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- W1968985108 abstract "High-entropy alloys are equiatomic, multi-element systems that can crystallize as a single phase, despite containing multiple elements with different crystal structures. A rationale for this is that the configurational entropy contribution to the total free energy in alloys with five or more major elements may stabilize the solid-solution state relative to multiphase microstructures. We examined a five-element high-entropy alloy, CrMnFeCoNi, which forms a single-phase face-centered cubic solid solution, and found it to have exceptional damage tolerance with tensile strengths above 1 GPa and fracture toughness values exceeding 200 MPa·m(1/2). Furthermore, its mechanical properties actually improve at cryogenic temperatures; we attribute this to a transition from planar-slip dislocation activity at room temperature to deformation by mechanical nanotwinning with decreasing temperature, which results in continuous steady strain hardening." @default.
- W1968985108 created "2016-06-24" @default.
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- W1968985108 date "2014-09-05" @default.
- W1968985108 modified "2023-10-18" @default.
- W1968985108 title "A fracture-resistant high-entropy alloy for cryogenic applications" @default.
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- W1968985108 doi "https://doi.org/10.1126/science.1254581" @default.
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