A general theory of ignition and combustion of nano- and micron-sized aluminum particles is developed. The oxidation process is divided into several stages based on phase transformations and chemical reactions. Characteristic time scales of different processes are compared to identify physicochemical phenomena in each stage. In the first stage, the particle is heated to the melting temperature of the aluminum core. Key processes are heat and mass transfer between the gas and particle surface and diffusion of mass and energy inside the particle. The second stage begins upon melting of the aluminum core. Melting results in pressure buildup, thereby facilitating mass diffusion and/or cracking of the oxide layer. Melting is followed by polymorp...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
The prominent aim of this investigation was the examination of the in-principle feasibility of alumi...
To prompt the application of aluminum nanoparticles (ANPs) in combustion as the fuel additive and in...
A mechanistic model for the ignition and combustion of an isolated aluminum particle burning in air ...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Ignition prediction of aluminum particle is of great significance for a variety of propulsion and po...
While the nano-sized energetic materials are featured with ultra-high energy density, the ubiquitous...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
A mathematical model of high-temperature oxidation of a nanosize aluminum particle has been presente...
Micro and nano aluminum (Al) particles have drawn much attention for properties as metal fuels in en...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
The prominent aim of this investigation was the examination of the in-principle feasibility of alumi...
To prompt the application of aluminum nanoparticles (ANPs) in combustion as the fuel additive and in...
A mechanistic model for the ignition and combustion of an isolated aluminum particle burning in air ...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Ignition prediction of aluminum particle is of great significance for a variety of propulsion and po...
While the nano-sized energetic materials are featured with ultra-high energy density, the ubiquitous...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
Experimental measurements of aluminum ignition temperature and models used to describe aluminum igni...
A mathematical model of high-temperature oxidation of a nanosize aluminum particle has been presente...
Micro and nano aluminum (Al) particles have drawn much attention for properties as metal fuels in en...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
International audienceAluminum nanopowders, oxidized at different temperatures using thermogravimetr...
The prominent aim of this investigation was the examination of the in-principle feasibility of alumi...
To prompt the application of aluminum nanoparticles (ANPs) in combustion as the fuel additive and in...