Multicomponent (Ti-Zr-Hf-V-Nb)N Nanostructure Coatings Fabrication, High Hardness and Wear Resistance

被引:0
|
作者
Pogrebnjak, A. D. [1 ]
Beresnev, V. M. [2 ]
Kolesnikov, D. A. [3 ]
Bondar, O. V. [1 ]
Takeda, Y. [4 ]
Oyoshi, K. [4 ]
Kaverin, M. V. [1 ]
Sobol, O. V. [5 ]
Krause-Rehberg, R. [6 ]
Karwat, C. [7 ]
机构
[1] Sumy State Univ, UA-40007 Sumy, Ukraine
[2] Kharkov Natl Univ, Kharkov, Ukraine
[3] Belgorod State Univ, Belgorod, Russia
[4] NIMS, Tsukuba, Ibaraki, Japan
[5] Natl Kharkov Tech Univ KHPI, Kharkov, Ukraine
[6] Univ Halle, Inst Phys, D-06120 Halle, Germany
[7] Lublin Univ Technol, PL-20618 Lublin, Poland
关键词
VACANCY DEFECTS; ELECTRON; EVOLUTION;
D O I
10.12693/APhysPolA.123.816
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
First results in the field of synthesis and research of the multicomponent (Ti-Zr-Hf-V-Nb)N nanostructured coatings are presented in the paper. Influence of processes of spinodal segregation and mass-transfer on single-layered or multilayered crystal boundary (second phase) forming were explored. Superhard nanostructured coatings were investigated before and after annealing at the temperature 600 degrees C using unique methods (slow positron beam, proton microbeam particle induced X-ray emission-mu, Rutherford backscattering-analysis, scanning electron microscopy with energy dispersive X-ray spectroscopy, X-ray diffraction analysis was performed using DRON-4 and nanoindentor). Diffraction spectra were taken point-by-point, with a scanning step 2 Theta = 0.05 to 0.1 degrees. We detected that positron trapping by defects was observed on the nanograins boundaries and interfaces (vacancies and nanopores which are the part of triple and larger grain's boundary junction). The 3D distribution maps of elements obtained by the proton microbeam (particle induced X-ray emission-mu) together with the results obtained by slow positron microbeam gave us comprehensive information about physical basis of the processes, connected with diffusion and spinodal segregation in superhard coatings.
引用
收藏
页码:816 / 818
页数:3
相关论文
共 50 条
  • [1] MULTYCOMPONENT (Ti-Zr-Hf-V-Nb)N NANOSTRUCTURE COATINGS FABRICATION, THEIR PROPERTIES AND STRUCTURE
    Pogrebnjak, A. D.
    Beresnev, V. M.
    Kolesnikov, D. A.
    Bondar, O. V.
    Takeda, Y.
    Oyoshi, K.
    Shypylenko, A. P.
    Kaverin, M. V.
    Abrasonis, G.
    Krause-Rehberg, R.
    Andriev, A. A.
    RADIATION INTERACTION WITH MATERIAL AND ITS USE IN TECHNOLOGIES 2012, 2012, : 65 - 68
  • [2] Wear resistance of the multicomponent coatings of the (Ti-Zr-Hf-V-Nb-Ta)N system at elevated temperature
    Nemchenko, U. S.
    Beresnev, V. M.
    Klimenko, S. A.
    Podchernyaeva, I. A.
    Turbin, P. V.
    Andreev, A. A.
    JOURNAL OF SUPERHARD MATERIALS, 2015, 37 (05) : 322 - 326
  • [3] Wear resistance of the multicomponent coatings of the (Ti-Zr-Hf-V-Nb-Ta)N system at elevated temperature
    U. S. Nemchenko
    V. M. Beresnev
    S. A. Klimenko
    I. A. Podchernyaeva
    P. V. Turbin
    A. A. Andreev
    Journal of Superhard Materials, 2015, 37 : 322 - 326
  • [4] Investigation of (Ti-Zr-Hf-V-Nb)N Multicomponent Nanostructured Coatings before and after Thermal Annealing by Nuclear Physics Methods of Analysis
    Pogrebnjak, A. D.
    Beresnev, V. M.
    Bondar', A. V.
    Kaverin, M. V.
    Ponomarev, A. G.
    RUSSIAN PHYSICS JOURNAL, 2013, 56 (05) : 532 - 541
  • [5] Radiation resistance of high-entropy nanostructured (Ti, Hf, Zr, V, Nb)N coatings
    Komarov, F. F.
    Pogrebnyak, A. D.
    Konstantinov, S. V.
    TECHNICAL PHYSICS, 2015, 60 (10) : 1519 - 1524
  • [6] Radiation Resistance of high-entropy nanostructured (Ti, Hf, Zr, V, Nb)N coatings
    F. F. Komarov
    A. D. Pogrebnyak
    S. V. Konstantinov
    Technical Physics, 2015, 60 : 1519 - 1524
  • [7] Analysis of the Probability of Synthesizing High-Entropy Alloys in the Systems Ti-Zr-Hf-V-Nb, Gd-Ti-Zr-Nb-Al, and Zr-Hf-V-Nb-Ni
    Gelchinski, B. R.
    Balyakin, I. A.
    Ilinykh, N. I.
    Rempel, A. A.
    PHYSICAL MESOMECHANICS, 2021, 24 (06) : 701 - 706
  • [8] Analysis of the Probability of Synthesizing High-Entropy Alloys in the Systems Ti-Zr-Hf-V-Nb, Gd-Ti-Zr-Nb-Al, and Zr-Hf-V-Nb-Ni
    B. R. Gelchinski
    I. A. Balyakin
    N. I. Ilinykh
    A. A. Rempel
    Physical Mesomechanics, 2021, 24 : 701 - 706
  • [9] Comparing the Tribological Properties of the Coatings (Ti-Hf-Zr-V-Nb-Ta)N and (Ti-Hf-Zr-V-Nb-Ta)N
    Nyemchenko, U. S.
    Beresnev, V. M.
    Gorban, V. F.
    Novikov, V. Ju
    Yaremenko, O. V.
    JOURNAL OF NANO- AND ELECTRONIC PHYSICS, 2015, 7 (03)
  • [10] Structure and Properties of Nanostructured (Ti-Hf-Zr-V-Nb)N Coatings
    Pogrebnjak, Alexander D.
    JOURNAL OF NANOMATERIALS, 2013, 2013