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Natural-mixing guided design of refractory high-entropy alloys with as-cast tensile ductility
by
Furuhara, Tadashi
, Park, Eun Soo
, Kim, Sang Jun
, Kang, Jiyun
, Zhang, Yongjie
, Wei, Shaolou
, Tasan, Cemal Cem
, Zhang, Yong
in
639/301
/ 639/301/1023/1026
/ 639/301/1023/303
/ Alloying elements
/ Alloys
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Deformation mechanisms
/ Design
/ Ductility
/ Entropy
/ High entropy alloys
/ High temperature
/ Letter
/ Materials Science
/ Mechanical analysis
/ Melting point
/ Melting points
/ Nanotechnology
/ Optical and Electronic Materials
/ Oxidation
/ Recyclability
/ Refractory alloys
/ Stability
2020
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Natural-mixing guided design of refractory high-entropy alloys with as-cast tensile ductility
by
Furuhara, Tadashi
, Park, Eun Soo
, Kim, Sang Jun
, Kang, Jiyun
, Zhang, Yongjie
, Wei, Shaolou
, Tasan, Cemal Cem
, Zhang, Yong
in
639/301
/ 639/301/1023/1026
/ 639/301/1023/303
/ Alloying elements
/ Alloys
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Deformation mechanisms
/ Design
/ Ductility
/ Entropy
/ High entropy alloys
/ High temperature
/ Letter
/ Materials Science
/ Mechanical analysis
/ Melting point
/ Melting points
/ Nanotechnology
/ Optical and Electronic Materials
/ Oxidation
/ Recyclability
/ Refractory alloys
/ Stability
2020
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Natural-mixing guided design of refractory high-entropy alloys with as-cast tensile ductility
by
Furuhara, Tadashi
, Park, Eun Soo
, Kim, Sang Jun
, Kang, Jiyun
, Zhang, Yongjie
, Wei, Shaolou
, Tasan, Cemal Cem
, Zhang, Yong
in
639/301
/ 639/301/1023/1026
/ 639/301/1023/303
/ Alloying elements
/ Alloys
/ Biomaterials
/ Chemistry and Materials Science
/ Condensed Matter Physics
/ Deformation mechanisms
/ Design
/ Ductility
/ Entropy
/ High entropy alloys
/ High temperature
/ Letter
/ Materials Science
/ Mechanical analysis
/ Melting point
/ Melting points
/ Nanotechnology
/ Optical and Electronic Materials
/ Oxidation
/ Recyclability
/ Refractory alloys
/ Stability
2020
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Natural-mixing guided design of refractory high-entropy alloys with as-cast tensile ductility
Journal Article
Natural-mixing guided design of refractory high-entropy alloys with as-cast tensile ductility
2020
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Overview
Metallic alloys containing multiple principal alloying elements have created a growing interest in exploring the property limits of metals and understanding the underlying physical mechanisms. Refractory high-entropy alloys have drawn particular attention due to their high melting points and excellent softening resistance, which are the two key requirements for high-temperature applications. Their compositional space is immense even after considering cost and recyclability restrictions, providing abundant design opportunities. However, refractory high-entropy alloys often exhibit apparent brittleness and oxidation susceptibility, which remain important challenges for their processing and application. Here, utilizing natural-mixing characteristics among refractory elements, we designed a Ti
38
V
15
Nb
23
Hf
24
refractory high-entropy alloy that exhibits >20% tensile ductility in the as-cast state, and physicochemical stability at high temperatures. Exploring the underlying deformation mechanisms across multiple length scales, we observe that a rare β′-phase plays an intriguing role in the mechanical response of this alloy. These results reveal the effectiveness of natural-mixing tendencies in expediting high-entropy alloy discovery.
A refractory high-entropy alloy was designed with the composition chosen based on the natural-mixing characteristics among refractory elements; this alloy demonstrates good tensile ductility in the as-cast state and physicochemical stability at high temperatures.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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