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  1. Research Outputs

Hot Torsion Tests of AA6082 Alloy

Chapter
Publication Date:
2024
Short description:
Hot Torsion Tests of AA6082 Alloy / Donato, S.D., Pelaccia, R., Negozio, M., Mehtedi, M.E., Reggiani, B., Donati, L. (KEY ENGINEERING MATERIALS). - In: Key Engineering Materials Vol. 988[s.l] : Trans Tech Publications Ltd, 2024. - pp. 21-29 [10.4028/p-5c0LIi]
abstract:
Materials characterization and the knowledge of their elastic-plastic behavior are of fundamental importance for the design of industrial manufacturing processes. Nowadays, FEM simulation is the main tool used to optimize product quality and minimize scraps, and the numerical codes have evolved over the years to obtain accurate solutions with reduced computational times. Nevertheless, in order to perform reliable simulations, it is necessary to include accurate modeling of the material flow stress. Hot torsion is a powerful method for the characterization of the material flow stress because, tests can be carried out at constant speeds and temperatures, reaching large strain values, and thus getting over the limits of compression and tensile tests. In this paper the hot torsion characterization applied to AA6082 alloy is presented: tests were performed with equivalent strain rates of 0.01, 0.1, 1, and 10 s-1, in the temperature range from 440 to 550 °C (from 713.15 to 823.15 K). The results are presented in terms of equivalent stress vs equivalent strain. Finally, the material flow stress curve was predicted by the Hyperbolic sine model and Hensel-Spittel law, and the material parameters A, m1-9 are provided for the temperature expressed in °C and K.
Iris type:
Capitolo/Saggio
Keywords:
AA6082; Aluminum; Flow stress; Hot torsion test; Material characterization
List of contributors:
Donato, S. D.; Pelaccia, R.; Negozio, M.; Mehtedi, M. E.; Reggiani, B.; Donati, L.
Authors of the University:
PELACCIA RICCARDO
REGGIANI Barbara
Handle:
https://iris.unimore.it/handle/11380/1362054
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1362054/708422/KEM.988.21.pdf
Book title:
Key Engineering Materials Vol. 988
Published in:
KEY ENGINEERING MATERIALS
Journal
KEY ENGINEERING MATERIALS
Series
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