Increasing the Strength and Electrical Conductivity of AA6101 Aluminum by Nanostructuring

Author:

Meagher Rilee C.,Hayne Mathew L.,DuClos Julie,Davis Casey F.,Lowe Terry C.,Ungár Tamás,Arfaei Babak

Publisher

Springer International Publishing

Reference16 articles.

1. X. Sauvage, N. Enikeev, R. Valiev, Y. Nasedkina, and M. Murashkin, “Atomic-scale analysis of the segregation and precipitation mechanisms in a severely deformed Al–Mg alloy,” Acta Mater., vol. 72, pp. 125–136, Jun. 2014.

2. X. Sauvage, E. V. Bobruk, M. Y. Murashkin, Y. Nasedkina, N. A. Enikeev, and R. Z. Valiev, “Optimization of electrical conductivity and strength combination by structure design at the nanoscale in Al–Mg–Si alloys,” Acta Mater., vol. 98, pp. 355–366, Oct. 2015.

3. M. Y. Bobruk, E.V., Murashkin and R. Z. Kazykhanov, V. U. Valiev, “Aging Behavior and Properties of Ultrafine-Grained Aluminum Alloys of Al-Mg-Si System,” Rev. Adv. Mater. Sci., vol. 31, no. 2, pp. 109–115, 2012.

4. G. Sha et al., “Strength, grain refinement and solute nanostructures of an Al–Mg–Si alloy (AA6060) processed by high-pressure torsion,” Acta Mater., vol. 63, pp. 169–179, Jan. 2014.

5. A. M. Mavlyutov, I. A. Kasatkin, M. Y. Murashkin, R. Z. Valiev, and T. S. Orlova, “Influence of the microstructure on the physicomechanical properties of the aluminum alloy Al–Mg–Si nanostructured under severe plastic deformation,” Phys. Solid State, vol. 57, no. 10, pp. 2051–2058, Nov. 2015.

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