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Volumn 60, Issue 18, 2012, Pages 6301-6311
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Atomistic characterization of pseudoelasticity and shape memory in NiTi nanopillars
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Author keywords
Molecular dynamics; Nanopillar; Phase transformation; Pseudoelasticity; Shape memory alloy
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Indexed keywords
APPLIED STRAIN;
ATOMISTIC MECHANISM;
DEFORMATION TWINNING;
DISLOCATION PINNING;
HIGH STRESS;
LARGE HYSTERESIS;
MOLECULAR DYNAMICS SIMULATIONS;
NANO-SIZED;
NANOPILLAR;
NANOPILLARS;
NANOSCALE SIZE EFFECTS;
NANOSTRUCTURED SHAPE MEMORY ALLOYS;
NICKEL TITANIUM;
PSEUDOELASTIC;
PSEUDOELASTICITY;
SHAPE MEMORY;
SHAPE MEMORY BEHAVIOR;
STRESS PLATEAU;
TWIN BOUNDARIES;
DEFORMATION;
MOLECULAR DYNAMICS;
NANOSTRUCTURES;
PHASE TRANSITIONS;
SHAPE MEMORY EFFECT;
STRESS-STRAIN CURVES;
TITANIUM;
TWINNING;
UNLOADING;
ELASTICITY;
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EID: 84866736062
PISSN: 13596454
EISSN: None
Source Type: Journal
DOI: 10.1016/j.actamat.2012.08.004 Document Type: Article |
Times cited : (93)
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References (44)
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