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Mechanical properties, strength physics and plasticity
Influence of deformation temperature on the effect of high plasticity implementation in ultrafine-grained Al-1.5Cu alloy
A. M. Mavlyutova, T. S. Orlovab, E. Kh. Yapparovaa, N. A. Enikeevac, M. Yu. Murashkinac a Saint Petersburg State University, St. Petersburg, Russia
b Ioffe Institute, St. Petersburg, Russia
c Ufa State Aviation Technical University, Ufa, Russia
Abstract:
The effect of the temperature of uniaxial tensile test on the plastification effect (PE) of ultrafine-grained (UFG) Al–1.5Cu (wt.%) alloy is studied for the first time. The UFG structure in a material is formed by high-pressure torsion (HPT). A significant increase in the plasticity of an UFG alloy from ∼ 3 to 22% while retaining a high ultimate tensile strength (450 MPa) is achieved due to additional thermomechanical treatment including short-term low-temperature annealing and subsequent small HPT deformation. The temperature range of the PE implementation is revealed. It is shown that a decrease in the deformation temperature results in a gradual decrease in the PE and its disappearance at –20∘C. Copper doping results in significant narrowing of the PE implementation range from the low-temperature side in comparison with the UFG Al case. The possible causes of the effect of Cu doping on the temperature dependence of the PE is discussed.
Keywords:
aluminum-copper alloys, severe plastic deformation, ultrafine-grained structure, strength, plasticity, grain-boundary segregation.
Received: 10.05.2021 Revised: 10.05.2021 Accepted: 13.05.2021
Citation:
A. M. Mavlyutov, T. S. Orlova, E. Kh. Yapparova, N. A. Enikeev, M. Yu. Murashkin, “Influence of deformation temperature on the effect of high plasticity implementation in ultrafine-grained Al-1.5Cu alloy”, Fizika Tverdogo Tela, 63:10 (2021), 1585–1593; Phys. Solid State, 63:11 (2021), 1730–1738
Linking options:
https://www.mathnet.ru/eng/ftt7994 https://www.mathnet.ru/eng/ftt/v63/i10/p1585
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Abstract page: | 73 | Full-text PDF : | 60 |
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