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Parametric Analysis and Modeling for the Porosity Prediction in Suspension Plasma-Sprayed Coatings

机译:悬浮等离子体喷涂涂层孔隙率预测的参数分析和建模

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The porous architecture of suspension plasma-sprayed coatings has a significant influence on the coating performances and thus should be properly designed for the intended applications. In this study, YSZ coatings were manufactured by suspension plasma spray (SPS), and a parametric study was performed with five different process parameters: suspension mass load, original powder particle size, substrate surface topology, spray distance, and spray step. Afterward, the porosity of the as-prepared coatings was investigated by imaging and x-ray transmission technique. A multivariate analysis on the collected experimental data was carried out. The results indicated that: (1) The total porosity of SPS coatings increases with the decrease in suspension mass load, while it shows the opposite trend by decreasing the spray distance, original powder particle size, substrate roughness, and spray step; (2) The main factor affecting coating total porosity is spray distance. Finally, a predictive model for coating total porosity was developed and was verified by experiments. Control of total porosity by using the predictive model was presented and explained as well.
机译:悬浮等离子体喷涂涂层的多孔结构对涂层性能产生显着影响,因此应适用于预期应用。在本研究中,YSZ涂层由悬浮等离子体喷雾(SP)制造,并用五种不同的工艺参数进行参数研究:悬浮质量载荷,原始粉末粒度,衬底表面拓扑,喷雾距离和喷雾步骤。之后,通过成像和X射线传输技术研究了制备的涂层的孔隙率。进行了对收集的实验数据的多变量分析。结果表明:(1)SPS涂层的总孔隙率随着悬浮质量载荷的降低而增加,而通过降低喷雾距离,原始粉末粒径,衬底粗糙度和喷雾步骤显示相反的趋势。 (2)影响涂层总孔隙率的主要因素是喷雾距离。最后,开发了一种用于涂覆总孔隙率的预测模型,并通过实验验证。通过使用预测模型对总孔隙率的控制并进行了解释并解释。

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