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Volumn 27, Issue 2, 2011, Pages 282-297

Transmission electron microscopy investigation of dislocation slip during superelastic cycling of Ni-Ti wires

Author keywords

Dislocation slip; Martensitic transformation; Nanograins; Shape memory alloy; Transmission electron microscopy

Indexed keywords

AUSTENITE PHASE; CYCLIC LOADINGS; DEFORMATION MECHANISM; DEFORMATION MODES; DEFORMATION TWIN; DISLOCATION DEFECTS; DISLOCATION SLIP; ELECTRIC RESISTIVITY; FUNCTIONAL PROPERTIES; GRAIN DIAMETER; GRAIN SIZE; HALL PETCH RELATIONSHIP; IN-SITU; IRRECOVERABLE STRAIN; IRREVERSIBLE STRAIN; MARTENSITE PHASE; NANO GRAINS; NANOGRAINED MICROSTRUCTURE; NI-TI WIRE; PLATEAU STRESS; RECRYSTALLIZED MICROSTRUCTURES; SHAPE MEMORY ALLOY; STRESS INDUCED MARTENSITIC TRANSFORMATION; STRESS-STRAIN RESPONSE; SUPERELASTIC; SUPERELASTIC WIRES; SUPERELASTICITY; TEM; TEST TEMPERATURES; TRANSMISSION ELECTRON;

EID: 78449306230     PISSN: 07496419     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.ijplas.2010.05.005     Document Type: Article
Times cited : (330)

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