PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2026

The Experimental Determination of Parameters for the Modeling of the Stamping Process of AA6005C Aluminum Alloy

Authors

Mazzoni, Luiza Emília Vila Nova
Pereira, Fernanda Mariano
Calabria, Estefani Alves da Silva
Ferreira, Luca de Paulo
Faria, Alfredo Rocha de
Nossa, Tamires de Souza

Alloys , vol. 5 , no. 1 , Article 4

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Citations
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Authors

Abstract

© 2026 by the authors.This study provides the first complete and experimentally validated Yoshida–Uemori (Y–U) parameter set for AA6005C aluminum alloy, enabling accurate constitutive modeling for stamping simulations. A comprehensive set of mechanical tests was conducted, comprising uniaxial tensile tests along 0°, 45°, and 90° to the rolling direction, hydraulic bulge tests, Nakajima tests for the forming limit curve (FLC), and cyclic tension-compression experiments. Results showed moderate planar anisotropy with R-values of 0.49–0.90, equi-biaxial yield stress around 105 MPa, and plane-strain FLC0 ≈ 0.25, typical for 6xxx-series alloys. The cyclic tests highlighted a strong Bauschinger effect and transient softening, which allowed precise calibration of the Yoshida-Uemori (Y-U) model. The resulting material parameters were validated using a U-bending case study, in which the predicted springback angle differed by only 2°, confirming the transferability of the calibrated model to forming conditions not used during parameter identification. The dataset generated in this work provides a robust foundation for finite element simulations of the AA6005C stamping processes and constitutes a practical reference for industrial implementation.

Keywords

aluminum alloy formability Yoshida–Uemori model

Materials Science (miscellaneous) (MATE) Engineering (miscellaneous) (ENGI) Metals and Alloys (MATE)
: Scopus
Last Update: 2026-08-20
: 2-s2.0-105034180366