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Microstructure and phase evolution in laser cladding of Ni/Cu/Al multilayer on magnesium substrates

机译:镁基体上Ni / Cu / Al多层膜激光熔覆的组织和相演变

摘要

A multilayer coating of Ni/Cu/Al was fabricated on magnesium substrates using laser cladding. The solidification behavior and the phase evolution of the compositionally graded coating were studied. The results of the X-ray diffraction (XRD) analysis together with the metallographic study showed that a series of phase evolutions had occurred along the gradient (Mg) → (Mg) + Al 12Mg 17 → (Mg) + Q + λ 2 → λ 1 → λ 1 + γ 1 → γ 1 + (Cu) + λ 1 → (Cu) + λ 1 → (Cu) → (CuNi) → (Ni). The rapid solidification condition had suppressed the invariant reactions that existed in the ternary Mg-Al-Cu alloy system. As a result, many of the predicted Al-rich brittle intermetallic compounds, which are detrimental to the performance of the coating, were not produced. The solidification path during the laser cladding of the Al and Cu layers was determined and the various phases, as predicted by the corresponding phase diagram, agreed well with the experimental results. Finally, the primary arm spacing (PAS) and the solidification morphology of the dendrites in the Cu and Ni layers were analyzed in relation to the solidification conditions.
机译:使用激光熔覆在镁基底上制备了Ni / Cu / Al多层涂层。研究了组成梯度涂层的凝固行为和相变。 X射线衍射(XRD)分析和金相研究的结果表明,沿梯度(Mg)→(Mg)+ Al 12Mg 17→(Mg)+ Q +λ2→发生了一系列相变。 λ1→λ1 +γ1→γ1 +(Cu)+λ1→(Cu)+λ1→(Cu)→(CuNi)→(Ni)快速凝固条件抑制了三元Mg-Al-Cu合金体系中存在的不变反应。结果,没有产生许多对涂层性能有害的预计的富含Al的脆性金属间化合物。确定了铝和铜层的激光熔覆过程中的凝固路径,并且通过相应的相图预测的各个相与实验结果吻合良好。最后,分析了与凝固条件有关的主臂间距(PAS)和铜和镍层中枝晶的凝固形态。

著录项

  • 作者

    Yue TM; Li T; Lin X;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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