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Substrate role in coating of microfibrillated cellulose suspensions
Vinay Kumar
,
Venkata Rajesh Koppolu
, Douglas Bousfield
, Martti Toivakka
Not published at VTT
Åbo Akademi University
University of Maine
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
47
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Citations (Scopus)
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INIS
absorption
16%
adhesion
8%
air
8%
applications
8%
barriers
16%
capacity
16%
cellulose
100%
chemistry
8%
coatings
100%
comparative evaluations
8%
defects
8%
demand
8%
films
8%
gases
8%
geometry
8%
oils
8%
packaging
8%
permeability
8%
porosity
16%
roughness
16%
scanning electron microscopy
8%
solids
8%
substrates
100%
surface energy
8%
surfaces
66%
suspensions
100%
testing
8%
toxicity
8%
viscosity
8%
volume
8%
water
25%
weight
16%
yields
8%
Keyphrases
Adhesion to Substrate
11%
Air Permeability Test
11%
Cellulose Coating
22%
Coated Substrate
11%
Coated Surface
11%
Coating Ability
11%
Coating Adhesion
11%
Coating Coverage
11%
Coating Materials
11%
Coating Quality
33%
Coating Weight
22%
Energy Surface
11%
Free Film
11%
Gas Barrier Properties
11%
High Viscosity
11%
Highly Hydrophilic
11%
Highly Viscous
11%
Hydrophilic Surface
11%
Microfibrillated Cellulose
100%
Microsuspension
11%
Nanocellulose
11%
Nanocellulose Materials
11%
Nanocellulose Suspension
11%
Oil Barrier
11%
Packaging Applications
11%
Paper Coating
11%
Paper Substrate
22%
Paperboard
11%
Penetration Testing
11%
Rheological Behavior
11%
Roll-to-roll Process
11%
Scanning Electron Microscopy (SEM-EDS)
11%
Slot Geometry
11%
Smooth Surface
11%
Solid Content
11%
Strength Testing
11%
Substrate Properties
11%
Substrate Requirements
11%
Surface Chemistry
11%
Surface Energy
11%
Surface Porosity
22%
Surface Roughness
22%
Surface Strength
11%
Surface Water
11%
Water Absorption Capacity
22%
Yield Stress
11%
Material Science
Air Permeability
33%
Film
33%
Nanocellulose
100%
Paperboard
33%
Scanning Electron Microscopy
33%
Surface Energy
33%
Surface Roughness
66%
Yield Stress
33%