Engineering new solid propellant materials requires optimization of several factors, to include energy density, burn rate, sensitivity, and environmental impact. Equally important is the need for materials that will maintain their mechanical properties and thermal stability during long periods of storage. The nanoscale materials considered in this dissertation are proposed metal additives that may enhance energy density and improve combustion in a composite rocket motor. Density Functional Theory methods are used to determine cluster geometries, bond strengths, and energy densities. The ground-state geometries and electron affinities (EAs) for MnxO?: x = 3, 4, y = 1, 2 clusters were calculated with GGA, and estimates for the vertical deta...
In this thesis, we study the feasibility of improving aluminum-carbon repulsive potentials for use i...
Metal-based composite energetic materials have substantially higher volumetric energy density when c...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...
2016-08-08This dissertation is focused on molecular dynamics (MD) simulation of energetic materials....
Combustion is the world’s leading energy conversion method in which a fuel and oxidizer react and re...
Energetic nanocomposites are a class of reactive material that incorporate nanosized materials or fe...
Metastable Intermolecular Composites (MIC’s) are a relatively new class of reactive materials which,...
This dissertation examines the electronic structure and thermochemistry of low-valent aluminum clust...
Metallizing liquid fuels and propellants to improve performance of energy conversion and propulsion ...
Conventional energetic materials which are based on monomolecular compounds such as trinitrotoluene ...
This dissertation studies how nanoadditives influence burning rates through the development and use ...
In this article authors present a classification, description and competitive analyze of the main me...
Elemental boron is a highly attractive fuel for propellants and explosives, but in order to increase...
Several industrial- and research – type fuel rich solid rocket propellants containing nano-metric al...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
In this thesis, we study the feasibility of improving aluminum-carbon repulsive potentials for use i...
Metal-based composite energetic materials have substantially higher volumetric energy density when c...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...
2016-08-08This dissertation is focused on molecular dynamics (MD) simulation of energetic materials....
Combustion is the world’s leading energy conversion method in which a fuel and oxidizer react and re...
Energetic nanocomposites are a class of reactive material that incorporate nanosized materials or fe...
Metastable Intermolecular Composites (MIC’s) are a relatively new class of reactive materials which,...
This dissertation examines the electronic structure and thermochemistry of low-valent aluminum clust...
Metallizing liquid fuels and propellants to improve performance of energy conversion and propulsion ...
Conventional energetic materials which are based on monomolecular compounds such as trinitrotoluene ...
This dissertation studies how nanoadditives influence burning rates through the development and use ...
In this article authors present a classification, description and competitive analyze of the main me...
Elemental boron is a highly attractive fuel for propellants and explosives, but in order to increase...
Several industrial- and research – type fuel rich solid rocket propellants containing nano-metric al...
The nanosized powders have gained attention to produce materials exhibiting novel properties and for...
In this thesis, we study the feasibility of improving aluminum-carbon repulsive potentials for use i...
Metal-based composite energetic materials have substantially higher volumetric energy density when c...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...