Every strengthening/hardening method has its own limit. However, it is difficult to couple multiple extreme hardening in a bulk material, especially for highly strengthened ones. Here we demonstrate a strategy to further harden an ultrastrong precipitation-hardened high entropy alloy (HEA) with ultrafine-grain (UFG)/nanograin (NG) bands. These UFG/NG bands with nanoprecipitates were obtained by combining local severe plastic deformation (SPD) from cryogenic rolling and the pinning effect of precipitates during recrystallization. We found that the bands, with combined hardening of NGs and nanoprecipitates, provide an amazing yield strength of ~2.8 GPa and an ultrahigh hardness of ~9.7 GPa. Such nanoprecipitation-hardened UFG/NG bands in the ...
An equiatomic VCoNi medium-entropy alloy possesses high sensitivity to grain-boundary strengthening,...
Ultrafine-grained materials with nanotwins are expected to produce a remarkable combination of stren...
The lack of strength and damage tolerance can limit the applications of conventional soft magnetic m...
High-entropy alloys (HEAs) are a class of metallic materials that have revolutionized alloy design. ...
Metals with nanometer-scale grains or nanocrystalline metals exhibit high strengths at ambient condi...
High-entropy alloys (HEAs) are a class of metallic materials that have revolutionized alloy design. ...
Nanoprecipitation strengthening has been widely adopted as an effective way to design high-strength ...
Refractory high-entropy alloys (HEAs) are a class of emerging multi-component alloys, showing superi...
Ultrafine-grained (UFG) metallic materials processed by severe plastic deformation (SPD) techniques ...
High-performance refractory alloys with ultrahigh strength and ductility are in demand for a wide ra...
A new approach to increase the tensile performance of high entropy alloys (HEAs) by producing a dupl...
Both heterogeneous grain structure and dual nanoprecipitates (B2 and L12) have been designed and obt...
High entropy alloys (HEAs) have been the subject of numerous investigations during past 20 years. Va...
Suppressing the early strain localization at the nanostructured topmost layer is crucial for achievi...
The possibility of further enhancing the strength of a (CoCrFeNi)₉₄Ti₂Al₄ high-entropy alloy (HEA), ...
An equiatomic VCoNi medium-entropy alloy possesses high sensitivity to grain-boundary strengthening,...
Ultrafine-grained materials with nanotwins are expected to produce a remarkable combination of stren...
The lack of strength and damage tolerance can limit the applications of conventional soft magnetic m...
High-entropy alloys (HEAs) are a class of metallic materials that have revolutionized alloy design. ...
Metals with nanometer-scale grains or nanocrystalline metals exhibit high strengths at ambient condi...
High-entropy alloys (HEAs) are a class of metallic materials that have revolutionized alloy design. ...
Nanoprecipitation strengthening has been widely adopted as an effective way to design high-strength ...
Refractory high-entropy alloys (HEAs) are a class of emerging multi-component alloys, showing superi...
Ultrafine-grained (UFG) metallic materials processed by severe plastic deformation (SPD) techniques ...
High-performance refractory alloys with ultrahigh strength and ductility are in demand for a wide ra...
A new approach to increase the tensile performance of high entropy alloys (HEAs) by producing a dupl...
Both heterogeneous grain structure and dual nanoprecipitates (B2 and L12) have been designed and obt...
High entropy alloys (HEAs) have been the subject of numerous investigations during past 20 years. Va...
Suppressing the early strain localization at the nanostructured topmost layer is crucial for achievi...
The possibility of further enhancing the strength of a (CoCrFeNi)₉₄Ti₂Al₄ high-entropy alloy (HEA), ...
An equiatomic VCoNi medium-entropy alloy possesses high sensitivity to grain-boundary strengthening,...
Ultrafine-grained materials with nanotwins are expected to produce a remarkable combination of stren...
The lack of strength and damage tolerance can limit the applications of conventional soft magnetic m...