4.7 Article

Exceptional high-strain-rate tensile mechanical properties in a CrCoNi medium-entropy alloy

Journal

SCIENCE CHINA-MATERIALS
Volume 65, Issue 3, Pages 811-819

Publisher

SCIENCE PRESS
DOI: 10.1007/s40843-021-1798-6

Keywords

medium-entropy alloy; strength; ductility; high strain rate; cryogenic temperature

Funding

  1. Australian Microscopy and Microanalysis Research Facility node at the University of Sydney
  2. Australian Research Council [DP190102243]

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In this study, a bulk CrCoNi medium-entropy alloy was found to exhibit exceptional combination of high strength and excellent ductility under high strain rates and low temperatures. This was mainly attributed to profuse deformation twinning and other factors contributing to grain refinement, work hardening, and excellent tensile strain.
Alloys with combined outstanding strength and excellent ductility are highly desirable for many structural applications. However, alloys subjected to deformation at very high strain rates and/or cryogenic temperatures usually suffer from very limited ductility. Here, we demonstrate that a bulk CrCoNi medium-entropy alloy presents exceptional combination of high strength and excellent ductility during deformation at high strain rates over a wide temperature range. Full tensile stress-strain curves at a high strain rate of 2000 s(-1) and temperatures down to 77 K were successfully obtained using an electromagnetic Hopkinson tension bar system attached with a cooling device, revealing high true ultimate tensile strength (sigma(UTS,T)) of 1.8 GPa and true strain of similar to 54% at sigma(UTS,T). These outstanding mechanical properties were mainly attributed to profuse deformation twinning. Both high strain rate and cryogenic temperature promoted deformation twinning. Grain refinement caused by deformation twinning, dislocation slip and dynamic recrystallisation added to work hardening and the excellent tensile strain.

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