Refractory metal high-entropy superalloys (RSA), which possess a nanoscale microstructure of B2 and bcc phases, have been developed to offer high temperature capabilities beyond conventional Ni-based alloys. Despite showing a number of excellent attributes, to date there has been little consideration of their microstructural stability, which is an essential feature of any material employed in high temperature service. Here, the stability of the exemplar RSA AlMo0.5NbTa0.5TiZr is studied following 1000 h exposures at 1200, 1000 and 800 °C. Crucially, the initial nanoscale cuboidal B2 + bcc microstructure was found to be unstable following the thermal exposures. Extensive intragranular precipitation of a hexagonal Al-Zr-rich intermetallic occ...
AbstractOwning to their excellent thermal stability and high strength at elevated temperature, high ...
Complex, concentrated alloys (CCAs) containing refractory principal elements and Al can have microst...
High-entropy intermetallics have a great potential for high-temperature applications. However, there...
Refractory metal high-entropy superalloys (RSA), which possess a nanoscale microstructure of B2 and ...
The recently developed refractory metal high entropy superalloys (RSA) have been proposed as novel m...
Environmental targets require lower emissions, which necessitate increased operating efficiency for ...
The development of refractory metal high entropy superalloys has received great interest due to thei...
From MDPI via Jisc Publications RouterHistory: accepted 2021-07-29, pub-electronic 2021-08-05Publica...
The recently developed Refractory Metal High Entropy Superalloys have the potential to replace Ni-ba...
Herein, a novel refractory Nb₃₀Mo₃₀Ti₂₀Co₂₀ (at. %) high-entropy superalloy (RHESA) is introduced. A...
Refractory metal high entropy superalloys (RSAs) have been heralded as potential new high temperatur...
Effect of high-temperature exposure on the microstructure and mechanical properties of the Al5Ti5Co3...
Microstructure, phase composition and mechanical properties of a refractory high entropy superalloy,...
Structure and mechanical properties of the AlNbTiVZrx (x=0; 0.1; 0.25; 0.5; 1; 1.5) refractory high-...
In the present work, structure and mechanical properties of the Ti₄₀Nb₃₀Hf₁₅Al15 and Ti₄₀Nb₃₀Zr₂₀Al₁...
AbstractOwning to their excellent thermal stability and high strength at elevated temperature, high ...
Complex, concentrated alloys (CCAs) containing refractory principal elements and Al can have microst...
High-entropy intermetallics have a great potential for high-temperature applications. However, there...
Refractory metal high-entropy superalloys (RSA), which possess a nanoscale microstructure of B2 and ...
The recently developed refractory metal high entropy superalloys (RSA) have been proposed as novel m...
Environmental targets require lower emissions, which necessitate increased operating efficiency for ...
The development of refractory metal high entropy superalloys has received great interest due to thei...
From MDPI via Jisc Publications RouterHistory: accepted 2021-07-29, pub-electronic 2021-08-05Publica...
The recently developed Refractory Metal High Entropy Superalloys have the potential to replace Ni-ba...
Herein, a novel refractory Nb₃₀Mo₃₀Ti₂₀Co₂₀ (at. %) high-entropy superalloy (RHESA) is introduced. A...
Refractory metal high entropy superalloys (RSAs) have been heralded as potential new high temperatur...
Effect of high-temperature exposure on the microstructure and mechanical properties of the Al5Ti5Co3...
Microstructure, phase composition and mechanical properties of a refractory high entropy superalloy,...
Structure and mechanical properties of the AlNbTiVZrx (x=0; 0.1; 0.25; 0.5; 1; 1.5) refractory high-...
In the present work, structure and mechanical properties of the Ti₄₀Nb₃₀Hf₁₅Al15 and Ti₄₀Nb₃₀Zr₂₀Al₁...
AbstractOwning to their excellent thermal stability and high strength at elevated temperature, high ...
Complex, concentrated alloys (CCAs) containing refractory principal elements and Al can have microst...
High-entropy intermetallics have a great potential for high-temperature applications. However, there...