Effect of boron and aluminum diboride on ignition of high-energy materials; Science and Technology of Energetic Materials; Vol. 80, iss. 5
| Parent link: | Science and Technology of Energetic Materials Vol. 80, iss. 5.— 2019.— [P. 189-193] |
|---|---|
| Autor Corporativo: | Национальный исследовательский Томский политехнический университет Инженерная школа энергетики Научно-образовательный центр И. Н. Бутакова (НОЦ И. Н. Бутакова) |
| Outros autores: | Korotkikh A. G. Aleksandr Gennadievich, Sorokin I. V. Ivan Viktorovich, Selikhova E. A. Ekaterina Aleksandrovna, Arkhipov V. A. Vladimir Afanasjevich |
| Summary: | Title screen The high heat of oxidation makes boron and diborides attractive as a metal fuel additive in high-energy materials (HEM) and solid propellants. This study investigates the laser ignition for the HEM samples based on ammonium perchlorate, ammonium nitrate, energetic binder and boron-containing components. Micron-sized powders of aluminum, amorphous boron and aluminum diboride were used as the metal fuels in composition of the AP/AN/PMVT/Me HEM samples. We defined the ignition delay time, the surface temperature of the reaction layer during the heating and ignition, the kinetic parameters for the aluminum-based and boron-based HEM samples. It was found that the use of amorphous boron in the HEM sample leads to a decrease in the ignition delay time of the sample by a factor of 2.2-2.8 due to high chemical activity and a difference in the oxidation mechanism of boron particles. The use of aluminum diboride powder in the HEM sample makes it possible to reduce the ignition delay time by 1.7-2.2 times at the same heat flux density in comparison with the aluminum-based HEM sample. It was also shown that the use of boron components leads to an increase in the maximum surface temperature at the time of the flame appearance and to a decrease in the activation energy of ignition. |
| Idioma: | inglés |
| Publicado: |
2019
|
| Subjects: | |
| Acceso en liña: | http://www.jes.or.jp/mag/stem/Vol.80/No.5.05.html |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=662160 |
Títulos similares
Laser Ignition of Aluminum and Boron Based Powder Systems; Combustion, Explosion, and Shock Waves; Vol. 58, iss. 4
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
Study of Ignition of High-Energy Materials with Boron and Aluminum and Titanium Diborides; Combustion, Explosion, and Shock Waves; Vol. 54, iss. 3
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2018)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2018)
Ignition of High Energy Material Containing Ultradispersed Al/B Powder; Russian Journal of Physical Chemistry B; Vol. 16, iss. 2
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
Ignition and Combustion of Composite Solid Propellants Based on a Double Oxidizer and Boron-Based Additives; Russian Journal of Physical Chemistry B; Vol. 14, iss. 4
Publicado: (2020)
Publicado: (2020)
Effect of Ultrafine Al/B, Ti/B, and Fe/B Powders on the Ignition and Combustion Characteristics of High-Energy Materials; Combustion, Explosion, and Shock Waves; Vol. 59, iss. 6
por: Sorokin I. V. Ivan Viktorovich
Publicado: (2023)
por: Sorokin I. V. Ivan Viktorovich
Publicado: (2023)
Effect of Ammonium Nitrate and Combustible Binder on the Ignition Characteristics of High-Energy Materials Containing Aluminum Borides; Combustion, Explosion, and Shock Waves; Vol. 58, iss. 5
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022)
Influence of Forest Combustible Material on the Characteristics and Conditions of Ignition of Bio-coal Water Fuels; Combustion Science and Technology; Vol. 195, iss. 3
Publicado: (2023)
Publicado: (2023)
Mathematical modeling the ignition of several gas hydrate particles; Fuel; Vol. 330
por: Antonov D. V. Dmitry Vladimirovich
Publicado: (2022)
por: Antonov D. V. Dmitry Vladimirovich
Publicado: (2022)
Experimental Study of the Influence of the Concentration of Organic Water-Coal Fuel Components on the Integral Ignition Characteristics; Journal of Engineering Physics and Thermophysics; Vol. 90, iss. 1
