Optimization of flat rolling parameters for thermally stable alloy of Al-Cu-Mn system with micro additions of Si and Zr

Author:

Koshmin Alexander1ORCID,Cherkasov Stanislav,Fortuna Anastasiya,Gamin Yury

Affiliation:

1. NUST MISiS College of Environmentally Sound Technologies and Engineering

Abstract

Abstract The phase composition, microstructure and mechanical properties of flat-rolled experimental Al-Cu-Mn system alloy with Si and Zr additions have been studied. The experimental results have been compared with data for the AA2219 commercial alloy pertaining to the same alloying system. Hot deformation of experimental alloy causes the precipitation of ~ 100 nm sized dispersoids and refinement of the eutectic phase particles. The yield strength and relative elongation of the hot-deformed experimental alloy are 255 MPa and 8.6%, respectively. Subsequent cold deformation reduces the relative elongation by 3.5% and increases the yield strength by 50 MPa, while the ultimate tensile strength does not change. After long-term 350°C exposure the mechanical properties of the experimental alloy remain the same as those of the as-deformed one, whereas the yield strength of the 2219 alloy decreases by 2 times and the ultimate tensile strength, by 1.4 times. Comparison of these experimental results with data for the 2219 alloy and other Al-Cu-Mn system alloys cited in this work and reported elsewhere suggests that a good thermal stability of Al-2Cu-2Mn-0.4Si-0.2Zr alloy rolled stock can be achieved by treatment in the regimes designed herein.

Publisher

Research Square Platform LLC

Reference30 articles.

1. Kammer C (2018) Aluminum and Aluminum Alloys. In: Warlimont H, Martienssen W (eds) Springer Handbook of Materials Data. Springer Handbooks, Springer, Cham, pp 161–197

2. Davis JR (1993) Aluminum and Aluminum Alloys. ASM specialty handbook. ASM International, Ohio

3. Ber LB, Kolobnev NI, Tsukrov SL (2020) Heat Treatment of Aluminum Alloys, 1st edn. CRC Press, Florida

4. Precipitation Hardening of Aluminum Alloys;Fine ME;Metall Trans A,1975

5. Sanders R, Staley JT (2019) History of Wrought Aluminum Alloys and Applications, Volume 2B: Properties and Selection of Aluminum Alloys. ASM International, Ohio

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