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Volumn 91, Issue 5, 2011, Pages 657-681
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A new micromechanics-based scale transition model for the strain-rate sensitive behavior of nanocrystalline materials
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Author keywords
dislocations; elastic viscoplastic material; grain boundaries; nanocrystalline copper; rate dependent material; strengthening mechanisms
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Indexed keywords
DISLOCATIONS;
ELASTIC-VISCOPLASTIC MATERIAL;
NANOCRYSTALLINE COPPER;
RATE-DEPENDENT MATERIAL;
STRENGTHENING MECHANISMS;
COATINGS;
GRAIN BOUNDARIES;
GRAIN SIZE AND SHAPE;
NANOCRYSTALLINE MATERIALS;
SLIP FORMING;
STRAIN RATE;
STRENGTHENING (METAL);
VISCOPLASTICITY;
GRAIN BOUNDARY SLIDING;
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EID: 79551507583
PISSN: 14786435
EISSN: 14786443
Source Type: Journal
DOI: 10.1080/14786435.2010.522213 Document Type: Article |
Times cited : (9)
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References (73)
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