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Fatigue and Fracture of Non-metallic Materials and Structures

Fatigue and Fracture of Non-metallic Materials and Structures

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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.

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Keywords

  • 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 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 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
  • History of engineering & technology
  • 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
  • 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
  • Technology, engineering, agriculture
  • Technology: general issues
  • 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

Links

DOI: 10.3390/books978-3-03928-779-6

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