Experimental Testing, Manufacturing and Numerical Modelling of Composite and Sandwich Structures

"Experimental Testing, Manufacturing and Numerical Modelling of Composite and Sandwich Structures" is an essential resource for researchers, engineers, and industry professionals in materials science and engineering. This comprehensive volume covers the latest advancements in the character...

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Published Basel MDPI - Multidisciplinary Digital Publishing Institute 2024
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Abstract "Experimental Testing, Manufacturing and Numerical Modelling of Composite and Sandwich Structures" is an essential resource for researchers, engineers, and industry professionals in materials science and engineering. This comprehensive volume covers the latest advancements in the characterization, manufacturing, behaviour prediction, and sustainability of composite and sandwich structures. The special issue begins with an editorial overview, followed by detailed papers on the effects of high-current pulsed electron beams, graphene aerogels, fatigue life prediction in carbon fibre-reinforced polyamide-6, and fracture behaviour under biaxial tensile loads. It details innovative manufacturing techniques, such as machining processes and coating methods, and presents sophisticated models to predict the composite behaviour under various stresses. The special issue also explores the optimization of adhesive joints, non-destructive inspection techniques for sandwich structures, and the performance of materials in high-speed trains and piezoelectric actuators. Additionally, it addresses the need for sustainability with biocomposite materials derived from Andropogon halepensis and biodegradable composites using caffeine-treated wood. This volume aims to bridge the gap between theoretical research and practical application, offering detailed experimental and numerical insights to advance the knowledge and application of composite and sandwich structures.
AbstractList "Experimental Testing, Manufacturing and Numerical Modelling of Composite and Sandwich Structures" is an essential resource for researchers, engineers, and industry professionals in materials science and engineering. This comprehensive volume covers the latest advancements in the characterization, manufacturing, behaviour prediction, and sustainability of composite and sandwich structures. The special issue begins with an editorial overview, followed by detailed papers on the effects of high-current pulsed electron beams, graphene aerogels, fatigue life prediction in carbon fibre-reinforced polyamide-6, and fracture behaviour under biaxial tensile loads. It details innovative manufacturing techniques, such as machining processes and coating methods, and presents sophisticated models to predict the composite behaviour under various stresses. The special issue also explores the optimization of adhesive joints, non-destructive inspection techniques for sandwich structures, and the performance of materials in high-speed trains and piezoelectric actuators. Additionally, it addresses the need for sustainability with biocomposite materials derived from Andropogon halepensis and biodegradable composites using caffeine-treated wood. This volume aims to bridge the gap between theoretical research and practical application, offering detailed experimental and numerical insights to advance the knowledge and application of composite and sandwich structures.
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SubjectTerms active learning
adhesive
Al-20SiC
Andropogon halepensis
anisotropy
antioxidant activity
Astronomy, space and time
bending characterization
biaxial test
biocomposites
biological resistance
bond strength test
brittle
buckling
caffeine
carbon fiber composite
carbon fibers
carbon-fiber-reinforced plastics
cerium dioxide
CFRP
CFRP ultrasonic welding
composite
composite boom
composite materials
concrete structures
continuum damage mechanics
crack
defect identification
defect quantification
deformation
delamination
ductile
elastic modulus
environmental aging
epoxy
epoxy resin
experimental testing
failure criterion
fatigue life prediction
feed force
fiber-reinforced composite
filament winding
filler modification
finite element method (FEM)
fracture mode
geopolymer concrete
glass-fiber-reinforced plastics
glass-fibre-reinforced plastics (GFRPs)
graphene
graphene aerogel
graphene nanoplatelets (GNPs)
heterojunction
high current pulsed electron beam
high-speed train
honeycomb core composite
injection molding process
interfacial strength
laying scheme
lithium-sulfur battery
low-velocity impact
LQR control algorithm
machine learning
macro fiber composite
Mathematics and Science
mechanical properties
microhardness
milling
molecular dynamics
multi-objective optimization
n/a
nanocomposite
nondestructive testing
notch
numerical simulation
optimal design
Pholcus phalangioides
piezoelectric actuator
polylactide
powder metallurgy
pressureless forming
protective coatings
recurrence method
Reference, Information and Interdisciplinary subjects
Research and information: general
rubber polymer concretes
sandwich beam
sandwich-structured material
silver nanoparticles
sound absorption material
sound insulation
sound-insulation material
spider silk
stainless steel
strength analysis
structure
temperature effect
thin-walled elements
tool parameters
tool wear
unidirectional laminate
wear resistance
wind turbine blades
wood
woven-fabric composites
“green” synthesis
Title Experimental Testing, Manufacturing and Numerical Modelling of Composite and Sandwich Structures
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