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Functionally Graded Thermal Barrier Coatings with Improved Reflectivity and High-Temperature Capability

机译:具有改进的反射率和高温性能的功能梯度热障涂层

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Conventional thermal barrier coating (TBC) systems consist of a duplex structure with a metallic bondcoat and a ceramic, heat isolative topcoat. In modern TBCs the ceramic topcoat is further divided into layers with different functions. One example is the double layer system in which conventional yttria stabilized zirconia (YSZ) is used as bottom and new materials as pyrochlores or perovskites are used as topcoat layers. These systems demonstrated an improved temperature capability compared to standard YSZ. Examples of such systems will be shown.rnIn modern gas turbines the increased temperatures and gas pressures lead to an increased fraction of radiative heat flow. Coatings with increased reflectivity can be used to avoid the direct heating of the metallic substrates by this radiation. An effective method to produce such coatings is suspension plasma spraying. These reflective coatings are deposited on top of the TBC system and will lead to a further grading and improved performance of the coating.
机译:常规的热障涂层(TBC)系统由具有金属结合层和陶瓷隔热层的双相结构组成。在现代TBC中,陶瓷面漆进一步分为具有不同功能的层。一个例子是双层体系,其中常规的氧化钇稳定的氧化锆(YSZ)用作底层,而新材料如烧绿石或钙钛矿用作面涂层。与标准YSZ相比,这些系统表现出更高的温度能力。将显示这种系统的示例。在现代燃气轮机中,温度和气压的升高导致辐射热流的比例增加。可以使用具有增加的反射率的涂层来避免该辐射直接加热金属基材。产生这种涂层的有效方法是悬浮等离子喷涂。这些反射涂层沉积在TBC系统的顶部,将导致涂层进一步分级和改善性能。

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