On the Accuracy of Elastic Strain Field Measurements by Laue Microdiffraction and High-Resolution EBSD: a Cross-Validation Experiment
Article dans une revue avec comité de lecture
Date
2016Journal
Experimental MechanicsRésumé
Determining the accuracy of elastic strain measurements in plastically deformed alloys is an experimental challenge. To develop a novel cross-validation procedure, a controlled elasto-plastic strain gradient was created in a stainless steel single crystal by four point bending deformation. The corresponding elastic strain field was probed, with an intragranular spatial resolution, in-situ by Laue microdiffraction and ex-situ by High Resolution EBSD. Good agreement is found for the two independent measurements and the predictions of a mechanical model, at plastic strains below 0.5 %. The accuracy of the measurements is estimated at 3.2 × 10 − 4 .
Fichier(s) constituant cette publication
Cette publication figure dans le(s) laboratoire(s) suivant(s)
Documents liés
Visualiser des documents liés par titre, auteur, créateur et sujet.
-
Direct measurement of local constitutive relations, at the micrometre scale, in bulk metallic alloys Article dans une revue avec comité de lecturePLANCHER, E; MAURICE, C; LOISNARD, D; RUPIN, N; MARIJON, Jean-Baptiste; MICHA, Jean-Sébastien; ROBACH, Odile; CASTELNAU, Olivier; BOSSO, E; STODOLNA, J; PETIT, J; FAVIER, Véronique (International Union of Crystallography, 2017)Multiscale models involving crystal plasticity are essential to predict the elastoplastic behavior of structural materials with respect to their microstructure. However, those models are often limited by a poor knowledge ...
-
Article dans une revue avec comité de lecturePLANCHER, E.; TAJDARY, Pouya; AUGER, Thierry; CASTELNAU, Olivier; LOISNARD, Dominique; MARIJON, Jean-Baptiste; MAURICE, Claire; MICHEL, Vincent; ROBACH, Odile; STODOLNA, Julien (Springer Verlag (Germany), 2019)Synchrotron Laue microdiffraction and digital image correlation measurements were coupled to track the elastic strain field (or stress field) and the total strain field near a general grain boundary in a bent bicrystal. A ...
-
Chapitre d'ouvrage scientifiqueROBACH, Odile; KIRCHLECHNER, Christoph; MICHA, Jean Sébastien; ULRICH, M. Olivier; BIQUARD, Xavier; GEAYMOND, M. Olivier; CASTELNAU, Olivier; BORNERT, Michel; PETIT, Johann; SICARDY, Olivier; VILLANOVA, Julie; RIEUTORD, François; BERVEILLER, Sophie (mperial College Press, 2014)This book highlights emerging diffraction studies of strain and dislocation gradients with mesoscale resolution, which is currently a focus of research at laboratories around the world. While ensemble-average diffraction ...
-
Communication avec actePETIT, Johann; BORNERT, Michel; HOFMANN, Felix A.; ROBACH, Odile; MICHA, Jean Sébastien; ULRICH, Olivier; LE BOURLOT, Christophe; FAURIE, Damien; KORSUNSKY, Alexander; CASTELNAU, Olivier (Elsevier, 2012)The X-ray Laue microdiffraction technique, available at beamline BM32 on the synchrotron ESRF, is ideally suited for probing the field of elastic strain (and associated stress) in deformed polycrystalline materials with a ...
-
Article dans une revue avec comité de lectureZHANG, F. G; CASTELNAU, Olivier; BORNERT, Michel; MARIJON, Jean-Baptiste; PLANCHER, Emeric; PETIT, Johann (International Union of Crystallography, 2015)A new method of determining the deviatoric elastic strain and lattice orientation from Laue microdiffraction images is presented. Standard data treatment methods can suffer from the difficulty of precisely pinpointing the ...