首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >A DEM approach to assess the influence of the paddle wheel shape on force feeding during pharmaceutical tableting
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A DEM approach to assess the influence of the paddle wheel shape on force feeding during pharmaceutical tableting

机译:一种DEM方法来评估桨轮形状对药剂压片期期间力饲养的影响

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摘要

Pharmaceutical tablet quality is tightly controlled to ensure the patient's safety. Though the tableting process is a well-known and accepted approach, process understanding is frequently built upon longtime experience of the operators. This is also true for the first step in tableting, the die filling where the powder is fed from the hopper through a force feeding system into the rotating dies of the turret. The current study considers a three-chambered force feeder of a FETTE 1200i, with the focus to evaluate the influence of the paddle wheel shape, which may either be of cylindrical or cuboid shaped blades, on tablet quality. A numerical approach utilizing the discrete element method allowed to compute the powder transfer in the tablet press which helps in identifying the optimal paddle wheel shape configuration. For instance, at a low turret - high paddle wheel speed, the cylindrical configuration revealed highest quality with respect to tablet mass, tablet mass variation, and content uniformity. In contrast, the cuboid configuration indicated better quality at a high turret - low paddle wheel speed. In addition, the detailed analysis of macroscopic and microscopic powder flow phenomena within the force feeder was performed which improves general process understanding in pharmaceutical development. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:药剂片质量紧密控制,以确保患者的安全性。虽然平面过程是一种众所周知的和接受的方法,但是经常建立在运营商的长期经验之上的过程理解。这对于压片的第一步也是如此,粉末通过力进给系统从料斗进料到炮塔的旋转模具中的芯片填充。目前的研究考虑了Fette 1200i的三腔式送料器,具有焦点以评估桨叶形状的影响,该桨叶形状可以是圆柱形或长方体叶片的平板电量。利用离散元件方法的数值方法允许计算压片机中的粉末转移,这有助于识别最佳桨轮形状配置。例如,在低炮塔高桨轮速度下,圆柱形结构透露了相对于片剂质量,片剂质量变化和含量均匀性的最高质量。相比之下,长方体配置在高炮塔低桨轮速度下表明了更好的质量。此外,进行了力馈线内宏观和微观粉末流动现象的详细分析,这提高了药物发育中的一般过程理解。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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