Keyphrases
Mechanical Properties
63%
Microstructure
54%
Low Pressure Injection Molding
43%
Residual Stress
43%
Laser Powder Bed Fusion (L-PBF)
36%
Inconel 718 (IN718)
35%
Additive Manufacturing
33%
Fatigue Life
32%
Stainless Steel
29%
Annealing
27%
Induction Heating
27%
Binder
26%
Ni Alloy
26%
Rutile
25%
Post-deformation Annealing
25%
Moldability
24%
Ti-6Al-4V (Ti64)
23%
Functional Properties
23%
High Cycle Fatigue
23%
Hardness Profile
21%
Laser Powder Bed
21%
Brazing
20%
Martensitic Stainless Steel
20%
Near-α Titanium Alloy
20%
Titanium Alloy
20%
Shot Peening
20%
Electron Backscatter Diffraction
19%
Cold Working
19%
Macrozones
19%
Surface Mechanical Attrition Treatment
19%
IMI 834
19%
Low Viscosity
19%
TiNi Alloy
18%
Nanostructured Ti
18%
Room Temperature
18%
Dwell Fatigue
18%
Cr(IV)
18%
Inconel 625 (IN625)
17%
Tensile Test
17%
IN625 Alloy
17%
Corrosion
17%
NiTi Shape Memory Alloy
17%
Induction Hardened
17%
Viscosity
17%
Numerical Simulation
16%
Fatigue Behavior
16%
Austenite
16%
AISI 4340 Steel
16%
Crystallographic Texture
16%
Temperature Range
15%
Heat Treatment
15%
Finite Element Model
15%
Cellular Automata
15%
Strain Rate
15%
Heat Affected Zone
15%
Microstructure Properties
15%
Aerospace Industry
15%
Recovery Stress
15%
Thermomechanical Processing
15%
Induction Process
14%
Grain Size
14%
Cold Rolling
14%
Induction Hardening
14%
Material Properties
14%
Compressive Residual Stress
14%
Surface Roughness
13%
Cellular Automata Model
13%
X Ray Diffraction
13%
Machine Parameters
13%
Low Temperature
13%
Sensitivity Study
13%
Powder Injection Molding
13%
Multi-pass Welding
13%
Porosity
13%
4340 Steel
13%
Fatigue Performance
13%
Finite Element Simulation
12%
Paraffin Wax
12%
Base Metals
12%
Microstructure Evolution
12%
Hard Turning
12%
Residual Stress Measurement
12%
Circular Manufacturing
12%
Spur Gear
12%
Real-scale
12%
BNi-2
12%
Finite Element Modeling
12%
Low Cycle Fatigue
12%
Remanufacturing
12%
Vol%
11%
Nickel-based Superalloy
11%
Mold Cavity
11%
Digital Image Correlation
11%
Friction Stir Welding
11%
Cutting Speed
11%
Fatigue Resistance
11%
Surface Integrity
11%
Ultrafine Grain
11%
Microstructural Characteristics
11%
Constitutive Equation
11%
Material Science
Surface (Surface Science)
100%
Residual Stress
61%
Feedstock
58%
Annealing
53%
Heat Treatment
46%
Stainless Steel
44%
Injection Molding
42%
Fatigue of Materials
39%
Titanium
39%
Inconel 718
37%
Austenite
34%
Laser Powder Bed Fusion
32%
Three Dimensional Printing
31%
Martensitic Stainless Steel
31%
Finite Element Method
30%
Titanium Alloy
30%
Electron Backscatter Diffraction
29%
Shape Memory Effect
28%
Finite Element Modeling
28%
Martensite
26%
Grain Size
25%
Scanning Electron Microscopy
25%
Density
25%
Nucleation
23%
Aluminum Alloy
23%
Plastic Deformation
22%
Fatigue Behavior
22%
Inconel 625
21%
Machining
20%
Near-Alpha Titanium Alloys
20%
Nanocrystalline
19%
Shot Peening
19%
Fatigue Crack
19%
Crack Propagation
18%
Superalloys
18%
Ultimate Tensile Strength
18%
Thermomechanical Processing
18%
High-Cycle Fatigue
17%
Nickel Titanium Alloy
17%
Austenitic Stainless Steel
16%
Hot Isostatic Pressing
15%
Brazing
15%
Work Hardening
15%
Oxide Compound
14%
Yield Stress
14%
Strain Rate
14%
Welded Joint
