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Engineering
Fatigue Crack Growth
100%
Numerical Study
100%
Crack Tip
100%
Good Agreement
66%
Oxide Growth
66%
Mass Transport
66%
Oxide Layer
33%
Finite Element Analysis
33%
Particle Size Analysis
33%
Elevated Temperature
33%
Compressive Stress
33%
Stress State
33%
Tensile Stress σ
33%
Growth Kinetics
33%
Crack Growth Rate
33%
Critical Stress
33%
Stability Condition
33%
Oxide Matrix
33%
Mechanical Equilibrium
33%
Externally Applied Load
33%
Keyphrases
Grain Boundary
100%
Oxides
100%
Nickel-based Superalloy
100%
Dwell Fatigue Crack Growth
100%
Crack Tip
37%
Crack Growth
12%
Oxide Layer
12%
Dislocation
12%
Particle Size Distribution
12%
Elevated Temperature
12%
Applied Load
12%
Compressive Stress
12%
Tensile Stress
12%
Parabolic Behavior
12%
Critical Stress
12%
Oxide Formation
12%
Viscoplastic Constitutive
12%
Transport Equation
12%
Theoretical Treatment
12%
Stress State
12%
Constitutive Description
12%
Viscoplastic Model
12%
Stability Condition
12%
Stress-driven
12%
Mass Transport
12%
High Temperature Deformation
12%
Oxide Interfaces
12%
State Evolution
12%
Vacancy Diffusion
12%
Oxide Growth Rate
12%
Mechanical Equilibrium
12%
Finite Element Scheme
12%
Multi-component Mass Transport
12%
Oxide-film Growth Kinetics
12%
Reduced Oxides
12%
Material Science
Oxide Compound
100%
Fatigue Crack Growth
100%
Nickel-Based Superalloys
100%
Grain Boundary
100%
Crack Tip
25%
Ultimate Tensile Strength
8%
Crack Growth
8%
Finite Element Method
8%
Particle Size Analysis
8%
Oxide Interface
8%