Engineering
Mesh Size
100%
Prediction
83%
Powder Bed Fusion
77%
Temperature
77%
Melt Pool
66%
Validation
66%
Finite Element Mesh
66%
Temperature Scale
66%
Finite Element Modeling
55%
Residual Stress
44%
Initial Temperature
33%
Transients
27%
Simulation
27%
Mesoscale
22%
Meshes
16%
Research
16%
Temperature Field
16%
Combined Effect
16%
Deviation
16%
Coarse Mesh
16%
Computational Cost
16%
Elements
16%
Heat Source
11%
Determines
11%
Models
11%
Design
11%
Temperature Distribution
11%
Absorption Coefficient
11%
Error
11%
Additive Manufacturing
11%
Simulation Result
11%
Increasing Demand
11%
Efficiency
11%
Correlation
11%
Alloy
11%
Desired Part
11%
Source Model
11%
Earth and Planetary Sciences
Distortion
66%
Melt
66%
Dimension
66%
Prediction
66%
Pool
66%
Temperature
44%
Investigation
33%
Parameter
33%
Model
33%
Simulation
22%
Increasing
22%
Quality
11%
Efficiency
11%
Literature
11%
Error
11%
Time
11%
Manufacturing
11%
Boundary
11%
Coefficient
11%
Bed
11%
Setup
11%
Temperature Distribution
11%
Alloy
11%
Laser
11%
Correlation
11%
Value
11%
Morphology
11%
Speed
11%
Actuator
11%
Domain
11%
Behavior
11%
Material Science
Material
66%
Plastic Anisotropy
66%
Stainless Steel
66%
Texture
66%
Void Fraction
66%
Temperature
55%
Microstructure
26%
Three Dimensional Printing
24%
Mechanical Strength
13%
Spring Steel
13%
Plasticity
13%
Fiber
13%
Anisotropy
13%
Crystal Plasticity
13%
Defect
13%
Morphology
11%
Correlation
11%
Powder Bed Fusion
11%
Alloy
11%
Laser
11%