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

Manylion Llyfryddiaeth
Parent link:Journal of Physics: Conference Series
Vol. 1675 : Thermophysics and Physical Hydrodynamics.— 2020.— [012067, 6 p.]
Prif Awdur: Sorokin I. V. Ivan Viktorovich
Awdur Corfforaethol: Национальный исследовательский Томский политехнический университет Инженерная школа энергетики Научно-образовательный центр И. Н. Бутакова (НОЦ И. Н. Бутакова)
Awduron Eraill: Korotkikh A. G. Aleksandr Gennadievich, Selikhova E. A. Ekaterina Aleksandrovna
Crynodeb:Title screen
The use of metal powder as fuel in high-energy materials (HEM) for propulsion is the most energy-efficient method to increase the burning rate, combustion temperature, and specific impulse. Typically, various dispersity aluminum powders are used in the HEM composition. To improve the ignition and combustion characteristics of the HEM composition it is advisable to use the catalysts (nonmetals, metals or their oxides). This paper presents the experimental data of the HEM samples ignition containing ammonium perchlorate, butadiene rubber, micron powders of aluminum, aluminum-magnesium alloy, as well as nanopowders of amorphous boron, aluminum-copper, and aluminum-boron mixtures. The use of aluminumcopper or aluminum-boron nanopowders in the HEM composition decreases the ignition delay time by 1.3–2.0 times in comparison with Al-based HEM during CO2 laser initiation. In the case of Al-Mg powder use, the ignition delay time is changed slightly.
Iaith:Saesneg
Cyhoeddwyd: 2020
Pynciau:
Mynediad Ar-lein:http://earchive.tpu.ru/handle/11683/81001
https://doi.org/10.1088/1742-6596/1675/1/012067
Fformat: xMaterials Electronig Pennod Llyfr
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=664861

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330 |a The use of metal powder as fuel in high-energy materials (HEM) for propulsion is the most energy-efficient method to increase the burning rate, combustion temperature, and specific impulse. Typically, various dispersity aluminum powders are used in the HEM composition. To improve the ignition and combustion characteristics of the HEM composition it is advisable to use the catalysts (nonmetals, metals or their oxides). This paper presents the experimental data of the HEM samples ignition containing ammonium perchlorate, butadiene rubber, micron powders of aluminum, aluminum-magnesium alloy, as well as nanopowders of amorphous boron, aluminum-copper, and aluminum-boron mixtures. The use of aluminumcopper or aluminum-boron nanopowders in the HEM composition decreases the ignition delay time by 1.3–2.0 times in comparison with Al-based HEM during CO2 laser initiation. In the case of Al-Mg powder use, the ignition delay time is changed slightly. 
461 0 |0 (RuTPU)RU\TPU\network\3526  |t Journal of Physics: Conference Series 
463 |t Vol. 1675 : Thermophysics and Physical Hydrodynamics  |o 5th All-Russian Scientific Conference with the School for Young Scientists (TPH-2020) 13-20 September 2020, Yalta, Crimea  |o [proceedings]  |v [012067, 6 p.]  |d 2020 
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700 1 |a Sorokin  |b I. V.  |c Specialist in the field of heat and power engineering  |c Engineer of Tomsk Polytechnic University  |f 1992-  |g Ivan Viktorovich  |3 (RuTPU)RU\TPU\pers\45838 
701 1 |a Korotkikh  |b A. G.  |c specialist in the field of power engineering  |c Professor of Tomsk Polytechnic University, Doctor of Physical and Mathematical Sciences  |f 1976-  |g Aleksandr Gennadievich  |3 (RuTPU)RU\TPU\pers\34763  |9 18113 
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