A novel as-cast precipitation-strengthened Al0.5V0.1FeCrMnNi0.9 high-entropy alloy with high strength and plasticity

被引:0
作者
ChunHui Li
MingLiang Wang
HuanZhi Zhang
GuoJia Zhang
TianXin Li
YiPing Lu
TingJu Li
机构
[1] Dalian University of Technology,Key Laboratory of Solidification Control and Digital Preparation Technology (Liaoning Province), School of Materials Science and Engineering
来源
Science China Technological Sciences | 2021年 / 64卷
关键词
high-entropy alloy; microstructure; mechanical properties; precipitation strengthening;
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中图分类号
学科分类号
摘要
A novel Al0.5V0.1FeCrMnNi0.9 high-entropy alloy was designed to achieve enhanced strength and plasticity. The as-cast Al0.5V0.1FeCrMnNi0.9 alloy shows a typical dendritic microstructure consisting of a body-centered cubic-structured matrix phase and a B2-structured nanoprecipitate phase. Nanoprecipitates are homogeneous and dispersed in the matrix. The as-cast Al0.5V0.1FeCrMnNi0.9 alloy exhibits a compressive yield strength of 1.104 GPa, a fracture strength of 2.926 GPa, and a fracture strain of 45.7%. The product of strength and plasticity of this alloy is 133.72 GPa%, which is superior to that of most of the reported high-entropy alloys. The strengthening mechanisms were evaluated in detail, which indicates that the coherent precipitation enhancement contributes to the unusually high strength and plasticity.
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页码:1920 / 1926
页数:6
相关论文
共 130 条
[1]  
Yeh J W(2004)Nanostructured high-entropy alloys with multiple principal elements: Novel alloy design concepts and outcomes Adv Eng Mater 6 299-303
[2]  
Chen S K(2004)Microstructural development in equiatomic multicomponent alloys Mater Sci Eng-A 375–377 213-218
[3]  
Lin S J(2016)Metastable high-entropy dual-phase alloys overcome the strength-ductility trade-off Nature 534 227-230
[4]  
Cantor B(2020)A HEA/MG composite breaks the strength-ductility trade-off by using ultrasonic technology Sci China Tech Sci 63 2169-2170
[5]  
Chang I T H(2018)Microstructure and mechanical properties of FeCoNiCr high-entropy alloy strengthened by nano-Y Sci China Tech Sci 61 179-183
[6]  
Knight P(2018)O Sci China Tech Sci 61 168-178
[7]  
Li Z(2018) dispersion Sci China Tech Sci 61 117-123
[8]  
Pradeep K G(2018)Fatigue behavior of high-entropy alloys: A review Sci China Tech Sci 61 189-196
[9]  
Deng Y(2013)Effect of carbon addition on the microstructure and mechanical properties of CoCrFeNi high entropy alloy J Alloys Compd 549 195-199
[10]  
Zhang Y(2011)The intrinsic mechanism of corrosion resistance for FCC high entropy alloys Acta Mater 59 6308-6317