Cu assisted stabilization and nucleation of L12 precipitates in Al0.3CuFeCrNi2 fcc-based high entropy alloy

被引:154
作者
Gwalani, B. [1 ,2 ]
Choudhuri, D. [2 ]
Soni, V. [2 ]
Ren, Y. [3 ]
Styles, M. [4 ]
Hwang, J. Y. [5 ]
Nam, S. J. [5 ]
Ryu, H. [6 ]
Hong, S. H. [7 ]
Banerjee, R. [1 ,2 ]
机构
[1] Univ North Texas, Adv Mat & Mfg Proc Inst, Denton, TX 76207 USA
[2] Univ North Texas, Dept Mat Sci & Engn, Denton, TX 76207 USA
[3] Argonne Natl Lab, Adv Photon Source, Xray Sci Div, Argonne, IL 60439 USA
[4] CSIRO Mfg, Private Bag 10, Clayton, Vic 3169, Australia
[5] Korea Inst Sci & Technol, Inst Adv Composite Mat, Jeonbuk 565905, South Korea
[6] Korea Adv Inst Sci & Technol, Dept Nucl & Quantum Engn, Taejon 305701, South Korea
[7] Korea Adv Inst Sci & Technol, Dept Mat Sci & Engn, Taejon 305701, South Korea
关键词
High entropy alloys; Synchrotron X-Ray diffraction; Atom probe tomography; L1(2); MICROSTRUCTURAL EVOLUTION; PHASE-STABILITY;
D O I
10.1016/j.actamat.2017.02.053
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A detailed investigation of precipitation of the ordered L1(2) (gamma') phase in a Al0.3CrCuFeNi2 high entropy alloy (HEA), more generally referred to as a complex concentrated alloy (CCA), reveals the role of copper (Cu) on stabilization and precipitation of the ordered L1(2) (gamma') phase. Detailed characterization via coupling of scanning and transmission electron microscopy, and atom probe tomography revealed novel insights into Cu clustering within the face-centered cubic matrix of this HEA, leading to heterogeneous nucleation sites for the gamma' precipitates. The subsequent partitioning of Cu into the gamma' precipitates indicates their stabilization is due to Cu addition. The gamma' order-disorder transition temperature was determined to be similar to 930 degrees C in this alloy, based on synchrotron diffraction experiments, involving in situ annealing. The growth and high temperature stability of the gamma' precipitates was also confirmed via systematic scanning electron microscopy investigations of samples annealed at temperatures in the range of 700-900 degrees C. The role of Cu revealed by this study can be employed in the design of precipitation strengthened HEAs, as well as in a more general sense applied to other types of superalloys, with the objective of potentially enhancing their mechanical properties at room and elevated temperatures. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:170 / 182
页数:13
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