Effect of initial tempers on mechanical properties of creep-aged AA2050
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Published version
OA Location
Author(s)
Type
Journal Article
Abstract
The evolution of mechanical properties of a third-generation Al–Cu–Li alloy, AA2050, with different initial tempers (as-quenched WQ, naturally aged T34 and peak-aged T84) during creep-ageing has been investigated in this study. A set of creep-ageing tests was carried out under 150 MPa at 155 °C with different durations for all initial temper conditions and tensile tests were performed subsequently to acquire the main mechanical properties of the creep-aged alloys, including the yield strength, ultimate tensile strength and uniform elongation. The evolution of these mechanical properties during creep-ageing has been discussed in association with precipitation behaviour of AA2050 alloys with different initial tempers. The results indicate that the T34 alloy is the best choice for creep age forming (CAF) applications among these initial tempers, as it provides better yield strength and uniform elongation concurrently after creep-ageing. In addition, a work hardening rate analysis has been carried out for all the creep-aged alloys, helping to understand the detailed dislocation/precipitate interaction mechanisms during plastic deformation in the creep-aged AA2050 alloys with WQ, T34 and T84 initial tempers.
Date Issued
2019-05-13
Date Acceptance
2019-04-01
Citation
Manufacturing Review, 2019, 6
ISSN
2265-4224
Publisher
EDP Open
Journal / Book Title
Manufacturing Review
Volume
6
Copyright Statement
© Y. Li et al., Published by EDP Sciences 2019. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Subjects
Science & Technology
Technology
Engineering, Manufacturing
Engineering
Initial temper
mechanical property
Al-Cu-Li alloy
AA2050
creep age forming
work hardening
PLASTIC-DEFORMATION
PRECIPITATION
MICROSTRUCTURE
EVOLUTION
BEHAVIOR
ALLOY
PHASE
Publication Status
Published
Article Number
8
Date Publish Online
2019-05-13