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Assessment and predictive modeling of pharmaceutical powder flow behavior in small-scale hoppers

机译:小型料斗中药粉流动行为的评估和预测模型

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The propensity of powder to bridge in hoppers and bins is important for a wide variety of pharmaceutical processes, yet it remains difficult to predict large-scale performance from small-scale powder measurements. Despite the availability of various powder flow testing techniques, the prediction of powder bridging has remained elusive. To address this issue, powder flow performance was characterized for several pharmaceutical powders out of small-scale conical hoppers under various conditions. Specifically, the impacts of powder properties, hopper design, hopper fill level and vibration prior to discharge were characterized. The hopper flow regimes were categorized as mass flow, funnel flow, rat-holing or bridging. A Projection to Latent Spaces (PLS, a.k.a. partial least squares regression) model was developed to predict flow behavior from easily measured powder properties such as the Hausner ratio and measured hopper dimensions. The model correctly predicted flow initiation for new materials for similar to 90% of tests. The variables of Hausner ratio, vibration prior to discharge, and hopper orifice diameter were seen to be most predictive of flow. Surprisingly, powder shear test data such as flow function and unconfined yield strength along with other flow properties were not predictive of hopper performance for the conditions studied. A useful metric, tan(phi)/D, was developed utilizing the hopper semi-apex angle (phi) and orifice diameter (D), and was considered as a first-pass scale-up model. (C) 2016 Elsevier B.V. All rights reserved.
机译:粉末在料斗和料仓中桥接的倾向对于各种制药过程都很重要,但是仍然难以通过小规模粉末测量来预测大规模性能。尽管可以使用各种粉末流动测试技术,但粉末桥接的预测仍然难以捉摸。为了解决这个问题,在各种条件下,从小型锥形料斗出来的几种药物粉末的粉末流动性能都经过了表征。具体而言,表征了粉末性能,料斗设计,料斗填充水平和卸料前振动的影响。料斗的流动方式分为质量流,漏斗流,鼠洞或架桥。开发了潜在空间投影(PLS,a.k.a.偏最小二乘回归)模型,可以根据易于测量的粉末特性(例如Hausner比和测量的料斗尺寸)预测流动行为。该模型正确地预测了新材料的流动启动,大约进行了90%的测试。豪斯纳比,排放前的振动以及料斗孔口直径的变量被认为最能预测流量。出人意料的是,在所研究的条件下,粉末剪切试验数据(例如流动函数和无限制的屈服强度以及其他流动特性)不能预测料斗性能。利用料斗半顶角(phi)和孔口直径(D)开发了一种有用的度量tan(phi)/ D,被认为是首过放大模型。 (C)2016 Elsevier B.V.保留所有权利。

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