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Influence of isothermal oxidation on microstructure of YSZ and Mullite-YSZ thermal barrier coatings

机译:等温氧化对YSZ和Mullite-YSZ热阻挡涂层微观结构的影响

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Micro structural changes in conventional yttria stabilized zirconia (YSZ) and multilayer Mullite-YSZ/YSZ (M-YSZ) thermal barrier coatings were compared based on high temperature isothermal oxidation at the temperatures of 1050, 1150 and 1250°C. Both types of thermal barrier coatings were produced from commercially available powders utilizing atmospheric plasma spray technique. Initial M-YSZ powder mixture consisted of 29 vol.% of Mullite and 71 vol.% of YSZ. Inconel Alloy 713LC nickel-based superalloy was used as a substrate material (cylinders, 25 mm in diameter and 10 mm in thickness). The TBCs lifetime, phase stability, thickness of the thermally grown oxide layer, porosity, and changes in microstructure after high temperature testing were evaluated using light microscope, scanning electron microscope equipped with EDX analyzer, and XRD technique.
机译:在1050,1150和1250℃的温度下,比较了常规氧化钇稳定的氧化锆(YSZ)和多层Mullite-YSZ / YSZ(M-YSZ)热阻挡涂层的微结构变化。 通过使用大气等离子体喷涂技术,由市售粉末制成两种类型的热阻挡涂层。 初始M-YSZ粉末混合物由29体积%组成。莫来石的百分比和71体积%。ysz%。 Inconel合金713LC镍基超合金用作基材材料(圆柱体,直径为25mm,厚度为10mm)。 使用光学显微镜评估高温测试后,通过扫描电子显微镜和XRD技术评估了高温测试后,评估了热生长氧化物层,孔隙率,孔隙率和微观结构的变化的寿命,相位稳定性和微观结构的变化。

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