Replacing Toxic Hard Chrome Coatings: Exploring the Tribocorrosion Behaviour of Electroless Nickel-Boron Coatings

被引:4
|
作者
Yunacti, Muslum [1 ]
Vitry, Veronique [1 ]
Montagne, Alex [2 ]
Staia, Mariana Henriette [3 ,4 ]
机构
[1] Univ Mons, Fac Polytech, Serv Met, Rue Epargne 56, B-7000 Mons, Belgium
[2] Univ Polytech Hauts De France, CNRS, UMR 8201, LAMIH, Campus Mont Houy, F-59313 Valenciennes, France
[3] Univ Cent Venezuela, Fac Engn, Sch Met Engn & Mat Sci, Caracas 1040, Venezuela
[4] Venezuelan Natl Acad Engn & Habitat, Palacio Acad, Caracas 1010, Venezuela
关键词
electroless nickel-boron coatings; tribocorrosion; open circuit potential; friction coefficient; wear mechanism; NI-B COATINGS; P COATINGS; DEPOSITION;
D O I
10.3390/coatings13122046
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Electroless nickel-boron coatings present outstanding properties such as high hardness, excellent wear resistance and uniform coating, and thus they are considered to be alternative to toxic hard chrome coatings. However, they contain lead that is toxic and used as stabilizer in the plating bath. This study aims to investigate the tribocorrosion behaviour of lead-free electroless nickel-boron coatings. In the present research, several tests were carried out to investigate the behaviour of these coatings under both dry and tribocorrosion reciprocating sliding wear against alumina balls, at room temperature. The open circuit potential (OCP) method was used to determine the degradation mechanism of the coatings. The results of the tribocorrosion and dry wear tests showed that the performance of coatings was very different from each other. A steady state for the coefficient of friction (COF) is achieved during the tribocorrosion test, whereas the constant production of debris and their presence in the contact implied an increase in COF with distance during the dry wear test. The wear mechanisms of these coatings also presented variations in these tests. It was found that the wear area calculated from tribocorrosion is lower (56 mu m2) than the one from dry sliding test (86 mu m2).
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Process Modeling and Intuitive Search Based Optimization of Average Surface Roughness in Citrate Stabilized Electroless Nickel-Boron Coatings
    Vijayanand, M.
    Varahamoorthi, R.
    Kumaradhas, P.
    Jayabal, S.
    JOM, 2022, 74 (02) : 563 - 573
  • [32] Selection of New Heat Treatment Conditions for Novel Electroless Nickel-Boron Deposits and Characterization of Heat-Treated Coatings
    Vitry, Veronique
    Yunacti, Muslum
    Megret, Alexandre
    Khalid, Hafiza Ayesha
    Staia, Mariana Henriette
    Montagne, Alex
    COATINGS, 2023, 13 (01)
  • [33] Process Modeling and Intuitive Search Based Optimization of Average Surface Roughness in Citrate Stabilized Electroless Nickel-Boron Coatings
    M. Vijayanand
    R. Varahamoorthi
    P. Kumaradhas
    S. Jayabal
    JOM, 2022, 74 : 563 - 573
  • [34] Experimental study on the formation and growth of electroless nickel-boron coatings from borohydride-reduced bath on mild steel
    Vitry, Veronique
    Sens, Adeline
    Kanta, Abdoul-Fatah
    Delaunoisa, Fabienne
    APPLIED SURFACE SCIENCE, 2012, 263 : 640 - 647
  • [35] ELECTROLESS NICKEL-PHOSPHORUS-BORON ALLOY COATINGS.
    Mital, C.K.
    Shrivastava, P.B.
    Metal Finishing, 1986, 84 (10) : 67 - 70
  • [36] Electroless Nickel–Boron–Phosphorus Coatings: Protective and Functional Properties
    M. V. Ivanov
    Protection of Metals, 2001, 37 : 592 - 596
  • [37] Comparison of the reactivities of main boron-containing additives used in electrodeposition of nickel-boron coatings
    Rogozhin, V. V.
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2008, 81 (04) : 592 - 596
  • [38] Comparison of the reactivities of main boron-containing additives used in electrodeposition of nickel-boron coatings
    V. V. Rogozhin
    Russian Journal of Applied Chemistry, 2008, 81 : 592 - 596
  • [39] ULTRASONIC MICROWELDING OF ALUMINUM WIRES WITH CHEMICALLY APPLIED COATINGS OF THE NICKEL-BORON SYSTEM
    RYDZEVSKII, AP
    YAKOVLEV, IP
    TSYBULSKAYA, LS
    GAEVSKAYA, TV
    RUSSIAN ULTRASONICS, 1994, 24 (01): : 20 - 31
  • [40] Mechanism of chemical deposition of nickel-boron coatings in tartrate-glycine solutions
    Rogozhin, V.V.
    Anan'eva, E.Yu.
    Russian Journal of Applied Chemistry, 2006, 79 (09): : 1550 - 1551