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The Challenge of Die Filling in Rotary Presses—A Systematic Study of Material Properties and Process Parameters

机译:轮转压力机充模的挑战—材料性能和工艺参数的系统研究

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摘要

For the efficient and safe production of pharmaceutical tablets, a deep process understanding is of high importance. An essential process step during tableting is the die filling, as it is responsible for a consistent tablet weight and drug content. Furthermore, it affects the results of subsequent process steps, compaction and ejection, and thus critical quality attributes. This study focuses on understanding the influences of process parameters and material properties on die filling on a rotary tablet press. By the systematic variation in process parameters as the turret and paddle speeds as well as the fill and dosing depths, five formulations with differing properties are processed. Analysis of the normalized tablet weight, called filling yield, revealed different limitation mechanisms of the filling process, i.e., incomplete filled dies for certain parameter settings. Kinetic limitations occur due to a short residence time under the feed frame (filling time) caused by high turret speeds, which additionally induce high tablet weight variation coefficients. Characteristic maximum turret speeds at certain paddle speeds can be found to still achieve complete filling. At low turret speeds, densification of the powder inside the dies takes place, induced by two mechanisms: either high paddle speeds or high overfill ratios, or a combination of both. The challenge to fill the dies completely as well as avoid densification is dependent on material properties as the flowability. The mass discharge rate from an orifice was found to be in a linear correlation to the filling results of different formulations below complete filling.
机译:为了高效,安全地生产药用片剂,深刻理解过程非常重要。压片过程中必不可少的一个步骤是压模填充,因为它负责保持一致的片剂重量和药物含量。此外,它影响后续工艺步骤,压实和弹出的结果,从而影响关键的质量属性。这项研究的重点是了解工艺参数和材料特性对旋转式压片机中模具填充的影响。通过转塔和桨叶速度以及填充和加料深度等工艺参数的系统变化,可以加工出具有不同特性的五种配方。对归一化的片剂重量的分析,称为填充量,揭示了填充过程的不同限制机制,即,对于某些参数设置而言,填充模具不完整。由于高转塔速度导致进料框架下停留时间短(填充时间)而导致动力学局限性,进而导致了较高的片剂重量变化系数。可以发现,在某些桨叶速度下,典型的最大转塔速度仍然可以实现完全填充。在低转塔速度下,模具内部粉末的致密化是由两种机制引起的:高桨叶速度或高填充率,或两者兼而有之。完全填充模具以及避免致密化的挑战取决于材料特性,如流动性。发现孔口的质量排出速率与完全填充以下的不同配方的填充结果呈线性相关。

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