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Fast reactions of shocked energetic microporous metallic composites
Siva Kumar Valluri
, Lawrence Salvati
, Edward L. Dreizin
,
Dana D. Dlott
Chemistry
Materials Research Laboratory
Research output
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peer-review
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Keyphrases
Oxidizer
100%
Fast Reactions
100%
Metallic Composites
100%
Shock
75%
Composite Microparticles
50%
Arrested Reactive Milling
50%
Thermal Emission
50%
Internal Porosity
50%
Shock Compression
25%
Flyer Plate
25%
High Performance
25%
Particle Size
25%
Energy Release
25%
Chemical Reactivity
25%
Detonation
25%
Rate Limiting
25%
High-throughput Methods
25%
Explosives
25%
Shear Mixing
25%
Tabletop
25%
Transparent Polymer
25%
Octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine
25%
Radiance
25%
Thermal Image
25%
Combustion Reaction
25%
Internal Pores
25%
Microtome
25%
Organic Explosives
25%
Optical Pyrometer
25%
Porous Particles
25%
Emulsion Process
25%
Metal Composites
25%
Diffusion Mass Transfer
25%
Process Fluid
25%
Engineering
Energetics
100%
Oxidizer
100%
Porosity
75%
Microparticles
50%
Energy Release
50%
Nanosecond
25%
Diffusive
25%
Nanosecond Time
25%
Transparent Polymer
25%
Process Fluid
25%
Optical Pyrometer
25%
Mass Transport
25%
Physics
Energetics
100%
Porosity
100%
Metallic Composites
100%
Microparticles
66%
Thermal Emission
66%
Mass Transport
33%
Material Science
HMX
100%
Microparticle
50%
Polymer
25%