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Prediction of Springback After Draw‐Bending Test Using Different Material Models

Communication avec acte
Auteur
RACZ, Sever-Gabriel
1104 Laboratoire de physique et mécanique des matériaux [LPMM]
95648 "Lucian Blaga" University/Universitatea „Lucian Blaga” din Sibiu [ULBS]
KHAN, Salim
1104 Laboratoire de physique et mécanique des matériaux [LPMM]
ccCHALAL, Hocine
1104 Laboratoire de physique et mécanique des matériaux [LPMM]
ccABED-MERAIM, Farid
1104 Laboratoire de physique et mécanique des matériaux [LPMM]
ccBALAN, Tudor
1104 Laboratoire de physique et mécanique des matériaux [LPMM]

URI
http://hdl.handle.net/10985/10272
DOI
10.1063/1.3552481
Date
2011

Résumé

Within the framework of sheet metal forming, the importance of hardening models for springback predictions has been often emphasized. While some specific applications require very accurate models, in many common situations simpler (isotropic hardening) models may be sufficient. In these conditions, investigation of the impact of hardening models requires well defined test configurations and accurate measurements to generate the reference data. Specific draw-bend tests have been especially conceived for this purpose. In this work, such a draw-bending experimental device has been designed, for use on a biaxial tension machine. Three different steel sheets have been tested (one mild steel sheet and two HSS sheets) with thicknesses between 0.8 and 2 mm. Up to three different back-force levels were used for the tests. Wall curvatures and springback angles were measured. Finite element simulations of the tests were performed. A parameter sensitivity analysis has been carried out in order to determine the numerical parameters ensuring accurate springback results. The tests were simulated using an isotropic hardening model and a combined isotropic-kinematic hardening model. The impact of the hardening model is explored for the various test configurations and conclusions are drawn concerning their relative importance.

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AMPT 2010 - Racz et al-AIP.pdf
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Article-AIP-Racz-et-al-2010
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  • Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux (LEM3)

Documents liés

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

  • Springback of thick sheet AHSS subject to bending under tension 
    Article dans une revue avec comité de lecture
    RACZ, Sever-Gabriel; ccCHALAL, Hocine; ccBALAN, Tudor (Elsevier, 2012)
    The springback behavior of four advanced high-strength sheet steels (Dual-Phase, TRIP, ferrite-bainite) with thicknesses ranging from 1.2 to 4 mm was investigated by means of the bending-under-tension (BUT) test. The ...
  • Investigation of thick sheet AHSS springback in combined bending under tension 
    Article dans une revue avec comité de lecture
    RACZ, Sever-Gabriel; ccCHALAL, Hocine; ccBALAN, Tudor (Trans Tech Publications, 2012)
    In this paper, we investigate the springback behavior of several advanced high-strength sheet steels (TRIP, Dual-Phase, ferrite-bainite) with thicknesses up to 4 mm. Samples were tested by means of the bending-under-tension ...
  • Implementation and comparison of advanced behaviour laws for sheet metal forming 
    Communication avec acte
    RACZ, Sever-Gabriel; ccLEMOINE, Xavier; ccHADDAG, Badis; ccABED-MERAIM, Farid (Springer, 2005-04)
    This contribution concerns the implementation in the FE code Abaqus/Explicit of anisotropic elastoplastic behaviour laws for sheet metal forming. Several hardening laws are considered: isotropic hardening (Swift, Voce), ...
  • Plastic Instability Based on Bifurcation Analysis: Effect of Hardening and Gurson Damage Parameters on Strain Localization 
    Article dans une revue avec comité de lecture
    MANSOURI, Lotfi; ccCHALAL, Hocine; ccABED-MERAIM, Farid; ccBALAN, Tudor (Trans Tech Publications, 2012)
    In this work, we propose to couple the Gurson-Tvergaard-Needleman (GTN) model, known for its widespread use to describe damage evolution in metallic materials, to the Rice localization criterion. ...
  • Prediction of strain localization during sheet metal forming using bifurcation analysis and Gurson-type damage 
    Communication avec acte
    MANSOURI, Lotfi; ccCHALAL, Hocine; ccABED-MERAIM, Farid; ccBALAN, Tudor (E. Oñate, D.R.J. Owen, D. Peric and B. Suárez, 2011)
    The strain localization phenomenon that may occur during sheet metal forming represents a major cause of defective parts produced in the industry. Several instability criteria have been developed in the literature to predict ...

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