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Formation of nickel aluminideickel hybrid coatings on alloy steels by two step process of nickel plating and low temperature pack aluminisation

机译:通过两步镀镍和低温包装渗铝,在合金钢上形成铝化镍/镍杂化涂层

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摘要

The present study investigates the conditions required for forming a hybrid coating consisting of an outer nickel aluminide layer and an inner nickel layer on alloy steels. A commercial alloy steel of 9Cr-1Mo was used as a substrate. Electroless and electronickel plating processes were used to form an initial nickel layer on the steel. The AlCl3 activated packs containing pure Al as a depositing source were then used to aluminise the nickel deposit at temperatures ≤650°C. The effect of phosphorus or boron content in the initial nickel layer deposited with the electroless nickel plating solutions using hypophosphite or boron-hydrogen compound as reducing agent was investigated in relation to the spallation tendency of the coating either immediately after the aluminising process or during the thermal annealing post-aluminising process. Under the aluminising conditions used, the outer nickel aluminide layer formed was Ni2Al3. For the electroplated nickel deposit, the growth kinetics of the outer Ni2Al3 layer during the pack aluminising process was found to obey the parabolic rate law with a parabolic rate constant being 12·67 μm at 650°C for 2 wt-%AlCl3 activated pack containing 4 wt-% pure Al as a deposition source.
机译:本研究调查了在合金钢上形成由铝化镍外层和镍内层组成的混合涂层所需的条件。使用商品化的9Cr-1Mo合金钢作为基材。化学镀和电子镀镍工艺用于在钢上形成初始镍层。然后使用含纯铝作为沉积源的AlCl 3 活化包装在≤650°C的温度下对镍沉积物进行铝化。研究了在镀铝过程之后或在加热过程中立即用次磷酸盐或硼氢化合物作为还原剂在化学镀镍溶液中沉积的初始镍层中磷或硼含量的影响与涂层剥落趋势的关系。退火后的铝化过程。在所使用的镀铝条件下,形成的外部铝化镍层为Ni 2 Al 3 。对于电镀镍镀层,发现Ni 2 Al 3 外层在镀铝过程中的生长动力学符合抛物线速率定律,且抛物线速率常数为650°C时为12·67μm,适用于2 wt%AlCl 3 活化包装,其中包含4 wt%的纯Al作为沉积源。

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  • 来源
    《Materials Science and Technology》 |2009年第6期|733-738|共6页
  • 作者

    Xiang Z.D.; Datta P.K.;

  • 作者单位

    School of Materials and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China, School of Computing, Engineering and Information Sciences, Northumbria University, Ellison Building, Ellison Place, Newcastle upon Tyne NE1 8ST,;

    School of Computing, Engineering and Information Sciences, Northumbria University, Ellison Building, Ellison Place, Newcastle upon Tyne NE1 8ST, UK;

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