Effect of high temperature oxide scale on steel surface for electroless nickel plating process and characterization of coatings

被引:5
|
作者
Manna, M. [1 ]
机构
[1] Tata Steel, Dept Res & Dev, Jamshedpur 831001, Bihar, India
来源
SURFACE & COATINGS TECHNOLOGY | 2010年 / 204卷 / 11期
关键词
Steel; Oxide scale; Electroless; Kinetics; Amorphous; Corrosion; PHOSPHATE TREATMENT; REBAR SURFACE; CORROSION; OPTION; CONCRETE; SUBSTRATE;
D O I
10.1016/j.surfcoat.2009.11.027
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
An attempt has been made for an electroless nickel plating process on two steel substrates (with and without a high temperature oxide scale at the top surface) to identify the role of a high temperature iron oxide scale on coating kinetics. This study investigated if an iron oxide scale on the steel surface acts as a catalyst and promotes faster metal deposition. Coatings were characterized by scanning electron microscopy (SEM), glow discharge oxy emission spectroscopy (GDOES), and X-ray diffraction (XRD) and an iron oxide scale was characterized by Raman spectroscopy. Chemical composition and structure of both the coatings are the same but the coating obtained on a steel substrate having a high temperature oxide scale at the top is two times thicker. The electrochemical performances of both the coated steel substrates were evaluated by Tafel and electrochemical impedance (EIS) tests in an aggressive chloride environment. The coating obtained on a steel substrate containing a high temperature oxide scale at the top exhibits better resistance against chloride attack and charge transfer than the coating obtained on the steel substrate without a high temperature oxide scale at the top. This can be attributed to the highest thickness of this coating, which has the same chemical composition of the other coating, expected to give better resistance against chloride attack and charge transfer. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:1842 / 1846
页数:5
相关论文
共 50 条
  • [1] Electroless Nickel Plating and Process Simulation for Surface Treatment
    Liu, Wei
    Zhu, LiMing
    Deng, Xin
    Sun, Dezhu
    Chen, Kun
    Hu, XiaoKai
    2022 23RD INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY, ICEPT, 2022,
  • [2] Effect of High Temperature During Electroless Nickel Process
    Sauli, Zaliman
    Retnasamy, Vithyacharan
    Hashim, Uda
    Vairavan, Rajendaran
    Yeow, Aaron Koay Terr
    Paliansamy, Moganraj
    Ayub, Ramzan Mat
    MICRO/NANO SCIENCE AND ENGINEERING, 2014, 925 : 88 - +
  • [3] Super high speed electroless nickel plating process
    Nanjing Univ, Nanjing, China
    Trans Inst Met Finish, pt 3 (91-94):
  • [4] A super high speed electroless nickel plating process
    Han, KP
    Wu, Y
    Zhang, M
    Wang, JH
    TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 1996, 74 : 91 - 94
  • [5] AN EFFECT OF OPTICAL RADIATION ON THE PROCESS OF ELECTROLESS NICKEL PLATING
    EREMENKO, AA
    KOZLOVA, EK
    PORTNYAGIN, AI
    ROMANCHENKO, AN
    FILIPPOV, AE
    KVANTOVAYA ELEKTRONIKA, 1984, 11 (08): : 1677 - 1679
  • [6] A new low-temperature electroless nickel plating process
    Chen, K
    Chen, Y
    PLATING AND SURFACE FINISHING, 1997, 84 (09): : 80 - 82
  • [7] LOW TEMPERATURE AUTOCATALYTIC (ELECTROLESS) NICKEL PLATING PROCESS.
    John, S.
    Shanmugham, N.V.
    Shenoi, B.A.
    Metal Finishing, 1982, 80 (04) : 47 - 52
  • [8] THE EFFECT OF ULTRAVIOLET-IRRADIATION ON ELECTROLESS PLATING PROCESS OF NICKEL
    NAKAMICHI, I
    ISHIKAWA, Y
    HIROSE, Y
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS, 1987, 26 (04): : L228 - L230
  • [9] EFFECT OF ULTRAVIOLET IRRADIATION ON ELECTROLESS PLATING PROCESS OF NICKEL.
    Nakamichi, Ichiro
    Ishikawa, Yutaka
    Hirose, Yoichi
    Japanese Journal of Applied Physics, Part 2: Letters, 1987, 26 (04): : 228 - 230
  • [10] Effect of pH value on the electroless nickel plating on surface of diamond
    Yao, Huai
    Zhu, Yao-Min
    Zhu, Guang-Lin
    Rengong Jingti Xuebao/Journal of Synthetic Crystals, 2012, 41 (06): : 1629 - 1633