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Fracture resistance of hybrid PP/elastomer/wood composites
A. Sudár
, K. Renner
*
, J. Móczó
, T. Lummerstorfer
,
Ch Burgstaller
, M. Jerabek
, M. Gahleitner
, P. Doshev
, B. Pukánszky
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
peer-review
49
Citations (Scopus)
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Keyphrases
Wood Plastic Composites
100%
Elastomer
100%
Fracture Resistance
100%
Wood
83%
Plastic Deformation
33%
Interfacial Adhesion
33%
Wood Fiber
33%
Cavitation
33%
Impact Resistance
33%
Polypropylene
16%
Processing Conditions
16%
Particle Size
16%
Functional Polymers
16%
Stiffness
16%
Hybrid System
16%
Fiber Fracture
16%
Fracture Toughness
16%
Coupling Agent
16%
Matrix Polymer
16%
Micromechanical Deformation
16%
Reinforced Composites
16%
Local Stress
16%
Three-component Material
16%
Two-component Composite
16%
Fiber Debonding
16%
Particle Characteristics
16%
Material Science
Composite Material
100%
Elastomer
100%
Fracture Toughness
100%
Plastic Deformation
33%
Impact Resistance
33%
Composite Material
16%
Polypropylene
16%
Debonding
16%
Coupling Agent
16%
Reinforced Composite
16%