High-/medium-entropy alloys (H/MEAs) of face-centered-cubic-structured single phase usually suffer from a glaring drawback of low yield strength. Even worse, the trade-off emerges frustratingly between strength and ductility as strength increases. Here, the lamellar heterostructure (HS) is designed in an equiatomic ternary CoNiFe MEA by means of cold rolling followed by an incomplete recrystallization annealing. The lamellar HS consists of the soft recrystallized grains as well as severely deformed structures which are partly reserved. By comparison to the coarse-grained counterpart, the lamellar HS, shows a well enhanced yield strength-ductility synergy, together with an increased yield strength. This is ascribed to the hetero-deformation-...
Coarse-grained (CG) single-phase face-centered cubic (fcc) high-entropy alloys (HEAs) normally show ...
Single-phase CrCoNi medium-entropy alloys (MEA) are emerging recently as an interesting class of met...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...
High-/medium-entropy alloys (H/MEAs) of face-centered-cubic-structured single phase usually suffer f...
Low yield strength is the bottleneck of the face-centered cubic-structured high-entropy alloys (HEAs...
Ductility, i. e., uniform strain achievable in uniaxial tension, diminishes for materials with very ...
The superior strength and toughness balance prevails in the face-centered-cubic-structured high/medi...
Heterostructured (HS) materials are a novel class of materials with mechanical properties that are s...
The synergistic effect between heterogeneous structures has been proved to enhance the strength and ...
The tensile deformation and strain hardening behaviors of an equimolar CoCrFeMnNi high-entropy alloy...
A lamellar (L12 + B2) AlCoCrFeNi2.1 eutectic high entropy alloy (EHEA) was severely deformed by a no...
Low ductility has long been the bottleneck especially at high strength in metallic structured materi...
International audienceThe influence of the physical mechanisms activated during deformation and anne...
A heterostructuring strategy is an effective approach for abiding problems referred to as the streng...
Dynamic shear properties and corresponding deformation mechanisms of a CrCoNi-based medium entropy a...
Coarse-grained (CG) single-phase face-centered cubic (fcc) high-entropy alloys (HEAs) normally show ...
Single-phase CrCoNi medium-entropy alloys (MEA) are emerging recently as an interesting class of met...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...
High-/medium-entropy alloys (H/MEAs) of face-centered-cubic-structured single phase usually suffer f...
Low yield strength is the bottleneck of the face-centered cubic-structured high-entropy alloys (HEAs...
Ductility, i. e., uniform strain achievable in uniaxial tension, diminishes for materials with very ...
The superior strength and toughness balance prevails in the face-centered-cubic-structured high/medi...
Heterostructured (HS) materials are a novel class of materials with mechanical properties that are s...
The synergistic effect between heterogeneous structures has been proved to enhance the strength and ...
The tensile deformation and strain hardening behaviors of an equimolar CoCrFeMnNi high-entropy alloy...
A lamellar (L12 + B2) AlCoCrFeNi2.1 eutectic high entropy alloy (EHEA) was severely deformed by a no...
Low ductility has long been the bottleneck especially at high strength in metallic structured materi...
International audienceThe influence of the physical mechanisms activated during deformation and anne...
A heterostructuring strategy is an effective approach for abiding problems referred to as the streng...
Dynamic shear properties and corresponding deformation mechanisms of a CrCoNi-based medium entropy a...
Coarse-grained (CG) single-phase face-centered cubic (fcc) high-entropy alloys (HEAs) normally show ...
Single-phase CrCoNi medium-entropy alloys (MEA) are emerging recently as an interesting class of met...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...