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Healing potential of hybrid materials for structural composites
Erdem Selver
, Prasad Potluri
, Costas Soutis
, Paul Hogg
Kahramanmaras Sutcu Imam University
University of Manchester
Royal Holloway University of London
Research output
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peer-review
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INIS
hybrids
100%
healing
100%
fibers
75%
polypropylene
75%
compression
50%
damage
50%
epoxides
50%
comparative evaluations
25%
investigations
25%
loading
25%
energy
25%
cracks
25%
glass
25%
weight
25%
matrices
25%
resins
25%
reduction
25%
heating
25%
heat treatments
25%
impact strength
25%
araldite
25%
Engineering
Hybrid Yarn
100%
Cross-Ply Laminate
50%
Heat Treatment Process
50%
Loading Condition
50%
Induced Damage
50%
Epoxy Matrix
50%
Damage Area
50%
Impact Loads
50%
Impact Strength
50%
Hybrid Composite
50%
Local Heating
50%
Strength Improvement
50%
Material Science
Hybrid Material
100%
Polypropylene
100%
Structural Composite Material
100%
Composite Material
33%
Impact Loads
33%
Heat Treatment
33%
Epoxy
33%
Impact Strength
33%