High-Velocity Air Plasma Spraying of (Ti, Cr)C–32 wt.% Ni Clad Powder

被引:0
|
作者
Yu. S. Borisov
A. L. Borisova
M. V. Kolomytsev
O. P. Masyuchok
I. I. Timofeeva
M. A. Vasilkovskaya
机构
[1] National Academy of Sciences of Ukraine,Paton Electric Welding Institute
[2] National Academy of Sciences of Ukraine,Frantsevich Institute for Problems of Materials Science
来源
关键词
cermets; double titanium–chromium carbide; clad powder; high-velocity air plasma spraying; properties of coatings; microhardness; experimental design;
D O I
暂无
中图分类号
学科分类号
摘要
The influence of air plasma spraying (parameters such as plasma gun power, spraying distance, plasma gas flow, anode diameter) of (Ti, Cr)C–32 wt.% Ni clad powder on the characteristics of resultant coatings (structure, microhardness, porosity, phase composition) is studied. The experimental procedure is designed using the mathematical planning method. The experimental data are processed to derive regression equations, determining the quantitative dependence of average microhardness and stability of microhardness characteristics on spraying process parameters. It is found that plasma gun power and plasma gas flow have the greatest impact on microhardness of the coatings and ΔX/HVav parameter, which characterizes the reproducibility of coating properties. The spraying distance has hardly any influence on the properties studied within the test range (160–220 mm). The hardness of coatings produced from the (Ti, Cr)C–32 wt.% Ni clad powder (12.15–14.58 GPa) is higher than that of the coatings obtained by air plasma spraying of a mechanical mixture of 75 wt.% (Ti, Cr)C + 25 wt.% NiCr (5.3–12.6 GPa).
引用
收藏
页码:305 / 315
页数:10
相关论文
共 50 条
  • [1] High-Velocity Air Plasma Spraying of (Ti, Cr)C-32 wt.% Ni Clad Powder
    Borisov, Yu. S.
    Borisova, A. L.
    Kolomytsev, M. V.
    Masyuchok, O. P.
    Timofeeva, I. I.
    Vasilkovskaya, M. A.
    POWDER METALLURGY AND METAL CERAMICS, 2017, 56 (5-6) : 305 - 315
  • [2] CHARACTERIZATION OF WC-NI POWDER FOR HIGH-VELOCITY OXYFUEL SPRAYING
    GUILEMANY, JM
    MIGUEL, JR
    DONG, Z
    POWDER METALLURGY, 1994, 37 (03) : 219 - 221
  • [3] High-velocity oxyfuel reactive spraying of mechanically alloyed Ni-Ti-C powders
    Horlock, AJ
    Sadeghian, Z
    McCartney, DG
    Shipway, PH
    JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2005, 14 (01) : 77 - 84
  • [4] High-velocity oxyfuel reactive spraying of mechanically alloyed Ni-Ti-C powders
    A. J. Horlock
    Z. Sadeghian
    D. G. McCartney
    P. H. Shipway
    Journal of Thermal Spray Technology, 2005, 14 : 77 - 84
  • [5] CHARACTERIZATION OF CR3C2-NICR CERMET POWDER FOR HIGH-VELOCITY OXYFUEL SPRAYING
    GUILEMANY, JM
    NUTTING, J
    LLORCAISERN, N
    POWDER METALLURGY, 1994, 37 (04) : 289 - 292
  • [6] Thermal shock resistance of WC-Cr3C2-Ni coatings deposited via high-velocity air fuel spraying
    Zhang, Diyao
    Hu, Shuming
    Peng, Zijun
    Liu, Zhenli
    Yu, Jingkun
    Yuan, Lei
    SURFACE & COATINGS TECHNOLOGY, 2024, 487
  • [7] Properties of intermetallic Ni–Al coatings deposited by high-velocity air–fuel spraying
    Yu. I. Evdokimenko
    V. M. Kisel
    S. V. Buchakov
    A. A. Rogozinskaya
    D. Z. Yurchenko
    R. V. Litvin
    Powder Metallurgy and Metal Ceramics, 2011, 49 : 660 - 666
  • [8] Effect of Plasma Spraying Parameters on the Properties of (Ti, Cr)C–Ni Composite Coatings
    O. P. Umanskyi
    O. Ye. Terentiev
    M. S. Storozhenko
    O. Yu. Koval
    Yu.V. Gubin
    V. P. Brazhevskyi
    O. O. Chernyshov
    Powder Metallurgy and Metal Ceramics, 2023, 61 : 597 - 604
  • [9] PROPERTIES OF INTERMETALLIC Ni-Al COATINGS DEPOSITED BY HIGH-VELOCITY AIR-FUEL SPRAYING
    Evdokimenko, Yu. I.
    Kisel, V. M.
    Buchakov, S. V.
    Rogozinskaya, A. A.
    Yurchenko, D. Z.
    Litvin, R. V.
    POWDER METALLURGY AND METAL CERAMICS, 2011, 49 (11-12) : 660 - 666
  • [10] Investigation on tribological properties of high-velocity air fuel spraying WC - Cr 3 C 2-Ni coating on the surface of continuous casting crystallization rollers
    Zhang, Diyao
    Hu, Shuming
    Peng, Zijun
    Liu, Zhenli
    Yu, Jingkun
    Yuan, Lei
    ENGINEERING FAILURE ANALYSIS, 2024, 162