Modeling the effect of precipitation spatial geometry and size distribution on the yield strength of aluminum alloys
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Computational Mechanics
Link
https://link.springer.com/content/pdf/10.1007/s00707-023-03608-0.pdf
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3. Frodal, M., Børvik, H.: On the effect of plastic anisotropy, strength and work hardening on the tensile ductility of aluminium alloys. Int. J. Solid. Struct. 188, 118–132 (2020)
4. Morin, D., Fourmeau, M., Børvik, T., Benallal, A., Hopperstad, O.S.: Anisotropic tensile failure of metals by the strain localization theory: an application to a high-strength aluminium alloy. Eur. J. Mech. A Solid 69, 99–112 (2018)
5. Mulyukov, R.R., Korznikova, G.F., Nazarov, K.S., Khisamov, R.K., Sergeev, S.N., Shayachmetov, R.U., Korznikova, E.A.: Annealing-induced phase transformations and hardness evolution in Al–Cu–Al composites obtained by high-pressure torsion. Acta Mech. 232, 1815–1828 (2021)
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