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Dive into the research topics of 'Micromechanical modeling of short crack nucleation and growth in high cycle fatigue of martensitic microstructures'. Together they form a unique fingerprint.
Mathematics
High Cycle Fatigue
Nucleation
Microstructure
Crack
Modeling
Crystal Plasticity
High Strength Steel
Crack Growth
Fatigue
Crack Closure
Damage Accumulation
Design Rules
Strain Localization
Failure Mechanism
Microcracks
Cyclic Loading
Micromechanics
Model Calibration
Cracking
Softening
Interaction
Plastic Deformation
Constitutive Model
Fracture Mechanics
Modeling and Simulation
Exploitation
Experimental Study
Hardening
Steel
Slip
Imaging
Plastics
Physics & Astronomy
short cracks
nucleation
damage
cycles
microstructure
plastic properties
high strength steels
cracks
crack closure
crystals
micromechanics
fracture mechanics
crack initiation
exploitation
Chemical Compounds
Nucleation
Fatigue of materials
Microstructure
Cracks
Crystals
Plasticity
High strength steel
Crack propagation
Austenite
Crack closure
Micromechanics
Steel
Constitutive models
Engineering & Materials Science
Nucleation
Fatigue of materials
Microstructure
Cracks
Crystals
Plasticity
High strength steel
Crack propagation
Crack closure
Micromechanics
Austenite
Constitutive models