Partheniadis Ioannis, Terzi Vasiliki, Nikolakakis Ioannis
Department of Pharmaceutical Technology, Faculty of Health Sciences, School of Pharmacy, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Faculty of Engineering, Institute of Static and Dynamic of Structures, School of Civil Engineering, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Pharmaceutics. 2022 Mar 18;14(3):673. doi: 10.3390/pharmaceutics14030673.
Finite element analysis (FEA) is a computational method providing numerical solutions and mathematical modeling of complex physical phenomena that evolve during compression tableting of pharmaceutical powders. Since the early 2000s, FEA has been utilized together with various constitutive material models in a quest for a deeper understanding and unraveling of the complex mechanisms that govern powder compression. The objective of the present review paper is to highlight the potential and feasibility of FEA for implementation in pharmaceutical tableting in order to elucidate important aspects of the process, namely: stress and density distributions, temperature evolution, effect of punch shape on tablet formation, effect of friction, and failure of the tablet under stress. The constitutive models and theoretical background governing the above aspects of tablet compression and tablet fracture under diametral loading are also presented. In the last sections, applications of FEA in pharmaceutical tableting are demonstrated by many examples that prove its utilization and point out further potential applications.
有限元分析(FEA)是一种计算方法,用于提供在药物粉末压片过程中演变的复杂物理现象的数值解和数学建模。自21世纪初以来,有限元分析已与各种本构材料模型一起被用于更深入地理解和揭示控制粉末压缩的复杂机制。本综述文章的目的是强调有限元分析在药物压片中实施的潜力和可行性,以阐明该过程的重要方面,即:应力和密度分布、温度演变、冲头形状对片剂形成的影响、摩擦的影响以及片剂在应力下的失效。还介绍了控制片剂压缩和径向加载下片剂断裂上述方面的本构模型和理论背景。在最后几节中,通过许多例子展示了有限元分析在药物压片中的应用,这些例子证明了其用途并指出了进一步的潜在应用。