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Phase-field modeling of fatigue coupled to cyclic plasticity in an energetic formulation
- Publication Year :
- 2019
-
Abstract
- This paper presents a modeling framework to describe the driving mechanisms of cyclic failure in brittle and ductile materials, including cyclic plasticity and fatigue crack growth. A variational model is devised using the energetic formulation for rate-independent systems, coupling a phase-field description of fatigue fracture to a cyclic plasticity model that includes multi-surface kinematic hardening, gradient-enhanced isotropic hardening/softening and ratcheting. The coupled model embeds two distinctive fatigue effects. The first captures the characteristic features of low-cycle fatigue, driven by the accumulation of plastic strains, while the second accounts for high-cycle fatigue, driven by free energy accumulation. The interplay between these mechanisms allows to describe a wide range of cyclic responses under both force loading and displacement loading, as shown in several numerical simulations. Moreover, the phase-field approach to fracture accounts for the initiation and propagation of fatigue-induced cracks.<br />Minor errata corrections (pages 17 and 18). 48 pages, 22 figures
- Subjects :
- Cyclic plasticity
Energetic/variational formulation
Fatigue fracture
Gradient-extended internal variables
Phase-field models
Ratcheting
Computational Mechanics
FOS: Physical sciences
General Physics and Astronomy
Phase field models
010103 numerical & computational mathematics
01 natural sciences
Displacement (vector)
Computer Science::Robotics
Brittleness
FOS: Mathematics
Coupling (piping)
Mathematics - Numerical Analysis
0101 mathematics
Softening
Condensed Matter - Materials Science
Quantitative Biology::Neurons and Cognition
Mechanical Engineering
Materials Science (cond-mat.mtrl-sci)
Numerical Analysis (math.NA)
Mechanics
Paris' law
Finite element method
Computer Science Applications
010101 applied mathematics
Mechanics of Materials
Fracture (geology)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....75ab5ccf018534f45873ecf282843521