npj Materials Degradation · 2017 · 548 citations · 76 references
Materials ScienceMaterials EngineeringEngineeringCorrosionEntropyHigh Configurational EntropyAlloy DesignChemistryAbstract High EntropyAlloy PhaseHigh Entropy AlloysCorrosion ResistanceMultiprincipal Element AlloyMicrostructureAlloysHigh-entropy Alloys
High entropy alloys are metal alloys with five or more elements in near‑equiatomic proportions, originally thought to form single‑phase solid solutions due to high configurational entropy, but now understood that even four‑element systems can form single phases and most five‑or‑more element systems are multi‑phase. This concise review focuses on the corrosion of compositionally complex alloys, a broader term that includes high entropy alloys. The review examines corrosion behavior across compositionally complex alloys, considering their varied microstructures and phase compositions. Despite complex compositions and microstructural heterogeneity, compositionally complex alloys are generally corrosion‑resistant, though further research is needed to fully understand their performance.
Abstract High entropy alloys represent a unique class of metal alloys, comprising nominally five or more elements in near equiatomic proportions. High entropy alloys have gained significant interest on the basis that the high configurational entropy of such alloy systems is purported to result in a single-phase solid solution structure. While such a single-phase structure can occur in unique systems, it is now appreciated that the definition of high entropy alloys can be broader, with systems comprising only four elements possible of forming single phases, and most five (or more) element systems actually being multi (>2) phases. To this end, the notion of compositionally complex alloys is a more general description, with the concise review herein focusing on the corrosion of compositionally complex alloys (inclusive of high entropy alloys). It is noted that generally, in spite of complex compositions and in many cases complicated microstructural heterogeneity, compositionally complex alloys are nominally corrosion-resistant. This is discussed and aspects of the status and needs are presented.
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Microstructural development in equiatomic multicomponent alloys
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