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Development and Application of a Process Window for Achieving High-Quality Coating in a Fluidized Bed Coating Process

机译:在流化床涂层工艺中实现高质量涂层的工艺窗口的开发和应用

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摘要

Next to the coating formulation, process conditions play important roles in determining coating quality. This study aims to develop an operational window that separates layering from agglomeration regimes and, furthermore, the one that leads to the best coating quality in a fluidized bed coater. The bed relative humidity and the droplet size of the coating aerosol were predicted using a set of engineering models. The coating quality was characterized using a quantitative image analysis method, which measures the coating thickness distribution, the total porosity, and the pore size in the coating. The layering regime can be achieved by performing the coating process at a certain excess of the viscous Stokes number (ΔStv). This excess is dependent on the given bed relative humidity and droplet size. The higher the bed relative humidity, the higher is the ΔStv required to keep the process in the layering regime. Further, it is shown that using bed relative humidity and droplet size alone is not enough to obtain constant coating quality. The changes in bed relative humidity and droplet size have been identified to correlate to the fractional area of particles sprayed per unit of time. This parameter can effectively serve as an additional parameter to be considered for a better control on the coating quality. High coating quality is shown to be achieved by performing the process close to saturation and spraying droplets small enough to obtain high spraying rate, but not too small to cause incomplete coverage of the core particles.
机译:除涂料配方外,工艺条件在决定涂料质量方面也起着重要作用。这项研究的目的是开发一种可将分层与团聚状态分开的操作窗口,此外,还可以在流化床涂布机中获得最佳的涂布质量。使用一组工程模型预测床的相对湿度和涂层气溶胶的液滴尺寸。使用定量图像分析方法表征涂层质量,该方法测量涂层厚度分布,总孔隙率和涂层中的孔径。可以通过以一定的粘性斯托克斯数(ΔStv)过量进行涂覆过程来实现分层方案。该过量取决于给定床的相对湿度和液滴尺寸。床层相对湿度越高,将过程保持在分层状态所需的ΔStv越高。此外,表明仅使用床的相对湿度和液滴尺寸不足以获得恒定的涂层质量。已经确定床相对湿度和液滴尺寸的变化与每单位时间喷射的颗粒的分数面积相关。该参数可以有效地用作附加参数,以更好地控制涂层质量。通过执行接近饱和的过程并以足够小的喷雾液滴获得高喷雾速率,但又不能太小以致不完全覆盖核心颗粒,可以达到较高的涂层质量。

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