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Mullite and mullite/ZrO\u2082-7wt%Y\u2082O\u2083 powders for thermal spraying of environmental barrier coatings

机译:莫来石和莫来石/ ZrO \ u2082-7wt%Y \ u2082O \ u2083粉末,用于环境喷涂涂料的热喷涂

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摘要

Mullite and mullite/ZrO\u2082-7wt.%Y\u2082O\u2083 coatings could be thought among the main protective layers for environment barrier coatings (EBCs) to protect Si-based substrates in future gas turbine engines. Considering that feedstock of the compound powder is not commercially available, two powder processing routes Spray Drying (SD) and Flame Spheroidization (FS) were implemented for both types of powders. For each method the particle size, the morphology, and microstructure of the powder particles was determined. In addition, the effect of the heat treatment on the powder crystallinity and microstructure of FS powders was also investigated. To evaluate their suitability as feedstock materials, the powders were plasma sprayed and their in-flight particle characteristics monitored for coatings production. The powder morphology was correlated to the in-flight particle characteristics and splat morphology to gain insight about into the influence of powder characteristics on the coating formation.
机译:可以考虑将莫来石和莫来石/ZrO\u2082-7wt.%Y\u2082O\u2083涂层用作环境屏障涂层(EBC)的主要保护层,以保护未来的燃气轮机发动机中的硅基基底。考虑到复合粉末的原料不是可商购的,针对两种类型的粉末均采用了两种粉末加工路线:喷雾干燥(SD)和火焰球化(FS)。对于每种方法,都测定了粉末颗粒的粒径,形态和微观结构。另外,还研究了热处理对FS粉末的粉末结晶度和微观结构的影响。为了评估其作为原料的适用性,对粉末进行等离子喷涂,并监控其飞行中的颗粒特性以生产涂料。粉末形态与飞行中的颗粒特性和飞溅形态相关,以了解粉末特性对涂层形成的影响。

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