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典型文献
Microstructure and Mechanical Properties of Selective Laser Melted Al-2.51 Mn-2.71Mg-0.55Sc-0.29Cu-0.31Zn Alloy Designed by Supersaturated Solid Solution
文献摘要:
Selective laser melting(SLM)of aluminium alloys for lightweight application is arousing widespread interest,but the available alloy compositions are limited due to unsatisfactory mechanical performances.The rapid solidification of SLM provides a pathway to design a novel alloy composition with extended solubility.This strategy is demonstrated by an addi-tively manufactured novel Al-2.51Mn-2.71Mg-0.55Sc-0.29Cu-0.31Zn alloy with the supersaturated solid solution in the present study.The microstructure of as-build sample is characterized with multi-modal grains with the fine equiaxed grain(FEG,~800 nm)at molten pool boundaries,coarse equiaxed grain(CEG,~2 μm)and columnar dendrites(CD,~4 μm)inside the molten pool,which relates to the precipitations type and distribution.It is observable that Al3(Sc,Zr)precipitation particles with the size of~50 nm are dispersed in the FEG zone,while the interior of CEG shows no Al3(Sc,Zr)particle which only exists at the CEG boundaries.Regardless of FEG,CEG or CD,the slender Al6Mn precipitation with the length of~500 nm is distributed along the grain boundaries.Meanwhile,a lot of vacancies and thickness fringes are detected in the FEG zone,which confirms the supersaturated solid solution in laser rapid solidification.The ultimate tensile strength and yield strength of the as-printed sample are~380 MPa and~330 MPa,respectively,with elongation~14%,which increase to~440 MPa and~410 MPa with a reduction of elongation to~9%after heat treatment.
文献关键词:
作者姓名:
Minbo Wang;Ruidi Li;Tiechui Yuan;Haiou Yang;Pengda Niu;Chao Chen
作者机构:
State Key Laboratory of Powder Metallurgy,Shenzhen Research Institute of CSU,Central South University,Changsha 410083,China;State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi'an 710072,China
引用格式:
[1]Minbo Wang;Ruidi Li;Tiechui Yuan;Haiou Yang;Pengda Niu;Chao Chen-.Microstructure and Mechanical Properties of Selective Laser Melted Al-2.51 Mn-2.71Mg-0.55Sc-0.29Cu-0.31Zn Alloy Designed by Supersaturated Solid Solution)[J].金属学报(英文版),2022(03):354-368
A类:
Melted,71Mg,55Sc,29Cu,31Zn,Supersaturated,51Mn
B类:
Microstructure,Mechanical,Properties,Selective,Laser,Alloy,Designed,by,Solid,Solution,laser,melting,SLM,aluminium,alloys,lightweight,application,arousing,widespread,interest,available,compositions,are,limited,due,unsatisfactory,mechanical,performances,rapid,solidification,provides,pathway,design,novel,extended,solubility,This,strategy,demonstrated,addi,manufactured,supersaturated,solution,present,study,microstructure,build,sample,characterized,multi,modal,grains,fine,equiaxed,FEG,molten,pool,boundaries,coarse,CEG,columnar,dendrites,CD,inside,which,relates,precipitations,type,distribution,It,observable,that,Al3,Zr,particles,size,dispersed,zone,interior,shows,only,exists,Regardless,slender,Al6Mn,length,distributed,along,Meanwhile,lot,vacancies,thickness,fringes,detected,confirms,ultimate,tensile,strength,yield,printed,respectively,elongation,increase,reduction,after,heat,treatment
AB值:
0.500723
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