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Flow of Fine and Cohesive Powders under Controlled Air Pressure Conditions

机译:细粉和粘性粉末在受控气压条件下的流动

摘要

Powder flow appears in many industrial processes, including pharmaceuticals, food, detergents etc. Understanding the parameters affecting powder flow is necessary for rational product and process design.\udThis research examines powder-air interactions for three powder handling systems: bin discharge, linear shoe-die system and rotary paddle feeder.\udAs a starting point the flow behaviour of powders was characterised using established procedures to provide basic set of properties for assessing flowability. Powder permeability and the influence of small levels of compaction on permeability were determined.\udThe influence of differential pressure on flow initiation from arching state was examined for powders discharging from bins. A dimensional model was developed to predict the differential pressure required to initiate powder flow as a function of orifice diameter and height of the powder above the exit. The mass flow rate of the powders were measured under a range of differential pressures. A dimensional model was developed to predict the mass flow rate as a function of differential pressure and exit diameter.\udThe effect of processing parameters on the mass of the powder delivered into the die in linear shoe-die systems under the gravity and suction fill mechanism were investigated. The system was accommodated with differential pressure transducers and the evolution of the pressure inside during the process was monitored. Dimensional models were developed to predict the mass delivered into the die as a function of powder differential pressure developed during gravity and suction fill, shoe velocity and the velocity of the punch in the die.\udThe influence of paddle rotational speed, exit diameter and differential pressure on the mass flow rate of powders in rotary feeding system was examined.\udThis research identified the dimensionless groups relevant for the understanding of the flow of fine and cohesive powders under differential air pressure conditions. The dimensional models developed account for air pressure effects for 1) flow initiation and 2) flow rate during bin discharge, 3) gravity and 4) suction fill mechanisms in linear shoe-die filling systems. These models can be used to aid the design of powder flow processes where air pressure effects are influential.
机译:粉末流出现在许多工业过程中,包括制药,食品,洗涤剂等。了解影响粉末流的参数对于合理的产品和过程设计是必要的。 -ud系统和旋转桨式给料机。\ ud作为起点,使用既定程序对粉末的流动行为进行表征,以提供一组基本的性能,以评估流动性。确定了粉末的渗透性和小压实程度对渗透性的影响。\ ud检查了从箱体中排出的粉末的压差对从拱起状态开始流动的影响。开发了一个尺寸模型来预测引发粉末流动所需的压差与出口上方粉末的孔口直径和高度的关系。在一定的压差范围内测量粉末的质量流量。建立了尺寸模型,以预测质量流量作为压差和出口直径的函数。被调查了。该系统装有差压传感器,并监控过程中内部压力的变化。开发了尺寸模型,以预测在重力和吸力填充过程中产生的粉末压差,闸瓦速度和冲头在模具中的速度的函数。\ ud桨桨转速,出口直径和压差的影响\ ud这项研究确定了无量纲的组,这些组与了解不同的气压条件下细粉和粘性粉末的流动有关。开发的尺寸模型考虑了线性鞋模填充系统中1)流动引发和2)料仓排放期间的流量,3)重力和4)吸气填充机制中的气压影响。这些模型可用于帮助设计影响空气压力的粉末流动过程。

著录项

  • 作者

    Baserinia, Reza;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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