Li Zhe, Xiong Haolong, Li Qiong, Naeem Abid, Yang Lingyu, Zhu Weifeng, Wu Yanni, Jin Zhengji, Ming Liangshan
Key Laboratory of Modern Preparation of TCM of Ministry of Education, Institute for Advanced Study, Jiangxi University of Chinese Medicine, Nanchang 330004, China.
School of Life Science, Advanced Research Institute of Multidisciplinary Science, College of Medical Technology, Key Laboratory of Molecular Medicine and Biotherapy, Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Pharmaceutics. 2025 Feb 8;17(2):220. doi: 10.3390/pharmaceutics17020220.
Numerical simulation is a technique that utilizes electronic computers to combine concepts of the discrete element method (DEM), finite element method (FEM), computational fluid dynamics (CFD), etc., and express simulated behaviors utilizing numerical computations and images. Compaction is the main process of tablet manufacturing; most of the current studies have focused on macroscopic compaction and tablet characterization, while the internal stress state and microstructure changes as a result of the compaction process are not well understood. Therefore, an in-depth understanding of the flow and compaction behavior of pharmaceutical powders is essential for the analysis and control of the compaction process. Current research shows that compaction is shifting from macroscopic behavior toward internal microscopic behavior using numerical simulation technology. This review focuses on the application of various numerical simulation technologies during compaction and the contact model, or the constitutive equation commonly used in numerical simulation. In addition, the difficulties of numerical simulation technology in calibrating powder parameters and the limitations of the current research are also discussed. Numerical simulation research in medicine and other fields will continue to flourish as numerical simulation technology advances, attracting more and more researchers using it effectively.
数值模拟是一种利用电子计算机将离散元法(DEM)、有限元法(FEM)、计算流体动力学(CFD)等概念相结合,并通过数值计算和图像来表达模拟行为的技术。压片是片剂制造的主要过程;目前大多数研究都集中在宏观压片和片剂表征上,而对于压片过程中产生的内应力状态和微观结构变化尚不清楚。因此,深入了解药物粉末的流动和压片行为对于压片过程的分析和控制至关重要。当前研究表明,利用数值模拟技术,压片正从宏观行为转向内部微观行为。本综述重点关注各种数值模拟技术在压片过程中的应用以及数值模拟中常用的接触模型或本构方程。此外,还讨论了数值模拟技术在校准粉末参数方面的困难以及当前研究的局限性。随着数值模拟技术的进步,医学等领域的数值模拟研究将继续蓬勃发展,吸引越来越多的研究人员有效地使用它。