Ketterhagen William R, am Ende Mary T, Hancock Bruno C
Pharmaceutical Research and Development, Pfizer Inc, Groton, Connecticut 06340, USA.
J Pharm Sci. 2009 Feb;98(2):442-70. doi: 10.1002/jps.21466.
The discrete element method (DEM) is widely used to model a range of processes across many industries. This paper reviews current DEM models for several common pharmaceutical processes including material transport and storage, blending, granulation, milling, compression, and film coating. The studies described in this review yielded interesting results that provided insight into the effects of various material properties and operating conditions on pharmaceutical processes. Additionally, some basic elements common to most DEM models are overviewed. A discussion of some common model extensions such as nonspherical particle shapes, noncontact forces, and interstitial fluids is also presented. While these more complex systems have been the focus of many recent studies, considerable work must still be completed to gain a better understanding of how they can affect the processing behavior of bulk solids.
离散元法(DEM)被广泛应用于对众多行业中的一系列过程进行建模。本文综述了当前用于几种常见制药过程的离散元模型,包括物料运输与储存、混合、制粒、研磨、压片和薄膜包衣。本综述中描述的研究得出了有趣的结果,这些结果为深入了解各种物料特性和操作条件对制药过程的影响提供了依据。此外,还概述了大多数离散元模型共有的一些基本要素。本文还讨论了一些常见的模型扩展,如非球形颗粒形状、非接触力和间隙流体。虽然这些更复杂的系统一直是近期许多研究的重点,但仍需完成大量工作,以便更好地理解它们如何影响散装固体的加工行为。