por: Vershinina K. Yu. Kseniya Yurievna
Publicado: (2017)
por: Vershinina K. Yu. Kseniya Yurievna
Publicado: (2017)
Conditions and Characteristics of the Ignition of a Typical Vegetable Combustible Material by a Local Energy Source; Journal of Engineering Physics and Thermophysics; Vol. 89, iss. 6
por: Baranovskiy N. V. Nikolay Viktorovich
Publicado: (2016)
por: Baranovskiy N. V. Nikolay Viktorovich
Publicado: (2016)
Combustion features of dispersed aluminum and boron in high-energy composition; FirePhysChem; Vol. 4, iss. 4
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2024)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2024)
Modeling of a Double Gas Hydrate Particle Ignition; Applied Sciences; Vol. 12, iss. 12
Publicado: (2022)
Publicado: (2022)
Ignition of Rotating Samples of High-Energy Materials by Laser Radiation; Combustion, Explosion, and Shock Waves; Vol. 57, iss. 1
Publicado: (2021)
Publicado: (2021)
Combustion characteristics of high-energy material containing dispersed aluminum, boron, and aluminum borides; Combustion, Explosion and Shock Waves; Vol. 59, No. 4
Publicado: (2023)
Publicado: (2023)
Limiting Ignition Conditions and Time Characteritics of Combustion of Liquid Biofuel Drops; Chemical and Petroleum Engineering; Vol. 58, iss. 3-4
Publicado: (2022)
Publicado: (2022)
Ignition of Forest Combustible Materials in a High-Temperature Medium; Journal of Engineering Physics and Thermophysics; Vol. 93, iss. 5
por: Baranovskiy N. V. Nikolay Viktorovich
Publicado: (2020)
por: Baranovskiy N. V. Nikolay Viktorovich
Publicado: (2020)
Bimetal Fuels for Energetic Materials: Chap. 7; Innovative Energetic Materials: Properties, Combustion Performance and Application
Publicado: (2020)
Publicado: (2020)
Experimental study on the ignition and combustion characteristics of TMEDA and WFNA in hypergolic fuel systems; Acta Astronautica; Vol. 236
Publicado: (2025)
Publicado: (2025)
A comparison of ignition characteristics of slurry fuels prepared using coal processing waste and finely divided coal; Journal of the Energy Institute; Vol. 92, iss. 4
por: Vershinina K. Yu. Kseniya Yurievna
Publicado: (2019)
por: Vershinina K. Yu. Kseniya Yurievna
Publicado: (2019)
Mathematical simulation of ignition of an organic coal–water fuel droplet; Journal of Engineering Physics and Thermophysics; Vol. 94, iss. 4
Publicado: (2021)
Publicado: (2021)
Ignition of bio-water-coal fuel drops; Energy; Vol. 203
Publicado: (2020)
Publicado: (2020)
Conditions of the Water–Coal Fuel Drop Dispersion at Their Ignition in the Conditions of High-Temperature Heating; Combustion Science and Technology; Vol. 191, iss. 12
Publicado: (2018)
Publicado: (2018)
Mathematical modeling of the wood biomass particles thermal decomposition process; Biomass and Bioenergy; Vol. 203
Publicado: (2025)
Publicado: (2025)
Investigating regularities of gas hydrate ignition on a heated surface: Experiments and modelling; Combustion and Flame; Vol. 228
por: Gaydukova O. S. Olga Sergeevna
Publicado: (2021)
por: Gaydukova O. S. Olga Sergeevna
Publicado: (2021)
Ignition and combustion of high-energy materials containing aluminum, boron and aluminum diboride; MATEC Web of Conferences; Vol. 194 : Heat and Mass Transfer in the Thermal Control System of Technical and Technological Energy Equipment (HMTTSC 2018)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (Les Ulis, EDP Sciences, 2018)
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (Les Ulis, EDP Sciences, 2018)
Theoretical justification of utilization of forest waste by incineration in a composition of bio-water-coal suspensions. Ignition stage; Applied Thermal Engineering; Vol. 170
Publicado: (2020)
Publicado: (2020)
Mathematical Modeling of Ignition of Droplets of Coal-Water SlurryContaining Petrochemicals Using Ansys Fluent; Momentum, Heat and Mass Transfer (MHMT'17)
Publicado: (2017)
Publicado: (2017)
