Discussions on constitutive equations of superplastic 5083 aluminum alloy
β Scribed by Masataka Tokuda; Tadashi Inaba; Hiroyuki Ohigashi; Akira Kurakake
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 180 KB
- Volume
- 43
- Category
- Article
- ISSN
- 0020-7403
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β¦ Synopsis
A constitutive equation for a ΓΏne-grain superplastic material, 5083 Al alloy, is proposed on the basis of combined loading experiments and the classical (mathematical, phenomenological) theory of plasticity using the potential function. The experiments are performed by applying the combined loads of axial force and torque to the thin-walled tubular specimen of 5083 Al alloy. A new potential function is proposed by incorporating the second invariant and third invariant of stress deviator. The proposed constitutive equation can predict the mechanical behavior of 5083 Al alloy under the combined loading conditions.
π SIMILAR VOLUMES
Effect of lubrication on deformation behavior of a superplastic material has relatively been less examined, though it is important for industrial application. In this paper, a superplastic 5083 Al alloy under bi-axial deformation was investigated by deforming the sheet into a rectangular die cavity
The effect of stress state on high-temperature deformation of fine-grained aluminum-magnesium alloy AA5083 sheet is investigated over a range of temperatures and strain rates for which the grain-boundary-sliding and solute-drag creep mechanisms govern plastic flow. Experimental data from uniaxial te