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Volumn 56, Issue 13, 2008, Pages 2975-2987
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Thermomechanical fatigue mechanism in a modern single crystal nickel base superalloy TMS-82
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Author keywords
Dislocation; Fatigue; Nickel alloys; Transmission electron microscopy; Twinning
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Indexed keywords
CARBON NANOTUBES;
CHARGED PARTICLES;
CRACK TIPS;
DEFORMATION;
DISLOCATIONS (CRYSTALS);
ELECTRON MICROSCOPES;
ELECTRON MICROSCOPY;
ELECTRON OPTICS;
ELECTRON SPECTROSCOPY;
ELECTRONS;
EVOLUTIONARY ALGORITHMS;
FORMING;
FUNCTIONAL ELECTRIC STIMULATION;
IMAGING TECHNIQUES;
LEAD;
MECHANISMS;
MICROFLUIDICS;
MICROSCOPES;
MICROSCOPIC EXAMINATION;
NICKEL;
NICKEL ALLOYS;
OPTICAL MICROSCOPY;
POWDERS;
RESIDUAL STRESSES;
SCANNING;
SCANNING ELECTRON MICROSCOPY;
SINGLE CRYSTALS;
SPECTROSCOPIC ANALYSIS;
STAGES;
STRESS CONCENTRATION;
STRESS RELAXATION;
STRESSES;
SUPERALLOYS;
SURFACES;
THERMOMECHANICAL TREATMENT;
TRANSMISSION ELECTRON MICROSCOPY;
(ABIOTIC AND BIOTIC) STRESS;
CONCENTRATION (COMPOSITION);
DEFORMATION TWINS (DT);
DISLOCATION ANNIHILATION;
ELECTRON MICROSCOPY , SCANNING;
EVOLUTION (CO);
FATIGUE MECHANISMS;
HIGH-DENSITY;
HOLD TIME;
MAIN CRACK;
MICRO STRUCTURAL;
NICKEL-BASE SUPERALLOY;
OPTICAL (PET) (OPET);
RMAL-MECHANICAL FATIGUE (TMF) TESTS;
SPECIMEN SURFACES;
TWIN BOUNDARIES;
TWIN PLATES;
MICROSTRUCTURAL EVOLUTION;
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EID: 45849109122
PISSN: 13596454
EISSN: None
Source Type: Journal
DOI: 10.1016/j.actamat.2008.02.035 Document Type: Article |
Times cited : (109)
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References (34)
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