Microstructure and mechanical properties of as-deposited and annealed TiB2/BN superlattice coatings

被引:22
|
作者
Dong, L. [1 ]
Li, D. J. [1 ]
Zhang, S. [1 ]
Yan, J. Y. [1 ]
Liu, M. Y. [1 ]
Gao, C. K. [1 ]
Wang, N. [1 ]
Liu, G. Q. [1 ]
Gu, H. Q. [2 ]
Wan, R. X. [2 ]
机构
[1] Tianjin Normal Univ, Coll Phys & Elect Informat Sci, Tianjin 300387, Peoples R China
[2] Tianjin Med Univ, Tianjin Inst Urol Surg, Tianjin 300070, Peoples R China
基金
中国国家自然科学基金;
关键词
Modulation ratios; Hardness; Annealing; Thermal stability; Titanium boride; Boron nitride; Multilayers; Sputtering; CUBIC BORON-NITRIDE; MULTILAYERED COATINGS; W/NBN SUPERLATTICES; INTERNAL-STRESS; THIN-FILMS; HARDNESS; STABILITY; NANOMULTILAYERS; PRESSURE; GROWTH;
D O I
10.1016/j.tsf.2012.03.109
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
TiB2/BN multilayers with the modulation ratios (t(TiB2):t(BN)) ranging from 1:1 to 16:1 and a constant modulation period of 24 nm were prepared by magnetron sputtering. The TiB2/BN multilayers were subsequently annealed in a vacuum environment at temperatures of 500-700 degrees C for 30 min, then characterized by extensive measurements. All multilayers exhibited small grain sizes and stable layer structures with polycrystalline with TiB2(001), TiB2(101), TiB2(002) textures or amorphous BN, resulting in higher hardness and elastic modulus than that of individual monolithic TiB2 or BN coatings. The hardness of as-deposited multilayer can reach as high as 39.34 GPa at t(TiB2):t(BN) = 13:1, meanwhile the friction coefficient got to 0.028, which was also the lowest. The hardness and friction were almost unchanged after annealing at 500-700 degrees C, which was attributed to good thermal stability in the layer structure and the existence of stable TiBxNy phases. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:5328 / 5332
页数:5
相关论文
共 50 条
  • [31] Influence of W Addition on Microstructure and Resistance to Brittle Cracking of TiB2 Coatings Deposited by DCMS
    Chudzik-Poliszak, Edyta
    Cieniek, Lukasz
    Moskalewicz, Tomasz
    Kowalski, Kazimierz
    Kopia, Agnieszka
    Smolik, Jerzy
    [J]. MATERIALS, 2021, 14 (16)
  • [32] Effects of TiB2 particle size on the microstructure and mechanical properties of TiB2-based composites
    Wu, Ning
    Xue, Fengdan
    Yang, Hailin
    Li, Guoping
    Luo, Fenghua
    Ruan, Jianming
    [J]. CERAMICS INTERNATIONAL, 2019, 45 (01) : 1370 - 1378
  • [33] Structure and properties of PVD TiB2 coatings
    Knotek, O
    Lugscheider, E
    Barimani, C
    Moller, M
    [J]. JOURNAL OF SOLID STATE CHEMISTRY, 1997, 133 (01) : 117 - 121
  • [34] Structure and Properties of Composite Electrospark, Laser, and Magnetron Deposited AlN ― TiB2 Coatings
    Irina A. Podchernyaeva
    [J]. Powder Metallurgy and Metal Ceramics, 2001, 40 : 501 - 508
  • [35] Mechanical properties of superhard TiB2 coatings prepared by DC magnetron sputtering
    Mikula, Marian
    Grancic, Branislav
    Bursikova, Vilma
    Csuba, Adrian
    Drzik, Milan
    Kavecky, Stefan
    Plecenik, Andrej
    Kus, Peter
    [J]. VACUUM, 2007, 82 (02) : 278 - 281
  • [36] EFFECT OF MICROSTRUCTURE ON THE PROPERTIES OF TIB2 CERAMICS
    FERBER, MK
    BECHER, PF
    FINCH, CB
    [J]. JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1983, 66 (01) : C2 - C4
  • [37] Effects of TiB2 Particles on the Microstructure Evolution and Mechanical Properties of B4C/TiB2 Ceramic Composite
    Niu, Haiyan
    Zhu, Yu
    You, Ning
    Wang, Yangwei
    Cheng, Huanwu
    Luo, Dujun
    Tang, Mengying
    Zhang, Jiamin
    [J]. MATERIALS, 2021, 14 (18)
  • [38] Microstructure and mechanical properties of extruded TiB2/2024 aluminum matrix composites
    Hua, Guangxin
    Ran, Linghao
    Zhang, Shuaibo
    Su, Yong
    [J]. MATERIALS RESEARCH EXPRESS, 2023, 10 (01)
  • [39] Effect of TiB2 Content on Microstructure and Tribological Properties of TiBx/Ti Alloy Coatings
    Kou, Feifan
    Yue, Yun
    Du, Zhihao
    Du, Sanming
    Chen, Deqiang
    Zhang, Yongzhen
    [J]. Surface Technology, 2024, 53 (11): : 140 - 149
  • [40] Study on the microstructure and mechanical properties of TiB2/Al-Cu composites
    Zhao, De-Gang
    Liu, Xiang-Fa
    Bian, Xiu-Fang
    Zhang, Yong-Chang
    [J]. Zhuzao/Foundry, 2005, 54 (01): : 32 - 35