Published January 27, 2019 | Version 1
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Effect of crystal orientation on indentation-induced residual stress field: simulation and experimental validation

  • 1. Mines Saint-Etienne, Univ Lyon, CNRS, UMR 5307 LGF, Centre SMS, F - 42023 Saint-Etienne, France
  • 2. Département de Génie Mécanique, École Polytechnique de Montréal, C.P. 6079, Succ. Centre-ville, Montréal, Québec, H3C 3A7 Canada

Description

Numerical results related to the study "Effect of crystal orientation on indentation-induced residual stress field: simulation and experimental validation".

Experimental determination of local residual stress fields beneath a spherical indent on a <001> copper single crystal revealed the presence of a significant tensile residual stress zone. This finding was adequately reproduced by Crystal Plasticity Finite Element simulations. Further simulations of one spherical indent on many other crystal orientations showed a strong variation of the residual stress field with crystal orientation. Accumulative effects of five superposing indents were simulated on two extreme orientations <001> and <111>. The simulations showed that plastic anisotropy is responsible for potentially uneven compressive residual stresses after surface mechanical treatments.

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