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Aluminum Powder Heat and Combustion Modeling Inside the Detonation Products of High Explosives

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  • ParisTech

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Résumé

Aluminum particles are currently used in high explosives to improve blast and ballistic efficiencies. While their heat and combustion modeling has been the scope of many studies in gas-aluminum detonation and in propellant combustion, it has not been completely addressed in detonation products of condensed high explosives (HE). In gas-aluminum detonation and propellant combustion, it is generally assumed a constant aluminum melting temperature, incompressible particles and uniform temperature inside the particles. The thermodynamic states obtained inside such situations are far from those obtained in high explosive detonation. In particular, the aluminum melting temperature cannot be considered constant and the hypothesis of temperature uniformity inside the aluminum particles is no longer valid for particles heated by a high speed and high temperature flow. This paper proposes a new model of aluminum particles heating and combustion in the high speed flow generated by HE detonation, based on a two-phase approach.

langue originaleAnglais
titreProceedings - 16th International Detonation Symposium, IDS 2018
EditeurJohns Hopkins University WSE Energetics Research Group
Pages1410-1419
Nombre de pages10
ISBN (Electronique)9798331326340
étatPublié - 1 janv. 2018
Modification externeOui
Evénement16th International Detonation Symposium, IDS 2018 - Cambridge, États-Unis
Durée: 15 juil. 201820 juil. 2018

Série de publications

NomProceedings - 16th International Detonation Symposium, IDS 2018

Une conférence

Une conférence16th International Detonation Symposium, IDS 2018
Pays/TerritoireÉtats-Unis
La villeCambridge
période15/07/1820/07/18

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