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Hybridization effect of cellulose paper and postcuring conditions on the mechanical properties of flax fiber reinforced epoxy biocomposite
Mohammed Khalifa
*
, Alexander Berndt
,
C. Shamitha
, Stefan Pichler
, Herfried Lammer
, Guenter Wuzella
*
Corresponding author for this work
Department of Electronics and Communication Engineering, Manipal Institute of Technology, Bengaluru
Manipal Institute of Technology, Bengaluru
Research output
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Article
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peer-review
12
Citations (Scopus)
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INIS
absorption
20%
adhesion
20%
applications
40%
automobiles
20%
cellulose
100%
cross-linking
20%
defects
20%
demand
20%
density
20%
epoxides
100%
fibers
100%
fractography
20%
gain
20%
hybridization
100%
increasing
20%
infusion
20%
mechanical properties
100%
petroleum
20%
polymers
20%
sustainability
20%
sustainable development
20%
swelling
40%
tensile strength
20%
thickness
40%
uptake
20%
water
60%
yields
20%
Material Science
Biocomposites
100%
Density
33%
Flax
100%
Fractography
33%
Natural Fibre
33%
Polymer Network
33%
Synthetic Fiber
66%
Ultimate Tensile Strength
33%
Vacuum Infusion
33%
Young's Modulus
33%