Tensile properties and work hardening in Al0.3CoCrFeNi: The role of L12 precipitates and grain size

被引:1
|
作者
Gorsse, Stephane [1 ]
Peyrouzet, Florian [1 ,2 ]
Baffie, Thierry [2 ]
Navone, Christelle [2 ]
Maisonneuve, Julie [2 ]
Saint-Antonin, Francois [2 ]
Descoins, Marion [3 ]
Hoummada, Khalid [3 ]
Barnerjee, Rajarshi [4 ]
Yeh, An-Chou [5 ,6 ]
Goune, Mohamed [1 ]
机构
[1] Univ Bordeaux, Bordeaux INP, CNRS, ICMCB,UMR 5026, F-33600 Pessac, France
[2] Univ Grenoble Alpes, CEA, LITEN, F-38000 Grenoble, France
[3] Toulon Univ, Aix Marseille Univ, CNRS, UMR 7334,IM2NP, F-13397 Marseille, France
[4] Univ North Texas, Dept Mat Sci & Engn, Denton, TX 76207 USA
[5] Natl Tsing Hua Univ, High Entropy Mat Ctr, Hsinchu 30013, Taiwan
[6] Natl Tsing Hua Univ, Dept Mat Sci & Engn, Hsinchu 30013, Taiwan
来源
MATERIALIA | 2024年 / 38卷
关键词
High entropy alloys; Spark plasma sintering; Tensile properties; Work hardening; Microstructure; Modeling; HIGH-ENTROPY ALLOY; HALL-PETCH RELATIONSHIP; TRANSFORMATION PATHWAYS; CRITICAL STRESS; DEFORMATION; STRENGTH; DUCTILITY; BEHAVIOR; MECHANISMS; EVOLUTION;
D O I
10.1016/j.mtla.2024.102250
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, we investigate the FCC-Al0.3CoCrFeNi high entropy alloy fabricated via spark plasma sintering of atomized powders, focusing on its mechanical and work-hardening properties across three distinct microstructures: coarse-grained, fine-grained, and fine-grained with L12 nano-precipitates. Using a dislocation densitybased model, we analyze the effects of grain size and L12 precipitates on these properties, achieving quantitative agreement between model predictions and experimental tensile and work-hardening behaviors. This exploration highlights the underlying deformation mechanisms at room temperature and their contributions to the strength/ductility trade-off. Significantly, our analysis reveals that twinning in HEAs manifests differently from that observed in steels. Furthermore, the incorporation of L12 precipitates emerges as a critical factor enhancing the alloy's mechanical attributes. Our findings underscore the essential roles of microstructural parameters in tailoring the mechanical properties of HEAs, offering insights that could guide the design of advanced alloys with optimized performance.
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页数:13
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