International audienceNanothermites are interesting energetic systems as their combustion driven by the oxidation of the metallic fuel associated with the reduction of the oxidizer, can produce extremely fast burning rates exceeding hundreds of m.s-1. In addition, by changing the reactant (composition, stoichiometry) geometry and compaction conditions, the control of the burning rate can be achieved, allowing the designer to customize the chemical energy for each application. To date, only rough combustion models exist, most restricting the combustion mechanisms to only condensed phase processes, thus providing an approximative prediction of structure-combustion performance relationships. This work presents a tri-phasic model for the combus...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceThis theoretical work aims to understand the influence of nanopores at CuO-Al ...
In this work, the energetic Al/CuO nano-thermite is chosen as a promising additive to improve the re...
International audienceNanothermites are interesting energetic systems as their combustion driven by ...
Ce travail de thèse porte sur la compréhension et la modélisation de la combustion de mélange de nan...
The characteristics of ignition and extinction in thermites and intermetallics are a subject of inte...
Oxidizer and fuel particles are the ingredients of classical pyrotechnics. Beside the concentration ...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
International audienceThe paper proposes a new theoretical model based on local thermodynamic equili...
A mechanistic model for the ignition and combustion of an isolated aluminum particle burning in air ...
Micro and nano aluminum (Al) particles have drawn much attention for properties as metal fuels in en...
National audienceThis thesis work deals with understanding and modeling the combustion of a mixture ...
A general theory of ignition and combustion of nano- and micron-sized aluminum particles is develope...
Les thermites, matériaux énergétiques composites à base de métaux et d'oxydes, sont des candidats pr...
International audienceA model based uniquely on condensed phase reactions coupled with the thermal e...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceThis theoretical work aims to understand the influence of nanopores at CuO-Al ...
In this work, the energetic Al/CuO nano-thermite is chosen as a promising additive to improve the re...
International audienceNanothermites are interesting energetic systems as their combustion driven by ...
Ce travail de thèse porte sur la compréhension et la modélisation de la combustion de mélange de nan...
The characteristics of ignition and extinction in thermites and intermetallics are a subject of inte...
Oxidizer and fuel particles are the ingredients of classical pyrotechnics. Beside the concentration ...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
International audienceThe paper proposes a new theoretical model based on local thermodynamic equili...
A mechanistic model for the ignition and combustion of an isolated aluminum particle burning in air ...
Micro and nano aluminum (Al) particles have drawn much attention for properties as metal fuels in en...
National audienceThis thesis work deals with understanding and modeling the combustion of a mixture ...
A general theory of ignition and combustion of nano- and micron-sized aluminum particles is develope...
Les thermites, matériaux énergétiques composites à base de métaux et d'oxydes, sont des candidats pr...
International audienceA model based uniquely on condensed phase reactions coupled with the thermal e...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceThis theoretical work aims to understand the influence of nanopores at CuO-Al ...
In this work, the energetic Al/CuO nano-thermite is chosen as a promising additive to improve the re...