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Scratching the surface: Elastic rotations beneath nanoscratch and nanoindentation tests

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arxiv 2006.12554 v2 pith:GNICC2C4 submitted 2020-06-22 cond-mat.mtrl-sci

Scratching the surface: Elastic rotations beneath nanoscratch and nanoindentation tests

classification cond-mat.mtrl-sci
keywords rotationdeformationfieldsindentationcpfemcrystalfieldinitial
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we investigate the residual deformation field in the vicinity of nano-scratch tests using two orientations of a Berkovich tip on an (001) Cu single crystal. We compare the deformation with that from indentation, in an attempt to understand the mechanisms of deformation in tangential sliding. The lattice rotation fields are mapped experimentally using high-resolution electron backscatter diffraction (HR-EBSD) on cross-sections prepared using focused ion beam (FIB). A physically-based crystal plasticity finite element model (CPFEM) is used to simulate the lattice rotation fields, and provide insight into the 3D rotation field surrounding nano-scratch experiments, as it transitions from an initial static indentation to a steady-state scratch. The CPFEM simulations capture the experimental rotation fields with good fidelity, and show how the rotations about the scratch direction are reversed as the indenter moves away from the initial indentation.

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