Exceptional damage-tolerance of a medium-entropy alloy CrCoNi at cryogenic temperatures
Исключительная устойчивость к повреждениям среднеэнтропийного сплава CrCoNi при криогенных температурах
2016-02-02
SCID: 54.1/jkxkbkea
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CrCoNi medium-entropy alloycryogenic toughnessdeformation-induced nano-twinningface-centred cubic solid solutionfracture toughness KJIc
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Abstract (AI)
High-entropy alloys are an intriguing new class of metallic materials that derive their properties from being multi-element systems that can crystallize as a single phase, despite containing high concentrations of five or more elements with different crystal structures. Here we examine an equiatomic medium-entropy alloy containing only three elements, CrCoNi, as a single-phase face-centred cubic solid solution, which displays strength-toughness properties that exceed those of all high-entropy alloys and most multi-phase alloys. At room temperature, the alloy shows tensile strengths of almost 1 GPa, failure strains of ∼70% and KJIc fracture-toughness values above 200 MPa m(1/2); at cryogenic temperatures strength, ductility and toughness of the CrCoNi alloy improve to strength levels above 1.3 GPa, failure strains up to 90% and KJIc values of 275 MPa m(1/2). Such properties appear to result from continuous steady strain hardening, which acts to suppress plastic instability, resulting from pronounced dislocation activity and deformation-induced nano-twinning.
Key Findings
1
An equiatomic medium-entropy CrCoNi alloy forms a single-phase face-centred cubic solid solution with exceptional mechanical properties.
2
At cryogenic temperatures CrCoNi's performance improves to strengths above 1.3 GPa, failure strains up to 90%, and KJIc of 275 MPa·m^1/2.
3
At room temperature CrCoNi shows tensile strengths of almost 1 GPa, failure strains of ~70%, and KJIc fracture-toughness above 200 MPa·m^1/2.
4
Pronounced dislocation activity and deformation-induced nano-twinning are identified mechanisms contributing to the alloy's damage tolerance.
5
The alloy's exceptional strength, ductility, and toughness arise from continuous steady strain hardening that suppresses plastic instability.
Research Object
Equiatomic medium-entropy alloy CrCoNi (single-phase face-centred cubic solid solution)
Research Subject
Mechanical damage-tolerance properties (strength, ductility/failure strain, fracture toughness KJIc) and their temperature dependence and underlying deformation mechanisms (strain hardening, dislocation activity, deformation-induced nano-twinning) at room and cryogenic temperatures
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2016-02-02
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