典型文献
High throughput synthesis enabled exploration of CoCrFeNi-based high entropy alloys
文献摘要:
To accelerate the exploration,screening,and discovery of structural high-entropy alloys with targeted properties,the newly developed High-Throughput Hot-Isostatic-Pressing based Micro-Synthesis Approach(HT-HIP-MSA)is employed to efficiently synthesize and characterize 85 combinatorial alloys in a 13-principal element alloying space.These CoCrFeNi-based high entropy alloys span 1 quaternary,9 quinary,and 36 senary alloy systems,and their composition-structure-property relationships are characterized and analyzed experimentally and computationally.From the single-phase FCC CoCrFeNi alloy base,with Mn,Cu,Ti,Nb,Ta,Mo,W,Al,and Si as principal element alloying additions,we find(1)the extended Mn solubility in the single-phase FCC CoCrFeNi-Mnx alloys,(2)the destabilizing behavior for most of the quinary and senary alloys,and(3)the distinctive solid-solution-strengthening effects in the alloys.In combining the computational methods,the HT-HIP-MSA can be systematic and economic to explore and refine the compositions,structures,and properties of structural high-entropy alloys.
文献关键词:
中图分类号:
作者姓名:
L.Zhao;L.Jiang;L.X.Yang;H.Wang;W.Y.Zhang;G.Y.Ji;X.Zhou;W.A.Curtin;X.B.Chen;P.K.Liaw;S.Y.Chen;H.Z.Wang
作者机构:
Beijing Advanced Innovation Center for Materials Genome Engineering,Beijing Key Laboratory of Metal Materials Characterization,Central Iron and Steel Research Institute,Beijing 100081,China;Institute for Advance Studies in Precision Materials,Yantai University,Yantai 264005,China;National Center for Materials Service Safety,University of Science and Technology Beijing,Beijing 100083,China;Laboratory for Multiscale Mechanics Modeling,Ecole Polytechnique Federale de Lausanne,Lausanne CH-1015,Switzerland;School of Engineering,RMIT University,Melbourne 3046,Australia;Department of Materials Science and Engineering,The University of Tennessee,37996,USA
文献出处:
引用格式:
[1]L.Zhao;L.Jiang;L.X.Yang;H.Wang;W.Y.Zhang;G.Y.Ji;X.Zhou;W.A.Curtin;X.B.Chen;P.K.Liaw;S.Y.Chen;H.Z.Wang-.High throughput synthesis enabled exploration of CoCrFeNi-based high entropy alloys)[J].材料科学技术(英文版),2022(15):269-282
A类:
Isostatic,senary
B类:
High,throughput,synthesis,enabled,exploration,CoCrFeNi,high,entropy,alloys,To,accelerate,screening,discovery,structural,targeted,properties,newly,developed,Throughput,Hot,Pressing,Micro,Synthesis,Approach,HT,HIP,MSA,employed,efficiently,synthesize,combinatorial,principal,element,alloying,space,These,span,quaternary,quinary,systems,their,property,relationships,are,characterized,analyzed,experimentally,computationally,From,single,phase,FCC,Ti,Nb,Ta,Mo,Si,additions,we,find,extended,solubility,Mnx,destabilizing,behavior,most,distinctive,solid,solution,strengthening,effects,In,combining,methods,can,systematic,economic,explore,refine,compositions,structures
AB值:
0.554121
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