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Influence des paramètres rhéologiques sur les limites de formage des tôles minces

Published online by Cambridge University Press:  21 March 2007

Hassan Fatmaoui
Affiliation:
Laboratoire de Mécanique et Milieux Continus, Université Ibn Zohr, Faculté des Sciences, Agadir, Maroc
Rachid Mesrar
Affiliation:
Laboratoire de Mécanique et Milieux Continus, Université Ibn Zohr, Faculté des Sciences, Agadir, Maroc
Jamal Chaoufi
Affiliation:
Laboratoire de Mécanique et Milieux Continus, Université Ibn Zohr, Faculté des Sciences, Agadir, Maroc
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Abstract

Dans ce travail, la striction localisée des tôles minces est étudiée en utilisant une analyse de localisation type Marciniak-Kuczynski. Un nouveau critère de plasticité orthotrope est utilisé pour déterminer les limites de formage pour des chemins linéaires de déformation. Par ailleurs l'influence des paramètres rhéologiques du matériau sur les courbes limites de formage (CLF) a été étudiée et analysée ainsi que celui de la surface de charge.

Type
Research Article
Copyright
© AFM, EDP Sciences, 2007

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References

Marciniak, Z., Kuczynski, K., Limit strains in the process of stretch-forming sheet metal, Int. J. Mech. Sci. 6 (1967) 609 CrossRef
Ferron, G., Mahkouk, R., Morréale, J., A parametric description of orthotropic plasticity in metal sheet, Int. J. Plasticity 10 (1994) 431449 CrossRef
G. Ferron, A. Molinari, Mechanical and physical aspects of sheet metal ductility, FLD: Concepts, Methods and applications (1989) 111
Drucker, D.C., Relation of experiments to mathematical theories of plasticity, J. Appl. Mech. 16 (1949) 349360
Hill, R., A theory of the yielding and plastic flow of anisotropic metals, Proc. Roy. Soc. London A 193 (1948) 281297 CrossRef
Banabic, D., E.Dannenmann, Prediction of the influence of yield locus on the limit strains in the sheet metals, J. Materials Processing Technology 109 (2001) 912 CrossRef
Kuroda, M., Tvergaard, V., Forming limit diagrams for anisotropic metal sheets with different yield criteria, Int. J. Solids and Structures 37 (2000) 50375059 CrossRef
N. Boudeau, J.C. Gelin, S. Salhi, Theoretical and numerical modelling of isotropic and anisotropic ductile damage in metal forming process in: SK Ghost, M Predeleanu (ed). Material processing defects, 1995, pp. 123–140
Boudeau, N., Gelin, J.C., Necking in sheet metal forming. Influence of macroscopic properties of materials, Int. J. Mech. Sci. 42 (2000) 22092232 CrossRef
Rondé Oustau, F., Baudelet, B., Microstructure and strain path in deep-drawing, Acta Metallurgica 25 (1997) 15231529 CrossRef
Mesrar, R., Ferron, G., Limits to ductility of metal sheets subjected to complex strain-paths, Int. J. Plasticity 14 (1998) 391411 CrossRef
R. Mesrar, Influence des paramètres rhéologiques du matériau sur l'emboutissage et étude des CLF, Thèse de doctorat d'état, Université Ibn Zohr, Agadir, Maroc, 1998
T. Kawaba, S. Ikeda, K. Kuroda, Measurement and analysis of different work hardening in cold-rolled sheet under biaxial tension, J. Mater. Proc. Tech. 80/81 (1998) 517–523
Kawaba, T., Susuki, I., Ikeda, S., Identification of a yield locus of aluminium alloy sheet A5182-0 by biaxial tensile tests using cruciform specimens, JSTP 89 (1998) 5661
Zeghloul, A., Mesrar, R., Ferron, G., Analytical expression of the forming limits in biaxially stretched sheets, Int. J. Mech. Sci. 32 (1990) 981990 CrossRef
Graf, A., Hosford, W.F., The influence of strain path changes on forming limit diagrams of Al 6111-T4, Int. J. Mech. Sci. 36 (1994) 897 CrossRef