INIS
solids
100%
shear
100%
strain rate
100%
turbulence
100%
comminution
100%
kinetic energy
100%
energy
55%
power
44%
interfaces
33%
fractures
33%
particle size
33%
strains
22%
dynamics
22%
friction
22%
particles
22%
velocity
22%
finite element method
22%
energy dissipation
22%
viscosity
22%
fine particles
11%
volume
11%
shape
11%
modeling
11%
density
11%
motion
11%
explosions
11%
deformation
11%
missiles
11%
energy yield
11%
vortices
11%
spheres
11%
slip
11%
turbulent flow
11%
dimensionless numbers
11%
Engineering
Shear Strain
100%
Energy Engineering
100%
Kinetic
100%
Constitutive Model
50%
Fracture Energy
50%
Particle Size
33%
Elements
33%
Models
33%
High Strain Rate
16%
Deformation
16%
Viscosity
16%
Energy Dissipation
16%
Main Characteristic
16%
Energy Release
16%
Dissipated Energy
16%
Apparent Viscosity
16%
Impact Event
16%
Strain Energy
16%
High Impact Velocity
16%
Interface Friction
16%
Dissipate Energy
16%
Mass Density
16%
Nodal Force
16%
Forming
16%
Friction
16%
Dimensionless Number
16%
Energy Yield
16%
Energy Dissipation Rate
16%
Average Particle Size
16%
High Velocity
16%
High Rate
16%
Turbulent Flow
16%
Vortex
16%
Sphere
16%
Large Portion
16%
Explosions
16%
Physics
Shear Strain
100%
Comminution
100%
Kinetic Energy
100%
Solid State
100%
Impact
100%
Model
55%
Particle Size
33%
Particle
33%
Friction
22%
Viscosity
22%
Eddy
22%
Shears
22%
Exponents
11%
Deformation
11%
Impact Velocity
11%
Missiles
11%
Dimensionless Number
11%
Volume
11%
Shapes
11%
Events
11%
Speed
11%
Ratios
11%
Statics
11%
Plane
11%
Fracture
11%
Explosion
11%
Spheres
11%
Material Science
Shear Strain
100%
Strain Rate
100%
Turbulence
100%
Solid
100%
Comminution
100%
Particle
55%
Material
44%
Interface Fracture
22%
Finite Element Methods
22%
Viscosity
22%
Velocity
22%
Fine Particle
11%
Paper
11%
Strain
11%
Density
11%