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Aluminide Coating Formation on Internal Passages of GTD-111 Superalloy by Slurry Technique

机译:浆法在GTD-111高温合金内部通道上形成铝化物涂层

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The diffusion aluminide coatings are widely used in the air-cooling passages to protect their surfaces against high temperature corrosion. In this study plain and Si-modified aluminide coatings were applied by slurry technique on internal surfaces of Ni-base GTD-111 superalloy cylindrical specimens derived from a gas turbine air-cooled blade. The slurries containing Al or Al plus Si powders were applied on internal surfaces by injection method. Then, the samples were heated to high temperature (800-1000°C) to form the coatings. Optical, SEM-EDS, and XR.D were utilized for characterizing microstructures and phase compositions of the coatings. The thicknesses of applied coatings on internal surfaces were in the range of 30-50 urn that meets specifications for diffusion coatings in such application (i.e. 25-75μm). The examinations demonstrated that both coating types were contained β-NiAl phase as the matrix. The uniformities of coatings applied on different surface positions of passageway were determined. In addition, the effects of time and temperature of coating process as well as mass of dried slurry on the coating thickness were also discussed.
机译:扩散铝化物涂层广泛用于空气冷却通道,以保护其表面免受高温腐蚀。在这项研究中,通过浆液技术在从燃气轮机风冷叶片得到的镍基GTD-111高温合金圆柱试样的内表面上涂覆了平整和Si改性的铝化物涂层。含有铝或铝加硅粉末的浆料通过注射法施涂在内表面上。然后,将样品加热至高温(800-1000℃)以形成涂层。光学,SEM-EDS和XR.D用于表征涂层的微观结构和相组成。在内表面上施加的涂层的厚度在30-50μm的范围内,满足这种应用中的扩散涂层的规格(即25-75μm)。检查表明两种涂层都含有β-NiAl相作为基体。确定在通道的不同表面位置上涂覆的涂层的均匀性。此外,还讨论了涂布过程的时间和温度以及干燥浆料的质量对涂布厚度的影响。

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