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  4. Dislocation sources and the flow stress of polycrystalline thin metal films
 
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2003
  • Zeitschriftenaufsatz

Titel

Dislocation sources and the flow stress of polycrystalline thin metal films

Abstract
Plastic deformation of thin metal films has been investigated with the heop of a dicrete dislocation dynamics simulation. In particular, the operation of a Frank-Read source was studied in the confined geometry of a thin polycrystalline film. The results lead to a new model for the dependence of flow stress on film thickness and grain size. It is based on the assumption that the number of dislocation sources per grain is small and multiple activation is required. The model predicts a flow stress that scales with the inverse film thickness or grain size ( whichever is smaller) and that is roughly four times higher than predicted by previous models, thereby giving better agreement with experimental data.
Author(s)
Blanckenhagen, B. von
Gumbsch, P.
Fraunhofer-Institut für Werkstoffmechanik IWM
Arzt, E.
Zeitschrift
Philosophical magazine. Letters
Thumbnail Image
DOI
10.1080/0950083021000050287
Language
Englisch
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IWM
Tags
  • dislocation source

  • flow stress

  • thin metal

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