Heterogeneous lamella design to tune the mechanical behaviour of a new cost-effective compositionally complicated alloy  被引量:2

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作  者:Yu Yin Qiyang Tan Qiang Sun Wangrui Ren Jingqi Zhang Shiyang Liu Yingang Liu Michael Bermingham Houwen Chen Ming-Xing Zhang 

机构地区:[1]School of Mechanical and Mining Engineering,University of Queensland,QLD 4072,Australia [2]College of Materials Science and Engineering,Chongqing University,Chongqing 400044,China

出  处:《Journal of Materials Science & Technology》2022年第1期113-125,共13页材料科学技术(英文版)

基  金:financially supported by the ARC Discovery Project(No.DP200101408);support from the China Scholarship Council(CSC);the University of Queensland(UQ);the School of Mechanical and Mining Engineering for the CSC and TOP-UP scholarship。

摘  要:A heterogeneous lamella(HL)design strategy was applied to manipulate mechanical properties of a new cost-effective Fe_(35)Ni_(35)Cr_(25)Mo_(5)compositionally complicated alloy(CCA).The HL structure was produced by single-step heat treatment(800℃for 1 h)after cold rolling.This HL structure consists of alternative lamellae regions of coarse-grained FCC matrix(5-20μm),and regions containing ultra-fine grains or subgrains(200-500 nm)together with nanoprecipitates(20-500 nm)and annealing twins.As compared with other cost-effective CCAs,the 800℃annealed sample with HL structure demonstrated a comparable tensile property,with yield strength over 1.0 GPa and total elongation of~13%.Formation of the annealing twins and nanoprecipitates decorated HL structure was a result of the concurrent partial recrystallization and precipitation ofσphase at the shear bands with a high density of lattice defects(e.g.high-density dislocation walls and deformation twins).The latter restricted the growth of recrystallized grains,leading to the formation of ultrafine subgrains within the HL structure.The high yield strength resulted from the multistage hetero-deformation induced(HDI)strengthening and precipitation strengthening associated with heterogeneous lamella structures containing nanoprecipitates.The ductility was originated from the coexistence of multiple deformation mechanisms,which started with dislocation slip and formation of stacking faults at the initial stage,followed by nano-twinning at the higher strain level.This HL design strategy,comprising composition and thermomechanical process designs,and the resultant microstructure tuning,open a broader window for the development of cost-effective CCAs with enhanced performance.

关 键 词:High entropy alloys Compositionally complicated alloys Heterogeneous lamella structure Nanoprecipitates RECRYSTALLIZATION Mechanical properties 

分 类 号:TG132[一般工业技术—材料科学与工程]

 

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