On the influence of microstructure evolution and wear mechanism of direct laser deposited Ti-Al-Si coatings with different Si contents

被引:0
|
作者
Chen, Xueting [1 ]
Li, Yu [1 ]
Wei, Wei [1 ]
Yin, Guili [1 ]
Yang, Lin [1 ]
Su, Hai [2 ]
机构
[1] Liaoning Univ Technol, Sch Mat Sci & Engn, Jinzhou 121001, Peoples R China
[2] Liaoning BUB Technol Co Ltd, Jinzhou 121001, Peoples R China
关键词
direct laser deposition; microstructure evolution; wear mechanism; TRIBOLOGICAL PROPERTIES; MATRIX COMPOSITES; FRICTION; JOINT;
D O I
10.2351/7.0001522
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In response to the problem of low hardness and poor wear resistance of TC4 coatings prepared by laser additive manufacturing, three titanium alloy coatings with different Si contents were prepared on a TC4 substrate by direct laser deposition (DLD) technology. The evolution of the microstructure and wear mechanism of the coatings were studied. The addition of the Si element facilitated the formation of Ti5Si3 hard phase, which exhibited a uniform mesh form. The strengthening effect of the hard phase in the prepared coating increased with its proportion, demonstrating a positive correlation with the incremental addition of an Si element. However, the excessive addition of the Si element resulted in the surface cracking of the coating. The optimal DLD Ti-Al-Si coating was obtained when the Si content was 10 wt. %, with an average microhardness of 801 +/- 24 HV0.2, 2.5 times greater than that of the TC4 substrate. The average friction coefficient of the Ti-Al-Si coating was 0.39, and the wear rate was 1.9%. The hard phase was uniformly distributed in a mesh form, which not only refined the wear debris and suppressed the shear force of the wear debris during wear but also slowed down the continuous wear of debris on the worn surface. The results of this study could provide a reference for preparing high-hardness and wear-resistant titanium alloy coatings by DLD.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Microstructure evolution of Ti-Si-C-Ag nanocomposite coatings deposited by DC magnetron sputtering
    Lauridsen, J.
    Eklund, P.
    Jensen, J.
    Ljungcrantz, H.
    Oberg, A.
    Lewin, E.
    Jansson, U.
    Flink, A.
    Hogberg, H.
    Hultman, L.
    ACTA MATERIALIA, 2010, 58 (20) : 6592 - 6599
  • [32] Microstructure and Mechanical Properties of Heat-Treated Ti-Al-Si Alloy Produced via Laser In Situ Alloying
    Raji, Sadiq Abiola
    Popoola, Abimbola Patricia Idowu
    Pityana, Sisa Leslie
    Tlotleng, Monnamme
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2021, 30 (05) : 3321 - 3332
  • [33] Microstructure and wear resistance of laser deposited Ti3Co2Si-Ti5Si3-TiCo multiphase intennetallic alloy
    Xue, Y.
    Wang, H. M.
    MATERIALS LETTERS, 2008, 62 (17-18) : 3091 - 3094
  • [34] Ti-Al-Si-N films for superhard coatings deposited by reactive cosputtering using Ti, Al, and Si targets
    Miyamura, A.
    Yamaguchi, M.
    Hattori, K.
    Sato, Y.
    Nakamura, S.
    Shigesato, Y.
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 2007, 25 (04): : 1103 - 1107
  • [35] Structure and morphology evolution during mechanical alloying of Ti-Al-Si powder systems
    Zhou, JB
    Rao, KP
    JOURNAL OF ALLOYS AND COMPOUNDS, 2004, 384 (1-2) : 125 - 130
  • [36] Microstructure and properties of Al-7Si-0.6Mg alloys with different Ti contents deposited by wire arc additive manufacturing
    Li, Cheng-De
    Gu, Hui-Min
    Wang, Wei
    Wang, Shuai
    Ren, Ling-Ling
    Zhai, Yu-Chun
    Wang, Zhen-Biao
    Ming, Zhu
    RARE METALS, 2021, 40 (09) : 2530 - 2537
  • [37] Microstructure and Mechanical Properties of Heat-Treated Ti-Al-Si Alloy Produced via Laser In Situ Alloying
    Sadiq Abiola Raji
    Abimbola Patricia Idowu Popoola
    Sisa Leslie Pityana
    Monnamme Tlotleng
    Journal of Materials Engineering and Performance, 2021, 30 : 3321 - 3332
  • [38] Microstructure and Wear Resistance of Ceramic Coatings Prepared by Laser Pyrolysis of Ti-Si Organic Films
    Wang Sijie
    Liu Zhaowei
    Wang Xiao
    CHINA SURFACE ENGINEERING, 2020, 33 (05) : 83 - 89
  • [39] Wear behavior and thermal stability of HPPMS (Al,Ti,Cr,Si)ON, (Al,Ti,Cr,Si)N and (Ti,Al,Cr,Si)N coatings for cutting tools
    Bobzin, K.
    Broegelmann, T.
    Kruppe, N. C.
    Cadet, M.
    SURFACE & COATINGS TECHNOLOGY, 2020, 385
  • [40] Influence of Si contents on the microstructure, mechanical and tribological properties of Cr-Si-N coatings
    Huang, Lingling
    Zou, Changwei
    Xie, Wei
    Peng, Feng
    Shao, Lexi
    CERAMICS INTERNATIONAL, 2016, 42 (04) : 5062 - 5067