Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures

Detalhes bibliográficos
Autor(a) principal: Durães, Luísa
Data de Publicação: 2006
Outros Autores: Campos, José, Portugal, António
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/10316/8184
https://doi.org/10.1002/prep.200600006
Resumo: The self-sustained thermite reaction between iron oxide (Fe2O3) and aluminum is a classical source of energy. In this work the radial combustion propagation on thin circular samples of stoichiometric and over aluminized Fe2O3/Al thermite mixtures is studied. The radial geometry allows an easy detection of sample heterogeneities and the observation of the combustion behavior in their vicinity. The influence of factors like reactant mixtures stoichiometry, samples green density and system geometry on the rate of propagation of the combustion front is analyzed. The radial combustion front profiles are registered by digital video-crono-photography. Combustion thermograms are obtained for two sample radii. Theoretical calculations, based on the impurity levels reported by the reactants manufacturers and on the thermite reaction stoichiometry, were used to define the stoichiometric mixture with unitary equivalence ratio (E. R.). However, it was found from the experimental results that the excess of aluminum only starts for E. R. values between 1.12 and 1.27. This was explained by the further oxidation of aluminum during storage and/or by the reaction incompleteness. In the range studied, the combustion rates of the thermite mixtures did not show any significant dependence on the green density. Combustion rates obtained in this work were slightly higher than those obtained in an earlier work for long square channel geometry. A considerable dispersion of temperature values was observed and attributed to thermocouples sensitivity to micro-scale variations.
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spelling Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite MixturesThe self-sustained thermite reaction between iron oxide (Fe2O3) and aluminum is a classical source of energy. In this work the radial combustion propagation on thin circular samples of stoichiometric and over aluminized Fe2O3/Al thermite mixtures is studied. The radial geometry allows an easy detection of sample heterogeneities and the observation of the combustion behavior in their vicinity. The influence of factors like reactant mixtures stoichiometry, samples green density and system geometry on the rate of propagation of the combustion front is analyzed. The radial combustion front profiles are registered by digital video-crono-photography. Combustion thermograms are obtained for two sample radii. Theoretical calculations, based on the impurity levels reported by the reactants manufacturers and on the thermite reaction stoichiometry, were used to define the stoichiometric mixture with unitary equivalence ratio (E. R.). However, it was found from the experimental results that the excess of aluminum only starts for E. R. values between 1.12 and 1.27. This was explained by the further oxidation of aluminum during storage and/or by the reaction incompleteness. In the range studied, the combustion rates of the thermite mixtures did not show any significant dependence on the green density. Combustion rates obtained in this work were slightly higher than those obtained in an earlier work for long square channel geometry. A considerable dispersion of temperature values was observed and attributed to thermocouples sensitivity to micro-scale variations.2006info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articlehttp://hdl.handle.net/10316/8184http://hdl.handle.net/10316/8184https://doi.org/10.1002/prep.200600006engPropellants, Explosives, Pyrotechnics. 31:1 (2006) 42-49Durães, LuísaCampos, JoséPortugal, Antónioinfo:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2020-05-29T09:42:37Zoai:estudogeral.uc.pt:10316/8184Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-19T20:59:18.182462Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
title Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
spellingShingle Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
Durães, Luísa
title_short Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
title_full Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
title_fullStr Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
title_full_unstemmed Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
title_sort Radial Combustion Propagation in Iron(III) Oxide/Aluminum Thermite Mixtures
author Durães, Luísa
author_facet Durães, Luísa
Campos, José
Portugal, António
author_role author
author2 Campos, José
Portugal, António
author2_role author
author
dc.contributor.author.fl_str_mv Durães, Luísa
Campos, José
Portugal, António
description The self-sustained thermite reaction between iron oxide (Fe2O3) and aluminum is a classical source of energy. In this work the radial combustion propagation on thin circular samples of stoichiometric and over aluminized Fe2O3/Al thermite mixtures is studied. The radial geometry allows an easy detection of sample heterogeneities and the observation of the combustion behavior in their vicinity. The influence of factors like reactant mixtures stoichiometry, samples green density and system geometry on the rate of propagation of the combustion front is analyzed. The radial combustion front profiles are registered by digital video-crono-photography. Combustion thermograms are obtained for two sample radii. Theoretical calculations, based on the impurity levels reported by the reactants manufacturers and on the thermite reaction stoichiometry, were used to define the stoichiometric mixture with unitary equivalence ratio (E. R.). However, it was found from the experimental results that the excess of aluminum only starts for E. R. values between 1.12 and 1.27. This was explained by the further oxidation of aluminum during storage and/or by the reaction incompleteness. In the range studied, the combustion rates of the thermite mixtures did not show any significant dependence on the green density. Combustion rates obtained in this work were slightly higher than those obtained in an earlier work for long square channel geometry. A considerable dispersion of temperature values was observed and attributed to thermocouples sensitivity to micro-scale variations.
publishDate 2006
dc.date.none.fl_str_mv 2006
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dc.identifier.uri.fl_str_mv http://hdl.handle.net/10316/8184
http://hdl.handle.net/10316/8184
https://doi.org/10.1002/prep.200600006
url http://hdl.handle.net/10316/8184
https://doi.org/10.1002/prep.200600006
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv Propellants, Explosives, Pyrotechnics. 31:1 (2006) 42-49
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