While there have been multiple recent reports in the literature of exceptional combinations of yield strength and ductility in high entropy alloys, there have been no reports discussing the extraordinary tunability of the mechanical properties in the same alloy in these systems. This paper shows that the tensile yield-strength of a single Al0.3CoCrFeNi high entropy alloy (or complex-concentrated alloy), can be enhanced from 160 MPa to over 1800 MPa (1.8 GPa), a 1025% increase, via microstructural engineering enabled by thermo-mechanical processing of the bulk alloy. Such strength variations for the same composition are unprecedented in any other class of alloys
Most high-entropy alloys and medium-entropy alloys (MEAs) possess outstanding mechanical properties....
The phase stability, microstructural evolution, and mechanical properties of Al0.6CoCrFeNi high-entr...
The equiatomic CoCrFeNiMn alloy prepared by mechanical alloying and spark plasma sintering underwent...
Guided by thermodynamic modeling, engineering phase transformation pathways via thermo-mechanical pr...
The crystal lattice type is one of the dominant factors for controlling the mechanical behavior of h...
The effects of Al on microstructure and mechanical properties of AlxCoCrFeNi (x=0.1, 0.75 and 1.5) h...
International audienceThe mechanical properties due to solid solution strengthening are explored wit...
The room-temperature strength of Al0.3CoCrFeNi high-entropy alloys (HEAs) is relatively low owing to...
Development of new high-temperature materials, incorporating alloys based on metals with higher oper...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
High entropy alloys (HEAs) is a concept wherein alloys are constructed with five or more elements mi...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at high...
The strength–ductility trade-off is an eminent factor in deciding the mechanical performance of a ma...
The high-temperature properties of new alloys need to be investigated to guide the hot working proce...
Microstructure and mechanical properties of the Fe-Mn-Cr-Ni-Al system non-equiatomic high entropy al...
Most high-entropy alloys and medium-entropy alloys (MEAs) possess outstanding mechanical properties....
The phase stability, microstructural evolution, and mechanical properties of Al0.6CoCrFeNi high-entr...
The equiatomic CoCrFeNiMn alloy prepared by mechanical alloying and spark plasma sintering underwent...
Guided by thermodynamic modeling, engineering phase transformation pathways via thermo-mechanical pr...
The crystal lattice type is one of the dominant factors for controlling the mechanical behavior of h...
The effects of Al on microstructure and mechanical properties of AlxCoCrFeNi (x=0.1, 0.75 and 1.5) h...
International audienceThe mechanical properties due to solid solution strengthening are explored wit...
The room-temperature strength of Al0.3CoCrFeNi high-entropy alloys (HEAs) is relatively low owing to...
Development of new high-temperature materials, incorporating alloys based on metals with higher oper...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at hig...
High entropy alloys (HEAs) is a concept wherein alloys are constructed with five or more elements mi...
Compositionally complex alloys, or high entropy alloys, are good candidates for applications at high...
The strength–ductility trade-off is an eminent factor in deciding the mechanical performance of a ma...
The high-temperature properties of new alloys need to be investigated to guide the hot working proce...
Microstructure and mechanical properties of the Fe-Mn-Cr-Ni-Al system non-equiatomic high entropy al...
Most high-entropy alloys and medium-entropy alloys (MEAs) possess outstanding mechanical properties....
The phase stability, microstructural evolution, and mechanical properties of Al0.6CoCrFeNi high-entr...
The equiatomic CoCrFeNiMn alloy prepared by mechanical alloying and spark plasma sintering underwent...