Dadashi Ali, Azadi Mohammad
Research Laboratory of Advanced Materials Behavior (AMB), Faculty of Mechanical Engineering, Semnan University, Semnan, Iran.
PLoS One. 2023 Sep 27;18(9):e0291021. doi: 10.1371/journal.pone.0291021. eCollection 2023.
Infill parameters are significant with regard to the overall cost and saving material while printing a 3D model. When it comes to printing time, we can decrease the printing time by altering the infill, which also reduces the total process extent. Choosing the right filling parameters affects the strength of the printed model. In this research, the effect of filling density and infill pattern on the fatigue lifetime of cylindrical polylactic acid (PLA) samples was investigated with finite element modeling and analysis. This causes the lattice structure to be considered macro-scale porosity in the additive manufacturing process. Due to the need for multi-objective optimization of several functions at the same time and the inevitable sacrifice of other objectives, the decision was to obtain a set of compromise solutions according to the Pareto-optimal solution technique or the Pareto non-inferior solution approach. As a result, a horizontally printed rectangular pattern with 60% filling was preferred over the four patterns including honeycomb, triangular, regular octagon, and irregular octagon by considering the sum of mass changes and fatigue lifetime changes, and distance from the optimal point, which is the lightest structure with the maximum fatigue lifetime as an objective function with an emphasis on mass as an important parameter in designing scaffolds and biomedical structures. A new structure was also proposed by performing a structural optimization process using computer-aided design tools and also, computer-aided engineering software by Dassault systems. Finally, the selected samples were printed and their 3D printing quality was investigated using field emission scanning electron microscopy inspection.
在打印3D模型时,填充参数对于总成本和节省材料具有重要意义。在打印时间方面,我们可以通过改变填充来减少打印时间,这也会缩短整个流程的时长。选择合适的填充参数会影响打印模型的强度。在本研究中,利用有限元建模与分析,研究了填充密度和填充图案对圆柱形聚乳酸(PLA)样品疲劳寿命的影响。这使得在增材制造过程中,晶格结构被视为宏观尺度的孔隙率。由于需要同时对多个功能进行多目标优化,且不可避免地要牺牲其他目标,因此决定根据帕累托最优解技术或帕累托非劣解方法来获得一组折衷解决方案。结果,通过考虑质量变化和疲劳寿命变化的总和以及与最优点的距离,在包括蜂窝状、三角形、正八边形和不规则八边形在内的四种图案中,优先选择填充率为60%的水平打印矩形图案,该最优点是以最大疲劳寿命为目标函数的最轻结构,同时强调质量是设计支架和生物医学结构的一个重要参数。还通过使用达索系统的计算机辅助设计工具以及计算机辅助工程软件进行结构优化过程,提出了一种新结构。最后,打印所选样品,并使用场发射扫描电子显微镜检查来研究其3D打印质量。