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Microstructure and tensile properties of Al<inf>0.5</inf>CoCrCuFeNi alloys produced by simple rolling and annealing
Journal article   Peer reviewed

Microstructure and tensile properties of Al0.5CoCrCuFeNi alloys produced by simple rolling and annealing

C.-W. Tsai, M.-H. Tsai, K.-Y. Tsai, S.-Y. Chang, J.-W. Yeh and A.-C. Yeh
Materials Science and Technology (United Kingdom), Vol.31(10), pp.1178-1183
01/07/2015

Abstract

High entropy alloys Mechanical properties Nanostructured metals Rolling and annealing
This study demonstrates that simply by rolling at ambient temperature, FCC type high entropy alloy Al0.5CoCrCuFeNi can be refined to have nanocrystalline structure and exhibits outstanding combination of strength and ductility. The yield strength and ultimate tensile strength are 1284 and 1344 MPa, respectively, in combination with an elongation of 7.6%. After a short annealing at 900uC for 10 min, the elongation is doubled to 15.3% with a trade-off around 20% in strength. This excellent combination of strength and ductility is attributable to the activation of quasi-dynamic recrystallisation during cold work and the limited grain growth during 900uC annealing.

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