Mechanical Alloying with the Partial Amorphization of the Fe–Cr–Co–Ni–Mn Multicomponent Powder Mixture and Its Spark Plasma Sintering to Produce a Compact High-Entropy Material

被引:0
|
作者
N. A. Kochetov
A. S. Rogachev
A. S. Shchukin
S. G. Vadchenko
I. D. Kovalev
机构
[1] Institute of Structural Macrokinetics,
[2] Russian Academy of Sciences,undefined
来源
Russian Journal of Non-Ferrous Metals | 2019年 / 60卷
关键词
multicomponent high-entropy alloys; Fe–Cr–Co–Ni–Mn alloy; solid solution; face-centered crystal lattice; mechanical alloying; spark plasma sintering; compact material;
D O I
暂无
中图分类号
学科分类号
摘要
The results of studying the influence of mechanical alloying (MA) on the surface morphology, microstructure, and atomic–crystalline structure of particles of the Fe–Cr–Co–Ni–Mn multicomponent powder mixture are presented. The initial components are as follows: the R-10 radio-engineering carbonyl iron powder with average particle size d = 3.5 μm, the NPE-1 nickel powder with d = 150 μm, the PK-1u cobalt powder with d < 71 μm, the PKh-1M chromium powder with d < 125 μm, and the MR0 manganese powder with d < 400 μm. The MA of the prepared mixture was performed in an AGO-2 water-cooled mechanical activator using 9-mm steel balls with an acceleration of 90 g in air. The alloying time varies from 5 to 90 min. The ratio of the ball weight to the mixture weight is 20 : 1. X-ray diffraction patterns of the initial and alloyed mixtures, as well as of the sample formed by sintering, are recorded using a DRON 3M diffractometer in FeKα radiation at 2θ = 30–100°. The microstructure of the mixture particles and the compact sample metallographic specimen after sintering are investigated by scanning electron microscopy. It is established that the peaks of initial components are absent in the X-ray diffraction pattern after mechanical activation for 90 min, and peaks corresponding to the phase representing the γ-Fe-based solid solution having a face-centered crystal lattice are presented. Herewith, the fraction of the amorphous phase increases to 20%. A compact single-phase material is formed from the mixture prepared after 90-min alloying by spark plasma sintering at 800°C for 10 min. Its density is 7.49 kg/cm3, resistivity is 0.94–0.96 × 10–6 Ω m, and microhardness is 306–328 kg/mm2. The phase is uniformly distributed over the volume.
引用
收藏
页码:268 / 273
页数:5
相关论文
共 50 条
  • [1] Mechanical Alloying with the Partial Amorphization of the Fe-Cr-Co-Ni-Mn Multicomponent Powder Mixture and Its Spark Plasma Sintering to Produce a Compact High-Entropy Material
    Kochetov, N. A.
    Rogachev, A. S.
    Shchukin, A. S.
    Vadchenko, S. G.
    Kovalev, I. D.
    RUSSIAN JOURNAL OF NON-FERROUS METALS, 2019, 60 (03) : 268 - 273
  • [2] Obtaining a High-Entropy Fe–Cr–Co–Ni–Ti Alloy by Mechanical Alloying and Electric Spark Plasma Sintering of a Powder Mixture
    N. A. Kochetov
    A. S. Rogachev
    D. Yu. Kovalev
    A. S. Shchukin
    S. G. Vadchenko
    Russian Journal of Non-Ferrous Metals, 2021, 62 : 716 - 722
  • [3] Obtaining a High-Entropy Fe-Cr-Co-Ni-Ti Alloy by Mechanical Alloying and Electric Spark Plasma Sintering of a Powder Mixture
    Kochetov, N. A.
    Rogachev, A. S.
    Kovalev, D. Yu
    Shchukin, A. S.
    Vadchenko, S. G.
    RUSSIAN JOURNAL OF NON-FERROUS METALS, 2021, 62 (06) : 716 - 722
  • [4] Mechanical alloying and spark plasma sintering of CoCrFeNiMnAl high-entropy alloy
    Wang, Chao
    Ji, Wei
    Fu, Zhengyi
    ADVANCED POWDER TECHNOLOGY, 2014, 25 (04) : 1334 - 1338
  • [5] NbMoCrTiAl High-entropy Alloy Prepared by Mechanical Alloying and Spark Plasma Sintering
    Yan J.
    Li K.
    Wang Y.
    Qiu J.
    Cailiao Daobao/Materials Reports, 2019, 33 (05): : 1671 - 1675
  • [6] Mechanical alloying synthesis and spark plasma sintering consolidation of CoCrFeNiAl high-entropy alloy
    Ji, Wei
    Fu, Zhengyi
    Wang, Weimin
    Wang, Hao
    Zhang, Jinyong
    Wang, Yucheng
    Zhang, Fan
    JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 589 : 61 - 66
  • [7] Microstructure and properties of CrMnFeCoNi high-entropy alloy prepared by mechanical alloying and spark plasma sintering
    Ni, Xuyao
    Dai, Ting
    Lu, Tao
    Pan, Jiayi
    Li, Miao
    Dai, Jianwen
    POWDER METALLURGY, 2019, 62 (01) : 38 - 43
  • [8] Structure and Properties of High-Entropy Boride Ceramics Synthesized by Mechanical Alloying and Spark Plasma Sintering
    Razumov, Nikolay
    Makhmutov, Tagir
    Kim, Artem
    Popovich, Anatoliy
    MATERIALS, 2023, 16 (20)
  • [9] Microstructures and properties of CoCrCuFeNiMox high-entropy alloys fabricated by mechanical alloying and spark plasma sintering
    Yang, Qiumin
    Tang, Yanyuan
    Wen, Yan
    Zhang, Qinying
    Deng, Dengfei
    Nai, Xinren
    POWDER METALLURGY, 2018, 61 (02) : 115 - 122
  • [10] Alloying behavior and novel properties of CoCrFeNiMn high-entropy alloy fabricated by mechanical alloying and spark plasma sintering
    Ji, Wei
    Wang, Weimin
    Wang, Hao
    Zhang, Jinyong
    Wang, Yucheng
    Zhang, Fan
    Fu, Zhengyi
    INTERMETALLICS, 2015, 56 : 24 - 27