Compositionally complex alloys, also called high entropy alloys, have been investigated for over a decade in view of different applications, but so far only a small number of alloys can be considered as presenting good enough properties for industrial application. The most common family of elements is Al Co Cr Cu Fe Ni. The equiatomic alloy having 5 phases and being too brittle, the composition has been modified in order to improve the mechanical properties. Different compositions have been tested and as a first result ductile Al8Co17Cr17Cu8Fe17Ni33 has been chosen for deeper investigation. It shows a dendritic segregation into Co Cr Fe rich cores and Al Cu Ni rich interdendritic sites. The as cast state is characterized mainly by two phase...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization of...
Compositionally complex alloys, also called high entropy alloys, have been investigated for over a d...
Compositionally complex alloys, also called high entropy alloys, have been investigated for over a d...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at high...
High-entropy alloys (HEAs) are single-phase systems prepared from equimolar or near-equimolar concen...
High-entropy alloys (HEAs) are single-phase systems prepared from equimolar or near-equimolar concen...
Unlike conventional alloys, high entropy alloys are characterized by one or more solid solution phas...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization of...
Compositionally complex alloys, also called high entropy alloys, have been investigated for over a d...
Compositionally complex alloys, also called high entropy alloys, have been investigated for over a d...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at high...
High-entropy alloys (HEAs) are single-phase systems prepared from equimolar or near-equimolar concen...
High-entropy alloys (HEAs) are single-phase systems prepared from equimolar or near-equimolar concen...
Unlike conventional alloys, high entropy alloys are characterized by one or more solid solution phas...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization o...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
Alloying aluminum offers the possibility of creating low-density high-entropy alloys (HEAs). Several...
The most commonly investigated high entropy alloy, AlCoCrCuFeNi, has been chosen for optimization of...