Dynamic shear properties and corresponding deformation mechanisms of a CrCoNi-based medium entropy alloy (MEA) with both coherent nanoprecipitate and heterogeneous grain structure were investigated utilizing hat -shaped specimens in Hopkinson-bar and microstructure characterization. The present MEA with dual hetero-geneous structure is found to have extraordinary dynamic shear properties, as compared to the other advanced metals and alloys, including the CrCoNi MEA with similar heterogeneous grain structure while with single FCC phase. A formula for considering effects of strain hardening, strain rate and thermal softening was utilized to calculate the critical shear strain for onset of adiabatic shear band for the present MEA, and the expe...
The tensile properties and the corresponding deformation mechanisms at both room and cryogenic tempe...
High-entropy alloys (HEA) and medium-entropy alloys (MEA), containing multiple principal elements ty...
The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) hig...
Single-phase CrCoNi medium-entropy alloys (MEA) are emerging recently as an interesting class of met...
Both heterogeneous grain structure and dual nanoprecipitates were designed in a Al-0.5 Cr0.9FeNi2.5V...
Ductility, i. e., uniform strain achievable in uniaxial tension, diminishes for materials with very ...
The mechanical size effect of nanostructured, dual-phase CrCoNi medium-entropy alloy (MEA) was inves...
CrMnFeCoNi high-entropy alloys (HEA) with various microstructures have been produced using cold roll...
A dual heterogeneous structure with both heterogeneous grain structure and coherent L1(2) nanoprecip...
A dual-heterogeneous structure with both heterogeneous grain structure and coherent L1(2) nano-preci...
Large-scale molecular dynamics (MD) simulations have been utilized to reveal the atomistic deformati...
The mechanical behavior of the single phase (fcc) CrMnFeCoNi high-entropy alloy (HEA) is examined in...
The novel class of multicomponent alloys, also known as high-entropy alloys (HEAs) exhibits excellen...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
Large-scale molecular dynamics simulations have been applied to investigate the atomistic deformatio...
The tensile properties and the corresponding deformation mechanisms at both room and cryogenic tempe...
High-entropy alloys (HEA) and medium-entropy alloys (MEA), containing multiple principal elements ty...
The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) hig...
Single-phase CrCoNi medium-entropy alloys (MEA) are emerging recently as an interesting class of met...
Both heterogeneous grain structure and dual nanoprecipitates were designed in a Al-0.5 Cr0.9FeNi2.5V...
Ductility, i. e., uniform strain achievable in uniaxial tension, diminishes for materials with very ...
The mechanical size effect of nanostructured, dual-phase CrCoNi medium-entropy alloy (MEA) was inves...
CrMnFeCoNi high-entropy alloys (HEA) with various microstructures have been produced using cold roll...
A dual heterogeneous structure with both heterogeneous grain structure and coherent L1(2) nanoprecip...
A dual-heterogeneous structure with both heterogeneous grain structure and coherent L1(2) nano-preci...
Large-scale molecular dynamics (MD) simulations have been utilized to reveal the atomistic deformati...
The mechanical behavior of the single phase (fcc) CrMnFeCoNi high-entropy alloy (HEA) is examined in...
The novel class of multicomponent alloys, also known as high-entropy alloys (HEAs) exhibits excellen...
In conventional alloys, a single metallic element is used as the dominant constituent. For example, ...
Large-scale molecular dynamics simulations have been applied to investigate the atomistic deformatio...
The tensile properties and the corresponding deformation mechanisms at both room and cryogenic tempe...
High-entropy alloys (HEA) and medium-entropy alloys (MEA), containing multiple principal elements ty...
The extraordinary work hardening ability and fracture toughness of the face-centered cubic (fcc) hig...