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Thermal gelation of cellulose based suspensions
Leevi Viitanen
*
, Isaac Y. Miranda-Valdez
, Juha Koivisto
,
Antti Puisto
, Mikko Alava
*
Corresponding author for this work
BA5510 ProperTune Soft Condensed Materials
Aalto University
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
5
Citations (Scopus)
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Keyphrases
Cellulose-based
100%
Methylcellulose
100%
Thermal Gelation
100%
Cellulose Fibers
33%
Fabrication Methods
33%
Rheological Properties
33%
Rheology
33%
Drying Process
33%
Sustainable Future
33%
Material Choice
33%
Liquid Foam
33%
Material Composition
33%
Bioproducts
33%
Rheological Test
33%
Additive Materials
33%
Gelation Properties
33%
Plastic Foam
33%
Biodegradable Foam
33%
Foam Templating
33%
Material Influence
33%
Shaping Process
33%
Packaging Insulation
33%
Drying Stages
33%
Solid Foams
33%
Precise Term
33%
INIS
cellulose
100%
gelation
100%
suspensions
100%
foams
83%
fibers
66%
applications
33%
drying
33%
production
16%
stability
16%
packaging
16%
additives
16%
liquids
16%
solids
16%
scaling
16%
fabrication
16%
rheology
16%
plastic foams
16%
Material Science
Rheology
100%
Foamed Plastics
100%