Studying the Formation of a Multilayer Functional Composite Material with a Titanium Nitride-Titanium-Base Gradient Structure

被引:0
|
作者
Sudarchikova, M. A. [1 ]
Nasakina, E. O. [1 ]
Ivanov, E. M. [1 ]
Kolmakov, A. G. [1 ]
机构
[1] Russian Acad Sci, Baikov Inst Met & Mat Sci, Moscow 119334, Russia
基金
俄罗斯科学基金会;
关键词
magnetron sputtering; reactive sputtering; layered composite material; titanium alloy; aluminum alloy; biocompatible material; titanium nitride; titanium; CHEMICAL-VAPOR-DEPOSITION; THIN-FILMS; CORROSION; COATINGS;
D O I
10.1134/S2075113323020430
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Composite materials based on aluminum alloy D16 and titanium alloy Ti-10Nb-3Mo with titanium and titanium nitride surface layers and on a multilayer composition consisting of alternating titanium and titanium nitride layers for biomedical and tribological purposes are synthesized by high vacuum magnetron sputtering with a direct current in inert and reactive media. The structure and phase composition are studied using SEM, AES, X-ray diffractometry, and scanning probe microscopy. The rate of formation of a surface layer of pure titanium on a substrate made of alloy D16 is 185 nm/min, and the kinetic rate of the synthesis of a surface layer of titanium is considerably slowed down in a reactive medium and is no more than 70 nm/min owing to nitrogen poisoning of the target. The intermediate layer formed as a result of the synthesis of a titanium layer on an aluminum alloy substrate has a thickness of about 600 nm, which is substantially greater than the thickness of the intermediate layer when titanium is deposited on a titanium alloy substrate. The nitrogen concentration observed during the formation of titanium nitride on a titanium sublayer is higher than that observed during the formation of the nitride on a substrate with the same deposition parameters. The intensity of the reflections of the TiN phase in the X-ray diffraction patterns are weakly expressed with all variants of the used Ar/N-2 ratios of working gases during sputtering. The presence of a titanium sublayer makes it possible to obtain a greater thickness of the titanium nitride layer and the surface layer saturated with nitrogen to a greater extent up to 38 wt % in comparison with the case of layer deposition without the sublayer.
引用
收藏
页码:502 / 510
页数:9
相关论文
共 50 条
  • [41] Formation features and properties of plasma-sprayed composite coatings of the "stellite-titanium nitride" type
    Rudenskaya, NA
    Zhilyaev, VA
    Pankratov, AA
    PROTECTION OF METALS, 1999, 35 (01): : 55 - 58
  • [42] Mechanical Properties of a Carbon Fiber Reinforced Plastic-Titanium Nickelide Functional Composite Material
    Kollerov, M. Yu.
    Spektor, V. S.
    Skoblin, A. A.
    Gurtovoi, S. I.
    Saakyan, A. V.
    Gusev, D. E.
    RUSSIAN METALLURGY, 2019, 2019 (04): : 331 - 335
  • [43] Manganese monoxide/titanium nitride composite as high performance anode material for rechargeable Li-ion batteries
    Xu, Gaojie
    Zhang, Lixue
    Guo, Chaowei
    Gu, Lin
    Wang, Xiaogang
    Han, Pengxian
    Zhang, Kejun
    Zhang, Chuanjian
    Cui, Guanglei
    ELECTROCHIMICA ACTA, 2012, 85 : 345 - 351
  • [44] Formation features of composite coatings based on titanium nitride by method of vacuum-arc evaporation and magnetron sputtering
    Tsyrenov, D. B-D
    Semenov, A. P.
    Smirnyagina, N. N.
    Semenova, I. A.
    6TH INTERNATIONAL CONGRESS ENERGY FLUXES AND RADIATION EFFECTS, 2018, 1115
  • [45] PARETO OPTIMIZATION OF ELECTRO DISCHARGE MACHINING OF TITANIUM NITRIDE-ALUMINIUM OXIDE COMPOSITE MATERIAL USING GENETIC ALGORITHM
    Mitra, Souren
    Sarkar, Soumya
    Paul, Goutam
    Bhaduri, D.
    Biswas, Sampad
    ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES II, PTS 1 AND 2, 2011, 264-265 : 985 - +
  • [46] Formation of Composite Material by Magnetic Pulse Welding of Crystalline Titanium and Nickel-Based Amorphous Alloy
    Lazurenko, D. V.
    Ivannikov, A. A.
    Anisimov, A. G.
    Popov, N. S.
    Dovzhenko, G. D.
    METAL SCIENCE AND HEAT TREATMENT, 2023, 65 (5-6) : 309 - 316
  • [47] Formation of Composite Material by Magnetic Pulse Welding of Crystalline Titanium and Nickel-Based Amorphous Alloy
    D. V. Lazurenko
    A. A. Ivannikov
    A. G. Anisimov
    N. S. Popov
    G. D. Dovzhenko
    Metal Science and Heat Treatment, 2023, 65 : 309 - 316
  • [48] Effects of Raw Material Molar Ratio and Addition of Mg on Titanium Aluminide–Alumina Composite Formation Mechanism
    Razieh Khoshhal
    Ali Hosseinzadeh
    Powder Metallurgy and Metal Ceramics, 2019, 58 : 104 - 112
  • [49] Features of Creating Functional and Functionally Gradient Coatings with a Unique Set of Properties from Composite Powders with Titanium Matrix
    Goshkoderya, M. E.
    Bobkova, T. I.
    Savich, V. V.
    METALLURGIST, 2023, 66 (11-12) : 1430 - 1435
  • [50] Features of Creating Functional and Functionally Gradient Coatings with a Unique Set of Properties from Composite Powders with Titanium Matrix
    M. E. Goshkoderya
    T. I. Bobkova
    V. V. Savich
    Metallurgist, 2023, 66 : 1430 - 1435