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Removal of powders from cavities in contaminated surfaces by shock and plasma generated by an adjacent electro-static discharge
Shomik Mukhopadhyay
, Khushi Patel
,
Mirko Schoenitz
,
Edward L. Dreizin
Chemical and Materials Engineering
Center of Materials for Advanced Energetics
Research output
:
Contribution to journal
›
Article
›
peer-review
1
Scopus citations
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Dive into the research topics of 'Removal of powders from cavities in contaminated surfaces by shock and plasma generated by an adjacent electro-static discharge'. Together they form a unique fingerprint.
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Keyphrases
Shock
100%
Electrostatic Discharge
100%
Contaminated Surfaces
100%
Ejected Electrons
50%
Particle Size
16%
Deep Cavity
16%
Mechanical Properties
16%
Particle number
16%
Velocity Gradient
16%
Local Velocity
16%
Powder Particles
16%
Air Gap
16%
Contactless
16%
Glass Beads
16%
High-speed Video
16%
Capacitors
16%
Discharge Energy
16%
Powder Layer
16%
Cavity Depth
16%
Complete Removal
16%
Initial Velocity
16%
Lift Force
16%
Filling Cavity
16%
Pin Electrode
16%
Discharge Pulse
16%
Powder Filling
16%
Particle Layer
16%
Engineering
Electrostatic Discharge
100%
Generated Plasma
100%
Shallower
20%
Powder Particle
20%
Velocity Gradient
20%
Initial Velocity
20%
Powder Layer
20%
Glass Bead
20%
Discharge Energy
20%
Lift Force
20%
Local Velocity
20%