Enhancement of the Heat Resistance of Coatings for the Blades of Gas-Turbine Engines

被引:0
|
作者
S. G. Rudenkyi
E. V. Timofeeva
A. V. Kunchenko
A. A. Korneev
M. A. Bortnitskaya
V. V. Kunchenko
Yu. V. Kunchenko
T. P. Ryzhova
机构
[1] National Scientific Center,“Kharkiv Physicotechnical Institute”
来源
Materials Science | 2020年 / 55卷
关键词
vacuum-activated diffusion saturation; complex refractory coatings;
D O I
暂无
中图分类号
学科分类号
摘要
To create blades of gas-turbine engines of new generation made of materials based on alloys of the Nb–Si system, we study the surface layer formed on niobium by its silicides with additionally introduced titanium elements. It is shown that the heat resistance of these specimens does not depend on the method of formation of the surface layer and depends only on its thickness. The addition of titanium increases the heat resistance of the specimens at 1350°C depending on its content. We also performed the thermodynamic analysis of the possibility of simultaneous saturation of the surface of niobium with titanium and boron under the action of vapors of the NaCl activator.
引用
收藏
页码:569 / 576
页数:7
相关论文
共 50 条
  • [31] On the Problem of Improvement of the Damping Ability of Rotor Blades of Contemporary Gas-Turbine Engines
    I. G. Tokar'
    A. P. Zinkovskii
    V. V. Matveev
    [J]. Strength of Materials, 2003, 35 (4) : 368 - 375
  • [32] TESTING GAS-TURBINE ENGINES
    不详
    [J]. MACHINE TOOL REVIEW, 1978, 66 (385): : 129 - 129
  • [33] EVALUATION OF THE VIBRATIONAL STRESS STATE OF BLADES OF GAS-TURBINE ENGINES IN RANDOM VIBRATIONS
    EGOROV, IV
    STEBUNOV, AI
    [J]. STRENGTH OF MATERIALS, 1984, 16 (04) : 555 - 561
  • [34] Ion-Plasma Protective Coatings for Gas-Turbine Engine Blades
    Kablov, E. N.
    Muboyadzhyan, S. A.
    Budinovskii, S. A.
    Lutsenko, A. N.
    [J]. RUSSIAN METALLURGY, 2007, (05): : 364 - 372
  • [35] EVALUATION OF THE FATIGUE LIFE OF COMPRESSOR BLADES OF GAS-TURBINE ENGINES IN THE PROBABILITY ASPECT
    PROKOPENKO, AV
    BAUMSHTEIN, MV
    [J]. STRENGTH OF MATERIALS, 1983, 15 (11) : 1600 - 1603
  • [36] Control over the substructure of single-crystal blades of gas-turbine engines
    F. A. Sidokhin
    A. F. Sidokhin
    E. F. Sidokhin
    [J]. Inorganic Materials, 2010, 46 : 1541 - 1542
  • [37] Automated Belt Grinding of Axial-Compressor Blades in Gas-Turbine Engines
    Poletaev V.A.
    Volkov D.I.
    [J]. Russian Engineering Research, 2019, 39 (7) : 594 - 597
  • [38] DIFFUSION BARRIER COATINGS WITH ACTIVE BONDING, DESIGNED FOR GAS-TURBINE BLADES
    KNOTEK, O
    LUGSCHEIDER, E
    LOFFLER, F
    BEELE, W
    [J]. SURFACE & COATINGS TECHNOLOGY, 1994, 68 : 22 - 26
  • [39] Evaluation of the Endurance Limit of Cooled Blades of Gas-Turbine Engines Made of Heat-Resistant Nickel Alloy
    Kvasnytska, Yu. H.
    Ivaskevych, L. M.
    Balitskii, A. I.
    Mialnitsa, H. P.
    Kvasnytska, K. H.
    [J]. MATERIALS SCIENCE, 2023, 59 (03) : 340 - 346
  • [40] Complex Oxidation-Resistant Coatings for Blades of Gas Turbine Engines
    V. I. Zmii
    S. G. Ruden’kii
    E. V. Timofeeva
    A. A. Korneev
    V. V. Kunchenko
    Yu. V. Kunchenko
    T. P. Ryzhova
    M. Yu. Bredikhin
    [J]. Powder Metallurgy and Metal Ceramics, 2015, 54 : 503 - 507