Realizing high work hardening and thus elevated strength–ductility synergy are prerequisites for the practical usage of body-centered-cubic high entropy alloys (BCC-HEAs). In this study, we report a novel dynamic strengthening mechanism, martensitic twinning transformation mechanism in a metastable refractory element-based BCC-HEA (TiZrHf)87Ta13 (at.%) that can profoundly enhance the work hardening capability, leading to a large uniform ductility and high strength simultaneously. Different from conventional transformation induced plasticity (TRIP) and twinning induced plasticity (TWIP) strengthening mechanisms, the martensitic twinning transformation strengthening mechanism combines the best characteristics of both TRIP and TWIP strengtheni...
The body centered cubic (BCC) high entropy alloys (HEAs) MoNbTaW and MoNbTaVW show exceptional stren...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...
A new bcc Ti-rich high-entropy alloy (HEA) of composition Ti35Zr27.5Hf27.5Nb5Ta5 was designed using ...
Realizing high work hardening and thus elevated strength–ductility synergy are prerequisites for the...
Martensitic transformation twinning including {111}α’’ type I, ‘‘{351}’’< 2‾11 >α’’ type II an...
High-entropy alloys (HEAs) consisting of multiple principle elements provide an avenue for realizing...
We introduce a novel transformation-induced plasticity mechanism, i.e., a martensitic transformation...
The present work reported a novel L12-strengthening NiCoCrAlTi high entropy alloy (HEA) with an outs...
DoctorOver the past decade, research on high-entropy alloys (HEAs) having excellent properties at cr...
Twinning is a fundamental mechanism behind the simultaneous increase of strength and ductility in me...
This article presents a novel approach to microstructural engineering of refractory high-entropy all...
Article using ab initio calculations and experimental observations to show that {332} twinning can b...
A new metastable high-entropy alloy (HEA) system was suggested by thermodynamic calculations based o...
© 2022 Elsevier B.V.Efforts have been made to intentionally activate multiple strengthening mechanis...
The metastable high- and medium entropy alloys (HEAs or MEAs) have drawn many attentions regarding d...
The body centered cubic (BCC) high entropy alloys (HEAs) MoNbTaW and MoNbTaVW show exceptional stren...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...
A new bcc Ti-rich high-entropy alloy (HEA) of composition Ti35Zr27.5Hf27.5Nb5Ta5 was designed using ...
Realizing high work hardening and thus elevated strength–ductility synergy are prerequisites for the...
Martensitic transformation twinning including {111}α’’ type I, ‘‘{351}’’< 2‾11 >α’’ type II an...
High-entropy alloys (HEAs) consisting of multiple principle elements provide an avenue for realizing...
We introduce a novel transformation-induced plasticity mechanism, i.e., a martensitic transformation...
The present work reported a novel L12-strengthening NiCoCrAlTi high entropy alloy (HEA) with an outs...
DoctorOver the past decade, research on high-entropy alloys (HEAs) having excellent properties at cr...
Twinning is a fundamental mechanism behind the simultaneous increase of strength and ductility in me...
This article presents a novel approach to microstructural engineering of refractory high-entropy all...
Article using ab initio calculations and experimental observations to show that {332} twinning can b...
A new metastable high-entropy alloy (HEA) system was suggested by thermodynamic calculations based o...
© 2022 Elsevier B.V.Efforts have been made to intentionally activate multiple strengthening mechanis...
The metastable high- and medium entropy alloys (HEAs or MEAs) have drawn many attentions regarding d...
The body centered cubic (BCC) high entropy alloys (HEAs) MoNbTaW and MoNbTaVW show exceptional stren...
Strength and ductility are the most fundamental mechanical properties of structural materials. Most ...
A new bcc Ti-rich high-entropy alloy (HEA) of composition Ti35Zr27.5Hf27.5Nb5Ta5 was designed using ...