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Coupled effect of crystallographic orientation and indenter geometry on nanoindentation of single crystalline copper

Z. Wang, J. Zhang, H. Hassan, J. Zhang, Y. Yan, A. Hartmaier, T. Sun

International Journal of Mechanical Sciences, 148, 531–539, (2018)

DOI: 10.1016/j.ijmecsci.2018.09.007

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Surface pile-up topography is very significant for property extraction in nanoindentation tests. In the present work, we perform crystal plasticity finite element simulations of Berkovich nanoindentation of single crystalline copper with different crystallographic orientations, which derive quantitatively comparable mechanical properties and surface pile-up topographies with experimental data. Simulation results demonstrate that there is a coupled effect of crystallographic orientation of indented material and indenter geometry on surface pile-up behavior, due to the interaction between intrinsic dislocation slip events and extrinsic discrete stress distribution patterns. Based on the relative spatial orientation between crystallographic orientation of indented material and indenter geometry, a surface pile-up density factor m p is proposed to qualitatively characterize the propensity of surface pile-up behavior in nanoindentation tests of single crystalline copper

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{"type":"article", "name":"z.wang20189", "author":"Z. Wang and J. Zhang and H. Hassan and J. Zhang and Y. Yan and A. Hartmaier and T. Sun", "title":"Coupled effect of crystallographic orientation and indenter geometry on nanoindentation of single crystalline copper", "journal":"International Journal of Mechanical Sciences", "volume":"148", "OPTnumber":"148", "OPTmonth":"9", "year":"2018", "OPTpages":"531–539", "OPTnote":"", "OPTkey":"Nanoindentation, Single crystalline copper, Surface pile-up, Indenter geometry, Crystal plasticity finite element method", "DOI":"10.1016/j.ijmecsci.2018.09.007"}
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