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Blast and Impact Engineering on Structures and Materials

Blast and Impact Engineering on Structures and Materials

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This Special Issue aimed to collect and present all breakthrough research on all intentional or unintentional explosions and impact problems. During the last decade, the investigation of these phenomena has been an active area of research in different fields (i.e., civil, defense, mining, aeronautical, naval, etc.), including experimental studies, analytical models, or numerical simulations; and this Special Issue is a faithful reflection of this trend.A total of twenty-six papers (twenty-five research papers and one review paper) in various fields of blast and impact engineering including blast loading issues over structures, beams, walls; penetration and impact; explosives safety and security; blasting effects on rocks and tunnels; are presented in this Special Issue.

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Keywords

  • AAC block
  • Abaqus
  • air blast wave
  • airblast
  • angle of attack
  • Artificial Neural Networks
  • battle damage
  • blast
  • blast effects
  • blast load
  • blast loading
  • blast loads
  • blast-induced damage
  • Blasting
  • blasting cap
  • blasting experiment
  • blasting stress wave
  • blasting-induced vibration
  • blockage performance
  • cavity expansion analysis
  • column
  • Concrete
  • concrete columns
  • connections
  • corner
  • cracking
  • crater formation
  • cumulative charge
  • damage to people
  • detonation
  • DOP prediction equation
  • dynamite
  • effects of explosions
  • engineering structures
  • experimental testing
  • explosion crater
  • FE simulation
  • field test
  • Finite element
  • finite-element analysis
  • fragments
  • grid
  • high-velocity fragment
  • History of engineering & technology
  • honeycomb passive shielding
  • hybrid SVR model
  • hydrocode analysis
  • hypervelocity impact
  • IEDs
  • impact force
  • impact loading
  • Improvised Explosive Device
  • in situ stress
  • initial stress
  • input selection
  • internal explosion
  • jet
  • lateral blasting
  • lateral free surface
  • liquid cabin
  • LS-DYNA
  • LSDyna
  • Mach waves
  • Machine learning
  • masonry wall
  • Materials science
  • Mechanical engineering & materials
  • mesoscale equivalent model
  • micro-meteoroid and orbital debris (MMOD)
  • missile impact
  • mitigation
  • Numerical analysis
  • numerical modeling
  • Numerical Simulation
  • open-pit blasting
  • overpressure
  • overturn and yaw
  • parametric analysis
  • peak displacement
  • peak particle velocity
  • Penetration
  • penetration experiments
  • perforation analytical model
  • prediction
  • pressure reduction module
  • RCP
  • recycled aggregate concrete
  • Reinforced concrete
  • rigid projectile
  • rock tunnel
  • rod projectile
  • sand
  • sandstone
  • SDOF systems
  • Semtex
  • shaped charge
  • shear thickening fluid
  • shock wave
  • site factors K and m
  • slab
  • smoothed particle hydrodynamics (SPH)
  • steel plate reinforced concrete walls
  • stemming material
  • strengthening
  • structural dimensions
  • symbolic regression
  • sympathetic detonation
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermochemistry of explosives
  • thin plates petaling
  • TNT
  • trajectory
  • transmission coefficient
  • tunnel
  • two-stage light gas gun
  • UHPC
  • underground rock masses
  • Validation
  • water curtain
  • whipple shield
  • X-ray tomography

Links

DOI: 10.3390/books978-3-0365-8976-3

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