© 2020, Science China Press and Springer-Verlag GmbH Germany, part of Springer Nature. The mechanical size effect of nanostructured, dual-phase CrCoNi medium-entropy alloy (MEA) was investigated by combining in-situ micro-compression testing with post-mortem electron microscopy analysis. The alloy possesses a superior yield strength up to ∼4 GPa, primarily due to its hierarchical microstructure including column nanograins, preferred orientation, a high density of planar defects and the presence of the hexagonal close packed (HCP) phase. While the yield strength of the alloy has shown size-independency, the deformation behaviour was strongly dependent on the sample size. Specifically, with decreasing the pillar diameters, the dominant deform...
Multi-principal element (MPE) alloys, sometimes also known as high entropy, complex concentration or...
Damage tolerance can be an elusive characteristic of structural materials requiring both high streng...
新しい構造材料「高エントロピー合金」の強度の実験的決定に成功. 京都大学プレスリリース. 2016-10-24.High-entropy alloys (HEAs) comprise a novel ...
The mechanical size effect of nanostructured, dual-phase CrCoNi medium-entropy alloy (MEA) was inves...
High-entropy alloys (HEA) and medium-entropy alloys (MEA), containing multiple principal elements ty...
Hierarchical CrCoNi medium entropy alloy (MEA) thin films with a dual-phase face-centred cubic (FCC)...
Dynamic shear properties and corresponding deformation mechanisms of a CrCoNi-based medium entropy a...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) hig...
An equiatomic CrCoNi medium-entropy alloy was subjected to high-pressure torsion. This process led t...
We report deformation bands ahead of the crack tip in a CrCoNi alloy under impact loading, and analy...
Deformation-induced hcp nano-lamellae with various widths and interspacings were observed in the CoC...
Damage tolerance can be an elusive characteristic of structural materials requiring both high streng...
The current review outlines the size-dependent plastic behavior of high-entropy alloys (HEAs) and th...
An equiatomic CrCoNi medium-entropy alloy was subjected to high-pressure torsion. This process led t...
Multi-principal element (MPE) alloys, sometimes also known as high entropy, complex concentration or...
Damage tolerance can be an elusive characteristic of structural materials requiring both high streng...
新しい構造材料「高エントロピー合金」の強度の実験的決定に成功. 京都大学プレスリリース. 2016-10-24.High-entropy alloys (HEAs) comprise a novel ...
The mechanical size effect of nanostructured, dual-phase CrCoNi medium-entropy alloy (MEA) was inves...
High-entropy alloys (HEA) and medium-entropy alloys (MEA), containing multiple principal elements ty...
Hierarchical CrCoNi medium entropy alloy (MEA) thin films with a dual-phase face-centred cubic (FCC)...
Dynamic shear properties and corresponding deformation mechanisms of a CrCoNi-based medium entropy a...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) hig...
An equiatomic CrCoNi medium-entropy alloy was subjected to high-pressure torsion. This process led t...
We report deformation bands ahead of the crack tip in a CrCoNi alloy under impact loading, and analy...
Deformation-induced hcp nano-lamellae with various widths and interspacings were observed in the CoC...
Damage tolerance can be an elusive characteristic of structural materials requiring both high streng...
The current review outlines the size-dependent plastic behavior of high-entropy alloys (HEAs) and th...
An equiatomic CrCoNi medium-entropy alloy was subjected to high-pressure torsion. This process led t...
Multi-principal element (MPE) alloys, sometimes also known as high entropy, complex concentration or...
Damage tolerance can be an elusive characteristic of structural materials requiring both high streng...
新しい構造材料「高エントロピー合金」の強度の実験的決定に成功. 京都大学プレスリリース. 2016-10-24.High-entropy alloys (HEAs) comprise a novel ...