Tribocorrosion behavior of boronized Co1.19Cr1.86Fe1.30Mn1.39Ni1.05Al0.17B0.04 high entropy alloy

被引:47
|
作者
Gunen, Ali [1 ]
机构
[1] Iskenderun Tech Univ, Fac Engn & Nat Sci, Dept Met & Mat Engn, TR-31200 Antakya, Turkey
关键词
High entropy alloy; Boronizing; Nanoindentation; Tribocorrosion; Friction; Wear; WEAR BEHAVIOR; FRACTURE-TOUGHNESS; BORIDE-LAYER; AISI; 304-STAINLESS-STEEL; TRIBOLOGICAL PROPERTIES; MECHANICAL-BEHAVIOR; PHASE EVOLUTION; MICROSTRUCTURE; HARDNESS; STEEL;
D O I
10.1016/j.surfcoat.2021.127426
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Boride layers were grown on the surface of a Co1.19Cr1.86Fe1.30Mn1.39Ni1.05Al0.17B0.04 high-entropy alloy (HEA) by boronizing at temperatures of 900, 950 and 1000 degrees C for 4 h using nanosized boronizing powders. Characterizations were carried out by scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD), microhardness measurements, nanoindentation tests, surface profilometry and ball-on-disc type wear tests. The tribocorrosion behavior of the boronized HEAs and the untreated alloy were investigated in air and in 5% HCl. Microstructural examinations revealed complex metal boride layers on the surfaces of the boronized HEAs, consisting mainly of Cr2Ni3B6, Fe0.4Mn0.6B, Cr0.4Mn0.6B and CrFeB2 phases. The boride layers were silicide-free, with thickness and hardness values of 31.95-64.36 mu m and 23.49-28.09 GPa, respectively. The boronized HEAs exhibited reduced friction coefficients and low wear losses in both ambient air and 5% HCl compared to the untreated HEA. Due in part to the lubricating and cooling effect of the solution, the untreated HEA and the boronized HEAs showed reduced wear losses in 5% HCl compared to air. In air, the wear mechanism of the boronized HEAs was abrasive wear combined with polishing, while in the as-cast HEA the wear mechanism was abrasive wear accompanied by plastic deformation. In 5% HCl, the wear mechanism of the boronized HEAs was abrasive wear accompanied by oxidation and pitting, while in the as-cast HEA the wear mechanism was abrasive wear combined with pitting.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Suzuki segregation behavior and mechanism in a Co-Cr-Fe-Ni-Mo high-entropy alloy
    Li, Jiaxiang
    Yamanaka, Kenta
    Hu, Junhua
    Chiba, Akihiko
    MATERIALS TODAY PHYSICS, 2024, 45
  • [32] Effect of pre-oxidation on increasing resistance of Fe-Al-Ni-Cr-Co-Mn high entropy alloys to molten Al attack
    Yang, H. H.
    Tsai, W. T.
    Kuo, J. C.
    CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2014, 49 (02) : 124 - 129
  • [33] Superplastic behavior of ultrafine-grained Al5Cr20Fe35Co35Ni5 high-entropy alloy
    Jeong, H. T.
    Kim, W. J.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2025, 923
  • [34] Corrosion behavior of Al12Cr12Fe35Mn21Ni20 high entropy alloy in different acidic media
    Lamiaa Z. Mohamed
    Mohamed A. H. Gepreel
    Aliaa Abdelfatah
    Chemical Papers, 2021, 75 : 6265 - 6274
  • [35] A Co-free Cr-Fe-Ni-Al-Si high entropy alloy with outstanding corrosion resistance and high hardness fabricated by laser surface melting
    Chen, Chen
    Yuan, Shuhan
    Chen, Junli
    Wang, Wei
    Zhang, Weiwei
    Wei, Ran
    Wang, Tan
    Zhang, Tao
    Guan, Shaokang
    Li, Fushan
    MATERIALS LETTERS, 2022, 314
  • [36] Deformation Behavior of a High-Entropy Al–Co–Cr–Fe–Ni Alloy Fabricated by Means of Wire-Arc Additive Manufacturing
    Ivanov Y.F.
    Osintsev K.A.
    Gromov V.E.
    Konovalov S.V.
    Panchenko I.A.
    Steel in Translation, 2021, 51 (01) : 27 - 32
  • [37] Tuning nanostructure and mechanical property of Fe-Co-Ni-Cr-Mn high-entropy alloy thin films by substrate temperature
    Hu, M.
    Cao, Q. P.
    Wang, X. D.
    Zhang, D. X.
    Jiang, J-Z
    MATERIALS TODAY NANO, 2021, 15
  • [38] Shear punching of a Co20Cr20Fe20Ni20Mn15Cu5 high entropy alloy
    Wang, Keyan
    Ning, Zhiliang
    Li, Mengwan
    Sun, Jianfei
    Huang, Yongjiang
    JOURNAL OF ALLOYS AND COMPOUNDS, 2021, 887
  • [39] A cobalt-rich eutectic high-entropy alloy in the system Al-Co-Cr-Fe-Ni
    Shafiei, Ali
    Rajabi, Samin
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2019, 125 (11):
  • [40] Hydrogen induced cracking behavior of the dual-phase Co30Cr10Fe10Al18Ni30Mo2 eutectic high entropy alloy
    Zhao, Qiancheng
    Luo, Hong
    Yang, Zhongsheng
    Pan, Zhimin
    Wang, Zhijun
    Islamgaliev, R. K.
    Li, Xiaogang
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 50 : 134 - 147