Engineering
Lath Martensite
67%
Body-Centered Cubic
58%
Martensite
55%
High-Entropy Alloys
51%
Austenite
35%
Face-Centered Cubic
27%
Dual Phase Steel
27%
Microstructure
27%
Screw Dislocation
26%
Damage Initiation
25%
Retained Austenite
24%
Ferrite Interface
23%
Edge Dislocation
20%
Phase Steel
19%
Multiscale
18%
Slip System
17%
Interatomic Potential
17%
Strain Transformation
16%
Gaussians
15%
Atomistic Simulation
15%
Anisotropic
13%
Dislocation Interaction
12%
Yield Stress
12%
Plastic Deformation
12%
Mesoscale
12%
Subgrains
11%
Martensitic Microstructures
11%
Experimental Observation
10%
Phase Contrast
10%
Mechanical Response
10%
Martensite Island
9%
Deformation Behavior
9%
Numerical Study
9%
Fracture Mechanism
9%
Advanced High Strength Steel
9%
Martensitic Stainless Steel
9%
Habit Plane
9%
Crystal Plasticity Model
9%
Interaction Energy
8%
Energy Barrier
8%
Microscale
8%
Dislocation Motion
8%
High Strength Steel
8%
Defects
8%
Plastic Response
8%
Steel Microstructures
8%
Thin Films
7%
Multiscale Modeling
7%
Tensile Test
7%
Induced Deformation
7%
Material Science
Martensite
100%
High Entropy Alloys
59%
Crystal Plasticity
50%
Mechanical Strength
42%
Austenite
40%
Screw Dislocation
36%
Edge Dislocation
27%
Density
26%
Dual Phase Steel
23%
Yield Stress
19%
Plastic Deformation
18%
High Strength Steels
17%
Lattice Constant
14%
Crystallography
11%
Single Crystal
11%
Shape Memory Effect
10%
Martensitic Stainless Steel
10%
Nucleation
8%
Film
8%
Crystalline Material
8%
Deformation Mechanism
7%
Multi-Scale Modeling
7%
Stress Intensity Factor
7%
Vanadium
7%
Dislocation Structure
7%
Medium-Entropy Alloy
7%
Work Hardening
7%
Metals Application
7%
Alloying
7%
Anisotropy
6%
Solid Mechanics
5%
Micromechanics
5%
Keyphrases
Body-centered Cubic Alloys
7%
Laminated Microstructure
7%
Computational Materials
7%
In Situ Transformation
7%
Steel Structures
7%
Two-phase Steel
7%
Tensile Simulation
7%
Slip Activation
7%
Dislocation Strengthening
7%
Multiscale Modeling
7%
Experimental-numerical Study
7%
Interfacial Damage
7%
Machine Learning Potential
7%
Unpinning
7%
Medium-entropy Alloy
7%
Gaussian Approximation Potential
7%
Equal Sign
7%
Substructure Boundary Sliding
7%
Atomistic Mechanism
7%
Lath Martensite
7%
Martensite Transformation
7%
Martensite Packet
7%
Initial Yield Stress
7%
Twin Interface
7%
Solid Mechanics
5%
Atomistic Modeling
5%
Modeling Approach
5%
High-entropy Alloy
5%
Kink Strengthening
5%
Density Functional Theory
5%
Interface Mobility
5%