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A design perspective on thermal barrier coatings

机译:隔热涂层的设计观点

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This article addresses the challenges for maximizing the benefit of thermal barrier coatings for turbine engine applications. The perspective is from the viewpoint of a customer; a turbine airfoil designer who is continuously challenged to increase the turbine inlet temperature capability for new products while maintaining cooling flow levels or even reducing them. This is a fundamental requirement for achieving increased engine thrust levels. Developing advanced material systems for the turbine flowpath airfoils, such as high-temperature nickel-base superalloys or thermal barrier coatings to insulate the metal airfoils from the hot flowpath environment, is one approach to solve this challenge. The second approach is to increase the cooling performance of the turbine airfoil, which enables increased flowpath temperatures and reduced cooling flow levels. Thermal barrier coatings have been employed in jet engine applications for almost 30 years. The initial application was on augmentor liners to provide thermal protection during afterburner operation. However, the production use of thermal barrier coatings in the turbine section has only occurred in the past 15 years. The application was limited to stationary parts and only recently incorporated on the rotating turbine blades. This lack of endorsement of thermal barrier coatings resulted from the poor initial durability of these coatings in high heat flux environments. Significant improvements have been made to enhance spallation resistance and erosion resistance, which has resulted in increased reliability of these coatings in turbine applications.
机译:本文解决了在涡轮发动机应用中最大程度地利用隔热涂层优势的挑战。观点是从客户的角度来看的;涡轮机翼型设计师不断受到挑战,要提高新产品的涡轮机入口温度能力,同时要保持冷却流量甚至降低冷却流量。这是获得增加的发动机推力水平的基本要求。开发用于涡轮机流路机翼的先进材料系统,例如高温镍基高温合金或热障涂层,以使金属机翼与热流路环境隔离,是解决这一挑战的一种方法。第二种方法是提高涡轮机翼型的冷却性能,这可以提高流路温度并降低冷却流水平。隔热涂层已经在喷气发动机应用中使用了近30年。最初的应用是在增强器衬里上,以在加力燃烧器运行期间提供热保护。但是,在过去的15年中,仅在涡轮机部分生产了隔热涂层。该应用仅限于固定零件,并且仅在最近安装在旋转的涡轮叶片上。缺乏对隔热涂层的认可是由于这些涂层在高热通量环境下的初始耐久性差。为了增强抗剥落性和抗侵蚀性,已经进行了重大改进,从而提高了这些涂层在涡轮机应用中的可靠性。

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