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Cyclic Oxidation and Hot Corrosion Behavior of Y/Cr-Modified Aluminide Coatings Prepared by a Hybrid Slurry/Pack Cementation Process

机译:浆液/包埋水泥混合法制备Y / Cr改性铝化物涂层的循环氧化和热腐蚀行为

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Y/Cr-modified aluminide coatings were prepared on a Ni-base super-alloy K417G using a hybrid slurry/pack cementation process. The coatings consisted of a NiAl layer with dissolved Cr and Y. The microstructures and high temperature corrosion behavior of the coatings were characterized using SEM/EDS, XRD, EPMA and SIMS. Cyclic oxidation tests at 1000 °C for 200 h were carried out in air. The results indicated that specimens coated by either the Y/Cr-modified aluminide coatings or the simple aluminide coatings exhibited better oxidation resistances than the cast alloy. The Y/Cr-modified aluminide coatings possessed lower oxidation rates and better degradation resistance than the simple aluminide coatings during the oxidation tests. Furthermore, the alumina scales formed on the Y/Cr-modified aluminide coatings were considerably more adherent than those on the simple aluminide coatings during the thermal cycling. The hot corrosion tests consisted of applying a 25 wt% K_2SO_4 +75 wt% Na_2SO_4 salt mixture to the specimens and exposing at 900 °C. The Y/Cr-modified aluminide coatings showed the longest service life compared with the cast alloy and aluminide coatings, which suffered significant sulfur attack. After 200 h, the Y/Cr-modified aluminide coatings were still protective.
机译:Y / Cr改性的铝化物涂层是在Ni基超级合金K417G上使用混合浆料/填充胶结工艺制备的。涂层由具有溶解的Cr和Y的NiAl层组成。使用SEM / EDS,XRD,EPMA和SIMS对涂层的微观结构和高温腐蚀行为进行了表征。在空气中于1000°C进行200 h的循环氧化测试。结果表明,用Y / Cr改性的铝化物涂层或简单的铝化物涂层涂覆的样品比铸造合金具有更好的抗氧化性。在氧化测试过程中,Y / Cr改性的铝化物涂层具有比简单的铝化物涂层更低的氧化速率和更好的抗降解性。此外,在热循环过程中,在Y / Cr改性的铝化物涂层上形成的氧化铝水垢比在简单的铝化物涂层上形成的氧化铝水垢具有更大的附着力。热腐蚀测试包括在样品上施加25 wt%的K_2SO_4 +75 wt%的Na_2SO_4盐混合物并在900°C下暴露。与铸造合金和铝化物涂层相比,Y / Cr改性的铝化物涂层具有最长的使用寿命,而铸件合金和铝化物涂层遭受明显的硫侵蚀。 200小时后,Y / Cr改性的铝化物涂层仍然具有保护性。

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