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Determination of composition, residual stress and stacking fault depth profiles in expanded austenite with energy-dispersive diffraction

Article dans une revue avec comité de lecture
Auteur
CHRISTIANSEN, T.L.
KLAUS, Manuela
GENZEL, Christoph
SOMERS, M.A.J.
ccJÉGOU, Sébastien
211915 Mechanics surfaces and materials processing [MSMP]
128006 MECASURF [MECASURF]

URI
http://hdl.handle.net/10985/8956
DOI
10.1016/j.tsf.2012.06.029
Date
2013
Journal
Thin Solid Films

Résumé

A methodology is proposed combining the scattering vector method with energy dispersive diffraction for the non-destructive determination of stress- and composition-depth profiles. The advantage of the present method is a relatively short measurement time and avoidance of tedious sublayer removal; the disadvantage as compared to destructive methods is that depth profiles can only be obtained for depth shallower than half the layer thickness. The proposed method is applied to an expanded austenite layer on stainless steel and al- lows the separation of stress, composition and stacking fault density gradients.

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • A multireflection and multiwavelength residual stress determination method using energy dispersive diffraction 
    Article dans une revue avec comité de lecture
    MARCISZKO, Marianna; WAWSZCZAK, Roman; SIDHOM, Habib; WROBEL, Mirosław; WRONSKI, Sebastian; OPONOWICZ, Adrian; GENZEL, Christoph; KLAUS, Manuela; BACZMANSKI, Andrzej; ccBRAHAM, Chedly (International Union of Crystallography, 2018)
    The main focus of the presented work was the investigation of structure and residual stress gradients in the near-surface region of materials studied by X-ray diffraction. The multireflection method was used to measure ...
  • Stress evolution in plastically deformed austenitic and ferritic steels determined using angle- and energy-dispersive diffraction 
    Article dans une revue avec comité de lecture
    MARCISZKO-WIACKOWSKA, M; BACZMANSKI, Andrzej; ccBRAHAM, Chedly; WATROBA, M.; ccWRONSKI, Sebastian; WAWSZCZAK, R.; GONZALEZ, Gonzalo; ccKOT, Piotr; KLAUS, Manuela; ccGENZEL, Christoph (Elsevier, 2023-06)
    In the presented research, the intergranular elastic interaction and the second-order plastic incompatibility stress in textured ferritic and austenitic steels were investigated by means of diffraction. The lattice strains ...
  • A novel approach for nondestructive depth-resolved analysis of residual stress and grain interaction in the near-surface zone applied to an austenitic stainless steel sample subjected to mechanical polishing 
    Article dans une revue avec comité de lecture
    MARCISZKO-WIĄCKOWSKA, M.; OPONOWICZ, A.; BACZMANSKI, Andrzej; ccBRAHAM, Chedly; WĄTROBA, M.; WRÓBEL, M.; KLAUS, M.; GENZEL, Ch. (2022-05)
    The choice of the grain interaction model is a critical element of residual stress analysis using diffraction methods. For the near-surface region of a mechanically polished austenitic steel, it is shown that the application ...
  • Determination of the volume fraction of precipitates in a nitrided Fe- 0.354 wt% C-2.93 wt% Cr model alloy by anomalous small angle X-ray scattering 
    Article dans une revue avec comité de lecture
    ccDUMONT, Myriam; ccBARRALLIER, Laurent; ccJÉGOU, Sébastien (Elsevier, 2018)
    Anomalous small angle scattering (ASAXS) is a powerful non-destructive technique that can provide char- acteristic features of nanoscale precipitates such as the volume fraction, and chemical composition. In this paper, ...
  • Cementite Residual Stress Analysis in Gas-nitrided Low Alloy Steels 
    Article dans une revue avec comité de lecture
    GOEKJIAN, S.; GUITTONNEAU, Fabrice; ccBARRALLIER, 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 ...

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