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Microstructural analysis and growth mechanism of single-step aluminum-titanium diffusion coatings on a nickel-based substrate

机译:镍基基材上单步铝钛扩散涂层的显微组织分析和生长机理

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摘要

Aluminum-titanium coatings have shown promising results for some aggressive high temperature environments in which protective oxides can hardly form. In this study, a series of aluminum-titanium diffusion coatings were developed on a nickel-based substrate via a single-step halide activated pack cementation process. Powder mixtures of aluminum, titanium, aluminum oxide and ammonium chloride were prepared with different mass ratios of aluminum to titanium. Coating experiments were carried out at 850, 900, 950, 1000 and 1050°C for at least four hours. Coated specimens were characterized using conventional metallography, glow discharge optical emission spectroscopy and X-ray diffraction analysis. The results show that a zone of NiAl phase is formed in all the coatings right above the coating-substrate interface. Other zones towards the surface including τ _2-Al _2NiTi and τ _1-(Al,Ni) _3Ti in some of the specimens and τ _4-AlNi _2Ti and Ti _2Ni in most of the others were found. The growth mechanism of the coatings was discussed based on the microstructural features.
机译:铝钛涂层已在一些难以形成保护性氧化物的侵蚀性高温环境中显示出令人鼓舞的结果。在这项研究中,通过单步卤化物活化包胶结工艺在镍基基材上开发了一系列铝钛扩散涂层。制备具有不同质量比的铝与钛的铝,钛,氧化铝和氯化铵的粉末混合物。涂层实验在850、900、950、1000和1050°C进行了至少四个小时。使用常规金相,辉光放电光发射光谱法和X射线衍射分析对涂层样品进行表征。结果表明,在涂层-基体界面正上方的所有涂层中均形成了NiAl相区。在一些标本中发现了朝向表面的其他区域,包括τ_2-Al _2NiTi和τ_1-(Al,Ni)_3Ti,而在其他大多数试样中发现了τ_4-AlNi _2Ti和Ti _2Ni。基于微观结构特征,探讨了涂层的生长机理。

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