Production, Characterization, and Combustion of Nanoaluminum in Composite Solid Propellants
K. Jayaraman, Anand Krishnasamy, David Bhatt, S. R. Chakravarthy, R. Sarathi
Abstract
K. Jayaraman, Anand Krishnasamy, David Bhatt, S. R. Chakravarthy, R. Sarathi
Abstract
non- and microaluminized propellants are washed out with the addition of nano-Al, but the burning rates of nanoaluminized propellants register low pressure exponents in the elevated pressure range. The results suggest that the heat feedback from the diffusion-limited combustion of nano-Al particles near the propellant burning surface controls the propellant burning rate when sufficiently large parts of the burning surface are made up of the nanoaluminized fine ammonium-perchlorate/binder matrix.
OpenAlex reports 71 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
non- and microaluminized propellants are washed out with the addition of nano-Al, but the burning rates of nanoaluminized propellants register low pressure exponents in the elevated pressure range. The results suggest that the heat feedback from the diffusion-limited combustion of nano-Al particles near the propellant burning surface controls the propellant burning rate when sufficiently large parts of the burning surface are made up of the nanoaluminized fine ammonium-perchlorate/binder matrix.
Key concepts: Propellant, Ammonium perchlorate, Materials science, Combustion, Composite number, Burn rate (chemistry), Composite material, Monopropellant