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Evolution of thermal insulation of plasma-sprayed thermal barrier coating systems with exposure to high temperature

机译:暴露于高温等离子体喷射热阻挡涂层系统的热绝缘的演变

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摘要

The thermal insulation potential of plasma-sprayed yttria-stabilized zirconia thermal barrier coatings is generally assessed via the evaluation of the ceramic layer. However, ageing of the complete system leads to microstructural transformations that may also play a role in the heat transport properties. This study thus investigated the microstructure-heat insulation relationships of different TBC systems in their as-deposited state and when aged under various conditions, through the systematic analysis of both microstructure and thermal diffusivity. The latter was measured from room temperature up to 1100 degrees C using the laser-flash technique, while the porous microstructure was assessed using image analysis. The different coatings exhibited relatively similar thermal diffusivity values that were shown to be mostly influenced by the thin porosities in contrast to larger defects. The thermal insulation of the TBC systems after exposure to high temperature was shown to be stable despite the microstructural variations introduced by cracks, oxidation and chemical degradations.
机译:等离子体喷涂的yTTRIA稳定的氧化锆热阻挡涂层的绝热电位通常通过陶瓷层的评价进行评估。然而,整个系统的老化导致微观结构转化,也可能在热传输性质中发挥作用。因此,通过微观结构和热扩散性的系统分析,本研究通过对各种条件下的各种条件下老化的不同TBC系统的微观结构 - 隔热关系。使用激光闪光技术从室温高达1100摄氏度测量后者,同时使用图像分析评估多孔微观结构。不同的涂层表现出相对相似的热扩散率值,其被示出为与较大缺陷相比的薄孔隙率的影响。尽管通过裂缝,氧化和化学降解引入的微观结构变化,但TBC系统暴露于高温后的TBC系统的热绝缘。

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