Orientation and Path Dependence of Formability in the Stress- and the Extended Stress-Based Forming Limit Curves

Author:

Simha C. Hari Manoj1,Inal Kaan1,Worswick Michael J.1

Affiliation:

1. Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, ON, N2L 3G1, Canada

Abstract

This article analyzes the formability data sets for aluminum killed steel (Laukonis, J. V., and Ghosh, A. K., 1978, “Effects of Strain Path Changes on the Formability of Sheet Metals,” Metall. Trans. A., 9, pp. 1849–1856), for Al 2008-T4 (Graf, A., and Hosford, W., 1993, “Effect of Changing Strain Paths on Forming Limit Diagrams of Al 2008-T4,” Metall. Trans. A, 24A, pp. 2503–2512) and for Al 6111-T4 (Graf, A., and Hosford, W., 1994, “The Influence of Strain-Path Changes on Forming Limit Diagrams of Al 6111 T4,” Int. J. Mech. Sci., 36, pp. 897–910). These articles present strain-based forming limit curves (ϵFLCs) for both as-received and prestrained sheets. Using phenomenological yield functions, and assuming isotropic hardening, the ϵFLCs are transformed into principal stress space to obtain stress-based forming limit curves (σFLCs) and the principal stresses are transformed into effective stress and mean stress space to obtain the extended stress-based forming limit curves (XSFLCs). A definition of path dependence for the σFLC and XSFLC is proposed and used to classify the obtained limit curves as path dependent or independent. The path dependence of forming limit stresses is observed for some of the prestrain paths. Based on the results, a novel criterion that, with a knowledge of the forming limit stresses of the as-received material, can be used to predict whether the limit stresses are path dependent or independent for a given prestrain path is proposed. The results also suggest that kinematic hardening and transient hardening effects may explain the path dependence observed in some of the prestrain paths.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference29 articles.

1. Plastic Instability and Fracture in Sheets Stretched Over Rigid Punches;Keeler;ASM Trans. Q.

2. Effect of Changing Strain Paths on Forming Limit Diagrams of Al 2008-T4;Graf;Metall. Trans. A

3. Effects of Strain Path Changes on the Formability of Sheet Metals;Laukonis;Metall. Trans. A

4. The Influence of Strain-Path Changes on Forming Limit Diagrams of Al 6111 T4;Graf;Int. J. Mech. Sci.

5. Determination and Use of the Forming Limit Stress Diagrams in Sheet Metal Forming;Arrieux;J. Mater. Process. Technol.

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