INIS
boundary element method
100%
dynamics
60%
anisotropy
58%
polycrystals
54%
failures
32%
solutions
31%
particles
28%
crack propagation
27%
applications
24%
interfaces
24%
modeling
23%
bubbles
22%
hydrodynamics
22%
reynolds number
22%
zones
19%
simulation
19%
boundary conditions
18%
approximations
18%
inclusions
16%
comparative evaluations
15%
bones
15%
fatigue
15%
electrodes
12%
cracks
11%
orientation
11%
randomness
11%
thermoelasticity
11%
morphology
11%
matrices
10%
strains
10%
stochastic processes
10%
grain boundaries
10%
bone tissues
10%
porous materials
10%
lithium ion batteries
10%
stiffness
9%
plates
9%
microstructure
9%
validation
9%
computer codes
8%
elastic properties
8%
numerical analysis
8%
mechanical properties
8%
levels
8%
closures
7%
aluminum
7%
coalescence
7%
data
7%
fibers
7%
elasticity
7%
Engineering
Boundary Element Method
90%
Anisotropic
66%
Multiscale
51%
Polycrystalline Material
41%
Microscale
31%
Polycrystalline
28%
Mesoscale
27%
Hydrodynamics
22%
Mechanical Property
21%
Macroscale
21%
Cohesive Zone Model
20%
Boundary Condition
20%
Porosity
17%
Polycrystal
15%
Crack Propagation
13%
Numerical Example
12%
Fourier Series
12%
Numerical Study
11%
Reynolds' Number
11%
Bridging
11%
Nanoscale
11%
Failure Criterion
11%
Lithium-Ion Batteries
10%
Grain Boundaries
9%
Transient Analysis
8%
Failure Analysis
7%
Software Element
7%
Aluminum Plate
7%
Inertial Force
7%
Scale Dynamic
7%
Electrical Steel
7%
Alloy Steel
7%
Crack Problem
7%
Radial Basis Function
7%
Dynamic Crack Propagation
7%
Side Wall
7%
Bubble Coalescence
7%
Fatigue Analysis
7%
Industrial Applications
7%
Illustrates
7%
Composite Repair
7%
Single Bubble
7%
Constituent Material
7%
Flux Density
7%
User Interfaces
7%
Failure Mechanism
7%
Linear Elasticity
7%
Two Dimensional
7%
Fatigue Crack Propagation
7%
Displacement Field
7%
Material Science
Boundary Element Method
65%
Polycrystalline Material
41%
Crack Propagation
26%
Elasticity
26%
Mechanical Property
22%
Strength of Materials
15%
Cohesive Zone Model
15%
Lithium Ion Battery
15%
Homogenization
15%
Isotropic Material
11%
Elastodynamics
11%
Thermoelasticity
11%
Grain Boundaries
11%
Anisotropy
11%
Composite Material
11%
Energy Density
9%
Aluminum
7%
Polycrystal
7%
Grain Size
7%
Fatigue Crack
7%
Metal
7%
Biomaterial
7%
Heterogeneous Material
7%
Anisotropic Material
7%
Elemental Analysis
7%
Crystal Structure
7%
Silicon Steel
7%
Dynamic Analysis
7%
Viscoelastic Material
7%
Composite Material
6%