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Electrochemical and structural properties of electroless Ni-P-SiC nanocomposite coatings

机译:化学镀Ni-P-SiC纳米复合涂层的电化学和结构性能

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摘要

Silicon carbide (SiC) nanoparticles were co-deposited with nickel-phosphorous (Ni-P) coatings through electroless deposition process. The effects of annealing temperature and SiC contents on properties of the coatings were investigated. Corrosion performance of the coatings was examined using potentiodynamic polarization and electrochemical impedance spectroscopy (EIS). X-ray diffraction and Scanning Electron Microscopy (SEM) were employed for structural and morphological studies, respectively. It was shown that the structure of the as-deposited Ni-P-SiC nanocomposite coating was amorphous, and changed to the nickel crystal, nickel phosphide (Ni_3P) and silicide compounds (Ni_xSi_y) with heat treatment. Addition of the SiC concentration in the coating bath affected both composition and morphology of the coating. Presence of SiC nanoparticles in the Ni-P coating enhanced the corrosion resistance of the coating. Higher SiC contents, however, negatively affected the corrosion behavior of the coatings. Heat treatment also improved the corrosion resistance of the Ni-P-SiC coating. Annealing at 400 ℃ decreased the corrosion current density of the coating by approximately 60%.
机译:通过化学沉积工艺,将碳化硅(SiC)纳米颗粒与镍-磷(Ni-P)涂层共沉积。研究了退火温度和SiC含量对涂层性能的影响。使用电位动力学极化和电化学阻抗谱(EIS)检查了涂层的腐蚀性能。 X射线衍射和扫描电子显微镜(SEM)分别用于结构和形态研究。结果表明,沉积后的Ni-P-SiC纳米复合镀层的结构为非晶态,经热处理后变为镍晶体,磷化镍(Ni_3P)和硅化物(Ni_xSi_y)。涂覆浴中SiC浓度的增加影响了涂层的组成和形态。 Ni-P涂层中SiC纳米颗粒的存在增强了涂层的耐腐蚀性。然而,较高的SiC含量会对涂层的腐蚀行为产生负面影响。热处理还改善了Ni-P-SiC涂层的耐腐蚀性。在400℃退火可降低涂层的腐蚀电流密度约60%。

著录项

  • 来源
    《Applied Surface Science 》 |2013年第1期| 697-704| 共8页
  • 作者单位

    Department of Materials Science and Engineering, Faculty of Engineering, Shahid Bahonar University of Kerman, Iran ,Department of Materials Science and Engineering, Faculty of Mechanical Engineering, University of Tabriz, Iran;

    High Technology and Environmental Sciences, International Center for Science, Materials Research Institute, Kerman, Iran;

    Department of Materials Science and Engineering, Faculty of Engineering, Shahid Bahonar University of Kerman, Iran ,High Technology and Environmental Sciences, International Center for Science, Materials Research Institute, Kerman, Iran;

    Department of Materials Engineering, The University of British Columbia, Vancouver, BC, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electroless coating; Nano-composite; Corrosion; Heat treatment;

    机译:化学镀层;纳米复合材料腐蚀;热处理;

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