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Wet fibre-laden foams in axial mixing with macro-instabilities
Jukka Ketoja
, Ahmad Al-Qararah
,
Tuomo Hjelt
,
Antti Koponen
,
Ali Harlin
Tafila Technical University
Research output
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›
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›
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Keyphrases
Air Content
100%
Axial Mixing
100%
Bubble Interface
25%
Bubble Size
75%
Capillary number
25%
Carrier Phase
25%
Cellulose Fibers
25%
Fiber Foam
100%
Fiber Structure
25%
Foam Rheology
25%
Foaming Properties
50%
High-speed Rotation
25%
Knowledge-how
25%
Macro-instability
100%
Particle Structure
25%
Rheology Study
25%
Rotational Speed
50%
Rotational Surface
25%
Shear Rate
25%
Similar Parameter
25%
Surface Tension
50%
Wet Foam
25%
INIS
air
57%
bubbles
57%
capillaries
14%
carriers
14%
cellulose
14%
comparative evaluations
14%
fibers
100%
foams
100%
instability
100%
interfaces
14%
mixing
100%
particles
28%
range
14%
rheology
14%
rotation
42%
shear
14%
size
42%
speed
42%
stability
14%
surface tension
28%
Engineering
Air Content
100%
Broad Range
25%
Bubble Size
75%
Capillary Number
25%
Carrier Phase
25%
Cellulose Fiber
25%
Rheology
25%
Rotation Speed
75%
Shear Rate
25%
Material Science
Fiber Structure
50%
Rheology
50%
Surface Tension
100%