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Strain resolution of scanning electron microscopy based Kossel microdiffraction

Article dans une revue avec comité de lecture
Auteur
BOUSCAUD, Denis
MORAWIEC, Adam
229996 Institute of Metallurgy and Materials Science
PATOOR, Etienne
ccBERVEILLER, Sophie
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]
ccPESCI, Raphaël

URI
http://hdl.handle.net/10985/9278
DOI
10.1107/S1600576714019402
Date
2014
Journal
Journal of Applied Polymer Science

Résumé

Kossel microdiffraction in a scanning electron microscope enables determination of local elastic strains. With Kossel patterns recorded by a CCD camera and some automation of the strain determination process, this technique may become a convenient tool for analysis of strains. As for all strain determination methods, critical for the applicability of the Kossel technique is its strain resolution. The resolution was estimated in a number of ways: from the simplest tests based on simulated patterns (of an Ni alloy), through analysis of sharp experimental patterns of Ge, to estimates obtained by in situ tensile straining of single crystals of the Ni-based superalloy. In the latter case, the results were compared with those of conventional X-ray diffraction and synchrotron-based Kossel diffraction. In the case of high-quality Ge patterns, a resolution of 1 × 10-4was reached for all strain tensor components; this corresponds to a stress of about 10 MPa. With relatively diffuse patterns from the strained Ni-based superalloy, under the assumption of plane stress, the strain and stress resolutions were 3 × 10-4and 60 MPa, respectively. Experimental and computational conditions for achieving these resolutions are described. The study shows potential perspectives and limits of the applicability of semiautomatic Kossel microdiffraction as a method of local strain determination.

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Documents liés

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  • Local stress analysis in an SMA during stress-induced martensitic transformation by Kossel microdiffraction 
    Communication avec acte
    BOUSCAUD, Denis; PATOOR, Etienne; MORAWIEC, Adam; ccBERVEILLER, Sophie; ccPESCI, Raphaël (Trans Tech Publications, 2014)
    The Kossel microdiffraction in a scanning electron microscope allows for local stress determination. This technique has been applied to monitor stress evolution within grains of austenite in the course of martensitic ...
  • Stress analysis by Kossel microdiffraction on a nickel-based single crystal superalloy during an in situ tensile test – Comparison with classical X-Ray diffraction 
    Article dans une revue avec comité de lecture
    BOUSCAUD, Denis; PATOOR, Etienne; ccBERVEILLER, Sophie; ccPESCI, Raphaël (Trans Tech Publications Inc, 2011)
    A Kossel microdiffraction experimental set up is under development inside a Scanning Electron Microscope (SEM) in order to determine the crystallographic orientation as well as the inter- and intragranular strains and ...
  • Estimation of the electron beam-induced specimen heating and the emitted X-rays spatial resolution by Kossel microdiffraction in a scanning electron microscope 
    Article dans une revue avec comité de lecture
    BOUSCAUD, Denis; PATOOR, Etienne; ccBERVEILLER, Sophie; ccPESCI, Raphaël (Elsevier, 2012)
    A Kossel microdiffraction experimental setup has been developed inside a Scanning Electron Micro-scope for crystallographic orientation, strain and stress determination at a micrometer scale. This paper reports an estimation ...
  • Martensitic transformation induced by single shot peening in a metastable austenitic stainless steel 301LN: Experiments and numerical simulation 
    Article dans une revue avec comité de lecture
    GUIHEUX, Romain; BERVEILLER, Sophie; KUBLER, Régis; BOUSCAUD, Denis; PATOOR, Etienne; PUYDT, Quentin (Elsevier, 2017)
    During conventional shot peening on metastable austenitic steels, martensitic transformation occurs in additionto plastic straining. In this work, the impact of a single spherical steel shot on a AISI 301LN steel was ...
  • Effect of shot peening on microstructure of steels exhibiting a TRIP effect – Experimental and modeling approaches 
    Communication avec acte
    GUIHEUX, Romain; BOUSCAUD, Denis; PATOOR, Etienne; PUYDT, Quentin; ccBERVEILLER, Sophie; ccKUBLER, Regis (12th International Conference on the Mechanical Behavior of Materials, 2015)
    Shot peening process is commonly used in mechanical industries to increase life duration of mechanical and structural parts, as automotive gears for instance. It is based on the development of residual compressive stresses ...

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