Phase and microstructure formation during reactive spark plasma sintering of AlxCoCrFeNi (x=0.3 and 1) high entropy alloys

被引:2
|
作者
Saviot, Adrien [1 ]
Sallamand, Pierre [1 ]
Monchoux, Jean-Philippe [2 ]
Marcelot, Cecile [2 ]
Cours, Robin [2 ]
Geoffroy, Nicolas [1 ]
Jouvard, Jean-Marie [1 ]
Le Gallet, Sophie [1 ]
机构
[1] Univ Bourgogne Franche Comte, ICB, UMR CNRS 6303, 9 Ave Alain Savary,BP 47870, F-21078 Dijon, France
[2] Univ Toulouse III, CEMES, UPR CNRS 8011, 29 Rue Jeanne Marvig,BP 94347, F-31055 Toulouse, France
来源
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T | 2024年 / 32卷
关键词
High entropy alloys; Spark plasma sintering; Mechanical activation; Phases and microstructure; MECHANICAL-PROPERTIES;
D O I
10.1016/j.jmrt.2024.08.096
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper is one of the first studies focusing on phase and microstructure formation mechanisms during reactive sintering of AlxCoCrFeNi (x = 0.3, 1) high entropy alloys (HEAs). The alloys have been prepared by mechanical activation followed by spark plasma sintering (SPS). Both powders are subjected to gluing to the milling vials and the phenomenon intensifies with Al content, resulting in a more important mechanical alloying delay for the equiatomic composition. The temperature influence on phase and microstructure formation was investigated by SPS from 550 to 1100 degrees C. Al0.3CoCrFeNi reactive sintering led to a face-centered cubic (FCC) solid solution with a grain size around hundreds of nanometers with nanometric intergranular B2 precipitates which content and size reduced with the temperature increase. Grain growth was observed at prior particle boundaries due to dynamic recrystallization, a phenomenon that can be controlled through modification of the milling and sintering steps, leading thus to tailored grain sizes. For the AlCoCrFeNi composition, temperature increase favors secondary FCC formation and leads to sigma phase precipitation. A dual homogeneous-heterogeneous microstructure is obtained due to the important gluing leading to insufficient milling. The dynamic recrystallization at prior particle boundaries promotes also body-centered cubic (BCC) to FCC phase transition. Therefore, the proposed reactive sintering route allows to obtain, for the equiatomic composition, alloys exhibiting very fine microstructures, with higher FCC fraction content than by conventional metallurgy processes.
引用
收藏
页码:3047 / 3059
页数:13
相关论文
共 50 条
  • [31] Effect of Annealing Treatment on the Microstructure and Hardness of AlxCoCrFeNi (x=0.75, 1.25) High Entropy Alloys
    Liu, Min
    Zhang, Shidong
    Li, Fangjie
    Wang, Lianbo
    Wang, Zemin
    Wang, Zhanyong
    Sha, Yeyu
    Shen, Qin
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2022, 31 (02) : 1444 - 1455
  • [32] Microstructure, mechanical properties, and corrosion behavior of TiVNbZrHf high entropy alloys fabricated by multi-step spark plasma sintering
    Duong, Luong Van
    Thinh, Nguyen Quoc
    Linh, Nguyen Ngoc
    Khanh, Dang Quoc
    Kim, Hyoseop
    Song, Jun Woo
    Phuong, Doan Dinh
    INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 2024, 119
  • [33] Plasma-Nitriding Properties of CoCrFeMnNi High-Entropy Alloys Produced by Spark Plasma Sintering
    Karimoto, Takato
    Nishimoto, Akio
    METALS, 2020, 10 (06) : 1 - 12
  • [34] Phase Evolution and Mechanical Properties of AlCoCrFeNiSix High-Entropy Alloys Synthesized by Mechanical Alloying and Spark Plasma Sintering
    Anil Kumar
    Akhilesh Kumar Swarnakar
    Manoj Chopkar
    Journal of Materials Engineering and Performance, 2018, 27 : 3304 - 3314
  • [35] Microstructure and properties of aluminium-high entropy alloy composites fabricated by mechanical alloying and spark plasma sintering
    Wang, Nairan
    Wu, Bo
    Wu, Weilong
    Li, Jiu
    Ge, Chunhua
    Dong, Yifan
    Zhang, Lanxiang
    Wang, Yan
    MATERIALS TODAY COMMUNICATIONS, 2020, 25
  • [36] Grain growth kinetics in CoCrFeNi and CoCrFeMnNi high entropy alloys processed by spark plasma sintering
    Vaidya, M.
    Anupam, Ameey
    Bharadwaj, J. Vijay
    Srivastava, Chandan
    Murty, B. S.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 791 : 1114 - 1121
  • [37] Phase prediction, densification, and microstructure of AlCrFeNi(TiO2)x high entropy alloy composite fabricated by spark plasma sintering
    Oke, Samuel R.
    Falodun, Oluwasegun E.
    Bayode, Abiodun
    Anamu, Ufoma S.
    Olubambi, Peter A.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 968
  • [38] Microstructure and mechanical properties of CuCrFeNi medium entropy alloys synthesized via mechanical alloying and spark plasma sintering
    Oboso, Peter Benard
    Oyama, Seiya
    Horioka, Julia
    Yi, Li-Fu
    Onda, Tetsuhiko
    Morito, Shigekazu
    Chen, Zhong-Chun
    JOURNAL OF ALLOYS AND COMPOUNDS, 2025, 1010
  • [39] Structure and mechanical properties of low-density AlCrFeTiX (X = Co, Ni, Cu) high-entropy alloys produced by spark plasma sintering
    Yurchenko, N.
    Shaysultanov, D.
    Povolyaeva, E.
    Moskovskikh, D.
    Zherebtsov, S.
    Stepanov, N.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 1007
  • [40] A review on mechanical alloying and spark plasma sintering of refractory high-entropy alloys: Challenges, microstructures, and mechanical behavior
    Martin, P.
    Aguilar, C.
    Cabrera, J. M.
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 30 : 1900 - 1928