Energy efficiency is motivating the search for new high-temperature (high-T) metals. Some new body-centered-cubic (BCC) random multicomponent “high-entropy alloys (HEAs)” based on refractory elements (Cr-Mo-Nb-Ta-V-W-Hf-Ti-Zr) possess exceptional strengths at high temperatures but the physical origins of this outstanding behavior are not known. Here we show, using integrated in-situ neutron-diffraction (ND), high-resolution transmission electron microscopy (HRTEM), and recent theory, that the high strength and strength retention of a NbTaTiV alloy and a high-strength/low-density CrMoNbV alloy are attributable to edge dislocations. This finding is surprising because plastic flows in BCC elemental metals and dilute alloys are generally contro...
High entropy alloys (HEAs) are proposed as solid-solution alloys containing five or more principal e...
High-Entropy Alloys have been a highly researched area of metals ever since their introduction in 20...
High-entropy alloys (HEAs) with concentrated solid solutions are conceived to possess a rugged atomi...
Energy efficiency is motivating the search for new high-temperature (high-T) metals. Some new body-c...
The body centered cubic (BCC) high entropy alloys (HEAs) MoNbTaW and MoNbTaVW show exceptional stren...
Body-centered-cubic (BCC) high entropy alloys (HEAs) can show exceptionally high strength up to high...
Recent theory proposes that edge dislocations in random body-centered cubic (BCC) high entropy alloy...
The objectives of this proposed study are to (1) design and develop single BCC phase refractory high...
Developing affordable and light high-temperature materials alternative to Ni-base superalloys has si...
Random body-centered-cubic (BCC) "High Entropy" alloys are a new class of alloys, some having high s...
In conventional metallic materials, strength and ductility are mutually exclusive, referred to as st...
This study focuses on a quantitative analysis of dislocation accumulation after cold plastic deforma...
High entropy alloys (HEAs) are proposed as solid-solution alloys containing five or more principal e...
High-Entropy Alloys have been a highly researched area of metals ever since their introduction in 20...
High-entropy alloys (HEAs) with concentrated solid solutions are conceived to possess a rugged atomi...
Energy efficiency is motivating the search for new high-temperature (high-T) metals. Some new body-c...
The body centered cubic (BCC) high entropy alloys (HEAs) MoNbTaW and MoNbTaVW show exceptional stren...
Body-centered-cubic (BCC) high entropy alloys (HEAs) can show exceptionally high strength up to high...
Recent theory proposes that edge dislocations in random body-centered cubic (BCC) high entropy alloy...
The objectives of this proposed study are to (1) design and develop single BCC phase refractory high...
Developing affordable and light high-temperature materials alternative to Ni-base superalloys has si...
Random body-centered-cubic (BCC) "High Entropy" alloys are a new class of alloys, some having high s...
In conventional metallic materials, strength and ductility are mutually exclusive, referred to as st...
This study focuses on a quantitative analysis of dislocation accumulation after cold plastic deforma...
High entropy alloys (HEAs) are proposed as solid-solution alloys containing five or more principal e...
High-Entropy Alloys have been a highly researched area of metals ever since their introduction in 20...
High-entropy alloys (HEAs) with concentrated solid solutions are conceived to possess a rugged atomi...