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Volumn 59, Issue 2, 2011, Pages 485-494
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A study on fatigue crack growth behavior subjected to a single tensile overload: Part I. An overload-induced transient crack growth micromechanism
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Author keywords
Crack closure; Electric potential; Fatigue crack growth; Neutron diffraction; Overload
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Indexed keywords
APPLIED LOADS;
COMPRESSIVE RESIDUAL STRESS;
CRACK GROWTH;
CRACK GROWTH BEHAVIOR;
CRACK OPENING;
CRACK TIP BLUNTING;
CRACK-TIP DEFORMATION;
DRIVING FORCES;
EFFECTIVE STRESS INTENSITY FACTOR RANGE;
FATIGUE CRACK GROWTH;
FATIGUE CRACK GROWTH BEHAVIOR;
FATIGUE CRACKS;
GROWTH BEHAVIOR;
MICRO MECHANISMS;
OVERLOAD;
SECONDARY CRACKS;
TENSILE OVERLOAD;
CRACK TIPS;
ELECTRIC POTENTIAL;
FATIGUE CRACK PROPAGATION;
FATIGUE OF MATERIALS;
NEUTRON DIFFRACTION;
NEUTRONS;
RESIDUAL STRESSES;
STRESS INTENSITY FACTORS;
CRACK CLOSURE;
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EID: 78449247622
PISSN: 13596454
EISSN: None
Source Type: Journal
DOI: 10.1016/j.actamat.2010.09.049 Document Type: Article |
Times cited : (80)
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References (45)
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