Numerical study of drop dynamics for inkjet based 3D printing of pharmaceutical tablets

下降(电信) 计算流体力学 材料科学 跌落冲击 表面张力 墨水池 旋滴法 流体体积法 压力降 工艺工程 机械工程 机械 复合材料 工程类 润湿 热力学 物理 分手
作者
Tanu Mehta,Hossain Aziz,Koyel Sen,Shing‐Yun Chang,Venkatraman Nagarajan,W. K. Anson,Bodhisattwa Chaudhuri
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:656: 124037-124037
标识
DOI:10.1016/j.ijpharm.2024.124037
摘要

Interest in 3D printing has been growing rapidly especially in pharmaceutical industry due to its multiple advantages such as manufacturing versatility, personalization of medicine, scalability, and cost effectiveness. Inkjet based 3D printing gained special attention after FDA's approval of Spritam® manufactured by Aprecia pharmaceuticals in 2015. The precision and printing efficiency of 3D printing is strongly influenced by the dynamics of ink/binder jetting, which further depends on the ink's fluid properties. In this study, Computational Fluid Dynamics (CFD) has been utilized to study the drop formation process during inkjet-based 3D printing for piezoelectric and thermal printhead geometries using Volume of Fluid (VOF) method. To develop the CFD model commercial software ANSYS-Fluent was used. The developed CFD model was experimentally validated using drop watcher setup to record drop progression and drop velocity. During the study, water, Fujifilm model fluid, and Amitriptyline drug solutions were evaluated as the ink solutions. The drop properties such as drop volume, drop diameter, and drop velocity were examined in detail in response to change ink solution properties such as surface tension, viscosity, and density. A good agreement was observed between the experimental and simulation data for drop properties such as drop volume and drop velocity.
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