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Recent Developments in the Field of Thermal Barrier Coatings

机译:热障涂层领域的最新发展

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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. Several recent research activities are concentrating on developing improved bondcoat or topcoat materials; for the topcoat especially, those with reduced thermal conductivity are investigated. Using advanced topcoat materials, the ceramic coating can be 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 such as pyrochlores or perovskites are used as topcoat layers. These systems demonstrated an improved temperature capability compared to standard YSZ. In addition, new functions are introduced within the TBCs. These can be sensorial properties that can be used for an improved temperature control or even for monitoring remaining lifetime. Further increased application temperatures will also lead to efforts for a further improvement of the reflectivity of the coatings to reduce the radiative heat transfer through the TBC.
机译:常规的热障涂层(TBC)系统由带有金属粘结层和陶瓷隔热层的双层结构组成。最近的几项研究活动集中于开发改进的粘结层或面漆材料。特别是对于面漆,研究了导热性降低的那些。使用先进的面漆材料,可以将陶瓷涂层进一步分为具有不同功能的层。一个例子是双层系统,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。另外,在TBC中引入了新功能。这些可以是可用于改善温度控制甚至用于监视剩余寿命的感官特性。进一步升高的施加温度也将导致进一步改善涂层反射率的努力,以减少通过TBC的辐射热传递。

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