A dedicated DIC methodology for characterizing plastic deformation in single crystals

XG Wang, JF Witz, A El Bartali, A Oudriss… - Experimental …, 2016 - Springer
XG Wang, JF Witz, A El Bartali, A Oudriss, R Seghir, P Dufrenoy, X Feaugas, E Charkaluk
Experimental Mechanics, 2016Springer
This paper focuses on the development of an appropriate Digital Image Correlation (DIC)
methodology based on Image Registration and dedicated for characterizing the plastic
deformation in single crystals. A pure nickel single crystal specimen is plastically deformed
in tension and investigated by DIC technique. Based on the measured kinematic fields, the
proposed method enables to identify the slip activity on the crystal surface and to locate
precisely the slip band interfaces at microscale which behave as kinematic discontinuities …
Abstract
This paper focuses on the development of an appropriate Digital Image Correlation (DIC) methodology based on Image Registration and dedicated for characterizing the plastic deformation in single crystals. A pure nickel single crystal specimen is plastically deformed in tension and investigated by DIC technique. Based on the measured kinematic fields, the proposed method enables to identify the slip activity on the crystal surface and to locate precisely the slip band interfaces at microscale which behave as kinematic discontinuities. The computed displacement data are projected on a well-defined physical basis containing slip details, then the strain fields can be derived directly from a set of analytical functions. The possible errors in displacement induced by this projection approach are evaluated. Finally, some results of the evaluated strain fields are presented. It demonstrates that the developed DIC methodology allows quantitative characterization of a heterogeneous deformation process and promotes further relationships to be established between slip activity and strain field evolution in single crystals.
Springer
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