Dislocation nucleation and defect structure during surface indentation

We model indentation of a metal surface by combining an atomistic metal with a hard-sphere indenter. This work provides atomistic imaging of dislocation nucleation during displacement controlled indentation on a passivated surface. Dislocations and defects are located and imaged by local deviations...

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Veröffentlicht in:Physical Review, B: Condensed Matter B: Condensed Matter, 1998-11, Vol.58 (17), p.11085-11088
Hauptverfasser: Kelchner, Cynthia L., Plimpton, S. J., Hamilton, J. C.
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Sprache:eng
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Zusammenfassung:We model indentation of a metal surface by combining an atomistic metal with a hard-sphere indenter. This work provides atomistic imaging of dislocation nucleation during displacement controlled indentation on a passivated surface. Dislocations and defects are located and imaged by local deviations from centrosymmetry. For a Au(111) surface, nucleation of partial dislocation loops occurs below the surface inside the indenter contact area. We compare and contrast these observations with empirical criteria for dislocation nucleation and corresponding continuum elasticity solutions. {copyright} {ital 1998} {ital The American Physical Society}
ISSN:0163-1829
1095-3795
DOI:10.1103/PhysRevB.58.11085