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Submicrocristalline structure and dynamic recovery of cold flowformed ELI grade Ti-6Al-4V

Communication avec acte
Auteur
MASSONI, Elisabeth
ccDEPRIESTER, Dorian
1158 Centre de Mise en Forme des Matériaux [CEMEF]

URI
http://hdl.handle.net/10985/11941
Date
2013

Résumé

Flowforming is a means to produce seamless tubes by plastic deformation at room temperature. It consists in reducing the thickness of a tubular part mounted on a mandrel by deforming it using several rollers translating along the tube axis, while the tube is rotating along its axis. Thanks to the high compressive stresses, and to the incremental nature of the deformation process, flowforming can lead to a high thickness reduction and thus to high elongation of the deformed tubes. Ti-6Al-4V (Extra Low Interstitial grade) tubes have been deformed by cold flowforming, with a thickness reduction ratio higher than 60%, and their microstructures have been investigated using light optical microscopy (LOM), scanning electron microscopy (SEM) and electron backscattered diffraction (EBSD). Based on EBSD data, a post-processing analysis has been performed in order to study the texture of the flowformed parts. Optical Microscopy showed that the material could be deformed without displaying flow instability such as adiabatic shear banding, despite the fact that it has been processed out of the stable processing maps (high strain rate and low temperature). It also evidenced a major deformation along the tube axis accompanied with a slight twist due to torsion stress. EBSD analysis indicated the occurrence of continuous dynamic recrystallization, which is rarely reported in the α-β domain of such alloys. The recovery/ recrystallization effects resulted in a submicrocrystalline equiaxed structure, which is consistent with that previously reported for Ti-6Al-4V subjected to severe plastic deformation (SPD). The texture of the hexagonal α-phase appeared to be similar to that obtained on extruded Ti-6Al-4V, with a basal component perpendicular to the tube axis

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

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  • On the damage criteria and their critical values for flowforming of ELI grade Ti64 
    Communication avec acte
    MASSONI, Elisabeth; ccDEPRIESTER, Dorian (Trans Tech Publications, 2014)
    Cold flowforming is a chipless forming process that deforms tubular parts by reducing their outer diameter and thickness while increasing their length. It consists of a rotating mandrel and one or more rollers that are ...
  • Radical Voronoï tessellation from random pack of polydisperse spheres: Prediction of the cells’ size distribution 
    Article dans une revue avec comité de lecture
    DEPRIESTER, Dorian; KUBLER, Régis (Elsevier, 2019)
    This paper investigates the relevance of the representation of polycrystalline aggregates using RadicalVoronoï(RV)tessellation,computedfromRandomClosePacks(RCP)ofsphereswithradiusdistributionfollowing a lognormal distribution. ...
  • Radical Voronoï tessellation from random pack of polydisperse spheres: Prediction of the cells’ size distribution 
    Article dans une revue avec comité de lecture
    ccDEPRIESTER, Dorian; ccKUBLER, Regis (Elsevier, 2018)
    This paper investigates the relevance of the representation of polycrystalline aggregates using Radical Vorono (RV) tessellation, computed from Random Close Packs (RCP) of spheres with radius distribution following a ...
  • Resolution of the Wicksell's equation by Minimum Distance Estimation 
    Article dans une revue avec comité de lecture
    ccDEPRIESTER, Dorian; ccKUBLER, Regis (International Society for Stereology, 2019)
    The estimation of the grain size in granular materials is usually performed by 2Dobservations. Unfolding the grain size distribution from apparent 2D sizes is commonly referred as the corpuscle problem. For spherical ...
  • Calculs Éléments Finis à l’échelle des grains depuis des données EBSD 
    Communication avec acte
    ccDEPRIESTER, Dorian; ccKUBLER, Regis (2019)
    For the sake of understanding the behaviour of a polycrystal at its grain scale, Finite Element (FE) numerical simulations can be performed, taking into account the physical properties of each grain. Those simulations must ...

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