L12-strengthened high-entropy alloys for advanced structural applications

被引:114
作者
Yang, Tao [1 ]
Zhao, Yilu [1 ]
Liu, Weihong [1 ]
Kai, Jijung [1 ]
Liu, Chaintsuan [1 ]
机构
[1] City Univ Hong Kong, Coll Sci & Engn, Ctr Adv Struct Mat, Hong Kong, Hong Kong, Peoples R China
关键词
ULTRA-HIGH STRENGTH; MECHANICAL-PROPERTIES; PRECIPITATION BEHAVIOR; PHASE-SEPARATION; TENSILE BEHAVIOR; LATTICE MISFIT; MULTICOMPONENT; MICROSTRUCTURE; DESIGN; STABILITY;
D O I
10.1557/jmr.2018.186
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Advanced alloys with both high strength and ductility are highly desirable for a wide range of engineering applications. Conventional alloy design strategies based on the single-principle element are approaching their limits in further optimization of their performances. Precipitation-hardened high-entropy alloys (HEAs), especially those strengthened by coherent L1(2)-nanoparticles, have received considerable interest in recent years, enabling a new space for the development of advanced structural materials with superior mechanical properties. In this review, we highlight recent important advances of the newly developed L1(2)-strengthened HEAs, including the aspects of computation-aided alloy design, unique properties, atomiclevel characterization, phase evolution, and stability. In particular, we focus our attention on elucidating fundamental scientific issues involving the alloying effects, precipitation behaviors, mechanical performances, and the corresponding deformation mechanisms, all of which provide a comprehensive metallurgical understanding and guidance for the design of this new class of HEAs. Finally, future research directions and prospects are also critically assessed.
引用
收藏
页码:2983 / 2997
页数:15
相关论文
共 76 条
[1]   Design of Novel Precipitate-Strengthened Al-Co-Cr-Fe-Nb-Ni High-Entropy Superalloys [J].
Antonov, Stoichko ;
Detrois, Martin ;
Tin, Sammy .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2018, 49A (01) :305-320
[2]   A combinatorial assessment of AlxCrCuFeNi2(0 < x < 1.5) complex concentrated alloys: Microstructure, microhardness, and magnetic properties [J].
Borkar, T. ;
Gwalani, B. ;
Choudhuri, D. ;
Mikler, C. V. ;
Yannetta, C. J. ;
Chen, X. ;
Ramanujan, R. V. ;
Styles, M. J. ;
Gibson, M. A. ;
Banerjee, R. .
ACTA MATERIALIA, 2016, 116 :63-76
[3]   Multicomponent and High Entropy Alloys [J].
Cantor, Brian .
ENTROPY, 2014, 16 (09) :4749-4768
[4]   The formation of cellular precipitate and its effect on the tensile properties of a precipitation strengthened high entropy alloy [J].
Chang, Yao-Jen ;
Yeh, An-Chou .
MATERIALS CHEMISTRY AND PHYSICS, 2018, 210 :111-119
[5]   The evolution of microstructures and high temperature properties of AlxCo1.5CrFeNi1.5Tiy high entropy alloys [J].
Chang, Yao-Jen ;
Yeh, An-Chou .
JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 653 :379-385
[6]   High-Temperature Tensile Strength of Al10Co25Cr8Fe15Ni36Ti6 Compositionally Complex Alloy (High-Entropy Alloy) [J].
Daoud, H. M. ;
Manzoni, A. M. ;
Wanderka, N. ;
Glatzel, U. .
JOM, 2015, 67 (10) :2271-2277
[7]   Microstructure and Tensile Behavior of Al8Co17Cr17Cu8Fe17Ni33 (at.%) High-Entropy Alloy [J].
Daoud, H. M. ;
Manzoni, A. ;
Voelkl, R. ;
Wanderka, N. ;
Glatzel, U. .
JOM, 2013, 65 (12) :1805-1814
[8]   Oxidation Behavior of Al8Co17Cr17Cu8Fe17Ni33, Al23Co15Cr23Cu8Fe15Ni15, and Al17Co17Cr17Cu17Fe17Ni17 Compositionally Complex Alloys (High-Entropy Alloys) at Elevated Temperatures in Air [J].
Daoud, Haneen M. ;
Manzoni, Anna M. ;
Voelkl, Rainer ;
Wanderka, Nelia ;
Glatzel, Uwe .
ADVANCED ENGINEERING MATERIALS, 2015, 17 (08) :1134-1141
[9]   Precipitation hardening in metals [J].
Gladman, T .
MATERIALS SCIENCE AND TECHNOLOGY, 1999, 15 (01) :30-36
[10]   A fracture-resistant high-entropy alloy for cryogenic applications [J].
Gludovatz, Bernd ;
Hohenwarter, Anton ;
Catoor, Dhiraj ;
Chang, Edwin H. ;
George, Easo P. ;
Ritchie, Robert O. .
SCIENCE, 2014, 345 (6201) :1153-1158