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Na2SO4 V2O5 Corrosion Behavior of BaNd2Ti3O10 for Thermal Barrier Coating Applications

机译:Na2SO4 V2O5带2Ti3O10的腐蚀行为,热障涂层应用

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BaNd2Ti3O10 has been considered as a promising thermal barrier coating (TBC) candidate material, which reveals many advantages over the widely used TBC material of yttria partially stabilized zirconia, such as lower thermal conductivity, better high-temperature capability, and higher resistance to environmental deposits corrosion. In this study, the hot corrosion behavior of BaNd2Ti3O10 in Na2SO4 V2O5 molten salt at 900 °C and 1000 °C is investigated. Exposed to the salt for 4 h at 900 °C, BaNd2Ti3O10 pellets had an obvious reaction with the salt, forming corrosion products of NdVO4, TiO2, and BaSO4, and the reaction layer was ~30 μm, beneath which no salt trace could be found. Prolonging the corrosion time to 20 h, the type of the corrosion products had no change. At an elevated corrosion temperature of 1000 °C for 4 h, the corrosion products were still NdVO4, TiO2, and BaSO4, but NdVO4 revealed a significant growth, which fully covered the pellet surface. The mechanisms by which the corrosion reaction between BaNd2Ti3O10 and the molten salt occurred were discussed.
机译:Band2Ti3O10已被认为是有希望的热阻挡涂层(TBC)候选材料,其揭示了ytTria部分稳定的氧化锆的广泛使用的TBC材料上的许多优点,例如较低的导热性,更高的高温能力,更高的环境沉积物腐蚀。在该研究中,研究了900℃和1000℃的Na 2 SO 4 V2O5熔盐中带2Ti3O10的热腐蚀行为。在900℃下暴露于盐4小时,带2Ti3O10颗粒与盐具有明显的反应,形成NDVO4,TiO 2和BasO4的腐蚀产物,反应层为约30μm,下面可以找到盐痕量。延长腐蚀时间为20小时,腐蚀产品的类型没有变化。在1000℃的耐腐蚀温度下4小时,腐蚀产物仍然是NDVO4,TiO 2和BasO4,但NDVO4揭示了显着的生长,它完全覆盖了颗粒表面。讨论了带2Ti3O10与熔盐之间的腐蚀反应的机制。

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