Investigation of through thickness residual stress distribution in equal channel angular rolled Al 5083 alloy by layer removal technique and X-ray diffraction

M. Mahmoodi, M. Sedighi, D. A. Tanner

Research output: Contribution to journalArticlepeer-review

Abstract

The layer removal technique and the X-ray diffraction method have been employed to evaluate the residual stresses through the thickness of aluminum alloy 5083 processed by equal channel angular rolling (ECAR). ECAR is a severe plastic deformation process that introduces shear deformation to sheet metals. The process has been completed on 2. mm thick strips passed three times through die channels in a continuous manner. In this work, the profile of residual stresses was quantitatively determined. It was observed that after the ECAR process, the residual stress magnitudes were changed from approximately zero in annealed condition up to half of the yield strength value of ECARed samples. The distribution of the residual stresses was found to be non-uniform through the thickness and the ECARed sample was compressive at the top surface while it was tensile at the bottom surface.

Original languageEnglish
Pages (from-to)516-520
Number of pages5
JournalMaterials and Design
Volume40
DOIs
Publication statusPublished - Sep 2012

Keywords

  • A. Non-ferros metals and alloys
  • F. Elastic behavior
  • G. X-ray analysis

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