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April 19, 20260 citationsOpen Access

In Situ EBSD Characterisation of Anisotropic Creep Behaviour in a Thick AA2139 Part during In-Forming Artificial Ageing

CGCalixte GautierPDPierre Antoine DubosDGDavid Gloaguen

Key Points

  • The aim is to investigate the anisotropic creep behavior of aluminum alloy 2139 during artificial ageing.
  • Conducted in situ thermomechanical loadings using Electron Backscattered Diffraction (EBSD) in a SEM.
  • Performed creep tests at 160°C and different pressures along three orientations.
  • Analyzed microstructural parameters and grain misorientations using KAM maps.
  • Conducted ex situ tensile tests on creep-aged specimens utilizing Digital Image Correlation (DIC).
  • Observed a 45% increase in yield stress and a 10% increase in ultimate tensile stress.
  • Noted a reduction in ductility, highlighted by a decrease in elongation.
  • KAM maps indicated a progressive increase in average values with saturation after 10 hours of creep.

Abstract

The present study aims to investigate the anisotropic creep behaviour of aluminium alloy 2139 during artificial ageing, through in situ thermomechanical loadings under Electron Backscattered Diffraction (EBSD). EBSD analysis enabled the characterisation of microstructural parameters and the identification of grain misorientations which were further correlated with macroscopic creep strain. In situ analyses were conducted within a Scanning Electron Microscope (SEM) using a micro‑tensile stage that allows simultaneous heating and mechanical loading. Creep tests were performed at 160°C under 50, 100 and 150 MPa along three different orientations in order to investigate the creep behaviour of the alloy. Kernel Average Misorientation (KAM) maps showed a progressive increase of the average KAM values for the different loading conditions, reaching a saturation value after 10 hours. Ex situ tensile tests were conducted on creep‑aged specimens using Digital Image Correlation (DIC). The main mechanical property evolutions (averaged across all orientations) are a 45 % increase in yield stress, a 10 % increase in ultimate tensile stress and a reduction in ductility, characterised by a notable decrease in elongation. Further works will focus on the result repeatability, as well as on the influence of prior deformation on the creep strain.

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Cite This Study

Gautier et al. (2026) studied this question.

synapsesocial.com/papers/69e4702d010ef96374d8d740https://doi.org/10.4028/p-x19oza
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