a Division of Pharmaceutical Technology, Department of Chemistry , University of Hamburg , Hamburg , Germany.
b Fette Compacting GmbH , Schwarzenbek , Germany.
Drug Dev Ind Pharm. 2019 Aug;45(8):1233-1241. doi: 10.1080/03639045.2019.1576725. Epub 2019 May 27.
The purpose of this study was to compare the influence of two different paddle wheel geometries on the distribution behavior of a model powder within the filling chamber of the modified feed frame of a rotary tablet press. Moreover, both paddle wheels were compared regarding their influence on the resulting tablet mass during the tableting process. Insights are provided regarding the influence of the paddle wheel geometry on the powder distribution to optimize the die filling process. Avicel PH 102 served as model powder. A laser triangulator was used to scan the powder surface level within the feed frame and, combined with the determination of the angle position of the paddle wheel, an in-house written software was used to calculate the powder surface profiles and filling levels. Two experimental setups, one based on the filling chamber filled with a defined amount of powder (offline) and one using the filling chamber during tableting (inline) were applied. Both paddle wheel geometries caused a significantly different distribution behavior of the powder within the filling chamber. The tablets obtained with the round rod filling wheel showed significantly higher tablet masses and significantly lower standard deviations. The inflow of powder into the filling chamber appeared to be improved with the round rod filling wheel. Under the applied experimental conditions, the round rod filling wheel showed obvious advantages compared to that with flat rods in terms of the uniformity of tablet masses and the extent of die filling.
本研究旨在比较两种不同桨轮几何形状对改良型压片机加料器填充室中模型粉末分布行为的影响。此外,还比较了两种桨轮在压片过程中对最终片剂质量的影响。深入了解桨轮几何形状对粉末分布的影响,以优化模腔填充过程。以 Avicel PH 102 为模型粉末。使用激光三角仪扫描加料器内的粉末表面水平,并结合桨轮角度位置的确定,使用内部编写的软件计算粉末表面轮廓和填充水平。应用了两种实验设置,一种基于填充腔填充一定量粉末(离线),另一种在压片过程中使用填充腔(在线)。两种桨轮几何形状都导致填充室内粉末的分布行为有显著差异。使用圆棒填充轮获得的片剂具有明显更高的片剂质量和明显更低的标准偏差。粉末流入填充腔的情况似乎因圆棒填充轮而得到改善。在应用的实验条件下,与具有扁棒的桨轮相比,圆棒填充轮在片剂质量均匀性和模具填充程度方面具有明显优势。