International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combustion,in which core equations are based on condensed phase mechanisms only. We explore all combinations of fuels/oxidizers, namely Al, Zr, B/CuO, Fe2O3, WO3, and Pb3O4, with 60 % of thetheoretical maximum density packing, at which condensed phase mechanisms govern the reaction.Aluminothermites offer the best performances, with initiation delays in the range of a few tens ofmicroseconds, and faster burn rates (60 cm s−1for CuO). B and Zr based thermites are primarily limited by diffusion characteristics in their oxides that are more stringent than the common Al2O3barrier layer. Combination of a poor thermal conductivity and efficient oxygen dif...
Flame propagation in a confined tube configuration was evaluated for aluminum (Al) and molybdenum tr...
Aluminum is being used as the fuel in the combustion of composite energetic materials because of its...
Nanoenergetic materials have some advantages against micrometric and bulk materials. This is due to ...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
Nanocomposite energetics are a relatively new class of materials that combine nanoscale fuels and ox...
Nanoscale thermites such as the composite mixture of nano-sized aluminum and molybdenum trioxide pow...
International audienceNanothermites are interesting energetic systems as their combustion driven by ...
International audienceThis work investigates the combustion of porous Al/CuO thermites, i.e. nanolam...
Abstract only availableFaculty Mentor: Dr. Shubhra Gangopadhyay, Electrical &Computer EngineeringEle...
Thermites enable the release of large amounts of heat accompanied with low gas production. This offe...
This thesis investigates the various important parameters such as oxidizers’ morphology, size, equiv...
Ce travail de thèse porte sur la compréhension et la modélisation de la combustion de mélange de nan...
This work investigates combustion of nanocomposite thermite powders prepared by arrested reactive mi...
Flame propagation in a confined tube configuration was evaluated for aluminum (Al) and molybdenum tr...
Aluminum is being used as the fuel in the combustion of composite energetic materials because of its...
Nanoenergetic materials have some advantages against micrometric and bulk materials. This is due to ...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
Nanocomposite energetics are a relatively new class of materials that combine nanoscale fuels and ox...
Nanoscale thermites such as the composite mixture of nano-sized aluminum and molybdenum trioxide pow...
International audienceNanothermites are interesting energetic systems as their combustion driven by ...
International audienceThis work investigates the combustion of porous Al/CuO thermites, i.e. nanolam...
Abstract only availableFaculty Mentor: Dr. Shubhra Gangopadhyay, Electrical &Computer EngineeringEle...
Thermites enable the release of large amounts of heat accompanied with low gas production. This offe...
This thesis investigates the various important parameters such as oxidizers’ morphology, size, equiv...
Ce travail de thèse porte sur la compréhension et la modélisation de la combustion de mélange de nan...
This work investigates combustion of nanocomposite thermite powders prepared by arrested reactive mi...
Flame propagation in a confined tube configuration was evaluated for aluminum (Al) and molybdenum tr...
Aluminum is being used as the fuel in the combustion of composite energetic materials because of its...
Nanoenergetic materials have some advantages against micrometric and bulk materials. This is due to ...