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Hyperkinetic deposition of nanopowders by supersonic rectangular jet impingement
V. Shukla,
G. Elliott
, B. Kear
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peer-review
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Dive into the research topics of 'Hyperkinetic deposition of nanopowders by supersonic rectangular jet impingement'. Together they form a unique fingerprint.
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Physics & Astronomy
jet impingement
100%
metal powder
58%
cold gas
57%
gas dynamics
54%
coatings
47%
sprayers
44%
nozzle design
37%
Schlieren photography
35%
supersonic nozzles
33%
flapping
32%
rollers
28%
stagnation point
28%
spraying
26%
flow visualization
26%
shear layers
25%
Mach number
23%
nozzles
21%
dissipation
18%
kinetic energy
18%
shock
18%
illumination
17%
steels
17%
vortices
17%
injection
17%
aluminum
16%
physics
14%
pulses
11%
lasers
10%
Engineering & Materials Science
Gas dynamics
45%
Powder metals
44%
Coatings
39%
Substrates
37%
Laser pulses
22%
Photography
21%
Spraying
19%
Kinetic energy
18%
Mach number
17%
Physics
15%
Vortex flow
15%
Powders
14%
Lighting
14%
Steel
10%
Earth & Environmental Sciences
coating
44%
substrate
36%
spray
34%
metal
21%
photography
19%
gas
17%
kinetic energy
16%
dissipation
16%
vortex
15%
visualization
14%
physics
14%
aluminum
14%
laser
13%