Multiple-principal element alloys known as high-entropy alloys have rapidly been gaining attention for the vast variety of compositions and potential combinations of properties that remain to be explored. Of these alloys, one of the earliest, the ‘Cantor alloy’ CrMnFeCoNi, displays excellent damage-tolerance with tensile strengths of ∼1 GPa and fracture toughness values in excess of 200 MPa√m; moreover, these mechanical properties tend to further improve at cryogenic temperatures. However, few studies have explored its corresponding fatigue properties. Here we expand on our previous study to examine the mechanics and mechanisms of fatigue-crack propagation in the CrMnFeCoNi alloy (∼7 μm grain size), with emphasis on long-life, near-threshol...
Medium- and high-entropy alloys based on the CrCoNi-system have been shown to display outstanding st...
A single-phase face-centered-cubic (FCC) high- or medium-entropy alloys (HEAs or MEAs) have attracte...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
CrCoNi-based high-entropy alloys have demonstrated outstanding mechanical properties, particularly a...
CrCoNi-based high-entropy alloys have demonstrated outstanding mechanical properties, particularly a...
High-entropy alloys (HEAs) have spurred great interested in the in the materials community in recent...
CrCoNi-based medium- and high-entropy alloys display outstanding damage tolerance, especially at cry...
High-entropy alloys are an intriguing new class of metallic materials that derive their properties f...
High-entropy alloys are an intriguing new class of metallic materials that derive their properties f...
Representative face-centered-cubic (FCC) high-entropy alloys (HEAs) or medium-entropy alloys (MEAs),...
A metal alloy that is stronger when cold Metal alloys normally consist of one dominant element, with...
The CrMnFeCoNi high-entropy alloy demonstrates a promising potential for applications over a range o...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Medium- and high-entropy alloys based on the CrCoNi-system have been shown to display outstanding st...
A single-phase face-centered-cubic (FCC) high- or medium-entropy alloys (HEAs or MEAs) have attracte...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
CrCoNi-based high-entropy alloys have demonstrated outstanding mechanical properties, particularly a...
CrCoNi-based high-entropy alloys have demonstrated outstanding mechanical properties, particularly a...
High-entropy alloys (HEAs) have spurred great interested in the in the materials community in recent...
CrCoNi-based medium- and high-entropy alloys display outstanding damage tolerance, especially at cry...
High-entropy alloys are an intriguing new class of metallic materials that derive their properties f...
High-entropy alloys are an intriguing new class of metallic materials that derive their properties f...
Representative face-centered-cubic (FCC) high-entropy alloys (HEAs) or medium-entropy alloys (MEAs),...
A metal alloy that is stronger when cold Metal alloys normally consist of one dominant element, with...
The CrMnFeCoNi high-entropy alloy demonstrates a promising potential for applications over a range o...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Multi-principal element alloys usually exhibit outstanding strength and toughness at cryogenic tempe...
Medium- and high-entropy alloys based on the CrCoNi-system have been shown to display outstanding st...
A single-phase face-centered-cubic (FCC) high- or medium-entropy alloys (HEAs or MEAs) have attracte...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...