INIS
microstructure
100%
modeling
100%
volume
100%
anisotropy
100%
simulation
75%
comparative evaluations
75%
texture
50%
loading
50%
boundary conditions
50%
orientation
50%
crystallography
50%
data
25%
cost
25%
mechanical properties
25%
metals
25%
sampling
25%
prediction
25%
computerized simulation
25%
lasers
25%
beams
25%
algorithms
25%
powders
25%
austenitic steels
25%
temperature gradients
25%
Keyphrases
Microstructural Modeling
100%
Anisotropic Behavior
100%
Laser Powder Bed Fusion (L-PBF)
100%
Representative Volume Element
100%
Microstructure
75%
Crystal Orientation
50%
Tensile Simulation
50%
Different Loading Direction
50%
Numerical Simulation
25%
Tensile Test
25%
Prediction Skill
25%
Modeling Techniques
25%
Austenitic Stainless Steel
25%
AISI 316L
25%
Sampling Algorithm
25%
Computational Cost
25%
Material Tests
25%
Property Prediction
25%
Metal Parts
25%
As-built
25%
Columnar Grain
25%
Element Modeling
25%
Anisotropic Mechanical Properties
25%
Texture Sampling
25%
Macroscopic Mechanical Properties
25%
Large Temperature Gradient
25%
Engineering
Anisotropic Behavior
100%
Representative Volume Element
100%
Tensile Test
75%
Element Model
50%
Crystallographic Orientation
50%
Loading Direction
50%
Boundary Condition
50%
Simulation Result
25%
Anisotropic
25%
Prediction Capability
25%
Test Material
25%
Powder Bed Fusion
25%
Austenitic Stainless Steel
25%
Computational Cost
25%
Thermal Gradient
25%
Laser Beams
25%
Temperature Gradients
25%
Material Science
Austenitic Stainless Steel
100%
Powder Bed Fusion
100%