典型文献
A cluster-plus-glue-atom composition design approach designated for multi-principal element alloys
文献摘要:
Multi-principal element alloys(MPEAs)have shown extraordinary properties in different fields.How-ever,the composition design of MPEAs is still challenging due to the complicated interactions among principal ele-ments(PEs),and even more challenging with precipitates formation.Precipitation can be either beneficial or detri-mental in alloys,thus it is important to control precipitates formation on purpose during alloy design.In this work,cluster-plus-glue-atom model(CGM)composition design method which is usually used to describe short-range order in traditional alloys has been successfully extended to MPEAs for precipitation design.The key challenge of extending CGM to MPEAs is the determination of center atom since there are no solvent or solute in MPEAs.Research has found that the element type of center atom was related not only with chemical affinity,but also with atomic volume difference in MPEAs,which has inevitable effect on atomic arrangement.Based on exper-imental data of MPEAs with precipitates,it was found that elements with either stronger chemical affinity or larger volume difference with other PEs would occupy the center site of clusters.Therefore,a cluster index(Pc),which considers both chemical affinity and atomic volume fac-tors,was proposed to assist the determination of center atom in MPEAs.Based on the approach,a solid-solution Zr-Ti-V-Nb-Al BCC alloy was obtained by inhibiting the precipitation,while precipitation-strengthened Al-Cr-Fe-Ni-V FCC alloy and Al-Co-Cr-Fe-Ni BCC alloy were designed by promoting the precipitation.Corresponding experimental results demonstrated that the approach could provide a relatively simple and accurate predication of precipitation and the compositions of precipitations were in line with PEs in cluster in MPEAs.The research may open an effective way for composition design of MPEAs with desired phase structure.
文献关键词:
中图分类号:
作者姓名:
Xuan Liu;Hui-Bin Ke;Liang Wang;Yao-Jian Liang;Lin-Jing Wang;Ben-Peng Wang;Lu Wang;Qun-Bo Fan;Yun-Fei Xue
作者机构:
School of Materials Science and Engineering,Beijing Institute of Technology,Beijing 100081,China;Institute of Advanced Structure Technology,Beijing Institute of Technology,Beijing 100081,China
文献出处:
引用格式:
[1]Xuan Liu;Hui-Bin Ke;Liang Wang;Yao-Jian Liang;Lin-Jing Wang;Ben-Peng Wang;Lu Wang;Qun-Bo Fan;Yun-Fei Xue-.A cluster-plus-glue-atom composition design approach designated for multi-principal element alloys)[J].稀有金属(英文版),2022(11):3839-3849
A类:
MPEAs,predication
B类:
plus,glue,approach,designated,multi,principal,alloys,Multi,have,shown,extraordinary,properties,different,fields,How,ever,still,challenging,due,complicated,interactions,among,PEs,even,more,precipitates,formation,Precipitation,can,either,beneficial,detri,thus,important,control,purpose,during,In,this,work,model,CGM,method,which,usually,used,describe,short,order,traditional,been,successfully,extended,key,challenge,extending,determination,center,since,there,are,solvent,solute,Research,found,that,type,was,related,not,only,chemical,affinity,but,also,atomic,volume,difference,inevitable,arrangement,Based,data,elements,stronger,larger,other,would,occupy,site,clusters,Therefore,Pc,considers,both,fac,tors,proposed,assist,solid,solution,Zr,Ti,Nb,BCC,obtained,by,inhibiting,while,strengthened,FCC,were,designed,promoting,Corresponding,experimental,results,demonstrated,could,provide,relatively,simple,accurate,compositions,precipitations,line,research,may,open,effective,way,desired,phase,structure
AB值:
0.459578
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