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The Influence of Process Equipment on the Properties of Suspension Plasma Sprayed Yttria-Stabilized Zirconia Coatings

机译:工艺设备对悬浮等离子体喷涂性稳定氧化锆涂层性能的影响

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Suspension plasma sprayed YSZ coatings were deposited at lab-scale and production-scale facilities to investigate the effect of process equipment on coating properties. The target application for these coatings is SOFC electrolytes, so dense microstructures with low permeabilities were desired. Both facilities had the same torch but different suspension feeding systems, torch robots and substrate holders. These differences meant that the lab facility had higher torch-substrate relative speeds compared to the production facility. When using porous stainless steel substrates with relatively smooth surfaces, permeabilities and microstructures were comparable for coatings from both facilities, and no segmentation cracks were observed. Coating permeability could be further reduced by increasing substrate temperatures during deposition or reducing suspension feed rates. On rougher substrates representative of SOFC cathodes, production facility coatings had higher permeabilities and more segmentation cracks compared to lab coatings. The increased cracking may be due to larger heat impulses with each torch pass at the production facility caused by its lower torch-substrate relative speed. This work highlights some of the challenges associated with scaling up the spray process from the lab to production.
机译:悬浮等离子体喷涂YSZ涂层沉积在实验室规模和生产规模设施,以研究工艺设备对涂层性能的影响。这些涂层的目标施用是SOFC电解质,所以需要具有低渗透性的致密微观结构。这两种设施都具有相同的火炬,但不同的悬架喂养系统,火炬机器人和基板支架。这些差异意味着与生产设施相比,实验室设施具有更高的割炬基板的相对速度。当使用具有相对光滑的表面的多孔不锈钢基材时,渗透率和微观结构对于来自两个设施的涂层相当,并且没有观察到分段裂缝。通过增加沉积期间的基板温度或减少悬浮液进料速率,可以进一步降低涂布渗透性。在代表SOFC阴极的粗糙基板上,与实验室涂料相比,生产设施涂层具有更高的渗透率和更多的分段裂缝。增加的裂缝可能是由于具有较大的热脉冲,每个火炬通过其较低的炬基板相对速度引起的生产设施。这项工作突出了与从实验室缩放到生产的喷涂过程相关的一些挑战。

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