The influence of aluminum and ammonium perchlorate dispersion on characteristics of the laser ignition; Science and Technology of Energetic Materials; Vol. 79, iss. 6
Publicado: (2018)
Publicado: (2018)
Influence of filtration heat transfer on parameters and conditions for ignition of coal-water fuel particles; Thermophysics and Aeromechanics; Vol. 26, iss. 5
por: Syrodoy S. V. Semen Vladimirovich
Publicado: (2020)
por: Syrodoy S. V. Semen Vladimirovich
Publicado: (2020)
Effect of the Kinetic Model of Pyrolysis on Prognostic Estimates of Ignition Characteristics of Wood Particles; Combustion, Explosion, and Shock Waves; Vol. 55, iss. 2
por: Kuznetsov G. V. Geny Vladimirovich
Publicado: (2019)
por: Kuznetsov G. V. Geny Vladimirovich
Publicado: (2019)
Coagulation and splitting of droplets of coal-water slurry containing petrochemicals and their effect on ignition characteristics; Applied Thermal Engineering; Vol. 116
por: Kuznetsov G. V. Geny Vladimirovich
Publicado: (2017)
por: Kuznetsov G. V. Geny Vladimirovich
Publicado: (2017)
Characteristics and conditions for ignition of bio-coal mixtures based on coal and forest combustible material; Journal of the Energy Institute; Vol. 93, iss. 5
Publicado: (2020)
Publicado: (2020)
High-speed contactless measurements of temperature evolution during ignition and combustion of coal-based fuel pellets; International Journal of Heat and Mass Transfer; Vol. 175
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2021)
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2021)
Ignition of wood and coal particle mixtures in conditions of steam and water boiler furnaces; Journal of the Energy Institute; Vol. 93, iss. 2
Publicado: (2020)
Publicado: (2020)
New Method for Studying the Ignition Characteristics of Condensed Systems by Laser Radiation; Russian Physics Journal; Vol. 62, iss. 11
Publicado: (2020)
Publicado: (2020)
Predicting ignition delay times of multi-component fuels: empirical mathematical expressions for engineering evaluations; International Journal of Coal Preparation and Utilization; Vol. 45
Publicado: (2025)
Publicado: (2025)
Initiation of combustion of coal particles coated with a water film in a high-temperature air flow; Combustion, Explosion, and Shock Waves; Vol. 52, iss. 5
Publicado: (2016)
Publicado: (2016)
Numerical simulation of ignition of a typical gel fuel particle, based on organic polymer thickener, in a high-temperature air medium; Acta Astronautica; Vol. 178
Publicado: (2021)
Publicado: (2021)
Influence of heating intensity and size of gel fuel droplets on ignition characteristics; International Journal of Heat and Mass Transfer; Vol. 156
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2020)
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2020)
Mathematical Model of the Ignition of a Gel Fuel Particle in a High-Temperature Air Medium; Russian Journal of Physical Chemistry B; Vol. 17, iss. 1
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2023)
por: Glushkov D. O. Dmitry Olegovich
Publicado: (2023)
Títulos similares
-
Laser Ignition of Aluminum and Boron Based Powder Systems; Combustion, Explosion, and Shock Waves; Vol. 58, iss. 4
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022) -
Study of Ignition of High-Energy Materials with Boron and Aluminum and Titanium Diborides; Combustion, Explosion, and Shock Waves; Vol. 54, iss. 3
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2018) -
Ignition of High Energy Material Containing Ultradispersed Al/B Powder; Russian Journal of Physical Chemistry B; Vol. 16, iss. 2
por: Korotkikh A. G. Aleksandr Gennadievich
Publicado: (2022) -
Ignition and Combustion of Composite Solid Propellants Based on a Double Oxidizer and Boron-Based Additives; Russian Journal of Physical Chemistry B; Vol. 14, iss. 4
Publicado: (2020) -
Effect of Ultrafine Al/B, Ti/B, and Fe/B Powders on the Ignition and Combustion Characteristics of High-Energy Materials; Combustion, Explosion, and Shock Waves; Vol. 59, iss. 6
por: Sorokin I. V. Ivan Viktorovich
Publicado: (2023)