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Ceramic Top Coats of Plasma-Sprayed Thermal Barrier Coatings: Materials, Processes, and Properties

机译:陶瓷顶层等离子体喷涂的热障涂层:材料,工艺和性质

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摘要

The ceramic top coat has a major influence on the performance of the thermal barrier coating systems (TBCs). Yttria-partially-stabilized zirconia (YSZ) is the top coat material frequently used, and the major deposition processes of the YSZ top coat are atmospheric plasma spraying and electron beam physical vapor deposition. Recently, also new thermal spray processes such as suspension plasma spraying or plasma spray-physical vapor deposition have been intensively investigated for TBC top coat deposition. These new processes and particularly the different coating microstructures that can be deposited with them will be reviewed in this article. Furthermore, the properties and the intrinsic-extrinsic degradation mechanisms of the YSZ will be discussed. Following the TBC deposition processes and standard YSZ material, alternative ceramic materials such as perovskites and hexaaluminates will be summarized, while properties of pyrochlores with regard to their crystal structure will be discussed more in detail. The merits of the pyrochlores such as good CMAS resistance as well as their weaknesses, e.g., low fracture toughness, processability issues, will be outlined.
机译:陶瓷顶部涂层对热屏障涂层系统(TBC)的性能产生了重大影响。 ytTria部分稳定的氧化锆(YSZ)是经常使用的顶层材料,并且YSZ顶层的主要沉积过程是大气等离子体喷涂和电子束物理气相沉积。最近,对于TBC顶部涂层沉积,已经强烈研究了新的热喷涂或等离子体喷雾物理气相沉积。本文将在本文中审查这些新方法,特别是可以与它们沉积的不同涂层微结构。此外,将讨论YSZ的性质和内在外在劣化机制。在TBC沉积方法和标准YSZ材料之后,将概述替代陶瓷材料,例如钙酸盐和六烷醇酸盐,而在其晶体结构方面将更详细地讨论烧火的性质。将概述诸如良好的CMAS阻力等烧焦的优点,例如良好的CMAS阻力,例如低断裂韧性,可加工性问题。

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