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New Material Concepts for the Next Generation of Plasma-Sprayed Thermal Barrier Coatings

机译:下一代等离子喷涂热障涂层的新材料概念

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In application as a thermal barrier coating (TBC), partially stabilized zirconia (Zr) approaches some limits of performance. To further enhance the efficiency of gas turbines, higher temperature capability and a longer lifetime of the coating are needed for the next generation of TBCs. This paper presents the development of new materials and concepts for application as TBC. Materials whose compositions have the pyrochlore structure or doped Zr are presented in contrast with new concepts like nanolayers between the top and bond coat, metal-glass composites, and double-layer structures. In the last concept, the new compositions are used in a combination with Zr, as a double, multi, or graded layer coating. In this case, the benefits of Zr will be combined with the promising properties of the new top coating. In the case of metal-glass composites, the paper will be focused on the influences of different plasma spraying processes on the microstructure. The performance of all these different coating systems has been evaluated by burner rig tests. The results will be presented and discussed.
机译:在用作隔热涂层(TBC)时,部分稳定的氧化锆(Zr)达到了某些性能极限。为了进一步提高燃气轮机的效率,下一代TBC需要更高的温度能力和更长的涂层寿命。本文介绍了作为TBC应用的新材料和新概念的发展。与新概念相比,呈现了成分具有烧绿石结构或Zr掺杂的材料,例如面漆和粘结层之间的纳米层,金属玻璃复合材料和双层结构。在最后一个概念中,新组合物与Zr结合使用,作为双层,多层或渐变涂层。在这种情况下,Zr的优点将与新型面漆的前途无量的特性相结合。对于金属-玻璃复合材料,本文将重点讨论不同等离子喷涂工艺对微观结构的影响。所有这些不同涂层系统的性能已通过燃烧器试验测试进行了评估。结果将被介绍和讨论。

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