MicrostructuralandmechanicalbehaviorofaCoCrFeNiCu4non-equiatomichighentropyalloy

被引:10
作者
Zijuan Xu [1 ]
Zhongtao Li [1 ]
Yang Tong [2 ]
Weidong Zhang [1 ]
Zhenggang Wu [1 ,3 ]
机构
[1] College of Materials Science and Engineering, Hunan Province Key Laboratory for Spray Deposition Technology and Application, Hunan University
[2] Materials Science and Technology Division, Oak Ridge National Laboratory
[3] State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University
关键词
D O I
暂无
中图分类号
TG139 [其他特种性质合金];
学科分类号
080502 ;
摘要
High entropy alloy(HEA)-based alloy design is experiencing a conceptual broadening from equiatomic alloys to non-equiatomic alloys.To provide experimental basis for designing Cu-rich non-equiatomic HEAs,in the current study,a dual phase(Cu-rich and CoCrFeNi-rich phases) face-centered cubic CoCrFeNiCu4 alloy was systematically investigated.We provided initial and experiment-based understanding of the behavioral change of the alloy during a variety of thermal cycles and thermomechanical processing.The current results indicate that,during heating,preferred precipitation of Cu-rich particles occurs,leading to more pronounced compositional differences between the two constituent FCC phases and increased relative volume fraction of the Cu-rich phase.The Alloy exhibits a continuous melting and discontinuous solidification of the Cu-rich and CoCrFeNi-rich phases.After being cold-rolled to ~90 % thickness reduction,the alloy exhibits a recrystallization temperature higher than 800℃.Annealing at 300 and 500℃ led to strength reduction and/or ductility decrease;further increasing annealing temperature monotonically caused softening and ductilization due to decreased density of pre-existing dislocations.The yield-drop phenomena observed for the 900℃-and 1000℃-annealed specimens are associated with the locking of pre-existing dislocations by some "atmosphere",the nature of which warrants further elucidation.
引用
收藏
页码:35 / 43
页数:9
相关论文
共 35 条
[1]   Microstructure evolution, Cu segregation and tensile properties of CoCrFeNiCu high entropy alloy during directional solidification [J].
Huiting Zheng ;
Ruirun Chen ;
Gang Qin ;
Xinzhong Li ;
Yanqing Su ;
Hongsheng Ding ;
Jingjie Guo ;
Hengzhi Fu .
JournalofMaterialsScience&Technology, 2020, 38 (03) :19-27
[2]  
Incipient plasticity and activation volume of dislocation nucleation for TiZrNbTaMo high-entropy alloys characterized by nanoindentation[J]. Shao-Ping Wang,Jian Xu.Journal of Materials Science & Technology. 2019(05)
[3]  
Annealing-induced abnormal hardening in a cold rolled CrMnFeCoNi high entropy alloy[J] . Ji Gu,Min Song.Scripta Materialia . 2019
[4]  
High temperature wear in CoCrFeNiCu x high entropy alloys: The role of Cu[J] . A. Verma,P. Tarate,A.C. Abhyankar,M.R. Mohape,D.S. Gowtam,V.P. Deshmukh,T. Shanmugasundaram.Scripta Materialia . 2019
[5]  
Outstanding tensile properties of a precipitation-strengthened FeCoNiCrTi 0.2 high-entropy alloy at room and cryogenic temperatures[J] . Y. Tong,D. Chen,B. Han,J. Wang,R. Feng,T. Yang,C. Zhao,Y.L. Zhao,W. Guo,Y. Shimizu,C.T. Liu,P.K. Liaw,K. Inoue,Y. Nagai,A. Hu,J.J. Kai.Acta Materialia . 2019
[6]  
Tracer diffusion in the Ni–CoCrFeMn system: Transition from a dilute solid solution to a high entropy alloy[J] . Josua Kottke,Mathilde Laurent-Brocq,Adnan Fareed,Daniel Gaertner,Lo?c Perrière,?ukasz Rogal,Sergiy V. Divinski,Gerhard Wilde.Scripta Materialia . 2019
[7]  
Probing deformation mechanisms of a FeCoCrNi high-entropy alloy at 293 and 77 K using in situ neutron diffraction[J] . Yiqiang Wang,Bin Liu,Kun Yan,Minshi Wang,Saurabh Kabra,Yu-Lung Chiu,David Dye,Peter D. Lee,Yong Liu,Biao Cai.Acta Materialia . 2018
[8]  
Effects of rare-earth element, Y, additions on the microstructure and mechanical properties of CoCrFeNi high entropy alloy[J] . L.J. Zhang,M.D. Zhang,Z. Zhou,J.T. Fan,P. Cui,P.F. Yu,Q. Jing,M.Z. Ma,P.K. Liaw,G. Li,R.P. Liu.Materials Science & Engineering A . 2018
[9]  
Effects of Ta addition on the microstructures and mechanical properties of CoCrFeNi high entropy alloy[J] . Hui Jiang,Kaiming Han,Dongxu Qiao,Yiping Lu,Zhiqiang Cao,Tingju Li.Materials Chemistry and Physics . 2018
[10]  
Microstructures and thermodynamic properties of high-entropy alloys CoCrCuFeNi[J] . Bo Wu,Zheyu Xie,Jinchang Huang,Jinwei Lin,Yixu Yang,Linqiao Jiang,Jianglin Huang,Guoxin Ye,Chunfeng Zhao,Shangjin Yang,Baisheng Sa.Intermetallics . 2018