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Experimental visualization of microstructure evolution during suspension plasma spraying of thermal barrier coatings

机译:悬浮涂层悬浮等离子体喷涂过程中微观结构演化的实验性能

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摘要

This paper investigates the evolution of microstructure of thermal barrier coatings (TBCs) produced by suspension plasma spraying (SPS) through a careful experimental study. Understanding the influence of different suspension characteristics such as type of solvent, solid load content and median particle size on the ensuing TBC microstructure, as well as visualizing the early stages of coating build-up leading to formation of a columnar microstructure or otherwise, was of specific interest. Several SPS TBCs with different suspensions were deposited under identical conditions (same substrate, bond coat and plasma spray parameters). The experimental study clearly revealed the important role of suspension characteristics, namely surface tension, density and viscosity, on the final microstructure, with study of its progressive evolution providing invaluable insights. Variations in suspension properties manifest in the form of differences in droplet momentum and trajectory, which are found to be key determinants governing the resulting microstructure (e.g., lamellar/vertically cracked or columnar).
机译:本文通过仔细的实验​​研究调查通过悬浮等离子体喷涂(SPS)产生的热阻挡涂层(TBC)的显微结构的演变。了解不同悬浮特性的影响,例如溶剂类型的溶剂,固体载荷含量和中值粒度,以及可视化涂层积聚的早期阶段,导致形成柱状微观结构或其他方式。具体兴趣。在相同的条件下(相同的基材,粘合涂层和等离子体喷射参数)沉积具有不同悬浮液的几种具有不同悬浮液的SPCS TBC。实验研究清楚地揭示了悬浮特性,即表面张力,密度和粘度的重要作用,在最终的微观结构上,研究其渐进式演化提供了宝贵的见解。悬浮特性的变化以液滴动量和轨迹的差异的形式清单,其被发现是控制所得微观结构的关键决定因素(例如,层状/垂直裂化或柱状)。

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