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Simulation of particle size segregation in a pharmaceutical tablet press lab-scale gravity feeder

机译:药剂片压板中粒径偏析模拟实验室 - 鳞片重力进料器

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The die filing process within a lab-scale rotary tablet press is simulated using the Discrete Element Method (DEM). Powder is transferred from a gravity feeder (comprising of a cylindrical pipe, an inclined chute, and a rectangular box) into rotating dies. Spherical shape micro-crystalline cellulose particles serve as an experimental pendant to measure the particle size distribution (PSD) and to calibrate the micro-mechanical material properties entering in the DEM calculations. At first, the die filling process of the particles having poly-dispersity in size is explored by analyzing the basic metrics such as tablet mass, tablet mass variation, and mass flow rate. Particle size segregation is investigated by computing the PSD development in different locations of the feeding system and in the filled dies. In addition, particles' velocity and coloring analysis (both qualitative and quantitative) are performed. Results show that different zones of the system are involved in various powder flow phenomena constituting varying particle size segregation causes. Next, the micro-mechanical properties, namely inter-particle cohesion, particle-particle and particle-wall friction, are varied one at a time to shed light on their influence on the particle size segregation and tablet quality. Finally, the influence of different material properties on various metrics are compared with each other providing a guide towards formulation optimization resulting in optimal tableting process performance. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:使用离散元素法(DEM)模拟实验室旋转压片机内的模具锉刀。粉末从重力进料器(包括圆柱形管,倾斜的斜槽和矩形箱)转移到旋转模具中。球形形状微晶纤维素颗粒用作测量粒度分布(PSD)的实验吊坠,并校准在DEM计算中进入的微机械材料性能。首先,通过分析平板物质,片剂质量变化和质量流量等基本度量来探索具有大小的多分散性的颗粒的模具填充过程。通过计算饲养系统的不同位置和填充模具的PSD开发来研究粒度偏析。另外,进行粒子的速度和着色分析(定性和定量)。结果表明,该系统的不同区域涉及构成不同粒度偏析原因的各种粉末流动现象。接下来,一种微机械性能,即颗粒间凝聚力,颗粒颗粒和颗粒壁摩擦,一次变化,以缩小它们对粒度偏析和片剂质量的影响。最后,将不同材料特性对各种度量的影响彼此进行比较,为制剂优化提供指导,导致最佳的片剂处理性能。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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