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Structure of powder flow in a planetary mixer during wet-mass granulation

机译:湿法制粒过程中行星混合器中粉末流的结构

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摘要

Wet massing granulation, a widely used industrial process, is difficult to monitor and control and the structure of the flow is poorly understood. Flow patterns in a planetary mixer were investigated using positron emission particle tracking. Both dry and wet powders of a model pharmaceutical formulation were studied to develop understanding of the influence of moisture content on the flow structure during granulation. The flow structure was characterised using the distributions of the velocity components in different cross-sections of the mixer. Fourier analysis showed that the dry system is essentially dissipative and disordered whereas the wet system, being more inertial, shows signs of being more ordered with a periodic recirculation within the bowl. In both systems, radial and axial displacements are strongly correlated. For the dry system, within a central radial core region, the behaviour of the particle was determined by the rapid movement of the agitator, forming a single toroidal recycling cell. The radial and axial velocities of the tracer were up to two orders of magnitude lower than the tangential component. However, in the regions close to the wall, the particle was found to exhibit small movements dictated by the planetary rotation. For wet systems these two main regions were again observed. However, velocity field and velocity distribution showed the presence of two toroidal circulation loops, one above the other. In the wall region, the small movements governed by the planetary motion were again found, but with the amplitude of the displacements reduced by an order of magnitude. (c) 2005 Elsevier Ltd. All rights reserved.
机译:湿法制粒是一种广泛使用的工业过程,难以监控和控制,并且对流动的结构了解甚少。使用正电子发射粒子跟踪研究了行星混合器中的流动模式。研究了模型药物制剂的干粉和湿粉,以加深对造粒过程中水分含量对流动结构的影响的了解。使用混合器不同横截面中速度分量的分布来表征流动结构。傅里叶分析表明,干燥系统本质上是耗散且无序的,而湿系统则具有更大的惯性,表明在碗内进行周期性再循环时,其更有序。在这两个系统中,径向和轴向位移都紧密相关。对于干式系统,在中心径向核心区域内,颗粒的行为由搅拌器的快速移动确定,形成单个环形回收单元。示踪剂的径向和轴向速度比切向分量低两个数量级。但是,在靠近壁的区域中,发现粒子表现出由行星旋转决定的微小运动。对于湿系统,再次观察到这两个主要区域。但是,速度场和速度分布显示出两个环形环流的存在,一个环流在另一个环流上。在壁区域,再次发现了由行星运动控制的微小运动,但是位移的幅度减小了一个数量级。 (c)2005 Elsevier Ltd.保留所有权利。

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