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Fatigue and Fracture of Non-metallic Materials and Structures



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Autore: Spagnoli Andrea Visualizza persona
Titolo: Fatigue and Fracture of Non-metallic Materials and Structures Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica: 1 online resource (586 p.)
Soggetto topico: History of engineering and technology
Soggetto non controllato: ABAQUS FEA
Advanced materials
aeroelastic simulation
assessment
blast furnace slag
blow-off impulse
boundary effect
bridge decks
bridge evaluation
carbon fiber-reinforced polymers-CFRP
carbon-containing refractories
Ceramics
CFRP
chemical grouting
civil engineering
cohesive zone model
Cohesive Zone Model (CZM)
composite reinforced panel
Composites
compressive membrane action
compressive modulus of elasticity
compressive strength
compressive stress
concrete
Concrete
concrete bridges
concrete cracking
crack patterns
crack propagation
critical stress intensity factor
damage model
data assimilation
defect tolerance
deformation
delamination
diamond composite
digital image correlation
discrete element
discrete element method
distribution of strain energy
elastic interface
electric-thermal coupling
embedment
energy evolution
energy release rate
enhanced PG-NEM
Ethylene-propylene diene monomer rubber EPDM
failure probability
fatigue
Fatigue
fatigue assessment
fatigue life
fatigue load
fatigue loading
fiber-reinforced composite laminate
fibre-reinforced high performance concrete
fineness
finite element analysis
Finite Element Analysis (FEA)
flexural test
flowing water
fly ash
four-point bending beam fatigue test
fracture
fracture energy
Fracture mechanics
fracture mechanism
fracture parameters
fracture toughness
fracture width
fractures
functionally graded material (FGM)
goaf consolidation
grommet
high performance concrete
high-temperature wedge splitting test
impact and quasi-static loading
indices
inter-laminar damage
intra-laminar damage
joint roughness coefficient
jointed rock
lightning strike
live loads
Low Velocity Impacts
material failure characteristics
maximum compressive strain
mechanical properties
mesostructure
metallic glasses
mineral grain shape
mining
mixed-mode fracture
mode-II microcracks
modified asphalt mixture
modified interaction integral
multi-directional laminate
multi-scale simulation
n/a
neutral axis
nondestructive testing
notch blunting
numerical analysis
numerical simulation
optimization of shape design
overlay tester
particle flow code
particle size
physical modelling test
physical properties
pitch regulation
polymers
Polymers
pressure-tension apparatus
prestressed concrete
proppant pack
pseudo-cracking method
punching shear
RC beams
RC strengthening (in bending and shear)
red sandstone
reducing condition
reinforced concrete beam
reliability
reliability of rocks
retrofitting
road bridge decks
Rock
rock cutting picks
rock fracture
rock mechanical property
rock mechanics
rock structure
rock-like material
sandstone
scale model
self-healing
shale rock
shear bands
size effect
small wind turbine
soft materials
Soft matter
stagnant water
stall regulation
strain energy
strain rate
strain rate tensor
strain-softening
strata structural behavior
stress concentrators
stress intensity factor (SIF)
Structural integrity
successive strain gauge
tensile strength
tension
tension weakening
thermodynamics
triaxial compression test
two-point trapezoidal beam fatigue test
ultrasonic pulse velocity
uniaxial compression simulation
uniaxial tension loading
velocity field
VUMAT
water plugging rate
Persona (resp. second.): SpagnoliAndrea
Sommario/riassunto: The mechanics of fracture and fatigue have produced a huge body of research work in relation to applications to metal materials and structures. However, a variety of non-metallic materials (e.g., concrete and cementitious composites, rocks, glass, ceramics, bituminous mixtures, composites, polymers, rubber and soft matter, bones and biological materials, and advanced and multifunctional materials) have received relatively less attention, despite their attractiveness for a large spectrum of applications related to the components and structures of diverse engineering branches, applied sciences and architecture, and to the load-carrying systems of biological organisms. This book covers the broad topic of structural integrity of non-metallic materials, considering the modelling, assessment, and reliability of structural elements of any scale. Original contributions from engineers, mechanical materials scientists, computer scientists, physicists, chemists, and mathematicians are presented, applying both experimental and theoretical approaches.
Titolo autorizzato: Fatigue and Fracture of Non-metallic Materials and Structures  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910557474603321
Lo trovi qui: Univ. Federico II
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