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Keyphrases
Microstructure
32%
Steel Shell
29%
Growth Phenomena
29%
Mold Simulator
29%
Shell Growth
29%
Mechanical Properties
26%
Additive Manufacturing
24%
As-built
22%
Directed Energy Deposited
22%
Ti-6Al-4V
22%
Casting Speed
19%
Initial Solidification
19%
Mold Oscillation
19%
Melting Behavior
19%
Miniature Tensile Specimen
19%
3D-printed Titanium Alloy
19%
Mechanical Properties Prediction
19%
Additively Manufactured Ti-6Al-4V
19%
Experimental Development
19%
Titanium Alloy
19%
Ultimate Tensile Strength
13%
Directed Energy Deposition
13%
Molten Steel Slag
13%
Engineered Microstructure
13%
Quantitative Phase-field Model
12%
Crack Propagation
9%
Phase-field Model
9%
Quantitative Simulation
9%
Multiphase Materials
9%
Fiber-reinforced Cementitious Material
9%
Neumann
9%
Solutions of Equation
9%
Phase-field Modeling
9%
Fast Adaptive
9%
Poisson Type
9%
Type Problem
9%
Strength-ductility Synergy
9%
Additively Manufactured Titanium Alloy
9%
Inoculation
9%
Powder Characteristics
9%
Carbon Content
9%
Recent Advances
9%
Yttrium
9%
Hydrogen Direct Reduced Irons
9%
Design Perspective
9%
Laser Powder Bed Fusion (L-PBF)
9%
Damage Tolerant
9%
Superior Mechanical Properties
9%
Powder Recycling
9%
Direct Reduced Iron
9%
Material Science
Mechanical Property
100%
Alloy
45%
Three Dimensional Printing
44%
Titanium Alloy
44%
Solidification
40%
Laser Powder Bed Fusion
39%
Ti-6Al-4V
39%
Crack Propagation
32%
Fiber Optics
29%
Heat Treatment
27%
Yttrium
19%
Surface Roughness
19%
Phase Field Model
16%
Hydrogen
16%
Nucleation
15%
Internal Temperature
14%
Fracture Toughness
12%
Ultimate Tensile Strength
11%
Ductility
10%
Titanium
10%
Polycrystalline Material
9%
Workability
9%
Grain Boundary
9%
Cementitious Material
9%
Crystal Structure
9%
Density
9%
Strength Ductility Synergy
7%
Feedstock
6%
Aluminum Alloy
6%
Hot Isostatic Pressing
6%
Vibration (Acoustics)
6%
Advanced Material
6%
Alloying
6%
Fracture Mechanics
6%
Crack Tip
6%
Brittleness
5%
Strength of Materials
5%
Engineering
Melting Behavior
39%
Mechanical Property
39%
Direct-Reduced Iron
29%
Molten Steel
29%
Laser Powder Bed Fusion
29%
Casting Speed
29%
Optical Fiber
29%
Steel Shell
29%
Alloy
22%
Hydrogen
19%
Powder Characteristic
19%
Produced Material
19%
Steel Bath
16%
Additive Manufacturing
15%
Casting Parameter
14%
Temperature Gradients
14%
Thermal Gradient
14%
Heat Transfer Phenomenon
14%
Melting Point
13%
Hatch Distance
13%
Mechanical Performance
9%
Elastostatic Problem
9%
Radial Basis Function
9%
Temperature Profile
9%
Theoretical Study
9%
Fusion Process
9%
Mold Flux
9%
Computer Simulation
9%
Layer Thickness
9%
Porosity
6%
Laser Power
6%
Fatigue Property
6%
Scan Speed
6%