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Effects of the chemistry of coating and substrate on the steam oxidation kinetics of environmental barrier coatings for ceramic matrix composites`

机译:涂层和基质化学对陶瓷基复合材料蒸汽氧化动力学的影响

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摘要

Environmental barrier coatings (EBCs) are an enabler for SiC/SiC ceramic matrix composites (CMCs) in gas turbines by protecting CMCs from environmental degradation. A critical EBC failure mode is the EBC spallation due to a build-up of elastic strains caused by the formation of SiO2 scale, known as TGO (thermally grown oxide). H2O, a byproduct of combustion reactions, accelerates the TGO-induced EBC failure by increasing TGO growth rates by orders of magnitude. NASA's approach to improve the EBC life, therefore, is to reduce TGO growth rates. NASA discovered that modifying the TGO chemistry by modifying the EBC chemistry of Gen 2 EBC (Si / Yb2Si2O7) reduces the TGO thickness by up to similar to 80 %. A study was undertaken to understand the oxidation mechanism of modified Gen 2 EBCs as well as to investigate the effect of EBC and CMC chemistry on TGO growth rates. This study confirmed the previously proposed TGO-controlled oxidation mechanism of modified Gen 2 EBCs and determined the correlations between the EBC and CMC chemistry, TGO chemistry, and TGO growth rates.
机译:环境阻隔涂层(EBC)通过保护碳化硅/碳化硅陶瓷基复合材料(CMC)不受环境退化的影响,为燃气轮机中的碳化硅/碳化硅陶瓷基复合材料(CMC)提供了有利条件。一个关键的EBC失效模式是EBC层裂,这是由于SiO2氧化皮(称为TGO(热生长氧化物))的形成引起的弹性应变累积造成的。H2O是燃烧反应的副产物,通过将TGO的生长速率提高几个数量级,从而加速TGO引起的EBC失效。因此,NASA改善EBC寿命的方法是降低TGO的增长率。NASA发现,通过改变Gen 2 EBC(Si/Yb2Si2O7)的EBC化学来改变TGO化学,可以将TGO厚度降低80%。本研究旨在了解改性Gen 2 EBC的氧化机理,以及EBC和CMC化学对TGO生长速率的影响。本研究证实了先前提出的经修饰的Gen 2 EBC的TGO控制氧化机制,并确定了EBC与CMC化学、TGO化学和TGO生长速率之间的相关性。

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