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Classification of the acquisition conditions driving the accuracy of strain measurements during in situ DIC with scanning electron microscope

Article dans une revue avec comité de lecture
Auteur
ccGOULMY, Jean-Patrick
GUITTONNEAU, Fabrice
ccJÉGOU, Sébastien
211915 Mechanics surfaces and materials processing [MSMP]
BARRALLIER, Laurent
211915 Mechanics surfaces and materials processing [MSMP]

URI
http://hdl.handle.net/10985/24561
DOI
10.1111/str.12456
Date
2023-07-13
Journal
Strain

Résumé

Performing in situ scanning electron microscope (SEM) tests is an interesting way to visualise strain heterogeneities under mechanical loading. An essential step before performing the tests is to define the acquisition conditions. The aim of this paper is to propose a classification of the acquisition conditions that are most important for the accuracy of strain measurements using digital image correlation (DIC) in in situ SEM tests. More than 200 image pairs were acquired using a field emission gun SEM. The influence of different acquisition conditions was investigated: acceleration voltage, probe current, working distance, magnification, number of integrated images, image resolution, integration and number of integrated images, scan speed, contrast, brightness and exposure time of the sample in a given area. The methodology implemented in this work is an interesting tool for detecting scan line shift, drift distortion, spatial distortion and rastering artefacts. It allows the optimization of SEM acquisition conditions for strain measurements. Finally, optimal acquisition conditions for in situ testing are proposed and used to perform a tensile test on pure copper. The main factors highlighted include the size of the subset used in the DIC, the beam stabilisation time before image acquisition and the size of the images, which play a significant role in the results. It is recommended to apply the methodology to each device to optimise the acquisition conditions.

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

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  • Mechanical behavior of polycrystals: Coupled in situ DIC-EBSD analysis of pure copper under tensile test 
    Article dans une revue avec comité de lecture
    ccGOULMY, Jean-Patrick; ccDEPRIESTER, Dorian; GUITTONNEAU, F.; ccJÉGOU, Sébastien; BARRALLIER, Laurent (Elsevier BV, 2022-12)
    Understanding the mechanisms at the microstructure scale is of great importance for modeling the behavior of materials at different scales. To this end, digital image correlation (DIC) is an effective measurement method ...
  • Towards an image quality criterion to optimize Digital image correlation. Use of an analytical model to optimize acquisition conditions 
    Article dans une revue avec comité de lecture
    ccGOULMY, Jean-Patrick; ccJÉGOU, Sébastien; BARRALLIER, Laurent (Elsevier BV, 2022)
    Digital image correlation (DIC) is expanding in many fields. In particular, it requires that the acquisition conditions and speckle be adapted to each application. A new methodology allowing to define the quality of the ...
  • Cementite Residual Stress Analysis in Gas-nitrided Low Alloy Steels 
    Article dans une revue avec comité de lecture
    GOEKJIAN, S.; GUITTONNEAU, Fabrice; BARRALLIER, Laurent; ccJÉGOU, Sébastien (Materials Research Forum LLC, 2016)
    This paper deals with the measurement of residual stresses in cementite after gas-nitriding of a 33CrMoV12-9 steel. During nitriding, precipitation of nanometric alloying elements nitrides and cementite at grain boundaries ...
  • Crystal Plasticity simulations of in situ tensile tests: A two-step inverse method for identification of CP parameters, and assessment of CPFEM capabilities 
    Article dans une revue avec comité de lecture
    ccDEPRIESTER, Dorian; ccGOULMY, Jean-Patrick; BARRALLIER, Laurent (Elsevier BV, 2023-09)
    As the computational capability of modern computers increases, the Crystal Plasticity Finite Element Method (CPFEM) becomes more and more popular in materials science to model the mechanical behaviour of polycrystals. ...
  • Slip identification from HR-DIC/EBSD: Incorporating Crystal Plasticity constitutive laws 
    Article dans une revue avec comité de lecture
    ccDEPRIESTER, Dorian; ccGOULMY, Jean-Patrick; BARRALLIER, Laurent (Elsevier, 2024-12)
    It is well known that dislocation slip plays a major role in plastic deformation of polycrystals. Depending on the crystal’s symmetry, only a limited number of Slip Systems (SSs) are possible, and their activities depend ...

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