14%
Surface Roughness
14%
Composite Material
13%
Solidification
13%
Ti-6Al-4V
13%
Microstructure Evolution
13%
X-Ray Diffraction
12%
Carbide
12%
Tensile Testing
12%
Materials Property
12%
Fracture Toughness
12%
Creep
11%
Nickel-Based Superalloys
11%
Corrosion
11%
Crack Initiation
11%
Microhardness
11%
High Strength Steel
11%
Transmission Electron Microscopy
11%
Mechanical Testing
10%
Low-Cycle Fatigue
10%
Tensile Property
10%
Anisotropy
10%
Volume Fraction
10%
Forging
9%
Aluminum
9%
Diffraction Measurement
9%
Arc Welding
9%
Surface Property
8%
Filled Polymer
8%
Nanocrystallization
8%
Thermal Stability
8%
Stress Measurement
8%
Stress Concentration
8%
Nanostructure
7%
Differential Scanning Calorimetry
7%
Boron
7%
Grain Boundary
7%
Confocal Microscopy
7%
Polycrystal
7%
Polycrystalline Material
7%
Corrosion Resistance
7%
Surface Fatigue
7%
Selective Laser Melting
7%
Surface Hardening
7%
Hydraulics
6%
Thermodynamics Modeling
6%
Twin Boundary
6%
Friction Stir Welding
6%
Chip Formation
6%
Young's Modulus
6%
Elasticity
5%
Hydroforming
5%
Image Analysis
5%
Spur Gear
5%
Engineering
Residual Stress
61%
Powder Injection
53%
Joints (Structural Components)
47%
Injection Moulding
47%
Weld
34%
Stainless Steel
34%
Heat Treatment
32%
Shot Peening
32%
Induction Heating
30%
Ni Alloy
29%
Finite Element Analysis
29%
Process Parameter
27%
Laser Powder Bed Fusion
26%
Martensitic Stainless Steel
25%
Hardness Profile
25%
Fatigue Life
24%
Fluid Viscosity
24%
Room Temperature
24%
Subsurface
23%
Additive Manufacturing
23%
High Cycle Fatigue
21%
Austenite
21%
Fatigue Behavior
19%
Remanufacturing
19%
Powder Bed
19%
Tensiles
18%
Iron
18%
Temperature Range
18%
Finite Element Modeling
18%
X Ray Diffraction
17%
Fem Model
17%
Cold Rolling
17%
Compressive Residual Stress
16%
Material Extrusion
16%
Austenitic Stainless Steel
15%
Isothermal
15%
Heating Process
15%
Mechanical Fatigue Test
15%
Experimental Investigation
15%
Fatigue Performance
15%
Cutting Speed
15%
Grain Size
15%
Ultrasonics
14%
Porosity
14%
Crystallographic Texture
14%
Polycrystalline
14%
Functional Property
14%
Digital Image Correlation
14%
Plastic Deformation
14%
Martensite
13%
Strain Rate
13%
Sensitivity Study
13%
Strain Hardening
13%
Spur Gears
13%
Brazing
13%
Industry 4.0
13%
Heat Affected Zone
13%
Mould Cavity
12%
Multipass Weld
12%
Fatigue Property
12%
Yield Point
12%
Finite Element Simulation
12%
Surface Integrity
12%
Residual Stress Measurement
12%
Three Dimensional Printing
12%
Recovery Stress
11%
Dynamic Recrystallization
11%
Manufacturing Process
11%
Tensile Test
11%
Paraffin Wax
11%
Constitutive Equation
11%
Base Metal
11%
Injection Moulding Process
11%
Crack Propagation
11%
Induced Residual Stress
11%
Crack Initiation
11%
Ti-6al-4v
11%
Low-Temperature
11%
Low Cycle Fatigue
11%
Microhardness
11%
Strain Localization
11%
Pure Titanium
10%
Mold Filling
10%
Metal Injection Moulding
10%
Tensile Testing
10%
Strain Field
10%
Corrosion Behavior
10%
Fatigue Resistance
10%
Cold Work
10%
321 stainless steel
9%
Fatigue Crack Propagation
9%
Electrolytic Polishing
9%
Flange Face
9%
Creep
9%
Temperature Distribution
9%
Hardening Process
9%
Polycrystal
9%
Microstructure Evolution
9%
Machined Surface
9%
Speed Machining
9%