Chemistry
Ductility
96%
Precipitation (Chemical)
95%
Sample
92%
Nanocrystalline
88%
Face-Centered Cubic Crystal System
88%
Hydrolysis
88%
Alloy
86%
Hydrogen
53%
Amorphous Material
51%
Cubic Space Group
50%
Dioxygen
50%
Strength
50%
Dislocation
44%
Surface
44%
Strain Hardening
40%
Modification
40%
Atom
40%
Nanocomposite
39%
Liquid Film
39%
Ball Milling
35%
Magnesium
35%
Composite Material
35%
Yield Point
34%
Grain Size
33%
Manganese Steel
33%
Microstructure
32%
Environment
32%
Remelting
27%
Application
27%
Martensitic Transformation
25%
Fatigue Limit
22%
Microcrack
22%
Solute
22%
Block Like Crystal
22%
Time
22%
Cooling
22%
Ambient Reaction Temperature
19%
Plastic Deformation
19%
Crystalline Material
19%
Electronegativity
17%
Hydrolysis Kinetics
17%
Reaction Yield
17%
Byproduct
17%
Metal
17%
Cation
17%
Solubility
17%
Rate
17%
Solid Solution
12%
Phase Transition
12%
Lattice Parameter
12%
Mechanical Property
12%
Density Functional Theory
12%
Correlation
12%
Electrolyte
12%
Energy
12%
Procedure
11%
Tensile Strength
11%
Safety
9%
Particle Size
9%
Base
9%
Chemical Kinetics Characteristics
6%
Sulfur
6%
Charge Transfer
6%
Catalyst Design
6%
Anode
6%
Hardness
5%
Analytical Method
5%
Compression
5%
Potential
5%
Strain
5%
Compression Strength
5%
Engineering
Precipitation
88%
Face-Centered Cubic
88%
Alloy
66%
Laser Surface
55%
Additive Manufacturing
47%
Surfaces
44%
Synergy
44%
Original Sample
44%
Strain Hardening
40%
Mechanisms
34%
Yield Strength
34%
Core-Shell
27%
Average Grain Size
27%
Surface Processing
27%
High Hardness
22%
Fatigue Lifetime
22%
High Cooling Rate
22%
Constitutional Supercooling
22%
High Cycle Fatigue
22%
Processing Parameter
22%
Fatigue Limit
22%
Engineering
22%
Transmissions
22%
Strengthening Mechanism
22%
Service Performance
22%
Solute
22%
Critical Application
22%
Fatigue Resistance
22%
Environment
22%
Lower Cycle
22%
Microstructural Evolution
22%
Elements
22%
Development
22%
Microcracks
22%
Induced Deformation
12%
Solid Solution
12%
Thermal Gradient
12%
Lattice Parameter
12%
Mechanical Testing
12%
Elevated Temperature
12%
Mechanical Properties
12%
Design
12%
Ti-6al-4v
12%
Ti-6al-4v Alloy
12%
Combined Effect
12%
Centered Cubic Structure
12%
Great Potential
12%
Microstructure
12%
Hexagonal Close Packed
12%
Losses
12%
Gradient Direction
11%
Resistant Alloy
9%
Grain Boundary
5%
Scale Observation
5%
Compressive Strength
5%
Nanograins
5%
Mechanical Performance
5%
Surface Layer
5%
Tensile Specimen
5%
Performance
5%
Refinement Process
5%
Hardness
5%
Strengthening Effect
5%
Physics
Laser
100%
Gradients
96%
Ductility
96%
Alloy
86%
Grain Refinement
66%
Ultimate Tensile Strength
66%
Wear
59%
Oxygen
50%
Additive Manufacturing
47%
Wear Resistance
39%
Yield Strength
34%
Microstructure
32%
Environment
32%
Sliding Wear
29%
Surface Layers
25%
Liquid Nitrogen
22%
Strain Hardening
22%
Cooling
22%
Initiation
22%
Microcracks
22%
Revisions
22%
Supercooling
22%
Plastic Deformation
19%
Room Temperature
19%
Region
15%
Density Functional Theory
12%
Solid Solutions
12%
Titanium Alloys
12%
Calculation
12%
Strength of Materials
12%
Lattice Parameter
12%
Sites
12%
Phase Transformations
12%
Nanoindentation
11%
Martensitic Transformation
11%
Reliability
9%
Contrast
9%
Utilization
9%
High Strength
9%
Safety
9%
Twinning
5%
Performance
5%
Fractions
5%
Compressive Strength
5%
Increasing
5%
Hardness
5%
Metals
5%
Matrix
5%