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Effective Parameters in Axial Injection Suspension Plasma Spray Process of Alumina-Zirconia Ceramics

机译:氧化铝-锆陶瓷轴向注浆等离子喷涂工艺中的有效参数

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摘要

Suspension plasma spray (SPS) is a novel process for producing nano-structured coatings with metastable phases using significantly smaller particles as compared to conventional thermal spraying. Considering the complexity of the system there is an extensive need to better understand the relationship between plasma spray conditions and resulting coating microstructure and defects. In this study, an alumina/8 wt.% yttria-stabilized zirconia was deposited by axial injection SPS process. The effects of principal deposition parameters on the microstructural features are evaluated using the Taguchi design of experiment. The microstructural features include microcracks, porosities, and deposition rate. To better understand the role of the spray parameters, in-flight particle characteristics, i.e., temperature and velocity were also measured. The role of the porosity in this multicomponent structure is studied as well. The results indicate that thermal diffusivity of the coatings, an important property for potential thermal barrier applications, is barely affected by the changes in porosity content.
机译:悬浮等离子喷涂(SPS)是一种新型工艺,与传统的热喷涂相比,它使用明显更小的颗粒生产具有亚稳态相的纳米结构涂层。考虑到系统的复杂性,迫切需要更好地了解等离子喷涂条件与所产生的涂层微观结构和缺陷之间的关系。在这项研究中,通过轴向注入SPS工艺沉积了氧化铝含量为8%(重量)的氧化钇稳定的氧化锆。使用Taguchi设计的实验评估主要沉积参数对微观结构特征的影响。微观结构特征包括微裂纹,孔隙率和沉积速率。为了更好地理解喷雾参数的作用,还测量了飞行中的颗粒特征,即温度和速度。还研究了孔隙在该多组分结构中的作用。结果表明,涂​​层的热扩散率是潜在的热障应用的重要属性,几乎不受孔隙率变化的影响。

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