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Application of X-ray Microtomography to Quantify the Liquid Fraction of M2 Steel for Semi-solid Forming process

Communication avec acte
Auteur
GU, Guochao
ccBECKER, Eric
ccPESCI, Raphaël
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]
ccLANGLOIS, Laurent
107452 Laboratoire de Conception Fabrication Commande [LCFC]

URI
http://hdl.handle.net/10985/9057
Date
2013

Résumé

Thixoforging, one variant of semi-solid metal processing in which the metallic alloys are processed at low liquid fraction (0.1< Fl < 0.3), is used to produce complex parts with high mechanical properties. Steel thixoforging faces more challenges as compared to that of low melting point materials due to high processing temperature and lack of understanding of the thermomechanical behavior of materials in the given conditions. It is crucial to study the microstructure in the semi-solid state to improve the understanding of the thixoforging process since the material behavior strongly depends on main parameters: the liquid fraction, its distribution as well as the coherence of the solid skeleton. The microstructure has a great influence on the viscosity of the material, on the flows and finally on the final shape and mechanical properties of the thixoforged parts. Here, the characterization of the volume fraction and distribution of liquid in the semi-solid state with high energy 3D X-ray microtomography is investigated on M2 steel grade as a ‘model’ alloy. The obtained results are compared to 2D observations using EDS technique in SEM on heated and quenched specimens. They show a good correlation making both approaches very efficient for the study of the liquid zones in the semi-solid state.

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Documents liés

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  • Determination of quantity and localization of liquid in the semi-solid state using both 3D X-ray microtomography and 2D techniques for steel thixoforming 
    Article dans une revue avec comité de lecture
    GU, Guochao; ccBECKER, Eric; ccPESCI, Raphaël; ccLANGLOIS, Laurent (Trans Tech Publications Ltd, 2013)
    The distribution of liquid at the semi solid state is one of the most important parameters for steel thixoforging. It has a great influence on the viscosity of the material, on the flows and finally on the final shape and ...
  • Determination of quantity and localization of liquid in the semi-solid state using both 3D X-ray microtomography and 2D techniques for steel thixoforming 
    Communication avec acte
    GU, Guochao; ccBECKER, Eric; ccPESCI, Raphaël; ccLANGLOIS, Laurent (Trans Tech Publications, 2012)
    The distribution of liquid at the semi solid state is one of the most important parameters for steel thixoforging. It has a great influence on the viscosity of the material, on the flows and finally on the final shape and ...
  • Effets des échanges thermiques sur l'écoulement de l'alliage semi-solide mis en forme par thixoextrusion 
    Communication avec acte
    ccBECKER, Eric; GU, Guochao; ccPESCI, Raphaël; ccLANGLOIS, Laurent (Association Française de Mécanique, 2011)
    Le comportement d’un alliage mis en forme à l’état semi-solide n’est toujours pas bien compris. Afin d’établir l'influence de différents paramètres sur l'écoulement de la matière, un processus de thixoextrusion expérimental ...
  • Effects Of Thermal Exchange On Material Flow During Steel Thixoextrusion Process 
    Communication avec acte
    ccBECKER, Eric; GU, Guochao; ccPESCI, Raphaël; ccLANGLOIS, Laurent (AIP, 2010)
    Semi-solid processing is an innovative technology for near net-shape production of components, where the metallic alloys are processed in the semi-solid state. Taking advantage of the thixotropic behavior of alloys in the ...
  • Microstructure Evolution and Material Flow of Steel in Semi-solid Forming Process 
    Communication avec acte
    GU, Guochao; ccBECKER, Eric; ccPESCI, Raphaël; ccLANGLOIS, Laurent (Wiley-VCH Verlag GmbH, 2011)
    The present study aims to identify and characterize the development of microstructure and deformation characteristics of steel grades in semi-solid state which is affected by the change in morphologies of microstructure ...

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