss. 4
Published: (2018)
Published: (2018)
Effect of ammonium perchlorate and aluminum composition density on characteristics of laser ignition; Propellants, Explosives, Pyrotechnics; Vol. 43, iss. 2
by: Medvedev V. V. Valeriy Viktorovich
Published: (2018)
by: Medvedev V. V. Valeriy Viktorovich
Published: (2018)
High-speed visualization of aluminum nanopowder combustion in air; Proceedings of SPIE; Vol. 11066 : Saratov Fall Meeting 2018: Laser Physics, Photonic Technologies, and Molecular Modeling
Published: (2019)
Published: (2019)
Nitride formation during combustion of ultrafine Aluminum powders in Air. I. effect of additives; Combustion, Explosion, and Shock Waves; Vol. 41, № 3
Published: (2005)
Published: (2005)
Morphology of Aluminum Nanopowder Combustion Products in a Magnetic Field in Air; Key Engineering Materials; Vol. 685 : High Technology: Research and Applications 2015 (HTRA 2015)
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2016)
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2016)
Исследование влияния продуктов горения металлического алюминия на спекание кордиеритовой керамики; Химия и химическая технология в XXI веке
by: Буцык О. В.
Published: (2009)
by: Буцык О. В.
Published: (2009)
Фазовый состав продуктов горения смесей нанопорошков алюминия и молибдена в воздухе; Известия вузов. Химия и химическая технология; Т. 50, № 12
by: Толбанова Л. О. Людмила Олеговна
Published: (2007)
by: Толбанова Л. О. Людмила Олеговна
Published: (2007)
Formation Regularities of AlOOH Hollow Spheres during Aluminum Nanopowder Water Oxidation; AIP Conference Proceedings; Vol. 1683 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures
Published: (2015)
Published: (2015)
Study of aluminium nanopowder combustion by method of laser-speckle correlation; IOP Conference Series: Materials Science and Engineering; Vol. 1019 : 14th International Forum on Strategic Technology (IFOST 2019)
Published: (2021)
Published: (2021)
Parameters of Aluminum Nanopowders Activity after Long-Term Storage in an Airtight Container; Propellants, Explosives, Pyrotechnics; Vol. 43, iss. 8
by: Ilyin A. P. Aleksandr Petrovich
Published: (2018)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2018)
Flame propagation behavior of aluminum nanopowder in bulk layer; Journal of Loss Prevention in the Process Industries; Vol. 69
Published: (2021)
Published: (2021)
Application of Aluminum Nanopowder for Pure Hydrogen Production; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
Effect of B, Fe, Ti, Cu nanopowders on the laser ignition of Al-based high-energy materials; Combustion and Flame; Vol. 222
Published: (2020)
Published: (2020)
Working out of ceramic materials on a basis oxides zirconium and aluminum with additives nanopowders; Химия и химическая технология в XXI веке; Т. 2
by: Gaidaichuk E. V.
Published: (2011)
by: Gaidaichuk E. V.
Published: (2011)
The Energy Stored in the Aluminum Nanopowder Irradiated by Electron Beam; Key Engineering Materials; Vol. 685 : High Technology: Research and Applications 2015 (HTRA 2015)
Published: (2016)
Published: (2016)
Influence of Factors Affecting the Parameters of Combustion of Aluminum Nanopowders in the Bulk Layer; Materials Science Forum; Vol. 970 : Modern Problems in Materials Processing, Manufacturing, Testing and Quality Assurance II
Published: (2019)
Published: (2019)
The Influence of Aluminium Nanopowder Density on the Structure and Properties of its Combustion Products in Air; Key Engineering Materials; Vol. 685 : High Technology: Research and Applications 2015 (HTRA 2015)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
Ignition by laser radiation and combustion of composite solid propellants; Energy Fluxes and Radiation Effects (EFRE-2016)
by: Arkhipov V. Vladimir
Published: (2016)
by: Arkhipov V. Vladimir
Published: (2016)
Cr[2]O[3]/Al-Al[2]O[3] composite catalysts for hydrocarbons dehydrogenation prepared from aluminum nanopowder; AIP Conference Proceedings; Vol. 1772 : Prospects of Fundamental Sciences Development (PFSD-2016)
Published: (2016)
Published: (2016)
Structural and Energy State of Electro-Explosive Aluminum Nanopowder; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2016)
by: Mostovshchikov A. V. Andrey Vladimirovich
Published: (2016)
Corrosive Characteristics of Aluminum Nanopowders; Metal-2005
Published: (2005)
Published: (2005)
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)
Effect of aluminum particles dispersity on characteristics of ammonium perchlorate-aluminum composition laser ignition; Energy Fluxes and Radiation Effects (EFRE-2016)
Published: (2016)
Published: (2016)
Optical System With Brightness Amplification for Monitoring the Combustion of Aluminum-Based Nanopowders; IEEE Transactions on Instrumentation and Measurement; Vol. 69, iss. 2
Published: (2020)
Published: (2020)
Investigation of Product Aluminum - Water Reaction; Advanced Materials Research; Vol. 1040 : High Technology: Research and Applications 2014 (HTRA 2014)
Published: (2014)
Published: (2014)
Effect of uniform magnetic and electric fields on microstructure and substructure characteristics of combustion products of aluminum nanopowder in air; Technical Physics; Vol. 61, № 12
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
by: Ilyin A. P. Aleksandr Petrovich
Published: (2016)
Similar Items
-
Laser Monitor for Studying the Combustion of Thin Layers of Metal Nanopowders; Progress In Electromagnetics Research M; Vol. 101
Published: (2021) -
Monitoring of Nanopowder Combustion Ignited by Laser Radiation; Progress in Electromagnetics Research Symposium (PIERS-Toyama)
Published: (2018) -
Investigation of the Aluminum Nitride Formation During the Aluminum Nanopowder Combustion in Air; Physics Procedia; Vol. 84 : Synchrotron and Free electron laser Radiation: generation and application" (SFR-2016)
Published: (2016) -
Laser speckle correlation technique application for study of aluminum nanopowder combustion; Applied Optics; Vol. 59, iss. 5
Published: (2020) -
Aluminum Nanopowder Combustion Monitoring Using an Optical System with Brightness Amplification; 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS)
Published: (2018)